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Analysis for interior stress in various curvature radiuses on D-ring seal using hybrid photoelastic experimental method

机译:混合光弹性实验方法对D形环密封上的各种曲率半径的内应力分析

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摘要

When the seal is suffered from defected damage, it initiates a little leakage and finally becomes the critical abnormal condition. Sealing ring has very small than neighbored other components, it has to be considered as the most important thing due to intensity of its function. Sealing rings are designed with many kinds of cross-sections: O-ring, Square-ring, D-ring, X-ring etc. according to its different usage. The cross-section of D-ring is included with cross-sections of O-ring and Square-ring partially, in a other word, D-ring has both advantages of O-ring and Square-ring. In order to reduce the stress concentration, D-ring should be prepared with curvature radius in both sides of the lower square corner. In this work, the analyses on the interior stresses, and the behavior of D-ring with various curvature radius under uniform squeeze rate 20 % and various internal pressures of 0 similar to 20 MPa were studied by using the stress frozen photoelastic experiment and the photoelastic experimental hybrid method. From this research, it was founded that the geometrically optimal condition for curvature radius of D-ring under uniform squeeze rate and various internal pressures is r/D = 0.3.
机译:当密封损失损伤时,它引发了一点泄漏,最终成为临界异常情况。密封环比邻近的其他组件非常小,必须被视为由于其功能强度而最重要的事情。密封环设计有多种横截面:O形环,方环,D形,X环等。 D形环的横截面包括在另一个单词的O形环和方形环的横截面中,D形圈具有O形环和方环的优点。为了降低应力浓度,应在下方角落两侧用曲率半径制备D形环。在这项工作中,通过使用应力冷冻光弹性实验和光弹性,研究了在均匀挤压率下具有各种曲率半径的内部应力的分析,以及各种曲率半径的D形环的行为,以及类似于20MPa的各种内部压力实验混合方法。从本研究开始,成立,在均匀的挤压率下D形弯曲曲率半径的几何最佳条件和各种内部压力是R / D = 0.3。

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