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塑料类型和打印技术对3D打印足跟原型压缩行为的影响。

Influence of the Type of Plastic and Printing Technologies on the Compressive Behavior of 3D-Printed Heel Prototypes.

作者信息

Gelaziene Edita, Milasiene Daiva

机构信息

Department of Production Engineering, Faculty of Mechanical Engineering and Design, Kaunas University of Technology, 51424 Kaunas, Lithuania.

出版信息

Materials (Basel). 2023 Feb 26;16(5):1930. doi: 10.3390/ma16051930.

Abstract

In this study, the possibility of using modern AM technologies to produce designed heels for personalized orthopedic footwear with a medium heel was explored. Seven variants of heels were produced using three 3D printing methods and polymeric materials with different natures: PA12 heels made using the SLS method, photopolymer heels made using the SLA method, and PLA, TPC, ABS, PETG, and PA (NYLON) heels made using the FDM method. A theoretical simulation with forces of 1000 N, 2000 N, and 3000 N was performed in order to evaluate possible human weight loads and possible pressure during orthopedic shoe production. The compression test of the 3D-printed prototypes of the designed heels showed that it is possible to replace the traditional wooden heels of hand-made personalized orthopedic footwear with good-quality PA12 and photopolymer heels made using the SLS and SLA methods, but also with PLA, ABS, and PA (NYLON) heels printed using a cheaper FDM 3D printing method. All of the heels made using these variants withstood loads of more than 15,000 N without damage. It was determined that TPC is not suitable for a product of this design and purpose. Due to its greater brittleness, the possibility of using PETG for orthopedic shoe heels must be verified by additional experiments.

摘要

在本研究中,探讨了使用现代增材制造(AM)技术生产中跟个性化矫形鞋设计鞋跟的可能性。使用三种3D打印方法和不同性质的聚合材料制作了七种鞋跟变体:采用选择性激光烧结(SLS)方法制作的聚酰胺12(PA12)鞋跟、采用立体光刻(SLA)方法制作的光聚合物鞋跟,以及采用熔融沉积成型(FDM)方法制作的聚乳酸(PLA)、热塑性共聚酯(TPC)、丙烯腈-丁二烯-苯乙烯共聚物(ABS)、聚对苯二甲酸乙二醇酯-1,4-环己烷二甲醇酯(PETG)和聚酰胺(尼龙,PA)鞋跟。为了评估矫形鞋生产过程中可能的人体重量负荷和压力,进行了1000牛、2000牛和3000牛力的理论模拟。对设计鞋跟的3D打印原型进行的压缩测试表明,采用SLS和SLA方法制作的优质PA12和光聚合物鞋跟,以及采用成本较低的FDM 3D打印方法打印的PLA、ABS和PA(尼龙)鞋跟,可以替代手工制作的个性化矫形鞋的传统木鞋跟。使用这些变体制作的所有鞋跟都承受了超过15000牛的负荷而未受损。已确定TPC不适用于这种设计和用途的产品。由于其脆性较大,使用PETG制作矫形鞋跟的可能性必须通过额外实验进行验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0186/10003946/10af1b4d11fc/materials-16-01930-g001.jpg

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