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Behavior of Crack Generation of Slag in Continuous Solidification Process of Blast Furnace Slag

机译:高炉炉渣连续凝固过程中炉渣裂纹生成的行为

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A continuous solidification process of blast furnace slag was developed to promote the use of air-cooled slag coarse aggregate for concrete. In this process, the molten slag can solidify in only 120 s and the slag thickness is about 25 mm. This process suppresses gas generation and greatly reduces water absorption. Most of the slag is crystalline, and part of the slag has a glass layer on its surface. Slag with a glass layer is brittle because it contains several cracks. Therefore, microscopic observation and thermal stress analysis of the solidified slag were carried out to clarify the mechanism of crack generation in the plate-like slag. In the microscopic observation, several cracks with a length of about 8 mm were found in the slag with the glass layer. From the analysis, in the cooling pattern of the slag on the piled slag a temperature difference of about 200 K exists between the center and the mold side in the slag pit, and keeping this difference results in tensile stress of more than 50 MPa. However, in the cooling pattern of the crystalline slag in the piled slag, the temperature gradient in the slag in the slag pit was very small because the slag was retained in the piled slag, and as a result, the thermal stress was almost 0 MPa.
机译:开发了高炉炉渣的连续凝固过程,以促进使用空气冷却炉渣粗骨料混凝土。在该方法中,熔融渣可在仅120秒中固化,并且炉渣厚度约为25mm。该过程抑制了气体产生,大大减少了吸水性。大多数炉渣是晶体,并且部分炉渣在其表面上具有玻璃层。带玻璃层的炉渣是脆的,因为它含有几个裂缝。因此,进行了凝固炉渣的微观观察和热应力分析,以阐明板状炉渣中的裂纹产生机理。在微观观察中,在炉渣中发现具有约8mm的几个裂缝,其具有玻璃层。从分析中,在堆叠的炉渣上的冷却图案中,在炉渣坑中的中心和模具侧之间存在约200k的温度差,并保持这种差异导致大于50mPa的拉伸应力。然而,在堆叠炉渣中的晶渣的冷却模式中,炉渣中的炉渣中的温度梯度非常小,因为炉渣保留在堆叠中,因此,热应力几乎0 MPa 。

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