An Experimental Study on Cushion Characteristics of pneumatic Cylinder for Vertically-Mounted.

공압 수직실린더의 쿠션특성에 관한 실험적 연구

  • 김동수 (한국기계연구원 기계부품연구부 유공압그룹) ;
  • 김형의 (한국기계연구원 기계부품연구부 유공압그룹) ;
  • 이상천 (영남대학교 기계공학부)
  • Published : 1998.12.20

Abstract

A pneumatic control system of compressed air as a working fluid has a variety of advantages such as low price, high respondence, non-explosion and good control performance and thus has many applications in the field of automobile, electronic and semiconductor industry. However, it has a difficulty in contolling a precise position due to quick response of system and compressibility of working fluid and. in particular, shock stress may occur due to an external load, resulting in fracture of a cylinder cap unless cushion device is equipped in the linear actuator. To avoid this, a cushion device should be installed for damping effect of the external load and the supply pressure as well as for decreasing shock stress and vibration caused by high speed rotation. Previous studies include dimensionless analyses and computer simulations of cushion capability and experiments of horizontally-mounted cylinder performances. A new attempt is experimentally made in this study using a vertically-mounted cylinder under an operation condition of 4, 5 and 6 (bar) as supply pressure and 40, 70 and 100 (kgf) as external load. It turns out that the cushion pressure is mainly a function of the external load rather than the supply pressure. The cushion characteristics was also revealed in the meter-in circuit.

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