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Safe touch temperatures for hot plates

机译:热板的安全接触温度

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A finite difference heat transfer model has been developed to predict the Safe Touch Temperatures (STT) for plates made of different materials. SST can be defined as the highest temperature at which no pain is felt when the surface is touched fora long enough period to allow safe handling of the equipment. The criterion used to quantify damage is the "damage function" that was originally proposed by Henriques and Moritz. There are several uncertainties present in the physiological and thermalproperties of the skin that give rise to a solution range rather than a single solution. Certain simplifying assumptions are made that tend to yield solutions for STT that are toward the lower or "safe" end of the solution range. The model developed is atwo-dimensional axisymmetric model in cylindrical coordinates. A finite difference scheme that uses the Alternating Direction Implicit methodis used to solve the problem. It is a second-order scheme in both space and time domains. A parametric analysis of the model is performed to isolate those factors that affect the STT to the greatest extent. Data are presented for a variety of cases, which cover commonly observed ranges in material and geometric properties. It is found that the material properties, namely thermal conductivity and volumetric heat capacity, and the plate thickness ratio are the three most important parameters. These threeparameters account for a range of STT from 56℃-100℃ with thick metals at the low end and thin metals and plastics in the high range. This method represents a significant improvement over existing standard practices.
机译:已经开发了一种有限差分传热模型来预测由不同材料制成的板的安全接触温度(STT)。 SST可以定义为最高温度,在此温度下触摸表面足够长的时间以使设备安全处理时,不会感到疼痛。用于量化损害的标准是Henriques和Moritz最初提出的“损害函数”。在皮肤的生理和热学性质中存在几种不确定性,这些不确定性会导致溶液范围而不是单一溶液。做出某些简化的假设,这些趋势倾向于产生STT的解决方案,这些解决方案朝向解决方案范围的较低端或“安全”端。开发的模型是圆柱坐标中的二维轴对称模型。使用交替方向隐式方法的有限差分方案用于解决该问题。它在时域和时域都是二阶方案。对模型进行参数分析,以最大程度地隔离那些影响STT的因素。给出了各种情况的数据,这些数据涵盖了通常观察到的材料和几何特性范围。发现材料特性,即热导率和体积热容,以及板厚比是三个最重要的参数。这三个参数的STT范围为56℃-100℃,低端为厚金属,高范围为薄金属和塑料。这种方法代表了对现有标准实践的重大改进。

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