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Necking of Q&P Steel during Uniaxial Tensile Test with the Aid of DIC Technique 被引量:11
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作者 DING Lei LIN Jianping +2 位作者 MIN Junying PANG Zheng YE You 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第3期448-453,共6页
A lot of research has been focused on the necking process during the plastic deformation of sheet metals, but the localized necking is rarely distinguished form diffused necking by experiments, due to the limit of mea... A lot of research has been focused on the necking process during the plastic deformation of sheet metals, but the localized necking is rarely distinguished form diffused necking by experiments, due to the limit of measurement equipment and method. Quenching and Partitioning (Q&P) steel is a 3rd generation advanced high strength steel (AHSS). Its good combination of high strength and ductility ensures potential application in automobile industry. Uniaxial tensile tests of QP980 steel sheet at five strain rates are performed to investigate the necking process and the effect of strain rate on necking behavior of Q&P steel. Digital image correlation (DIC) method is applied during tensile tests, and evolutions of major strain, minor strain and normal strain distributions along gauge section of the tensile specimens are obtained. The diffused and localized necking strains are determined according to SWIFT necking theory and HILL necking theory respectively. The test results indicate that with the increasing of strain rate in the investigated range, the diffused necking strain decreases from 0.152 to 0.120 and localized necking strain decreases from 0.245 to 0.137. Meanwhile, the difference of the two strains decreases form 0.096 to 0.017. Thus it can be concluded that strain rate has an influence on both necking strains during the deformation of QP980 steel sheet. Diffused and localized necking strains are determined by uniaxial tensile tests with the aid of DIC technique and the effect of strain rate on necking strains is evaluated. 展开更多
关键词 Q&P steel strain rate DIC SWIFT necking theory hill necking theory
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基于有限元仿真的左半边成形极限图建立方法
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作者 王东 王辉 《机械制造与自动化》 2005年第3期74-76,共3页
有限元仿真中,凸模与板料接触力出现峰值的时刻,板料上变薄量最大单元的邻近单元应变即是材料的缩颈极限应变,通过改变试件形状及尺寸就可以得到在不同应变状态下的缩颈极限应变。把这些极限应变点在二维应变空间里连成曲线,即为用有限... 有限元仿真中,凸模与板料接触力出现峰值的时刻,板料上变薄量最大单元的邻近单元应变即是材料的缩颈极限应变,通过改变试件形状及尺寸就可以得到在不同应变状态下的缩颈极限应变。把这些极限应变点在二维应变空间里连成曲线,即为用有限元仿真方法得到的材料成形极限图(forming limits diagram,简称为FLD)。用该方法得到的FLD与按照GB/T15825.8—1995金属薄板成形性能与试验方法:成形极限图(FLD)试验利用半球形凸模拉伸试件测得的材料FLD符合程度良好。 展开更多
关键词 板料成形 成形极限图 hill集中失稳理论 有限元仿真
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