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Improvement of handle grip using reverse engineering, CAE and Rapid Prototyping

机译:使用逆向工程,CAE和快速原型改进手柄握把

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The overwhelming majority of manual operations is even nowadays performed by using manual hand tools. These tools can be divided into 2 groups – hand tools designed for general use or a single-purpose hand tools for special operations. Tool described in this paper is used in assembling operation in the completion of electric motor. During the design of the existing tools the requirements for a functional part of the tool (lifespan, inability to damage the engine installation) were fully considered, demands for ergonomic grip area, however, were not taken into account. Long-term use of incorrectly designed tool causes carpal tunnel syndrome, hand-arm vibration syndrome, diminished sensitivity or tingling in the fingers of workers. These difficulties can be reduced or entirely eliminated due to proper design of the grip of hand tool. Most authors focus on adjusting the grip for optimum ergonomics at individual types of grips (cylindrical, palmar, lateral, etc.). However, as already mentioned, there are tools for specific operations when the working area is limited by space or a specific type of load on the grip is needed. In some cases, it is often necessary to change the type of grip or combine different types of grips. This paper describes the design of an optimal grip of hand tool used for specific operation when assembling motors. Design of prototype mold and production of functional prototypes for ergonomics assessment directly in the workplace were realized. New design of handle should reduce the risk primarily of developing carpal tunnel in long-term use.
机译:大多数手动操作甚至是通过使用手动手工工具进行的。这些工具可分为2组 - 手动工具,专为一般使用或用于特殊操作的单一用途手动工具。本文中描述的工具用于完成电动机完成中的组装操作。在现有工具的设计期间,完全考虑了工具功能部分(LifeSpan,无法损坏发动机安装)的要求,不考虑对符合人体工程学抓地区的要求。长期使用错误设计的工具导致腕管综合征,手臂振动综合征,敏感度减少或工人手指刺痛。由于手动工具的握把,可以减少或完全消除这些困难。大多数作者侧重于调整各种夹具(圆柱形,棕榈,横向等)的最佳人体工程学的抓地力。然而,如已经提到的那样,当工作区域受空间的限制或需要抓地时,存在有关特定操作的工具。在某些情况下,通常需要改变抓握类型或组合不同类型的夹具。本文介绍了在组装电动机时用于特定操作的手动工具的最佳手柄的设计。实现了原型模具的设计,并在工作场所直接进行人体工程学评估的功能原型的设计。手柄的新设计应在长期使用中降低主要开发腕管的风险。

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