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基于单片机技术的液压支架模型运动研究分析
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作者 任艳君 《煤矿机械》 北大核心 2013年第8期276-278,共3页
液压支架模型中存在一系列较为复杂的机构,其运动学问题具有一定难度,借助基于单片机的UG运动仿真模块进行仿真分析可以有效解决。首先对UG运动仿真模块进行了简单介绍,分别从建立液压支架运动仿真模型以及性能2方面阐述液压支架的运动... 液压支架模型中存在一系列较为复杂的机构,其运动学问题具有一定难度,借助基于单片机的UG运动仿真模块进行仿真分析可以有效解决。首先对UG运动仿真模块进行了简单介绍,分别从建立液压支架运动仿真模型以及性能2方面阐述液压支架的运动仿真。 展开更多
关键词 单片机 液压支架模型 仿真分析
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Horizontal roof gap of backfill hydraulic support 被引量:4
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作者 张强 张吉雄 +2 位作者 邰阳 方坤 殷伟 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3544-3555,共12页
For the backfill hydraulic support as the key equipment for achieving integration of backfilling and coal mining simultaneously in the practical process, its characteristics will directly influence the backfill body&#... For the backfill hydraulic support as the key equipment for achieving integration of backfilling and coal mining simultaneously in the practical process, its characteristics will directly influence the backfill body's compression ratio. Horizontal roof gap, as a key parameter of backfilling characteristics, may impact the backfilling effect from the aspects of control of roof subsidence in advance, support stress, backfilling process and the support design. Firstly, the reason why horizontal roof gap exists was analyzed and its definition, causes and connotation were introduced, then adopting the Pro/E 3D simulation software, three typical 3D entity models of backfill hydraulic supports were built, based on the influence of horizontal roof gap on backfilling effect, and influence rules of four factors, i.e. support height, suspension height, suspension angle and tamping angle, were emphatically analyzed on horizontal roof gap. The results indicate that, the four factors all have significant impacts on horizontal roof gap, but show differences in influence trend and degree, showing negative linear correlation, positive linear correlation, positive semi-parabolic correlation and negative semi-parabolic correlation, respectively. Four legs type is the most adaptive to the four factors, while six legs(II) type has the poorest adaptability, and the horizontal roof gap is small under large support height, small suspension height, small suspension angle and large tamping angle situation. By means of optimizing structure components and their positional relation and suspension height of backfill scrape conveyor in the process of support design and through controlling working face deployment, roof subsidence in advance, mining height and backfilling during engineering application, the horizontal roof gap is optimized. The research results can be served as theoretical basis for support design and guidance for backfill support to have better performance in backfilling. 展开更多
关键词 horizontal roof gap backfill hydraulic support support height suspension height suspension angle tamping angle
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FLUID INDUCED HYDRAULIC SYSTEM VIBRATIONOF POWERED SUPPORT
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作者 冯继玲 谭彬 +2 位作者 刘选民 王世文 寇子明 《Journal of Coal Science & Engineering(China)》 1998年第1期36-39,共4页
Fluid and solid interaction analysis of hydraulic support under the coming pressure of roof rocks was presented. The mathematical model of the system was proposed and numerical studies by the character line method wer... Fluid and solid interaction analysis of hydraulic support under the coming pressure of roof rocks was presented. The mathematical model of the system was proposed and numerical studies by the character line method were carried out. 展开更多
关键词 fluid solid interaction powered support hydraulic system
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