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相关概念视频

Types of Cement II01:22

Types of Cement II

166
Portland blast-furnace cement is made by blending Portland cement clinker with granulated blast-furnace slag, which accounts for 25 to 65 percent of the cement's weight. Despite its similarities to ordinary Portland (Type I) cement in terms of fineness and setting times, its early strength is lower, though it achieves comparable strength later on. It's particularly suited for mass concrete structures and marine environments due to its lower heat of hydration and superior sulfate...
166
Fineness of Cement01:15

Fineness of Cement

215
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...
215
Superplasticizers01:30

Superplasticizers

116
Superplasticizers are advanced admixtures that enhance the workability of concrete by lowering the water content without compromising the strength of the material. These substances are highly effective water reducers, improving concrete flow, making it easier to work with, and enabling concrete to reach inaccessible areas or densely reinforced sections without mechanical vibration. The key components in superplasticizers are either sulfonated melamine or naphthalene formaldehyde condensates,...
116
Mass Concreting01:22

Mass Concreting

108
Mass concreting refers to the process of placing large volumes of concrete, such as in gravity dams. The heat generated during the cement hydration process and differential cooling rates within the concrete mass can lead to a temperature gradient, which can result in thermal cracks in the concrete mass.
To reduce the risk of such cracking, the concrete mix may incorporate low-heat cement and pozzolans to reduce the temperature rise. Pre-cooled angular aggregates and water-reducing admixtures...
108
Hydration of Cement01:24

Hydration of Cement

380
Hydration of cement is a chemical reaction between cement particles and water. This process occurs primarily through two mechanisms: through-solution and topochemical. In the through-solution process, anhydrous compounds dissolve into their constituents, hydrates form in the solution, and then precipitate from the supersaturated solution. The topochemical process involves solid-state reactions at the cement particle surface. The through-solution process dominates the topochemical process at the...
380
Porosity in Cement Paste01:18

Porosity in Cement Paste

223
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...
223

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可扩展的超冷水泥

Guo Lu1, Fengyin Du1,2, Zhen Wang1

  • 1State Key Laboratory of Engineering Materials for Major Infrastructure, School of Materials Science and Engineering, Southeast University, Nanjing 211189, China.

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概括

研究人员开发了一种新的冷却水泥, 这种耐用,高性能材料可显著降低温度,并带来潜在的负碳足迹.

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科学领域:

  • 材料科学
  • 土木工程
  • 可持续技术

背景情况:

  • 无源日间辐射冷却 (PDRC) 材料提供可持续的建筑冷却解决方案.
  • 在开发耐用,可扩展的PDRC结构材料方面存在挑战.

研究的目的:

  • 用于实际的土木工程应用, 合成一个超表面增强的冷却水泥.
  • 解决当前PDRC材料在耐用性,部署和可扩展性方面的局限性.

主要方法:

  • 在低碳水泥生产过程中采用了通用,可扩展的压力驱动制造策略.
  • 通过反射性膜和层次性毛孔的自组装来实现元表面增强.
  • 材料的特性包括太阳反射率,中红外辐射率,强度和对恶劣条件的抗性.

主要成果:

  • 采用光子架构的水泥实现了高太阳反射率 (96.2%) 和中红外辐射率 (96.0%).
  • 在中午条件下 (850 W/m2太阳强度) 记录了5.4°C的温度下降.
  • 这种水泥在各种恶劣的暴露下表现出其固有的高强度,耐磨性和光学稳定性.

结论:

  • 开发的冷却水泥是可持续建筑冷却的有希望,耐用和可扩展的解决方案.
  • 这种材料具有出色的性能和弹性,适用于苛刻的土木工程应用.
  • 一个以机器学习为指导的生命周期评估表明这种创新材料的潜在净负碳排放情况.