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Plasticity-based distortion analysis for fillet-welded thin plate T-joints.

机译:角焊薄板T型接头的基于塑性的变形分析。

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摘要

The characteristic relationship between cumulative plastic strains and angular distortion of fillet welded thin plate T-joints was studied using numerical analysis. A 3D thermo-elastic-plastic analysis incorporating the effects of moving heat and non-linear material properties was performed to obtain the characteristic cumulative plastic strain distributions and angular distortion. The procedure of plasticity-based distortion analysis (PDA) was developed to map each cumulative plastic strain component into elastic models using equivalent thermal strains. PDA determined the quantitative individual angular distortions induced by cumulative plastic strains, demonstrating their contribution to the total angular distortion and the unique relationship between cumulative plastic strains and distortion.; PDA was used to investigate the effects of external restraints and thermal management techniques on the relationship between cumulative plastic strains and angular distortion of T-joints and T-tubular connections, and the limitation of the 2D model application in the distortion analysis of T-joints. It was shown that PDA was a very effective tool in investigating the relationship between cumulative plastic strains and distortion.; The following significant findings were observed in this study. (1) Distortion was uniquely determined under the specified cumulative plastic strain distribution. (2) The transverse cumulative plastic strain produced bend-down angular distortion in T-joints. Vertical and longitudinal components induced relatively small bend-down and bend-up angular distortion, respectively. Most bend-up angular distortion produced by the xy-plane shear cumulative plastic strain existed in and around the welded region. (3) Angular distortion was reduced by increasing the degree of external restraint. External restraint mainly controlled individual angular distortion induced by the transverse cumulative plastic strain. (4) Heat sinking increased angular distortion of T-joints. Heat sinking affected individual angular distortions induced by the nominal components of cumulative plastic strains. (5) TIG pre-heating resulted in the reduction of angular distortion of T-joints. TIG pre-heating mainly controlled individual angular distortion induced by xy-plane shear cumulative plastic strain. (6) Angular distortion in T-tubular connections was induced by the transverse, vertical and xy-plane shear cumulative plastic strains. Heat sinking effectively reduced angular distortion. (7) The relationship between cumulative plastic strains and angular distortion in T-joints obtained from the 2D and 3D models was inherently different.
机译:利用数值分析方法研究了角焊薄板T形接头的累积塑性应变与角变形之间的特征关系。进行了3D热弹塑性分析,该分析综合了运动热和非线性材料特性的影响,以获得特征累积塑性应变分布和角度变形。开发了基于塑性的变形分析(PDA)程序,以使用等效热应变将每个累积的塑性应变分量映射到弹性模型中。 PDA确定了由累积塑性应变引起的定量单个角度变形,证明了它们对总角度变形的贡献以及累积塑性应变与变形之间的独特关系。 PDA用于研究外部约束和热管理技术对T型接头和T型管接头的累积塑性应变与角度变形之间的关系的影响,以及二维模型在T型接头变形分析中的局限性。结果表明,PDA是研究累积塑性应变与变形之间关系的非常有效的工具。在这项研究中观察到以下重要发现。 (1)失真是在指定的累积塑性应变分布下唯一确定的。 (2)横向累积塑性应变在T型接头中产生向下弯曲的角度变形。垂直和纵向分量分别引起相对较小的向下弯曲和向上弯曲角度失真。由xy平面剪切累积塑性应变产生的大多数弯曲角度变形存在于焊接区域内和周围。 (3)通过增加外部约束的程度来减少角度变形。外部约束主要控制由横向累积塑性应变引起的单个角度变形。 (4)散热增加了T型接头的角度变形。散热影响由累积塑性应变的名义分量引起的单个角度变形。 (5)TIG预热减少了T型接头的角度变形。 TIG预热主要控制由xy平面剪切累积塑性应变引起的单个角度变形。 (6)T型管连接的角形变形是由横向,垂直和xy平面剪切累积塑性应变引起的。散热有效地减少了角度畸变。 (7)从2D和3D模型获得的T形接头中累积塑性应变与角度变形之间的关系本质上是不同的。

著录项

  • 作者

    Jung, Gonghyun.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Industrial.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;机械、仪表工业;
  • 关键词

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