...
首页> 外文期刊>International Journal of Pressure Vessels and Piping >A comparison of plastic collapse and limit loads for single mitred pipe bends under in-plane bending
【24h】

A comparison of plastic collapse and limit loads for single mitred pipe bends under in-plane bending

机译:平面弯曲下单斜管弯头的塑性破坏和极限载荷的比较

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents a comparison of the plastic collapse loads from experimental in-plane bending tests on three 90° single un-reinforced mitred pipe bends, with the results from various 3D solid finite element models. The bending load applied reduced the bend angle and in turn, the resulting cross-sectional ovalisation led to a recognised weakening mechanism. In addition, at maximum load there was a reversal in stiffness, characteristic of buckling. This reversal in stiffness was accompanied by significant ovalisation and plasticity at the mitre intersection. Both the weakening mechanism and the post-buckling behaviour are only observable by testing or by including large displacement effects in the plastic finite element solution. A small displacement limit solution with an elastic-perfectly plastic material model overestimated the collapse load by more than 40% and could not reproduce the buckling behaviour. The plastic collapse finite element solution, with large displacements, produced excellent agreement with the experiment. Sufficient experimental detail is presented for these results to be used as a benchmark for analysts in this area. Given the robustness of non-linear solutions in commercial finite element codes and the ready availability of computing resources, it is argued that pressure vessel code developers should now be recommending large displacement analysis as the default position for limit and plastic collapse analyses, rather than expecting engineers to anticipate weakening mechanisms and related non-linear phenomena.
机译:本文介绍了在三个90°单个无筋斜管弯管上进行的实验性平面内弯曲试验所产生的塑性破坏载荷的比较,以及来自各种3D实体有限元模型的结果。施加的弯曲载荷减小了弯曲角度,继而,所产生的横截面椭圆化导致了公认的弱化机理。另外,在最大载荷下,刚度发生了扭转,这是屈曲的特征。刚度的这种逆转伴随着在斜切交点处明显的椭圆化和可塑性。只能通过测试或通过在塑料有限元解决方案中包含较大的位移效应,才能观察到削弱机制和屈曲后行为。一个具有弹性完美塑性材料模型的小位移极限解决方案高估了坍塌载荷40%以上,并且无法重现屈曲行为。具有大位移的塑性塌陷有限元解决方案与实验结果非常吻合。为这些结果提供了足够的实验细节,可以用作该领域分析师的基准。鉴于商用有限元代码中非线性解决方案的鲁棒性和计算资源的现成可用性,有人认为压力容器代码开发人员现在应该建议将大位移分析作为极限和塑性塌陷分析的默认位置,而不是期望工程师预期衰减机制和相关的非线性现象。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号