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行星齿轮减速器设计中主要结构尺寸的优化设计 被引量:5
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作者 刘铁禄 《东华大学学报(自然科学版)》 CAS CSCD 北大核心 2007年第3期403-406,共4页
太阳轮的齿数、模数、厚度及行星齿轮的个数是行星齿轮减速器设计中主要的结构尺寸参数.在一定条件下以最小体积为目标,利用优化方法对行星齿轮减速器主要结构尺寸进行优化,取得了一组最优解,这样不仅可以使减速器体积减小,还可以使减... 太阳轮的齿数、模数、厚度及行星齿轮的个数是行星齿轮减速器设计中主要的结构尺寸参数.在一定条件下以最小体积为目标,利用优化方法对行星齿轮减速器主要结构尺寸进行优化,取得了一组最优解,这样不仅可以使减速器体积减小,还可以使减速器重量减轻、材料节省和成本降低,对减速器设计十分有益. 展开更多
关键词 优化设计 主要结构尺寸 行星齿轮减速器
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Design and Analysis of Typical Buoyancy Tank Riser Tensioner Systems 被引量:1
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作者 Zhuang Kang Lusheng Jia Liping Sun Wenzhou Liang 《Journal of Marine Science and Application》 2012年第3期351-360,共10页
The method for design and analysis of a buoyancy tank riser tensioner system (BTRTS) was put forward in this paper, taking the free standing hybrid riser's top buoyancy tank as an example. The design procedure was ... The method for design and analysis of a buoyancy tank riser tensioner system (BTRTS) was put forward in this paper, taking the free standing hybrid riser's top buoyancy tank as an example. The design procedure was discussed and was also illustrated in a flowchart, after a short description of the global arrangement, structure configuration, and the function of different types of buoyancy tanks (BT). The objective of this paper is to describe a way of developing a BT with minimal hydro force, maximal net lift, and no redundancy of compartments. The method of determining the main dimensions of the BT, namely the length and the outer diameter, was outlined. A series of investigations was conducted for a West Africa FSHR BT design, and the effect of the ratio of the length to the outer diameter (L/D) on the hydrodynamics and the weight of the BT was discussed. The methodology of designing the internal structure of the BT was presented. The effects of the number of compartments and the dimension of the inner stem on the BT weight and strength were compared. The relationship between inner structure and the number one index of the BT as well as the riser's top tension factor (TTF) were illustrated for normal operating conditions and conditions with one or more compartments (or inner stem) damaged. A design instance was given in this paper, when L/D is 4-6, the BT weight and the drag force are compromised. When the BT is divided into 10 compartments, the riser TTF will reach the maximum value, and the ratio of the stem OD to shell OD is about 0.3. A global strength analysis method of the BT and the main load case matrix was also included in the paper, together with the local strength analysis of the buoyancy tank's pad-eye assembly. 展开更多
关键词 buoyancy tank (BT) buoyancy tank riser tensioner system (BTRTS) top tension factor (TTF) strength analysis
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