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TOO HOT TO HANDLE? AN INVESTIGATION INTO SAFE TOUCH TEMPERATURES

机译:太难处理了?安全触摸温度的调查

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Thermal burns occur when tissue temperature rises above a threshold value for a finite period of time. The safe touch temperature (STT) is the maximum allowable surface temperature for a material at which no tissue damage or pain occurs when the material is touched for a long enough period to allow safe handling. Current guidelines for the determination of safe touch temperatures are limited. The objective of this study was to determine the effect of material type and thickness on the safe touch temperature. We considered two boundary conditions in our evaluation of safe touch temperatures. Case 1 employed a fixed surface temperature on the surface opposite the contact point (i.e. a single sided contact situation like that encountered touching a pipe carrying a hot fluid) and Case 2 employed an adiabatic surface on the surface opposite the contact point (i.e. a two sided contact situation like that encountered when picking up a hot plate). The study utilized a finite element model to predict skin contact temperature as a function of plate temperature for copper and plastic plates ranging in thickness from 0.1 to 3.0 mm. We applied the damage function model of Xu and Qian and determined that for the single sided contact condition the safe touch temperature increases with thickness from a low of 60 ℃ to a high of 115 ℃ for plastic and is invariant with thickness for copper at 60 ℃. For the two sided contact condition the safe touch temperature was found to decrease as thickness increases from a high of 160 ℃ to a low of 110 ℃ for plastic and a high of 100 ℃ to a low of 60 ℃ for copper.
机译:当组织温度在一定时间内升高到阈值以上时,会发生热灼伤。安全触摸温度(STT)是材料的最大允许表面温度,在此温度下触摸该材料足够长的时间以确保安全处理时,不会发生组织损伤或疼痛。当前确定安全触摸温度的准则是有限的。这项研究的目的是确定材料类型和厚度对安全触摸温度的影响。在评估安全触摸温度时,我们考虑了两个边界条件。情况1在与接触点相对的表面上采用了固定的表面温度(即,单侧接触的情况,如碰到接触输送热流体的管道的情况),情况2在接触点相对的表面上采用了绝热表面(即两个侧面接触情况,例如拿起热板时遇到的情况)。这项研究利用有限元模型来预测厚度为0.1至3.0毫米的铜和塑料板的皮肤接触温度随板温度的变化。我们使用徐和钱的损伤函数模型,确定对于单面接触条件,塑料的安全触摸温度随厚度从60℃的低点升高到115℃的高温,而在60℃时,铜的厚度不变。 。对于两侧接触条件,发现安全接触温度随厚度的增加而降低,塑料的厚度从160℃升高到110℃的低温,铜的厚度从100℃升高到60℃的低温。

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