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PREDICTION OF CEMENT PHYSICAL PROPERTIES BY VIRTUAL TESTING

机译:虚拟测试预测水泥物理特性

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Assuring the quality of the massive quantities of cement produced worldwide each year is a daunting task. Currently, the cement industry performs extensive physical testing to assess the quality of their product, resulting in large costs for both materials (and their disposal) and labor. One of the major goals of the Virtual Cement and Concrete Testing Laboratory (VCCTL) consortium is to provide the technology to reduce the number of necessary physical tests. In this paper, the ability of the VCCTL to successfully predict a wide variety of cement paste physical properties is demonstrated. Predicted physical properties are compared to experimental measurements for degree of hydration, heat of hydration, chemical shrinkage, setting times, compressive strength development, and pore solution concentrations. When the starting materials are characterized in detail, good agreement is exhibited between VCCTL model predictions and experimental measurements, highlighting the potential for this virtual technology to ultimately save the cement industry both time and money.
机译:确保全世界生产的大量水泥的质量是一项艰巨的任务。目前,水泥行业进行了广泛的物理测试,以评估其产品的质量,导致材料(及其处置)和劳动力的大成本。虚拟水泥和具体测试实验室(VCCTL)联盟的主要目标之一是提供技术减少必要的物理测试的数量。在本文中,vcctl成功预测各种水泥糊性物理性质的能力。将预测的物理性质与实验测量进行比较,以获得水化程度,水合热,化学收缩,凝固时间,抗压强度发育和孔隙溶液浓度。当起始材料的特征详细时,VCCTL模型预测和实验测量之间展示了良好的一致性,突出了这种虚拟技术最终拯救了水泥行业的潜力。

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