30∼150㎫급 콘크리트에서 채취한 모르타르의 레올로지 특성과 콘크리트의 유동특성과의 상관성에 관한 실험적 연구An Experimental Study on Correlation between Rheological Parameter of Picked Mortar and Fluidity of Concrete from 30 to 150㎫
- Other Titles
- An Experimental Study on Correlation between Rheological Parameter of Picked Mortar and Fluidity of Concrete from 30 to 150㎫
- Authors
- 서일; 이한승; 박희곤; 김우재
- Issue Date
- Sep-2009
- Publisher
- 대한건축학회
- Keywords
- Rheology; Yield Stress; Plastic Viscosity; Workability; High Strength Concrete; 레올로지; 항복 응력; 소성 점도; 워커빌리티; 고강도 콘크리트
- Citation
- 대한건축학회논문집 구조계, v.25, no.09, pp 93 - 100
- Pages
- 8
- Indexed
- KCI
- Journal Title
- 대한건축학회논문집 구조계
- Volume
- 25
- Number
- 09
- Start Page
- 93
- End Page
- 100
- URI
- https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/41598
- ISSN
- 1226-9107
- Abstract
- The high strength concrete in general has widely been used in many construction fields since mineral admixtures like silica
fume and the high-range water reducing agents were radically developed in the 1990s. As high strength concrete usually
contained many different materials, it is difficult that workability of fresh concrete was quantitatively established by existing test
methods like slump and slump flow which people had used in many construction sites. Therefore, many researchers have
suggested that workability was measured by using parameter of rheology in fresh concrete. However, established methods used
cement paste unfortunately have some problems which cement paste rheology is measured under different conditions which are
experienced by cement paste in concrete. In this paper, parameter of rheology was measured by gained mortar by passing sieve
on fresh concrete after finishing mixing. Also, the rheological results of gained mortar by passing sieve were compared with
existing test methods like slump, slump flow and O-lot. The investigated results are that yield stress of gained mortar by
passing sieve was related to slump flow and plastic viscosity was directly concerned in reached time of to 500㎜ slump flow
and O-lot flow time.
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