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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Improvements of machinability of aerospace-grade Inconel alloys with ultrasonically assisted hybrid machining
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Improvements of machinability of aerospace-grade Inconel alloys with ultrasonically assisted hybrid machining

机译:超声辅助杂交加工的航空级型号合金可加工性改进

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Aerospace-grade Ni-based alloys such as Inconel 718 and 625 are widely used in the airspace industry thanks to their excellent mechanical properties at high temperatures. However, these materials are classified as difficult-to-machine' because of their high shear strength, low thermal conductivity, tendency to work-harden and presence of carbide particles in their microstructure, which lead to rapid tool wear. Machining-induced residual stresses in a machined part is an important parameter which is assessed since it can be used to evaluate overall structural resilience of the component and its propensity to fatigue failure in-service. Ultrasonically assisted turning (UAT) is a hybrid machining technique, in which tool-workpiece contact conditions are altered by imposing ultrasonic vibration (typical frequency similar to 20kHz) on a tool's movement in a cutting process. Several studies demonstrated successfully the resulting improvements in cutting forces and surface topography. However, a thorough study of UAT-induced residual stresses is missing. In this study, experimental results are presented for machining Inconel 718 and 625 using both conventional turning (CT) and UAT with different machining parameters to investigate the effect on cutting forces, surface roughness and residual stresses in the machined parts. The study indicates that UAT leads to significant cutting force reductions and improved surface roughness in comparison to CT for cutting speeds below a critical level. The residual stresses in machined workpiece show that UAT generates more compressive stresses when compared to those in CT. Thus, UAT demonstrates an overall improvement in machinability of Inconel alloys.
机译:由于其在高温下的优异机械性能,航空航天级Ni基合金如Inconel 718和625,在空域行业中广泛应用于空域行业。然而,由于其高剪切强度,低导热率,在它们的微观结构中,使这些材料归类为难以机器的难以加入的机器“,导热 - 硬化和碳化物颗粒的存在,这导致快速的工具磨损。机加工部件中的加工诱导的残余应力是评估的重要参数,因为它可用于评估组分的整体结构弹性及其在疲劳失效的疲劳失效倾向。超声辅助转动(UAT)是一种混合加工技术,其中通过在切割过程中的工具运动上施加超声波振动(典型频率类似于20kHz)来改变工具工件接触条件。几项研究成功地证明了切割力和表面形貌的产生改善。然而,缺少对uat诱导的残余应力的彻底研究。在该研究中,使用具有不同加工参数的传统转弯(CT)和UAT来提出实验结果,用于使用不同的加工参数来研究对加工部件中的切割力,表面粗糙度和残余应力的影响。该研究表明,与CT的切割速度低于临界水平的切割速度相比,UAT导致显着的切削力降低和改善的表面粗糙度。加工工件中的残余应力表明,与CT中的那些相比,UAT在与CT中相比产生的压缩应力。因此,UAT显示了Inconel合金的可加工性的总体改进。

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