Study of Ultrasonically Assisted Internal Grinding of Small Holes: Effect of Grain Size of cBN Grinding Wheel

Author:

Nomura Mitsuyoshi1,Wu Yong Bo2,Kuriyagawa Tsunemoto3,Kawashima Takahiro1,Shibata Takayuki1

Affiliation:

1. Toyohashi University of Technology

2. Akita Prefectural University

3. Tohoku University

Abstract

This study aims to develop an ultrasonically assisted grinding technology for precision internal grinding of a small hole measuring several millimeters in diameter, such as those formed in a fuel injector for an automotive engine. In a previous work, an experimental apparatus mainly composed of an ultrasonic vibration spindle was designed and constructed, and grinding experiments were carried out. The previous investigation found that applying ultrasonic vibration to the wheel decreased the normal and tangential grinding forces, respectively, and improved the surface roughness in surface grinding. The purpose of this paper is to examine the effect of ultrasonic vibration on grinding force and surface roughness in internal grinding when the grain sizes of small cBN grinding wheel are changed. The experimental results indicate that applying ultrasonic vibration to the wheel decreases the normal and tangential grinding forces by more than 83 % and 80 %, respectively, and improves the surface roughness by as much as 62 % while the wheel grain size is changed. In addition, over the range of grinding conditions employed in this paper, the grain size as small as 3 µm can be used in ultrasonically assisted internal grinding.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference13 articles.

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2. A.I. Markov, Industrial diamond review.

3. (1972).

4. K. Unno, et al. The trial construction of ultrasonic grinding equipment and the machining characteristics -Study on high efficient grinding for brittle materials (1st Report), Journal of JSPE, (in Japanese), Vol. 52, No. 1 (1986), 107-113.

5. J. Kumabe, Ultrasonic vibration grinding, Journal of JSPE, (in Japanese), Vol. 27, No. 6 (1961), 369-374.

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Surface quality in axial ultrasound plunging-type grinding of bearing internal raceway;The International Journal of Advanced Manufacturing Technology;2020-01-25

2. A predictive model on surface roughness during internal traverse grinding of small holes;The International Journal of Advanced Manufacturing Technology;2019-04-16

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