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Strength Values of Cementitious Materials in Bending and Tension Test Methods

机译:弯曲试验和拉伸试验方法中胶凝材料的强度值

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A value of tensile strength of cement-based materials is required for the design of pavements, for the analysis of concrete dams to prevent thermal cracking and sometimes for the design of prestressed beams. Cementitious materials exhibit a significant variability in their tensile strength, depending on the test method used. The three common test methods are direct tension, three-point bending, and four-point bending, and it is commonly found that bending tests yield higher strengths than direct tension tests. During this investigation, tests were carried out on cement mortar and concrete for each type of test. A two-parameter Weibull model was found to fit each individual set of data well. For both cement mortar and concrete, the Weibull moduli calculated for the test methods were approximately the same. The Weibull modulus is used to relate the values of strength obtained with different test methods, using the Weibull effective volume concept, the predicted results are in remarkably good agreement with the experimental results.
机译:路面设计,分析混凝土坝以防止热裂以及有时用于预应力梁的设计都需要水泥基材料的抗拉强度值。水泥材料的抗张强度表现出很大的差异,具体取决于所使用的测试方法。三种常见的测试方法是直接拉伸,三点弯曲和四点弯曲,并且通常发现,弯曲测试比直接拉伸测试具有更高的强度。在此调查期间,针对每种类型的测试,都对水泥砂浆和混凝土进行了测试。发现两参数的Weibull模型可以很好地拟合每组数据。对于水泥砂浆和混凝土,为测试方法计算的威布尔模量大致相同。威布尔模量用于关联不同测试方法获得的强度值,采用威布尔有效体积概念,预测结果与实验结果非常吻合。

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