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Cyclic stress-strain relationship of 63Sn37Pb solder under biaxial proportional and non-proportional loading

机译:63Sn37Pb焊料在双轴比例和非比例载荷下的循环应力-应变关系

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摘要

Uniaxial, torsional and multiaxial non-proportional loading tests are carried out at room temperature. With the comparison of the load and torque response between proportional and three non-proportional loading conditions, it can be concluded that the materials exhibit non-additional cyclic hardening effect under non-proportional loading compared with proportional loading. A 3-D finite element model of tin-lead solid specimen is established to verify the validity of shear stress approximation on the surface of solid specimen under proportional and non-proportional loading, and a completely strain control is accomplished in finite element model by using soft sensors. The accurate correlation of load-strain and torque-strain curve to experiment indicates that an isotropic and non-linear kinematic hardening model, Chaboche model, can be implemented to describe plastic deformation. The maximum error of shear stress calculation between mathematic approximation and the stress obtained from finite element analysis under various loading conditions is within 7 percent, which proves that the approximate expression for shear stress is feasible under both proportional and non-proportional loading.
机译:单轴,扭转和多轴非比例载荷测试在室温下进行。通过比较比例和三种非比例载荷条件下的载荷和扭矩响应,可以得出结论:与比例载荷相比,材料在非比例载荷下表现出非附加的循环硬化作用。建立了锡铅固体试样的三维有限元模型,以验证在比例和非比例载荷下固体试样表面的切应力近似方法的有效性,并通过使用有限元模型实现了完全应变控制。软传感器。载荷-应变曲线和扭矩-应变曲线与实验的精确关联表明,可以采用各向同性和非线性的运动硬化模型Chaboche模型来描述塑性变形。在各种载荷条件下,数学逼近与有限元分析获得的应力之间的最大剪应力计算误差在7%之内,这证明了在比例载荷和非比例载荷下,剪应力的近似表达式都是可行的。

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