Microscopic Observation of Fretting Corrosion of Tin plated Contacts(Session 1 -Fretting-)
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概要
- 論文の詳細を見る
In recent years, the use of tin plated terminals in the automobile industry has accelerated due to increase in electronic equipment contained in vehicles, and fretting wear at their connecting points has been posing problems. This report deals with increased contact resistance by wear and oxidation of tin due to fretting, analysis of changes and increase in contact resistance at early stage of fretting, and detailed microscopic study by electron microscope observation. As a result, it was found that the lifetime of the terminal depends on the fretting amplitude and differences in amplitude cause the differences of fretting wear and tin oxidation at the early fretting stage.
- 社団法人電子情報通信学会の論文
- 2007-11-07
著者
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Saitoh Yasushi
Mie University Graduate School Of Engineering Vehicle Network Technology Laboratory
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Sawada Shigeru
Mie Univ. Tsu‐shi Jpn
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HATTORI Yasuhiro
AutoNetworks Technologies, Ltd.
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IKEDA Hirosaka
Graduate School of Engineering, Mie University
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ITO Tetsuya
Circuits and Connection R&D Division, AutoNetworks Technologies, Ltd.
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SAWADA Shigeru
Circuits and Connection R&D Division, AutoNetworks Technologies, Ltd.
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HATTORI Yasuhiro
Circuits and Connection R&D Division, AutoNetworks Technologies, Ltd.
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SAITOH Yasushi
Graduate School of Engineering, Mie University
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TAMAI Terutaka
Graduate School of Engineering, Mie University
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IIDA Kazuo
Graduate School of Engineering, Mie University
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IKEDA Hirosaka
Circuits and Connection R&D Division, AutoNetworks Technologies, Ltd.
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Iida Kazuo
Graduate School Of Engineering Mie University
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Ito Tetsuya
Circuits And Connection R&d Division Autonetworks Technologies Ltd.
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Ikeda Hirosaka
Graduate School Of Engineering Mie University
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Tamai Terutaka
Mie Univ.
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Saitoh Yasushi
Graduate School Of Engineering Mie University
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Hattori Yasuhiro
Autonetworks Tech.
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Hattori Yasuhiro
Circuits And Connection R&d Division Autonetworks Technologies Ltd.
関連論文
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- The mechanism of a detailed surface transformation of fretting corrosion
- Influence of Fretting Wear on Lifetime of Tin Plated Connectors
- Electric Properties and Surface Conditions of Tin Plated Contact with Load
- Micro-Structural Study of Fretting Contact Caused by the Difference of the Tin Plating Thickness
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- Observations of Structural Transition of Tin Plated Fretting Contacts Using FIB-SEM
- Growth Characteristics of Carbon Nanotubes on Oxidized Catalyst under Low-Pressure Condition
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- Stress-Strain Response of Copper-based Spring Materials under Forward and Reverse Deformations and Its Mathematical Description II
- Effect of viscosity or additive substance of contact oil on contact resistance
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