Fracture toughness measurement testing

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FRACTURE TOUGHNESS FRACTURE TOUGHNESS & & its MEASUREMENT its MEASUREMENT JAVED ALAM 10MT10015

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This is a ppt which will give u a better understanding of fracture toughness of a material in short time. It also has great exposure to testing method that we do in our laboratory class in undergraduate courses. So good luck with slide.

Transcript of Fracture toughness measurement testing

Page 1: Fracture toughness measurement testing

FRACTURE FRACTURE TOUGHNESS & TOUGHNESS & its MEASUREMENT its MEASUREMENT

JAVED ALAM10MT10015

Page 2: Fracture toughness measurement testing

What is fracture toughness?It is a property which describes the ability of a material with a crack to resist fracture.

The linear-elastic fracture toughness of a material is determined by Stress intensity factor(K) at which a thin crack in the material begins to grow, denoted by KIC

Plastic-elastic fracture toughness is denoted byJIC

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Fracture toughness is a quantitative way of expressing a material’s resistance to brittle fracture when a crack is present.

*If a material has much fracture toughness it will probably undergo ductile fracture.

*Brittle fracture is very characteristic of materials with less fracture toughness.

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Stress intensity factor (K):

It is used to predict the stress state near the tip of a crack caused by a remote load or residual stresses.

It depends on nominal stress, and crack geometry: K = f(, a); It also depends on the location of crack, magnitude and distribution of stresses

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Fracture Toughness Fracture Toughness TestsTests

A test sample is fatigue loaded to extend the machined notch by a prescribed amount.A clip gage extensometer is placed at the mouth of crack to monitor displacement.

If a lower toughness level is achieved with a thicker sample, then the value obtained initially is not valid.

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Type of Specimens for Fracture Toughness Tests

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Clip Gage Clip Gage ExtensometerExtensometer

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Experimental setup

The sample was Perspex

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Group-2

Max. load= 85.11 N

Extension at break=6.98mm

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Flexural Tests with Pre-cracked Specimens

For three point bending: (D = S/2) = KIC = Y.(3PS/2W2t).a

Y = 1.93-3.07(a/w)+13.66(a/w)2-23.98(a/w)3+25.22(a/w)4

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Calculation of KIC

Width=10.88 mm, t=5.7mm , a(crack length)=4.46mm , S=44 mm

(a/w)=0.41Y=2.027

Now P= Pmax=85.11 N

Substituting the value of P:

KIC = 1.143 MPa · m1/2

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Group-1

a= 4.7166

a/w = 0.414

Y=2.039

KIC = 1.086 MPa · m1/2

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Group-3 Crack length=5.066mm

Group -4

KIC =1.231 MPa · m1/2

Crack length=6.05mm

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Thank you