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超高性能海水海砂混凝土的组成设计与纤维增强增韧
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Composition Design of Ultra-high Performance Seawater Sea-sand Concrete and Fiber Strengthening and Toughening
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    基于单纯形重心设计法对超高性能海水海砂混凝土(ultra-high performance seawater sea-sand concrete, UHPSSC)进行了配合比设计优化,并研究了短切超高分子量聚乙烯(ultra-high molecular weight polyethylene, UHMWPE)纤维和钢纤维对UHPSSC工作性能和力学性能的影响. 结果表明:在综合考虑UHPSSC的流动度、抗折强度和抗压强度的情况下,胶凝材料组成的最优配比确定为水泥、硅灰、粉煤灰的质量比为0.75∶0.15∶0.10. 随着短切纤维掺量的增加,UHPSSC的流动度逐渐降低,抗折强度、抗压强度和弯曲韧性均逐渐增加. UHMWPE纤维对UHPSSC流动度的影响程度更大,而钢纤维对力学性能的提升效果更明显. 随着UHMWPE纤维体积分数的增加,UHPSSC的弯曲破坏模式逐渐由脆性破坏转变为韧性破坏. 当UHMWPE纤维掺量为1.0%时,二次峰值荷载会高于初裂荷载. 此外,当同时混掺钢纤维和UHMWPE纤维时,UHPSSC的流动度略有下降,抗折强度、抗压强度及弯曲韧性均大幅提高. 本研究成果可为UHPSSC的设计和工程应用提供一定的参考.

    Abstract:

    This paper investigates the mix design optimization of the ultra-high performance seawater sea-sand concrete (UHPSSC) based on the simple centroid design method, and the effects of chopped ultra-high molecular weight polyethylene (UHMWPE) fiber and steel fiber on the workability and mechanical properties of UHPSSC were also studied. The experimental results indicate that the best mass fraction of cement, silica ash, and fly ash in the optimal mix design is 75%, 15%, and 10%, respectively, by comprehensively evaluating the flowability, flexural strength, and compressive strength of UHPSSC specimens. With the increase of volume fraction of chopped fibers, the flowability of UHPSSC decreases, while the flexural strength, compressive strength, and flexural toughness increase gradually. The UHMWPE fiber has a greater influence on the flowability of UHPSSC compared with the steel fiber, however, the improvement effect of steel fiber on mechanical properties is more significant. The failure mode of UHPSSC specimens under bending tests changes from brittle failure to ductile failure with the increase of volume fraction of UHMWPE fiber, and the amplitude of the second peak load is greater than the initial crack load when the volume fraction of UHMWPE fiber is 1.0%. Besides, for the specimens with both UHMWPE fiber and steel fiber mixed, the flowability of UHPSSC decreases slightly, while the flexural strength, compressive strength, and flexural toughness significantly improve. This study can provide some reference for the design and engineering application of UHPSSC.

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朱德举 ?,李龙飞 ,周琳林 ,李安令 ,白夏杨 ,郭帅成 .超高性能海水海砂混凝土的组成设计与纤维增强增韧[J].湖南大学学报:自然科学版,2023,(1):128~136

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  • 在线发布日期: 2023-02-16
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