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结构动力学特性修改的矩阵摄动方法与反问题——Ⅰ:质量矩阵摄动
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作者 孙忠池 谢永巨 《唐山工程技术学院学报》 1991年第2期1-9,共9页
本文运用矩阵摄动方法,建立了结构动力学反问题的数学模型。将质量和刚度摄动看成是对原结构的简谐激励,获得原结构广义坐标的受迫振动方程。对质量矩阵受摄结构,给出了动力学反问题与正问题的三个互逆定理,并深入讨论了定理的力学特性... 本文运用矩阵摄动方法,建立了结构动力学反问题的数学模型。将质量和刚度摄动看成是对原结构的简谐激励,获得原结构广义坐标的受迫振动方程。对质量矩阵受摄结构,给出了动力学反问题与正问题的三个互逆定理,并深入讨论了定理的力学特性、适用前景等问题。最后的算例验证了理论分析的可行性。 展开更多
关键词 结构 动特性修改 矩阵摄 反问题
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摄动法在结构修改重分析中的应用
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作者 李玉林 《汽车齿轮》 2000年第3期9-16,共8页
结构动特性修改方法是当前动力学“正问题”的关键。本文讨论了基于结构参数修改重分析的一阶、二阶摄动法和矩阵摄动迭代法的应用。
关键词 结构修改重分析 结构力学 结构动特性修改 结构设计
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Development of XY scanner with minimized coupling motions for high-speed atomic force microscope
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作者 PARK Jong-kyu MOON Won-kyu 《Journal of Central South University》 SCIE EI CAS 2011年第3期697-703,共7页
The design and fabrication processes of a novel scanner with minimized coupling motions for a high-speed atomic force microscope (AFM) were addressed. An appropriate design modification was proposed through the anal... The design and fabrication processes of a novel scanner with minimized coupling motions for a high-speed atomic force microscope (AFM) were addressed. An appropriate design modification was proposed through the analyses of the dynamic characteristics of existing linear motion stages using a dynamic analysis program, Recurdyn. Because the scanning speed of each direction may differ, the linear motion stage for a high-speed scanner was designed to have different resonance frequencies for the modes, with one dominant displacement in the desired directions. This objective was achieved by using one-direction flexure mechanisms for each direction and mounting one stage for fast motion on the other stage for slow motion. This unsymmetrical configuration separated the frequencies of two vibration modes with one dominant displacement in each desired direction, and hence suppressed the coupling between motions in two directions. A pair of actuators was used for each axis to decrease the crosstalk between the two motions and give a sufficient force to actuate the slow motion stage, which carried the fast motion stage, A lossy material, such as grease, was inserted into the flexure hinge to suppress vibration problems that occurred when using an input triangular waveforrn. With these design modifications and the vibration suppression method, a novel scanner with a scanning speed greater than 20 Hz is achieved. 展开更多
关键词 atomic force microscope SCANNER piezoelectric stack actuator CROSSTALK flexure hinge
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