Research on the influence of clay shock on inert slurry in shield tunneling construction

IF 1.3 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Emerging Materials Research Pub Date : 2023-06-01 DOI:10.1680/jemmr.22.00173
Y. Wan, He Sun, Zhiduo Zhu, Wangwen Huo, Chen Zhang
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引用次数: 1

Abstract

Shield-out synchronous grouting is a new technology used to temporarily fill shield-out spaces between strata and the shield when creating subterraneous tunnels. The grouting materials are called ‘clay shock,’ which are soft, plastic, sticky, and easily dispersed via a pressurized jet. This study analyzes the mixing process of clay shock and backfill grouting material (inert slurry), and investigates the influence of clay shock on the inert slurry through laboratory testing. The findings show that the fluidity and bleeding rate of the inert slurry continuously decreases with the clay shock volume. The unconfined compressive strength (UCS) and flexural strength of the inert slurry increase initially before decreasing with the clay shock volume ratio. The X-ray diffraction (XRD) and scanning electron microscopy (SEM) results reveal that the alkalinity of the clay shock initiates an alkali excitation reaction, which generates more gelling products and increases the strength of the inert slurry. Excessive clay shock causes the inert slurry to retain a loose and porous structure, which then decreases its strength. To ensure the effect of the inert slurry on settlement control, the grouting volume of the clay shock should not exceed 1/4 of the inert slurry volume.
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盾构施工中粘土冲击对惰性浆体影响的研究
盾构同步注浆是在建造地下隧道时,用于临时填充地层与盾构之间的盾构间隙的一种新技术。灌浆材料被称为“粘土冲击”,它柔软、可塑、粘稠,很容易通过加压射流分散。本研究分析了粘土冲击与回填灌浆材料(惰性浆液)的混合过程,并通过实验室试验研究了粘土冲击对惰性浆液的影响。研究结果表明,随着粘土冲击体积的增加,惰性浆液的流动性和泌水率不断降低。惰性浆液的无侧限抗压强度(UCS)和抗弯强度随粘土冲击体积比的增大先增大后减小。X射线衍射(XRD)和扫描电子显微镜(SEM)结果表明,粘土冲击的碱度引发了碱激发反应,产生了更多的胶凝产物,提高了惰性浆料的强度。过度的粘土冲击会使惰性浆液保持松散多孔的结构,从而降低其强度。为保证惰性浆液对沉降控制的作用,粘土冲击的灌浆量不应超过惰性浆液量的1/4。
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来源期刊
Emerging Materials Research
Emerging Materials Research MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
4.50
自引率
9.10%
发文量
62
期刊介绍: Materials Research is constantly evolving and correlations between process, structure, properties and performance which are application specific require expert understanding at the macro-, micro- and nano-scale. The ability to intelligently manipulate material properties and tailor them for desired applications is of constant interest and challenge within universities, national labs and industry.
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