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液压系统弹簧刚度动态变化下的压力冲击余弦级数研究 被引量:7
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作者 韩贺永 王凯 +1 位作者 王晶 柳渊 《液压与气动》 北大核心 2018年第8期1-6,共6页
分析了油液含气量和液压缸活塞位移对液压油的有效体积弹性模量和液压缸等效动态弹簧刚度的影响,利用余弦级数计算出压力冲击的作用时间,并利用AMESim仿真软件验证所求时间的准确性。在此基础上利用动量定理推导出了压力冲击的计算公式... 分析了油液含气量和液压缸活塞位移对液压油的有效体积弹性模量和液压缸等效动态弹簧刚度的影响,利用余弦级数计算出压力冲击的作用时间,并利用AMESim仿真软件验证所求时间的准确性。在此基础上利用动量定理推导出了压力冲击的计算公式,并求出了压力冲击的数值大小。研究结果表明,液压缸的等效动态弹簧刚度和油液中的含气量是影响压力冲击数值大小的主因,因此在设计液压系统时,可以降低油液中的含气量,提高液压缸的等效动态弹簧刚度来确保系统的稳定。以国内某钢厂的全液压双边滚切剪作为实验对象,由于数据采集的时间间隔为0.5 s/次,在出现压力冲击的时候数值没采集到,但是通过现场油管爆裂来看是有冲击产生的。通过分析理论推导与所采集到的压力冲击的大小,得出误差在11.12%左右,验证了理论推导的正确性。 展开更多
关键词 压力冲击 动态弹簧刚度 含气量 有效体积弹性模量
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ELID磨削钝化膜弹簧刚度计算模型研究 被引量:2
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作者 郐吉才 张飞虎 《工具技术》 北大核心 2008年第9期29-32,共4页
钝化膜在ELID磨削中具有至关重要的作用。结合磨削原理建立了ELID磨削钝化膜弹簧刚度计算模型,对计算模型进行了理论分析及仿真研究,并进行了实验验证。研究表明,ELID磨削钝化膜弹簧刚度计算模型可以很好表征ELID磨削过程中弹簧刚度的... 钝化膜在ELID磨削中具有至关重要的作用。结合磨削原理建立了ELID磨削钝化膜弹簧刚度计算模型,对计算模型进行了理论分析及仿真研究,并进行了实验验证。研究表明,ELID磨削钝化膜弹簧刚度计算模型可以很好表征ELID磨削过程中弹簧刚度的动态变化,这一特性对ELID磨削表面质量的提高起到显著作用。 展开更多
关键词 ELID磨削 钝化膜 动态弹簧刚度 计算模型
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Higher mode effects in hinged wall with BRBsin base-frame structures using distributed parameter models 被引量:1
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作者 Yang Xiaoyan Wu Jing +2 位作者 Pang Xixi Wang Qiang Zhang Meng 《Journal of Southeast University(English Edition)》 EI CAS 2020年第1期56-66,共11页
To investigate the effect of higher modes on the displacement and inner forces in HWBB(hinged wall with buckling-restrained braces in base)-frame structure,distributed parameter models for both the HWBB-hinged frame s... To investigate the effect of higher modes on the displacement and inner forces in HWBB(hinged wall with buckling-restrained braces in base)-frame structure,distributed parameter models for both the HWBB-hinged frame structure and the HWBB-MRF(moment resisting frame)structure are built.The hinged wall is simplified as a flexural beam.BRBs(bucking-restrained braces)are simplified to a rotational spring.MRF is simplified to a shear beam.Vibration equations of distributed parameter models are derived.Natural periods,natural modes of vibration,inner forces and displacements of the distributed parameter models are derived based on the vibration equations using numerical methods.The effect of the relative stiffness ratio and the rotational stiffness ratio on the higher mode effects is investigated.For elastic structures,the global displacement and shear in MRF are predominantly controlled by the first mode,while the shear and bending moment in the wall are significantly affected by higher mode effects.The effect of the yielding of BRB on the inner forces distribution in the HWBB-hinged frame is investigated.The results indicate that the first mode will no longer contribute to the inner forces and the contribution from higher modes to inner forces increases after the BRBs yield.Displacement is not sensitive to higher mode effects and it is controlled by the first mode after the BRBs yield.Parameter analysis demonstrates that the displacement amplitudes are reduced with the increase in the flexural stiffness of the wall before the flexural stiffness reaches a certain value.The first three periods decrease with the increase in the rotational stiffness.With the increase in the rotational stiffness ratio,the contribution from the first mode decreases while contributions from both the second mode and third mode increase. 展开更多
关键词 hinged wall higher mode effects flexural beam rotational spring rotational stiffness ratio
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