• 제목/요약/키워드: Mortar Strength

검색결과 1,629건 처리시간 0.021초

성형직후 건조환경이 시멘트 모르터의 강도에 미치는 영향 (The Effect of Dry Environment on Strength of Cement Mortar Immediately after Casting)

  • 오무영;김준희
    • 한국농공학회지
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    • 제33권2호
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    • pp.61-72
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    • 1991
  • This study was carried out to research the strength drop of concrete in dry environment. The mixing ratio of cement-fine aggregate was 1: 1, 1 : 2, 1: 3 and 1 : 4. The curing was compared standard curing with dry curing immediately after casting. It is analysis of strength change by water-proof mixing. The curing age of cement mortar was 3days, 7days, l4days and 28days. The result obtained from this study are summarized as follows. 1. The compressive and bending strength change by increasing the curing age, dry curing mortar the increasing rate of strength was decreased than standard curing mortar. 2. The compressive and bending strength change in early curing, strength difference between standard curing mortar and dry curing motar was gradually closed by increasing the W/C. 3. The dry curing mortar was decreased than standard curing mortar in decreasing rate of compressive and bending strength by increasing the W/C. 4. The compressive strength of water-proof mortar in early curing, liquid water-proof mortar was shown high strength in dry curing than standard curing. The powder and liquid water-proof mortar have a small effect in dry environment. The liquid water-proof mortar was high strength without relation change of curing age in dry environment than standard curing. 5. The compressive strength of liquid water-proof mortar in poverty mix, dry curing was shown high strength than standard curing. 6. The bending strength was increased than compressive strength by decreasing the volume of cement in early curing. The increasing rate of bending strength was decreased to compressive stength by increasing the curing age.

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Influence of the Quality of Recycled Aggregates on Microstructures and Strength Development of Concrete

  • Moon Dae-Joong;Moon Han-Young;Kim Yang-Bae
    • 콘크리트학회논문집
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    • 제16권6호
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    • pp.875-881
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    • 2004
  • The quality of recycled aggregate is affected by original concrete strength and the manufacturing process of recycled aggregates. In this study, the porosity of old and new mortar, and the compressive strength of concrete were investigated to examine the influence of recycled aggregate on the concrete. Six kinds of recycled coarse aggregates were produced from concrete blocks of differing strength levels (A:60. 1MPa, B:41.7MPa, C:25.5MPa). Original concrete strength and the bond mortar of recycled aggregate influences the pore structures of both old and new mortar. The pore size distribution of old mortar was found to be greatly affected by age, and the reduction of the porosity of bond mortar on low strength recycled aggregate increased at a greater rate than that of bond mortar on high strength recycled aggregate. The pore size distribution of new mortar in recycled aggregate concrete changed in comparison with that of new mortar in virgin aggregate concrete. The total porosity of new mortar using B level recycled aggregates was smaller than that of new mortar with A, and C level recycled aggregates. Moreover, the compressive strength of recycled aggregate concrete was found to have been affected by original concrete strength. The compressive strength of concrete only changed slightly in the porosity of new mortar over $15\%$, but increased rapidly in the porosity of new mortar fewer than $15\%$.

수재사 모르터의 강도특성에 관한 연구 (An Experimental Study on the Quality of Mortar Strength using the Quenched Blast-Furnace Slag)

  • 임남기;이영도;양범석;김영회;최문식;정상진
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 가을 학술발표회 논문집
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    • pp.207-214
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    • 1997
  • Strength experimental on mortar which use Quenched Blast-Furnace Slag as aggregate was carried our for a fundamental study of application possibility of Quenched Blast-Furnace Slag as aggregate. It gives the following results. The strength of mortar use Quenched Blast-Furnace Slag is decrease as substitution rate is higher. As W/C rate increase, the strength decrease, but the strength decrease of fine aggregate rate 1:3 is lower than 1:2. The relation with fine aggregate is that the amount of fine aggregate is inversely proportional to strength. Th relation with age is proportional to strength and strength rate of going is lower than general mortar in 28 age the change of strength proportionately with W/C rate is that as W/C rate increases, th strength is drop ; it shows that it has same tendency as general mortar sand or crushed sand, but while W/C rate increase the strength is as high as general mortar. The reason can be assumed that water content per unit needed to Quenched Blast-Furance Slag is more than in case of sand. In addition, the relation with substitution rate is that the strength is the strongest at substitution rate 25% and 50% ; that is , sometimes it is higher than mortar which use sand 100%. In addition, long age strength of mortar which use Quenched Blast-Furnace Slag as aggregate is about to be studied in the last.

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고분자에말죤의 첨가에 따른 시멘트모르터의 특성에 관한 연구 -Polyacrylicacid Ester 및 Polystyrene 에말죤의 첨가영향- (The Study on the Properties of Polymer Emulson Modified Mortar -Effects of Polyacrylicacid Ester and Polystyrene Modified Mortar-)

  • 김창은;최강순
    • 한국세라믹학회지
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    • 제12권4호
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    • pp.9-18
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    • 1975
  • Polymer emulsion was used as the admixture for the purpose of increasing the mechanical properties of cement mortar. The effect of polymer emulsion admixture on compressive strength and tensile strength and chemical resistance, relative humidity on compressive and tensile strength, sand particles on water absorption were studied. The results were as follows. 1. Polymer emulson modified mortar cured under 95% of realative humidity showed lower strength than the mortar cured at dry condition. 2. The maximum strength was attained at 10~20% of polystyrene and polyacrylic acid ester polymer-cement mortar. 3. The modified mortar (sand size rate (-9+35)mech:(-35+60)mech=4 : 1) was 1.5 times lower than the modified mortar (1 : 1) in water absorption. 4. Compared with the ordinary mortar, the modified mortar showed 2~3 times greater chemical resistance for 5% HCl or 5% H2SO4.

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염화(鹽化)칼슘의 함량(含量)이 Mortar의 강도(强度)에 미치는 영향(影響)에 관(關)한 연구(硏究) (A Study on the Effect of Calcium-Chloride Content on the Strength of Mortar)

  • 성찬용;강신업
    • 농업과학연구
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    • 제6권2호
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    • pp.185-191
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    • 1979
  • 시멘트의 응결(凝結) 경화촉진제(硬化促進劑)로 사용(使用)되는 염화(鹽化)칼슘 첨가량(添加量)이 mortar의 강도(强度)에 미치는 영향(影響)을 연구(硏究)하기 위하여, 보통 mortar를 경화(硬化)시킨 경우와 $CaCl_2$을 1.0%. 2.0%, 3.0% 첨가(添加)하여 경화(硬化)시킨 경우의 압축강도(壓縮强度)와 인장강도(引張强度)를 배합비별(配合比別), 재영별(材令別)로 구분(區分)하여 비교시험(比較試驗)한 결과(結果)를 요약(要約)하면 다음과 같다. 1. 압축강도(壓縮强度)는 염화(鹽化)칼슘을 첨가(添加)한 몰타르가 보통(普通) 몰타르보다 크게 나타났으며, 2.0% 첨가(添加)했을 때 최대강도(最大强度)를 나타냈다. 2.인장강도(引張强度)는 7일(日) 강도(强度)에서 염화(鹽化)칼슘을 첨가(添加)한 몰타르가 보통(普通)몰타르보다 높은 강도(强度)를 나타냈으나, 28일(日) 강도(强度)에서는 1.0% 첨가(添加)한 몰타르가 최대강도(最大强度)를 나타냈고, 2.0% 이상(以上) 첨가(添加)한 경우는 보통(普通)몰타르보다 적게 나타났다. 3. 염화(鹽化)칼슘 첨가량(添加量)이 3.0%이상(以上)일 때는 급결현상(急結現象)이 나타났으며 이로 인(因)한 균열 때문에 강도(强度)는 저하(低下)되는 것으로 사료(思料)된다. 4. 부배합(富配合)에서는 압축(壓縮) 및 인장강도(引張强度)가 재령(材令) 7일(日) 이전(以前)에는 강도증진(强度增進)에 효과(效果)가 컸고 재령(材令) 7일(日) 이후(以後)에는 큰 차이가 없었으므로, 염화(鹽化)칼슘을 1.0%~2.0% 첨가(添加)하여 사용(使用)하면 동기공사(冬期工事)에서 초기강도증진(增初期强度進)을 기(期) 할 수 있을 것으로 생각된다.

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에폭시 수지 모르터의 강도 특성 (Strength Characteristics of Epoxy Resin Mortar)

  • 정규석;강신업
    • 한국농공학회지
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    • 제24권3호
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    • pp.92-99
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    • 1982
  • The objective of this study was to investigate the compressive and bending strength characteristics of epoxy resin mortar, which is still in an early stage of its use and study in Korea. The results obtained are summarized as follows; 1. The compressive strengths of epoxy resin mortar after 1 day, 2 days and 3 days were gained 87%, 91% and 95%, respectively, in view of that of mortar at the age of 7 days. This result showed that the initial compressive strength within 1 day was very high. 2. The highest compressive strength of epoxy resin mortar was 914 kg/cm2 at the point of having the mixing ratio of one to two. It reached up to 3.7 times that of the normal portland cement mortar at the age of 28 days. 3. The bending strengths of epoxy resin mortar after 1 day, 2 days and 3 days came up to 88%, 93% and 97%, respectively, in comparing that of mortar at the age of 7 days. It was expressed to be simielar to the tendency of compressive strength. 4. The highest bending strength of epoxy resin mortar was 384 kg/cm2 at mixing ratio of one to two. It came up to as much as 6.5 times in comparing with that of the normal portland cement mortar at the age of 28 days. Therefore, the epoxy resin mortar would be effective for promoting the bending strength of structural members. 5. The regression equation between compressive and bending strength was obtained as follows; oo~=0.391 oc+27.54 (r=0.99) And the estimated value of bending strength was corresponded to about 44 per cent in comparing with that of the compressive strength.

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무기안료가 시멘트모르타르의 압축강도와 흡수율에 미치는 영향 (The Influence of Inorganic Pigments on the Compressive Strength and Absorption of Cement Mortars)

  • 송혁;이재용;고성석
    • 한국안전학회지
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    • 제19권2호
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    • pp.104-111
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    • 2004
  • The aim of this study was to investigate the influence of inorganic pigments on the physical properties of cement mortar. For this purpose, the compressive strength and absorption test were carried out on cement mortar imxed with inorganic pigments by changing the proportion of cement mortar, water-cement ratio, and ratio of pigment. The result of this study can be summarized as follows: the compressive strength of colored mortar rapidely increased in red and yellow mortar, as the mix ratio of pigment increased. In case of green and black mortar, however, the compressive strength decresed as the mix ratio incresed. In case of red and yellow mortar, the absorption of colored mortar increased as the mixing ratio increased, if the mean particle diameter of the pigment is small. In case of green and black mortar, the absorption ratio decreased as the mix ratio increased. After investigating the overall physical properties of colored mortar, it was confirmed that the proper mix ratio of pigment securing the properties of colored mortar was below 6% of the weight of the cement to be used.

석유피치 재활용 탄소섬유를 혼입한 모르타르의 인장 특성 (Tensile Strength of Cement Mortar using Pitch-based Carbon Fiber Derived from Oil Residues)

  • 이인규;이준석;김진희;김융암;김우
    • 자원리싸이클링
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    • 제26권6호
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    • pp.20-28
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    • 2017
  • 피치계 탄소섬유를 함유한 모르타르의 직접인장강도는 평균압축강도의 1/27~1/22에 해당하였다. 동일 양의 PAN계 탄소섬유를 함유한 모르타르의 직접인장강도가 1/15임에 비하여, 낮은 수준으로 나타났다. 이 때, 무보강 기준시편의 직접인장강도는 1/29 수준이었다. 피치계 탄소섬유를 함유한 모르타르의 휨인장강도는 평균압축강도에 비해, 약 1/12 수준으로 나타났고, PAN계 탄소섬유를 함유한 모르타르와 무보강 모르타르는 각각 1/10, 1/13.5의 수준으로 나타났다. 피치계 탄소섬유를 혼입한 모르타르의 인장성능은 무보강 모르타르와 PAN계 탄소섬유를 혼입한 모르타르의 중간 수준으로 나타났다.

Mechanical and durability properties of fluoropolymer modified cement mortar

  • Bansal, Prem Pal;Sidhu, Ramandeep
    • Structural Engineering and Mechanics
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    • 제63권3호
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    • pp.317-327
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    • 2017
  • The addition of different types of polymers such as SBR, VAE, Acrylic, etc. in concrete and mortar leads to an increase in compressive, tensile and bond strength and decrease in permeability of polymer modified mortar (PMM) and concrete (PMC). The improvement in properties such as bond strength and impermeability makes PMM/PMC suitable for use as repair/retrofitting and water proofing material. In the present study effect of addition of fluoropolymer on the strength and permeability properties of mortar has been studied. In the cement mortar different percentages viz. 10, 20 and 30 percent of fluoropolymer by weight of cement was added. It has been observed that on addition of fluoropolymer in mortar the workability of mortar increases. In the present study all specimens were cast keeping the workability constant, i.e., flow value $105{\pm}5mm$, by changing the amount of water content in the mortar suitably. The specimens were cured for two different curing conditions. Firstly, these were cured wet for one day and then cured dry for 27 days. Secondly, specimens were cured wet for 7 days and then cured dry for 21 days. It has been observed that compressive strength and split tensile strength of specimens cured wet for 7 days and then cured dry for 21 days is 7-13 percent and 12-15 percent, respectively, higher than specimens cured one day dry and 27 days wet. The sorptivity of fluoropolymer modified mortar decreases by 88.56% and 91% for curing condtion one and two, respectively. However, It has been observed that on addition of 10 percent fluoropolymer both compressive and tensile strength decreases, but with the increase in percentage addition from 10 to 20 and 30 percent both the strengths starts increasing and becomes equal to that of the control specimen at 30 percent for both the curing conditions. It is further observed that percentage decrease in strength for second curing condition is relatively less as compared to the first curing condition. However, for both the curing conditions chloride ion permeability of polymer modified mortar becomes very low.

섬유복합재봉(FRP ROD)과 고강도 모르터를 이용한 철근 콘크리트 구조물의 휨 보강공법(MFRI) 공법 (Reinforcing System(MFRI) for Concrete Structure using FRP ROD & High-performance Mortar)

  • 배기선;박상훈;이상욱
    • Composites Research
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    • 제18권4호
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    • pp.59-65
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    • 2005
  • This report is on the Reinforcing System(MFRI) for Concrete Structure using FRP ROD & High-Performance Mortar. The main characteristic of this system is as follow. First, the fiber rods in this system have seven times greater tensile strength than general reinforcing steel bars(re-bar) and the weight is a fifth lighter. Camels coated on the fiber rods' surfaces to improve adhesive strength and pull-out strength. Second, high strength shotcrete mortar is has very good workability and low rebound rate. After installing the Fiber Rods, Shotcrete mortar Is applied or sprayed to finish reinforcement. Finally, MFRI system has excellent fire-resisting performance and sogood tolerance against external environment by inserting fiber rods and reinforcing materials into mortar which has high compressive strength. It is applied to bridge slab, utility box and tunnel of civil engineering works, and beam and slab of building structures.