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The Threshold and Efficiency of Material Removal

机译:物料清除的门槛和效率

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摘要

A transient one-dimensional laser drilling model with variable properties is developed for a finite thickness material. The model contains three different physical domains, solid, liquid and vapor. The material properties such as absorptivity, thermal conductivity, and heat capacity can be functions of temperature. The governing equations in each domain are solved numerically using the boundary immobilization transformation. The final solution is obtained by an iterative scheme to satisfy the energy balance along the solid-liquid and liquid-vapor interfaces. The temporal laser power can be arbitrary. Sub-minute solution times are typical, permitting the rapid investigation of a design space. In this presentation, the numerical model is used to predict the removal threshold, mass removal rates and drilling efficiency for various laser parameters. A specific simulation is performed using mild steel properties. The physics of material removal and removal threshold will be discussed and results will be presented.
机译:针对有限厚度的材料,开发了具有可变特性的瞬态一维激光钻孔模型。该模型包含三个不同的物理域,即固体,液体和蒸气。诸如吸收率,热导率和热容之类的材料特性可以是温度的函数。使用边界固定变换对每个域中的控制方程进行数值求解。通过迭代方案获得最终解决方案,以满足沿着固-液和液-汽界面的能量平衡。时间激光功率可以是任意的。通常只有不到一分钟的解决时间,因此可以快速研究设计空间。在本演示中,数值模型用于预测各种激光参数的去除阈值,质量去除率和钻孔效率。使用低碳钢性能进行特定的模拟。将讨论材料去除和去除阈值的物理原理,并给出结果。

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