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Cutting Tools Made of Layered Composite Ceramics with Nano-Scale Multilayered Coatings

机译:带有多层纳米涂层的多层复合陶瓷制成的切削刀具

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The cutting tool material with an optimum combination of sufficient toughness and strength, high hardness, heat stability and wear resistance, low physical-chemical inertness in relation to a workpiece material is a good alternative to the standard tool materials used in heavy cutting conditions like: high-speed machining, dry cutting, cutting of hard-to-machining materials, etc. In the present paper the example of development of such a material in the form of layered composite material build up on a carbide substrate, a ceramic layer and a nano-scale multilayered coating is reviewed. Each element of a layered tool material fulfills individual functions. The carbide layer provides the raised toughness and strength of tool material, the ceramic layer provides resistance of a tool material to oxidation, corrosion and high-temperature weakening at elevated temperatures, the nano-scale multilayered coating decrease of thermal-mechanical stresses on the rake face of the tool and eliminates superficial defects of the ceramic.
机译:具有足够韧性和强度,高硬度,热稳定性和耐磨性,相对于工件材料的低物理化学惰性的最佳组合的切削刀具材料是重型切削条件下使用的标准刀具材料的良好替代品:高速加工,干切削,难加工材料的切削等。在本论文中,以硬质合金基体,陶瓷层和陶瓷材料为基础,以层状复合材料的形式开发这种材料的示例。对纳米级多层涂料进行了综述。分层工具材料的每个元素都可以实现各自的功能。碳化物层提供了提高的工具材料韧性和强度,陶瓷层提供了工具材料在高温下的抗氧化,腐蚀和高温削弱的能力,纳米级多层涂层降低了耙子上的热机械应力工具的正面,消除了陶瓷的表面缺陷。

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