岩土力学
巖土力學
암토역학
ROCK AND SOIL MECHANICS
2013年
5期
1287-1292
,共6页
史存鹏%冯夏庭%江权%徐鼎平
史存鵬%馮夏庭%江權%徐鼎平
사존붕%풍하정%강권%서정평
层间错动带%微结构特性%化学改性
層間錯動帶%微結構特性%化學改性
층간착동대%미결구특성%화학개성
interlayer shear weakness zone%microstructural properties%chemical modification
白鹤滩水电站层间错动带结构疏松、性状软弱、空间展布范围大、力学强度低,严重影响着地下厂房洞室的稳定性.为了揭示并改良层间错动带的力学特性,首先通过矿物成分分析试验、扫描电镜试验和压汞试验,从微观结构角度对层间错动带的矿物组成特征、颗粒排列规律、孔隙分布规律进行了详细的研究,阐明了层间错动带的微观结构特性及其对灌浆材料选择的影响,进而开展了层间错动带化学溶液浸泡对比试验.试验表明,硅酸钠溶液可以有效改善层间错动带的完整性,明显提高层间错动带的弹性波速、抗压强度、弹性模量和凝聚力.其研究结果对白鹤滩层间错动带的工程加固和改性设计具有一定的借鉴意义.
白鶴灘水電站層間錯動帶結構疏鬆、性狀軟弱、空間展佈範圍大、力學彊度低,嚴重影響著地下廠房洞室的穩定性.為瞭揭示併改良層間錯動帶的力學特性,首先通過礦物成分分析試驗、掃描電鏡試驗和壓汞試驗,從微觀結構角度對層間錯動帶的礦物組成特徵、顆粒排列規律、孔隙分佈規律進行瞭詳細的研究,闡明瞭層間錯動帶的微觀結構特性及其對灌漿材料選擇的影響,進而開展瞭層間錯動帶化學溶液浸泡對比試驗.試驗錶明,硅痠鈉溶液可以有效改善層間錯動帶的完整性,明顯提高層間錯動帶的彈性波速、抗壓彊度、彈性模量和凝聚力.其研究結果對白鶴灘層間錯動帶的工程加固和改性設計具有一定的藉鑒意義.
백학탄수전참층간착동대결구소송、성상연약、공간전포범위대、역학강도저,엄중영향착지하엄방동실적은정성.위료게시병개량층간착동대적역학특성,수선통과광물성분분석시험、소묘전경시험화압홍시험,종미관결구각도대층간착동대적광물조성특정、과립배렬규률、공극분포규률진행료상세적연구,천명료층간착동대적미관결구특성급기대관장재료선택적영향,진이개전료층간착동대화학용액침포대비시험.시험표명,규산납용액가이유효개선층간착동대적완정성,명현제고층간착동대적탄성파속、항압강도、탄성모량화응취력.기연구결과대백학탄층간착동대적공정가고화개성설계구유일정적차감의의.
@@@@Interlayer shear weakness zone has a series of features such as loose structure, easy to be softening, large spatial distribution and poor mechanical properties in Baihetan hydropower station. The existence of interlayer shear weakness zone seriously affects the stability of underground cavern groups of hydropower station. In order to reveal and improve the mechanical properties of interlayer shear weakness zone, X-ray diffractometer, scanning electron microscope and mercury intrusion porosimetry tests are applied separately to observe and determine the main mineral composition, the orientated range of particles and the distribution of pore structure in samples. Microstructural properties of interlayer shear weakness zone and its effect on the selection of grouting materials are discussed in detail combining with the testing data. What’s more, chemical modification experiments are carried out based on above experiments. Comparative experiment between samples immersed with or without sodium silicate solution indicates that chemical modification can improve the integrality, elastic wave velocity, compressive strength, elastic modulus and cohesion of interlayer shear weakness zone effectively. These cognitions can provide some useful means for the engineering reinforcement and modification design of interlayer shear weakness zones in Baihetan hydropower station.