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Effect Residual Stress on Material Hardness by Finite Element Simulation during the Process of High Speed Cutting

机译:高速切削过程中有限元模拟对材料硬度的影响

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Residual stresses induced during the process of high speed cutting are very critical due to safety and corrosion resistance. Based on the nonlinear finite element code DEFORM, thermodynamic couple model of residual stress was built. Effect distribution of residual stresses on three different materials physical properties of hardness are analyzed by using the finite element model during the process of high speed cutting. The results show that metal material hardness is the key factors to residual stress. When materials' hardness is higher, residual tensile stress is easy to form on the machined surface due to high cutting temperature, such as hardened steel SKD11(HRC=62). To lower hardness material, residual compressive stress is generated on the machined surface for plastic deformation, such as softer materials 7075A1 (HRC=23).
机译:由于安全性和耐腐蚀性,在高速切割过程中诱导的残余应力是非常关键的。基于非线性有限元码变形,建立了残余应力的热力学耦合模型。通过在高速切割过程中使用有限元模型,分析了在高速切割过程中的有限元模型分析了残余应力对三种不同材料的物理性质。结果表明,金属材料硬度是残余应力的关键因素。当材料的硬度较高时,由于高切削温度,例如硬化钢SKD11(HRC = 62),在加工表面上易于形成残留的拉伸应力。为了降低硬度材料,在加工表面上产生残余压缩应力,用于塑性变形,例如更柔软的材料7075a1(HRC = 23)。

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