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Parametric optimization of fused deposition modeling and vapour smoothing processes for surface finishing of biomedical implant replicas

机译:用于生物医学植入物复制品表面精加工的熔融沉积建模和蒸汽平滑工艺的参数优化

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This study focuses on formulation of robust design for vapour smoothing, an advanced surface finishing technique for finishing ABS replicas where hot vapours tend to level the uneven surface asperities. The process parameters of combined Fused Deposition Modeling (FDM) and Vapour smoothing (VS) process are optimized for sustainability of ABS replicas for biomedical applications. Six input parameters have been investigated, two of FDM and four of VS processes while surface roughness and hardness of ABS part is taken as response. The vapour smoothing process ensue ultra smooth finish with negligible deterioration of upper surface deducing maximum contribution of smoothing time (51.07%) and number of cycles (40.08%) on surface roughness. Hardness of replica has been slightly increased by maximum impact of orientation angle (34.69%) and postcooling time (44.46%) of ABS replicas which endorsed the use of FDM replicas for investment casting of biomedical implants. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的重点是制定用于蒸汽平滑的坚固设计,这是一种先进的表面精加工技术,用于精加工ABS复制品,其中热蒸汽往往会平整不平整的表面粗糙度。融合沉积建模(FDM)和蒸汽平滑(VS)工艺的工艺参数已针对生物医学应用中ABS复制品的可持续性进行了优化。研究了六个输入参数,其中两个是FDM,四个是VS工艺,同时将ABS零件的表面粗糙度和硬度作为响应。蒸汽平滑工艺可实现超光滑的光洁度,上表面的劣化可忽略不计,从而减少了平滑时间(51.07%)和循环次数(40.08%)对表面粗糙度的最大贡献。复制品的硬度因取向角(34.69%)和后冷却时间(44.46%)的最大影响而略有提高,这认可了将FDM复制品用于生物医学植入物的精密铸造。 (C)2016 Elsevier Ltd.保留所有权利。

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