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Vibrations of tandem cold rolling mill: coupled excitation of rolling force and variable stiffness of fault-free back-up roll bearing
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作者 Yu-jie Liu Shen Wang +1 位作者 Jie-bin Qi xiao-qiang yan 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2023年第9期1792-1802,共11页
Vibration issues of a five-stand tandem cold rolling mill were found in the steel production practice,and the experimental observation and numerical analysis indicated that the vibrations were related to the back-up r... Vibration issues of a five-stand tandem cold rolling mill were found in the steel production practice,and the experimental observation and numerical analysis indicated that the vibrations were related to the back-up roll bearing.The results were validated by replacing the back-up roll bearing with the new bearing resulting in 30%decline in vibration amplitude.Models describing the four-row cylindrical roller bearing and the vertical system of the cold rolling mill including the bearing were established.Moreover,the mechanisms of periodic excitation and amplified vibrations of fault-free bearing were explained theoretically,along with the analysis of bifurcation behaviors of the motion states of the roller bearing and rolling mill system.It is found that the energy transmitted between vibrations with different frequencies if multiple excitation frequencies in the rolling mill system were close. 展开更多
关键词 Rolling mill vibration Cold tandem mill Fault-free bearing Vibration amplification Variable stiffness Characteristics
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Safety, pharmacokinetics, and biomarkers of F-652, a recombinant human interleukin-22 dimer, in healthy subjects 被引量:5
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作者 Kai-yang Tang Jason Lickliter +9 位作者 Zhi-Hua Huang Zong-Shu Xian Han-yang Chen Cheng Huang Chong Xiao Yu-Peng Wang Ying Tan Lin-Feng Xu Yu-Liang Huang xiao-qiang yan 《Cellular & Molecular Immunology》 SCIE CAS CSCD 2019年第5期473-482,共10页
F-652 is a recombinant fusion protein consisting of two human interleukin-22(IL-22)molecules linked to an immunoglobulin constant region(IgG 2-Fc).IL-22 plays critical roles in promoting tissue repair and suppressing ... F-652 is a recombinant fusion protein consisting of two human interleukin-22(IL-22)molecules linked to an immunoglobulin constant region(IgG 2-Fc).IL-22 plays critical roles in promoting tissue repair and suppressing bacterial infection.The safety,pharmacokinetics(PK),tolerability,and biomarkers of F-652 were evaluated following a single dose in healthy male volunteers in a randomized,double-blind,placebo-controlled study.Following single-dose subcutaneous(SC)injection of F-652 at 2.0µg/kg into healthy subjects,six out of six subjects experienced delayed injection site reactions,which presented as erythematous and/or discoid eczematous lesions 10 to 17 days post-dosing.F-652 was then administered to the healthy subjects via an intravenous(IV)infusion at 2.0,10,30,and 45µg/kg.No severe adverse event(SAE)was observed during the study.Among the IV-dosed cohorts,eye and skin treatment emergent adverse events(TEAEs)were observed in the 30 and 45µg/kg cohorts.F-652 IV dosing resulted in linear increases in C max and AUC(0–t),and the T 1/2 ranged from 39.4 to 206h in the cohorts.An IV injection of F-652 induced dose-dependent increases in serum marker serum amyloid A,C-reactive protein,and FIB,and decreased serum triglycerides.The serum levels of 36 common pro-inflammatory cytokines/chemokines were not altered by the treatment of F-652 at 45μg/kg.In conclusion,IV administration of F-652 to healthy male volunteers is safe and well-tolerated and demonstrates favorable PK and pharmacodynamic properties.These results warrant further clinical development of F-652 to treat inflammatory diseases. 展开更多
关键词 INTERLEUKIN-22 F-652 PHARMACOKINETICS PHARMACODYNAMICS SAFETY
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An active method suppressing rolling mill vibration: disturbance estimation and compensation algorithm 被引量:2
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作者 xiao-qiang yan Jie-bin Qi Xin-xin Wang 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2019年第7期697-703,共7页
The rolling mill vibration not only seriously causes the strip thickness heterogeneity, but also damages the rolling mill equipment and its electrical components. Existing vibration suppression methods are passive and... The rolling mill vibration not only seriously causes the strip thickness heterogeneity, but also damages the rolling mill equipment and its electrical components. Existing vibration suppression methods are passive and mainly tune mechanical, hydraulic, electrical and rolling process parameters. A new active vibration suppression method was thus proposed using the disturbance estimation and compensation algorithm. Firstly, the hydraulic-mechanical coupling model of the rolling mill vibration was established, and an active vibration suppressor was designed based on the extended state observer. Then, through the numerical simulation, it is found that the vibration energy is reduced by 35.3% using the vibration suppressor, and the vibration suppressor is valid when the vibration frequency is lower than 60 Hz Finally, the vibration suppressor was applied to the in-site manufacturing, and the expected vibration suppression was obtained. The method makes the produced steel strip have more uniform thickness and further significantly increases the finished product ratio. 展开更多
关键词 ROLLING MILL VIBRATION ACTIVE VIBRATION suppression DISTURBANCE estimation Compensation ALGORITHM Extended state observer
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Influence of mill modulus control gain on vibration in hot rolling mills 被引量:1
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作者 Jie-bin Qi Xin-xin Wang xiao-qiang yan 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2020年第5期528-536,共9页
The rolling mill vibration is characterized by the coupling effects among mechanical,electrical,hydraulic and interfacial subsystems.The influence of the mill modulus control gain in automatic gauge control on the vib... The rolling mill vibration is characterized by the coupling effects among mechanical,electrical,hydraulic and interfacial subsystems.The influence of the mill modulus control gain in automatic gauge control on the vibration in hot rolling mills was investigated.Firstly,an experiment related to the mill modulus control gain was carried out in the hot rolling mill process,and it was found that the rolling mill vibration increases with the mill modulus control gain.Then,based on the Sims rolling force method,the coupling dynamic model was established to explain this phenomenon.Finally,the influence of mill modulus control gain on the vibration was analyzed numerically on the basis of the coupling dynamic model.Moreover,the agreement between the experimental results and the simulation results was confirmed and the measure reducing the mill modulus control gain was obtained to relieve mill vibration. 展开更多
关键词 Rolling mill vibration Coupling dynamic model Automatic gauge control Mill modulus control gain Vibration suppression
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