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Centralized Controller High-altitude Work Car Elevations Lift Structure Safety Assessment

중앙집중식 컨트롤러 고소작업차의 고소리프트의 구조안정성 평가

  • Kim, Jun-tae (Department of Biomedical Engineering, Catholic Kwandong University) ;
  • Lee, Gi-yeong (Department of Biomedical Engineering, Catholic Kwandong University) ;
  • Lee, Sang-sik (Department of biomedical engineering, Catholic kwandong University) ;
  • Park, Won-yeop (Department of Mechanical Engineering, Hankyong National University)
  • Received : 2017.08.04
  • Accepted : 2017.08.28
  • Published : 2017.08.30

Abstract

This study was conducted as a post - study on the development of a centralized controller and a hydraulic lift system including structural analysis and remote control for the development of a vertically elevated car. The safety review was carried out through the structural modification of the elevator lift which was developed during the previous research. 3D modeling was performed with Solidworks, and a model of finite element was created through Hypermesh S / W. In addition, the loading environment of the work vehicle for the evaluation is a condition in which the loading amount is 250 kg per position (total, upper, upper, lower, and lower) on the work table, ), The structural analysis was carried out under the condition that the load was 600 kg, and safety was examined in various aspects. As a result, when the allowable load of 250 kg and the excess load of 600 kg are excluded (except Case-11), the stress level is below the yield strength. In the case of Case-11, there is a region exceeding the yield strength at the center support portion of the safety bar at the upper end even after excluding the component which generates the maximum stress, but it does not affect the safety aspect of the whole structure Respectively. Looking at the deflection results, it can be seen that in all cases the maximum deflection occurs in the same table, and the tendency of sagging in both 250 kg and 600 kg is the same.

본 연구는 선행 연구로 진행되었던 수직상승형 고소작업차의 개발을 위한 구조해석 및 원격 제어를 포함한 중앙집중식 컨트롤러 및 유압식 상승리프트 개발에 관한 사후 연구로 진행되었다. 기존에 연구를 진행하면서 개발하였던 고소리프트의 구조 변경을 통하여 안전성 검토를 실시하였다. Solidworks로 3D 모델링을 진행하였으며, Hypermesh S/W를 통하여 유한요소의 모델을 생성하였다. 또한, 평가를 위한 작업차의 적재 환경은 작업 테이블에 위치별(전체, 상좌, 상우, 하좌, 하우)로 적재량이 250 kg인 조건, 작업 테이블에 위치별(전체, 상좌, 상우, 하좌, 하우)로 적재량이 600kg인 조건으로 하여 구조해석을 진행하여 다방면으로 안전성을 검토하였다. 그 결과 허용 적재량 250 kg과 초과 적재량 600 kg에 대해서 최대응력이 발생하는 부품을 제외한 결과를 살펴보면(Case-11 제외), 응력 수준은 항복강도 이하임을 알 수 있다. Case-11의 경우에는 최대응력이 발생하는 부품을 제외한 후에도 상단의 안전바 중앙 지지부에서 항복강도를 초과하는 영역이 존재하지만, 최대응력이 발생하는 부품과 같이 전체 구조물의 안전성 측면에는 영향을 미치지 않을 것으로 사료된다. 변위(처짐) 결과를 살펴보게 되면, 모든 경우에 있어서 동일하게 테이블에서 최대 처짐이 발생하는 것을 알 수 있으며, 250 kg과 600 kg 모두 처짐이 발생하는 경향은 동일한 것으로 나타났다.

Keywords

References

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