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制造参数对熔融沉积成型法制造的聚乳酸和丙烯腈-丁二烯-苯乙烯塑料件力学性能的影响:对比分析

The Influence of Manufacturing Parameters on the Mechanical Behaviour of PLA and ABS Pieces Manufactured by FDM: A Comparative Analysis.

作者信息

Rodríguez-Panes Adrián, Claver Juan, Camacho Ana María

机构信息

Department of Manufacturing Engineering, Universidad Nacional de Educación a Distancia (UNED), Madrid 28040, Spain.

出版信息

Materials (Basel). 2018 Aug 1;11(8):1333. doi: 10.3390/ma11081333.

Abstract

This paper presents a comparative study of the tensile mechanical behaviour of pieces produced using the Fused Deposition Modelling (FDM) additive manufacturing technique with respect to the two types of thermoplastic material most widely used in this technique: polylactide (PLA) and acrylonitrile butadiene styrene (ABS). The aim of this study is to compare the effect of layer height, infill density, and layer orientation on the mechanical performance of PLA and ABS test specimens. The variables under study here are tensile yield stress, tensile strength, nominal strain at break, and modulus of elasticity. The results obtained with ABS show a lower variability than those obtained with PLA. In general, the infill percentage is the manufacturing parameter of greatest influence on the results, although the effect is more noticeable in PLA than in ABS. The test specimens manufactured using PLA perform more rigidly and they are found to have greater tensile strength than ABS. The bond between layers in PLA turns out to be extremely strong and is, therefore, highly suitable for use in additive technologies. The methodology proposed is a reference of interest in studies involving the determination of mechanical properties of polymer materials manufactured using these technologies.

摘要

本文对采用熔融沉积建模(FDM)增材制造技术生产的部件,就该技术中最广泛使用的两种热塑性材料:聚乳酸(PLA)和丙烯腈-丁二烯-苯乙烯(ABS)的拉伸力学行为进行了比较研究。本研究的目的是比较层高、填充密度和层取向对PLA和ABS测试样品力学性能的影响。这里研究的变量是拉伸屈服应力、拉伸强度、断裂标称应变和弹性模量。使用ABS获得的结果显示出比使用PLA获得的结果更低的变异性。一般来说,填充百分比是对结果影响最大的制造参数,尽管这种影响在PLA中比在ABS中更明显。使用PLA制造的测试样品表现得更坚硬,并且发现它们比ABS具有更高的拉伸强度。PLA中层与层之间的粘结非常牢固,因此非常适合用于增材技术。所提出的方法是涉及确定使用这些技术制造的聚合物材料力学性能的研究中有价值的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e74c/6119930/8695277cfd90/materials-11-01333-g001.jpg

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