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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Design of two-pass swage autofrettage processes of thick-walled cylinders by computer modeling
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Design of two-pass swage autofrettage processes of thick-walled cylinders by computer modeling

机译:计算机建模厚壁圆柱体双通道自动调节过程的设计

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An ever-increasing industrial demand for pressurized thick-walled cylindrical components drives research and practice to increase their strength–weight ratio, extend their fatigue life, or to increase their pressure-carrying capacity. This can be achieved through an energy-efficient and safe two-pass swage autofrettage process by generating a favorable compressive residual hoop stress field in the inner layer of the cylinder prior to use. In this paper, a two-pass swage autofrettage process of a thick-walled cylinder was systematically investigated based on finite element analysis. A 105?mm cannon barrel made of high-pressure vessel steel ASTM A723-1130 was taken as a case study. An elastic nonlinear-hardening plastic material model with the Bauschinger effect was adopted. The mandrel’s axial pushing forces during swage autofrettage processes were analyzed. A 30–35% reduction in mandrel’s pushing forces has been achieved in the two-pass process. The residual stresses in swage autofrettaged thick-walled cylinders were predicted. The results of computer modeling were in agreement with neutron diffraction measurements. A maximum 18% reduction in von Mises stress in the swage autofrettaged thick-walled cylinders under an elastic-limit working pressure was identified. A maximum 31% increase in pressure-carrying capacity for the swage autofrettaged thick-walled cylinders was revealed. The optimum radial interference was proposed. Results from the two-pass process were compared with those from the single-pass process.
机译:对加压厚壁圆柱组件的不断增加的工业需求驱动了研究和实践,以提高它们的强度重量比,延长其疲劳寿命,或增加其压力承载力。这可以通过在使用之前通过在圆筒的内层中产生有利的压缩残余箍应力场来实现通过节能和安全的双通过的自动化过程来实现。本文基于有限元分析,系统地研究了厚壁圆柱体的双通扫描自动调节过程。通过高压容器钢ASTM A723-1130制成的105毫米炮弹作为案例研究。采用具有Bauschinger效应的弹性非线性硬化塑料材料模型。分析了棉芯架的轴向推力在SWAGE自动提样过程中。在双通过程中取得了30-35%的心轴推力的推动力。预先预测SWACE自动反射率厚壁圆柱体的残余应力。计算机建模的结果与中子衍射测量一致。在弹性限制工作压力下鉴定了Swage自动分流厚壁圆柱体中的最大18%的von误判压力。揭示了最大31%的携带厚壁圆柱体的承载能力增加。提出了最佳的径向干扰。将双通过程的结果与单通过程中的结果进行比较。

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