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首页> 外文期刊>Journal of materials in civil engineering >Mechanical Properties of Cement Mortar Containing Heat-Treated Boron Derivative Waste at Elevated Temperatures
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Mechanical Properties of Cement Mortar Containing Heat-Treated Boron Derivative Waste at Elevated Temperatures

机译:高温下含热处理硼衍生物废物的水泥砂浆的力学性能

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摘要

The largest boron reserves in the world are located in Turkey. The production of boron compounds and use of generated boron derivative waste during this production are extremely important for both economically and environmentally. This study evaluates boron derivative waste and investigates doping effects of heat-treated boron derivative wastes on mineralogical, microstructural, and mechanical properties of cement mortar. The waste, portland cement, and wastes heat-treated at temperatures of 400-900 degrees C are characterized. The cement is partially replaced with heat-treated wastes at 800 and 900 degrees C in weight ratios of 15, 25, and 35%. Compression tests are conducted for all mortars and proximate strength value to reference mortar is obtained with the incorporation of waste heat-treated at 800 degrees C by the 25% ratio. From a strength point of view, thermally processed waste is practical for use in the production of cement mortar at 25% by weight.
机译:世界上最大的硼储量位于土耳其。硼化合物的生产以及在此生产过程中产生的硼衍生物废物的使用对于经济和环境都极为重要。这项研究评估了硼衍生物废料,并研究了热处理过的硼衍生物废料对水泥砂浆的矿物学,微观结构和力学性能的掺杂作用。表征了在400-900摄氏度的温度下进行热处理的废料,硅酸盐水泥和废料。水泥在800和900摄氏度下分别用重量比为15、25和35%的热处理废料代替。对所有砂浆进行压缩试验,并通过加入在800摄氏度下以25%的比例进行热处理的废料获得与参考砂浆接近的强度值。从强度的观点来看,热处理废料对于生产水泥砂浆的重量百分比为25%是实用的。

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