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Application of the Box-Behnken design to the optimization of process parameters in foam cup molding

机译:Box-Behnken设计在泡沫杯成型工艺参数优化中的应用

摘要

Currently, foam molding technologies are widely adopted for most bra styles, which demonstrate the incomparable advantages in the contemporary intimate apparel industry. The determination of proper molding conditions, such as molding temperatures and length of time on the basis of cup sizes and styles, is crucial in achieving the required cup shape with high stability, which is regarded as the most challenging part of the molded bra making process. To determine the optimal process parameter settings, numerous process trials are generally required to evaluate the molding variables and their interactions. This study proposes a novel systematic methodology to identify the optimal molding process parameters based on design of experiment (DOE) and a parameterization-based remesh method to evaluate the 3D shape conformity of molded cups. By solving the regression equation obtained from a Box-Behnken design (BBD) and analyzing the response surface plots, the results prove that molding temperature has greater influence than the length of the dwell time on the 3D shape conformity of molded cups. The optimal molding conditions can be determined for the cup depths of different sized mold heads, which are validated by the experimental results.
机译:当前,泡沫成型技术已被大多数文胸款式广泛采用,这证明了在当代内衣行业中无与伦比的优势。确定合适的成型条件,例如根据杯的大小和样式确定成型温度和时间长度,对于获得所需的具有高稳定性的杯形状至关重要,这被认为是模制胸罩制造过程中最具挑战性的部分。为了确定最佳的工艺参数设置,通常需要进行大量工艺试验来评估成型变量及其相互作用。这项研究提出了一种新颖的系统方法,基于实验设计(DOE)来确定最佳成型工艺参数,以及基于参数化的remesh方法来评估成型杯的3D形状一致性。通过求解从Box-Behnken设计(BBD)获得的回归方程并分析响应表面图,结果证明,成型温度比成型时间的长短对成型杯的3D形状一致性影响更大。可以根据不同尺寸模具头的杯深确定最佳成型条件,并通过实验结果进行验证。

著录项

  • 作者

    Wu L; Yick KL; Ng SP; Yip J;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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