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학술저널
저자정보
Lee, Seung-Won (Environmental Materials R&D Center, Materials Technology R&D Division, Korea Automotive Technology Institute) Park, Jun-Young (Environmental Materials R&D Center, Materials Technology R&D Division, Korea Automotive Technology Institute) Park, Eun-Young (Environmental Materials R&D Center, Materials Technology R&D Division, Korea Automotive Technology Institute) Ryu, Sung-Hwan (Environmental Materials R&D Center, Materials Technology R&D Division, Korea Automotive Technology Institute) Bae, Seok-Hu (Environmental Materials R&D Center, Materials Technology R&D Division, Korea Automotive Technology Institute) Kim, Nam-Il (Environmental Materials R&D Center, Materials Technology R&D Division, Korea Automotive Technology Institute) Yun, Ju-Ho (Environmental Materials R&D Center, Materials Technology R&D Division, Korea Automotive Technology Institute) Yoon, Jeong-Hwan (Environmental Materials R&D Center, Materials Technology R&D Division, Korea Automotive Technology Institute)
저널정보
한국고무학회 Elastomers and composites 엘라스토머 및 콤포지트 제53권 제4호
발행연도
2018.1
수록면
220 - 225 (6page)

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Resilient pads play a major role in reducing the impact of loads on a rail in a rail-fastening system, which is essentially used for a concrete track. Although a compression set test is commonly used to measure the durability of a resilient pad, the static spring constant is often observed to be different from the fatigue test. In this study, a modified compression set test method was proposed to monitor the variations in the compression set and static spring constant of a resilient pad with respect to temperature and time. In addition, the life of the resilient pad was predicted by performing an acceleration test based on the Arrhenius equation.

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