Recent advances and challenges associated with thin film coatings of cutting tools: a critical review

A. Aditharajan, N. Radhika, B. Saleh
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引用次数: 5

Abstract

ABSTRACT Metal cutting is a necessary operation in any production industry. Rapid production has become a necessity as a result of recent trends in high-speed machining and automation. The demand for more sophisticated and advanced cutting tools has significantly increased in recent years. The properties of alloy metals can be improved by applying a thin film to enhance or reduce specific properties based on product needs. The effect is being able to operate the tool at a higher cutting speed, feed rate, depth of cut, and longer tool life, with a dry machining possibility for the end-user when cutting tools are appropriately coated and performing as intended using thin films. Thin coatings improve cutting tool wear resistance, oxidation resistance, friction reduction, resistance to metal fatigue, as well as thermal shock resistance. On the other hand, thin film morphology and stability are crucial challenges in cutting tool applications as thin film morphology is heavily dependent on deposition techniques. As a result, based on the available studies, this article presents a critical review of deposition coating techniques, characterisation methods, and evaluation techniques in order to prevent excessive damage and improve the mechanical properties of cutting tools. The anticipated outcomes of this review can be used as a guide to help researchers understand various coating techniques and their effects on cutting tool properties.
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刀具薄膜涂层的最新进展和挑战:综述
金属切削是任何生产行业的必要操作。由于高速加工和自动化的发展趋势,快速生产已成为一种必要。近年来,对更精密和先进的切削刀具的需求显著增加。合金金属的性能可以通过应用薄膜来提高或降低产品需要的特定性能来改善。其效果是能够以更高的切削速度、进给速度、切削深度和更长的刀具寿命来操作刀具,当切削刀具被适当地涂覆并按预期使用薄膜时,最终用户可以进行干式加工。薄涂层提高了刀具的耐磨性、抗氧化性、减少摩擦、抗金属疲劳以及抗热震性。另一方面,薄膜的形貌和稳定性是刀具应用的关键挑战,因为薄膜的形貌严重依赖于沉积技术。因此,在现有研究的基础上,本文对沉积涂层技术、表征方法和评估技术进行了综述,以防止刀具过度损伤和提高刀具的机械性能。本综述的预期结果可以作为指导,帮助研究人员了解各种涂层技术及其对刀具性能的影响。
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