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The Mechanical Behaviour of Rubber Hose Reinforced with Warp Knitted Fabric
作者姓名:黄机质  张华鹏  张建春
作者单位:[1]Key Laboratory of Science and Technology of Eco-Textile, Ministry of Education, Southern Yangtze University, Wuxi 214122 [2]College of Textiles, Donghua University, Shanghai 201620 [3]Key Laboratory of Advanced TextileMaterialsandManuLfacturing Technology, MinistryofEducation, ZhejiangSci-Tech University Hangzhou 310018 [4]The Quartermaster Research Institute of the General Logistic Department of CPLA,Beijing 100088
摘    要:IntroductionBendable pipe is an indispensable non-metallic part ofautomobiles , which is used to transport cooling liquid,hotair and oil media . Auto radiator hose is a bendable rubberhose connecting the water tank ,radiator and engine ,andit is used to transport cooling liquid . Smooth surface ,easy assemblage , high inside pressure bearing capacity ,low radial direction expansion ratio are required. As far asthe mech-anical perfor mance of auto radiator hose isconcerned , ISO4081requires t…

关 键 词:混合纤维  纺织技术  纺织机械  橡胶管
收稿时间:2005-12-29

The Mechanical Behaviour of Rubber Hose Reinforced with Warp Knitted Fabric
HUANG Ji-zhi,ZHANG Hua-peng,ZHANG Jian-chun.The Mechanical Behaviour of Rubber Hose Reinforced with Warp Knitted Fabric[J].Journal of Donghua University,2006,23(4):44-47.
Authors:HUANG Ji-zhi  ZHANG Hua-peng  ZHANG Jian-chun
Abstract:A new process for the rubber hose reinforced with warp knitted fabric was introduced, and the relation between the inside pressure and the radial expansion ratio of four kinds of rubber radiator hose reinforced with warp knitted fabric was investigated. The result showed that the bursting pressure and the radial direction expansion ratio of the hose could meet the requirement of ISO4081 for auto radiator hose. A new model was built up to analyse the relation between the inside pressure and the radial expansion ratio of the hose based the reinforced fabric structure parameters and yarn properties.
Keywords:warp knitted fabric  auto radiator hose  fabric structure  mechanical behaviour
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