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Static behavior of stud shear connectors in high-strength-steel-UHPC composite beams

机译:高强度钢 - UHPC复合梁螺柱剪切连接器的静态行为

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摘要

High-strength structural steel and ultra-high-performance concrete (UHPC) are being researched in many countries to expand their potential for wider application in civil engineering. This study investigated the shear performance of stud connectors in high-strength steel (f(y) = 690 MPa)-UHPC composite beams. A total of 6 pushout specimens, classified into three groups, were tested under static load. The test parameters included the diameter (13 mm/19 mm) and layout of the studs (single-stud/grouped-stud). The grouped-stud specimens were studied for assembly construction in composite beams. Based on the experimental results, empirical formulae for the load-slip curve of single-stud and grouped-stud specimens were proposed. Experimental results indicated that the failure mode of all the high-strength steel-UHPC pushout specimens was stud shank failure. The diameter of the studs significantly affected their shear performance. The shear capacity and shear stiffness of studs with a 19 mm diameter were 82.4% and 46.0% greater than those of studs with a 13 mm diameter, respectively. The layout of the studs had little effect on their shear capacity, with a 2.7% difference in shear capacity between single-stud and grouped-stud specimens on average. However, the stud arrangement had a great effect on the shear stiffness per stud. When the studs were arranged in a group, the shear stiffness per stud was 19.6% lower than the single-stud specimen on average because of the group effect. Although the grouped-stud specimens take advantage of assembly construction, the shear stiffness per stud decreased in the grouped-stud specimens. It was found that high-strength steel has little effect on the shear performance of studs compared with normal steel in pushout specimens. However, UHPC significantly improves the shear capacity and shear stiffness compared with normal concrete, but the ductility become relatively poor because of the higher elastic modulus of UHPC. In this paper, a formula for calculating the shear stiffness of grouped-stud specimens is also proposed based on the energy equivalent model. The main reason for the group effect is thought to be the ineffectiveness of concrete between studs in shear resisting owing to the short distance of studs. Thus, the shear stiffness per stud decreased in the grouped-stud specimens.
机译:在许多国家正在研究高强度结构钢和超高性能混凝土(UHPC),以扩大其在土木工程中更广泛应用的潜力。本研究调查了高强度钢(F(Y)= 690MPa)-UHPC复合梁的螺柱连接器的剪切性能。在静态载荷下测试了总共6种分为三组的推路标本。测试参数包括直径(13mm / 19 mm)和螺柱布局(单螺柱/分组 - 螺柱)。研究了分组的螺柱样本,用于复合梁的组装结构。基于实验结果,提出了单螺柱和分组样品的负载滑移曲线的经验公式。实验结果表明,所有高强度钢 - UHPC推路标本的故障模式都是螺柱柄突破。螺柱的直径显着影响了它们的剪切性能。直径为19毫米的螺柱的剪切容量和剪切刚度分别比具有13毫米直径的螺柱的82.4%和46.0%。螺柱的布局对其剪切容量几乎没有影响,平均剪切能力与平均剪切能力之间的剪切容量差异为2.7%。然而,螺柱布置对每个螺柱的剪切刚度有很大的影响。当螺柱布置在组中时,由于组效应,平均单螺柱的剪切刚度比单螺柱样品低19.6%。虽然分组螺柱样本利用组装结构,但在分组螺柱样品中每螺柱的剪切刚度降低。发现高强度钢与普通试样上的普通钢相比,对螺柱的剪切性能几乎没有影响。然而,与正常混凝土相比,UHPC显着提高了剪切容量和剪切刚度,但由于UHPC的较高弹性模量,延展性变得相对较差。本文还提出了基于能量等效模型来计算用于计算分组螺柱样本的剪切刚度的公式。群体效应的主要原因被认为是由于螺柱短距离而抗冲击抗剪切抗螺柱之间的无效性。因此,每个螺柱的剪切刚度在分组的螺柱样本中降低。

著录项

  • 来源
    《Engineering Structures》 |2020年第1期|110827.1-110827.15|共15页
  • 作者单位

    Tongji Univ State Key Lab Disaster Reduct Civil Engn Shanghai 200092 Peoples R China|Tongji Univ Coll Civil Engn Shanghai 200092 Peoples R China|Tongji Univ Dept Civil Engn Zhejiang Coll Shanghai 314051 Peoples R China;

    Tongji Univ State Key Lab Disaster Reduct Civil Engn Shanghai 200092 Peoples R China|Tongji Univ Coll Civil Engn Shanghai 200092 Peoples R China;

    Tongji Univ State Key Lab Disaster Reduct Civil Engn Shanghai 200092 Peoples R China|Tongji Univ Coll Civil Engn Shanghai 200092 Peoples R China;

    Tongji Univ Coll Civil Engn Shanghai 200092 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    High-strength steel; UHPC; Stud connector; Grouped-stud; Pushout tests; Shear capacity; Shear stiffness;

    机译:高强度钢;UHPC;螺柱连接器;分组 - 螺柱;PUSPOUT测试;剪切容量;剪切刚度;

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