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Determination Of Critical Damage Value Of Ti600 Alloy Based On Normalized Cockcroft & Latham Ductile Fracture Criterion

Journal of Materials Engineering(2019)

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Abstract
Critical damage value of material was obtained by physical experiment combined with a finite element software. True stress-strain curve of Ti600 alloy was studied by high temperature tensile test at 1010 degrees C and 0. 001s(-1) A simplified Normalized Cockcroft gz. Latham ductile fracture criterion was used, in which (epsilon) over bar and (sigma) over bar were substituted by epsilon(1) and sigma(UTS), respectively. The critical damage value of Ti600 alloy on the above experimental condition was calculated and then was embedded in a finite element software to verify its accuracy by analysing high temperature tensile process. The result shows that the critical damage value of Ti600 alloy at 1010 degrees C and 0. 001s(-1) equals 0. 643. By the finite element analysis, the crack initiation and propagation are predicted well and computational variety law of minimum cross sectional area is basically agreed with the experimental law. Hence, the critical damage value of Ti600 alloy obtained by combining a Normalized Cockcroft & Latham ductile fracture criterion with a finite element software is fairly precise.
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Key words
high temperature tension, physical experiment, damage prediction, finite element analysis
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