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LOAD DISTRIBUTION CHARACTERISTIC LINKED-OPTIMUM DESIGN BASED-EARTHQUAKE RESISTANT POWER DISTRIBUTION BOARD WITH HIGH DURABILITY AND METHOD FOR REINFORCING DURABILITY OF LOAD DISTRIBUTION ANALYSIS BASED-EARTHQUAKE RESISTANT POWER DISTRIBUTION BOARD
LOAD DISTRIBUTION CHARACTERISTIC LINKED-OPTIMUM DESIGN BASED-EARTHQUAKE RESISTANT POWER DISTRIBUTION BOARD WITH HIGH DURABILITY AND METHOD FOR REINFORCING DURABILITY OF LOAD DISTRIBUTION ANALYSIS BASED-EARTHQUAKE RESISTANT POWER DISTRIBUTION BOARD
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机译:高耐用性的负荷分布特征联动优化设计抗震配电板及基于抗震性配电板的负荷分布耐用性增强方法
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摘要
The present invention provides a load distribution characteristic linked-optimum design based-earthquake resistant power distribution board with high durability and a method for increasing durability of a load distribution analysis based-earthquake resistant power distribution board. According to the present invention, the load distribution characteristic linked-optimum design based-earthquake resistant power distribution board with high durability and the method for increasing durability of a load distribution analysis based-earthquake resistant power distribution board calculate the portion most vulnerable to vibration by analyzing vibration characteristics/stress change characteristics/deformation rate changing characteristics through earthquake generation effect simulation, to which load distribution information and center of weight-information on the power distribution board is applied, and provide a structure allowing a complex vibration isolation device, of which an installation position and a characteristic value are set according to the analyzed vibration characteristics/stress changing characteristics/deformation rate changing characteristics, to be installed on a lower base of the power distribution board or the portion vulnerable to vibration; thereby remarkably increasing durability of the power distribution board and maintaining high structural stability while minimizing deformation of the power distribution board or damage to the power distribution board even in a situation where earthquake or vibration due to an external force occurs.;COPYRIGHT KIPO 2017
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