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Experimental Study on Mechanical Properties of Rockfill Materials under Constant p and Constant b Stress Paths
PAN Jia-jun, WANG Jun-peng, ZHOU Yue-feng, WAN Hang, SUN Xiang-jun, HAN Bing
Journal of Changjiang River Scientific Research Institute ›› 2025, Vol. 42 ›› Issue (5) : 147-154.
PDF(8709 KB)
PDF(8709 KB)
Experimental Study on Mechanical Properties of Rockfill Materials under Constant p and Constant b Stress Paths
[Objective] Under the actual filling conditions of high rockfill dams, rockfill materials are typically subjected to complex three-dimensional stress states. This study aims to investigate the effects of spherical stress (p), intermediate principal stress coefficient (b), and initial dry density ( ρ0) on the stress-strain relationships, strength characteristics, and non-coaxiality of stress-strain increment directions on the π-plane of rockfill materials. [Methods] Consolidated-drained true triaxial shear tests were conducted on typical rockfill materials for dam construction with constant p and constant b stress paths under three-dimensional conditions involving different p, b, and ρ0. Based on experimentally measured data, conventional strength criteria considering intermediate principal stress effects were comparatively analyzed for their applicability to rockfill material strength. [Results] The results showed that: (1) as p increased, the q- ε1 relationship curves exhibited a progressively steeper strain-hardening trend. The initial shear modulus (Ei) increased correspondingly, and peak shear strength (qmax) significantly enhanced. Shear contraction grew while dilation development was suppressed, and the failure stress ratio (Mb) gradually decreased as p increased. (2) With increasing b, both Ei and qmax progressively declined. Reduced shear contraction made the rockfill materials transition more rapidly into dilation, with increasingly significant dilatancy. Mb demonstrated a downward trend. (3) As ρ0 increased, both Ei and qmax increased markedly. Rockfill materials entered dilation earlier with progressively greater dilatancy, and Mb exhibited an upward trend. [Conclusion] The conclusions are as follows: (1) an increase in p significantly enhances the shear strength of rockfill materials, and the influence of b on its strength progressively diminishes. As ρ0 rises, both the initial shear modulus and shear strength increase markedly, highlighting the necessity for strict quality control during dam construction. (2) The Lade-Duncan strength criterion effectively characterizes the nonlinear strength characteristics of rockfill materials, while the Mohr-Coulomb criterion yields conservative predictions due to its neglect of intermediate principal stress effects. (3) Non-coaxiality between stress and strain increment directions is observed on the π-plane during testing. This non-coaxial behavior is most pronounced during the initial shear stage, and it gradually transitions toward coaxiality as the specimen approaches instability failure. (4) The non-coaxiality of rockfill materials initially increases and then decreases with increasing b. It gradually weakens with increasing p, with the weakening rate diminishing, and it intensifies with higher ρ0 with a progressively faster intensifying rate.
rockfill material / true triaxial test / stress-strain relationship / dilatancy / non-coaxiality
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土石坝填料一般处于平面应变状态,目前填料力学特性研究基本采用大型三轴试验。由于三轴应力状态下中主应力等于小主应力,平面应变状态下大坝填料的力学性能会被低估。为充分认识填料潜能,科学设计和合理评估土石坝,有必要对填料开展平面应变试验研究。应用大型真三轴仪对填料进行了大型平面应变试验,共开展了4种不同初始干密度的粗粒土平面应变各向等压固结排水剪切试验。结果表明:应力-应变关系主要为应变硬化型,应力曲线呈爬升型,体变表现为剪缩。某一小主应力下,大小主应力之差的最大值随初始干密度的增大呈线性增大;初始干密度一定时,大小主应力之差的最大值与小主应力呈线性关系增大。初始剪切阶段,小主应力一定时,偏应力与球应力之比曲线斜率随初始干密度的增大而增大,随剪切变形的发展,不同初始干密度的应力比曲线逐渐趋于接近。偏应力随球应力的增大单调增加则对应应变硬化型,若偏应力随球应力的增大先增加后减小则对应应变软化型。相同小主应力时,初始弹性模量随初始干密度的增大而增大,近似呈线性关系;某一初始干密度下,初始弹性模量随小主应力的增大基本呈线性关系增大。中主应力系数随大主应力方向应变的增大而增大,曲线形态呈三折线形,初始剪切阶段增长较为缓慢,随剪切变形的增大增长相对加快并呈线性关系增大,如曲线末端下弯为应变硬化型,曲线末端上翘为应变软化型。
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