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Fine Ceramic Powder- Supplementary Cementitious Material for Mortar Mix Design

机译:用于砂浆混合设计的细陶瓷粉末 - 补充胶粘材料

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Waste ceramic powder originating from the contemporary hollow bricks production is studied as a supplementary cementitious material in mortar composition. For the ceramic powder and cement, the measurement of chemical composition is done using XRF analysis. XRD device is used for the amorphous phase content measurement. The particle size distribution of ceramics and cement is accessed on a laser diffraction principle. Pozzolanic activity of ceramic powder was determined by the modified Chapelle test. The blended binder containing ceramic powder in an amount of 8, 16, and 24% of mass of cement is used for the preparation of mortars which are then characterized using the measurement of basic physical properties and mechanical properties. Among the basic physical properties, bulk density, matrix density and total open porosity are measured. The mechanical resistivity of mortars with blended binder is accessed by the compressive strength, flexural strength, and dynamic Young's modulus measurement. Additionally, pore-size distribution of the developed mortars is analyzed using mercury intrusion porosimetry. Experimental data shows that an application of 24% waste ceramics in the blended binder provides sufficient mechanical resistivity of the mortar.
机译:源自当代空心砖生产的废物陶瓷粉末是砂浆组合物的补充水泥材料。对于陶瓷粉末和水泥,使用XRF分析进行化学成分的测量。 XRD设备用于非晶相含量测量。陶瓷和水泥的粒度分布在激光衍射原理上进行。陶瓷粉末的Pozzolanic活性由改性的小尖峰测试测定。含有8,16和24%水泥的陶瓷粉末的混合粘合剂用于制备砂浆,然后使用基本物理性质和机械性能的测量表征。在基本物理性质中,测量堆积密度,基质密度和总开放孔隙率。通过抗压强度,弯曲强度和动态杨氏模量测量,可以使用混合粘合剂的砂浆机械电阻率。另外,使用汞侵入孔芯测定法分析发育砂浆的孔径分布。实验数据表明,混合粘合剂中24%废陶瓷的应用提供了砂浆的充分机械电阻率。

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