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A optimized structural design of piston on moving in gas spring elevation working

가스 스프링 Elevation 동작에의 최적화된 피스톤 구조 설계

  • Lee, Jeong-Ick (Dept. of Mechanical Design, Division of Mechanical Engineering, INHA Technical College)
  • 이정익 (인하공업전문대학 기계공학부 기계설계과)
  • Received : 2015.08.07
  • Accepted : 2015.12.04
  • Published : 2015.12.31

Abstract

Gas springs of the television is to control the piston speed when operating under along stroke(200~300 mm, television elevation)is possible. User by this principle is capable of elevation adjustment. First carried out a flow analysis of the piston. A piston speed adjustment technique for precise pipe type cross-section was examined. The piston structure for flow rate control and elevation action is proposed. This study is the development of a gas spring of more than 50 inch television with a large television stand. Hollow piston rod for optimal control(the outer diameter 19.9 mm, the inner diameter 13.9 mm) was injected into the nitrogen gas(0.3 mm/s) in. As a result, the flow rate the pressure drop of the piston rod as the increase was increased without any change of the external force. As a result, control of the displacement via the gas spring is possible.

텔레비전의 가스 스프링은 롱 스트로크 (200 ~ 300mm, TV 상승 변위) 하에서 작동 할 때 피스톤 속도의 제어가 가능하다. 이 원리에 의해서 사용자는 높낮이 조절이 가능하다. 먼저 피스톤의 흐름 해석을 수행하였다. 정확한 관형 단면을 위한 피스톤 속도 조절기술을 조사하였다. 유동률 제어 및 높낮이 작용을 위한 피스톤 구조를 제안되었다. 본 연구는 대형 텔레비전 스탠드를 통해 50 인치 이상 TV의 가스 스프링의 개발을 위한 것이다. 최적 피스톤 로드 제어를 위한 중공축(외경 19.9mm, 내경 13.9mm)에 질소 개스(0.3m/s)를 주입하였다. 그 결과, 유동율이 증대함에 따라 피스톤 로드의 압력강하는 외력의 변화 없이 증대되었다. 결과적으로, 가스스프링을 통한 변위의 제어는 가능하다.

Keywords

References

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