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Finite-Element Analysis of Forces in Drilling of Ti-Alloys at Elevated Temperature

机译:升高温度下钻磨钻的力的有限元分析

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Demand for high-strength alloys in aerospace, marine and off-shore industries has grown significantly over the last decades, primarily thanks to their high strength, light weight as well as good fatigue and corrosion-resistance properties. However, those materials are extremely difficult to machine with conventional machining methods. Hot machining is an alternative technique, used by many researchers for cutting of hard-to-cut materials in turning and milling operations. In this assisted machining technique, an external heat source is used to reduce shear strength of the machined workpiece and enhancing material removal rate of such alloys. Drilling is one of the most important and basic operations for producing cylindrical holes in machined components. In this work, a three-dimensional finite-element (FE) model of drilling process is developed in a commercial FE software DEFORM 3D. A nonlinear temperature-dependent material behaviour is incorporated in numerical simulations. The effect of an external heat source on thrust force and torque on a drill-bit was investigated with the developed FE model. Advantages of hot drilling in reducing thrust force and torque are demonstrated.
机译:过去几十年来,航空航天,海洋和离岸行业的高强度合金的需求显着增加,主要是由于其高强度,重量轻,疲劳和耐腐蚀性。然而,这些材料非常难以通过传统的加工方法机器。热加工是一种替代技术,由许多研究人员使用,用于切割转动和铣削操作中的难以切割的材料。在这种辅助加工技术中,外部热源用于减少加工工件的剪切强度并增强这种合金的材料去除率。钻井是在机加工部件中生产圆柱孔的最重要和基本操作之一。在这项工作中,在商业FE软件变形3D中开发了一种钻井过程的三维有限元(FE)模型。非线性温度依赖性材料行为结合在数值模拟中。用开发的FE模型研究了外部热源对钻头上的推力和扭矩的影响。证明了降低推力和扭矩的热钻孔的优点。

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