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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Investigations in subsurface damage when machining -strengthened nickel-based superalloy
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Investigations in subsurface damage when machining -strengthened nickel-based superalloy

机译:加工强化镍基高温合金时表面下损伤的研究

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摘要

-strengthened nickel-based superalloys are developed for high-performance systems such as jet engines, internal combustion engines, and gas turbines. Their excellent properties are given by specifically designed microstructure. Unfortunately, the structure is deformed during machining. Too much deformation generated results in components with low mechanical integrity and reduced in-service life. Experimental investigations indicated that the machining affected zone or subsurface damage formation for nickel-based superalloys is an atypical phenomenon; its dependence on the process parameters is fundamentally different from the conventional materials. This research investigates subsurface damage formation in orthogonal cutting tests performed on nickel-based superalloys, followed by empirical and numerical modeling. The simulations are used to estimate the depth of the subsurface damage and are compared with the experimental results. The knowledge can then be applied to select optimum cutting parameters for an acceptable depth of subsurface damage.
机译:高强度镍基超级合金是为高性能系统开发的,例如喷气发动机,内燃机和燃气轮机。它们的优异性能是由专门设计的微结构赋予的。不幸的是,该结构在机加工期间变形。产生的变形太大会导致组件的机械完整性较低,并且使用寿命会缩短。实验研究表明,镍基高温合金的加工影响区或表面损伤形成是一种非典型现象。它对工艺参数的依赖性从根本上不同于常规材料。本研究在对镍基高温合金进行的正交切削试验中调查了表面损伤的形成,然后进行了经验和数值模拟。该模拟用于估计地下破坏的深度,并与实验结果进行比较。然后可以将这些知识应用于为可接受的地下破坏深度选择最佳切削参数。

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