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Surface Integrity When Machining Inconel 718 Using Conventional Lubrication and Carbon Dioxide Coolant

机译:使用常规润滑和二氧化碳冷却剂加工Inconel 718时的表面完整性

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Surface integrity induced by machining process affects strongly the performance of functional products, for instance, the fatigue life as well as the resistance to stress corrosion cracking. Consequently, it is relevant to evaluate the induced properties on and beneath the machined surface to ensure the good performance of the mechanical components while operating under either static or cyclic loads. Furthermore, this is even more important when designing critical components that withstand high loads at high temperatures. In this context, many studies have been carried out in order to characterize the surface integrity (residual stresses, surface roughness, micro-hardness of the affected layer) when machining Inconel 718. However, so far, the cryogenic effect on surface integrity of Inconel 718 is not well established although some preliminary works have already been developed. Therefore, this work aimed to point out the performance of cryogenic machining using the carbon dioxide CO2 as a cryogenic cutting fluid, considering as a reference the conventional lubrication. A comparative study has been carried out during turning operations of Inconel 718 using the same cutting parameters and the same tool geometry. Microhardness measurements showed that the CO2 condition induced higher strain hardening near the surface while conventional condition did not generate notable difference compared to the bulk material microhardness. With respect to residual stresses, results showed that conventional lubrication generated higher tensile residual stress near the surface along the cutting direction when using new tools. As for CO2 cryogenic condition, lower tensile residual stresses have been obtained near the surface. In addition, CO2 condition induced the largest compressive peak when using new and semi?worn tools in comparison with conventional lubrication.
机译:加工过程引起的表面完整性强烈影响功能产品的性能,例如疲劳寿命以及对应力腐蚀裂缝的抵抗力。因此,它与在加工表面上和下面的诱导性能下进行评估,以确保在静态或循环负载下操作时机械部件的良好性能。此外,在设计高温下承受高负荷的关键组件时,这更重要。在这种情况下,已经进行了许多研究,以表征在加工Inconel 718时表征表面完整性(残留应力,表面粗糙度,微硬度)。然而,到目前为止,到目前为止,对Inconel的表面完整性的低温影响虽然已经开发了一些初步作品,但718尚未确定。因此,考虑到常规润滑作为参考,这项工作旨在指出使用二氧化碳二氧化碳作为低温切削液的低温加工的性能。在使用相同的切割参数和相同的工具几何形状的Inconel 718的转动操作期间已经进行了比较研究。微硬度测量表明,与散装材料微硬度相比,CO 2条件诱导表面附近的高应变硬化,而常规条件没有产生显着的差异。关于残余应力,结果表明,当使用新工具时,常规润滑在沿着切割方向沿着切割方向产生更高的拉伸残余应力。至于CO 2低温条件,在表面​​附近获得了较低的拉伸残余应力。此外,与常规润滑相比,CO2条件诱导使用新的和半磨损工具时最大的压缩峰值。

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