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Inverse Analysis of R-UHPFRC Beams to Determine the Flexural Response under Service Loading and at Ultimate Resistance

机译:对R-UHPFRC梁进行逆向分析,以确定在使用载荷和极限阻力下的弯曲响应

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摘要

Ultra high performance fiber reinforced cementitious composites (UHPFRCs) have demonstrated their outstanding efficiency as structural materials. Determination of the bending resistance of members combining UHPFRC with steel reinforcement bars (R-UHPFRC) using material properties obtained by material testing gives satisfactory results. However, the synergetic interaction between rebar and UHPFRC in the tensile action due to bending, especially under loading-unloading of the structure is not yet well understood. This paper compared methods of analytical inverse analyses, as well as finite-element modeling and nondestructive testing (NDT), for determining UHPFRC material properties based on plates and R-UHPFRC members' test results. It was demonstrated that UHPFRC in the tensile zone of R-UHPFRC members can enter into compression during unloading, influencing the structural response under service loading.
机译:超高性能纤维增强水泥基复合材料(UHPFRC)作为结构材料已显示出其出色的效率。利用材料测试获得的材料特性测定UHPFRC与钢筋(R-UHPFRC)组合的杆件的抗弯能力,得出令人满意的结果。然而,钢筋和UHPFRC在弯曲拉伸作用中的协同作用,特别是在结构的荷卸载作用下,尚不清楚。本文比较了基于板材和R-UHPFRC杆件测试结果确定UHPFRC材料性能的反演分析方法,以及有限元建模和无损检测(NDT)方法。结果表明,R-UHPFRC构件拉伸区的UHPFRC在卸荷过程中会进入压缩状态,从而影响作用荷载作用下的结构响应。

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