• Title/Summary/Keyword: Compressive Characteristics

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Physical Characteristics of Concrete Coated High Performance Surface Penetration Agency (고성능 표면침투제가 도포된 콘크리트의 물리특성)

  • Yoo, Sung-Won;Suh, Jeong-In;Ha, Hyun-Jae;Lee, Sang-Min;Lee, Sang-Guen
    • Proceedings of the Korea Concrete Institute Conference
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    • 2004.11a
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    • pp.809-812
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    • 2004
  • The evaluation of characteristics of concrete coated by high performance surface penetration agency was examined through various tests, i.e., compressive strength, penetration depth, water and air permeability, absorption according to various high performance surface penetration agencies and various compressive strengths of base concrete. The 4 types of high performance surface penetration agencies were used i.e., organic, inorganic, water soluble, and alcohol soluble. And 3 types of compressive strength of base concrete were used such as 21, 24 and 30 MPa. The characteristics of concrete coated high performance surface penetration agency was more improved than that of non-coated concrete, and especially, water soluble inorganic agency was most effective. And if compressive strength of base concrete was low, the improved effects would be larger.

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Biaxial Compressive Deformation Characteristics of Round Aluminum Pipe (Al 원형관의 2축압축 변형특성에 관한 연구)

  • Yoo, C.K.;Kim, K.J.;Won, S.T.
    • Transactions of Materials Processing
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    • v.21 no.2
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    • pp.89-95
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    • 2012
  • To examine the deformation characteristics of round aluminum pipe under biaxial compression, a horizontal biaxial compression die was fabricated. The change of material properties, punch load and deformation behavior were monitored in experiments using various compressive deformation rates in the range of 1mm/min.~400mm/min. The tensile and compressive strains were estimated from Vickers microhardness results. The punch load and deformation characteristic of the round aluminum pipes were found to change greatly at a deformation rate of about 200mm/min. The punch load decreased with increasing compressive deformation rate. Results of numerical simulation using Deform-2D were in good agreement with experimental results, and the measured hardness variation with the strain variation was predicted well by the simulation.

Compressive Strength Characteristics of Concrete Using in Crushed Sand (혼합모래를 사용한 콘크리트의 강도 특성)

  • Baek Dong Il;Youm Chi Sun;Kim Myung Sik;Kim Jong Su
    • Proceedings of the Korea Concrete Institute Conference
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    • 2005.11a
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    • pp.731-734
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    • 2005
  • Crushed sand is blended in order to investigate the quality changes and characteristics of concrete with variation of blend ratio of crushed sand (50, 60, 70, 80, 90, $100\%$). Slump and air content were measured to investigate properties of fresh concrete, and unit weight, compressive strength and modulus of elasticity in age of 7, 28, 60, 90, 180 days were measured to investigate properties of hardened concrete. Compressive strength, unit weight and modulus of elasticity were increased as time goes by and they are expected to keep on increasing in long-term age as well. As a result of measuring compressive strength and modulus of elasticity in age of 7, 28, 60, 90, 180days, compressive strength was highest when it is $70\%$ of blended ratio.

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A study on the mechanical properties of the polymer cement mortar in a high temperature region (고온영역에서의 폴리머시멘트모르타르의 역학적 특성연구)

  • Yoon, Ung-Gi;Seo, Dong-Goo;Kwon, Young-Jin;Kim, Hyung-Jun
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2014.11a
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    • pp.113-114
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    • 2014
  • Though polymer cement mortar is widely used to repair or reinforce concrete as it has superior adhesion, dense internal structure, chemical resistance, and workability in comparison to those of general cement mortar, studies on its behaviors in high temperature environment such as fire is urgently required. Accordingly, in this experiment, the degrees of reduction in the compressive strength at different temperatures was grasped applying ISO834 Heating Curve, and the effect of polymer content and type on compressive strength could be determined. As a result of this experiment, it is found that polymer type and content have a big effect on reduction of compressive strength in high temperature range, and not only the dynamic characteristics but also the combustion characteristics in high temperature range are required to be studied considering occurrence of a fire in the future.

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The Effect of Functional Water on the compressive strength of Mortar (기능수가 모르타르의 압축강도에 미치는 영향)

  • Han, Jeong-Seb
    • Proceedings of the Korea Committee for Ocean Resources and Engineering Conference
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    • 2002.10a
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    • pp.79-82
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    • 2002
  • To study the effect of functional water on the compressive strength of mortar, city water was changed to functional water through ceramics treatment. The change of characteristics of water was measured with $O^{17}$ NMR and Killian Camera. The compressive strength of mortar was measured with various curing conditions. The test results show that by the ceramics treatment the characteristics of city water was changed. At 28 days under curing condition, the compressive strength of mortar which was mix-proportioned with treated water was increased about 22 % than that of mortar which was mix-proportioned with untreated city water.

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Compressive Strength Reduction Characteristics of Linerboard as Influenced by Temperature and Humidity (온도 및 습도 변화에 따른 라이너원지의 압축강도 열화에 관한 연구)

  • 이준호;김수일;하영선
    • Food Science and Preservation
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    • v.6 no.3
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    • pp.303-307
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    • 1999
  • Compressive strength reduction characteristics of 4 different linerboards(SC, KA, SK and IK) as influenced by temperature and humidity were investigated by ring crush test. No significant effect of temperature on the reduction of compressive strength was found for samples prepared at 5$^{\circ}C$ and 30$^{\circ}C$. At the relative humidity of 66 percents, IK linerboard showed the lowest reduction of the compressive strength. At the relative humidity of 93 percents, KA linerboard lost 40 percents of its initial compressive strength while SK linerboard lost its strength up to 56 percents. The result indicated that KA linerboard was the most cost effective and material with the highest compressive strength among tested linerboards.

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Fluidity, Compressive strength and Unit Weight Characteristics of Mortar According to the Replacement Rate of Bottom Ash Aggregate (바텀애시 골재 대체율에 따른 모르타르의 유동성, 압축강도 및 단위질량 특성)

  • Bae, Sung-Ho;Youn, Joo-Ho;Lee, Jae-Sung;Lee, Jae-In;Kim, Ji-Hwan;Choi, Se-Jin
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2021.11a
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    • pp.180-181
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    • 2021
  • This study compared and analyzed the fluidity, compressive strength, and unit weight characteristics of mortar using bottom ash aggregates as part of a study to develop alternative aggregates

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Compressive and Tensile Behaviors of High Performance Hybrid Fiber Reinforced Concrete (고성능 하이브리드 섬유보강 콘크리트의 압축 및 인장 거동)

  • Kwon, Soon-Oh;Bae, Su-Ho;Lee, Hyun-Jin
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.8 no.4
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    • pp.458-466
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    • 2020
  • The purpose of this experimental research is to evaluate the compressive and tensile behaviors of high performance hybrid fiber reinforced concrete(HPHFRC) using amorphous steel fiber(ASF) and polyamide fiber(PAF). For this purpose, the HPHFRCs using ASF and PAF were made according to their total volume fraction of 1.0% for target compressive strength of 40MPa and 60MPa, respectively. And then the compressive and tensile behaviors such as the compressive strength, compressive toughness, direct tensile strength, and stress-strain characteristics under compressive and tensile tests were estimated. It was observed from the test results that the compressive strength of HPHFRC was slightly decreased than that of plain concrete, but the compressive toughness, compressive toughness ratio, and direct tensile strength of HPHFRC increased significantly. Also, it was revealed that the plain concrete showed brittle fracture after the maximum stress from the stress-strain curves, but HPHFRC showed strain softening.

Analysis of Compressive Characteristics of Wire-woven Bulk Kagome (Wire-woven Bulk Kagome의 압축 특성 분석)

  • Lee, Byung-Kon;Choi, Ji-Eun;Kang, Ki-Ju;Jeon, In-Su
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.32 no.1
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    • pp.70-76
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    • 2008
  • Periodic cellular metals (PCMs) are actively being investigated because of their excellent specific strength and stiffness, and multi-functionality such as a heat disperse structure bearing external loading. The Kagome truss PCM has been proved that it has higher resistance to plastic buckling and lower anisotropy than other truss PCMs. In this paper, the out-of-plane compressive responses of the WBK specimens have been measured, theoretically predicted and numerically analyzed. Three specimens of two-layered WBK are fabricated and tested for measuring the responses. The peak stress of compressive behavior and effective elastic modulus are predicted based on the equilibrium equation and elastic energy conservation. Moreover, the structure of the specimen is modeled using the commercial mesh generation code, PATRAN and the finite element analysis for the model under the compression is carried out using the commercial FE code, ABAQUS. Finally, the obtained results are compared with each other to analyze the compressive characteristics of Wire-woven Bulk Kagome (WBK).

Compressive Strength Properties of Small Diameter Core Concrete with Coarse Aggregate Particle Distribution (굵은 골재 입도분포에 따른 소구경 코어 콘크리트의 압축강도 특성)

  • Lee, Jin-Won;Lee, Sang-Soo
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2023.11a
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    • pp.145-146
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    • 2023
  • One of the causes of recent construction site collapses was that the compressive strength of concrete was less than half of the allowable design standard strength range. In the safety diagnosis of structures, the compressive strength of concrete is a factor that determines the durability of a building. Therefore, in this study, we aim to examine the characteristics of compressive strength according to the particle size distribution of coarse aggregate among the compressive strength factors using small-diameter cores. To avoid problems when collecting cores, core specimens with diameters of 100×200, 50×100, and 25×50 (mm) were manufactured directly. As a result of measuring the compressive strength of concrete for each diameter, the larger the core diameter, the higher the compressive strength. has increased.

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