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首页> 外文期刊>Industrial Lubrication and Tribology >Investigation into the relationship between tool-wear and cutting environments when milling an austenitic stainless steel and En32 low carbon steel
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Investigation into the relationship between tool-wear and cutting environments when milling an austenitic stainless steel and En32 low carbon steel

机译:研究铣削奥氏体不锈钢和En32低碳钢时刀具磨损与切削环境之间的关系

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Purpose - Cutting fluids despite playing an important role in metal cutting have considerable environmental impact. Inert gaseous metal cutting environments were investigated with the aim of removing soluble oil cutting fluids from metal cutting operations. Design/methodology/approach - Industrially reproducible cutting tests were devised, where an austenitic stainless steel and En32 low carbon steel material was milled in a range of different cutting environments. Tool life was measured for tests carried out in a number of gaseous environments and results were then compared with test results from conventional flood cutting environments. Findings - Low oxygen gaseous environments were compared with conventional cutting environments and a considerable flank wear reduction has been recorded using CVD coated tooling. Additionally flood coolant environments have been seen to promote chemical wear after the initial breakdown of coatings leading to rapid flank wear during milling of both En32 and austenitic stainless steel. Research limitations/implications - Only a limited number of work/tool material combinations have been investigated. A more detailed and exhaustive investigation is required to ascertain the scope of the improverfients for a range of tool work combinations. This will assist in understanding the underlying reasoning for the tool life enhancement reported. Practical implications - All experimentation carried out is industrially reproducible. This work, therefore, proposes an environmentally clean alternative to the use of emulsified oils in metal cutting operations in order to exploit cost savings and improved operator working environments. Originality/value - Distinct operational performance improvements have been demonstrated in the form of extended tool life for metal cutting operations performed in a non-polluting cutting environment. These findings could herald widespread advantages within the metal cutting community.
机译:目的-尽管切削液在金属切削中起着重要作用,但对环境的影响很大。为了从金属切削操作中去除可溶性油切削液,研究了惰性气体金属切削环境。设计/方法/方法-设计了可重复生产的切削测试,其中在一系列不同的切削环境中对奥氏体不锈钢和En32低碳钢材料进行了铣削。测量了在多种气体环境中进行的测试的工具寿命,然后将结果与常规洪水切割环境中的测试结果进行了比较。研究结果-将低氧气含量的气体环境与传统的切削环境进行了比较,并使用CVD涂层工具记录了相当大的侧面磨损减少情况。此外,已经发现,大量的冷却液环境会在涂层最初破裂后促进化学磨损,从而导致En32和奥氏体不锈钢的铣削过程中齿面快速磨损。研究局限性/含义-仅研究了有限数量的工作/工具材料组合。需要进行更详细和详尽的调查,以确定一系列工具工作组合的改良剂范围。这将有助于理解所报告的工具寿命延长的根本原因。实际意义-进行的所有实验在工业上都是可重复的。因此,这项工作提出了一种环境清洁的替代方法,以在金属切削操作中使用乳化油,以节省成本并改善操作员的工作环境。独创性/价值-通过在无污染的切割环境中进行金属切割操作,延长刀具寿命的形式证明了操作性能的显着提高。这些发现可能预示着金属切削领域的广泛优势。

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