应用成本效益和实时电阻传感器来研究早年混凝土
José Roberto Tenório Filho1, Yawar Abbas2, Jos Oudenhoven2
1Magnel-Vandepitte Laboratory, Department of Structural Engineering and Building Materials, Faculty of Engineering and Architecture, Ghent University, Tech Lane Ghent Science Park, Campus A, Technologiepark Zwijnaarde 60, B-9052 Ghent, Belgium.
Sensors (Basel, Switzerland)
|September 9, 2023
概括
本研究介绍了一种基于印刷电路板 (PCB) 的新型传感器阵列,用于监测混凝土电阻配置文件. 这些具有成本效益的传感器为评估混凝土质量和治愈效率提供了一个有前途的解决方案,从新鲜到早期的发展.
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
- 建筑技术 建筑技术 建筑技术
背景情况:
- 混凝土的耐用性对于基础设施的寿命至关重要.
- 早期的混凝土性能受到固化影响,会对长期性能产生重大影响.
- 现有的电阻传感器通常是昂贵的,并提供单点测量.
研究的目的:
- 引入和评估一种基于印刷电路板 (PCB) 的新型电极阵列,用于混凝土电阻分析.
- 评估PCB传感器的可行性,用于从新鲜到早期的水泥监测.
- 调查传感器在评估固化效率和内部固化有效性的能力.
主要方法:
- 开发基于PCB的电极阵列,用于测量混凝土电阻.
- 在各种固化条件下对传感器性能进行实验室评估.
- 使用超吸收聚合物 (SAP) 评估内部固化的有效性.
主要成果:
- 该PCB传感器阵列在监测混凝土固化效率方面表现出有希望的性能.
- 传感器成功评估了SAPs推广的内部固化的有效性.
- 从新鲜到早期的年龄,成功测量了整个混凝土覆盖的电阻概况.
结论:
- 开发的PCB传感器阵列是早期混凝土监测的可行和有价值的工具.
- 这项技术为确保混凝土基础设施的长期性能提供了潜在的解决方案.
- 进一步开发可能会导致建筑质量控制的广泛采用.
相关概念视频
Non-destructive Tests for Concrete Strength
143
The rebound hammer test, also known as the Schmidt hammer test, is a non-destructive technique for evaluating the hardness of concrete and, indirectly, the strength of concrete. It operates on the principle that the rebound of a spring-driven mass from a concrete surface correlates to the surface's hardness. The device comprises a mass within a tubular housing, a spring mechanism, and a plunger that strikes the concrete. Upon release, the energy imparted to the mass by the spring causes it...
143
Permeability of Concrete
171
Permeability in the context of concrete refers to how easily liquids or gases can pass through the material. This quality is crucial for assessing the water-tightness and durability of concrete structures and their resistance to chemical attacks. Concrete permeability can be determined through comparative laboratory tests. These tests typically involve sealing a concrete specimen from the sides, applying water pressure to the top surface with pressure, and measuring the amount of water passing...
171
Measurement of Air Content in Concrete
176
Air content measurement in concrete is critical for ensuring structural integrity and durability of concrete structures, especially in environments prone to severe weather conditions. Accurate air content analysis optimizes concrete's resistance to freeze-thaw cycles and enhances its workability and strength. Several methods are standardized under ASTM guidelines to measure the air content in fresh concrete, each suitable for different concrete types and conditions.
The pressure method,...
The pressure method,...
176
Abrasion Resistance of Concrete
159
Abrasion resistance is an essential characteristic of concrete that determines its durability and longevity under various wear conditions. Concrete surfaces are vulnerable to different types of abrasion. For instance, surfaces may wear down due to the constant movement of vehicles or be eroded by solids carried in water, as seen in concrete canal linings. Specific tests are conducted to measure the abrasion resistance of concrete.
One such test is the revolving disc test, where three plates...
One such test is the revolving disc test, where three plates...
159
Resistivity
3.5K
When a voltage is applied to a conductor, an electrical field is generated, and charges in the conductor feel the force due to the electrical field. The current density that results depends on the electrical field and the properties of the material. In some materials, including metals at a given temperature, the current density is approximately proportional to the electrical field. In these cases, the current density can be modeled as:
3.5K
Workability of Concrete
124
The workability of concrete is a crucial property that affects its handling, placing, and finishing during construction. It describes the ease with which concrete can be mixed, placed, compacted, and finished. Workability is primarily concerned with the concrete's movement and its ability to resist internal friction and external resistance from molds and reinforcements during the application process.
Concrete's workability is determined by its resistance to internal forces that arise...
Concrete's workability is determined by its resistance to internal forces that arise...
124


