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Dry machining of Inconel 718, workpiece surface integrity

机译:Inconel 718的干式加工,工件表面完整性

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In the machining of Inconel 718, nickel based heat resistant superalloy and classified difficult-to-cut material, the consumption of cooling lubricant is very important. To reduce the costs of production and to make the processes environmentally safe, the goal is to move toward dry cutting by eliminating cutting fluids. This goal can be achieved by using coated carbide tool and by increasing cutting speed. The present paper firstly reviews the main works on surface integrity and especially residual stresses when machining Inconel 718 superalloy. It focuses then on the effect of dry machining on surface integrity. Wet and dry turning tests were performed at various cutting speeds, with semi-finishing conditions (0.5 mm depth of cut and 0.1 mm/rev feed rate) and using a coated carbide tool. For each cutting test, cutting force was measured, machined surface was observed, and residual stress profiles were determined. An optimal cutting speed of 60 m/min was determined, and additional measurements and observations were performed. Microhardness increment and the microstructure alteration beneath the machined surface were analysed. It is demonstrated that dry machining with a coated carbide tool leads to potentially acceptable surface quality with residual stresses and microhardness values in the machining affected zone of the same order than those obtained in wet conditions when using the optimised cutting speed value; in addition, no severe microstructure alteration was depicted.
机译:在加工Inconel 718,镍基耐热高温合金和分类难切削材料时,冷却润滑剂的消耗非常重要。为了降低生产成本并确保工艺对环境安全,目标是通过消除切削液来实现干式切削。该目标可以通过使用涂层硬质合金刀具并提高切削速度来实现。本文首先回顾了加工Inconel 718高温合金时表面完整性尤其是残余应力的主要工作。然后将重点放在干式加工对表面完整性的影响上。在半精加工条件下(切削深度为0.5毫米,进给速度为0.1毫米/转),以各种切削速度进行干式和湿式车削试验。对于每个切削测试,测量切削力,观察加工表面,并确定残余应力曲线。确定了60 m / min的最佳切割速度,并进行了其他测量和观察。分析了加工表面下方的显微硬度增加和显微组织的变化。结果表明,使用涂层的硬质合金刀具进行干式加工可获得潜在的可接受的表面质量,在加工影响区域中的残余应力和显微硬度值与使用最佳切削速度值在潮湿条件下获得的值相同。另外,没有描述严重的微观结构改变。

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