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Simulation of MQL Deep Hole Drilling for Predicting Thermally Induced Workpiece Deformations

机译:用于预测热致工件变形的MQL深孔钻进的仿真

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The resulting thermomechanical load on the workpiece in deep hole drilling operations using minimum quantity lubrication (MQL) induces a strong in-process deflection of the machined component and can cause an insufficient accuracy of the produced hole. Also subsequent machining operations can be affected by the thermoelastic component of this deformation, which remains within the workpiece after the drilling process. Due to the comparatively long main time of typical deep hole drilling operations the thermomechanical simulation of commonly complex machined parts is challenging. In this paper, a fast finite-element approach using massive parallel solution methods is presented and validated for different wall thickness situations.
机译:在使用最小量润滑(MQL)的深孔钻削操作中,工件上产生的热机械载荷会导致加工的零件发生强烈的过程中偏斜,并可能导致所生产的孔的精度不足。而且,随后的加工操作也会受到这种变形的热弹性分量的影响,该变形在钻孔过程之后仍保留在工件内。由于典型的深孔钻探操作的主要时间较长,因此通常复杂的机加工零件的热机械模拟具有挑战性。本文提出了一种使用大规模并行求解方法的快速有限元方法,并针对不同的壁厚情况进行了验证。

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