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Analyses toward factors influencing sealing clearance of a metal rubber seal and derivation of a calculation formula 被引量:1
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作者 Yan Hui Zhao Yalei +1 位作者 Liu Jianguo Jiang Hongyuan 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2016年第1期292-296,共5页
Sealing clearance is a key factor for a metal rubber seal's sealability. The expansion coef- ficient and expansion deformation in the radial direction of metal rubber have been obtained through a thermal expansion ex... Sealing clearance is a key factor for a metal rubber seal's sealability. The expansion coef- ficient and expansion deformation in the radial direction of metal rubber have been obtained through a thermal expansion experiment of metal rubber. The influence of the elastic modulus to the sealing clearance has been analyzed theoretically. By combining the temperature and elasticity factors of metal rubber with the elastic mechanics theory, the calculation formula of the sealing clearance has been derived, and the values of the sealing clearance and the leakage rate in certain working conditions have been calculated. Experimental results are consistent with calculation results in a high degree. The calculation formula of the sealing clearance can explain the influences of the temperature and elastic modulus factors of metal rubber on the sealing clearance. It can pro- vide guidance for the study of sealing mechanism of metal rubber seals. 展开更多
关键词 elastic mechanics theoryelastic modulus factor Metal rubber SEALS Temperature factor
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Hadron and light nucleus radii from electron scattering
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作者 崔著钫 Daniele Binosi +1 位作者 Craig D.Roberts Sebastian M.Schmidt 《Chinese Physics C》 SCIE CAS CSCD 2022年第12期1-15,共15页
Conceptually,radii are amongst the simplest Poincaré-invariant properties that can be associated with hadrons and light nuclei.Accurate values of these quantities are necessary so that one may judge the character... Conceptually,radii are amongst the simplest Poincaré-invariant properties that can be associated with hadrons and light nuclei.Accurate values of these quantities are necessary so that one may judge the character of putative solutions to the strong interaction problem within the Standard Model.However,limiting their ability to serve in this role,recent measurements and new analyses of older data have revealed uncertainties and imprecisions in the radii of the proton,pion,kaon,and deuteron.In the context of radius measurement using electron+hadron elastic scattering,the past decade has shown that reliable extraction requires minimisation of bias associated with practitioner-dependent choices of data fitting functions.Different answers to that challenge have been offered;and this perspective describes the statistical Schlessinger point method(SPM),in unifying applications to proton,pion,kaon,and deuteron radii.Grounded in analytic function theory,independent of assumptions about underlying dynamics,free from practitioner-induced bias,and applicable in the same form to diverse systems and observables,the SPM returns an objective expression of the information contained in any data under consideration.Its robust nature and versatility make it suitable for use in many branches of experiment and theory. 展开更多
关键词 elastic electromagnetic form factors lepton scattering from hadrons and light nuclei emergence of mass muonic atoms proton Nambu-Goldstone modes-pion and kaon DEUTERON strong interactions in the standard model of particle physics
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