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Tensoresistive PVC Coating for Sensor-Enabled Geogrids

机译:用于传感器的土工格栅的抗张PVC涂层

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A study has been conducted to develop a new generation of geosynthetic materials based on the tensoresistivity of polymers filled with electrically conducting particles. These materials, called sensor-enabled geosynthetics (SEGs), allow their tensile strains to be measured without the need for conventional instrumentation (e.g., strain gauges). This paper reports a recent SEG development in which tensoresistive composites made of carbon black-filled plasticized PVC were formulated for the coating of polyester yarns, which are commonly used in commercially manufactured geogrids. Hence, the resulting geogrids are termed sensor-enabled geogrids (SEGGs). The effectiveness of three different blending methods to form the tensoresistive composites was examined by using the statistical consistency of the corresponding electrical conductivity results. The viscosity and stiffness of the resulting materials were measured to evaluate their pliability for industrial production purposes. In addition, a series of tensile and tensoresistivity tests was conducted on tensoresistive coating specimens to study their tensile properties and strain-sensitivity responses. Results of the study show that the coating material is suitable to measure tensile strains in geogrids.
机译:已经进行了研究,以基于填充有导电颗粒的聚合物的拉伸强度来开发新一代的土工合成材料。这些材料称为具有传感器功能的土工合成材料(SEG),无需常规仪器(例如,应变仪)即可测量其拉伸应变。本文报道了SEG的最新进展,其中配制了由炭黑填充的增塑PVC制成的抗张复合材料,用于涂覆聚酯纱线,而聚酯纱线通常用于商业制造的土工格栅。因此,生成的土工格栅被称为启用传感器的土工格栅(SEGG)。通过使用相应电导率结果的统计一致性,检验了三种不同共混方法形成抗张复合材料的有效性。测量所得材料的粘度和刚度,以评估其用于工业生产目的的柔韧性。此外,对拉伸电阻涂层试样进行了一系列拉伸和拉伸电阻测试,以研究其拉伸性能和应变敏感性响应。研究结果表明,该涂料适合测量土工格栅中的拉伸应变。

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