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A study on the contact stresses of square ring under uniform squeeze rate and internal pressure by photoelastic experimental hybrid method

机译:用光弹性实验混合法研究均压速率和内压作用下方环的接触应力

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摘要

The square ring has over the past few years been used as an alternative sealing element to the O-ring, which has been used widely for a long time. The square ring geometry is believed to be especially suitable for axial static applications because its square form remains practically constant under high pressures, has a high resistance to extrusion, not sensitive to gap extrusion and high leak tightness. Some of these fundamental properties that are crucial in the design of a square ring can be justified by analysis of the stress distribution of the square ring under various loading conditions, especially under a combined loading of uniform squeeze and internal pressure. In order to justify these properties a stress frozen square ring under this combined loading condition of uniform squeeze rate and internal pressure was analyzed using the photoelastic experimental hybrid method to obtain the contact and internal stresses. This research confirmed that contrary to the established theory, the square ring extrudes at a lower pressure of 1.96 MPa. The photoelastic experimental hybrid method can adequately be used for stress analysis of square ring seals. Internal pressure plays a significant role in the design of the seals. As the internal pressure increases, the internal stresses also increase. Maximum internal stresses were observed in the region close to the extrusion gap at points 2 and 2'. The square ring experienced contact stress singularity on the upper end of the contact surface (point 2') on the front side and at point 2 on the upper side. The upper region experienced the largest contact stresses as well as internal stresses and so the fracture criterion of maximum shear stress should be applied in this region.
机译:在过去的几年中,方形环已被用作O形圈的替代密封元件,而O形圈已被广泛使用。据信方形环的几何形状特别适合于轴向静态应用,因为其方形形状在高压下实际上保持恒定,具有高的抗挤压性,对间隙挤压不敏感和高密封性。通过分析在各种载荷条件下,特别是在均匀挤压和内部压力的组合载荷下,方环的应力分布,可以证明对方环的设计至关重要的一些基本性能是合理的。为了证明这些性质的合理性,使用光弹性实验混合法分析了在均匀挤压速率和内压的这种联合加载条件下的应力冻结方环,以获得接触应力和内应力。这项研究证实,与既定理论相反,方环在1.96 MPa的较低压力下挤出。光弹性实验混合法可以适当地用于方形密封圈的应力分析。内部压力在密封设计中起着重要作用。随着内部压力的增加,内部应力也会增加。在靠近点2和2'的挤出间隙区域观察到最大内应力。方形环在前侧的接触表面上端(点2')和上侧的点2处经历了接触应力奇异性。上部区域经历了最大的接触应力以及内部应力,因此应在该区域采用最大剪切应力的断裂准则。

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