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相关概念视频

Aggregates Classification01:29

Aggregates Classification

970
Aggregate classification is generally based on its size, petrographic characteristics, weight, and source. Size classification ranges from coarse to fine aggregates, defined by the size of the particles. Coarse aggregates are particles that do not pass through ASTM sieve No. 4, and aggregates that pass through the sieve are fine aggregates.
Petrographic classification groups aggregates based on common mineralogical characteristics. Some of the common mineral groups found in aggregates are...
970
Sieve Analysis and Grading Curves01:19

Sieve Analysis and Grading Curves

924
Sieve analysis is a method used to determine the particle size distribution of aggregate materials. This process involves the following steps:
924
Fineness of Cement01:15

Fineness of Cement

464
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...
464
Design Example: Aggregate Gradation01:24

Design Example: Aggregate Gradation

313
The right type and quality of aggregates are crucial for concrete as they significantly influence its properties, mix proportions, and cost-effectiveness. If different sources are available for sand, the commonly used fine aggregate in concrete, the selection of sand is primarily based on its gradation.
The grading, or particle-size distribution, of sand is determined using sieve analysis, with standard sizes ranging from 150 μm to 10 mm (ASTM No. 100 sieve to 3⁄8 in. sieve). Sand is...
313
Pozzolans01:21

Pozzolans

490
Pozzolans are siliceous or aluminous materials blended with Portland cement. They interact with the calcium hydroxide produced during the hydration of Portland cement and contribute to improved strength and durability of concrete. The pozzolanic activity, a measure of a pozzolan's effectiveness, is typically assessed using the strength activity index, as defined in ASTM C 618-93, which calculates the ratio of the compressive strength of cement mixtures with and without pozzolan.
Fly ash is...
490
Portland Cement01:21

Portland Cement

620
Portland cement is the essential binding ingredient in concrete, made from finely ground materials including lime, iron, silica, and alumina. Lime is derived primarily from limestone, marble, marl, seashells, and clays, which also supply iron and alumina, while silica is sourced from sand, chalk, and bauxite. Contemporary manufacturing of Portland cement is a significant source of carbon dioxide emissions, prompting research into reducing its content in concrete through alternative...
620

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相关实验视频

Updated: Jan 18, 2026

A Uniaxial Compression Experiment with CO2-Bearing Coal Using a Visualized and Constant-Volume Gas-Solid Coupling Test System
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高容量飞灰的新分类方法:基于煤源和颗粒大小的性能.

Xiangnan Ji1, Chen Zhang2, Yaru Yang3

  • 1Development Research Center for Natural Resources and Real Estate Assessment Shenzhen, Shenzhen 518000, China.

Materials (Basel, Switzerland)
|September 13, 2025
PubMed
概括

通过浮动分类优化飞灰颗粒大小,可以提高水泥系统的性能. 较小的颗粒促进了更好的水化水泥和pozzolanic反应,对于高容量的飞灰混凝土至关重要.

关键词:
XRD XRD 在线观看漂浮的分类是漂浮的分类.飞行灰飞行灰是什么意思颗粒大小 颗粒大小波佐兰的反应热分析是一种热分析.

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Combined Size and Density Fractionation of Soils for Investigations of Organo-Mineral Interactions
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科学领域:

  • 材料科学 材料科学 材料科学
  • 土木工程 土木工程是指土木工程.
  • 环境科学 环境科学

背景情况:

  • 在水泥系统中利用飞是可持续建筑的关键.
  • 随着煤炭来源和颗粒大小的影响,飞灰性质的变化会影响其性能.
  • 需要有效的分类方法来优化飞灰的具体应用.

研究的目的:

  • 研究飞灰颗粒大小对飞灰水泥系统的影响.
  • 评估一种新的漂浮分类方法,以优化飞属性.
  • 了解颗粒大小,波佐兰活性和水泥性能之间的关系.

主要方法:

  • 浮动分类用于飞灰的物理性质分析.
  • 热分析以确定氧化含量及其影响.
  • 选择性溶解和X射线衍射 (XRD) 分析以评估反应速率和水分.
  • 测试大量飞灰 (50%的替代) 混凝土系统.

主要成果:

  • 漂浮分类有效地优化飞灰特性,改善活动和流量.
  • 较小的飞灰颗粒在水泥系统中表现出卓越的性能,增强了水化和波佐兰反应.
  • 大量的飞灰替代 (50%) 显示持续的pozzolanic反应,特别是更细的灰分数.
  • 随着粒子大小的增加,反应速率显著下降,这凸显了分类的重要性.

结论:

  • 颗粒大小是影响材料飞灰性能的一个关键因素.
  • 开发的漂浮分类方法在生产优化的飞灰分数方面是有效的.
  • 利用分类的,较小的飞颗粒对于最大限度地利用高容量飞替代混凝土的好处至关重要.