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首页> 外文期刊>Surface & Coatings Technology >Cutting performance of Ti-Al-Si-N-coated tool by a hybrid-coating system for high-hardened materials
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Cutting performance of Ti-Al-Si-N-coated tool by a hybrid-coating system for high-hardened materials

机译:混合涂层系统对高硬度材料的Ti-Al-Si-N涂层刀具的切削性能

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摘要

Hard coatings are known to improve the performance of cutting tools in aggressive machining applications, such. as high-speed machining. Unfortunately, the development of cutting tool for high-speed machining is not enough in machining of difficult-to-cut material. New superhard Ti-Al-Si-N films, characterized as a nanocomposite nano-sized (Ti,Al,Si)N crystallites embedded in amorphous Si3N4 matrix, was successfully synthesized on WC-Co substrates by a hybrid-coating system of arc ion plating (AIP.) and sputtering method. The hardness of Ti-Al-Si-N film increased with incorporation of Si,and had the maximum value similar to 50 GPa at the Si content of 9 at.%, respectively. In this study, Ti-Al-Si-N coatings were applied to end-mills made of WC-Co material by a hybrid-coating system. The tool performances for the high-hardened material were studied under high-speed cutting conditions. Additionally, the relationship between the machining characteristics and the Si contents were investigated under various high-spindle speeds. It showed the tool life was improved up to 50% at the Si content of 9 at.%. (c) 2004 Elsevier B.V. All rights reserved.
机译:已知硬质涂层可改善诸如切削加工等切削工具的性能。作为高速加工。不幸的是,在难以切削的材料的切削中,用于高速切削的切削刀具的开发还不够。通过电弧离子混合涂层技术成功地在WC-Co衬底上合成了新型超硬Ti-Al-Si-N薄膜,该薄膜具有嵌入非晶Si3N4基体中的纳米复合纳米(Ti,Al,Si)N微晶。镀(AIP。)和溅射方法。 Ti-Al-Si-N薄膜的硬度随Si的加入而增加,在Si含量为9 at。%时,其最大值分别类似于50 GPa。在这项研究中,通过混合涂层系统将Ti-Al-Si-N涂层应用于由WC-Co材料制成的立铣刀。在高速切削条件下研究了高硬度材料的刀具性能。另外,研究了在各种高主轴转速下加工特性与Si含量之间的关系。结果表明,当Si含量为9 at。%时,刀具寿命提高了50%。 (c)2004 Elsevier B.V.保留所有权利。

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