Analysis of process parameter effect on surface roughness during Fused Deposition Modeling on PLA

M. Sain, Saurabh Gupta, Varun S Kumar
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Abstract

- FDM (Fused Deposition Modeling) is favored to be applied for manufacturing over other methods of 3d printing these days. The FDM approach may easily be fit perfectly if a preset process and model are directed to the machine utilizing a data transmission device. There are various possibilities for altering the input values as per the user demand. In this work, polylactic acid (PLA) is employed for specimen production. The tests in this research were done to investigate how four process parameters which are layer thickness, infill percentage, extrusion temperature, and print speed influenced surface roughness. Furthermore, the relative influences of these components on the response have been discovered and optimized using the Taguchi approach, and findings have been derived. Furthermore, findings and significant analysis were done utilizing the ANOVA approach. The Confirmation testing for SR was done to validate the findings.
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聚乳酸熔融沉积成型过程中工艺参数对表面粗糙度的影响分析
FDM(熔融沉积建模)在制造中比其他3d打印方法更受青睐。如果使用数据传输设备将预设的过程和模型定向到机器上,则FDM方法可以很容易地完美拟合。根据用户的需求,有多种可能来改变输入值。在这项工作中,聚乳酸(PLA)被用于样品制作。研究了层厚、填充率、挤压温度和打印速度四个工艺参数对表面粗糙度的影响。此外,这些成分对响应的相对影响已被发现和优化使用田口方法,并得出了结果。此外,利用方差分析方法进行了研究结果和显著性分析。对SR进行确认测试以验证研究结果。
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