Ashwin A. Hattiangadi, Ph.D.

Affiliations: 
2004 Purdue University, West Lafayette, IN, United States 
Area:
Mechanical Engineering, Materials Science Engineering, Aerospace Engineering
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"Ashwin Hattiangadi"

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Thomas H. Siegmund grad student 2004 Purdue
 (Thermomechanical cohesive zone models for analysis of composites failure under thermal gradients and transients.)
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Publications

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Yang BJ, Hattiangadi A, Li WZ, et al. (2010) Simulation of steel microstructure evolution during induction heating Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 527: 2978-2984
Sherman DH, Yang BJ, Catalina AV, et al. (2007) Modeling of microstructure evolution of athermal transformation of lath martensite Materials Science Forum. 539: 4795-4800
Hattiangadi A, Siegmund T. (2005) A numerical study on interface crack growth under heat flux loading International Journal of Solids and Structures. 42: 6335-6355
Hattiangadi A, Siegmund T. (2005) An analysis of the delamination of an environmental protection coating under cyclic heat loads European Journal of Mechanics - a/Solids. 24: 361-370
Hattiangadi A, Bandyopadhyay A. (2004) Strength Degradation of Nonrandom Porous Ceramic Structures under Uniaxial Compressive Loading Journal of the American Ceramic Society. 83: 2730-2736
Hattiangadi A, Bandyopadhyay A. (2004) Effects of designed tubular porosity on compressive strengths of honeycomb ceramics Journal of Materials Science. 39: 4575-4586
Hattiangadi A. (2004) A thermomechanical cohesive zone model for bridged delamination cracks Journal of the Mechanics and Physics of Solids. 52: 533-566
Siegmund T, Hattiangadi A. (2003) A Study of Bridged Delaminations in High Temperature Laminates Under Heat Flux Loading Materials. 315-317
Hattiangadi A, Siegmund T. (2002) Bridging effects in cracked laminates under thermal gradients Mechanics Research Communications. 29: 457-464
Hattiangadi A, Bandyopadhyay A. (2000) Modeling of multiple pore ceramic materials fabricated via fused deposition process Scripta Materialia. 42: 581-588
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