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동의어 포함
There are three kinds of loading conditions applied to the O-ring, The first loading condition is the case in which uniform squeeze rates are applied to the upper side and the lower side of the O-ring (the strain condition). The second loading condition is the case in which uniform squeeze rates are applied to the upper side and the lower side of the Oring and other squeeze rates are applied to the front side of the O-ring. The third loading condition is the case in which
uniform squeeze rates are applied to the upper side and the lower side of the O-ring, other squeeze rates are applied to the front side of the O-ring, and internal pressures are applied to another front side of the O-ring(loading condition is the combination of stress condition and the strain condition). In this research, a new photoelastic experimental hybrid method under the third loading condition was developed and it was verified. The stresses of the O-ring under the third loading condition were analyzed by the new photoelastic experimental hybrid method developed in this research. The internal pressures applied to the O-ring were 0.98 MPa, 1.96 MPa, 2.94 MPa and 3.92 MPa.| 번호 | 참고문헌 | 국회도서관 소장유무 |
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| 1 | Static Stresses in an Unpressurized, Rounded, Rectangular, Elastomeric Seal ![]() |
미소장 |
| 2 | Stress fields in a compressed unconstrained elastomeric O-ring seal and a comparison of computer predictions and experimental results ![]() |
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| 3 | Theoretical analysis of an unpressurized elastomeric O-ring seal inserted into a rectangular groove ![]() |
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| 4 | E. Dragoni and A. Strozzi, Analysis of an Unpressurized, Laterally Restrained, Elastomeric O-Ring Seal, Journal of Tribology, 110(1988) 193-200. | 미소장 |
| 5 | Geometry and contact pressure of an O-ring mounted in a seal groove ![]() |
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| 6 | Numerical Simulations on the O-ring Extrusion in Automotive Engines | 소장 |
| 7 | Jeonghwan Nam, Jaisug Hawong, Osung Kwon, Songling Han, Gun Kwon, A Study on the Analysis of Contact Stress of O-Ring under Uniform Squeeze Rate by Photoelastic Experimental Hybrid Method, ATEM’07 OS16-2-4. | 미소장 |
| 8 | A Hybrid Method to Determine Individual Stresses in Orthotropic Composites Using Only Measured Isochromatic Data ![]() |
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| 9 | D. C. Shin, J. S. Hawong, H. J. Lee, J. H. Nam and O. S. Kwon, Application of Transparent Photoelastic Experimental Hybrid Method to the Fracture Mechanics of Isotropic Material, Transactions of the Korean society of Mechanical Engineers(A),22(5) 834-842. | 미소장 |
| 10 | Application of Transparent Photoelastic Experimental Hybrid Method for the Fracture Mechanics of Orthotropic Material | 소장 |
| 11 | Photoelastic experimental hybrid method for fracture mechanics of anisotropic materials ![]() |
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| 12 | Dong-chul Shin, Jai-sug Hawong and Jong-Hyun Sung, Development of Dynamic Photoelastic Experimental Hybrid Method for Propagating Cracks in Orthotropic Material, Transactions of Korean Society of Mechanical Engineers A, 27(8)(2003) 1273-1280. | 미소장 |
| 13 | Dong-chul Shin, Jai-sug Hawong and Sung-su Nam, Application of the static Photoelastic Experimental Hybirid Method of the Crack Propagating Criterion for Isotropic Materials Transactions of Korean Society of Mechanical Engineers A, 28 (8)(2004) 1229-1236. | 미소장 |
| 14 | N. I. Muskhelishvili, Some Basic Problems of Mathematical Theory of Elasticity, 4th Edition, P.Noordhoff Ltd., Groningen Netherlands, (1963). | 미소장 |
| 15 | A. C. Ugural, S. K. Fenster, Advanced Strength and Applied Elasticity Elsevier, (1981) 70. | 미소장 |
| 16 | D. A. Hills, D. Nowell and A. Sackfield, Me chanics of Elastic Contacts. | 미소장 |
| 17 | A stress-optic law for photoelastic analysis of orthotropic composites ![]() |
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| 18 | J. S. Hawong, J. H. Nam, S. L. Han and S. H. Park, Contact stress of O-ring under uniform squeeze rate by photoelastic experimental hybrid method”_Journal of Mechanical Science and Technology 22,(2008) 2337-2349. | 미소장 |
| 19 | M. S. Bazaraa and C. M. Shetty, Nonlinear Programming : theory and algorithms, John Wiley & Sons Inc, (1979). | 미소장 |
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