花岗岩土层拉力型锚杆抗拔力特性及锚固机理研究

    Pull-out resistance characteristics and anchorage mechanism of bond ground anchor in granite soil layer

    • 摘要: 实际工程中的拉力型锚杆,锚筋自由段充满了浆体且与粘结段连成为一体,抗拔力特性及锚固机理与理论模型有很大差别。本文按工程常规做法制作了45根试验锚杆,荷载试验及分布式光纤测试结果表明,花岗岩残积黏性土层中的拉力型锚杆:①临界锚固长度超过18m,18m以内抗拔力与长度成正比;②工程中普遍采用的简易二次注浆对提高抗拔力作用不大;③锚筋自由段浆体产生粘结抗力,长度较长及与粘结段比例适合时抗拔力明显高于全粘结锚杆;④锚杆受荷后先由锚筋直接传递到锚筋自由段与粘结段的交界面,之后以拉应力形式向粘结段及以压应力形式向锚筋自由段浆体双向同步传递,力学特性相当于全粘结锚杆与压力型锚杆的组合体;⑤浆体正应变/应力曲线沿锚固体全长可分为拉应变/应力段、压应变/应力段及孔口段,应变/应力减少段的应变差体现了浆地界面粘结应力特性。

       

      Abstract: The tendon free length of bond type ground anchor in actual engineering fills with grout and integrated with tendon bond length, and their mechanical properties mechanical characteristics are quite different from theoretical model. 45 test anchors were fabricated according to the engineering conventional method in this paper. The load test and distributed optical fiber test results show that for the bond anchors in the granite residual viscous soil layer: (1)The critical anchoring length exceeds 18m, and the pullout resistance is approximately proportional to the length of the grout body within 18m.(2)The simple post-grouting process commonly adopted in engineering has a limited effect on improving the pullout resistance.(3)The grout in tendon free length generates bonding resistance. When the length is longer and the proportion to the bond length is appropriate, the pullout resistance is significantly higher than that of the fully bond anchor. (4)After the anchor is subjected to a load, it is first directly transferred from the tendon to the interface between the tendon free length and the bond length. Then, it is synchronously transferred in both directions to the bond length in the form of tensile stress and to the tendon free length in the form of compressive stress.The mechanical characteristics are equivalent to a combination of a fully bond anchor and a compression type anchor. (5)The positive strain/stress curve of the grout can be divided into the tensile strain/stress section, the compressive strain/stress section and the orifice section. The strain difference in the strain/stress reduction section reflects the bonding stress characteristics at the grout-ground interface.

       

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