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Determination of Physico-Mechanical Properties and High Temperature Behavior of Stressed Reinforcing Steels

机译:应力加强钢的物理机械性能和高温行为的测定

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This study experimentally investigated the effect of fire-induced high temperature on different grades of stressed steels. The steel in the reinforced concrete structural element is under the influence of static and dynamic loads. The main approach of this study is based on stresses caused by static and dynamic loads on steel reinforcing bars (rebars) and the effect of high temperature during this process. Three different grades of steel (smooth S220, ribbed S420, Tempcore ribbed B500C) in three different diameters (empty set 12, empty set 16, empty set 20) were used. The three loading conditions taken into account for reinforced steels subjected to high temperatures were the design yield strength (f(yd): f(yk)/1.15), the characteristic yield strength of steel rebar (f(yk)) and the exceeding yield strength (f(ye): f(yk) x 1.15). Three different temperatures (75, 150 and 300 degrees C) were applied depending on concrete cover thickness and fire duration. Physical and mechanical properties of the test specimens were determined prior to high temperature. Metallographic investigations, hardness measurement, impact toughness, oxidation layer measurement, electrochemical oxidation test and tensile test were performed on steel rebars. Results showed that pre-tension and high temperatures caused drastic changes in steel characteristics. Results provided information about how steels commonly used in the construction of reinforced concrete structures are affected by fire and about at what stage of the fire they start to be affected.
机译:本研究通过实验研究了火诱导的高温对不同等级的压力钢的影响。钢筋混凝土结构元件中的钢处于静态和动态载荷的影响。本研究的主要方法是基于由钢筋加强杆(钢筋)上的静态和动态载荷引起的应力以及该过程中的高温效果。使用三种不同等级的钢(光滑的S220,罗纹S420,Tempcore Ribbed B500c)在三种不同的直径(空组件12,空组合16,空组件20)中使用。考虑到经过高温的增强钢的三种装载条件是设计屈服强度(F(YD):F(YK)/1.15),钢钢筋的特征屈服强度(F(YK))和超过产量强度(F(YE):F(YK)x 1.15)。根据混凝土覆盖厚度和火持续时间施加三种不同的温度(75,150和300℃)。在高温之前测定试样的物理和力学性能。金相研究,硬度测量,冲击韧性,氧化层测量,电化学氧化试验和拉伸试验对钢钢筋进行。结果表明,钢筋紧张和高温引起了钢筋的剧烈变化。结果提供了有关在钢筋混凝土结构施工中常用的钢的信息有关火灾的影响,并在他们开始受到影响的火灾阶段。

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