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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >An experimental and numerical investigation of the effect of macro-textured tool surfaces in hot stamping
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An experimental and numerical investigation of the effect of macro-textured tool surfaces in hot stamping

机译:宏观纹理刀具表面在热冲压中的影响的实验与数值研究

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摘要

This paper presents a method of increasing draw-ability of materials in hot stamping processes using forming tools with macro-scale textures on the tool surfaces. Firstly, a series of tool texture designs and orientations were presented and a test programme was designed for the experimental investigation. Top-hat shape drawing experiments in cold and hot stamping conditions were conducted to evaluate the effect of macro-scale tool surface textures on the material drawing. Texture directional and texture feature effects of the blankholders on the draw-ability of the material have been investigated. A finite element model of the top-hat drawing process with textured tool surfaces has been established and validated from experimental data. Further FE process modelling has been carried out and the effects of texture features and forming speed have been studied. The relationships between texture designs and material drawing results have been analysed. The developed FE model can provide a guide to design the geometry of tool textures and optimise the hot stamping process parameters.
机译:本文介绍了一种在热冲压工艺中使用在刀具表面具有宏观纹理的成型刀具提高材料拉伸能力的方法。首先,提出了一系列工具纹理设计和方向,并设计了实验研究的试验方案;在冷冲压和热冲压条件下进行了顶帽形状绘制实验,以评估宏观尺度工具表面纹理对材料拉伸的影响。研究了坯料夹具的纹理方向性和纹理特征对材料拉伸性的影响。建立了具有纹理工具表面的顶帽拉拔过程的有限元模型,并利用实验数据进行了验证。已经进行了进一步的有限元过程建模,并研究了纹理特征和成形速度的影响。分析了纹理设计与材质绘制结果之间的关系。所开发的有限元模型可以为刀具纹理的几何设计和优化热冲压工艺参数提供指导。

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