Evaluasi Beton Bertulang terhadap Perlakuan Panas (Tinjauan pada Tegangan Tarik dan Modulus Elastis Tulangan Baja Lateral)

Riswanto Riswanto, As’at Pujianto, M. H. Zulfiar
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Abstract

Fires phenomena have made demands to a building planner to protect, evaluate, and predict the performance of a building after a fires process. The main attention was given to the type of material, in this case, the reinforced concrete that used as a structural element, which due to heating and cooling cycles are alternating, and then the elements of reinforced concrete structures undergo a phase change both in the physical and chemical. This research related to the evaluation of reinforced concrete quality with a focus on heat treatment and reviews tensile stress and elastic modulus of the steel reinforcement. Specimens used in this study was a model of the reinforced concrete beam with a concrete cover types K250 and K300, 7.5 mm of rebar diameter and 2 cm of concrete cover thickness. Heat testing performed after 28 days of treatment with closed combustion in the furnace (heat chamber) without loading at a temperature of 1000ºC for 10 hours, holding time for 1 hour, and slows cooling for 10 hours. In normal specimens, the tensile test results show an equivalent stress value of 324.12 MPa. In specimens heat treatment with a concrete cover of K250, the tensile stress value was 259.52 MPa, while in the K300 was 263.76 MPa. Optimum tensile stress value in normal specimens was 568.62 MPa, and in specimens with heat treatment and with the K250 concrete cover was 473.74 MPa and amounted to 494.41 MPa for K300. The value of tensile fracture stress in normal specimens amounted to 552.52 MPa, and in specimens with heat treatment and with the K250 concrete cover amounted to 461.52 MPa and amounted to 465.24 MPa for K300. Elastic modulus values for normal specimen was 1,612,963.61 kg/cm2, while in specimen heat treatment with the K250 concrete cover was 1,287,888.05 kg/cm2 and was 1,311,545.42 kg/cm2 for K300.
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针对热行为的骨Beton评估
火灾现象对建筑规划师提出了保护、评估和预测火灾过程后建筑性能的要求。主要关注的是材料的类型,在这种情况下,用作结构元件的钢筋混凝土,由于加热和冷却循环是交替的,然后钢筋混凝土结构的元件在物理和化学方面都发生相变。本研究涉及钢筋混凝土质量的评估,重点是热处理,并回顾了钢筋的拉伸应力和弹性模量。本研究中使用的试样是钢筋混凝土梁的模型,其混凝土保护层类型为K250和K300,钢筋直径为7.5mm,混凝土保护层厚度为2cm。在炉(加热室)中封闭燃烧处理28天后进行的热测试,无负载,温度为1000ºC,保温时间为1小时,冷却速度减慢10小时。在正常试样中,拉伸试验结果显示等效应力值为324.12 MPa。在K250混凝土保护层热处理的试样中,拉伸应力值为259.52MPa,而在K300中为263.76MPa。正常试件的最佳拉应力值为568.62MPa,热处理和K250混凝土保护层试件的最优拉应力为473.74MPa,K300试件的拉伸应力值达到494.41MPa。正常试件的拉伸断裂应力值为552.52MPa,热处理和K250混凝土保护层试件的抗拉断裂应力为461.52MPa。正常试样的弹性模量值为1612963.61 kg/cm2,而K250混凝土保护层的试样热处理的弹性模量为1287888.05 kg/cm2,K300为1311545.42 kg/cm2。
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