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Application of CAD/CAE/3D printing to development of magnetic foldable hanger

机译:CAD / CAE / 3D打印在磁性可折叠衣架开发中的应用

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A lot of things in daily life are manufactured and processed the articles through several passes that the costs of production are comparatively higher. Modern 3D printing allows the required articles and components being produced at home to reduce the expenses and time for contracted processing. Nonetheless, 3D printing is restricted to the material so that it could not present the strength and accuracy as metals do, under the comparison between the same articles. In this study, CAD/CAE/3D Printing technology is utilized for developing a magnetic foldable hanger. SolidWorks, the computer graphic software, is first used for graphing component. The Simulation Finite Element Method in the software is then used for the analysis to find out the stress and strain of the material with weight. The simulation analysis diagram reveals the amount of deformation and the place of the maximum deformation caused by the force generated by hanging clothing on a magnetic foldable hanger. Meanwhile, whether the equivalent stress induced by the material would exceed the limit of the new-style clotheshorse could be known. The above simulation result could be the reference for the improvement in the design analysis. The completed design plan could be converted to the format required for 3D printing to transfer print solid elements, which are further assembled the magnetic foldable hanger in this study.
机译:日常生活中的许多东西都是通过几种通过的制造和加工制品,即生产成本相对较高。现代3D打印允许在家中生产所需的物品和组件,以减少承包处理的费用和时间。尽管如此,3D打印限于材料,使得在相同物品之间的比较下,它不能在金属这样的情况下呈现强度和准确性。在该研究中,CAD / CAE / 3D打印技术用于开发磁性可折叠衣架。 SolidWorks,计算机图形软件首先用于图形组件。然后,软件中的模拟有限元方法用于分析,以找出具有重量的材料的应力和应变。仿真分析图揭示了由悬挂在磁性可折叠衣架上悬挂衣物产生的力引起的变形量和最大变形的位置。同时,材料引起的等同应力是否会超过新型衣夹的限制。以上仿真结果可能是改进设计分析的参考。可以将完成的设计计划转换为3D打印以传输印刷固体元件所需的格式,这进一步组装了本研究中的磁性可折叠衣架。

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