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移动式海洋平台破舱稳性优化分析
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作者 柏健 诸俊楷 蒙占彬 《船舶标准化工程师》 2023年第5期26-29,共4页
为提高海上石油平台的安全性,对海上石油平台拖航时的的破舱稳性原理和计算衡准进行阐述,基于MOSES程序进行精细舱室建模和分析,并提出提高破舱稳性的改良优化措施和平台发生破舱后的补救措施。研究表明:这些改进破舱稳性的方法具备实... 为提高海上石油平台的安全性,对海上石油平台拖航时的的破舱稳性原理和计算衡准进行阐述,基于MOSES程序进行精细舱室建模和分析,并提出提高破舱稳性的改良优化措施和平台发生破舱后的补救措施。研究表明:这些改进破舱稳性的方法具备实际应用价值。研究成果可为移动式海洋平台设计和应急预案制作提供一定参考。 展开更多
关键词 破舱稳性 电动隔舱 透气管集成模块 碎波装置
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Experimental Studies on Ultrasonic Vibration Grinding of the Workpiece Made from Fine-crystalline Zirconia Ceramics
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作者 吴雁 朱训生 赵波 《Journal of Donghua University(English Edition)》 EI CAS 2006年第3期110-113,共4页
The performances of fme-crystalline zirconia ceramics in workpiece ultrasonic vibration grinding (WUVG) and conventional grinding (CG) with diamond wheel were researched. The effects of WUVG and CG on material rem... The performances of fme-crystalline zirconia ceramics in workpiece ultrasonic vibration grinding (WUVG) and conventional grinding (CG) with diamond wheel were researched. The effects of WUVG and CG on material removal rate, grinding forces, surface roughness and microstructure of zirconia ceramic were investigated. Experimental results indicated that: (1) The material removal rate (MRR) in ultrasonic grinding process is two times as large as that of in conventional grinding. The material removal rate increases with increasing grinding depth in both ultrasonic grinding and conventional grinding. (2) The ultrasonic vibration grinding force is lower than that of conventional grinding force, and the increase of the worktable speed leads to a decrease of the grinding force, while the grinding force increases with larger grinding depth in both WUVG and CG. (3) The surface of ultrasonic vibration grinding has no spur and build-up edge and its surface roughness is smaller than that of CG significantly. Surface quality of WUVG is superior to that of conventional grinding, it is easy for ultrasonic vibration grinding that material removal mechanism is ductile grinding. 展开更多
关键词 ultrasonic vibration grinding grindingmechanics fine-crystalline zirconia ceramics.
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