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可压缩静压支撑抗偏载动态特性分析与优化 被引量:4
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作者 陆亮 陶陶 +1 位作者 訚耀保 朱康武 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2019年第3期401-407,共7页
火箭推力矢量控制系统采用静压支撑技术获得抗偏载、低摩擦等优异性能,但极高温度和大温差工作环境形成支撑结构局部介质的高含气量强可压缩流动,导致活塞杆振荡超调,过大偏心距导致油膜承载失效.在进行推力系统矢量分析基础上,获得静... 火箭推力矢量控制系统采用静压支撑技术获得抗偏载、低摩擦等优异性能,但极高温度和大温差工作环境形成支撑结构局部介质的高含气量强可压缩流动,导致活塞杆振荡超调,过大偏心距导致油膜承载失效.在进行推力系统矢量分析基础上,获得静压支撑作动的边界条件与介质参数,基于油缸动力学建模与局部线性化求解,获得了静压支撑动态特性的一般规律.研究表明,增加供油压力可提升支撑能力,但易导致响应超调;采用合理的油腔深度可在保持承载力基础上避免超调的发生;进一步将油腔结构改为锥形,可在保持支撑能力和避免超调前提下进一步减少泄漏损失. 展开更多
关键词 火箭推力矢量系统 静压支撑 强可压缩 动态特性 结构优化
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Low secondary compressibility and shear strength of Shanghai Clay 被引量:1
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作者 李青 吴宏伟 刘国彬 《Journal of Central South University》 SCIE EI CAS 2012年第8期2323-2332,共10页
In order to investigate the compressibility, particularly the secondary compression behaviour, soil structure and undrained shear strength of Shanghai Clay, a series of one-dimensional consolidation tests (some up to... In order to investigate the compressibility, particularly the secondary compression behaviour, soil structure and undrained shear strength of Shanghai Clay, a series of one-dimensional consolidation tests (some up to 70 d) and undrained triaxial tests on high-quality intact and reconstituted soil specimens were carried out. Shanghai Clay is a lightly overconsolidated soil (OCR=1.2-1.3) with true cohesion or bonding. Due to the influence of soil structures, the secondary compression index Ca varies significantly with consolidation stress and the maximum value of C~ occurs in the vicinity of preconsolidation stress. Measured coefficients of secondary compression generally fall in the range of 0.2%-0.8% based on which Shanghai Clay can be classified as a soil with low to medium secondary compressibility. The effect of soil structures on the compressibility of Shanghai Clay is found to reduce with an increase in depth. Soil structure has an important influence on initial soil stiffness, but does not appear to affect undrained shear strength significantly. Undrained shear strengths of intact Shanghai Clay from compression tests are approximately 20% higher than those from extension tests. 展开更多
关键词 Shanghai Clay block sampling secondary compressibility soil structure undrained shear strength
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