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车用液压减震器外特性仿真 被引量:1
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作者 魏文鹏 王姝宁 +1 位作者 王天任 闻邦椿 《精密制造与自动化》 2015年第4期26-28,37,共4页
针对某车用液压减震器的物理结构及其工作原理,做出合理的模型假设,建立了液压减震器的阻尼特性数学模型。该模型将减震器油液流动情况分为活塞阀系、底阀阀系和储油腔三部分讨论,并且考虑了减震器工作过程中的油液泄露以及储油腔内的... 针对某车用液压减震器的物理结构及其工作原理,做出合理的模型假设,建立了液压减震器的阻尼特性数学模型。该模型将减震器油液流动情况分为活塞阀系、底阀阀系和储油腔三部分讨论,并且考虑了减震器工作过程中的油液泄露以及储油腔内的气体压力。采用Matlab软件对液压减震器的阻尼特性模型进行仿真,将仿真结果与试验结果对比,发现仿真数据与试验数据之间的误差不超过10%。由此可以得出,建立的减震器阻尼特性模型是准确可信的,该模型可以为减震器外特性设计提供直接参考。 展开更多
关键词 减震器 阻尼尼特性 仿真 试验
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Micro arc oxidation and electrophoretic deposition effect on damping and sound transmission characteristics of AZ31B magnesium Alloy 被引量:1
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作者 罗智 郝志勇 +2 位作者 蒋百灵 葛延峰 郑旭 《Journal of Central South University》 SCIE EI CAS 2014年第9期3419-3425,共7页
Micro arc oxidation(MAO) and electrophoretic deposition(EPD) process are employed to fabricate a dense coating on magnesium alloy to protect it from corrosion in engineering application. The EPD film changes the dampi... Micro arc oxidation(MAO) and electrophoretic deposition(EPD) process are employed to fabricate a dense coating on magnesium alloy to protect it from corrosion in engineering application. The EPD film changes the damping characteristic of magnesium alloy, and both the MAO and EPD process change the bending stiffness of samples being treated. Damping loss factor(DLF) test and sound transmission experiments were carried out for AZ31 B magnesium alloy with coating fabricated by MAO and EPD processes. The results indicate that DLF is improved in frequency range from 0-850 Hz. Bending stiffness of the samples is improved with MAO and EPD treatment. As a result, the sound transmission loss(LST) is improved in the stiffness control stage of the sound transmission verse frequency curve. To the samples by electrophoresis process, the LST is improved in frequency range from 2500-3200 Hz, because the damping loss factor is improved with EPD process. The results are useful for the surface treatment to enhance the damping loss factor, LST and widespread application of magnesium alloy while improving the corrosion resistance. 展开更多
关键词 magnesium alloy micro arc oxidation electrophoretic deposition damping loss factor sound transmission loss bending stiffness
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