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SHAKING TABLE TESTS OF CRITICAL EQUIPMENT WITH SIMPLE ISOLATORS

机译:使用简单的隔离器对关键设备进行振动台测试

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Because the earthquake is one kind of non-predictable calamity and happens suddenly, its disaster and consequence are larger than other calamities. Mankind must face not only the emotional effects caused by earthquakes, but also the damage to the structure and substructure systems. The fire, damaged pipeline systems cased by earthquake and the destruction of the semiconductor, equipment or microelectronics in high-tech factories will cause an enormous and a chain of economic losses. Therefore, there is a need of an economical and efficient method to protect equipments from earthquake damage. Namely, in addition to promoting the earthquake-resistant capacity of structures, it is also important to ensure the safety of the expensive equipment and facilities. In this study, it is aimed at developing a new simple isolator with appropriate damping for critical equipment. The basic principle of the simple isolator is to lengthen the natural period of equipment, and simultaneously to reduce the earthquake-induced energy and the displacement of the isolator by additional damping. A series of shaking table tests for critical equipment isolated with simple isolators were carried out in the Department of Civil Engineering, Feng Chia University, Taichung, Taiwan. From these test results, it is illustrated that the simple isolator can reduce more than 80% responses of accelerations under earthquakes with peak ground acceleration of above 0.450g. Therefore, the simple isolator can be recognized as a feasible and promising way in mitigating the seismic responses of equipment. In addition, the simple isolator possesses enough energy absorbing capacity to reduce its maximum displacement and the restoring force to bring the isolator back to the original position without significant residual displacement.
机译:由于地震是一种不可预测的灾难,并且是突然发生的,因此其灾难和后果比其他灾难更大。人类不仅必须面对地震造成的情感影响,而且还必须面对结构和下部结构系统的破坏。火灾,地震造成的管道系统损坏以及高科技工厂中的半导体,设备或微电子产品遭到破坏,将造成巨大的经济损失。因此,需要一种经济有效的方法来保护设备免受地震破坏。即,除了提高建筑物的抗震能力之外,确保昂贵的设备和设施的安全性也很重要。在本研究中,其目的是开发一种新的简单隔离器,为关键设备提供适当的阻尼。简单隔离器的基本原理是延长设备的自然周期,同时通过额外的阻尼来减少地震产生的能量和隔离器的位移。在台湾台中逢甲大学土木工程系进行了一系列使用简单隔离器隔离的关键设备的振动台测试。从这些测试结果可以看出,在地震峰值地面加速度超过0.450g的情况下,简单的隔离器可以减少80%以上的加速度响应。因此,简单的隔离器可以被认为是减轻设备地震响应的可行且有希望的方法。此外,简单的隔振器具有足够的能量吸收能力以减小其最大位移,并且具有恢复力,可将隔振器带回到原始位置,而不会产生明显的残余位移。

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