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Evaluation of in-situ shrinkage and expansion properties of polymer composite materials for adhesive anchor systems by a novel approach based on digital image correlation

机译:基于数字图像相关性的新方法评价粘合剂锚固系统的原位收缩和膨胀性能

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The curing reaction of thermosetting resins is associated with chemical shrinkage which is overlapped with thermal expansion as a result of the exothermal enthalpy. Final material properties of the polymer are determined by this critical process. For adhesive anchor systems the overall shrinkage behavior of the material is very important for the ultimate bond behavior between adhesive and the borehole wall. An approach for the in-situ measurement of 3-dimensional shrinkage and thermal expansion with digital image correlation (DIC) is presented, overcoming the common limitation of DIC to solids. Two polymer-based anchor systems (filled epoxy, vinylester) were investigated and models were developed, showing good agreement with experimental results. Additionally, measurements with differential scanning calorimetry (DSC) provided supporting information about the curing reaction. The vinylester system showed higher shrinkage but much faster reaction compared to the investigated epoxy.
机译:热固性树脂的固化反应与化学收缩有关,由于放热焓导致具有热膨胀的热膨胀。 聚合物的最终材料特性通过该关键方法确定。 对于粘合剂锚固系统,材料的总收缩行为对于粘合剂和钻孔壁之间的最终粘合行为非常重要。 提出了一种利用数字图像相关(DIC)的三维收缩和热膨胀的原位测量的方法,克服了DIC对固体的常见限制。 研究了两种基于聚合物的锚固系统(填充环氧树脂,乙烯基酯),并开发了模型,表现出与实验结果的良好一致性。 另外,使用差示扫描量热法(DSC)的测量提供了有关固化反应的支持信息。 与所研究的环氧树脂相比,乙烯酯系统显示出更高的收缩,但更快的反应。

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