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Screw connection and its load capacity in components made by rapid prototyping technology

机译:快速原型技术制造的组件中的螺钉连接及其负载能力

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The Department of Robotics at The Faculty of Mechanical Engineering has recently recognized the benefit of using components produced by rapid prototyping technology (RP) [1] over peripherals, in producing and servicing robotic devices. The percentage of the parts produced by rapid prototyping technology in some devices may exceed 80 percent. Employing this technology means, that connecting the various parts of the mechanical structure is done by bolting the joints. In doing so, the question of maximum fastening torque of such joints arose, giving consideration to the unknown mechanical material properties of the parts in the place of force action. This paper will deal with maximal torque and hence the force acting at the screw connection of the part made by RP technology. It also addresses the question of how the size of the area under the bolt head affects the load capacity of screw connection. Great emphasis is assigned to testing the bolt joint load capacity, relevant to the testing of the material samples. Additionally, the article provides specific measurement values, which may serve as a guideline for the design of joints using this concept. The article also builds on the knowledge gained from previous testing of the screw connections made by 3D print technology [2].
机译:机械工程学院的机器人系最近认识到,在生产和维修机器人设备时,使用由快速原型技术(RP)[1]生产的组件优于外围设备的好处。快速原型技术在某些设备中生产的零件百分比可能超过80%。使用这项技术意味着通过螺栓连接来连接机械结构的各个部分。在这种情况下,出现了这样的接头的最大紧固扭矩的问题,其中考虑了代替力作用的部件的未知的机械材料性能。本文将处理最大扭矩,从而处理作用于RP技术制成的零件的螺纹连接处的力。它还解决了螺栓头下方区域的尺寸如何影响螺钉连接的负载能力的问题。与材料样品测试相关的测试重点是螺栓连接的载荷能力测试。此外,本文提供了特定的测量值,这些值可以用作使用该概念设计接头的指南。本文还基于先前通过3D打印技术进行的螺钉连接测试所获得的知识[2]。

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