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Experimental Research on Interfacial Bond Performance in Rock Anchor with High-Performance Grouting Medium

机译:高性能注浆介质锚固界面粘结性能试验研究。

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There exist the problems such as low bond strength and bad durability in the ordinary grouting slurry of the ground anchor system at present. The high-performance grouting mediums RPC (Reactive Powder Concrete) and DSP (Densified Systems containing homogeneously arranged ultrafine Particles) would become the potential replacement of grouting medium in ground anchor resulting from their high compressive strength, durability and toughness. Based on a series of pull-out tests on ground anchors with different high-performance grouting medium of RPC and DSP , different bond length in the construction field, the bond performance on the interfaces between anchor bolt (deformed steel bar)and grouted medium as well as between grouted medium and rock mass was studied. The results indicate that the interfacial bond strength between RPC or DSP and deformed steel bolt ranges within 23-3 IMpa, far greater than that (about 2-3MPa) between the ordinary cementitious grout and deformed steel bar. Even though the interfacial bond strength between the grouted medium and rock mass of limestone was not obtained in the test since the failure mode was pull-out of those steel bar rather than the interface shear failure between grouted medium and rock mass, the bond stress on the interface reached 6.2-8.38 MPa, also far greater than the bond strength (about 0.1-3MPa) between the ordinary cementitious slurry and rocks.
机译:目前,地锚系统的普通灌浆中存在粘结强度低,耐久性差等问题。高性能灌浆介质RPC(活性粉末混凝土)和DSP(密实系统中包含均匀排列的超细颗粒)将因其高抗压强度,耐用性和韧性而成为潜在的地锚中灌浆介质的替代品。通过对不同高性能的RPC和DSP灌浆介质,施工现场不同粘结长度的地锚进行一系列拉拔试验,得出锚杆(变形钢筋)与灌浆介质界面的粘结性能为研究了灌浆介质与岩体之间的关系。结果表明,RPC或DSP与变形钢螺栓之间的界面粘结强度范围在23-3 IMpa之内,远大于普通水泥浆与变形钢筋之间的界面粘结强度(约2-3MPa)。即使在试验中未获得注浆介质与石灰石岩体之间的界面粘结强度,因为破坏模式是从那些钢筋上拔出的,而不是注浆介质与岩体之间的界面剪切破坏,但粘结应力仍在界面达到6.2-8.38 MPa,也远大于普通水泥浆与岩石之间的结合强度(约0.1-3MPa)。

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