摘要
本文研究了一种新型输液管路弯头,对其固-液耦合动力特性进行了数值计算,分析了导流器不同结构参数对其导流特性的影响,并校准了输液管路弯头的强度与刚度要求。研究结果表明:原始弯头的内部总压差为29506.27Pa,最大变形量为2.0689×10-5m,其变形方式是两侧拉长,中间向里凹,曾双椭圆形,对弯头具有“拉直”效应;当导流器按黄金比例排列,片数N为2,横截面弯曲半径R为200mm,出口延长度L为40mm设计时,其内部总压差为10707Pa,比原始弯头减小了63.71%,该优化结构的最大变形量为3.3039×10-4m,亦能满足强度与刚度要求,由于导流器弧度的存在使得导流器向外侧偏移而变形。
Abstract
A new type of liquid-conveying pipeline elbow is studied in the paper, its solid-liquid coupling dynamic characteristics are numerically simulated, the influences of structural parameters of its guide plates on the guide characteristics are analyzed, and based on it the strength and rigidity of the liquid-conveying pipeline elbow are calibrated. The results show that the internal total pressure difference in the original pipeline elbow without the guide plates is 29506.27Pa, the maximum deformation is 2.0689×10-5m, the deformation mode of its texturing is that the texture is elongated in both sides, concave in the middle and shows a double oval, the deformation leads to the flare-out effect on the elbow. When the guide plates are designed according to the gold ratio, the number, the radius and the length of the guide plates are 2, 200mm and 40mm respectively, the internal total pressure difference is 10707Pa, which is decreased by 63.71% compared with the result of the original pipeline elbow without the guide plates, its maximum deformation is 3.3039×10-4m, this optimal structure is also meet the strength and rigidity requirement, the radian of the guide plate leads to the guide plates offset to the outer flank.
关键词
管路弯头 /
结构优化 /
固-液耦合
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Key words
Pipeline elbow /
structural optimization /
solid-liquid coupling
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王艳林;吴兰鹰;王自东;陈明文.
输液管路弯头固-液耦合动力学研究[J]. 振动与冲击, 2010, 29(12): 79-83
WANG yanlin;WU lanying;WANG zidong;CHEN mingwen.
Study on the Solid-Liquid Coupling Dynamics for the Liquid-conveying Pipeline Elbow[J]. Journal of Vibration and Shock, 2010, 29(12): 79-83
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脚注
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