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Experimental study of torsional strength of RC beams constructed with HPFRC composite mortar

机译:HPFRC复合砂浆加固RC梁的抗扭试验研究。

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The torsional performance of reinforced concrete (RC) beam members covered with high-performance fiber-reinforced cementitious (HPFRC) composite mortar was evaluated through pure torsion tests. The HPFRC composite mortar has higher compressive strength and higher split tensile strength than plain concrete. Four beam specimens were constructed for the pure torsion test. Two types of section, and different materials, were used to produce the RC beam specimens. Various types of torsional performance (i.e., first-cracking torque, ultimate torque, and twist angles) were compared experimentally to evaluate the performance of the RC beam specimens. The torque and twist angle at first visible cracking, of the HPFRC composite mortar specimens were greater than those of the others. Therefore, the use of HPFRC composite mortar appears a useful method to enhance the torsional performance of RC-beam members. Moreover, a simple design equation to determine ultimate torque was proposed and tested, for predicting the torsional strength of RC beams with covers of HPFRC composite mortar. The proposed equation performed, well. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过纯扭力试验评估了覆盖有高性能纤维增强胶凝(HPFRC)复合砂浆的钢筋混凝土(RC)梁构件的抗扭性能。 HPFRC复合砂浆比普通混凝土具有更高的抗压强度和更高的抗拉强度。构造了四个梁样本用于纯扭力测试。两种截面和不同的材料被用于生产RC梁标本。通过实验比较了各种类型的扭转性能(即第一裂纹扭矩,极限扭矩和扭转角),以评估RC梁样品的性能。 HPFRC复合砂浆试样在第一次可见裂纹处的扭矩和扭转角均大于其他试样。因此,使用HPFRC复合砂浆似乎是增强RC梁构件抗扭性能的有用方法。此外,提出并测试了确定极限扭矩的简单设计方程,以预测带有HPFRC复合砂浆覆盖层的RC梁的抗扭强度。提出的方程式效果很好。 (C)2015 Elsevier Ltd.保留所有权利。

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