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Vibration tests of precompressed rubber springs and a flag-shaped smart damper

机译:预压缩橡胶弹簧和旗形智能阻尼器的振动测试

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The aims of this study were to introduce a smart damper with flag-shaped behavior using friction of magnets and self-centering capacity of precompressed rubber springs and to conduct vibrational tests to verify its performance. A damper exhibiting flag-shaped behavior is considered the most effective to sufficiently provide energy dissipation and self-centering after earthquakes or strong vibrations. The damper suggested in this study used practical materials to realize a smart damper. For these purposes, hexahedron Neodymium (NdFeB) magnets with dimensions of 50 mm x 50 mm x 25 mm (B x L x H) and polyurethane rubber cylinders of 80 mm in length and 80 mm in diameter with a central hole of 20 mm were used. The experimental program in this study consists of three tests; magnetic friction and precompressed rubber springs were first tested separately, and, the damper comprising the two components was tested. For the test of the magnet, two parameters of frictional force and loading frequency were considered. The loading frequency was varied from 0.1 to 2.0 Hz, and the frictional force was controlled by the number of magnets, namely, 0, 4, 8, and 12. From the separating tests, frictional coefficients of magnets of were estimated; the value was 0.65. The rigid force of the rubber springs was assessed according to precompression; the rigid force increased linearly with an increasing strain of precompression up to the strain of 20%. From the rubber tests, the Young's modulus of the polyurethane rubber was estimated as 52.8 MPa, which was much greater than that of natural rubber. The vibration test for a combined damper produced flag-shaped behavior of the damper, and their damping ratios and stiffnesses were assessed from the hysteretic curves. The damping ratio of only rubber springs was 2.78%, and the damping ratios with 12 magnets increased to 7.12%. The estimated stiffness after the rigid behavior was 17.2 kN/mm. The suggested damper showed good performance of flag-shaped behavior. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是介绍一种利用磁铁的摩擦力和预压缩橡胶弹簧的自对中能力,具有标志形状的智能阻尼器,并进行振动测试以验证其性能。表现出旗形行为的阻尼器被认为是最有效地提供能量消散和在地震或强烈振动后自动对中的方法。本研究中建议的阻尼器使用实用材料来实现智能阻尼器。为此,使用尺寸为50 mm x 50 mm x 25 mm(B x L x H)的六面体钕(NdFeB)磁体和长80 mm,直径80 mm,中心孔为20 mm的聚氨酯橡胶圆柱体用过的。本研究中的实验程序包括三个测试;首先分别测试磁摩擦和预压缩橡胶弹簧,然后测试包括这两个组件的阻尼器。为了测试磁体,考虑了摩擦力和加载频率这两个参数。加载频率在0.1到2.0 Hz之间变化,并且摩擦力由磁体的数量控制,即0、4、8和12。从分离测试中,可以估算出磁体的摩擦系数。该值为0.65。橡胶弹簧的刚度根据预压缩进行评估。刚度随着预压缩应变的增加而线性增加,直至20%。根据橡胶测试,聚氨酯橡胶的杨氏模量估计为52.8 MPa,远大于天然橡胶的杨氏模量。组合减震器的振动测试产生了减震器的旗形行为,并根据滞后曲线评估了其减震比和刚度。仅橡胶弹簧的阻尼比为2.78%,带有12个磁体的阻尼比提高到7.12%。刚性行为后的估计刚度为17.2 kN / mm。建议的阻尼器表现出良好的旗形性能。 (C)2016 Elsevier Ltd.保留所有权利。

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