| Literature DB >> 31086062 |
Banglong Liang1, Xi Yang2, Zili Wang3, Xing Su4, Baopeng Liao5, Yi Ren6, Bo Sun7.
Abstract
The properties of materials directly affect the performance of the sealing structures, among which the rubber O-ring seal is one of the most commonly used. In addition, the performance of the O-ring seal is often influenced by the randomness in structure and working conditions, which greatly reduce the reliability of the sealing structure. This paper proposes a reliability-based method to analyze the influence of the randomness in rubber material parameters on the sealing performance of the O-ring. Based on the failure mechanism of the O-ring seal, the stochastic characteristics of the parameters in O-rings are determined through experiments, and the influences of these parameters on the reliability are subsequently analyzed. Moreover, the working conditions are also taken into account to analyze their influence on the performance and reliability of the O-ring seal. The proposed method provides easy access to estimate the reliability of the rubber O-ring seal considering the uncertainty in structure and operational conditions. It is revealed that the material and geometric parameters had greater influence on the reliability of the rubber O-ring.Entities:
Keywords: influence analysis; parameter randomness; reliability; rubber O-ring seal
Year: 2019 PMID: 31086062 PMCID: PMC6539998 DOI: 10.3390/ma12091566
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Figure 1Geometry model of a rubber O-ring seal.
Figure 2(a) Aging test chamber and (b) rubber samples.
Randomness of parameters in the rubber O-ring seal.
| Parameter | Distribution Type | Mean | Variance |
|---|---|---|---|
|
| Normal | 12.5 Mpa | 6.25 |
|
| Normal | 4.2 Mpa | 1 |
|
| Normal | 0.3 mm | 0.002 |
|
| Normal | 10 Mpa | 4 |
Figure 3Finite element model of the O-ring.
Figure 4(a) Compressive stress and (b) contact stress distribution nephograms.
Figure 5Distribution of (a) compressive stress and (b) contact stress.
Figure 6(a) Contact stress and (b) reliability with varying .
Figure 7(a) Contact stress and (b) reliability with varying .
Figure 8(a) Compressive stress and (b) reliability with varying compression quantity .
Figure 9Reliability varying with the (a) mean and (b) variance of oil pressure.