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SECTION 11014 WINDOW WASHING EQUIPMENT Display hidden notes to specifier. (Don't know how? Click Here ) Copyright 2016 - 2016 ARCAT, Inc. - All rights reserved PART 1 GENERAL 1.1 SECTION INCLUDES A. Window washing equipment fall protection systems including: 1. Anchors. 2. Rail systems. 3. Cable systems. 4. Davit systems. 5. Rigging sleeves. 6. Outrigger beams. 1.2 RELATED SECTIONS A. Section 03300 - Cast-in-Place Concrete. B. Section 03380 - Post Tensioned Concrete. C. Section 03400 - Precast Concrete. D. Section 05100 - Structural Metal Framing. E. Section 05120 - Metal Decking. F. Section 05200 - Metal Joists. G. Section 05500 - Metal Fabrications. H. Section 05520 - Safety Railing. I. Section 06100 - Rough Carpentry. J. Section 07500 - Membrane Roofing. K. Section 07620 - Flashing and Trim. L. Section 07720 - Rooftop Fall Protection and Accessories. M. Section 11010 - Maintenance Equipment. 11014-1

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Page 1:  · Web viewAWS D1.6/D1.6M - Structural Welding Code - Stainless Steel. ASTM International (ASTM): ASTM A36 - Standard Specification for Carbon Structural Steel. ASTM A53 - Standard

SECTION 11014WINDOW WASHING EQUIPMENT

Display hidden notes to specifier. (Don't know how? Click Here)

Copyright 2016 - 2016 ARCAT, Inc. - All rights reserved

PART 1 GENERAL

1.1 SECTION INCLUDES

A. Window washing equipment fall protection systems including:1. Anchors.2. Rail systems.3. Cable systems.4. Davit systems.5. Rigging sleeves.6. Outrigger beams.

1.2 RELATED SECTIONS

A. Section 03300 - Cast-in-Place Concrete.

B. Section 03380 - Post Tensioned Concrete.

C. Section 03400 - Precast Concrete.

D. Section 05100 - Structural Metal Framing.

E. Section 05120 - Metal Decking.

F. Section 05200 - Metal Joists.

G. Section 05500 - Metal Fabrications.

H. Section 05520 - Safety Railing.

I. Section 06100 - Rough Carpentry.

J. Section 07500 - Membrane Roofing.

K. Section 07620 - Flashing and Trim.

L. Section 07720 - Rooftop Fall Protection and Accessories.

M. Section 11010 - Maintenance Equipment.

1.3 REFERENCES

A. American National Standards Institute (ANSI), International Window Cleaning Association (IWCA):1. ANSI/ASSE Z359.1 - Safety Requirements for Personal Fall Arrest Systems,

Subsystems & Components.

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B. American Society of Civil Engineers (ASCE):1. ASCE/SEI 7-10 - Minimum Design Loads for Buildings and Other Structures.

C. American Society of Mechanical Engineers (ASME):1. ASME A120.1 - Safety Requirements for Powered Platforms and Traveling Ladders

and Gantries for Building Maintenance.

D. American Welding Society (AWS):1. AWS D1.1/D1.1M - Structural Welding Code - Steel.2. AWS D1.2/D1.2M - Structural Welding Code - Aluminum.3. AWS D1.6/D1.6M - Structural Welding Code - Stainless Steel.

E. ASTM International (ASTM):1. ASTM A36 - Standard Specification for Carbon Structural Steel.2. ASTM A53 - Standard Specification for Pipe, Steel, Black and Hot-Dipped, Zinc-

Coated, Welded and Seamless.3. ASTM A123 - Standard Specification for Zinc (Hot-Dip Galvanized) Coatings on Iron

and Steel Products.4. ASTM A153 - Standard Specification for Zinc Coating (Hot-Dip) on Iron and Steel

Hardware.5. ASTM A240 - Standard Specification for Chromium and Chromium-Nickel Stainless

Steel Plate, Sheet, and Strip for Pressure Vessels and for General Applications.6. ASTM A325 - Standard Specification for Structural Bolts, Steel, Heat Treated,

120/105 ksi Minimum Tensile Strength.7. ASTM A500 - Standard Specification for Cold-Formed Welded and Seamless Carbon

Steel Structural Tubing in Rounds and Shapes.8. ASTM A666 - Standard Specification for Annealed or Cold-Worked Austenitic

Stainless Steel Sheet, Strip, Plate, and Flat Bar.

F. Minnesota Administrative Rules1. Minnesota Administrative Rules 5205.0650 to 5205.0720 - Building and in plant

maintenance and repair.

G. US Occupational Health and Safety Administration (OSHA):1. OSHA 29 CFR 1910.23 - Safety and Health Regulations for General Industry: Duty to

Have Fall Protection.2. OSHA 29 CFR 1910.66 - Powered Platforms, Manlifts, and Vehicle-Mounted Work

Platforms: Powered Platforms for Building Maintenance.3. OSHA 29 CFR 1926.500 to 503 - Guarding Floor and Wall Openings and Holes.

1.4 SUBMITTALS

A. Submit under provisions of Section 01300.

B. Product Data: Manufacturer's data sheets on each product to be used, including:1. Preparation instructions and recommendations.2. Storage and handling requirements and recommendations.3. Installation methods.

C. Shop Drawings:1. Manufacturer's Engineering Services: Manufacturer shall provide product information

in appropriate file format to facilitate the design process and incorporate system solutions into project documents.

2. Provide project specific, scaled, engineered stamped shop drawings and calculations including layout, dimensions, loading and structural requirements.

3. Show details of each adjacent condition including materials and thicknesses, terminations and penetrations, anchors and fasteners for each system to be installed.

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4. Show complete layout and configuration of window cleaning system components and accessories. Include indication of any dangers to the public.

5. Include installation and rigging instructions, restrictive and non-restrictive usage, edge distance restrictions, and general safety notes.

6. Locate anchorage to suit each building configuration and each type of equipment to be installed.

7. Submit an Operating Procedures Outline System (OPOS) in pictorial and written form to instruct workers in safe use of equipment.

D. Test Reports: Certified test reports to demonstrate compliance with specified performance criteria and physical properties.

E. Submit Operations and Maintenance Data in accordance with Section 01700 - Closeout Submittals.

1.5 QUALITY ASSURANCE

A. Products shall meet or exceed OSHA and ASME A120.1 standards, and be tested and certified by professional engineers.

B. Manufacturer Qualifications: Minimum 10 years experience manufacturing similar products and with the engineering experience and manufacturing capacity to meet project requirements.

C. Installer Qualifications: Approved by the manufacturer and with minimum 2 years experience installing similar products.

1.6 PRE-INSTALLATION MEETINGS

A. Convene at the Project site prior to starting work to verify project requirements, manufacturers requirements, field measurement and installation procedures.

1.7 DELIVERY, STORAGE, AND HANDLING

A. Comply with manufacturer's ordering instructions and lead time requirements to meet construction schedule.

B. Provide packaging that will allow products to be stored outdoors or clearly mark packaging to indicate that products must be protected from the elements.

C. Deliver and store products in manufacturer's unopened packaging bearing the brand name and manufacturer's identification until ready for installation.

D. Handle materials to avoid damage.

1.8 PROJECT CONDITIONS

A. Field Measurements: Where rooftop fall protection and accessories are indicated to fit to adjacent construction, field verify dimensions prior to delivery.

B. Do not install products under environmental conditions outside manufacturer's recommended temperature limits.

C. Coordinate with the General Contractor and related trades as required.

1.9 SEQUENCING

A. Ensure that products of this section are supplied to affected trades in time to prevent

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interruption of construction progress.

1.10 WARRANTY

A. Provide manufacturers standard limited warranty against defects in material and manufacturing when products are installed in accordance with engineered shop drawings and manufacturers instructions.

PART 2 PRODUCTS

2.1 MANUFACTURERS

A. Acceptable Manufacturer: Rooftop Anchor Inc., which is located at: 844 S. 430 W. Suite 200; Heber City, UT 84032; Toll Free Tel: 800-411-3914; Tel: 801-839-2900; Fax: 801-839-2929; Email:request info ([email protected]); Web:www.RooftopAnchor.com

B. Substitutions: Not permitted.

C. Requests for substitutions will be considered in accordance with provisions of Section 01600.

2.2 GENERAL

A. Fall Protection includes suspended access and rooftop access systems as follows:1. Suspended Access: Also referred to as fall arrest systems, are designed to provide

two independent tie-off points required to support a suspended worker. Suspended access systems are typically used by window cleaners and other maintenance trades that need to access exterior building facades. Suspended access systems include anchor points, davits, rigging sleeves, monorails, and outrigger beams.

2. Rooftop Access: Fall restraint and fall arrest systems allow workers to traverse rooftops or similar elevated areas while maintaining 100 percent tie-off to an OSHA compliant system. Rooftop access systems are typically needed by trades who perform routine maintenance of roof-based equipment for example HVAC equipment, communication equipment, security cameras, gutters, solar panels, skylights, and lighting, or used by trades performing window cleaning or facade maintenance, allowing them to be safely tied-back while rigging, prior to performing their descents. Fall restraint systems allow users to approach fall hazards without falling over the edge, fall arrest is used when fall restraint is not feasible and engineered so when a user begins to fall, the system will promptly arrest or stop the fall.

2.3 ANCHORS

A. System Description: Axis Anchor Products allow free pivot motion off a single or multiple anchor points for suspended operations or to prevent workers from reaching unprotected edges while working at height.1. Axis Anchor Products typically require site-specific engineering by the manufacturer

and coordination with the Project structural engineer.

B. Weldable Rooftop Anchors: 3/4 inch (19 mm) stainless steel U-Bar with standard galvanized steel pipe to meet the following loads in any direction:1. Working Load: 1,250 pounds (566 kg).2. Ultimate Load: 5,000 pounds (2267 kg).3. Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body harness

with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

4. Size: 8 inch (203 mm).5. Size: 12 inch (305 mm).

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6. Size: 15 inch (381 mm).7. Size: 18 inch (457 mm).8. Size: 21 inch (533 mm).9. Size: 24 inch (609 mm).10. Size: 30 inch (762 mm).

C. Beam Wrap Rooftop Anchors: 3/4 inch (19 mm) stainless steel U-Bar with 3 inch (76 mm) to 3-1/2 inch (89 mm) standard galvanized steel pipe, 5/8 inch (16 mm) to 3/4 inch (19 mm) galvanized steel top plate, 5/8 inch (16 mm) galvanized threaded rods, and 1/2 inch (13 mm) galvanized steel bottom plate to meet the following loads in any direction:1. Working Load: 1,250 pounds (566 kg).2. Ultimate Load: 5,000 pounds (2267 kg).3. Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body harness

with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

4. Size: 12 inch (304.8 mm) Beam Wrap Rooftop Anchors, with 5-1/4 inch (133 mm) Beam Width.

5. Size: 15 inch (381 mm) Beam Wrap Rooftop Anchors, with 5-1/4 inch (133 mm) Beam Width.

6. Size: 18 inch (457.2 mm) Beam Wrap Rooftop Anchors, with 5-1/4 inch (133 mm) Beam Width.

7. Size: 21 inch (533.4 mm) Beam Wrap Rooftop Anchors, with 5-1/4 inch (133 mm) Beam Width.

8. Size: 24 inch (609.6 mm) Beam Wrap Rooftop Anchors, with 5-1/4 inch (133 mm) Beam Width.

9. Size: 12 inch (304.8 mm) Beam Wrap Rooftop Anchors, with 7-1/4 inch (184 mm) Beam Width.

10. Size: 15 inch (381 mm) Beam Wrap Rooftop Anchors, with 7-1/4 inch (184 mm) Beam Width.

11. Size: 18 inch (457.2 mm) Beam Wrap Rooftop Anchors, with 7-1/4 inch (184 mm) Beam Width.

12. Size: 21 inch (533.4 mm) Beam Wrap Rooftop Anchors, with 7-1/4 inch (184 mm) Beam Width.

13. Size: 24 inch (609.6 mm) Beam Wrap Rooftop Anchors, with 7-1/4 inch (184 mm) Beam Width.

14. Size: 12 inch (304.8 mm) Beam Wrap Rooftop Anchors, with 9-1/4 inch (235 mm) Beam Width.

15. Size: 15 inch (381 mm) Beam Wrap Rooftop Anchors, with 9-1/4 inch (235 mm) Beam Width.

16. Size: 18 inch (457.2 mm) Beam Wrap Rooftop Anchors, with 9-1/4 inch (235 mm) Beam Width.

17. Size: 21 inch (533.4 mm) Beam Wrap Rooftop Anchors, with 9-1/4 inch (235 mm) Beam Width.

18. Size: 24 inch (609.6 mm) Beam Wrap Rooftop Anchors, with 9-1/4 inch (235 mm) Beam Width.

19. Size: 12 inch (304.8 mm) Beam Wrap Rooftop Anchors, with 36 inch (914 mm) Beam Width.

20. Size: 15 inch (381 mm) Beam Wrap Rooftop Anchors, with 36 inch (914 mm) Beam Width.

21. Size: 18 inch (457.2 mm) Beam Wrap Rooftop Anchors, with 36 inch (914 mm) Beam Width.

22. Size: 21 inch (533.4 mm) Beam Wrap Rooftop Anchors, with 36 inch (914 mm) Beam Width.

23. Size: 24 inch (609.6 mm) Beam Wrap Rooftop Anchors, with 36 inch (914 mm) Beam Width.

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D. Epoxy Adhesive Rooftop Anchors: 3/4 inch (19 mm) stainless steel U-Bar with 3 inch (76 mm) to 3-1/2 inch (89 mm) standard galvanized steel pipe, 1/2 inch (13 mm) galvanized steel plate and anchors to meet the following loads in any direction:1. Working Load: 1,250 pounds (566 kg).2. Ultimate Load: 5,000 pounds (2267 kg).3. Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body harness

with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

4. Size: 12 inch (305 mm).5. Size: 15 inch (381 mm).6. Size: 18 inch (457 mm).7. Size: 21 inch (533 mm).8. Size: 24 inch (609 mm).

E. Cast-In-Place Rooftop Anchors: 3/4 inch (19 mm) stainless steel U-Bar with 3 inch (76 mm) to 3-1/2 inch (89 mm) standard galvanized steel pipe, galvanized steel base plate, and 1 inch (25 mm) stainless steel threaded rod to meet the following loads in any direction:1. Working Load: 1,250 pounds (566 kg).2. Ultimate Load: 5,000 pounds (2267 kg).3. Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body harness

with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

4. Size: 12 inch (305 mm).5. Size: 15 inch (381 mm).6. Size: 18 inch (457 mm).7. Size: 21 inch (533 mm).8. Size: 24 inch (609 mm).

F. Cast-In-Place Rooftop Anchors with 4 Bolts: 3/4 inch (19 mm) stainless steel U-Bar with 3 inch (76 mm) to 3-1/2 inch (89 mm) standard galvanized steel pipe, galvanized steel base plate, and four 5/8 inch (16 mm) stainless steel threaded rods with stainless steel plate washers to meet the following loads in any direction:1. Working Load: 1,250 pounds (566 kg).2. Ultimate Load: 5,000 pounds (2267 kg).3. Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body harness

with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

4. Size: 12 inch (305 mm) with 4 bolts.5. Size: 15 inch (381 mm) with 4 bolts.6. Size: 18 inch (457 mm) with 4 bolts.7. Size: 21 inch (533 mm) with 4 bolts.8. Size: 24 inch (609 mm) with 4 bolts.

G. Bolt Through Rooftop Anchors: 3/4 inch (19 mm) stainless steel U-Bar with 3 inch (76 mm) to 3-1/2 inch (89 mm) standard galvanized steel pipe, galvanized steel base plate, and 1 inch (25 mm) stainless steel threaded rods with galvanized steel plate washers to meet the following loads in any direction:1. Working Load: 1,250 pounds (566 kg).2. Ultimate Load: 5,000 pounds (2267 kg).3. Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body harness

with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

4. Size: 12 inch (305 mm).5. Size: 15 inch (381 mm).6. Size: 18 inch (457 mm).7. Size: 21 inch (533 mm).

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8. Size: 24 inch (609 mm).

H. Open Web Joists Rooftop Anchors: 3/4 inch (19 mm) stainless steel U-Bar with 3 inch (76 mm) to 3-1/2 inch (89 mm) standard galvanized steel pipe, 1/4 inch (6 mm) to 5/8 inch (19 mm) galvanized steel base plate, and 5/8 inch (19 mm) galvanized steel threaded rods with galvanized steel plate washers to meet the following loads in any direction:1. Working Load: 1,250 pounds (566 kg).2. Ultimate Load: 5,000 pounds (2267 kg).3. Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body harness

with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

4. Size: 12 inch (305 mm), with 9 inch (228 mm) beam height.5. Size: 15 inch (381 mm), with 9 inch (228 mm) beam height.6. Size: 18 inch (457 mm), with 9 inch (228 mm) beam height.7. Size: 21 inch (533 mm), with 9 inch (228 mm) beam height.8. Size: 24 inch (609 mm), with 9 inch (228 mm) beam height.9. Size: 12 inch (305 mm), with 15 inch (381 mm) beam height.10. Size: 15 inch (381 mm), with 15 inch (381 mm) beam height.11. Size: 18 inch (457 mm), with 15 inch (381 mm) beam height.12. Size: 21 inch (533 mm), with 15 inch (381 mm) beam height.13. Size: 24 inch (609 mm), with 15 inch (381 mm) beam height.14. Size: 12 inch (305 mm), with 21 inch (533 mm) beam height.15. Size: 15 inch (381 mm), with 21 inch (533 mm) beam height.16. Size: 18 inch (457 mm), with 21 inch (533 mm) beam height.17. Size: 21 inch (533 mm), with 21 inch (533 mm) beam height.18. Size: 24 inch (609 mm), with 21 inch (533 mm) beam height.

I. "H" Frame Rooftop Anchors: 3/4 inch (19 mm) stainless steel U-Bar with 3 inch (76 mm) to 3-1/2 inch (89 mm) standard galvanized steel pipe, with anchor stanchions, 5/8 inch (16 mm) thick 16 inch (406 mm) wide anchor base plate and two steel HSS bridge bracing elements typically 13 inch (330 mm) apart, with two steel HSS girder bracing elements typically 36 inch (914 mm) apart in length as required to meet joists, and mounted with 1/2 inch (13 mm) diameter grade 5 bolts to open web joists (designed by the project structural engineer) fastened with W-interweb lock nuts to meet the following loads in any direction:1. Working Load: 1,250 pounds (566 kg).2. Ultimate Load: 5,000 pounds (2267 kg).3. Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body harness

with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

4. Size: 12 inch (305 mm), with 48 inch (1219 mm) joist width.5. Size: 15 inch (381 mm), with 48 inch (1219 mm) joist width.6. Size: 18 inch (457 mm), with 48 inch (1219 mm) joist width.7. Size: 21 inch (533 mm), with 48 inch (1219 mm) joist width.8. Size: 24 inch (609 mm), with 48 inch (1219 mm) joist width.9. Size: 12 inch (305 mm), with 72 inch (1829 mm) joist width.10. Size: 15 inch (381 mm), with 72 inch (1829 mm) joist width.11. Size: 18 inch (457 mm), with 72 inch (1829 mm) joist width.12. Size: 21 inch (533 mm), with 72 inch (1829 mm) joist width.13. Size: 24 inch (609 mm), with 72 inch (1829 mm) joist width.14. Size: 12 inch (305 mm), with 96 inch (2438 mm) joist width.15. Size: 15 inch (381 mm), with 96 inch (2438 mm) joist width.16. Size: 18 inch (457 mm), with 96 inch (2438 mm) joist width.17. Size: 21 inch (533 mm), with 96 inch (2438 mm) joist width.18. Size: 24 inch (609 mm), with 96 inch (2438 mm) joist width.

J. Wall Anchors:

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1. Weldable Wall Anchors:a. 3/4 inch (19 mm) stainless steel U-Bar with galvanized steel plate for welded

attachment to steel columns to meet the following loads in any direction:1) Working Load: 1,250 pounds (566 kg).2) Ultimate Load: 5,000 pounds (2267 kg).3) Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

2. Beam Wrap Wall Anchors, with 4 bolts:a. 3/4 inch (19 mm) stainless steel U-Bar with 8 by 8 inch (203 by 203 mm) 1/2

inch (13 mm) thick galvanized steel front and back plates for bolt through attachment with four 3/4 inch (19 mm) galvanized steel bolts with plate washers, lock washer, and nuts through steel columns to meet the following loads in any direction:1) Working Load: 1,250 pounds (566 kg).2) Ultimate Load: 5,000 pounds (2267 kg).3) Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

3. Epoxy Adhesive Rooftop Wall Anchors, with 4 bolts:a. 3/4 inch (19 mm) stainless steel U-Bar with 6 by 8 inch (152 by 203 mm) 1/4

inch (6 mm) thick stainless steel plate for attachment with four 1/2 inch (13 mm) diameter epoxy adhesive bolts typically 3 inch (76 mm) deep into pre-cast concrete wall to meet the following loads in any direction:1) Working Load: 1,250 pounds (566 kg).2) Ultimate Load: 5,000 pounds (2267 kg).3) Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

4. Cast-In-Place Wall Anchors:a. 3/4 inch (19 mm) stainless steel U-Bar with 1/4 inch (6 mm) thick stainless steel

plate to cast in place with one 3/4 inch (19 mm) diameter stainless steel anchor typically 5 inch (127 mm) deep into concrete wall to meet the following loads in any direction:1) Working Load: 1,250 pounds (566 kg).2) Ultimate Load: 5,000 pounds (2267 kg).3) Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

5. Recessed Cast-In-Place Wall Anchors:a. 18 gauge stainless steel recessed box with 3/4 inch (19 mm) stainless steel

rod, and stainless steel plate washers cast into concrete wall to meet the following loads in any direction:1) Working Load: 1,250 pounds (566 kg).2) Ultimate Load: 5,000 pounds (2267 kg).3) Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

6. Bolt Through Wall Anchors, with 1 bolt:a. 3/4 inch (19 mm) stainless steel U-Bar with 1/4 inch (6 mm) thick stainless steel

plate for bolt through attachment with one 3/4 inch (19 mm) galvanized steel bolts with plate washers, lock washer, and nuts through cast in place concrete wall to meet the following loads in any direction:1) Working Load: 1,250 pounds (566 kg).2) Ultimate Load: 5,000 pounds (2267 kg).3) Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body

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harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

7. Bolt Through Wall Anchors, with 2 bolts:a. 3/4 inch (19 mm) stainless steel U-Bar with 4 by 9 inch (101 by 228 mm) 1/4

inch (6 mm) thick stainless steel plate for bolt through attachment with two 3/4 inch (19 mm) galvanized steel bolts with plate washers, lock washer, and nuts through pre-cast concrete wall to meet the following loads in any direction:1) Working Load: 1,250 pounds (566 kg).2) Ultimate Load: 5,000 pounds (2267 kg).3) Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

8. Bolt Through Wall Anchors, with 4 bolts:a. 3/4 inch (19 mm) stainless steel U-Bar with 8 by 8 inch (203 by 203 mm) 1/4

inch (6 mm) thick stainless steel plate for bolt through attachment with four 3/4 inch (19 mm) galvanized steel bolts with plate washers, lock washer, and nuts through pre-cast concrete wall to meet the following loads in any direction:1) Working Load: 1,250 pounds (566 kg).2) Ultimate Load: 5,000 pounds (2267 kg).3) Maximum Fall Arrest Force: 1,800 pounds (816 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

2.4 RAIL SYSTEMS

A. System Description: Linear Access Solutions provide maximum protection when lateral movement is necessary, ideal for situations that place workers at height with limited fall clearance. Design, fabricate, and finish traveler systems to ensure no structural or mechanical deterioration will occur over the designed life that could affect security and operation in permanent exposure to the elements.

B. Monorail Systems:1. PFP Monorails:

a. Material: 3-1/2 by 4 inch (88 by 101 mm) 6061-T6 aluminum alloy to 35 ksi.b. Supports: 5.66 pounds per foot (8.42 kg/m), rated for 1,000 pounds (453 kg)

from a primary line and 1,250 pounds (566 kg) from a safety line for a maximum span of 10 feet (3 meter).

c. Safety Factor: 4:1 against fracture or detachment.2. Monorail Drovers:

a. Material: Stainless steel.b. Rated Working Load: 1,250 pounds (566 kg), rated for 1,000 pounds (453 kg)

from a primary line and 1,250 pounds (566 kg) from a safety line for a maximum span of 10 feet (3 meter).

c. Safety Factor: 4:1 against fracture or detachment.3. Monorail Brackets, HSS Bolt Throughs:

a. Two Bolt System: Aluminum monorail with 5/8 inch (16 mm) steel plate welded to two 1/2 inch (13 mm) diameter 3 inch (76 mm) long stainless steel threaded rod with stainless steel T-nuts. Matching assembly fastens through steel HSS beam with adjustable center pipe.

b. Four Bolt System: Aluminum monorail with 5/8 inch (16 mm) steel plate welded to four 1/2 inch (13 mm) diameter 3 inch (76 mm) long stainless steel threaded rod with stainless steel T-nuts. Matching assembly fastens through steel HSS beam with adjustable center pipe.

4. Monorail Intermediate Bolt Through Brackets:a. Attachment: 10 by 4-1/2 inch (254 by 114 mm) 5/8 inch (16 mm) thick

galvanized steel plate through bolted onto existing structure using 1/2 inch (13

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mm) bolts.b. Bracket: 4 by 4 inch (101 by 101 mm) 1/4 inch (6 mm) thick galvanized HSS

steel, two components form 90 degree angle.c. Monorail: Extruded 6061-T6 aluminum with T-rail connection attaches to

bracket with 3 by 3 inch (76 by 76 mm) 3/4 inch (19 mm) thick HSS and 5/8 inch (16 mm) thick galvanized steel plate. Traveler slides across extruded monorail below brackets.

C. Roofsafe Rails:1. Standing Seam Roofs (Perpendicular Rails): T6 aluminum with non-penetrating S-5

standing seam clips with butyl tape beneath each rivet, attached to metal roofing panel seams, typically 16 inch (406 mm) apart, with Roofsafe Rail Traveler on spreader plate, system end stops and molded rail ends minimum 40 inch (1016 mm) apart; to meet the following loads:a. Working Load: 1,350 pounds (612 kg).b. Ultimate Load: 5,000 pounds (2267 kg).

2. Standing Seam Roofs (Parallel Rails): T6 aluminum with Roofsafe Rail Traveler on spliced spreader plates with eight 7.7 mm bulb-tite rivets butyl tape beneath each rivet, and system end stops and molded rail ends minimum 40 inch (1016 mm) apart; to meet the following loads:a. Working Load: 1,350 pounds (612 kg).b. Ultimate Load: 5,000 pounds (2267 kg).c. Rivet Strength: 1,500 pounds (680 kg) shear and 1,100 pounds (498 kg)

tensile.

D. Unirails:1. Side fixed fall arrest system with molded rail end, tamper proof end stop, and fixed

end anchor at the bottom of a unirail with fixed anchors maximum 102.37 inch apart, and fixed joints 118.11 inch apart, with 90 degree curved corner to meet the following loads:a. Working Load: ___ pounds (___ kg).b. Ultimate Load: ___ pounds (___ kg).

2. Floor mounted.3. Overhead mounted.4. Wall mounted.5. Mounting configuration as shown on the Drawings.6. Mounting configuration as recommended by the manufacturer.

2.5 CABLE SYSTEMS

A. Cable systems are only for access to suspended components and shall not be used for suspended access.

B. Typical Roofsafe Cable System Components:1. System eye and pin on both ends.2. Force Management Anchors (FMA).3. Hex swag tensioners.4. 8 mm stainless steel cable.5. Intermediate cable guides.6. Cable traveler.7. 90 degree corner cable guides.8. Variable cable guides.9. Hex swag togglers.

C. Typical Roof Safe Anchors:1. Trapezoidal Roofing: Aluminum anchor baseplate with bulb-tite aluminum rivets

attached to trapezoidal roof crowns, center of plate holds system eye pin or stainless

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steel cable guide.2. Standing Seam Roofing: Non-penetrating S-5 clamps with aluminum anchor base

plate, and roofsafe anchor module of aluminum and stainless steel with system eye and pin or stainless steel cable guide.

3. Bitumen Roofing: Countersunk toggle bolts mount through roofing membrane and insulation to attach aluminum anchor baseplate, roofsafe aluminum and stainless steel anchor module and system eye and pin or stainless steel cable guide.

4. Bitumen Roofing over Concrete: PVC sleeves and anchor bolts mount through roofing membrane and insulation to attach aluminum anchor baseplate, roofsafe aluminum and stainless steel anchor module and system eye and pin or stainless steel cable guide.

D. Force Management Anchors:1. End/Corner Modules: 16 by 16 inch (406 by 406 mm) aluminum base plate with four

toggle bolt fixings to support central roofsafe anchor end or corner modules to meet the following loads:a. 600 pound (272 kg) activation load.b. 1,350 pound (612 kg) arrest load.c. 2,700 pound (1224 kg) ultimate load.

2. Intermediate Modules: 16 by 16 inch (406 by 406 mm) aluminum base plate with four toggle bolt fixings to support central roofsafe anchor end or corner modules to meet the following loads:a. 660 pound (299 kg) activation load.b. 1,350 pound (612 kg) arrest load.c. 2,700 pound (1224 kg) ultimate load.

3. Standard Base Plates: 16 by 16 inch (406 by 406 mm) aluminum with manufacturers standard hole patterns and 1 inch (25 mm) diameter bolt holes.

4. Standard Base Plates: 16 by 21 inch (406 by 533 mm) aluminum with manufacturers standard hole patterns and 1 inch (25 mm) diameter bolt holes.

5. Cable Systems:a. System End (Tensioner Side): Base plate, Uniline force management end

anchor with tensioner and hex swage toggle for 8 mm stainless steel cable.b. Intermediate Post: Base plate, Uniline force management intermediate anchor

for 8 mm stainless steel cable with Unigrab cable traveler.c. System End (Swage Side): Base plate, Uniline force management end anchor

with hex swage toggle for 8 mm stainless steel cable, system eye and pin.

E. Rigid Wall Anchor Cable Systems:1. End Anchors (Both Ends): U-shape wall anchors with base plates anchored into

concrete wall with in-line energy absorber and swage to support 8 mm stainless steel cable.

2. Intermediate Bracket: intermediate bracket with wall bracket base to support 8 mm stainless steel cable and cable traveler.

3. Intermediate 90 degree Corner: 12-1/4 by 12-1/4 inch (311 by 311 mm) Unibend external corner brackets with anchors.

F. Rigid Anchor Cable Systems:1. System End (Tensioner Side): Rooftop loop anchor penetrates roofing system with

flashing installed by roofing trades, hex swage tensioner supports 8 mm stainless steel cable.

2. Intermediate Post: Rooftop stud anchor penetrates roofing system with flashing installed by roofing trades, intermediate bracket supports 8 mm stainless steel cable and cable traveler.

3. System End (Shock Absorber Side): Rooftop loop anchor penetrates roofing system with flashing installed by roofing trades, in-line shock absorber and hex swage supports 8 mm stainless steel cable.

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2.6 DAVIT SYSTEMS

A. Ground Rigged Davit Arms:1. Aluminum boom with stainless steel sliding anchor, connected to aluminum mast with

transport wheels and diagonal galvanized steel brace, mounted to roof with davit socket, stainless steel pins, and davit base (typically behind roof parapet) to meet the following loads in the downwards direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 4,000 pounds (1814 kg).c. Maximum Fall Arrest Force: 1,000 pounds (453 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 4,000 pounds (1814 kg) against fracture or detachment.

2. Davit Reach: ____ inch (___ mm).3. Davit Height: ____ inch (___ mm).4. Parapet Height: ____ inch (___ mm).5. Davit Base Height: ____ inch (___ mm).

B. Small Ground Rigged Davit Arms:1. Aluminum boom with stainless steel anchor point, connected to HSS steel mast with

transport wheels and 3/4 inch (19 mm) diameter stainless steel pins, assembly welds, (shop fabrications) and mounting on site (field welding), joints to be welded all around, seam seal weld only where weld is not required structurally, to meet the following loads in the downwards direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 4,000 pounds (1814 kg).c. Maximum Fall Arrest Force: 1,250 pounds (566 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 4,000 pounds (1814 kg) against fracture or detachment.

2. Total Boom Length: Approximately 77 inch (1955 mm)3. Davit Reach: ____ inch (___ mm).4. Davit Height: ____ inch (___ mm).5. Parapet Height: ____ inch (___ mm).6. Davit Base Height: ____ inch (___ mm).

C. Weldable Davit Bases:1. Galvanized steel davit mounting bracket plates with stainless steel pins, mounted to

12 by 12 inch (304 by 304 mm) galvanized steel plate 3/4 inch (19 mm) thick, over HSS steel stanchion which penetrates roof system and roof deck welded onto structural steel beam with 3/4 inch (19 mm) steel plate to meet the following loads in any direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 4,000 pounds (1814 kg).c. Maximum Fall Arrest Force: 1,000 pounds (453 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 4,000 pounds (1814 kg) against fracture or detachment.

2. Davit Base Height (base plate at structural steel beam to mounting bracket plate): ____ inch (___ mm).

D. Small Weldable Davit Bases:1. Galvanized steel davit mounting bracket plates with stainless steel pins, mounted to

10 by 8 inch (254 by 203 mm) galvanized steel plate 3/4 inch (19 mm) thick, over HSS steel stanchion 6 inch (152 mm) diameter, to meet the following loads in any direction:a. Working Load: 600 pounds (272 kg).b. Ultimate Load: 2,400 pounds (1088 kg).

E. Cast-In-Place Davit Bases:1. Galvanized steel davit mounting bracket plates with stainless steel pins, mounted to

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12 by 12 inch (304 by 304 mm) galvanized steel plate 3/4 inch (19 mm) thick, over HSS steel stanchion which penetrates roof system and roof deck cast into concrete deck with 3/4 inch (19 mm) steel plate to meet the following loads in any direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 4,000 pounds (1814 kg).c. Maximum Fall Arrest Force: 1,000 pounds (453 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 4,000 pounds (1814 kg) against fracture or detachment.

2. Davit Base Height (base plate at structural steel beam to mounting bracket plate): ____ inch (___ mm).

F. Small Cast-In-Place Davit Bases:1. Galvanized steel davit mounting bracket plates with stainless steel pins, mounted to

10 by 8 inch (254 by 203 mm) galvanized steel plate 3/4 inch (19 mm) thick, over HSS steel stanchion which penetrates roof system and roof deck cast into concrete deck with 3/4 inch (19 mm) steel plate and 3/4 inch (19 mm) stainless steel threaded rods to meet the following loads in any direction:a. Working Load: 600 pounds (272 kg).b. Ultimate Load: 2,400 pounds (1088 kg).

G. Davit Sockets:1. 12 by 12 inch (304 by 304 mm) galvanized steel plate 3/4 inch (19 mm) thick with

11.13 inch (282 mm) davit pin 1 inch (25 mm) diameter.

H. Small Davit Sockets:1. 10 by 8 inch (254 by 203 mm) galvanized steel plate 3/4 inch (19 mm) thick with two

concentric holes 8.1 inch (205 mm) diameter and 10 inch (254 mm) diameter, with internal wear rings and 12 inch (304 mm) high sleeve, overall height 17.38 inch (441 mm).

2.7 RIGGING SLEEVES

A. Weldable Rigging Sleeves:1. Hot-dipped galvanized HSS rigging sleeve to penetrate through roof deck and roofing

system to be flashed and finished by roofing trades, welded onto roof beams inside the building, typically above soffits or similar interior finishes, to meet the following loads in any direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 5,000 pounds (2267 kg).c. Maximum Fall Arrest Force: 1,000 pounds (453 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

2. Total Length: ____ inch (___ mm).3. Top of Slab to Top of Sleeve: Minimum 8 inch (203 mm).

B. Epoxy Adhesive Rigging Sleeves:1. Hot-dipped galvanized HSS rigging sleeve to penetrate through roof deck and roofing

system to be flashed and finished by roofing trades, mounted to roof deck with galvanized steel base plate, four 5/8 inch (16 mm) diameter epoxy adhesive anchors, with interior decorative tip by others, to meet the following loads in any direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 5,000 pounds (2267 kg).c. Maximum Fall Arrest Force: 1,000 pounds (453 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

2. Total Length: ____ inch (___ mm).3. Top of Slab to Top of Sleeve: Minimum 8 inch (203 mm).

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C. Cast-In-Place Rigging Sleeves:1. Hot-dipped galvanized HSS rigging sleeve to be cast in concrete roof deck and

topped with roofing system to be flashed and finished by roofing trades, with four 5/8 inch (16 mm) diameter stainless steel threaded rods, with interior decorative tip by others, to meet the following loads in any direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 5,000 pounds (2267 kg).c. Maximum Fall Arrest Force: 1,000 pounds (453 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

2. Total Length: ____ inch (___ mm).3. Top of Slab to Top of Sleeve: Minimum 8 inch (203 mm).

D. Portable Rigging Sleeve Caps:1. 3/4 inch (19 mm) stainless steel rod in round hot dipped galvanized HSS sleeve with

1/2 inch (13 mm) steel plates, to meet the following loads in downward direction only:a. Working Load: 1,250 pounds (566 kg).b. Ultimate Load: 5,000 pounds (2267 kg).

E. Horizontal Rigging Sleeves:1. 4 by 4 inch (101 by 101 mm) by 1/4 inch (6 mm) thick hot-dipped galvanized HSS

rigging sleeve to be installed horizontally through structural steel, with rounded edge inside sleeve, self-closing cap on the exterior face of the building, and 3.4 inch (19 mm) diameter stainless steel rod, to meet the following loads in any direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 5,000 pounds (2267 kg).c. Maximum Fall Arrest Force: 1,000 pounds (453 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

2. Total Length: ____ inch (___ mm).

F. Curved Rigging Sleeves:1. 3.4 inch (19 mm) diameter stainless steel rod mounted to HSS hot dip galvanized

curved rigging sleeve with vertical galvanized stanchion mounted to galvanized steel plate, mounted to concrete slab with 4 epoxy adhesive anchors, to meet the following loads in any direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 5,000 pounds (2267 kg).c. Maximum Fall Arrest Force: 1,000 pounds (453 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000 pounds (2267 kg) against fracture or detachment.

2. Total Length: ____ inch (___ mm).3. Cantilever Length: ____ inch (___ mm).4. Stanchion Height: ____ inch (___ mm).5. Sleeve Radius: ____ inch (___ mm).

G. Horizontal Cast-In-Place Rigging Sleeves:1. 3.4 inch (19 mm) diameter stainless steel rod mounted to HSS hot dip galvanized

horizontal rigging sleeve with rounded edge to protect cables, and vertical galvanized stanchion mounted to galvanized steel plate, mounted to concrete slab with four 5/8 inch (16 mm) stainless steel threaded rods with plate washers, to meet the following loads in any direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 5,000 pounds (2267 kg).c. Maximum Fall Arrest Force: 1,000 pounds (453 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 5,000

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pounds (2267 kg) against fracture or detachment.2. Total Length: ____ inch (___ mm).3. Cantilever Length: ____ inch (___ mm).4. Stanchion Height: ____ inch (___ mm).

2.8 OUTRIGGER BEAMS

A. Pinned Outrigger Beams:1. Aluminum outrigger beam pinned onto rooftop anchor with wheel and jack in back,

and wheel base assembly in front, to meet the following loads in the downward direction:a. Working Load: 1,000 pounds (453 kg).b. Ultimate Load: 4,000 pounds (1814 kg).c. Maximum Fall Arrest Force: 1,000 pounds (453 kg) when wearing a body

harness with a safety factor of 2 without permanent deformation, and 4,000 pounds (1814 kg) against fracture or detachment.

2. Total Length: ____ inch (___ mm).3. Setback Distance: ____ inch (___ mm).4. Cantilever Length: ____ inch (___ mm).5. Parapet Height: ____ inch (___ mm).

2.9 FINISH

A. Manufacturer's standard galvanized or stainless steel finishes as specified.

PART 3 EXECUTION

3.1 EXAMINATION

A. Do not begin installation until substrates have been properly prepared.

B. If substrate preparation is the responsibility of another installer, notify Architect of unsatisfactory preparation before proceeding.

3.2 PREPARATION

A. Comply with manufacturers recommendations for concrete versus steel structures, new construction versus retrofit and sizing.1. The engineer or record shall review supporting structure for reinforcing requirements.

B. Clean surfaces thoroughly prior to installation.

C. Prepare surfaces using the methods recommended by the manufacturer for achieving the best result for the substrate under the project conditions.

D. Inspect components to ensure damaged parts will not be installed.

3.3 INSTALLATION

A. Installation Requirements:1. Installation shall be performed by manufacturers certified installers.2. Licensed engineers shall supervise the entire process.3. Materials shall be welded and inspected by AWS certified welders.

B. Epoxy adhesive anchors in thin concrete slabs shall reduce embedment depth to prevent cracking or blowout on the underside of the slab.

3.4 FIELD QUALITY CONTROL

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A. After installation, load test each product to ensure compliance with ANSI/IWCA I-14.1 safety standards and local regulations.

3.5 DEMONSTRATION AND TRAINING

A. Provide quality training program for workers, contractors and others that will work at height or fall hazards 4 feet (1219 mm) or greater.

3.6 PROTECTION

A. Protect installed products until completion of project.

B. Touch-up, repair or replace damaged products before Substantial Completion.

3.7 MAINTENANCE

A. OSHA and ANSI/IWCA I-14.1 require that anchors first be certified and subsequently inspected on an annual basis. Coordinate with the manufacturer and local inspectors as required to maintain compliance.

END OF SECTION

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