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    • 3. 发明授权
    • Vibration testing device and vibration response evaluating method
    • 振动试验装置及振动响应评估方法
    • US06718270B2
    • 2004-04-06
    • US10244746
    • 2002-09-17
    • Toshihiko HoriuchiTakao Konno
    • Toshihiko HoriuchiTakao Konno
    • G01F1700
    • G01M7/00
    • A vibration testing device includes a computer system having: a measurement processing block for inputting an output of the monitoring sensor and processing the output; a model substituting block for modeling characteristics of the test piece, calculating a response quantity corresponding to a drive condition of an actuator, and inputting the calculation result to a numerical simulation block and the parameter changing block; the parameter changing block for comparing the calculation result of the model substituting block with the processing result of the measurement processing block, and changing the parameter; the numerical simulation block for calculating a vibration response in accordance with a previously input structure numerical model; and a waveform generating block for calculating a time function of a deformation to be applied to the test piece, and outputting the time block to the actuator controlling device.
    • 振动测试装置包括:计算机系统,具有:测量处理块,用于输入监视传感器的输出并处理输出; 模型替代块,用于对所述试件进行建模特性,计算与致动器的驱动条件对应的响应量,并将所述计算结果输入到数值模拟块和所述参数改变块; 用于将模型替换块的计算结果与测量处理块的处理结果进行比较的参数改变块,并且改变参数; 用于根据先前输入的结构数值模型计算振动响应的数值模拟块; 以及波形发生块,用于计算要施加到试件的变形的时间函数,并将该时间块输出到致动器控制装置。
    • 4. 发明授权
    • Vibration testing system
    • 振动试验系统
    • US06598480B2
    • 2003-07-29
    • US09994863
    • 2001-11-28
    • Toshihiko HoriuchiMasaki KuriharaTomoyuki HamadaTakao Konno
    • Toshihiko HoriuchiMasaki KuriharaTomoyuki HamadaTakao Konno
    • G01M702
    • G01M7/00
    • A main computer for performing numerical simulation and a sub-computer for controlling each shaking machine are provided. Data transfer between the main computer and sub-computer is performed by communications. The main computer is provided with a model substituting function of modeling a specimen to be shaken, a parameter modification function of sequentially modifying parameters of a model in accordance with the vibration test result, and an abnormality inspection function of judging an abnormality of each shaking system and if an abnormality is detected, substituting the measured value of a reaction force with an output of the model substituting function. It is possible to make an experiment of evaluating the strength and reliability of a massive structure, for example, relative to an earthquake and to make a vibration test at a high precision and with an economical cost.
    • 提供用于执行数字模拟的主计算机和用于控制每个振动机的子计算机。 主计算机和子计算机之间的数据传输由通信进行。 主计算机具有对要振动的样本进行建模的模型替换功能,根据振动试验结果依次修改模型的参数的参数修改功能,以及判断每个抖动系统的异常的异常检查功能 并且如果检测到异常,则用模型替换函数的输出代替反作用力的测量值。 可以进行大型建筑物的强度和可靠性评估的实验,例如相对于地震,并以高精度和经济的成本进行振动试验。
    • 7. 发明授权
    • Shaking test apparatus and method for structures
    • 振动试验装置及结构方法
    • US06341258B1
    • 2002-01-22
    • US09526207
    • 2000-03-15
    • Masahiko InoueToshihiko HoriuchiYasuyuki MomoiTakao KonnoWataru Yamagishi
    • Masahiko InoueToshihiko HoriuchiYasuyuki MomoiTakao KonnoWataru Yamagishi
    • G01M702
    • G01M7/025G01M7/022
    • A shaking response is estimated with high precision by performing a shaking test f or combining and estimating a shaking characteristic of a partial structure of an object under test obtained through a shaking test and a shaking response of the whole structure which is numerically modeled. In a shaking test apparatus and method, a structure under test comprises a partial structure and a numerical model which is virtually connected to the partial structure. First, a vibration model corresponding to the partial structure is assumed, the numerical model and the vibration model are combined to construct an overall-system model, and then the vibration response of the overall-system model is calculated. On the basis of the calculation result and the signal input from a waveform oscillator, the partial structure is shaken by using a shaker. The displacement and reaction force of the partial structure are measured by a displacement gauge and a load cell, the vibration model is corrected on the basis of the measurement value and the overall-system model is reconstructed. This procedure is repeated to construct the overall-system model with high precision.
    • 通过进行振动试验f或者通过振动试验获得的被测试物体的部分结构的振动特性和数值模拟的整个结构的振动响应进行振动试验f估计振动响应。 在振动测试装置和方法中,被测结构包括虚拟连接到部分结构的部分结构和数值模型。 首先,假设与部分结构相对应的振动模型,数值模型和振动模型结合起来构建一个整体系统模型,然后计算整个系统模型的振动响应。 根据计算结果和从波形振荡器输入的信号,通过振荡器使部分结构振动。 部分结构的位移和反作用力由位移计和称重传感器测量,振动模型根据测量值进行校正,并重建整个系统模型。 重复此过程,以高精度构建整体系统模型。