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MANUFACTURING CAPABILITY INDEX OF 3D PRINTING PARTS FOR IMPACT APPLICATIONS

机译:用于影响应用的3D打印零件的制造能力指标

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Three-dimensional (3D) printing with high-resolution stereolithography (SLA) has grown in popularity for creating personalized medical devices. 3D printing is now starting to expand to weight-bearing components, e.g. prosthetic feet, as data on the dynamic properties impact and fatigue is published in the literature. The next step towards using 3D printing in impact applications is to assess the capability of the high-resolution SLA process to manufacture components of uniform impact resistance. Because impact testing is destructive, a surrogate measure to check a part s viability for resisting an impact load also needs to be established. Thirteen notched Izod specimens were printed on a Form2 SLA printer using the manufacturer's clear V4, photocurable resin. Once all the specimens were printed, washed in isopropyl alcohol, and cured with ultraviolet light, the impact resistance was quantified using a pendulum impact tester in a notched Izod configuration. Then, the hardness of the specimens was quantified using a HBW 10/250 scale. The impact resistance of the clear, SLA polymer was 0.59 ± 0.14 ft-lb/in. With an upper standard limit of 0.53 ft-Ib/in, the process capability index was 0.133. Impact resistance and Brinell hardness were not correlated with a Spearman coefficient of r = -0.108, p = 0.73. Since the process capability index was less than one, 3D printing with SLA polymers is not a viable manufacturing process for creating parts of consistent impact resistance. The current technology would lead to too many rejected parts. Also, Brinell hardness and impact strength were not related. Therefore, there is no non-destructive method to spot-check these components before use.
机译:具有高分辨率立体化(SLA)的三维(3D)打印已经普及,用于创建个性化医疗设备。 3D打印现在开始扩展到负重组件,例如,假肢脚,作为关于动态性能的数据的数据,在文献中公布。在冲击应用中使用3D打印的下一步是评估高分辨率SLA过程的能力,以制造均匀抗冲击性的组件。由于影响测试是破坏性的,因此需要建立用于检查用于抵抗冲击负荷的部件的代理度量。使用制造商的透明V4,可光固化树脂在Form2 SLA打印机上印有十三个缺口伊佐德标本。一旦印刷所有样品,就在异丙醇中洗涤并用紫外线固化,使用缺口Izod构造的摆锤冲击试验机量化抗冲击性。然后,使用HBW 10/250刻度来定量样品的硬度。透明,SLA聚合物的抗冲击性为0.59±0.14ft-1b / in。具有0.53 ft-Ib / In的上标准限制,过程能力指数为0.133。抗冲击性和Brinell硬度与r = -0.108,p = 0.73的Spearman系数不相关。由于过程能力指数小于一个,具有SLA聚合物的3D打印不是一种可行的制造工艺,用于产生一致的抗冲击性的部件。目前的技术会导致太多拒绝部分。此外,Brinell硬度和冲击强度无关。因此,在使用前没有发现非破坏性方法来检查这些组件。

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