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Energy consumption for creep fracture of metallic materials
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作者 Robert A.Arutyunyan 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2008年第4期469-472,共4页
The energy conservation law is applied to formulate the ductile and brittle creep fracture criterion for metallic materials. The criterion contains a summary of heat and latent energies. Assuming that the heat energy ... The energy conservation law is applied to formulate the ductile and brittle creep fracture criterion for metallic materials. The criterion contains a summary of heat and latent energies. Assuming that the heat energy is given out so it has no effect on the fracture process, the ductile creep fracture criterion is simplified. To take into account the evaluation of the damage state of materials the compressibility condition is introduced and the brittle creep fracture law is formulated. 展开更多
关键词 ductile and brittle fracture criterion Energy conservation law Heat and latent energies
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Design of microstructure for damage tolerance in high strength steels
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作者 W BLECK S MUENSTERMANN 《Baosteel Technical Research》 CAS 2010年第S1期28-,共1页
With the extensively wide application of advanced high strength steels(AHSS) in various fields for the excellent mechanical properties,the industrial interest on the damage of AHSS is increasing in the recent years.Fo... With the extensively wide application of advanced high strength steels(AHSS) in various fields for the excellent mechanical properties,the industrial interest on the damage of AHSS is increasing in the recent years.For these modern steels,due to the complex microstructure and the relevant deformation mechanisms,the damage concept needs to be reexamined.In this paper,the definition,length scale and different mechanisms of damage are introduced.Both experimental evaluation of damage and the numerical damage models are briefly viewed and compared.The approaches to improve the damage tolerance are given in the framework of damage tolerance design principle. 展开更多
关键词 DAMAGE ductile and brittle fracture MICROSTRUCTURE MODELING multiphase steels
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