Characteristics of Abs and Pla Material in 3D Printing for Car Backseat Headrest Hanger/Hook Model

Rohana Huvat, Muhamad Asri Azizul, S. Sulaiman
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Abstract

Additive manufacturing (AM) is known as the technology which enable using a layer wise in fabrication of a complex part directly from CAD files without using any specific tooling. This manufacturing techniques offers many strategic advantages which include design freedom for the build of complex part geometries which cannot be made in other way, the ability to build functional part in a small size for the end user customization and its ability to do improvement for the expensive part in aerospace and other industries. The aim of this research is to study the effect of process parameter such as layer thickness, infill density and object orientation to the accuracy of printed part measurement with CAD model, surface roughness and mechanical strength of PLA and ABS material. Therefore, it is important to find the optimum value of dimensional accuracy, surface roughness and mechanical strength for both materials. To achieve the optimum value of dimensional accuracy, surface roughness and mechanical strength for both materials, Taguchi method L4 orthogonal array is used to conduct this experiment and Minitab 18 software will analyze the result and shows the best optimum value. The result from ANOVA analysis shows that object orientation gives highest contribution to the dimensional accuracy and surface roughness for both materials. Meanwhile, for mechanical strength layer thickness highly contributed to the ABS material and object orientation for the PLA material. A Car Backseat Headrest Hanger/Hook model is fabricated by the best optimal combination and level of process parameter of mechanical strength.
汽车后座头枕架/挂钩模型3D打印Abs和Pla材料特性
增材制造(AM)是一种能够直接从CAD文件中使用分层制造复杂零件而无需使用任何特定工具的技术。这种制造技术提供了许多战略优势,包括设计自由,以建立复杂的零件几何形状,不能以其他方式制造,在一个小尺寸的最终用户定制的功能部件的能力和它的能力做改进的昂贵的部分在航空航天和其他行业。本研究的目的是研究层厚、填充密度和物体方向等工艺参数对PLA和ABS材料CAD模型打印件测量精度、表面粗糙度和机械强度的影响。因此,找到两种材料尺寸精度、表面粗糙度和机械强度的最佳值是很重要的。为了获得两种材料的尺寸精度、表面粗糙度和机械强度的最优值,采用田口法L4正交阵列进行实验,并使用Minitab 18软件对结果进行分析,得出最优值。方差分析结果表明,物体方向对两种材料的尺寸精度和表面粗糙度的贡献最大。同时,对于机械强度,层厚对ABS材料和PLA材料的对象取向有很大的贡献。利用机械强度工艺参数的最优组合和水平,制备了汽车后座头枕架/挂钩模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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