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Factors affecting diffusion rates .Concentration Gradient—driving for .Diffusing species & host material .Temperature

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Page 1: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Factors affecting diffusion rates

1. Concentration Gradient—driving force

2. Diffusing species & host material

3. Temperature

Page 2: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Diffusing Host Metal T(oC) D (m2/s)speciesFe -Fe (BCC) 500 3.0 x 10-21

Fe -Fe (BCC) 900 1.8 x 10-15

Fe -Fe (FCC) 500 1.1 x 10-17

Fe -Fe (FCC) 900 7.8 x 10-16

Which diffuses faster?A.Fe through -Fe at 500oCB.Fe through -Fe at 900oCC.Fe through -Fe at 500oCD.Fe through -Fe at 900oC

Page 3: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

How does

diffusion affect material

properties?

Page 4: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Brass =Alloy of Copper and Zinc

Page 5: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Bras

sCopp

erZinc

Brass = Stronger than either Copper or ZincExplanation in Chapter 7

Page 6: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

City Steel Heat Treating Co.

Solid Diffusion Hardening:Case Hardening Hard Case w/ tough core

Low-C Steels (> 0.30% C):

Carburizing,

Nitriding,

Carbonitriding

Carburized depth of 0.030” to 0.050” in 4 hours @ 1700°F

Page 7: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

What happens in the case: Steel = C + Fe

• Add more C to the outer surface.

• Interstitial C imposes lattice strains in Fe

• Strains near dislocations can bind atoms and reduce deformation (see Ch. 7)

Page 8: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Carburizing—Solid Diffusion process

Begin at 1:35–2:40

YouTube: Vacuum Carburizing and Heat treating

Composition & processing affect material properties

Page 9: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Section 6.1-6.3Mechanical Properties of

Metals:

Elastic Deformation:

Stress-Strain behavior

Page 10: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Mechanical Properties:How will the object respond to an applied load (force)?

• Stiffness

• Ductility

• Strength

• Toughness

• Hardness

Page 11: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Tension

Compression

Shear

Page 12: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Tensile Test

Page 13: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Tensile Test

Page 15: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Ductile Failure: Tensile Test of AlMgSi alloy

Page 16: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Brittle Failure: Tensile test of Nodular Graphite Cast Iron

Page 17: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Principles of

Stress and

Strain

Page 18: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

What is it good for?

Page 19: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

• Normalize tensile tests• Measure intensity of a load

Stress is used to:

Page 20: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

The

Ultimate Chair Cushion

Design

Page 21: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Types of Deformation

•Elastic•Plastic

Page 22: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Elastic

Deformation:

Recoverable

Page 23: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Elastic

By Design

Page 24: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Elastic deformation of Metals

Motorcycle

Shock absorber

http://upload.wikimedia.org/wikipedia/commons/thumb/1/10/R75-rear-shock.jpg/220px-R75-rear-shock.jpg

Page 25: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Elastic deformation of Ceramics

Fiber optic cable

Page 26: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Elastic deformation of Polymers

Shooting a

rubber band

http://rickischultz.files.wordpress.com/2009/09/rubber-band.jpg

Page 27: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Elastic deformation of Composites

Carbon-fiber

prosthetic legs

http://info.rogersathletic.com/get-strong/bid/62010/Muscle-Tendon-Springs

Page 28: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Elastic deformation of Composites

Diving Board

Page 29: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Elastic deformation of Composites

Diving Board

Page 30: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Quantifying Elastic

Deformation

Page 31: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Hooke’s Law

• Elastic deformation–Recoverable:

= E

• Stiffness – E – resistance to elastic deformation

Page 32: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature
Page 33: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Brittle Failure: Tensile test of Nodular Graphite Cast Iron

Page 34: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

YouTube

REAL Golf Ball hitting steel in slow motion by the USGA - YouTube

Page 35: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Comparison of E values

Page 36: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Plastic

Deformation:

Permanent

Page 37: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

plastic (adj.)

1630s, "capable of shaping or molding"

from L. plasticus, from Gk. plastikos "able to be molded, pertaining to molding,"

Page 38: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

plastic (adj.)

Main modern meaning, "synthetic product made from oil derivatives," first recorded 1909, coined by Leo Baekeland (see bakelite).

Picked up in counterculture slang as an adj. meaning "false, superficial" (1963).

Page 39: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Mechanical Property:Elasticity–recoverable deformation

Paper clip under normal use

Page 40: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Mechanical Property:Plasticity—permanent deformation

Paper clip

under abuse

Page 41: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Plasticity by design

Radial profile segments

Page 42: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Plasticity by accidentStreet lamp damaged during storm

(Brid

gepo

rt,

CN

)

Page 43: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Formed by plastic deformation;Behaves elastically

Binder Clip

Page 44: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Plastic deformation of Metals–Spring shape

Elastic deformation: Shock absorbers

Springs absorb shock transmitted from road to vehicle.

Page 45: Factors affecting diffusion rates 1.Concentration Gradient—driving force 2.Diffusing species & host material 3.Temperature

Plastic Deformation

• Plastic deformation – Permanent

• Yielding – onset of plastic deformation

• Yield strength – Stress at yield (specified amount of strain).