在真实三轴条件下对裂纹的机械性能进行实验研究
Jielong Sun1,2, Rui Chen3, Xingyu Qin1
1School of Architecture and Civil Engineering, Yan'an University, Yan'an, 716000, Shaanxi, China.
Scientific reports
|March 22, 2025
概括
使用真实三轴测试研究了裂纹的机械性能. 断裂角度,限制压力和中间主要应力系数显著影响岩的强度和凝聚力,影响地质灾害风险.
科学领域:
- 地质技术工程 地质技术工程
- 地震工程的工程是地震工程.
- 土壤力学 土壤力学
背景情况:
- 裂纹岩是洛斯高原地质灾害的主要原因之一.
- 了解其机械特性对于预防灾害至关重要.
研究的目的:
- 分析裂纹在不同限制压力和中间有效主要应力系数 (b值) 下的机械行为.
- 为了研究不同断裂角度对loess强度参数的影响.
主要方法:
- 真正的三轴测试是在裂纹样本上进行的,裂纹角度各不相同.
- 在不同的限制压力和b值下分析机械性能.
主要成果:
- 峰值应力曲线表现出由b值和限制压力影响的"凸点".
- 主要有效主应力增长率 (K值) 在100kPa限制压力时最高,并随着进一步增加而下降.
- 凝聚力因裂角度而异,最初增加,然后减少,并且通常随着b值的增加而增加.
结论:
- 内部摩擦角度独立于关节和入角度.
- 裂角度和b值显著影响凝聚力,其中0°和60°裂的影响最大.
- 这些发现对于评估裂纹岩地区的地质灾害风险至关重要.
相关概念视频
Relation between Poisson's ratio, Modulus of Elasticity and Modulus of Rigidity
233
Deformation occurs in axial and transverse directions when an axial load is applied to a slender bar. This deformation impacts the cubic element within the bar, transforming it into either a rectangular parallelepiped or a rhombus, contingent on its orientation. This transformation process induces shearing strain. Axial loading elicits both shearing and normal strains. Applying an axial load instigates equal normal and shearing stresses on elements oriented at a 45° angle to the load axis.
233
Behavior of Concrete Under Compressive Load
132
Concrete exhibits specific behaviors under different compressive loads. Understanding this is crucial for understanding its structural integrity. When concrete undergoes uniaxial compression, it tends to develop cracks that run parallel to the direction of the force. These parallel cracks stem from localized tensile stresses that occur perpendicular to the compression direction. Additionally, angled cracks may appear due to the formation of shear planes.
As the concrete specimen fractures under...
As the concrete specimen fractures under...
132
Mechanical Characteristics of Steel
380
The mechanical characteristics of steel are assessed through various tests that evaluate its strength, toughness, and flexibility. These tests include tension, torsion, impact, bending, and hardness assessments, each providing crucial information about steel's suitability for specific applications.
The tension test is fundamental for determining tensile strength. In this test, a steel specimen is stretched using a gripping device until it breaks. The data collected during this test are used...
The tension test is fundamental for determining tensile strength. In this test, a steel specimen is stretched using a gripping device until it breaks. The data collected during this test are used...
380
Yield Criteria for Ductile Materials under Plane Stress
135
In designing structural elements and machine parts using ductile materials, it is crucial to ensure that these components withstand applied stresses without yielding. Yielding is initially determined through a tensile test, which evaluates the material's response to uniaxial stress. However, tensile stress is insufficient when components face biaxial or plane stress conditions This condition requires advanced criteria to predict failure.
The Maximum Shearing Stress Criterion, also known as...
The Maximum Shearing Stress Criterion, also known as...
135
Generalized Hooke's Law
762
The generalized Hooke's Law is a broadened version of Hooke's Law, which extends to all types of stress and in every direction. Consider an isotropic material shaped into a cube subjected to multiaxial loading. In this scenario, normal stresses are exerted along the three coordinate axes. As a result of these stresses, the cubic shape deforms into a rectangular parallelepiped. Despite this deformation, the new shape maintains equal sides, and there is a normal strain in the direction of the...
762
Hooke's Law
336
Hooke's law, a pivotal principle in material science, establishes that the strain a material undergoes is directly proportional to the applied stress, defined by a factor called the modulus of elasticity or Young's modulus.
336


