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  • 中国标准连:ISSN1005-2895
  • 续出版物号: CN 33-1180/TH
  • 主管单位:轻工业杭州机电设计研究院有限公司
  • 主办单位:轻工业杭州机电设计研究院有限公司、中国轻工机械协会、中国轻工业机械总公司
  • 社  长:刘安江
  • 主  编:黄丽珍
  • 地  址:杭州市余杭区高教路970号西溪联合科技广场4-711
  • 电子邮件:qgjxzz@126.com
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段家现1,闫西坡2.基于反变形和CAE的手机前壳翘曲优化[J].轻工机械,2016,34(6):
基于反变形和CAE的手机前壳翘曲优化
Warpage Optimization of Phone Front Shell Based on CAE and Reverse Deformation Method
  
DOI:10.3969/j.issn.1005-2895.2016.06.022
中文关键词:  手机前壳  翘曲  反变形  计算机辅助工程( CAE)  Moldflow软件
英文关键词:phone front shell  warpage  reverse deformation  computer aided engineering ( CAE )  Moldflow software
基金项目:广西高校中青年教师基础能力提升项目(KY2016LX365);梧州学院校级科研项目(2015 8006)。
作者单位
段家现1,闫西坡2 1.梧州学院机械与材料工程学院广西梧州 543002
2.洪硕模流工作室广东深圳 518115 
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中文摘要:
      为提高手机前壳的成型质量,减小翘曲变形,提出了基于反变形和CAE的优化方法。介绍了手机前壳的平面度 误差要求和反变形设计原理,利用CAE软件Moldflow对手机前壳的注塑成型过程进行数值模拟,得到了翘曲变形的Z 方向位移分量,从而获得变形补偿量;对原始设计模型进行反变形设计和模拟验证,预测的平面度误差符合质量要求。 按反变形设计模型进行模具设计和制造,对生产样件进行平面度和外形尺寸检测,平面度误差为0.180 0 mm,比平面度 公差要求小0.170 0 mm,外形尺寸误差均在公差范围之内。研究表明该方法可以通过变形补偿来提高塑件的尺寸精度。
英文摘要:
      ln order to improve the molding quality of phone front shell and reduce warpage, a method of optimization based on reverse deformation and CAE technique was provided. The flatness of phone front shell and method of reverse deformation was introduced. The numerical simulation for the injection process of phone front shell was put forward by means of Moldflow, which is one of computer aided engineering software,and the Z-component displacement of warpage was presented. The deformation compensation amount was obtained, and the reverse deformation design of the original design model was executed. The simulation verification of reverse deformation model were carried out, and the flatness error of prediction was in accord with quality requirements. The injection mold was designed and manufactured according to reverse deformation model. The plastic parts of phone front shell were measured for flatness and outline dimension, and the flatness error was 0.180 0 mm, which was lessen 0. 170 0 mm comparing with flatness tolerance. The outline dimensions was within the tolerance range. The results show that it can improve the precision of plastic parts by means of deformation compensation.
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