Resistance Formed in Thermoplastic Resin Substrate by Laser-Assisted Micro Powder Jet Implantation
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概要
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The C--SnO2 mixed particles and C--Ni mixed perticles have been implanted into a poly(oxymethylene) substrate and a poly(phenylene sulfide) thermoplastic resin substrate by using a laser-assisted powder jet for the formation of the resistances by those particles. These mixed powders were jetted using Ar gas and were implanted into the substrate by irradiating a green laser of CW type with powers of 210, 480, and 700 mW on the substrate kept at a constant moving speed. The laser was condensed at the same or nearly the same spot as the powder jetted on the substrate. It was found that the values of conductance and conductivity changed by the implantation of the powder of the weight fraction of SnO2 or carbon in the substrate in the wide range of 6 orders, and that the logarithm of these conductance and conductivity was proportional to the weight fraction of carbon and SnO2, which showed the percolation phenomenon in the two mixed particles system. The resistance showed similar frequency dependence to the commercial carbon resistance. There was little frequency change of the implanted resistance using the ditch compared with that without the ditch.
- 2011-06-25
著者
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SUZUKI KATSUHIKO
Department of Hygiene, Hirosaki University School of Medicine
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SAITO Taku
Department of Mechanical Engineering, Faculty of Engineering and Resource Science, Akita University
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Kuriyagawa Tsunemoto
Department Of Mechatronics And Precision Engineering Tohoku University
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Miura Kaichi
Miura Sensor Laboratory Corporation, Sendai 981-3203, Japan
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Kuriyagawa Tsunemoto
Department of Nanomechanics, Tohoku University, Sendai 980-8579, Japan
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Saito Taku
Department of Production System Eng., Sendai National College of Technology, Natori, Miyagi 981-1239, Japan
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Sugai Toru
Department of Production System Eng., Sendai National College of Technology, Natori, Miyagi 981-1239, Japan
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Watanabe Shouta
Department of Production System Eng., Sendai National College of Technology, Natori, Miyagi 981-1239, Japan
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Kameya Shoutaroh
Department of Production System Eng., Sendai National College of Technology, Natori, Miyagi 981-1239, Japan
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Suzuki Katsuhiko
Department of Production System Eng., Sendai National College of Technology, Natori, Miyagi 981-1239, Japan
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