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Parameters optimization design of quenching and partitioning for best combination between strength and ductility using orthogonal experimental design 被引量:2
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作者 ming-qing liao Zhong-hong Lai +5 位作者 Aorigele Bao Yong Liu Dan-ni Yang Tian-yi Han Jing-chuan Zhu Rong-da Zhao 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2019年第10期1088-1095,共8页
Quenching and partitioning(Q&P)which provides a balance between toughness and strength is a promising heat treatment in iron and steel industry.However,there are three parameters(quenching temperature,partitioning... Quenching and partitioning(Q&P)which provides a balance between toughness and strength is a promising heat treatment in iron and steel industry.However,there are three parameters(quenching temperature,partitioning temperature and partitioning time)which affect the properties dramatically.As a result,it remains a challenge to get the best parameters in a low-cost way for Q&P process.Here,the orthogonal experimental design combined with a local optimization was adopted to optimize the quenching and partitioning parameters of 65Si2MnWA steel.By using this method,the combination between strength and ductility was optimized;meanwhile,the number of experiments was reduced significantly.When treated by quenching at 180℃followed by partitioning at 330℃for 20 min,the steel reached the best combination between strength and ductility.In detail,the product of ultimate tensile strength and reduction in area was 1.36 times(from 64.9 to 88.8 GPa%)that treated by quenching and tempering.In addition,owing to the grain refinement,the strength and ductility increase simultaneously.Specifically,the reduction in area increased by 27.4%(from 35.8%to 45.6%)coupled with a little improvement in ultimate tensile strength(7.4%). 展开更多
关键词 PARAMETER optimization DESIGN QUENCHING and partitioning ORTHOGONAL experimental DESIGN Mechanical PROPERTY 65Si2MnWA steel
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