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水力发电学报 ›› 2026, Vol. 45 ›› Issue (7): 76-82.doi: 10.11660/slfdxb.20260705

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钢纤维超高性能喷射混凝土的抗冲磨性能研究

  

  • 出版日期:2026-07-25 发布日期:2026-07-25

Study on abrasion resistance of ultra-high performance steel fiber shotcrete

  • Online:2026-07-25 Published:2026-07-25

摘要: 本文旨在研究超高性能喷射混凝土(UHPSC)在含砂水流作用下的抗冲磨性能与损伤演变规律,并重点分析钢纤维掺量对抗冲磨性能的影响。采用水下水砂冲磨试验,测定UHPSC、同配比浇筑UHPC及普通混凝土在不同冲磨时间下的质量损失,并结合激光显微镜观测其细观表面形貌特征,得到以下结论:UHPSC的冲磨损伤演变呈现平整均匀磨损特征,未出现明显的质量损失突变;冲磨4 h后,其正面抗冲磨性能分别为其侧面、同配比UHPC和普通混凝土的1.4倍、1.2倍和2.0倍;钢纤维掺入对UHPSC的抗冲磨性能有显著影响,当掺量由0增至1.5%时,磨蚀率呈现先升后降趋势:掺量为0.5%时,磨蚀率较未掺纤维组上升9.58%;掺量增至1.0%、1.25%和1.5%后,磨蚀率则分别下降了5.45%、14.51%和38.70%;此外,混杂掺入1.0%钢纤维与0.5%聚丙烯纤维可使磨蚀率降低19.87%。综上研究表明,合理纤维掺量的UHPSC具备优异的抗冲磨性能,在水工结构冲磨防护中具有良好应用前景。

关键词: 超高性能喷射混凝土, 抗冲磨性能, 钢纤维, 水下水砂冲磨试验, 水工修复材料

Abstract: This study investigates the resistance and damage of ultra-high performance shotcrete (UHPSC) under sand-laden flows, focusing on the effect of different steel fiber contents. Underwater abrasion tests are conducted to measure mass loss over time, and surface morphology is examined using laser microscopy. Results show the UHPSC sample’s abrasion evolution features uniform wear without abrupt mass loss. After abrasion of 4 h long, the abrasion resistance of its front surface is 1.4 times that of the side surface, and 1.2 times and 2.0 times that of UHPC (with the same mix proportion) and ordinary concrete respectively. The steel fiber content significantly influences abrasion performance-the abrasion rate increases first and then decreases as fiber content increases from 0% to 1.5%; at 0.5% fiber content, it is 9.58% higher than that of the fiber-free group; at 1.00%, 1.25%, and 1.50%, it decreases by 5.45%, 14.5%, and 38.7% respectively. And, a hybrid combination of 1.0% steel fiber and 0.5% polypropylene fiber decreases the abrasion rate by 19.9%. This study demonstrates UHPSC has excellent anti-abrasion performance and a good prospect in hydraulic application involving sand-laden flow abrasion.

Key words: ultra-high performance shotcrete, abrasion resistance, steel fiber, underwater water-sand abrasion test, hydraulic repair materials

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