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EXPERIMENTAL STUDY OF U-BOLT PIPE WHIP RESTRAINT: DEFORMATION PROCESS AND ENERGY ABSORBING

机译:U形螺栓管鞭束缚的实验研究:变形过程和能量吸收

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This paper focuses on the U-bolt pipe whip restraint in the industrial plants, which is used to protect the equipment and prevent chain destruction under the circumstance that the pipe whip phenomenon occurs. And to achieve better protection performance the deformation process and energy absorbing situations are studied through experiments. The experiments are able to simulate the whipping pipe impacting the U-bolt pipe whip restraint with different velocity and input energy. This study presents a novel experiment method using a rigid sled to impact the U-bolt pipe whip restraint. This horizontal impact experiment method allows to change the mass and the impact velocity of the sled easily, so it is more convenient to design and control the experiments than traditional vertical experiment method. Results of ten experiments are analyzed in this study, and some basic parameters are achieved. A significant conclusion is found that the process of the U-bolt pipe whip restraint deformation and energy absorbing has four obvious phases. Velocity effect and mass effect are also taken into account to find more details of this process. The deformation and energy absorbing law can also be used in engineering design.
机译:本文重点介绍工业设备中的U形螺栓管鞭子限制,用于保护设备并防止在管鞭状现象发生的情况下防止链破坏。为了实现更好的保护性能,通过实验研究变形过程和能量吸收情况。实验能够模拟鞭打管,从而利用不同的速度和输入能量撞击U型螺栓管鞭子抑制。本研究提出了一种新的实验方法,使用刚性滑块冲击U形螺栓管鞭束缚。这种水平冲击实验方法允许容易地改变粘土机的质量和冲击速度,因此设计和控制实验比传统的垂直实验方法更方便。在本研究中分析了10个实验的结果,实现了一些基本参数。发现了一个重要的结论,即U形螺栓管鞭子约束变形和能量吸收的过程具有四个明显的阶段。速度效应和质量效应也被考虑在内,以查找此过程的更多细节。变形和能量吸收法也可用于工程设计。

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