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Related Concept Videos

Design Example: Managing Concrete Workability01:14

Design Example: Managing Concrete Workability

300
This example deals with managing the workability of concrete for a raft foundation project under hot weather conditions. Workability is crucial for ensuring the concrete is easy to place, compact, and finish. In this scenario, a slump test — a common method to measure the workability of fresh concrete — initially indicated low workability. This was attributed to the rapid water loss from the concrete mix, exacerbated by the high temperatures causing the course aggregates to heat up.
300
Prestressed Concrete01:20

Prestressed Concrete

767
Prestressed concrete is a construction technique designed to enhance the strength and durability of concrete structures. This method involves the application of a pre-set tension to high-strength steel strands used as reinforcement before the concrete is subjected to its working loads. The primary aim of prestressing is to place the concrete in a state of compression, in order to counteract the tensile forces it will experience in service. This pre-compression helps prevent crack formation in...
767
Deleterious Substances in Aggregate01:25

Deleterious Substances in Aggregate

534
Deleterious substances in aggregates can be detrimental to the quality and durability of concrete. These substances include organic impurities like loam, which interfere with cement hydration and are usually present in the sand. These prevent a good bond between aggregate and cement paste. Organic impurities can be detected using the colorimetric test, where the darkness of a solution after agitation indicates the level of organic content.
Another type of impurity is clay and fine material that...
534
Mass Concreting01:22

Mass Concreting

322
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...
322
Ferrocement01:30

Ferrocement

716
Ferro-cement is a distinctive construction material that represents an innovative variant of reinforced concrete, characterized by its unique composition and the method by which it is formed. Unlike standard reinforced concrete, which relies on larger steel bars for reinforcement, ferro-cement utilizes densely packed layers of mesh or fine rods, fully encased in cement mortar. This composition allows for the creation of structures that are significantly thinner and more flexible than their...
716
Concrete01:20

Concrete

737
Concrete is a vital construction material extensively used worldwide, primarily valued for its strength, durability, and versatility, which it provides for various structural designs. Concrete generally comprises ingredients like Portland cement, coarse gravel, fine sand, and water. Concrete can be mixed by simple hand methods or industrially at computer-controlled plants. The mixture consists of aggregates and a paste made from water and Portland cement. This paste coats the aggregates and,...
737

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Related Experiment Video

Updated: Jan 16, 2026

Preparation of Aligned Steel Fiber Reinforced Cementitious Composite and Its Flexural Behavior
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Special Issue "Construction Materials and Other Related Materials: Basic Theory, Applied Technology and Advanced

Xi Du1, Youliang Chen1, Qinglong You1

  • 1Department of Civil Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.

Materials (Basel, Switzerland)
|September 27, 2025
PubMed
Summary

This study integrates fundamental theory, practical applications, and advanced research methodologies to advance construction materials science. It highlights the need for a holistic approach to material innovation and development.

Area of Science:

  • Construction Materials Science
  • Materials Engineering
  • Civil Engineering

Background:

  • The field of construction materials science necessitates a synergistic approach.

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  • Traditional approaches often compartmentalize theory, application, and methodology.
  • Bridging these gaps is crucial for innovation.