标题: 高深宽比金属板材微流道之液压成形研究
The Hydroforming of Microchannels With High Aspect-Ratio on Metallic Sheets
作者: 颜振杰
Yan, Jhen-Jie
洪景华
Hun, Ching-Hua
机械工程学系
关键字: 液压成形;流道;有限元素;最佳化;Hydroforming;Flow channel;Finite element;Optimization
公开日期: 2010
摘要: 本研究透过本实验室之静水压成形机台进行实验,使用厚度为0.1mm之SUS304薄板,分别施加5种不同的压力,成功地将微流道压印在板材上,得到高深宽比之微流道。同时利用有限元素模拟软体Abaqus/Standard针对金属板材微流道之液压成形做有限元素分析,将材料试验所得到不□钢板之材料参数、模具几何外形与边界条件等来建立有限元素模型,比较此模拟结果与实验之成形性来进行验证。藉此有限元素模型,利用最佳化软体SmartDo串联有限元素软体Abaqus/Standard,调整模具的几何形状、成形压力等,以液压成形来完成微流道流道深宽比的最佳化以及气体反应效率的最佳化,并将其最佳化结果与实验、相关文献作比较与讨论。
This research had experimented by using the novel hydroforming machine. Using five pressure to print microchannels on SUS304 Stainless Steel Sheet, the thickness is 0.01mm.To obtain microchannels with high aspect-ratio.Simultaneously, using Abaqus/Standard to analyze the microchannels on metallic sheets hydroforming process. The material properties were first obtained through uniaxial tensile tests, then the finite element model were built. And the deepest channel height is taken as the indicate of sheet’s formability .By the difference of the formability. this research compared the results of simulation and hydroforming experiment for verifying the accuracy of the finite element model.Finally, to finish the optimization for aspect-ratio and optimization for reaction efficiency with hydroforming by changing the various dimension of flow channel and pressure.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079814502
http://hdl.handle.net/11536/47108
显示于类别:Thesis


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