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Thermal response of a dental tissue induced by femtosecond laser pulses

机译:飞秒激光脉冲引起的牙齿组织的热响应

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This paper reports a theoretical and experimental study for thermal transport in a thin slice of human tooth induced by a 120 fs, 800 nm pulse laser at a repetition rate of 1 kHz. The surface reflectivity of enamel and the convection heat transfer coefficient were determined using an inverse heat transfer analysis. Instead of a fully three-dimensional modeling, two simplified two-dimensional (2D) planar and axisymmetric heat conduction models were proposed to simulate the temperature fields. The temperature responses obtained from the 2D planar and axisymmetric model agree well with the experimental measurements. On the other hand, the one-dimensional (1D) result significantly differs from the 2D axisymmetric one, suggesting that care should be taken when a 1D thermal model is considered for estimating temperature response.
机译:本文报道了120 fs,800 nm脉冲激光以1 kHz的重复频率在人的牙齿薄片中进行热传输的理论和实验研究。使用逆传热分析来确定搪瓷的表面反射率和对流传热系数。代替完整的三维模型,提出了两个简化的二维(2D)平面和轴对称导热模型来模拟温度场。从二维平面和轴对称模型获得的温度响应与实验测量结果非常吻合。另一方面,一维(1D)结果与2D轴对称结果显着不同,这表明在考虑使用1D热模型估算温度响应时应格外小心。

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