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风洞捕获轨迹6自由度机构运动学逆解分析
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作者 李宁 谢志江 +2 位作者 姜安林 牟力胜 胡立鸥 《机械传动》 北大核心 2020年第1期47-53,共7页
针对风洞捕获轨迹实验设备的需要,提出一种串联6自由度机构。建立了机构的运动学正解模型,对于串联机构运动学逆解难的问题,通过BP神经网络和数值法两种方法进行了该机构运动学逆解的探索。针对数值法逆解时初值估计难的问题,提出了一... 针对风洞捕获轨迹实验设备的需要,提出一种串联6自由度机构。建立了机构的运动学正解模型,对于串联机构运动学逆解难的问题,通过BP神经网络和数值法两种方法进行了该机构运动学逆解的探索。针对数值法逆解时初值估计难的问题,提出了一种新的方法,通过实例分析,验证了该方法的正确性。解决了数值法求解时初值估计的问题,使得数值法顺利解出逆解,相比BP神经网路,数值法精度更高。 展开更多
关键词 串联机构 运动学逆解 神经网络 数值法
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风洞试验中飞行器模型支撑机构的刚度优化 被引量:1
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作者 牟力胜 谢志江 +1 位作者 赵远程 李宁 《机械制造》 2019年第7期11-15,共5页
提出了一种对应用于风洞试验的飞行器模型支撑机构进行刚度优化的方法,对飞行器模型支撑机构施加一个不同频率的激振力,通过模态和谐响应分析得到机构刚度最薄弱的环节。应用这一刚度优化方法,以飞行器模型支撑机构中的主支板为优化对象... 提出了一种对应用于风洞试验的飞行器模型支撑机构进行刚度优化的方法,对飞行器模型支撑机构施加一个不同频率的激振力,通过模态和谐响应分析得到机构刚度最薄弱的环节。应用这一刚度优化方法,以飞行器模型支撑机构中的主支板为优化对象,通过灵敏度分析法得出主支板质量和固有频率对主支板根部尺寸的灵敏度,建立优化方程,基于MATLAB软件求解得到主支板的优化结果。主支板刚度优化后,减小了飞行器模型支撑机构整体在Y方向和Z方向的最大共振峰值,所对应的共振频率相应提高。 展开更多
关键词 风洞试验 飞行器 支撑机构 刚度
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High-static-low-dynamic stiffness isolator based on an electromagnetic negative stiffness spring with long linear stroke
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作者 YUAN ShuJin WU YaJun +8 位作者 SONG DaiPing PU HuaYan mou lisheng HOU Lei ZHAO JingLei LI XuePing LUO Jun WU Jie HUANG XiaoXu 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2024年第3期740-752,共13页
Negative stiffness mechanisms can improve low-frequency vibration isolation performance and have been widely used in the vibration isolation of precision equipment. However, the negative stiffness mechanism usually in... Negative stiffness mechanisms can improve low-frequency vibration isolation performance and have been widely used in the vibration isolation of precision equipment. However, the negative stiffness mechanism usually introduces a nonlinear stiffness,resulting in a nonlinear response and worsening the vibration isolation performance, especially under large amplitude vibration.In this paper, an electromagnetic spring with linear negative stiffness(ESLNS) is proposed, in which the antagonistic ampere forces of the energized coils are used to generate negative stiffness within a long linear stroke. The magnetic field distribution is improved through the design of the magnetic circuit, thereby increasing the stiffness generation efficiency. The stiffness can be adjusted bidirectionally by current within the range of positive and negative stiffness. An electromagnetic stiffness model was established based on the equivalent magnetic circuit method. Experimental measurements verified the accuracy of the model and proved the linearity of the electromagnetic spring. A vibration isolator with high static and low dynamic stiffness(HSLDS) based on the ESLNS is designed and tested. The experimental results prove that the introduction of the ESLNS can effectively expand the isolation frequency band without changing the equilibrium position. Moreover, the vibration isolator with ESLNS does not produce nonlinear response. The proposed electromagnetic spring with linear negative stiffness extends the application range of HSLDS isolators to a large amplitude vibration environment. 展开更多
关键词 linear negative stiffness mechanism low-frequency vibration isolation electromagnetic spring vibration control
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