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Influence of laser power on tensile properties and material characteristics of laser-sintered UHMWPE

机译:激光功率对激光烧结超高分子量聚乙烯拉伸性能和材料特性的影响

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摘要

Ultra High Molecular Weight Polyethylene (UHMWPE) has excellent properties, such as high mechanical performance, low friction, high wear and chemical resistance but so far there has been limited use in additive manufacturing (AM). Laser sintering of polymers is one of the most promising AM technologies due to its ability to produce complex geometries with accurate dimensions and good mechanical properties. Consequently, this study investigates the influence of laser power on physical and mechanical properties of UHMWPE parts produced by laser sintering. In particular mechanical properties, such as Ultimate Tensile Strength (UTS), Young’s Modulus and elongation at break were evaluated alongside relative density, dilation and shrinkage. Finally, the fracture surface of the tensile test specimens was examined by electron microscopy. Results show that within a laser power range of 6–12 W there appears to be an optimum where tensile strength and relative density reach a maximum, dilation is minimised and where elongation increases with laser power. UTS up to 2.42 MPa, modulus up to 72.6 MPa and elongation at break up to 51.4% were observed. Relative density and part dimensions are also influenced by laser power.
机译:超高分子量聚乙烯(UHMWPE)具有出色的性能,例如高机械性能,低摩擦,高耐磨性和耐化学性,但到目前为止,在增材制造(AM)中的使用受到限制。聚合物的激光烧结是最有希望的增材制造技术之一,因为它能够产生具有精确尺寸和良好机械性能的复杂几何形状。因此,本研究调查了激光功率对通过激光烧结生产的UHMWPE零件的物理和机械性能的影响。尤其要评估机械性能,例如极限拉伸强度(UTS),杨氏模量和断裂伸长率,以及相对密度,膨胀和收缩。最后,通过电子显微镜检查拉伸试验样品的断裂表面。结果表明,在6至12 W的激光功率范围内,似乎是最佳的,其中拉伸强度和相对密度达到最大值,扩散最小化,并且伸长率随激光功率而增加。观察到的UTS最高为2.42 MPa,模量最高为72.6 MPa,断裂伸长率最高为51.4%。相对密度和零件尺寸也受激光功率的影响。

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