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首页> 外文期刊>Journal of Applied Polymer Science >Mechanical and magnetic response of magneto-rheological elastomers with different types of fillers and their hybrids
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Mechanical and magnetic response of magneto-rheological elastomers with different types of fillers and their hybrids

机译:磁流变弹性体的机械和磁响应,具有不同类型的填料及其杂种

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摘要

The use of secondary reinforcing fillers such as graphene or multi-wall carbon nanotube (CNT) for improving mechanical properties is an effective strategy to obtain high performance magneto-rheological elastomers (MREs). Therefore, MREs were prepared via solution mixing of room-temperature-vulcanized silicone rubber (RTV-SR) and iron oxide (Fe3O4), and hybridized with iron wire, Few-layer graphene (FLG), and CNT as secondary nanofillers. The isotropic mechanical properties were studied through compressive tests, and their compressive moduli and reinforcing factors were determined. From these studies, it was found that CNT-based hybrid MREs show the highest compressive mechanical properties. For example, at 80 per hundred parts of rubber (phr), the compressive modulus was 3.5 MPa (RTV-SR/Fe3O4), 4.1 MPa (RTV-SR/Fe3O4-FLG), 5.5 MPa (RTV-SR/Fe3O4-CNT), and 3.7 MPa (RTV-SR/Fe3O4-iron wires). A nanofiller with higher aspect ratio (CNT), has a strong effect on the isotropic mechanical properties, whereas a lower aspect ratio nanofiller (FLG) has a greater effect on magnetic sensitivity. Although iron wires with lower specific surface areas can only improve the mechanical properties slightly, they can improve the magnetic sensitivity of MREs because of its stronger magnetic behavior.
机译:使用石墨烯或多壁碳纳米管(CNT)等二次增强填料来改善机械性能是获得高性能磁流变弹性体(MRE)的有效策略。因此,通过室温硫化硅橡胶(RTV-SR)和氧化铁(Fe3O4)的溶液混合制备MRE,并与铁丝、几层石墨烯(FLG)和CNT作为二次纳米填料进行杂交。通过压缩试验研究了材料的各向同性力学性能,确定了其压缩模量和增强因子。从这些研究中发现,基于碳纳米管的混合磁流变液具有最高的压缩机械性能。例如,在80%的橡胶(phr)下,压缩模量为3.5 MPa(RTV-SR/Fe3O4)、4.1 MPa(RTV-SR/Fe3O4 FLG)、5.5 MPa(RTV-SR/Fe3O4 CNT)和3.7 MPa(RTV-SR/Fe3O4铁丝)。高长径比的纳米填料(CNT)对各向同性的力学性能有很大的影响,而低长径比的纳米填料(FLG)对磁灵敏度有较大的影响。虽然较低比表面积的铁丝只能略微改善机械性能,但由于其较强的磁性,它们可以提高磁流变液的磁敏感性。

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