Stress Variation Characteristics of a High-Pressure Hose with Respect to Wire Braid Angle

강선의 편조각도에 따른 고압호스의 응력변화 특성

  • 김형제 (부경대학교 정밀기계공학과 대학원) ;
  • 고성위 (부경대학교 기계공학부) ;
  • 김병탁 (부경대학교 기계공학부)
  • Published : 2005.08.31

Abstract

A high-pressure hose includes rebar layers of the synthetic fiber such as nylon or a steel wire to control internal pressure. The hose assembly is manufactured through the swaging process to clamp the hose into the metal fittings. Usually, the hose behavior is affected by the resultant of the longitudinal and circumferential forces produced by the internal pressure. The rebar layers can appear the most ideal rebar effect when they are arranged to the same direction as the resultant force. The braid angle applied in the rebar layers is an important factor in determining ultimate burst pressure and overall hose life. Failure can occur on the contacted parts of a hose with the metal fittings under severe operating conditions such as high pressure and temperature of the inner fluid. In this paper, the mechanical behavior between the hose and the metal fittings during the swaging process and the stress variation characteristics of a high-pressure hose under a constant applied pressure are analyzed with respect to the braid angle of steel wire using the finite element method.

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