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首页> 外文期刊>International Journal of Automotive Technology >ANALYSIS OF THE PERMANENT DEFORMATION OF AUTOMOBILE HOODS
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ANALYSIS OF THE PERMANENT DEFORMATION OF AUTOMOBILE HOODS

机译:汽车罩永久变形分析

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One factor that determines the quality of an automobile's appearance is its appearance integrity, which means that the degree to which an automobile's physical appearance coincides with its mechanical quality. The painting process of an automobile can cause the permanent deformation of its hood, which lowers its appearace integrity. The painting process is comprised of the dipping process and the oven process. In the dipping process, pressure caused by the flow of fluid can cause the deformation of the automobile hood; in the oven process, the thermal deformation of sealers can cause the deformation of the hood. In an effort to increase automobiles' appearance integrity, this study identifies the major causes of deformation and predicts the types of deformation occurring in each process. The numerical model of a hood is established using the stiffness scanning method and analysis, and deformation in the dipping process is confirmed using Finite Elements Method (FEM). Sealers are hypothesized as the main reason for deformation in the oven process, so a study of the sealers is conducted to predict the deformation occurring after the oven process. Further, through a thermal property experiment and viscosity test, we are able to deduce the properties of sealers that cause deformation. This study also examines the effects of hood deformation in the oven process using numerical analysis and compares the degree of deformation caused by pressure and heat. The results show that the absolute value of deformation in the dipping process is greater than that in the oven process. Moreover, it is shown that deformation can occur bi-directionally in the oven process, and the quantity of mastic sealer does affect the degree of deformation.
机译:决定汽车外观质量的一个因素是其外观完整性,这意味着汽车的物理外观与其机械质量一致的程度。汽车的涂漆过程可能导致引擎盖永久变形,从而降低其外观完整性。上漆过程包括浸渍过程和烤箱过程。在浸渍过程中,由流体流动引起的压力会导致汽车引擎盖变形。在烤箱过程中,密封剂的热变形会导致引擎盖变形。为了提高汽车的外观完整性,本研究确定了变形的主要原因,并预测了每个过程中发生的变形的类型。使用刚度扫描法和分析法建立了发动机罩的数值模型,并使用有限元法(FEM)确认了浸入过程中的变形。假设封口机是烤箱过程中变形的主要原因,因此对封口机进行了研究,以预测烤箱过程后发生的变形。此外,通过热性能实验和粘度测试,我们能够推断出引起变形的密封剂的性能。这项研究还使用数值分析方法研究了炉罩变形在烤箱中的影响,并比较了压力和热量导致的变形程度。结果表明,浸渍过程中的变形绝对值大于烘箱过程中的绝对值。而且,显示出在烘箱过程中变形可以双向发生,并且胶乳密封剂的量确实影响变形程度。

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