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Experimental and modelling study on nonlinear time-dependent behaviour of thin spray-on liner

机译:薄喷涂衬套非线性时变行为的实验与建模研究

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摘要

Thin spray-on liners (TSLs) are fast-setting multi component polymeric materials applied on rock or coal surface with a thickness of 2-5 mm that have fairly high tensile strength, adhesion, and elongation capabilities. Compared to conventional surface support elements, TSLs with polymer content exhibit different material responses over time. As a matter of fact, the creep behaviour of TSLs under a constant load has a significance for the evaluation of the long term performances of TSLs. This paper investigates the nonlinear creep behavior of a polymer based TSL for different curing times. Experimental studies were completed to show the nonlinear time dependent response of the liner under various constant load and curing time conditions. Dogbone shape test specimens were sustained under constant loads up to 2 months of testing time for different test sets. New equations were proposed for rupture time prediction (creep rupture envelopes) which may aid support design engineers to estimate the effective permanent support time and maximum allowable strain amount of the TSL. Test results were used to construct nonlinear viscoplastic models and viscoelastic models consisting of one independent spring and multi Kelvin-Voight elements. A good agreement was obtained between model predictions and experimental values. Generated constitutive models might aid to further numerical studies in TSL literature.
机译:薄喷涂衬里(TSL)是一种快速固化的多组分聚合物材料,应用于岩石或煤炭表面,厚度为2-5 mm,具有相当高的拉伸强度,附着力和伸长能力。与传统的表面支撑元件相比,具有聚合物含量的TSL随时间表现出不同的材料响应。实际上,TSL在恒定载荷下的蠕变行为对于评估TSL的长期性能具有重要意义。本文研究了基于聚合物的TSL在不同固化时间下的非线性蠕变行为。完成了实验研究,以显示在各种恒定载荷和固化时间条件下衬管的非线性时间依赖性响应。对于不同的测试组,狗骨形测试样品在恒定载荷下可承受长达2个月的测试时间。提出了用于破裂时间预测的新方程(蠕变破裂包络线),这可以帮助支撑设计工程师估算有效的永久支撑时间和TSL的最大允许应变量。测试结果用于构建非线性粘塑性模型和由一个独立的弹簧和多个开尔文-沃特元素组成的粘弹性模型。在模型预测和实验值之间获得了很好的一致性。生成的本构模型可能有助于TSL文献中的进一步数值研究。

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