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Unprecedented vibration damping with high values of loss modulus and loss tangent, exhibited by cement-matrix graphite network composite

机译:水泥基石墨网状复合材料表现出前所未有的高阻尼模量和损耗角正切的减振性能

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摘要

This paper reports a material with unprecedented vibration damping ability, as shown by high values of both the loss tangent (vibration amplitude decay rate) and the loss modulus (energy dissipation ability, equal to the product of the storage modulus and the loss tangent) under flexure at 0.2 Hz at room temperature. The loss modulus (7.5 GPa) exceeds that of any previously reported material, including the best metal-based material, which suffers from a low loss tangent. The loss tangent (0.81) is comparable to or exceeds that of any previously reported material, including rubber, which suffers from a low loss modulus. This material is a cement-matrix graphite network composite containing 8 vol.% graphite and made by compressing a mixture of cement particles and exfoliated graphite, which binds by mechanical interlocking, followed by curing in water. The graphite network structure is supported by microscopy and the low electrical resistivity of the composite (0.04 Ω cm perpendicular to the compression direction and 0.5 Ω cm in the compression direction). The composite is much more conductive than the most conductive cement-matrix composite containing a conductive admixture. The high loss tangent is attributed to the graphite network, while the high storage modulus is attributed to the cement matrix.
机译:本文报道了一种材料,该材料具有前所未有的减振能力,其高损耗角正切值(振动幅度衰减率)和损耗模量(能量耗散能力,等于储能模量和损耗正切值的乘积)都表明了这一点。在室温下以0.2 Hz弯曲。损耗模量(7.5 GPa)超过任何先前报道的材料,包括最佳的基于金属的材料,其损耗角正切值都很低。损耗角正切(0.81)等于或超过任何先前报道的材料(包括橡胶),其损耗模量低。该材料是一种水泥基石墨网络复合材料,包含8%(体积)的石墨,是通过压缩水泥颗粒和片状石墨的混合物制成的,并通过机械互锁进行粘合,然后在水中固化。石墨网络结构由显微镜和复合材料的低电阻率支持(垂直于压缩方向为0.04Ωcm,在压缩方向为0.5Ωcm)。该复合材料比包含导电混合物的最导电的水泥基复合材料导电得多。高损耗正切归因于石墨网络,而高储能模量归因于水泥基体。

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