re: indicative fire resistance test to the temperature and ... · bsen 1363 part 1 and general...
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Chiltern House Stocking Lane Hughenden Valley High Wycombe Buckinghamshire HP14 4ND UK
t +44 (0) 1494 569 800 f +44 (0) 1494 564895
e [email protected] w www.chilternfire.co.uk
A member of the BM TRADA Group of companies Registered Number 3125010 England
Chiltern International Fire Ltd. Registered office: Chiltern House, Stocking Lane, Hughenden Valley, High Wycombe, Buckinghamshire, HP14 4ND UK.
Our Ref: Chilt/IF12075
23rd February 2013
Express Toughening Ltd 51?55 Fowler Road Hainault Industrial Estate Hainault Essex IG6 3XE
Re: Indicative Fire Resistance Test to the temperature and pressure conditions of
BSEN 1363 Part 1 and general principles of BSEN 1634#1:2008
Test Reference: Chilt/IF12075 This letter is to confirm the results of an indicative fire resistance test undertaken on 6
th
November 2012. The specimen consisted of a Halspan Prima particleboard door leaf section including two vision glazing panels, hung within a softwood timber door frame.
Details of the test specimen The overall size of the leaf was 1456mm high x 1232mm wide x 44mm thick and included two glazed apertures; the left aperture, designated glazing panel A, measured 486mm wide x 988mm high (sight size), and the right aperture, designated glazing panel B, measured 487mm wide x 990mm high (sight size).
Exposed face prior to testing
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Introduction The glazing was supplied for test by the client and delivered during September 2012. Chiltern International Fire Limited (CIFL) further produced the specimen in respect of the softwood frame, leaf, glazing bead, hardware and intumescent protection. CIFL installed the specimen into a refractory lined steel restraint frame and fitted it on the front of a 1.5m x 1.5m vertical furnace.
Supporting Construction The supporting construction consisted of a C16 grade softwood timber stud frame, nominally 95mm deep x 45mm wide, clad on the furnace side only with 2No layers of nominally 12.5mm thick type F plasterboard. Drywall screws were used to fix the plasterboard at a maximum 300mm centres. The screw length was selected to achieve a minimum of 10mm penetration into the timber studs / track.
Specification Details of the specimen are shown in the Appendix.
Description of construction (refers to Figures 1 to 4 of the appendix)
Leaf
Species/type Dimensions (mm) Density (kg/m³)
Key to figures
Stiles and rails None fitted ? ? ?
Core Halspan Prima graduated density particleboard
44 thick 630* 1
Facing None fitted ? ? ?
Adhesive Lippings PU ? ? ?
Lippings – vertical edges only
Sapele 6 thick 640** 2
* Manufacturers stated density ** Nominal density
Door frame
Species/type Dimensions (mm) Density (kg/m³)
Key to figures
Head and jambs European Redwood 32 thick x 70 deep 510** 3
Head to jamb jointing detail
Mortice and tenon – screwed
? ? ?
Stop – planted (pinned)
European Redwood 12 thick x 20 wide 510** 4
Threshold Non combustible ? ? ?
** Nominal density
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Intumescent materials
Make/type Size (mm) Location Key to figures
Leaf edge None fitted ? ? ?
Frame reveal Lorient Polyproducts Ltd LP2004 Type 617
20 x 4 Fitted 12mm from the exposed face, in the frame reveal
5
Glazing perimeter – both glazing panels
Mann McGowan Pyroglaze 30
10 x 3 Fitted between the glass and bead on both faces
6
Norseal Firewizard Intumescent Acrylic Mastic
Nominally 3 thick
Fitted around the glazing aperture between the glazing beads
7
Additional intumescent protection and interruptions by hardware
Make/type Size (mm) Location Key to figures
Around hinges Fully interrupted ? Hinge fully interrupts seal in frame reveal
?
Under hinge blades Interdens 1 thick Fitted under the hinge blade on frame and leaf
?
Hardware
Make/type Size (mm) Location Key to figures
Hinge 2No. Royde and Tucker H101 lift off type hinge
100 x 35 (blade size)
Fitted 150mm and 1080mm from the head of the leaf`
8
Closer # None fitted ? ? ?
Latch None fitted ? ? ?
# The leaf was wired closed up to 10 minutes into the test to simulate the fitting of a self closing device
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Glazing – glazing panel A
Make/type Size (mm) Location Key to figures
Glass Express Toughening Ltd Pyro?EX30
10 thick Fitted 140mm from the leaf head, 65mm from the hanging edge of the leaf
9
Sight size ? 988 high x 486 wide
? ?
Overall aperture size
? 1008 high x 506 wide
? ?
Expansion allowance
? 3 all round ? ?
Beading Sapele (nominal density 640kg/m
3)
19 high x 23 deep with a 9 x 9 bolection return and a 15º chamfer
Fitted around the glazing aperture on both faces
10
Beading fixings Steel pins 40 long Fitted 50mm from corners at 150mm centres at 45º to the face of the glass
11
Glazing – glazing panel B
Make/type Size (mm) Location Key to figures
Glass Express Toughening Ltd Pyro?EX30
6 thick Fitted 140mm from the leaf head, 65mm from the closing edge of the leaf
12
Sight size ? 990 high x 487 wide
? ?
Overall aperture size
? 1010 high x 507 wide
? ?
Expansion allowance
? 3 all round ? ?
Beading Sapele (nominal density 640kg/m
3)
19 high x 25 deep with a 9 x 9 bolection return and a 15º chamfer
Fitted around the glazing aperture on both faces
13
Beading fixings Steel pins 40 long Fitted 50mm from corners at 150mm centres at 45º to the face of the glass
14
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Test conditions
The furnace temperature was measured using the average of 5No furnace thermocouples. The temperature and pressure were controlled to the conditions outlined in BSEN 1363 ? 1: 1999.
The pressure was maintained at 10.6 ±3 Pa at the pressure probe 1m from the furnace floor level, equating to 13.6Pa at the head of the specimen to simulate a leaf height of 2.1m. The ambient temperature of the laboratory at the start of the test was 11°C.
The temperature of the unexposed face of the specimen was measured by means of three thermocouples measuring average leaf temperature, five thermocouples measuring maximum leaf temperature 100mm from visible leaf edge, five thermocouples fixed to the frame and two thermocouples fixed to each glazing panel. The thermocouple positions are shown in figure 3 of the Appendix. The temperatures were recorded and are shown graphically below:
Test results
The following data and observations were recorded during the test.
Furnace temperature curve
°C
Time minutes
0
200
400
600
800
1000
0 10 20 30 40 50
Mean furnace temperature (blue line)
BSEN temperature curve (green line)
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Unexposed face temperature curves
°C
Time minutes
0
50
100
150
200
250
0 10 20 30 40 50
Maximum glass temperatures
°C
Time minutes
0
200
400
600
800
0 10 20 30 40 50
Panel B
Maximum leaf temperature
Average leaf temperature
Maximum frame temperature
Panel A
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Radiation
A water cooled heat flux meter was positioned central to the leaf at mid height of the specimen 1m away from the specimen. The total heat flux is shown graphically below.
KW
/m2
Time minutes
0
2
4
6
8
10
0 10 20 30 40 50
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Observations
All comments relate to the unexposed face unless otherwise specified.
Time
(minutes)
Comments
0.00 Test started. 0.50 There is smoke issuing from the leaf/frame perimeter gaps. 02.30 Glazing panel A, there is smoke issuing from the perimeter of the glazing. 04.30 Both glazing panels, exposed face, the intumescent is starting to react around
the perimeter of the glazing.
07.30 Glazing panel A, the glass has distorted approximately 5mm, opening a gap between both side beads.
10.30 Glazing panel B, the glass has distorted approximately 5mm, opening a gap
between both side beads. 11.40 Glazing panel B, there is smoke issuing from the top left corner of the glazing
panel. 12.00 Glazing panel A, the intumescent at the top of the glazing panel is starting to
react. 12.30 Glazing panel B, the intumescent at the perimeter of the glazing panel has
reacted and sealed the gaps at both side beads. 13.30 Glazing panel B, there is an increase in the level of smoke issuing from the
perimeter of the glazing. 14.00 Glazing panel A, the intumescent at the perimeter of the glazing has reacted
and sealed the gaps on both side beads. 15.00 Glazing panel A, there is smoke issuing from the perimeter of the glazing. 15.30 Glazing panel A, exposed face, sections of the top bead are falling away. 17.00 Glazing panel B, exposed face, sections of the top bead are falling away. 17.30 There is discolouration at the top hanging corner of the leaf. 18.00 There is discolouration at both top glazing beads. 19.00 Exposed face, sections from all the glazing beads are falling away. 20.30 There is an increase in the level of smoke issuing from the perimeter of both
glazing panels.
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22.50 There is discolouration to the leaf, above both glazing panels. 24.00 Exposed face, the glazing beads have now completely fallen away. 26.30 Both glazing panels, there is further discolouration of the top glazing beads. 28.20 Both glazing panels, there is discolouration of the leaf at both sides of the
glazing. 29.45 Both glazing panels, there is discolouration of the bottom glazing beads. 32.00 Both glazing panels, there is smoke issuing from behind the top glazing beads. 34.00 Both glazing panels, there is charring of the top glazing beads. 37.30 Both glazing panels, there is smoke issuing from behind all glazing beads. 40.30 Glazing panel B, there is a glow visible at the top glazing bead. 41.00 Glazing panel B, there is intermittent flaming from the top of the glazing. 41.25 Glazing panel B, there is flaming for in excess of ten seconds from the top
bead. 42.50 Glazing panel A, there is a glow visible at the top glazing bead. 43.20 Test terminated.
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Photographs Start of test
After 10 minutes
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After 20 minutes
After 30 minutes
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After 36 minutes
After 41 minutes
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Appendix # figures 1 to 3