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Effects of contact pressure, interface temperature, and surface roughness on thermal contact conductance between stainless steel surfaces under atmosphere condition

机译:大气条件下接触压力,界面温度和表面粗糙度对不锈钢表面之间热接触电导率的影响

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摘要

An experiment was performed to investigate the effects of interface temperature, specimen surface roughness, and contact pressure on thermal contact conductance (TCC). Specimens were prepared using SUS 304 stainless steel, the interface temperature was in the region of 360-640 ℃, the contact pressure was between 2.39 and 15.17 MPa, and the surface roughness ranged from 0.25 μm to 2.00 μm. All experiments were conducted in ambient atmosphere. Results indicated that TCC presents a power law relationship with contact pressure and interface temperature. While the contact pressure exponent varied between 0.20 and 0.46 at different surface roughness, the interface temperature exponent showed a much wider range of 0.45-2.36. TCC increased more rapidly with temperature in specimens with higher surface roughness than in those with lower surface roughness. The correlation equations between thermal contact conductance, contact pressure, and interface temperature revealed a relative error of 20%.
机译:进行了一项实验,以研究界面温度,样品表面粗糙度和接触压力对热接触电导(TCC)的影响。用SUS 304不锈钢制备试样,界面温度在360-640℃范围内,接触压力在2.39和15.17 MPa之间,表面粗糙度在0.25μm至2.00μm之间。所有实验均在环境气氛中进行。结果表明,TCC与接触压力和界面温度呈幂律关系。尽管在不同的表面粗糙度下接触压力指数在0.20和0.46之间变化,但界面温度指数却显示出0.45-2.36的更大范围。表面粗糙度较高的试样的TCC随温度的升高比表面粗糙度较低的试样的TCC升高更快。热接触电导,接触压力和界面温度之间的相关方程显示相对误差为20%。

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