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A 3-D Model for Evaluating the Residual Stress Field Due to Swage Autofrettage

机译:用于评估型锻自残残余应力场的3-D模型

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摘要

In order to maximize the performance of modern gun barrels in terms of strength-to-weight ratio and total fatigue life, favorable compressive residual stresses are introduced to the inner portion of the barrel, commonly by the autofrettage process. There are two major autofrettage processes for overstraining the tube: the hydrostatic, and the swage. There are several theoretical solutions for hydrostatic autofrettage, based on Lame's solution and the von Mises or Tresca yield criteria. The residual stress field due to hydraulic autofrettage is treated as an axisymetric, two-dimensional problem solved in terms of the radial displacement solely. Once the Bauschinger effect was included in these models they yield very realistic results. Unlike in the case of hydraulic autofrettage, swage autofrettage needs to be modeled by a three-dimensional model. The present analysis suggests a new 3-D axisymmetric model for solving the residual stress field due to swage autofrettage in terms of both the radial and the axial displacements. The axisymetric equilibrium equations are approximated by finite differences and solved then by Gauss-Seidel method. Using the new computer code the stresses, the strains, the displacements and the forces are determined. A full-scale instrumented swage autofrettage test was conducted and the numerical results were validated against the experimental findings. The calculated strains, the permanent bore enlargement, and the mandrel pushing force were found to be in very good agreement with the measured values.
机译:为了在强度/重量比和总疲劳寿命方面最大化现代枪管的性能,通常通过自动强化工艺将有利的压缩残余应力引入枪管的内部。有两种主要的自动玻璃钢过应力处理方法:静水压和型锻。基于Lame's解和von Mises或Tresca屈服准则,有几种理论上的静液压自紧解决方案。水力自紧导致的残余应力场被视为一个轴心二维问题,仅通过径向位移即可解决。一旦在这些模型中包括了鲍辛格效应,它们就会产生非常逼真的结果。与液压自紧情况不同,型锻自紧情况需要通过三维模型进行建模。本分析提出了一种新的3-D轴对称模型,用于解决由于型锻自紧而造成的残余应力场的径向和轴向位移。通过有限差分近似轴对称平衡方程,然后通过高斯-塞德尔方法求解。使用新的计算机代码确定应力,应变,位移和力。进行了全尺寸的型锻自紧试验,并根据实验结果验证了数值结果。发现计算出的应变,永久孔扩大和心轴推力与测量值非常吻合。

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