...
首页> 外文期刊>International Journal of Solids and Structures >Structural behavior of solid expandable tubular undergoes radial expansion process - Analytical, numerical, and experimental approaches
【24h】

Structural behavior of solid expandable tubular undergoes radial expansion process - Analytical, numerical, and experimental approaches

机译:固体膨胀管的结构行为经历径向膨胀过程-分析,数值和实验方法

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Today's structures have to meet increasingly rigorous requirements during operation. The economic and human costs of failure during service impose a great responsibility on organizations and individuals who develop new products as well as those who select/integrate products in a final engineering design. A crucial aspect for successful product development and/or inclusion is the careful selection of the best material(s), derived from an informed awareness of the capabilities and opportunities afforded by all candidate materials, together with a design that takes full benefit of those competencies. Thick-wall tubular is an example where all these issues are playing a major role in deciding their industrial applications. Given for their desirable features of high strength and geometrical shape, they are widely used in aerospace, marine, military, automotive, oil and gas, and many other fields. This paper focuses on developing analytical solution to investigate the structural response of thick-wall tubulars undergo plastic deformation due to expanding them using a rigid mandrel of conical shape. Volume incompressible condition together with the Levy-Mises flow rule were used to develop the equations which relate the expansion ratio of the tubular to the length and thickness variations. Besides, Tresca's yield criterion was used to include the plastic behavior of the tubular material. Further to this, a numerical model of the tubular expansion process was also developed using the commercial finite element software ABAQUS. Experiments of tubular expansion have been conducted using a full-scale test-rig in the Engineering Research Laboratory at Sultan Qaboos University to validate the analytical and numerical solutions. The developed analytical and numerical models are capable of predicting the stress field in the expansion zone, the force required for expansion, as well as the length and thickness variations induced in the tubular due to the expansion process. Comparison between analytical, experimental, and simulation results showed that a good agreement has been attained for various parameters.
机译:当今的结构在操作过程中必须满足日益严格的要求。服务期间发生故障所造成的经济和人力成本,对开发新产品的组织和个人以及在最终工程设计中选择/集成产品的组织和个人负有重大责任。成功开发和/或包容产品的一个关键方面是精心选择最佳材料,这种材料源于对所有候选材料提供的功能和机会的充分了解,以及充分利用这些能力的设计。厚壁管就是一个例子,其中所有这些问题在决定其工业应用方面都起着重要作用。由于具有高强度和几何形状的理想特性,它们被广泛用于航空航天,海洋,军事,汽车,石油和天然气以及许多其他领域。本文着重于开发分析解决方案,以研究由于使用圆锥形刚性心轴使它们膨胀而导致塑性变形的厚壁管的结构响应。体积不可压缩的条件与Levy-Mises流动规则一起用于建立将管的膨胀率与长度和厚度变化相关的方程。此外,使用Tresca的屈服准则包括管状材料的塑性行为。除此之外,还使用商业有限元软件ABAQUS开发了管状膨胀过程的数值模型。苏丹卡布斯大学工程研究实验室使用大型试验台进行了管状膨胀实验,以验证分析和数值解的有效性。所开发的分析模型和数值模型能够预测膨胀区域中的应力场,膨胀所需的力以及由于膨胀过程而在管状物中引起的长度和厚度变化。分析,实验和仿真结果之间的比较表明,对于各种参数已经获得了很好的一致性。

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