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Evaluation of Oil-leakage of Multi-layered Resin-hose Clamped with Metal Nipple and Sleeve

机译:用金属乳头和套管夹紧多层树脂软管漏油的评价

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The purpose of this study is to investigate the path of occurred oil-leakage of multi-layered resin-hose as one of multifunctional materials around the caulked joint with a metal nipple and sleeve when excessive cyclic internal pressure was applied onto the hose. Equivalent cyclic axial tensile force was substitutively applied to the hose, where same degree of normal stress was produced in longitudinal direction. Excessive 3 and 5 times of the standard load was applied to the hose. Cyclic loading was paused at every 1000 and 10000 cycles and then designed internal pressure was applied to the hose by a hand-operated pump with water in order to check whether the leakage was occurred around the joint and surface of the hose for safety evaluation. Cyclic fatigue life was defined as the number of loading cycles in which the leakage and the initial damage which was the passage of the ultrasonic wave was observed on the cyclic test. Test results showed the fatigue life at which leakage of water was observed was increased 20 times in case of K=3 compared to that in case of K=5. The cycles of initial damage detected by the ultrasonic wave were passed was increased 3.3 times in case of K=3 compared to that in case of K=5. The fluorescent agent penetrated from the core layer of resin hose to the reinforcement layer in which a half cross section along longitudinal direction in failed specimens was observed after the leak test. The original specimens had the gap between the resin-hose and the nipple and then the gap extended and connected during fatigue cyclic. In this study, it was observed that oil was leaked through narrow gap between the nipple and core layer of resin hose
机译:本研究的目的是研究多层树脂软管的发生漏油的路径,作为填缝接头周围的多功能材料之一,当施加过量的循环内压时,套管在软管上施加过量的内部压力。等效的循环轴向拉伸力倾斜地施加到软管上,其中在纵向方向上产生相同程度的正常应力。向软管施加过量的3和5倍的标准载荷。循环加载在每个1000和10000个循环中暂停,然后通过用水的手动泵将设计的内部压力施加到软管上,以检查软管的关节和表面是否发生泄漏以进行安全评估。循环疲劳寿命定义为在循环试验上观察到泄漏和初始损伤的装载循环的数量。测试结果表明,与k = 5的情况相比,在k = 3的情况下,观察到水泄漏的疲劳寿命增加了20倍。与在k = 5的情况下,通过超声波检测的初始损伤的循环被通过k = 3的速度增加3.3倍。从树脂软管的芯层穿透到加强层中的荧光剂,其中在泄漏试验后观察到在失效标本中沿着纵向的半横截面。原始标本具有树脂软管和乳头之间的间隙,然后在疲劳环状期间延伸和连接的间隙。在这项研究中,观察到油通过树脂软管的乳头和芯层之间的窄间隙泄漏

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