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Effect of chemical treatment on tensile strength and surface roughness of 3D-printed ABS using the FDM process

机译:化学处理对使用FDM工艺的3D印刷ABS拉伸强度和表面粗糙度的影响

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摘要

Fused deposition modelling (FDM) is one of the most commonly used additive manufacturing processes because of its environment-friendly nature and cost-effectiveness. However, it suffers badly from low surface quality due to a larger layer resolution. The surface finish of FDM parts can be enhanced by post chemical treatment using various solvents. The chemical treatment reduces the surface roughness by dissolving the external surfaces of 3D-printed samples. Chemical treatment is an easy, fast and economical technique. In the present investigation, the effect of chemical treatment on surface roughness and tensile strength of acrylonitrile butadiene styrene (ABS) parts made using the FDM process is investigated using two chemicals, namely acetone and 1, 2 dichloroethane. The post chemical treatment dramatically improves the surface finish and dimensional accuracy of ABS specimens. But chemical treatment results in the reduction of the tensile strength. Better tensile strength is obtained while using acetone solvent and a better surface finish is obtained using dichloroethane.
机译:融合沉积建模(FDM)是由于其环保性质和成本效益,是最常用的添加剂制造过程之一。然而,由于较大的层分分辨率,它受到低表面质量的严重影响。通过使用各种溶剂的化学处理可以增强FDM部件的表面光洁度。化学处理通过溶解3D印刷样品的外表面来降低表面粗糙度。化学处理是一种简单,快速和经济的技术。在本研究中,使用两种化学物质研究了使用FDM工艺制备的丙烯腈丁二烯苯乙烯(ABS)零件的表面粗糙度和拉伸强度的效果。后化学处理显着提高了ABS样本的表面光洁度和尺寸精度。但化学处理导致拉伸强度的降低。使用丙酮溶剂的同时获得更好的拉伸强度,使用二氯乙烷获得更好的表面光洁度。

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