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3D printed tooling for thermoforming of medical devices

机译:用于医疗设备热成型的3D打印工具

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Purpose - The purpose of this paper is to evaluate the performance of 3D printed materials for use as rapid tooling (RT) molds in low volume thermoforming processes such as in manufacturing custom prosthetics and orthotics. Design/methodology/approach - 3D printed specimens of different materials were produced using the Z-Corp process. The parts were post processed using both standard and alternative methods. Material properties relevant to the 3D printed parts such as pneumatic permeability, flexural strength and wear rate were measured and compared to standard plaster compositions commonly used. Findings - Three-dimensional printing (3DP) can replicate the performance of the plaster materials traditionally used in prosthetic/orthotic applications by using modified post process techniques. The resulting 3D printed molds can still be modified and adjusted using traditional methods. The results show that 3D printed molds are feasible for thermoforming prosthetic and orthotic devices such as prosthetic sockets while providing new flexibility. Originality/value - The proposed method for RT of a mold for prosthetic/orthotic manufacturing provides great flexibility in the manufacturing and fitting process while maintaining proven materials in the final device provided to patients. This flexibility increases the value of digital medical records and efforts to develop model-based approaches to prosthetic/orthotic device design by providing a readily available process for recreating molds. Depending on the needs of the practitioners and patients, 3DP can be incorporated at a variety of points in the manufacturing process.
机译:目的-本文的目的是评估3D打印材料在小批量热成型工艺(例如制造定制假肢和矫形器)中用作快速模具(RT)模具的性能。设计/方法/方法-使用Z-Corp工艺生产了不同材料的3D打印样本。使用标准方法和替代方法对零件进行后处理。测量了与3D打印部件有关的材料性能,例如透气性,弯曲强度和磨损率,并将其与常用的标准灰泥组合物进行了比较。研究结果-三维打印(3DP)可通过使用改进的后处理技术来复制传统上用于修复/矫形应用中的灰泥材料的性能。仍然可以使用传统方法修改和调整最终的3D打印模具。结果表明,3D打印模具可用于热成型义肢和矫形器(例如义肢承窝),同时提供新的灵活性。原创性/价值-所建议的修复/矫正制造模具的RT方法在制造和装配过程中提供了极大的灵活性,同时在提供给患者的最终设备中保留了经过验证的材料。这种灵活性增加了数字医疗记录的价值,并通过提供易于重建模具的过程来努力开发基于模型的修复/矫形设备设计方法。根据从业者和患者的需求,可以在制造过程中的各个方面合并3DP。

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