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Design and experimental testing of an adaptive magneto-rheological elastomer base isolator

机译:自适应磁流变弹性体基础隔离器的设计和实验测试

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摘要

Magnetorheological elastomer (MRE) is known for its field-sensitive shear modulus and damping property when it is exposed to a magnetic field. It has a great potential for the development of vibration reduction devices. Many research, mostly in mechanical engineering, have been focused on different kinds of vibration absorbers and vibration isolators, however few research addresses its potential in base isolation system in civil engineering application. The objective of this paper is to pilot the design and experimental testing of a novel device, an adaptive MRE base isolator, for the development of smart base isolation system. A large-scale design of the novel device with unique laminated structure of steel and MR elastomer layers is adopted. Detailed procedures on designing such adaptive base isolator are introduced. An innovative design on the magnetic circuit, with aim to provide strong and uniform magnetic field to the multi-layer MRES, is proposed to incorporate into the device design. Experimental investigation is conducted to examine its behavior under various cycling loadings when it is applied with different current inputs. Experimental results indicated that the force increase and the stiffness increase of the novel device are about 45% and 37%, respectively. To conclude, the MR elastomer base isolator will be a promising candidate to facilitate the development of adaptive base isolation system for civil structures.
机译:磁流变弹性体(MRE)以磁场敏感的剪切模量和阻尼特性而著称。对于减振装置的开发具有很大的潜力。许多研究(主要在机械工程中)已经集中在不同种类的减振器和隔振器上,但是很少有研究针对其在土木工程应用中的基础隔离系统中的潜力。本文的目的是试行新型器件的自适应MRE基础隔离器的设计和实验测试,以开发智能基础隔离系统。采用具有独特的钢和MR弹性体层的叠层结构的新型装置的大规模设计。介绍了设计这种自适应基础隔离器的详细过程。提出了一种磁路的创新设计,旨在为多层MRES提供强而均匀的磁场,以将其纳入器件设计中。进行实验研究以检查在不同的电流输入条件下其在各种循环负载下的行为。实验结果表明,该新型装置的力增加和刚度增加分别约为45%和37%。总而言之,MR弹性体基础隔离器将是促进民用建筑自适应基础隔离系统发展的有希望的候选者。

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