关于瓜尔改性粘土裂进化特征的实验研究
Xiyan Jiang1,2, Wanxin Hou1,2, Dongning Zhang1,2
1College of Civil Engineering, Hebei University of Architecture, Zhangjiakou 075000, China.
Polymers
|July 12, 2025
概括
瓜尔有效地控制了土壤裂的宽度,并改善了泥土泥土中裂网络的均性. 这种天然生物聚合物通过结合颗粒和延迟干燥收缩来增强土壤的稳定性,提供环保的斜坡保护.
科学领域:
- 地质技术工程 地质技术工程
- 土壤科学 土壤科学
- 材料科学 材料科学 材料科学
背景情况:
- 土壤裂损害了土壤斜坡的结构完整性.
- 瓜尔是一种天然生物聚合物,由于其结合性和生物降解性,它是一个有前途的环保土壤稳定剂.
- 了解瓜尔对土壤裂的影响对于坡道稳定至关重要.
研究的目的:
- 为了研究不同剂量的瓜尔对泥土泥土中裂形成的影响.
- 量化分析裂发育参数,碎形维度和概率.
- 评估瓜尔对凝聚性土壤斜坡的生态保护的潜力.
主要方法:
- 室外干裂试验是在不同含量 guar 的泥土上进行的.
- 使用Photoshop进行图像预处理,并通过Python算法和PCAS系统进行定量裂纹分析.
- 评估裂参数,包括长度,面积,宽度,分形尺寸和概率.
主要成果:
- 添加瓜尔改善了土壤的保留水,降低了平均水分含量.
- 增加的瓜尔含量导致了更大的整体裂长度和面积,但显著减少了平均裂宽度.
- 裂长度的碎形维度受到瓜尔的显著影响,而裂面积的碎形维度保持稳定;概率显示微小的变化.
结论:
- 瓜尔有效地控制了裂的宽度,并增强了泥中裂网络的均性.
- 生物聚合物的机制包括结合土壤颗粒并延迟干燥收缩,这对于坡道稳定性至关重要.
- 瓜尔为凝聚性土壤斜坡的生态保护提供了宝贵的参考.
相关概念视频
Microcracking in Concrete
210
Microcracking in concrete refers to the tiny cracks that can form within the material even before any external load is applied. These microcracks typically occur at the interface between the coarse aggregate and the hydrated cement paste, often as a result of differential volume changes prompted by variations in stress-strain behavior, as well as thermal and moisture movement. Initially, these microcracks remain stable and do not grow substantially until the concrete is stressed to about 30...
210
Porosity in Cement Paste
230
The porosity of concrete is a measure of the void spaces within its structure. These spaces impact its strength and durability significantly. When water and cement interact, a chemical reaction called hydration creates a semi-solid paste. This paste includes combined water, making up approximately 23% of the cement's dry mass, and gel water, which fills minuscule voids known as gel pores, accounting for about 28% of the cement gel volume.
The balance of water to cement in the mix is...
The balance of water to cement in the mix is...
230
Soundness of Cement
240
The soundness of cement refers to the ability of cement paste to retain its volume after setting. Unsound cement can lead to expansion and structural damage due to the presence of free lime, magnesia, and calcium sulfate. Free lime hydrates very slowly, expanding and causing unsoundness, which is difficult to detect because it intercrystallizes with other compounds. Magnesia also reacts with water, forming crystals that can disrupt the cement's structure. Calcium sulfate can create...
240
Moisture Content and Bulking of Aggregate
211
The moisture content of aggregates is a crucial factor in construction, particularly in concrete mixing, as it influences the total water required in the mix. Moisture content represents the water coated on the exterior surface of the aggregate existing in a saturated and surface-dry condition. The total water content of a moist aggregate is the sum of its moisture content and water absorption.
When aggregates are exposed to rain or sit in stockpiles, they absorb moisture, which must be...
When aggregates are exposed to rain or sit in stockpiles, they absorb moisture, which must be...
211
Unsoundness of Aggregate due to Volume Change
181
Unsoundness in aggregates due to volume changes is primarily caused by the physical alterations aggregates undergo, such as freezing and thawing, thermal changes, and wetting and drying. Unsound aggregates, when subjected to these changes, result in volume change upon disintegration. This, in turn, contributes to the deterioration of concrete, including scaling, pop-outs, and cracking. Particular types of aggregates, such as porous flints, cherts, and those containing clay minerals, are...
181
Fineness of Cement
226
The fineness of cement directly influences the rate of hydration, as the hydration begins at the surface of the cement particles. In addition to hydration, the fineness of cement is vital for various properties of concrete including workability, gypsum requirement, and long-term behavior. The fineness of cement is represented in terms of the specific surface of cement which is typically measured in square meters per kilogram, with several methods available for this determination.
Direct...
Direct...
226


