首页> 外文期刊>Advances in civil engineering >Bending Properties of Short-Cut Basalt Fiber Shotcrete in Deep Soft Rock Roadway
【24h】

Bending Properties of Short-Cut Basalt Fiber Shotcrete in Deep Soft Rock Roadway

机译:深柔软岩巷道短切玄武岩纤维射击桥的弯曲特性

获取原文
           

摘要

To study the effect of short-cut basalt fiber (BF) on the bending and toughening properties of shotcrete, bending toughness tests of short-cut BF shotcrete slabs with different volume fractions were carried out. A transparent soil model and Scanning Electron Microscopy (SEM) were used to observe the distribution of BF with different volume fractions and analyze the toughness enhancement mechanism of basalt fiber shotcrete. The supporting effect of basalt fiber shotcrete with different volume fractions was verified by an underground engineering test. The test results show the following: (1) when the fiber content is within 3~4.5?kg/m3, the distribution of BF in transparent soil is uniform, and it does not easily agglomerate, which is beneficial to improving the bending toughness of shotcrete. (2) The shotcrete slab with 4.5?kg/m3 fiber content had the best reinforcing effect. Compared with the control group, the peak load and absorption capacity increased by 56.67% and 636.96%, respectively, and the maximum crack width decreased by 32.10%. (3) The SEM analysis indicated that the basalt fibers distributed randomly and evenly in the concrete, which can form a three-dimensional spatial skeleton with a stable structure. Excessive fiber incorporation can increase fiber agglomeration during stirring and spraying. (4) The support results of an underground engineering test show that, in 35 days, short-cut basalt fiber shotcrete with 4.5?kg/m3 fiber content is better at restraining the surrounding rock than shotcrete with other fiber contents. BF has the properties of crack resistance, bridging, and toughening for shotcrete and can significantly improve the ability of shotcrete to restrain surrounding rock deformation. As a new type of fiber, BF has great significance in deep soft rock underground engineering.
机译:为研究短切玄武岩纤维(BF)对喷射弯曲和增韧性能的影响,进行了不同体积级分的短切BF射击板的弯曲韧性试验。透明土壤模型和扫描电子显微镜(SEM)用于观察BF具有不同体积分数的BF的分布,分析玄武岩纤维吸附的韧性增强机理。通过地下工程试验验证了玄武岩纤维吸附纤维纤维射击的配套效果。测试结果表明以下:(1)当纤维含量在3〜4.5℃时,透明土壤中BF的分布是均匀的,并且它不容易凝聚,这有利于提高弯曲韧性stowcrete。 (2)具有4.5克/ M3纤维含量的喷射晶板具有最佳的增强效果。与对照组相比,峰值负荷和吸收能力分别增加了56.67%和636.96%,最大裂缝宽度降低了32.10%。 (3)SEM分析表明,玄武岩纤维随机且均匀地分布在混凝土中,其可以形成具有稳定结构的三维空间骨架。过量的纤维掺入可以在搅拌下增加纤维附聚并喷涂。 (4)地下工程试验的支持结果表明,在35天内,4.5°(kg / m3纤维含量的短切玄武岩纤维吸附纤维含量比其他纤维含量更好地抑制周围的岩石。 BF具有抗裂性,桥接和投影增韧性的性能,可以显着提高吸尘器抑制周围岩石变形的能力。作为一种新型纤维,BF在深软岩地下工程方面具有重要意义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号