未经加工的废旧轮胎在路面基层结构中的应用:使用有限元模拟的变形和应力分析研究
Baoying Shen1, Hui Tian1, Wenruo Fan2
1Chongqing Architectural Design Institute Co., Ltd., Chongqing 400015, China.
Materials (Basel, Switzerland)
|February 26, 2025
概括
在路面基层中的废轮胎提高了变形弹性. 最佳的轮胎配置平衡了定位,位移和资源使用,以实现可持续的道路建设.
科学领域:
- 土木工程 土木工程是指土木工程.
- 材料科学 材料科学 材料科学
- 地质技术工程 地质技术工程
背景情况:
- 传统的路面结构面临着变形和应力分布的挑战.
- 纳入废轮胎等回收材料提供了可持续的解决方案.
- 了解轮胎-的特性是提高路面性能的关键.
研究的目的:
- 为了数值评估废旧轮胎在路面底层中融入的影响.
- 评估轮胎尺寸和配置对路面响应的影响.
- 确定最佳的轮胎增强策略,以提高结构性能.
主要方法:
- 使用Abaqus有限元素模型进行数值模拟.
- 分析各种轮胎尺寸和堆叠方案的合轮胎-铺路结构.
- 评估变形弹性,定位,位移,等效应力和承载能力.
主要成果:
- 轮胎钢筋显著提高了由于的超弹性而导致的变形弹性.
- 特定的轮胎配置 (全,三分之一,一半) 优化了沉积,排位或资源使用.
- 轮胎内含增加了底层层的同等应力,较小的尺寸显示影响较小.
- 突出的轮胎流程可以提高基结构承载能力和负载分布.
结论:
- 轮胎增强路面为轻度到中度的交通条件提供了一种可持续和创新的方法.
- 优化的层设计,包括中等表面路径模块和高模块层与轮胎增强,管理变形和应力.
- 需要进一步研究长期的环境,经济效益和轮胎老化影响.
相关概念视频
Residual Stresses in Bending
147
In the study of elastoplastic members subjected to bending moments, understanding the loading and unloading phases is crucial for assessing material behavior and structural integrity. During the loading phase, as the bending moment increases, the material initially responds elastically, adhering to Hooke's Law, where stress is directly proportional to strain. When the load exceeds the yield strength, plastic deformation occurs, resulting in permanent strain and deformation that remains even...
147
Rolling Resistance
248
When a solid cylinder rolls steadily on a rigid surface, the normal force applied by the surface on the cylinder is perpendicular to the tangent at the contact point. However, since no materials are entirely rigid, the surface's reaction to the cylinder involves a range of normal pressures.
For instance, imagine a hard cylinder rolling on a comparatively soft surface. The cylinder's weight compresses the surface beneath it. As the cylinder moves, the material in front of it slows down...
For instance, imagine a hard cylinder rolling on a comparatively soft surface. The cylinder's weight compresses the surface beneath it. As the cylinder moves, the material in front of it slows down...
248
Fatigue
170
Fatigue occurs when materials rupture under repeated or fluctuating loads, even at stress levels far below their static breaking strength. It typically results in brittle failure, even for ductile materials. It is a critical consideration in designing machines and structural components subjected to repetitive or varying loads. The nature of these loadings can range from fluctuating loads like unbalanced pump impellers causing vibrations to repeatedly bending a thin steel rod wire back and forth...
170
Temperature Dependent Deformation
138
In a nonhomogeneous rod made up of steel and brass, restrained at both ends and subjected to a temperature change, several steps are involved in calculating the stress and compressive load. Due to the problem's static indeterminacy, one end support is disconnected, allowing the rod to experience the temperature change freely. Next, an unknown force is applied at the free end, triggering deformations in the rod's steel and brass portions. These deformations are then calculated and added...
138
Fatigue Strength of Concrete
158
Fatigue, in the context of materials science and engineering, refers to the weakening or failure of a material caused by repeatedly applied loads, even if these loads are below the strength limit of the material. Fatigue strength in concrete is a critical property that influences its durability and longevity. Concrete can fail in two ways due to fatigue. Static fatigue or creep rupture occurs under a constant load or one that increases slowly. The other failure mode is due to cyclical or...
158
Dry Friction
326
Dry friction occurs between two solid surfaces in contact as they attempt to move relative to one another. In daily life, dry friction is encountered in various forms, such as when walking on the ground, sliding an object across a table, or rubbing hands together. Despite its ubiquity, the underlying mechanisms behind dry friction are not readily visible.
To illustrate this concept, imagine a wooden crate resting on a rough, non-uniform horizontal surface. When an external force is applied to...
To illustrate this concept, imagine a wooden crate resting on a rough, non-uniform horizontal surface. When an external force is applied to...
326


