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Investigating Effects of Fused-Deposition Modeling (FDM) Processing Parameters on Flexural Properties of ULTEM 9085 using Designed Experiment

机译:使用设计的实验研究熔融沉积建模(FDM)工艺参数对ULTEM 9085弯曲性能的影响

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摘要

Fused-deposition modeling (FDM), one of the additive manufacturing (AM) technologies, is an advanced digital manufacturing technique that produces parts by heating, extruding and depositing filaments of thermoplastic polymers. The properties of FDM-produced parts apparently depend on the processing parameters. These processing parameters have conflicting advantages that need to be investigated. This article focuses on an investigation into the effect of these parameters on the flexural properties of FDM-produced parts. The investigation is carried out on high-performance ULTEM 9085 material, as this material is relatively new and has potential application in the aerospace, military and automotive industries. Five parameters: air gap, raster width, raster angle, contour number, and contour width, with a full factorial design of the experiment, are considered for the investigation. From the investigation, it is revealed that raster angle and raster width have the greatest effect on the flexural properties of the material. The optimal levels of the process parameters achieved are: air gap of 0.000 mm, raster width of 0.7814 mm, raster angle of 0°, contour number of 5, and contour width of 0.7814 mm, leading to a flexural strength of 127 MPa, a flexural modulus of 2400 MPa, and 0.081 flexural strain.
机译:熔融沉积建模(FDM)是增材制造(AM)技术之一,是一种先进的数字制造技术,可通过加热,挤压和沉积热塑性聚合物的长丝来生产零件。 FDM生产的零件的特性显然取决于加工参数。这些处理参数具有相互矛盾的优点,需要进行研究。本文重点研究这些参数对FDM生产零件的弯曲性能的影响。研究是针对高性能ULTEM 9085材料进行的,因为这种材料相对较新,并且在航空航天,军事和汽车工业中具有潜在的应用。研究中考虑了五个参数:气隙,栅格宽度,栅格角度,轮廓数和轮廓宽度,以及完整的因子设计实验。从调查中可以看出,光栅角度和光栅宽度对材料的弯曲性能影响最大。达到的最佳工艺参数水平为:气隙为0.000毫米,光栅宽度为0.7814毫米,光栅角度为0°,轮廓数为5,轮廓宽度为0.7814毫米,导致弯曲强度为127 MPa,弯曲模量为2400 MPa,弯曲应变为0.081。

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