首页> 外文期刊>International Journal of Automotive Technology >GATE SHAPE OPTIMIZATION USING DESIGN OF EXPERIMENT TO REDUCE THE SHEAR RATE AROUND THE GATE
【24h】

GATE SHAPE OPTIMIZATION USING DESIGN OF EXPERIMENT TO REDUCE THE SHEAR RATE AROUND THE GATE

机译:利用实验设计优化门的形状以降低门周围的剪切率

获取原文
获取原文并翻译 | 示例
           

摘要

Numerical analysis is used to optimize the gate shape of the mold part in the molding process. The objective of this research was to develop a procedure that will optimize the gate shape of the mold part by using Design of Experiments approach. The computer-aided engineering software Moldflow was used to simulate the plastic injection molding process and the Minitab software was used to analyze the computational results from Moldflow. The Bulk Molding Compounds (BMC) UNI-203S thermoset material was chosen as the molding material. Four different types of gate shapes were analyzed to find the gate shape to be used in the optimization. The Type 3 gate shape was selected as basis for the gate optimization because this shape yielded the minimum shear rate around the gate among all. The thickness, width, length and angle of the gate were selected as the design variables. Erosion around a gate due to repetitive shear flow during molding process was considered as an important issue to extend the service life of the expensive mold. It is normally very difficult to prevent erosion due to high injection pressure and repetitive use of the mold, especially in certain molding parts as BMC reflector in automotive parts, so it has become the subject of researches. The effectiveness of design variables was evaluated by observing shear rate around the gate. The objective of the optimization was to minimize the average shear rate around the gate. Response Surface Method was applied to identify the optimum values of the design variables. The computed optimum values were validated numerically. The optimized gate shape showed the reduced shear rate by about 11%.
机译:数值分析用于优化成型过程中模具零件的浇口形状。这项研究的目的是开发一种程序,通过使用“实验设计”方法来优化模具零件的浇口形状。计算机辅助工程软件Moldflow用于模拟塑料注射成型过程,Minitab软件用于分析Moldflow的计算结果。选择块状模塑料(BMC)UNI-203S热固性材料作为模制材料。分析了四种不同类型的浇口形状,以找到要在优化中使用的浇口形状。选择类型3的浇口形状作为浇口优化的基础,因为这种形状在所有浇口附近产生了最小的剪切速率。选择浇口的厚度,宽度,长度和角度作为设计变量。浇铸过程中由于反复剪切流造成的浇口周围腐蚀被认为是延长昂贵模具使用寿命的重要问题。通常,由于高注射压力和模具的重复使用,特别是在某些成型零件中用作汽车零件中的BMC反射镜时,防止腐蚀是非常困难的,因此它已成为研究的主题。通过观察浇口附近的剪切速率来评估设计变量的有效性。优化的目的是使浇口周围的平均剪切速率最小。应用响应面法确定设计变量的最佳值。计算出的最佳值通过数值验证。优化的浇口形状显示出剪切率降低了约11%。

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