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A finite element simulation and an experimental study of autofrettage for strain hardened thick-walled cylinders

机译:应变硬化厚壁圆筒的有限元模拟和自动强化试验研究

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The effect of the autofrettage process on high pressure cylinders has been investigated. Both numerical and experimental techniques have been used for the investigation. It was observed that the best autofrettage pressure for raising the pressure capacity of the cylinder was the pressure P_(y2) which is just sufficient to bring the outer surface of the cylinder to yielding. Pressures higher than P_(y2) will have the inverse effect. It was found that the number of autofrettage stages has no effect on pressure capacity. It was also shown that to reduce the flow stress within the wall of the cylinder, the autofrettage pressure must be greater than the working pressure. For pressures lower than working pressure, the flow stress remains unchanged. A close agreement was found between the P_(y2) calculated from the Xioying and Gangling relation and with those obtained from experiments and numerical simulations.
机译:已经研究了自动玻璃化工艺对高压缸的影响。数值和实验技术都已用于研究。已经观察到,用于提高气缸的压力容量的最佳自紧压力是压力P_(y2),该压力刚好足以使气缸的外表面屈服。高于P_(y2)的压力将产生反作用。发现自动强化阶段的数量对压力容量没有影响。还显示出,为减小气缸壁内的流动应力,自增强压力必须大于工作压力。对于低于工作压力的压力,流应力保持不变。在通过Xioying和Gangling关系计算出的P_(y2)与从实验和数值模拟获得的P_(y2)之间发现了一个紧密的一致性。

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