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Study on the lap-splice behavior of post-yield deformed steel bars in ultra high performance concrete

机译:超高性能混凝土中产量变形钢筋的液体剪切行为研究

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Ultra high performance concrete (UHPC) is a type of cement-based composite material with ultra-high strength, high toughness and excellent durability. Furthermore, it has ultra-high bond strength of steel bar in UHPC. Influences of splice length, fibre volume fraction, stirrup ratio and steel bar yielding on the splice strength were studied by 21 groups direct tensile lap-splice tests. Two failure modes, splitting pull-out failure and steel bar rupture failure, appeared in the test. The splice strength depends on the splitting strength of UHPC. The steel bar rupture failure occurred under rather small embedment length. Based on the elastic model of partly cracked thick-walled cylinder, in the post-yield phase, the localized splice strength in elastic and plastic domains were calculated considering and ignoring the friction between the bar and UHPC, respectively. The stirrups are equivalent to the thickness of UHPC cover according to ACI 318-19. The mean splice strength was calculated by averaging the bond strengths of elastic and plastic domains and agrees well with the test results. The results calculated with the formulas of GB50010-2010, ACI 318-19 and ACI 408R-03 may be conservative to estimate the minimum yield splice length (MYSL) and minimum ultimate splice length (MUSL). The proposed theoretical method in this paper can calculate the MYSL and MUSL accurately. The MUSL is about 1.8 times of MYSL. (C) 2020 Elsevier Ltd. All rights reserved.
机译:超高性能混凝土(UHPC)是一种具有超高强度,高韧性和优异耐用性的水泥基复合材料。此外,UHPC中具有钢棒的超高粘合强度。通过21组直接拉伸液体剪接试验研究了接头长度,纤维体积分数,搅拌比和钢棒对接头强度的影响。两种故障模式,分裂拉出故障和钢筋破裂故障,出现在测试中。接头强度取决于UHPC的分裂强度。钢筋破裂故障发生在相当小的嵌入长度下。基于部分裂纹厚壁圆柱体的弹性模型,在产率相中,考虑并忽略了杆和UHPC之间的摩擦,计算弹性和塑料域中的局部接头强度。根据ACI 318-19,镫座相当于UHPC盖的厚度。通过平均弹性和塑料结构域的粘合强度来计算平均接头强度并通过测试结果吻合良好。用GB50010-2010的公式计算的结果,ACI 318-19和ACI 408R-03可以是保守的,以估计最小屈服剪接长度(MySL)和最小终极接头长度(Mus)。本文提出的理论方法可以准确地计算MySL和Mus。穆斯尔是MySL的1.8倍。 (c)2020 elestvier有限公司保留所有权利。

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