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Improved design of threaded connections by autofrettage in aluminium compounds for cyclic high pressure loading: design calculations and experimental verification

机译:通过铝化合物自增强改善螺纹连接设计,用于循环高压加载:设计计算和实验验证

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摘要

Threaded connections in an aluminium valve body under high internal swelling pressure are investigated. A static straining process called autofrettage leads to an improved fatigue behaviour of the aluminium component, while normally the threaded connections are unloaded during this autofrettage. But by unloading the thread during autofrettage the first loaded thread flank became the weakest point of this valve component. This effect is analyzed with non-linear finite element simulations, FKM guideline for fatigue assessment and by experimental testing. The analytical and experimental parts match very well and it can be shown that a well-designed autofrettage without unloading the threaded connection is helpful for the aluminium thread and extends its fatigue lifetime, as compressive residual stresses and an equalized stress distribution over the thread flanks can be generated. Finally different materials were chosen for the plug or screw and this effect for cyclic loading is shortly analyzed.
机译:研究了铝阀体内高内部膨胀压力下的螺纹连接。称为自动强化的静态应变过程可改善铝部件的疲劳性能,而通常在这种自动强化期间会卸载螺纹连接。但是,通过在自动强化期间卸载螺纹,第一个加载的螺纹齿侧面成为该阀组件的最弱点。通过非线性有限元模拟,疲劳评估的FKM指南和实验测试来分析这种影响。分析部件和实验部件的匹配非常好,可以证明设计得当的自动补强在不卸载螺纹连接的情况下对铝螺纹很有帮助,并延长了其疲劳寿命,因为可以在螺纹侧面上施加压缩残余应力和均衡应力分布被生成。最后,选择了不同的材料作为塞子或螺丝钉,并简要分析了这种对周期性载荷的影响。

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