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New approach for delaying the internal temperature rise of fire resistant mortar made with coated aggregate

机译:延迟用涂层骨料制成的耐火砂浆内部温升的新方法

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Scientifically, resistant properties of steel structures decrease rapidly with an increase of the temperature. Therefore, steel structure is protected with low thermal conductivity materials from high temperatures. Thus, in this study, for developing fire resistance mortars on the surface of steel structure, the coated aggregate was developed with the zeolite aggregate, paraffin, and aluminium hydroxide. In case of paraffin and aluminium hydroxide, they were used as the coating materials on the surface of zeolite aggregates. First, aluminium hydroxide was coated on the surface of the zeolite aggregate with polymer as the bonding material. After that, paraffin was coated on the surface of coated aggregate with aluminium hydroxide. After the coated aggregate were developed, physical and chemical experiments were conducted. The results of the mechanical experiments presented that compressive strength of specimens with coated aggregates was decreased in comparison with the general specimen. In addition, the bonding strength test indicated that every specimen with or without coated aggregates showed similar results. However, fire resistance properties of specimens with coated aggregates presented that it has a lower thermal conductivity and internal temperature than the plain specimen. Especially, the specimen with coated aggregates was delayed at 17 min compared with the plain specimen on the increase of the internal temperature around 200 degrees C in the mortar. Therefore, it was confirmed that coated aggregates developed have an effect to decrease the internal temperature and delay time of the increase of the heat by reacting coating materials with heat. (C) 2017 Elsevier Ltd. All rights reserved.
机译:从科学上讲,钢结构的耐热性能会随着温度的升高而迅速降低。因此,用低导热率的材料保护钢结构不受高温的影响。因此,在这项研究中,为了在钢结构表面上开发耐火砂浆,用沸石骨料,石蜡和氢氧化铝开发了涂层骨料。对于石蜡和氢氧化铝,它们被用作沸石聚集体表面上的涂料。首先,用聚合物作为粘结材料将氢氧化铝涂覆在沸石聚集体的表面上。之后,将石蜡用氢氧化铝涂覆在涂覆的聚集体的表面上。包被的骨料显影后,进行物理和化学实验。力学实验的结果表明,与普通试样相比,带有包覆骨料的试样的抗压强度降低了。此外,粘结强度测试表明,每个带有或不带有涂层聚集体的样品都显示出相似的结果。但是,带有涂层骨料的样品的耐火性能表明,它的导热系数和内部温度均比普通样品低。特别是,由于砂浆内部温度升高约200摄氏度,与普通试样相比,带有包覆骨料的试样要延迟17分钟。因此,证实了通过使涂料与热反应而产生的包覆聚集体具有降低内部温度和增加热量的延迟时间的作用。 (C)2017 Elsevier Ltd.保留所有权利。

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