在双轴压缩下,螺栓样本的强度,变形以及宏观和微观故障性能
Hua Nan1, Jing Qiao1, Shuxue Ding2,3
1School of Energy Science and Engineering, Henan Polytechnic University, Jiaozuo, 454003, China.
Scientific reports
|October 21, 2025
概括
岩石螺栓在双轴压缩 (BC) 下在煤矿中显著提高了周围岩石的强度和稳定性. 螺栓直径和预拉力提高了峰值强度,并观察到全方向增强效应.
科学领域:
- 地质技术工程 地质技术工程
- 采矿工程 采矿工程 采矿工程
- 岩石力学 岩石力学 岩石力学
背景情况:
- 在双轴压缩 (BC) 的煤矿中,超紧距离的道路容易发生故障.
- 岩石螺栓对于稳定周围岩石至关重要,但其性能尚未完全理解.
- 研究BC下的螺栓岩石的强度,变形和故障机制对于操作安全至关重要.
研究的目的:
- 为了研究在BC.下螺栓周围岩石的强度,变形和宏/微失败行为.
- 分析螺栓直径和预拉力对岩石质量的稳定性的影响.
- 了解增强机制,并提出一种计算增强岩石强度的新方法.
主要方法:
- 在螺栓样本 (BS) 上进行双轴压缩实验.
- 利用声辐射 (AE) 技术来监测微故障行为.
- 分析了应力-张力曲线,弹性模量,横向位移和断裂模式.
主要成果:
- 螺栓直径和预拉力显著提高了峰值和剩余强度.
- 观察到岩石螺栓的"全向增强效应".
- 断裂角度随着螺栓直径和前拉力而增加;微小断裂主要是由剪切裂所主导.
结论:
- 岩石螺栓有效地提高了BC下周围岩石的机械性能和稳定性.
- 提出了一种新的方法来计算强化岩石的等效凝聚力 (c*) 和摩擦角度 (φ*).
- 这些发现为优化深层煤矿的岩石螺栓支系统提供了关键的见解.
相关概念视频
Behavior of Concrete Under Compressive Load
590
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...
590
Relation between Poisson's ratio, Modulus of Elasticity and Modulus of Rigidity
546
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.
546
Mechanical Characteristics of Steel
1.0K
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...
1.0K
Normal Strain under Axial Loading
1.1K
Normal strain under axial loading is an important concept in the field of mechanics of materials. Axial loading implies the application of a force along the axis of a material, like a column or bar. This force can either compress or stretch the material. In the context of axial loading, normal strain is the deformation experienced by the material in the direction of the loading force. It's calculated as the change in length divided by the original length of the material. This unitless ratio...
1.1K
Plastic Deformation in Circular Shafts
443
When materials are subjected to forces that surpass their yield strength, they undergo a process known as plastic deformation. This results in a permanent alteration or strain in their structure. This concept can be specifically applied to circular shafts, where the deformation leads to a change in its shape. The precise evaluation of this plastic deformation requires understanding the stress distribution within the circular shaft, which is achieved by calculating the maximum shearing stress in...
443
Stress-Strain Diagram - Ductile Materials
1.9K
The stress-strain relationship in ductile materials such as structural steel or aluminium is intricate and progresses through several stages. When a specimen is loaded, it initially exhibits a linear length increase, depicted by a steep straight line on the stress-strain diagram. It indicates the material is elastically deforming and will return to its original shape once unloaded. However, when a critical stress value is reached, plastic deformation begins. This stage sees substantial...
1.9K


