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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Physical Modeling for Selective Laser Sintering Process
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Physical Modeling for Selective Laser Sintering Process

机译:选择性激光烧结过程的物理建模

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The process of selective laser sintering (SLS) involves selective heating and fusion of powdered material using a moving laser beam. Because of its complicated manufacturing process, physical modeling of the transformation from powder to final product in the SLS process is currently a challenge. Existing simulations of transient temperatures during this process are performed either using finite-element (FE) or discrete-element (DE) methods which are either inaccurate in representing the heat-affected zone (HAZ) or computationally expensive to be practical in large-scale industrial applications. In this work, a new computational model for physical modeling of the transient temperature of the powder bed during the SLS process is developed that combines the FE and the DE methods and accounts for the dynamic changes of particle contact areas in the HAZ. The results show significant improvements in computational efficiency over traditional DE simulations while maintaining the same level of accuracy.
机译:选择性激光烧结(SLS)的过程涉及使用移动激光束对粉末材料进行选择性加热和熔化。由于其复杂的制造工艺,目前在SLS工艺中从粉末到最终产品的转变的物理建模是一个挑战。使用有限元(FE)或离散元素(DE)方法进行此过程中瞬态温度的现有模拟,这些方法在表示热影响区(HAZ)方面不准确,或者在大规模实践中计算上昂贵工业应用。在这项工作中,开发了一种新的用于在SLS过程中对粉末床的瞬态温度进行物理建模的计算模型,该模型结合了FE和DE方法,并考虑了热影响区中颗粒接触面积的动态变化。结果表明,与传统的DE模拟相比,计算效率有了显着提高,同时保持了相同的准确性。

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