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Effect of Process Parameters on Shrinkage of Acrylonitrile Butadiene Styrene Parts Fabricated by 3D Printing Process

机译:工艺参数对3D印刷工艺制备的丙烯腈丁二烯苯乙烯零件收缩的影响

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3D Printing is one of the preferred rapid manufacturing techniques where parts are built by fusion of layers. For a functional prototype, the part should have high accuracy especially for aerospace and rapid tooling applications. Shrinkage is one of the major factors, which influence the accuracy of the 3D Printing parts. The amount of shrinkage encountered is found to be governed by the process parameters during processing and the properties of the build materials. In the present work, the relationship between shrinkage and the process parameters namely layer thickness, head speed and length of the part has been investigated for X direction laying using Acrylonitrile Butadiene Styrene (ABS) as the build material. Response surface methodology has been used to plan the experiments. A model has been developed for estimating the shrinkage of the parts. Length of the part and layer thickness was found to be the most important parameters effecting shrinkage of the parts. Further, it has been found that shrinkage tends to increase with increase in length of the part and decreases with increase in layer thickness and head speed.
机译:3D打印是优选的快速制造技术之一,其中零件由层融合而构建。对于功能性原型,该部件应具有高精度,特别是对于航空航天和快速的工具应用。收缩是影响3D打印部件的准确性的主要因素之一。发现遇到的收缩量被处理过程中的处理参数和构建材料的性质管辖。在本作工作中,已经研究了使用丙烯腈丁二烯苯乙烯(ABS)作为构建材料的X方向铺设X方向,因此采集和工艺参数之间的关系即属层厚度,头部速度和长度。响应表面方法已被用于规划实验。已经开发了一种模型,用于估计部件的收缩。发现部分和层厚度的长度是实现零件收缩的最重要参数。此外,已经发现,随着部分长度的增加并且随着层厚度和头速度的增加而减小,收缩趋于增加。

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