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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Curl Distortion Analysis During Photopolymerisation of Stereolithography Using Dynamic Finite Element Method
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Curl Distortion Analysis During Photopolymerisation of Stereolithography Using Dynamic Finite Element Method

机译:使用动态有限元方法的光固化立体光固化过程中的卷曲变形分析

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摘要

Stereolithography is one of the rapid prototyping processes which uses a photopolymer as the raw material to build prototypes. The photopolymer absorbs energy by selective laser exposure. The curing effect starts when the absorbing energy exceeds a critical value, and the process is called photopolymerisation. The photopolymerisation changes the phase from liquid to solid. The cured volume can expand and then shrink on cooling. The process parameters such as the scanning speed, scanning path, scanning pitch, and the slicing thickness, lead to different shrinkage and curl distortion, so, the photopolymerisation process is a dynamic material behavior. In this study, a dynamic finite element simulation code has been developed to simulate the photopolymerisation process. The simulated result for a suspended beam which corresponds to the process parameters shows that a short raster causes less curl distortion than a long raster. The experimental result agrees very well with the simulated result.
机译:立体光刻技术是快速成型工艺之一,该工艺使用光敏聚合物作为原材料来构建原型。光敏聚合物通过选择性的激光曝光吸收能量。当吸收能量超过临界值时,固化效果开始,该过程称为光聚合。光聚合将相从液体改变为固体。固化后的体积可以膨胀,然后在冷却时收缩。扫描速度,扫描路径,扫描间距和切片厚度等工艺参数会导致不同的收缩率和卷曲变形,因此,光聚合过程是一种动态的材料行为。在这项研究中,已经开发了动态有限元模拟代码来模拟光聚合过程。与过程参数相对应的悬臂梁的仿真结果表明,短光栅比长光栅引起的卷曲变形更少。实验结果与仿真结果非常吻合。

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