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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Estimation of residual stress of metal material without plastic plateau by using continuous spherical indentation
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Estimation of residual stress of metal material without plastic plateau by using continuous spherical indentation

机译:用连续球形压痕估计塑料高原的金属材料残余应力

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This paper presents a method to allow the measurement of residual stress (sigma(r)), yield strength (sigma(y)) and strain hardening exponent (n) of metal materials through continuous spherical indentation test. Based on the analysis of finite element simulation results, a new fitting equation between the indentation response parameter and the material properties was given in this paper. The influence of friction and the mesh size of finite element model was also discussed when the residual stress is included in the material. Only three load values are required at each different indentation depths, and the three unknown parameters (sigma(r), sigma(y) and n) can be obtained through corresponding dimensionless functions based on the reverse analysis. Finally, the validation of the method presented in this paper was verified by simulating the material (SUS304) with the known material parameters in the literature. Results show that the method proposed in this paper can accurately predict the residual stress, yield strength and strain hardening exponent of metal materials from the indentation load-depth curve.
机译:本文通过连续球形缩进试验呈现允许测量残留应力(Sigma(R)),屈服强度(Sigma(Y))和应变硬化指数(N)的方法。基于有限元模拟结果的分析,本文给出了压痕响应参数和材料特性的新配合方程。还讨论了摩擦力和有限元模型的网眼尺寸的影响,当剩余应力包括在材料中时也讨论。在每个不同的压痕深度中只需要三个负载值,并且可以通过基于反向分析通过相应的无量纲功能获得三个未知参数(Sigma(R),Sigma(Y)和N)。最后,通过在文献中的已知材料参数模拟材料(SUS304)来验证本文中呈现的方法的验证。结果表明,本文提出的方法可以精确地预测压痕载荷深度曲线的金属材料的残余应力,屈服强度和应变硬化指数。

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