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Fracture response of cement-based composite with spherical glass aggregate exposed to high temperatures

机译:用高温暴露的球形玻璃聚集体的水泥基复合材料的断裂响应

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This paper concerns an investigation into the effects of high temperatures acting on specimens made from specially designed fine-grained cement-based composite with spherical glass aggregate. The experimental programme was carried out on four sets of beam specimens with the dimensions 20 x 40 x 200 mm. The specimens were thermally loaded to pre-set temperatures of 100, 200 and 400 °C, after which these temperatures were maintained for 60 minutes (one of the sets contained three reference specimens which were placed in a laboratory at a temperature of 20 °C and were not exposed to heat). After the temperature loading had been performed, the specimens were left to cool down to ambient temperature. After that, fracture tests were used to determine the degree of damage caused to the specimens by temperature loading. Three-point bending tests were conducted on the previously loaded beam specimens, which were notched to provide them with an initial stress concentrator using a diamond blade saw before testing. The depth of the initial edge notch on the bottom side of the specimen was approximately 1/3 of the total specimen depth. The span length was 180 mm. Fracture response was evaluated via load versus deflection diagrams. The monitored parameters were modulus of elasticity, effective fracture toughness and specific fracture energy. Informative compressive strength values were also determined. Selected specimens were investigated using X-ray micro-tomography (micro-CT).
机译:本文涉及对具有球形玻璃骨料的特殊设计的细粒基组合复合材料制成的高温作用的影响。实验程序是在四组梁样本上进行的,尺寸为20×40×200mm。将试样热加载到预设的100,200和400℃的预设温度,之后将这些温度保持60分钟(其中一组包含在20℃的温度下置于实验室中的三种参考标本。并且没有暴露在热量上)。在进行温度载荷后,将样本冷却至环境温度。之后,使用裂缝试验来确定通过温度负载对样本引起的损伤程度。在先前装载的梁样本上进行三点弯曲试验,该横向标本在检测之前用初始应力集中器提供初始应力集中器。样品底侧上的初始边缘凹口的深度约为总样本深度的1/3。跨度长度为180毫米。通过负载与偏转图评估裂缝响应。监测的参数是弹性模量,有效的断裂韧性和特定的裂缝能量。还确定了信息性压缩强度值。使用X射线微断层扫描(Micro-CT)研究了所选样品。

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