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The Critical Raw Materials in Cutting Tools for Machining Applications: A Review

机译:机械加工用切削刀具中的关键原材料综述

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摘要

A variety of cutting tool materials are used for the contact mode mechanical machining of components under extreme conditions of stress, temperature and/or corrosion, including operations such as drilling, milling turning and so on. These demanding conditions impose a seriously high strain rate (an order of magnitude higher than forming), and this limits the useful life of cutting tools, especially single-point cutting tools. Tungsten carbide is the most popularly used cutting tool material, and unfortunately its main ingredients of W and Co are at high risk in terms of material supply and are listed among critical raw materials (CRMs) for EU, for which sustainable use should be addressed. This paper highlights the evolution and the trend of use of CRMs) in cutting tools for mechanical machining through a timely review. The focus of this review and its motivation was driven by the four following themes: (i) the discussion of newly emerging hybrid machining processes offering performance enhancements and longevity in terms of tool life (laser and cryogenic incorporation); (ii) the development and synthesis of new CRM substitutes to minimise the use of tungsten; (iii) the improvement of the recycling of worn tools; and (iv) the accelerated use of modelling and simulation to design long-lasting tools in the Industry-4.0 framework, circular economy and cyber secure manufacturing. It may be noted that the scope of this paper is not to represent a completely exhaustive document concerning cutting tools for mechanical processing, but to raise awareness and pave the way for innovative thinking on the use of critical materials in mechanical processing tools with the aim of developing smart, timely control strategies and mitigation measures to suppress the use of CRMs.
机译:在极端的应力,温度和/或腐蚀条件下,多种切削工具材料可用于部件的接触模式机械加工,包括诸如钻孔,铣削车削等操作。这些苛刻的条件施加了非常高的应变率(比成形高一个数量级),并且这限制了切削工具(尤其是单点切削工具)的使用寿命。碳化钨是使用最广泛的切削工具材料,不幸的是,钨和钴的主要成分在材料供应方面处于高风险之中,并且被列为欧盟的关键原材料(CRM)之一,对此应予以可持续利用。本文通过及时回顾,重点介绍了用于机械加工的切削刀具中CRM的发展和趋势。此次审查的重点及其动机受到以下四个主题的推动:(i)对新兴的混合加工工艺的讨论,这些工艺在刀具寿命(激光和低温结合)方面提供了性能增强和长寿命; (ii)开发和合成新的CRM替代品以最大程度地减少钨的使用; (iii)改善旧工具的回收利用; (iv)加速使用建模和仿真来设计工业4.0框架,循环经济和网络安全制造中的持久工具。可能需要指出的是,本文的范围并不是代表有关机械加工刀具的完整详尽的文档,而是要提高认识并为在机械加工刀具中使用关键材料的创新思维铺平道路,以期达到以下目的:制定智能,及时的控制策略和缓解措施,以抑制CRM的使用。

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