진동내구 프로파일 도출을 통한 구동계 신뢰성 향상 기법

Method to Improve Powertrain Reliability through Vibration Durability Profile Implementation

초록

This paper presents a method for generating an accelerated vibration driving profile to evaluate the vibration durability of an automotive powertrain system. A key challenge in vibration durability testing is developing a vibration profile in a laboratory environment that accurately reproduces the vibration damage severity and characteristics observed under real-world conditions, taking into account the harsh operating environment of the vehicle. The optimal mounting positions for accelerometers on the target components are determined by analyzing the vibration transfer functions at candidate positions for 3-axis vibration measurements, each corresponding to a different channel. The optimal combination of road profiles was identified by comparing on-road data with special road data and analyzing sensitivity, pattern similarity, and correlations for each vibration channel. Furthermore, an optimization algorithm was applied to minimize errors in fatigue damage estimation and reduce the test duration, leading to the derivation of an optimal accelerated durability test mode. Through a comparative analysis of on-road data and special road data with iterative control to minimize errors, the vibration durability severity error rate was maintained within acceptable limits.

키워드

진동내구; 파워 스펙트랄 밀도; 마운팅 최적 위치; 파워트레인; 다축 시뮬레이션 테이블; Vibration durability; Power Spectral Density; Optimal Mounting Position; Powertrain; Multi-Axial Simulation Table
제목
진동내구 프로파일 도출을 통한 구동계 신뢰성 향상 기법
제목 (타언어)
Method to Improve Powertrain Reliability through Vibration Durability Profile Implementation
저자
김효성; 박광민; 노용래
DOI
10.5050/KSNVE.2024.34.6.690
발행일
2024-12
유형
Y
저널명
한국소음진동공학회논문집
권
34
호
6
페이지
690 ~ 699