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Analyze Thickness Precision of Irregular Metal Aerosol Can Based on ANSYS

机译:基于ANSYS的不规则金属气溶胶罐厚度精度分析。

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Irregular metal aerosol can should not only satisfy consumer's individual demand, but also reduce thickness as much as possible with long-term pressure resistance. In this study, three difference can structures are designed with ergonomics considerations. SolidWorks software is adopted for modeling and ANSYS for simulation and analysis. The relevance between can thickness as well as long-time pressure resistance is discussed. The thickness of the shell is set to 0.45, 0.50, 0.55, 0.60, and 0.65 mm, respectively. The models from SolidWorks are then imported into ANSYS and 1.2 MPa pressure is imposed from inside wall. Based on the resulted curves of thickness stress, an optimum thickness is obtained for each can. Combined with aesthetics and ergonomic factors, the third model is considered to be the best design, with a maximum stress value of 707.8 Mpa in 0.51 mm thickness. It is less than the standard 720.0 Mpa and verified on remodeling of the third model. Summarily, this discussion aims to improve the design accuracy and provide a profit basis.
机译:不规则金属气雾剂不仅应满足消费者的个性化需求,而且还应在具有长期耐压性的情况下尽可能减小厚度。在这项研究中,设计了三种不同的罐头结构,并考虑了人机工程学因素。采用SolidWorks软件进行建模,并采用ANSYS进行仿真和分析。讨论了罐头厚度与长期耐压性之间的相关性。外壳的厚度分别设置为0.45、0.50、0.55、0.60和0.65毫米。然后将SolidWorks的模型导入ANSYS,并从内壁施加1.2 MPa的压力。根据所产生的厚度应力曲线,可以获得每个罐的最佳厚度。结合美学和人体工程学因素,第三个模型被认为是最佳设计,在0.51 mm的厚度下最大应力值为707.8 Mpa。它小于标准的720.0 Mpa,并在对第三个模型进行重塑时得到了验证。综上所述,该讨论旨在提高设计准确性并提供利润基础。

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