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Tensile Mechanical Behaviour of Multi-Polymer Sandwich Structures via Fused Deposition Modelling

机译:熔融沉积建模的多聚合物三明治结构的拉伸力学行为

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摘要

The application of single homogeneous materials produced through the fused deposition modelling (FDM) technology restricts the production of high-level multi-material components. The fabrication of a sandwich-structured specimen with different material combinations using conventional thermoplastics such as poly (lactic acid) (PLA), acrylonitrile butadiene styrene (ABS) and high impact polystyrene (HIPS) through the filament-based extrusion process can demonstrate an improvement on its properties. This paper aims to assess among these materials, the best material sandwich-structured arrangement design, to enhance the mechanical properties of a part and to compare the results with the homogeneous materials selected. The samples were subjected to tensile testing to identify the tensile strength, elongation at break and Young’s modulus of each material combination. The experimental results demonstrate that applying the PLA-ABS-PLA sandwich arrangement leads to the best mechanical properties between these materials. This study enables users to consider sandwich structure designs as an alternative to manufacturing multi-material components using conventional and low-cost materials. Future work will consider the flexural tests to identify the maximum stresses and bending forces under pressure.
机译:通过熔融沉积建模(FDM)技术生产的单一均质材料的应用限制了高级多材料组件的生产。通过基于长丝的挤压工艺,使用常规热塑性塑料(例如聚乳酸(PLA),丙烯腈丁二烯苯乙烯(ABS)和高抗冲聚苯乙烯(HIPS))制造具有不同材料组合的三明治结构样品,可以证明是一种改进在其属性上。本文旨在评估这些材料中最佳的材料夹心结构布置设计,以增强零件的机械性能,并将结果与​​所选的均质材料进行比较。对样品进行拉伸测试,以确定每种材料组合的拉伸强度,断裂伸长率和杨氏模量。实验结果表明,应用PLA-ABS-PLA三明治结构可在这些材料之间实现最佳机械性能。这项研究使用户可以考虑将三明治结构设计作为使用常规和低成本材料制造多材料组件的替代方案。未来的工作将考虑挠曲测试,以确定压力下的最大应力和弯曲力。

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