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Cutting performance using high reliable device of Ti-Si-N-coated cutting tool for high-speed interrupted machining

机译:使用高可靠性的Ti-Si-N涂层刀具的切削性能实现高速间断加工

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摘要

To satisfy the demand of higher cutting performance, properties of newly deposited (Ti,Si)N coating and carbide materials are investigated. TiSi-N coatings with various Si contents using hybrid coating technique were prepared and X-ray diffraction patterns, micro-hardness and AFM images were characterized. The coating layer showed the maximum hardness of 45 GPa with a load of 25 g at the Si content of 7 at.%. With increasing the Si content, the TiN crystallites reduced in size and are almost randomly distributed in the amorphous silicon nitride phase. Compared to conventional carbides (K20), micro-grain carbides (K30) were used for high-speed machining. An integrated evaluation system of cutting tools for high-speed milling was newly designed. The cutting performance of end-mills was evaluated by milling of high hardened material (hardness > 60 HRC) using TiN and Ti-Si (7 at.%)-N-coated end-mills with micro-grain carbide. Consequently, The Ti-Si (7 at.%)-N coated end-mill made from HSC material (WC-Co, K30) showed good cutting performance under high-speed cutting condition. (c) 2005 Elsevier B.V. All rights reserved.
机译:为了满足更高的切削性能要求,研究了新沉积的(Ti,Si)N涂层和碳化物材料的性能。利用混合镀膜技术制备了不同硅含量的TiSi-N镀层,并对X射线衍射图,显微硬度和AFM图像进行了表征。在Si含量为7at。%时,涂层显示出最大硬度为45 GPa,载荷为25 g。随着Si含量的增加,TiN微晶尺寸减小并且几乎随机地分布在非晶氮化硅相中。与常规硬质合金(K20)相比,微晶粒硬质合金(K30)用于高速加工。新设计了高速铣削刀具综合评估系统。端铣刀的切削性能是通过使用TiN和Ti-Si(7 at。%)-N涂层微细碳化物铣削高硬度材料(硬度> 60 HRC)进行评估的。因此,由HSC材料(WC-Co,K30)制成的Ti-Si(7at。%)-N涂层立铣刀在高速切削条件下显示出良好的切削性能。 (c)2005 Elsevier B.V.保留所有权利。

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