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INTRODUCTION TO A TYPE OF RESIN-REINFORCED RAPID PROTOTYPING TRANSTIBIAL SOCKET

机译:介绍一种树脂加固快速原型制成串通插座

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This article introduced a type of rapid prototyping (RP) transtibial socket that is fabricated by a fused deposition modeling (FDM) machine and wrapped with a layer of unsaturated polyester resin (UPR) to enhance its flexural strength. As current rapid prototyping machines use a layer-based process to manufacture products, this will result in RP products liable to break along forming layers once bending moment is applied. To prevent RP prosthetic socket from breakage, this study proposed wrapping a layer of unsaturated polyester resin around a preliminary thin RP socket to reinforce its flexural strength. Factors affecting the strength of the resin-reinforced RP socket include thickness and forming orientation of the preliminary RP socket, thickness of the UPR layer, and type of material used to make the preliminary RP socket. Employing Taguchi experimental design method and ASTM three-point bending test standard, the parameters that influence the flexural strength of the resin-reinforced RP prosthetic socket can be determined. Based on the appropriate parameters, including thickness of the RP layer and UPR layer, the RP material and RP fabricating orientation, the preliminary thin RP prosthetic sockets can be fabricated by an FDM machine. And the thin layer preliminary RP sockets were then wrapped with cotton socks and laminated UPR layer to form resin-reinforced RP sockets. To confirm the effectiveness of the resin-reinforced sockets developed in this study, the pressures at residual limb/socket interface were measured by using a pressure distribution measurement system and movement was captured by a motion analysis system while a patient wears the resin-reinforced RP socket. Two resin-reinforced RP sockets have been fabricated and tested by a volunteer amputee. Analysis of the experimental results would assist a prosthetist to assess the distribution of interface pressures at the pressure-tolerant (PT) and pressure-relief (PR) areas of the residual limb. And, the gait pattern will be used to evaluate the applicability while the resin-reinforced RP socket is worn. Trial uses for durability test of the proposed RP socket are being arranged.
机译:本文介绍了一种类型,其由熔融沉积成型(FDM)机制造,并与不饱和聚酯树脂(UPR)的层,以提高其弯曲强度包裹快速成型(RP)经胫插座。当电流快速成型机使用基于层的工艺制造的产品,这将导致产品RP易于沿着一次弯曲力矩施加形成层断裂。为了防止RP假肢接受腔从破损,本研究提出包裹的不饱和聚酯树脂的层的周围的预备薄RP插座加强其抗弯强度。影响树脂增强RP插座的强度的因素包括厚度和初步RP插座的形成方向,UPR层的厚度,以及用来使初步RP插座材料的类型。采用Taguchi实验设计方法和ASTM三点弯曲试验标准,可以确定影响树脂增强RP假肢套管的弯曲强度的参数。基于适当的参数,包括RP层和UPR层的厚度,RP材料和RP制造取向,初步薄的RP假体插座可以通过FDM机制造。然后将薄层初步RP插座用棉袜子包裹并层压UPR层以形成树脂增强的RP插座。为了证实在本研究中开发的树脂增强插座的有效性,在残肢/套接字接口中的压力通过使用一个压力分布测量系统和运动是由一个运动分析系统捕获在患者佩戴树脂强化RP测定插座。两个树脂强化RP插座已经制造并通过志愿者截肢者进行测试。实验结果的分析将有助于一个假肢,以评估在压力容错(PT)和残肢的减压(PR)地区的接触面压力的分布。而且,步态模式将被使用,而树脂强化RP插座佩戴于评估的适用性。拟议RP插座的耐久性试验试验用途正在安排之中。

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