Research and Design of a Impact Drill Dust Collector

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Abstract:

Impact drill is an important tool which is often used in the process of construction or decoration, mainly to complete the drilling on the cement wall or a brick wall. Impact drill will produce large amounts of dust and dirt in the use process which can bring great influence for the environment, also for construction personnel. This will also bring a lot of inconvenience for us. It is becoming important to avoid and reduce the impact. The problems in the process of the use become a need to study the problem. Here will study a method which can be a very good solution to this problem, it will bring great convenience to construction personnel.

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Periodical:

Advanced Materials Research (Volumes 971-973)

Pages:

643-645

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Online since:

June 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Zhang Xuedong. the man-machine engineering and design [M]. Hefei: hefei university of technology press, (2006).

Google Scholar

[2] Li Leshan. Industrial design psychology [M]. Beijing: higher education press, (2004).

Google Scholar

[3] HeLiu. Industrial design colour [M]. Nanning: guangxi fine arts publishing house, (2005).

Google Scholar

[4] Chen Zhenbang. Industrial product modeling design [M]. Beijing: mechanical industry publishing house, (2004).

Google Scholar

[5] YuFan, ChenYan. Bionic design [M]. Wuhan: huazhong university of science and technology press, (2005).

Google Scholar

[6] ZouBenKun. Free hot water [J]. Metal world, 2003, (1) : 31-32.

Google Scholar

[7] the GE LEXAN resin dedicated to electric kettle, coffee pot [J]. Journal of electronics science and technology, 2005, (5) : 11-13.

Google Scholar

[8] Li Shenghua. Graphite electrode production [M]. Beijing: metallurgical industry press, (1997).

Google Scholar

[9] Li Shixian Yao Jian, Lin Dinghao. Graphite [M]. Beijing: chemical industry press, (1991).

Google Scholar

[10] Wang Chengyong, Qin Zhe Li Wengong, Chen Chunlin. High speed machining of graphite electrode [J]. Manufacturing technology and machine tools, 2002, (3).

Google Scholar

[11] L. Zhou. C.Y. Wang, Z. Qin. Wear Characteristics of Micro-end mill in High - speed Mill of Graphite Electrode. Advances in Grinding and Abrasive Processes [M]. KeyEngineering Materials, (2004).

DOI: 10.4028/www.scientific.net/kem.259-260.858

Google Scholar

[12] M. Masuda, E. Yabuuchi,Y. Kuroshima and M. Ito. Machinability of sintered carbon (4th reports) - cutting performance and wear behaviour of ceramics tools when turning three-phasesintered carbon[J]. Journal of the JSPE, 1996, (3).

Google Scholar

[13] M. Konig. Frasbearbeitung von Graphitelektroden. Dissartation. RWTH[M]. Achen, (1998).

Google Scholar

[14] M. Sato and K. Nakayama. Cutting characteristics of sinteredgraphite[J]. Process of cutting and grinding (Ⅲ), ICPCG- 96. JSPE: 27- 32.

Google Scholar