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Chapter 4

Introduction to Concrete

콘크리트
콘크리트
Concrete is a commonly used structural material in the construction of buildings, bridges, airfields, highways, dams, and silos. Concrete is produced by ...
포틀랜드 시멘트
포틀랜드 시멘트
Portland cement, the binding ingredient in concrete, is produced from calcareous materials, rich in lime and argillaceous materials, containing silica, ...
시멘트 수화반응
시멘트 수화반응
Hydration of cement begins when water is added to cement particles. In the presence of water, the anhydrous cement compounds initially dissociate, ...
강도와 수화열
강도와 수화열
The reaction of cement with water to produce hydration products releases heat, known as the heat of hydration. Initially, heat generation is rapid due to ...
시멘트의 분말도
시멘트의 분말도
The size distribution curve of cement indicates its fineness by showing the proportion of particles of varying sizes. The curve rises steeply, indicating ...
시멘트의 응결 시간
시멘트의 응결 시간
The setting time of cement is the time taken for the cement paste to change from a plastic state to a rigid state, and it is determined using a Vicat ...
시멘트 안정도
시멘트 안정도
Occasionally, after the cement paste sets, the free lime, magnesia, and calcium sulfate may hydrate, causing a destructive expansion in the hardened ...
시멘트 강도
시멘트 강도
The ability of cement to resist compressive forces is known as its compressive strength, while its ability to endure bending forces is referred to as its ...
시멘트의 종류 I
시멘트의 종류 I
Consider a section of a busy highway that is damaged and requires urgent repair to minimize traffic disruption. Such repair work uses rapid hardening ...
시멘트의 종류 II
시멘트의 종류 II
Intergrinding Portland cement clinker with granulated blast-furnace slag, a by-product of the iron-making process, produces slag cement. It can be used to ...
포졸란
포졸란
Portland cement is sometimes interground or blended with pozzolans, which are siliceous and aluminous materials. The finely divided pozzolans, in the ...
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