标题: 金属薄板液压膨胀实验之设备研发与其应用
Development and Application of Hydraulic Bulge Test Apparatus for Thin Sheet Metals
作者: 张哲维
Chang, Che-Wei
洪景华
Hung, Ching-Hua
机械工程系所
关键字: 液压膨胀实验;应力-应变曲线;尺寸效应;hydraulic bulge test;stress-strain curve;size effect
公开日期: 2015
摘要:   在工业制造上,金属薄板在成形过程中所受的应力状态多半为双轴向应力,如深引伸成形(deep drawing)、张出成形(stretching)、伸缘成形(stretch flange)和应用逐渐成熟之液压成型(hydroforming)等。因此,能够精确地描述在此受力状态下金属薄板的应力-应变曲线(stress-strain curve)便显得十分重要。另外,由于近年来电子消费性产品在外壳等部位之尺寸越来越精密且微小,于是了解尺寸效应(size effect)对金属薄板强度之影响也是必需的研究。
  本研究针对本实验室现有之液压膨胀实验(bulge test)专利设备进行实用性方向之改善与后续应用。首先利用油压缸改善试片夹持力不足之问题,使操作流程更简单及实用;并使用不同的退火时间与温度,对纯铜金属薄板进行退火,取得不同晶粒大小之金属薄板,并利用改进之设备对其进行液压膨胀实验,探讨尺寸效应对金属薄板强度之影响,以期建立金属薄板成形制程设计之依据。
Today, there are increasing applications in the industry involving the deformation of sheet metals, especially thin sheet metals. In the industrial practice, the stress of sheet metals is mostly in the multi-axial state during forming process. Therefore, it is very important to accurately describe the stress-strain curve of the sheet metals in the complex stress state. In addition, because the size of the modern application products is getting smaller than before, the size effect on the strength of sheet metals is becoming significant.
This research focused on the development and application of a novel hydraulic bugle test apparatus for obtaining thin sheet metals properties. To investigate the size effect on strength of sheet metals, this apparatus was used with specimens which have different grain size and thickness. Different diameters of upper mold of our apparatus were also used. A complete stress-strain relationship of thin sheet metal concerning size effect were obtained.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070351009
http://hdl.handle.net/11536/126897
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