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Investigating Effect of Industrial Coatings on Fatigue Damage

机译:产业涂料对疲劳损伤的影响

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Investigating Fatigue is one the most important factors in designing most mechanical structure. The reason is that, in many cases, the specimens of the structure break down without any warning or signal. Nano and micron's Coatings are finding more and more applications in industry such as aerospace, automotive, and naval industries. The present article has a purpose. Firstly, it intends to explore the influence of four industrial coatings, namely, hardened chromium, embellished chromium, hardened nickel, and warm galvanizing, all of which have the thickness value at micron levels on fatigue specimens. Moreover, it aims to find the most convenient coating. To achieve these purposes, the abovementioned coatings with the thickness of 13 & 19 were coated on standard specimens who were made of CK45 steel under the same conditions. Then, the S-N curve of each sample was attained empirically according to the standard fatigue testing. Specimens are simulated in the finite element analysis according to experimental conditions and then S-N curve of each sample was attained. Finally, comparing the S-N curves, the most appropriate coating is introduced for the delineated conditions and based fatigue results may be predicted damage of coating.
机译:调查疲劳是设计大多数机械结构的最重要因素。原因在于,在许多情况下,结构的标本分解没有任何警告或信号。 Nano和Micron的涂料在航空航天,汽车和海军行业等工业中寻找越来越多的应用。本条有一个目的。首先,它打算探讨四种工业涂料,即硬化铬,缀饰铬,硬化镍和温镀锌的影响,所有这些都具有在疲劳样本上的微米水平的厚度值。此外,它旨在找到最方便的涂层。为了实现这些目的,厚度为13&19的上述涂层涂覆在标准标本上,在相同条件下由CK45钢制成的标准试样。然后,根据标准疲劳测试凭经验验证每个样品的S-N曲线。根据实验条件,在有限元分析中模拟样品,然后获得每个样品的S-N曲线。最后,比较S-N曲线,引入最合适的涂层,用于描绘条件,基于疲劳结果可能是预测涂层的损伤。

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