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Factors Affecting Thickness of Prosthetic Socket in Thermoforming Fabrication

机译:影响高压套筒厚度在热成型制造中的因素

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Nowadays, there are two socket fabrication methods in Thailand, which are resin casting and thermal vacuum method. The thermal vacuum forming method has more advantages than the resin casting method that ruins technicians' health from the volatile matter. Nevertheless, the thermal vacuum forming method can fabricate the socket with poor wall thickness distribution. The purpose of this paper is to study the effects of the feed rate of stump mould and the temperature distribution of the plastic sheet on the prosthetic socket wall thickness during the thermal vacuum forming process. The feed rates of stump mould were varied by using an industrial robot. The temperature distribution of the plastic sheet was controlled by circular and annular fiberglass insulators placed in its center. The results showed that the prosthetic socket wall thickness increases around the central area of the socket with a decreased feed rate of stump mould. The annular insulator increases the wall thickness slightly, while the circular insulator increases the thickness significantly. The wall thickness at the thinnest location increased from 1.6 mm up to 2.8 mm. In addition, wall thicknesses of areas beneath the circular insulator increased significantly between the marked positions -25 through +25.
机译:如今,泰国有两个插座制造方法,是树脂铸造和热真空法。热真空成型方法具有比树脂铸造方法从挥发物质中破坏技术人员的健康状况更具优势。然而,热真空成型方法可以制造具有较差壁厚分布的插座。本文的目的是研究热真空成型过程中树桩模具的进料速率和塑料片温度分布对假体插座壁厚的影响。通过使用工业机器人改变树桩模具的进料速率。塑料片的温度分布由放置在其中心的圆形和环形玻璃纤维绝缘体控制。结果表明,假肢插座壁厚随着树桩模具的进料速率而围绕插座的中心区域增加。环形绝缘体略微增加壁厚,而圆形绝缘体显着增加厚度。最薄位置的壁厚从1.6毫米增加到2.8毫米。另外,圆形绝缘体下方的区域的壁厚在标记位置-25至+25之间显着增加。

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