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In the 21st century, as it is important to produce the products with high accuracy, high quality and eco-friendly, the most of manufacturers need several daring plans, unique ideas and new technologies. For example, in machine tool technology, restraint of vibration on the machine tool was required for high accuracy and quality, and several countermeasures using costly equipment and large quantity of electrical energy were used for the restraint, however those countermeasures are not enough. Therefore a countermeasure of vibration for machine tool using alkaline water with polymer was developed and evaluated. Polyethylene oxide was used for the polymer because of the low cost and the safety for health. Relationship between the mixed polymer in the alkaline water and the damping ratio were firstly investigated. And the optimum percentage of the polymer was decided for restraint of vibration on a machine tool. Then the damper structures using alkaline water with polymer were development, and the three dampers were set for restraint of vibration in the small machine tool; those are the support units, the vise and the head stock. Each damper was evaluated regarding noise and vibration on the machine tool and surface roughness on a work piece in the experiment. It is concluded from the results that; (1) the optimum percentage of the polymer for the damper was 6 wt%, (2) the damper structures using alkaline water with polymer were very effective for restraint of both noise and vibration on the machine tool and smoothly surface on the work piece.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
58--70
Opis fizyczny
Bibliogr. 6 poz., tab., rys.
Twórcy
autor
- Nagaoka University of Technology, Dept. of Mechanical Engineering, Japan
autor
- Nagaoka University of Technology, Dept. of Mechanical Engineering, Japan
autor
- Nagaoka University of Technology, Educational affairs section, Mechanics and Machinery Group, Japan
Bibliografia
- [1] SHIMOHIRA S., 1995, Material science of corrosion & Corrosion-protection, Published by Agune Technological Center, 30-32, 255-257, 287-288.
- [2] ZUPERL U., CUS, F., 2002, Optimization of cutting conditions during machining by using neural networks. International Conference on Flexible Automation and Intelligent Manufacturing, Dresden, Germany, from http://fs-server.unimb.si/si/inst/ips/labod/GUMBI/p-paper-Zuperl-Cus1.pdf
- [3] TANABE I., DRUZ J.R.D., INOUE Y., KANEKO Y., 2012, Development on technique regarding change of resonance frequency on a machine tool, Transactions of the Japan Society of Mechanical Engineer, Series C, 78/791, 2656-2666.
- [4] TANABE I., KATO E., TSUTSUMI M., 2000, Simulation strategy for using powder composite damper with optimum specification, Transactions of the Japan Society of Mechanical Engineers, Series C, 66/651, 3785-3790.
- [5] TANABE I., WATANABE K., KATO E., 2003, Countermeasure of vibration for improving availability of laser machine: Effect of powder composite damper, Transactions of the Japan Society of Mechanical Engineers, Series C, 69/681, 1443-1448.
- [6] TANABE I., KANEKO Y., KOBAYASHI D., 2005, Development of chatter restrained lathe for mirror finished surface, Transactions of the Japan Society of Mechanical Engineers, Series C, 71/712, 3590-3595.
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-fe5ff72a-b6dd-4e5c-847e-edd4b8f9f669