Analysis and Research of the Technology Based on Carbide Tool Passivation

Article Preview

Abstract:

There are many factors having effects on the cutting performance and useful time of cutting-tools, such as cutting-tools material, geometry parameters, structure and the optimization of cutting parameter, etc. But the condition of cutting-tools edge shouldnt be ignored. As is known to all, the micro gaps of cutting edge extend easily in the process of cutting, and accelerates the wear and damage of tools. As for the current situation of low passivation efficiency in edge, high loss of passivation and uncontrollability in blade shape, some improvements and new technology for applying to tools passivation are proposed based on the analysis and research about carbide tool passivation. Whats more, some exploration experiment will be done. The results show that those passivation technology can improve the processing efficiency of metal-cutting, cutting tool expectancy and reduce manufacturing cost.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

579-583

Citation:

Online since:

March 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] GU Zuwei, Zhang Qi. Prospect of the Technology of Cutter Blade[J]. Tool Engineering, 2009, 43 (8) : 78-80.

Google Scholar

[2] Chen Dehong, Hu Rongsheng, Yin Guomao, etc. Study and applieation of edge honing technology of cemented caride inserts[J]. Carbide, 1999, 16 (4) : 228-231.

Google Scholar

[3] Gu XiuJie, Li Jianfeng, Sun Jie. Influence of cutting tool blade passivation on cutting force and surface roughness[J]. Computer Integrated Manufacturing Systems, 2011 (7) : 1430-1434.

Google Scholar

[4] Gui Yupeng, Yu Kaixun. Discussion about tool edge passivation techniques [J]. Machine Workers (cold), 2004 (6) : 43-44.

Google Scholar

[5] Jiang Liangbin, Gu Xiujie. Tool edge passivation and Tool Management Integrated Information System [D]. Shandong University, (2008).

Google Scholar

[6] Wang Zhiyong. Carbide Tool Sharpening and Practice [J]. Machining (New Technology & New Process), 2004 (9) : 34-35.

Google Scholar

[7] Edge enhancement process and equipment research trends. Tools outlook. 1984, No. 2 : 138-142.

Google Scholar

[8] Hu Jianglin, Xue Qian, He Fengbao, etc. Experimental Research on Electrochemical -machining Edge Honing Process of Cemented Carbide Gun Drill [J]. Carbide, 2012, 29 (1) : 33-37.

Google Scholar

[9] Lei Yuyong. High-speed water jet Special precision processing technology. Precise Manufacturing & Automation [J], 2003 (suppl) : 138-142.

Google Scholar

[10] Li Bomin, Zhao Bo. Modern grinding technology [M]. Mechanical Industry Press, (2003).

Google Scholar

[11] Biermann D, Terwey I. Cutting edge preparation to improve drilling tools for HPC processes. CIRP Journal of Manufacturing Science and Technology, 2008; 1/2 : 76-80.

DOI: 10.1016/j.cirpj.2008.09.002

Google Scholar