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Effects of a variety of cutting fluids administered using the minimum quantity lubrication method on the surface grinding process for nickel-based alloys

机译:使用最小量润滑法施用各种切削液对镍基合金表面研磨方法的影响

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This paper presents the characteristics of nickel-based alloys, alongside their division into groups, and describes the features that make such materials difficult to grind. The possibilities of exerting a positive influence upon machining conditions, especially through the proper application of grinding fluids, are briefly presented. Both the precise methodologies for, and the results of, the experimental tests carried out on flat surfaces are also detailed. The aim of these tests was to determine the influence of the application of two types of grinding liquid (Ecocut Mikro Plus 82 and Biocut 3000) upon the grinding force values and surface roughness of the machined workpieces made from three nickel alloys (Nickel 201, INCONELA (R) alloy 600, and MONELA (R) alloy 400). An additional goal of the tests was to determine the influence of grinding wheel structure on the course and results of the machining process. The results indicate that the physical and chemical properties of Biocut 3000 enabled the most advantageous properties of the machined surface roughness, alongside a simultaneous increase in grinding power, when compared to the results when applying Ecocut Mikro Plus 82. The results showed an almost inversely proportional dependence upon the specific tangential grinding force F (t)' and arithmetic mean deviation of the surface profile R (a) values, especially in cases of machining Nickel 201 and INCONELA (R) alloy 600. The original traverse grinding methodology used in the tests made it possible to assess the changes of the grinding conditions within the conventionally selected zones.
机译:本文介绍了镍基合金的特点,将其分裂划分为组,并描述了使这些材料难以研磨的特征。简要介绍了对加工条件施加积极影响的可能性,特别是通过适当地施加研磨流体。在平面上进行的精确方法和结果,还详细说明了在平坦表面上进行的实验试验。这些测试的目的是确定应用两种类型的研磨液(Ecocut Mikro Plus 82和Biocut 3000)对由三个镍合金制成的加工工件的研磨力值和表面粗糙度的影响(镍201,Inconela (r)合金600,和Monela(R)合金400)。测试的另一个目标是确定研磨轮结构对加工过程的过程和结果的影响。结果表明,与施加Ecocut mikro加82的结果相比,生物陶器3000的物理和化学性能使得加工表面粗糙度的最有利的性能。结果表明,结果表明了几乎成反比的结果依赖于表面轮廓R(a)值的特定切向研磨力f(t)'和算术平均偏差,尤其是在加工镍201和INCOLA(R)合金600的情况下。测试中使用的原始横向研磨方法使得可以评估常规选定的区域内的研磨条件的变化。

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