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首页> 外文期刊>Polymer Degradation and Stability >Characterization of local deformation in filled-silicone elastomers subject to high strain - NMR MOUSE and Magnetic Resonance Imaging as a diagnostic tool for detection of inhomogeneities
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Characterization of local deformation in filled-silicone elastomers subject to high strain - NMR MOUSE and Magnetic Resonance Imaging as a diagnostic tool for detection of inhomogeneities

机译:填充硅弹性体中承受高应变的局部变形的特征-NMR MOUSE和磁共振成像作为检测不均匀性的诊断工具

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摘要

Magnetic Resonance Imaging (MRI) and unilateral Nuclear Magnetic Resonance (NMR) relaxometry with the NMR MOUSE (Mobile Universal Surface Explorer) have been used to characterize local permanent deformation in silicone parts subject to high compressive strain. Samples returned from field service have been characterized by areas of high compression set. Materials excised from these damaged sections have been shown to be clearly distinguishable from undeformed material from the same part and from pristine material by NMR spin-echo, NMR MOUSE and MRI protocols. The results of these studies have been interpreted in the context of studies of model materials of varying crosslink density. The areas of local deformation have been characterized by a reduction in the residual dipolar coupling, which is proportional to the crosslink density and in the non-network sol fraction. These differences were likely to be present in these polymers at the time of production due to inefficient mixing. Additionally, both T-2 weighted Single Point Imaging (SPI) and T-2 weighted MRI experiments have been used to map out the location of different crosslink densities, ultimately determining the quality or homogeneity in silicone components. (c) 2005 Elsevier Ltd. All rights reserved.
机译:磁共振成像(MRI)和单边核磁共振(NMR)弛豫法与NMR MOUSE(移动通用表面资源管理器)已用于表征承受高压缩应变的硅树脂零件中的局部永久变形。从现场服务返回的样品具有高压缩永久变形的特征。通过NMR自旋回波,NMR MOUSE和MRI协议,已证明从这些受损部分切下的材料与同一部分的未变形材料和原始材料有明显区别。这些研究的结果已在不同交联密度的模型材料的研究背景下进行了解释。局部变形的区域的特征在于残余偶极耦合的减少,该减少与交联密度和非网络溶胶分数成正比。由于混合效率低,在生产时这些聚合物中可能存在这些差异。此外,T-2加权单点成像(SPI)和T-2加权MRI实验均已用于绘制不同交联密度的位置图,最终确定了有机硅组分的质量或同质性。 (c)2005 Elsevier Ltd.保留所有权利。

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