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Analysis of residual stresses and post molding deformation in injection molded components.

机译:分析注塑成型部件中的残余应力和成型后变形。

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摘要

This study is aimed at assessing the residual stresses and post-molding deformation in injection-molded parts as a result of processing. Molded-in residual stresses can significantly affect the functionality of injection-molded components whereas the post-molding shrinkage and warpage cause deviation from the dimensional requirements prescribed by the part design and reduce its efficacy in its operational milieu. The capability to determine a priori the processing-induced stresses and post-molding deformations would provide a means to obviate the need for prototyping in the manufacture of injection-molds and trial-and-error estimates of ideal processing windows, thereby enhancing productivity.;In order to estimate the influence of the constraint conditions on the stress development, a one-dimensional problem of polymer vitrification has been analyzed with a variety of restraint models. The stress levels were found to significantly depend upon the nature of constraints, processing conditions and the mold location. Comparisons have also been made with experimental residual-stress measurements; qualitative correlation was found despite significant disparity in the stress magnitudes. In addition, flow-induced stresses have been separately estimated and compared with the thermal-stress levels. It was found that the flow stresses were significantly smaller than their thermal counterparts, implying that they are of secondary importance in determining the stress levels and post-molding deformation.;A scheme for analyzing residual stresses and shrinkage/warpage in three-dimensional injection-molded parts has been developed. The vitrification of the polymeric component under the influence of melt pressure and thermal history has been analyzed by means of a 'localization' assumption which takes that the lateral deformations of the melt which has stopped flowing is negligible. This approximates the actual conditions extant in complex, three-dimensional injection-molded parts as a result of geometric constraints, melt-pressure and friction between the part and the mold wall. The polymer has been treated to be a transversely-isotropic viscoelastic material exhibiting thermo-rheological simplicity. The polymer melt- and mold-cooling-analyses as well as the elastic structural-response determination have been performed using commercial programs. Good correlation with experimentally available measurements of shrinkage and warpage has been observed.
机译:这项研究旨在评估加工后注塑件中的残余应力和成型后变形。模制残余应力会严重影响注塑组件的功能,而模制后的收缩和翘曲会导致偏离零件设计所规定的尺寸要求,并降低其在工作环境中的功效。先验地确定加工引起的应力和模制后变形的能力将提供一种方法,从而消除在制造注塑模和理想加工窗口的反复试验中对原型制作的需求,从而提高生产率。为了估计约束条件对应力发展的影响,已使用多种约束模型分析了聚合物玻璃化的一维问题。发现应力水平很大程度上取决于约束条件,加工条件和模具位置。还与实验残余应力测量进行了比较。尽管应力大小存在显着差异,但仍存在定性相关性。另外,已经分别估计了流动引起的应力,并将其与热应力水平进行了比较。发现流动应力明显小于其热应力,这表明它们在确定应力水平和成型后变形方面具有次要的重要性。三维注射中残余应力和收缩/翘曲的分析方案成型零件已开发。已经通过“局部化”假设分析了在熔融压力和热历程影响下的聚合物组分的玻璃化,该假设认为已经停止流动的熔体的横向变形可以忽略。由于几何约束,零件和模具壁之间的熔体压力和摩擦,这近似于复杂的三维注模零件中存在的实际条件。该聚合物已被视为具有热流变性的横向各向同性粘弹性材料。聚合物熔融和模具冷却分析以及弹性结构响应测定已使用商业程序进行。已经观察到与实验上可用的收缩率和翘曲度的良好相关性。

著录项

  • 作者

    Santhanam, Nandakumar.;

  • 作者单位

    Cornell University.;

  • 授予单位 Cornell University.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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