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Improving the Mechanical Strength of Dental Applications and Lattice Structures SLM Processed

机译:改善牙科应用和经SLM处理的晶格结构的机械强度

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摘要

To manufacture custom medical parts or scaffolds with reduced defects and high mechanical characteristics, new research on optimizing the selective laser melting (SLM) parameters are needed. In this work, a biocompatible powder, 316L stainless steel, is characterized to understand the particle size, distribution, shape and flowability. Examination revealed that the 316L particles are smooth, nearly spherical, their mean diameter is 39.09 μm and just 10% of them hold a diameter less than 21.18 μm. SLM parameters under consideration include laser power up to 200 W, 250–1500 mm/s scanning speed, 80 μm hatch spacing, 35 μm layer thickness and a preheated platform. The effect of these on processability is evaluated. More than 100 samples are SLM-manufactured with different process parameters. The tensile results show that is possible to raise the ultimate tensile strength up to 840 MPa, adapting the SLM parameters for a stable processability, avoiding the technological defects caused by residual stress. Correlating with other recent studies on SLM technology, the tensile strength is 20% improved. To validate the SLM parameters and conditions established, complex bioengineering applications such as dental bridges and macro-porous grafts are SLM-processed, demonstrating the potential to manufacture medical products with increased mechanical resistance made of 316L.
机译:为了制造具有减少的缺陷和高机械特性的定制医疗零件或支架,需要进行有关优化选择性激光熔化(SLM)参数的新研究。在这项工作中,生物相容性粉末316L不锈钢的特征是了解颗粒尺寸,分布,形状和流动性。检查表明,316L颗粒光滑,接近球形,平均直径为39.09μm,只有10%的直径小于21.18μm。正在考虑的SLM参数包括高达200 W的激光功率,250-1500 mm / s的扫描速度,80μm的影线间距,35μm的层厚度和预热的平台。评估了这些对可加工性的影响。 SLM生产的100多个样品具有不同的工艺参数。拉伸结果表明,有可能将极限拉伸强度提高到840 MPa,通过调整SLM参数以获得稳定的可加工性,避免了由残余应力引起的技术缺陷。与SLM技术的其他最新研究相关,抗拉强度提高了20%。为了验证已建立的SLM参数和条件,对复杂的生物工程应用(如牙桥和大孔移植物)进行了SLM处理,证明了制造具有更高机械强度的316L医疗产品的潜力。

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