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RBP-UHPC变截面悬挑梁足尺受弯试验研究
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Research on Full-scale Bending Test of RBP-UHPC Variable Section Cantilever Beam
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    摘要:

    为了探究缓粘结预应力超高性能混凝土(RBP-UHPC)悬挑梁的受力性能,以上海大歌剧院悬挑楼梯为背景,进行了2根足尺RBP-UHPC变截面悬挑梁的受弯性能试验.试验结果表明,加载过程中,各关键截面依次开裂,关键截面附近裂缝最密集;离关键变截面越远,裂缝越短越稀疏;悬挑梁破坏截面在距离梁根部2.6 m;越接近破坏截面的UHPC和钢筋应变发展越快,越早达到UHPC的弹性压应变和钢筋的屈服应变;两根梁破坏截面的安全裕度分别为1.97和1.81,具有较好的结构性能,能够满足实际工程的强度要求.提出了带有结构板的π形变截面RBP-UHPC悬挑梁抗弯承载力的计算模型.相比于现有规范,本文模型的计算结果与已有试验的结果吻合最好,且偏于安全.

    Abstract:

    In order to investigate the mechanical behavior of RBP-UHPC (retard-bonded prestressed ultra-high performance concrete) cantilever beam, two full-scale RBP-UHPC variable section cantilever beams were tested based on the background of the cantilever stairs in Shanghai Opera House. The test results show that during the loading process, the key variable sections cracked in turn, and the cracks were most dense near the key sections. The farther away from the key variable sections, the shorter and sparser the cracks were. The failure position of the cantilever beam was 2.6 m away from the root of the beam. The closer the section was to the failure section, the sooner the strain of UHPC and rebar reached the elastic compressive strain of UHPC and the yield strain of the rebar. The safety margin of the failure section of the two beams was 1.97 and 1.81 respectively, which had good structural performance and can meet the strength requirements of practical engineering. A calculation model for the ultimate bending moment of RBP-UHPC π-shaped variable section cantilever beam with structural plate was proposed. Compared with the existing codes, the calculated results of the model in this paper were in the best agreement with the experimental results and were safer.

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何林忆 ,熊学玉 ?,包联进 ,陈建兴 . RBP-UHPC变截面悬挑梁足尺受弯试验研究[J].湖南大学学报:自然科学版,2025,52(7):50~60

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  • 在线发布日期: 2025-07-31
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