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首页> 外文期刊>Mathematics and mechanics of solids: MMS >Investigation of the one-dimensional transient heat conduction problem of a coated high strength steel plate
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Investigation of the one-dimensional transient heat conduction problem of a coated high strength steel plate

机译:涂层高强度钢板一维瞬态导热问题研究

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摘要

In this paper, the one-dimensional transient heat conduction problem is investigated of a coated high strength steel (HSS) plate which is composed of two coating layers and a HSS layer. As the coating is extremely thin, non-Fourier heat conduction is applied to this part, while the steel part is analyzed by Fourier conduction. Then the temperature increment equations are obtained, which can be calculated by the Newmark method. The effects of thermal relaxation time, temperature boundary conditions, and coating parameters on temperature increment distribution of the coated HSS plate are also presented. Thus, the one-dimensional transient heat conduction problem of a coated HSS plate can be solved, which contributes to practical application and engineering design.
机译:在本文中,研究了由两个涂层和HSS层组成的涂覆的高强度钢(HSS)板的一维瞬态导热问题。 由于涂层非常薄,通过傅立叶传导来分析钢部件,施加非傅里叶热传导。 然后获得温度增量方程,可以通过纽马克方法计算。 还介绍了热弛豫时间,温度边界条件和涂覆参数对涂覆的HSS板的温度增量分布的影响。 因此,可以解决涂覆的HSS板的一维瞬态导热问题,这有助于实际应用和工程设计。

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