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자동차 부품에 대한 다축 진동내구 시험용 신호처리 방법
배철용(Bae, Chul-Yong),김찬중(Kim, Chan-Jung),이동원(Lee, Dong-Won),이봉현(Lee, Bong-Hyun),나병철(Na, Byung-Chul) 한국소음진동공학회 2008 한국소음진동공학회 논문집 Vol.18 No.3
Multi-axial simulation table(MAST) is widely used in motor companies as the multi-axial excitor for vibration fatigue of target component, which provides the vibrational condition as close as the vehicle test. However, the vibration fatigue performance of target component can be guaranteed with MAST system only in case the input profile covers the required severity of the target component on field test. In this paper, the signal processing for multi-axial vibration fatigue test on vehicle component is presented, from the data acquisition of the target component to the derivation of input profile. To compare the severity of vibration condition between field and proving ground, the energy principle of a equivalent damage is proposed and then, it is determined the optimal combination of special events on proving ground using a sequential searching optimal algorithm. To explain the vibration methodology clearly, seat and door component of vehicle are selected as a example.