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首页> 外文期刊>Journal of Thermoplastic Composite Materials >Multifactor optimization of FDM process parameters for development of rapid tooling using SiC/Al2O3-reinforced LDPE filament
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Multifactor optimization of FDM process parameters for development of rapid tooling using SiC/Al2O3-reinforced LDPE filament

机译:使用SiC / Al2O3加固LDPE灯丝开发快速工具的FDM工艺参数的多因素优化

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摘要

In this work, multifactor optimization of fused deposition modeling (FDM) process parameters has been reported for in-house prepared feedstock filament comprising of SiC/Al2O3 reinforced in recycled low-density polyethylene (LDPE) matrix with different particle sizes (i.e. single particle size (SPS), double particle size (DPS), and triple particle size (TPS) in different proportions). This study has been conducted on Al2O3-based DPS reinforcement in LDPE, which came out as a better solution during pilot experimentation in comparison to SPS, TPS, and SiC reinforcement, for printing of functional prototypes as rapid tooling (RT). The result of study suggests that infill angle in the FDM process is the most significant process parameter (contributing around 93%) for preparation of RT as regards dimensional accuracy and hardness is concerned. The RT so prepared is thermally stable as evident from differential scanning calorimetry analysis. Further, the photomicrographs observed in different planes suggest that, at the proposed settings, RT has a uniform distribution of reinforcement in LDPE matrix and can be gainfully used in light machining applications.
机译:在这项工作中,已经报道了融合沉积建模(FDM)工艺参数的多重吸引力优化,用于内部准备的原料长丝,其包括在具有不同粒度的再循环的低密度聚乙烯(LDPE)基质中加强的SiC / Al2O3(即单粒度) (SPS),双粒径(DPS)和三重粒径(TPS)的不同比例)。本研究已经在LDPE中基于AL2O3的DPS加固进行,该研究与SPS,TPS和SIC加固相比,在试验实验期间作为更好的解决方案,用于打印功能原型作为快速工具(RT)。研究结果表明,FDM过程中的填充角是制备RT的最重要的过程参数(贡献大约93%),优先于尺寸精度和硬度。 RT如此制备的RT从差示扫描量热法分析中显而易见。此外,在不同的平面中观察到的显微照片表明,在所提出的设置,RT在LDPE矩阵中具有均匀的增强件分布,并且可以在轻加工应用中得到额度使用。

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