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Law of cooling heat conduction and Stefan-Boltzmann radiation laws fitted to experimental data for bones irradiated by CO2 laser

机译:冷却定律热传导定律和Stefan-Boltzmann辐射定律适合于CO2激光照射的骨骼的实验数据

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摘要

The rate of cooling of domesticated pig bones is investigated within the temperature range of 20°C-320°C. Within the afore-mentioned temperature range, it was found that different behaviors in the rate of cooling were taking place. For bones reaching a temperature within the lower temperature range of 20°C-50°C, it was found that the rate of cooling is mostly governed by the empirical Newton’s law of cooling. It is also shown that a transition is taking place somewhere within 50°C-100°C, where both the heat conduction equation and Newton’s law apply. As bones can be raised at a fairly high temperature before burning, it was found that the rate of cooling within the range 125°C-320°C is mostly behaving according to the heat conduction equation and Stefan-Boltzmann radiation law. A pulsed CO2 laser was used to heat the bones up to a given temperature and the change of temperature as a function of time was recorded by non-contact infrared thermometer during the cooling period.
机译:在20°C-320°C的温度范围内研究了驯化的猪骨的冷却速率。在上述温度范围内,发现冷却速率发生了不同的行为。发现对于温度在20°C-50°C较低温度范围内的骨骼,冷却速度主要受经验牛顿冷却定律控制。还表明,在50°C至100°C的某个温度范围内会发生转变,同时热传导方程式和牛顿定律都适用。由于骨头可以在燃烧前在相当高的温度下长大,因此发现,根据热传导方程和Stefan-Boltzmann辐射定律,冷却速率通常在125°C-320°C范围内。使用脉冲CO2激光将骨骼加热到给定温度,并在冷却期间通过非接触式红外温度计记录温度随时间的变化。

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