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Bond of steel reinforcement with microwave cured concrete repair mortars

机译:用微波固化混凝土修补砂浆粘结钢筋

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This paper investigates the effect of microwave curing on the bond strength of steel reinforcement in concrete repair. Pull-out tests on plain mild steel reinforcement bars embedded in four repair materials in 100 mm cube specimens were performed to determine the interfacial bond strength. The porosity and pore structure of the matrix at the steel interface, which influence the bond strength, were also determined. Test results show that microwave curing significantly reduces the bond strength of plain steel reinforcement. The reduction relative to normally cured (20 degrees C, 60% RH) specimens is between 21 and 40% with low density repair materials and about 10% for normal density cementitious mortars. The corresponding compressive strength of the matrix also recorded similar reduction and microwave curing resulted in increased porosity at the interface transition zone of the steel reinforcement. A unique relationship exists between bond strength and both compressive strength and porosity of all matrix materials. Microwave curing reduced shrinkage but despite the wide variation in the shrinkage of the repair mortars, its effect on the bond strength was small. The paper provides clear correlations between the three parameters (compressive strength, bond strength and porosity), which are common to both the microwave and conventionally cured mortars. Therefore, bond-compressive strength relationships used in the design of reinforced concrete structures will be also valid for microwave cured elements.
机译:本文研究了微波固化对混凝土修复中钢筋的粘结强度的影响。对嵌入在100 mm立方体试样中的四种修复材料中的普通软钢加强筋进行拉力测试,以确定界面粘结强度。还确定了影响粘结强度的钢界面基体的孔隙率和孔结构。测试结果表明,微波固化显着降低了普通钢增强材料的粘结强度。使用低密度修补材料,相对于正常固化(20摄氏度,相对湿度60%RH)的样品,还原度为21%至40%;对于正常密度的水泥砂浆,还原度约为10%。基质的相应抗压强度也记录了类似的减少,微波固化导致钢增强材料的界面过渡区的孔隙率增加。所有基质材料的粘结强度与抗压强度和孔隙率之间都存在独特的关系。微波固化降低了收缩率,但是尽管修补砂浆的收缩率变化很大,但对粘结强度的影响很小。本文提供了微波和常规固化砂浆所共有的三个参数(抗压强度,粘结强度和孔隙率)之间的明确关联。因此,在钢筋混凝土结构设计中使用的粘结-抗压强度关系对于微波固化元件也将有效。

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