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Ultrafast radiation heat transfer in laser tissue welding and soldering

机译:激光组织焊接中的超快辐射热传递

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摘要

Laser tissue welding and soldering with use of short laser pulses are proposed. The transient radiation heat transfer in the picosecond time scale is numerically investigated for the first time using the discrete ordinate method for cylindrical geometries. The numerical method developed incorporates the propagation of radiation with the speed of light. The temporal radiation fields of tissue cylinders under the irradiation of short laser pulses are obtained. The use of short laser pulses for tissue welding and soldering is found to have reduced thermal damage to the healthy tissue and improves the uniformity of heating in the tissue closure region in both the depth and radial directions. The addition of absorbing solders in tissue soldering results in a well-confined radiation energy deposition field in the proximity of the solder-stained region and lessens the outgoing radiative heat flux at the laser incident surface. Comparisons of radiation heat transfer are made between the spatially square-variance and Gaussian-variance laser inputs and between the temporally Gaussian-profile and skewed-profile pulses, respectively.
机译:提出了使用短激光脉冲的激光组织焊接和软焊。首次使用离散坐标方法对圆柱几何图形进行了皮秒级的瞬态辐射传热研究。开发的数值方法将辐射的传播与光速结合在一起。获得在短激光脉冲照射下的组织圆柱体的时间辐射场。发现将短激光脉冲用于组织焊接和软焊可减少对健康组织的热损伤,并改善组织闭合区域在深度和径向两个方向上的加热均匀性。在组织焊接中添加吸收性焊料会导致在焊料染色区域附近产生良好的辐射能量沉积场,并减少激光入射表面的出射辐射热通量。在空间平方方差和高斯方差激光输入之间以及在时间上的高斯轮廓和偏斜轮廓脉冲之间分别进行了辐射热传递的比较。

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