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Energy Consumption of Self-Compacting Concrete during Mixing and Its Impact on the Yield Stress Measured in the Ready-Mix Concrete Plant

机译:混合过程中自压力混凝土能耗及其对现成混合混凝土植物中测量屈服应力的影响

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To find the energy required during the mixing process of self-compacting concrete in a ready-mixed concrete plant and correlate the results with the yield stress of concrete. Power consumption required during the mixing of concrete is measured with a wattmeter connected to the mixing unit’s power supply. A coaxial cylinder viscometer is used to measure the yield stress of concrete. The clamp meter measures the power when the impeller rotates inside the coaxial cylinder viscometer, which is filled with concrete. When the impeller rotates in a coaxial cylinder filled with concrete, the power is measured by a clamp meter. Torque is obtained through the power relationship, which is an essential factor in determining the yield stress. The cost of a rheometer is so high that all construction industries, research institutions, and researchers cannot measure rheological parameters. Nowadays, all rheometers are automated; hence, the cost is very high. Tattersall’s approach of power requirement in mixing the concrete and calculating the yield stress reduces the complexity in determining the rheological parameter.
机译:为了在现成混合混凝土植物中找到自压力混凝土混合过程中所需的能量,并将结果与​​混凝土的屈服应力相关联。使用连接到混合单元电源的瓦特计测量混凝土中所需的功耗。同轴气缸粘度计用于测量混凝土的屈服应力。当叶轮旋转在同轴滚筒粘度计内时,夹具计测量功率,该滚筒粘度计填充混凝土。当叶轮在填充有混凝土的同轴滚筒中旋转时,电力由夹具计测量。通过电力关系获得扭矩,这是确定屈服应力的必要因素。流变仪的成本如此之高,即所有建筑行业,研究机构和研究人员都无法测量流变参数。如今,所有流变仪都是自动化的;因此,成本非常高。 TATTERSALL在混合混凝土中的功率要求的方法和计算屈服应力降低了确定流变参数的复杂性。

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