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Compliant assembly variation analysis of thin-walled structures based on the absolute nodal coordinate formulation

机译:基于绝对节点坐标公式的薄壁结构柔顺装配变化分析

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摘要

Purpose - Thin-walled structures inevitably always have manufacturing deviations, which affects the assembly quality of mechanical products. The assembly quality directly determines the performances, reliability and service life of the products. To achieve the automatic assembly of large-scale thin-walled structures, the sizing force of the structures with deviations should be calculated, and its assembling ability should be studied before assembly process. The purpose of this study is to establish a precise model to describe the deviations of structures and to study the variation propagation during assembly process. Design/methodology/approach - Curved thin-walled structures are modeled by using the shell element via the absolute nodal coordinate formulation. Two typical deviation modes of the structure are defined. The generalized elastic force of shell elements with anisotropic materials is deduced based on a continuum mechanics approach to account for the geometric non-linearity. The quasi-static method is introduced to describe the assembly process. The effects of the deviation forms, geometrical parameters of the thin-walled structures and material properties on assembly quality are investigated numerically. Findings - The geometric non-linearity of structure and anisotropy of materials strongly affect the variation propagation and the assembly quality. The transformation and accumulation effects of the deviations are apparent in the multiple assembly process. The constraints on the structures during assembly can reduce assembly deviation. Originality/value - The plate element via the absolute nodal coordinate formulation is first introduced to the variation propagation analysis. Two typical shape deviation modes are defined. The elastic force of structures with anisotropic materials is deduced. The variation propagation during the assembly of structures with various geometrical and material parameters is investigated.
机译:目的-薄壁结构不可避免地总是会有制造偏差,从而影响机械产品的组装质量。组装质量直接决定产品的性能,可靠性和使用寿命。为了实现大型薄壁结构的自动装配,应计算有偏差的结构的施力,并在装配过程之前研究其装配能力。这项研究的目的是建立一个精确的模型来描述结构的偏差并研究装配过程中的变化传播。设计/方法/方法-使用壳单元通过绝对节点坐标公式对弯曲的薄壁结​​构进行建模。定义了两种典型的结构偏差模式。基于连续力学方法,考虑了几何非线性,推导了具有各向异性材料的壳单元的广义弹性力。引入准静态方法来描述组装过程。数值研究了偏差形式,薄壁结构的几何参数和材料性能对装配质量的影响。发现-结构的几何非线性和材料的各向异性极大地影响变化传播和装配质量。偏差的转换和累积效应在多重组装过程中显而易见。组装期间对结构的约束可以减少组装偏差。独创性/值-首先通过绝对节点坐标公式将板单元引入变化传播分析。定义了两种典型的形状偏差模式。推导了具有各向异性材料的结构的弹力。研究了具有各种几何和材料参数的结构在组装过程中的变化传播。

著录项

  • 来源
    《Assembly Automation》 |2018年第2期|125-141|共17页
  • 作者单位

    Shanghai Key Laboratory of Digital Manufacture for Thin-walled Structures, Shanghai Jiao Tong University, Shanghai, China;

    Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University, Shanghai, China and Shanghai Key Laboratory of Digital Manufacture for Thin-walled Structures, Shanghai Jiao Tong University, Shanghai, China;

    Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University, Shanghai, China and Shanghai Key Laboratory of Digital Manufacture for Thin-walled Structures, Shanghai Jiao Tong University, Shanghai, China;

    Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University, Shanghai, China and Shanghai Key Laboratory of Digital Manufacture for Thin-walled Structures, Shanghai Jiao Tong University, Shanghai, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Absolute nodal coordinate formulation; Anisotropic materials; Bending and torsion deviations; Compliant assembly; Thin-walled structure;

    机译:绝对节点坐标表述;各向异性材料;弯曲和扭转偏差;符合要求的组装;薄壁结构;

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