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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Time Estimate for the Incipient Surface Melting of Regular-Shaped Metals Receiving Uniform Heat Flux Inside a Metal Melting Furnace
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Time Estimate for the Incipient Surface Melting of Regular-Shaped Metals Receiving Uniform Heat Flux Inside a Metal Melting Furnace

机译:规则形状金属在金属熔炉内接受均匀热流的初期表面熔化的时间估计

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摘要

This article addresses the continuous heating of regular-shaped metals (large plate, long cylinder, and sphere) at ambient temperature placed in a metal melting furnace. Under the assumption of temperature-independent thermophysical properties of the metal, the heat conduction problem entails to unsteady one-dimensional (1D) heat conduction with a boundary condition of uniform heat flux. Based on the exact, analytic spatiotemporal temperature distributions for the regular-shaped metals, the objective of this study is to construct simple predictive formulas so that engineers can estimate the incipient melting of these metals when heated continually. The time at which melting at the metal surface is initiated, t_(melt), corresponds to setting the surface temperature, T_(sur), equal to the melting temperature, T_(melt). The analysis will be done under the premises of two asymptotic solutions: one a "large-time" solution and the other a "short-time" solution. A collection of six formulas of simple form for predicting the melting time, t_(melt), will be developed for those regular-shaped metals (large plate, long cylinder, and sphere).
机译:本文介绍了放置在金属熔炉中的常温形状金属(大板,长圆柱体和球体)在环境温度下的连续加热方法。在金属不依赖温度的热物理性质的假设下,热传导问题涉及具有均匀热通量的边界条件的不稳定的一维(1D)热传导。基于精确形状的时空金属的解析时空温度分布,本研究的目的是构建简单的预测公式,以便工程师可以估算连续加热时这些金属的初期熔化。在金属表面上开始熔化的时间t_(熔化)对应于将表面温度T_(sur)设置为等于熔化温度T_(melt)。该分析将在两种渐近解的前提下进行:一种是“大时间”解,另一种是“短时间”解。对于那些规则形状的金属(大板,长圆柱体和球体),将开发出六个简单形式的公式,用于预测熔化时间t_(melt)。

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