聚合物选择性激光烧结过程中的传热:参数分析

Lan Zhang, M. Boutaous, S. Xin, D. Siginer
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摘要

在选择性激光烧结(SLS)过程中,激光在聚合物粉末床中的传输包括吸收、反射和散射三个部分。由于聚合物粉末的颗粒性,散射现象导致光子在介质中各向同性传播,直接影响光子在粉末床中的分布。本文采用蒙特卡罗方法引入Mie理论,代替Bear-Lambert定律,对SLS过程中激光热源在粉末聚合物床中的运动进行了数值模拟,以正确表征材料中的热能分布。将得到的能量分布引入能量方程,求解非均匀介质中的传热问题。在经典理论的基础上,介绍了材料的熔化过程、聚并、空气扩散和孔隙演化等过程。同时,对激光功率、激光移动长度、材料预热温度等工艺参数进行了参数化热分析和讨论。它们对温度演变的影响是量化的。这些分析结果可以作为指导,为SLS过程提供技术数据库,对汽车、航空航天和医疗等领域的各个行业有帮助。
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Heat Transfer During Polymer Selective Laser Sintering Process: Parametric Analysis
The laser transmission in the polymer powder bed includes three parts during the selective laser sintering (SLS) process: absorption, reflection, and scattering. Because of the granular nature of the polymer powder, the scattering phenomena causes the photons isotropic travel in the medium, which affects directly the photons’ distribution in the powder bed. In this paper, we numerically simulate the laser heat source traveling in a powder polymer bed, as in the SLS process, by introducing the Mie theory with Monte-Carlo method, instead of the Bear-Lambert Law, to correctly represent the heating energy distribution in the material. The obtained energy distribution is then introduced in the energy equation to solve the heat transfer problem in such non homogeneous medium. All the material transformation are also introduced, as the melting process, the coalescence, air diffusion and porosity evolution, based on classical theories. Meanwhile, we carry out a parametric thermal analysis and discussed based on process parameters, like the laser power, laser moving length and the material preheating temperature. Their influence on the temperature evolution is quantified. These analysis results can be used as a guide for providing technical database to SLS process, helpful for various industries in automotive, aerospace and medical areas.
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