• 제목/요약/키워드: shrinkage ratio

검색결과 598건 처리시간 0.028초

플라이애쉬 경화체의 역학적 특성에 관한 실험적 연구 (An Experimental Study on Mechanic properties of Hardened Fly-ash)

  • 조병완;김영진;박종빈
    • 한국자원리싸이클링학회:학술대회논문집
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    • 한국자원리싸이클링학회 2003년도 추계정기총회 및 국제심포지엄
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    • pp.134-138
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    • 2003
  • 이 논문의 목적은 산업부산물인 플라이애쉬의 재활용을 높이기 위해 플라이애쉬를 대량으로 사용한 플라이애쉬 경화체를 제작 하였다. 단위시멘트량의 90%를 플라이애쉬로 대체하여 제작한 이 경화체의 압축강도, 탄성계수 등 기초적인 물성을 파악하여 구조용 건설재료로 실용화하기 위한 기초적 자료를 제시하고자 한다. 물-시멘트비를 변수로 하여 플라이애쉬 경화체의 휨강도를 측정한 결과 물-결합재비, 잔골재율이 증가할수록 파괴에너지가 감소하였다. 이러한 이유는 파괴에너지가 강도의 영향을 크게 받기 때문으로 판단된다. 이번 실험으로 플라이애쉬 경화체의 기초물성은 기존 콘크리트에 많이 접근했음을 알 수 있었다. 하지만 구조용 건설자재로 도입되기 위해서는 건조수축, 크리프, 동결융해 등의 내구성 실험도 계속 수행되어야 할 것이다.

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에폭시 수지 모르터의 특성에 관한 실험적 연구 (Experimental Studies on the Properties of Epoxy Resin Mortars)

  • 연규석;강신업
    • 한국농공학회지
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    • 제26권1호
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    • pp.52-72
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    • 1984
  • This study was performed to obtain the basic data which can be applied to the use of epoxy resin mortars. The data was based on the properties of epoxy resin mortars depending upon various mixing ratios to compare those of cement mortar. The resin which was used at this experiment was Epi-Bis type epoxy resin which is extensively being used as concrete structures. In the case of epoxy resin mortar, mixing ratios of resin to fine aggregate were 1: 2, 1: 4, 1: 6, 1: 8, 1:10, 1 :12 and 1:14, but the ratio of cement to fine aggregate in cement mortar was 1 : 2.5. The results obtained are summarized as follows; 1.When the mixing ratio was 1: 6, the highest density was 2.01 g/cm$^3$, being lower than 2.13 g/cm$^3$ of that of cement mortar. 2.According to the water absorption and water permeability test, the watertightness was shown very high at the mixing ratios of 1: 2, 1: 4 and 1: 6. But then the mixing ratio was less than 1 : 6, the watertightness considerably decreased. By this result, it was regarded that optimum mixing ratio of epoxy resin mortar for watertight structures should be richer mixing ratio than 1: 6. 3.The hardening shrinkage was large as the mixing ratio became leaner, but the values were remarkably small as compared with cement mortar. And the influence of dryness and moisture was exerted little at richer mixing ratio than 1: 6, but its effect was obvious at the lean mixing ratio, 1: 8, 1:10,1:12 and 1:14. It was confirmed that the optimum mixing ratio for concrete structures which would be influenced by the repeated dryness and moisture should be rich mixing ratio higher than 1: 6. 4.The compressive, bending and splitting tensile strenghs were observed very high, even the value at the mixing ratio of 1:14 was higher than that of cement mortar. It showed that epoxy resin mortar especially was to have high strength in bending and splitting tensile strength. Also, the initial strength within 24 hours gave rise to high value. Thus it was clear that epoxy resin was rapid hardening material. The multiple regression equations of strength were computed depending on a function of mixing ratios and curing times. 5.The elastic moduli derived from the compressive stress-strain curve were slightly smaller than the value of cement mortar, and the toughness of epoxy resin mortar was larger than that of cement mortar. 6.The impact resistance was strong compared with cement mortar at all mixing ratios. Especially, bending impact strength by the square pillar specimens was higher than the impact resistance of flat specimens or cylinderic specimens. 7.The Brinell hardness was relatively larger than that of cement mortar, but it gradually decreased with the decline of mixing ratio, and Brinell hardness at mixing ratio of 1 :14 was much the same as cement mortar. 8.The abrasion rate of epoxy resin mortar at all mixing ratio, when Losangeles abation testing machine revolved 500 times, was very low. Even mixing ratio of 1 :14 was no more than 31.41%, which was less than critical abrasion rate 40% of coarse aggregate for cement concrete. Consequently, the abrasion rate of epoxy resin mortar was superior to cement mortar, and the relation between abrasion rate and Brinell hardness was highly significant as exponential curve. 9.The highest bond strength of epoxy resin mortar was 12.9 kg/cm$^2$ at the mixing ratio of 1:2. The failure of bonded flat steel specimens occurred on the part of epoxy resin mortar at the mixing ratio of 1: 2 and 1: 4, and that of bonded cement concrete specimens was fond on the part of combained concrete at the mixing ratio of 1 : 2 ,1: 4 and 1: 6. It was confirmed that the optimum mixing ratio for bonding of steel plate, and of cement concrete should be rich mixing ratio above 1 : 4 and 1 : 6 respectively. 10.The variations of color tone by heating began to take place at about 60˚C, and the ultimate change occurred at 120˚C. The compressive, bending and splitting tensile strengths increased with rising temperature up to 80˚ C, but these rapidly decreased when temperature was above 800 C. Accordingly, it was evident that the resistance temperature of epoxy resin mortar was about 80˚C which was generally considered lower than that of the other concrete materials. But it is likely that there is no problem in epoxy resin mortar when used for unnecessary materials of high temperature resistance. The multiple regression equations of strength were computed depending on a function of mixing ratios and heating temperatures. 11.The susceptibility to chemical attack of cement mortar was easily affected by inorganic and organic acid. and that of epoxy resin mortar with mixing ratio of 1: 4 was of great resistance. On the other hand, when mixing ratio was lower than 1 : 8 epoxy resin mortar had very poor resistance, especially being poor resistant to organicacid. Therefore, for the structures requiring chemical resistance optimum mixing of epoxy resin mortar should be rich mixing ratio higher than 1: 4.

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DGEBA/방향족 아민(DDM, DDS) 경화제의 벤젠링 사이의 관능기 변화가 물성 변화에 미치는 영향에 대한 연구 (Chemo-Mechanical Analysis of Bifunctional Linear DGEBA/Linear Amine (DDM, DDS) Resin Casting Systems)

  • 명인호;정인재;이재락
    • Composites Research
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    • 제12권4호
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    • pp.71-78
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    • 1999
  • 방향족 아민 경화제의 벤젠링 사이의 관능기 변화가 반응특성, 기계적특성 및 열적특성에 미치는 영향을 고찰하기 위하여 양쪽 말단기에 에폭시기를 가지는 대표적 범용 에폭시수지인 DGEBA (diglycidylether of bisphenolA)와 방향족아민 경화제 diaminodiphenyl methane (DDM), diaminodiphenyl sulphone(DDS) 각각을 1:1의 당량비로 혼합하여 동일한 조건으로 경화하였다. 반응특성, 열 안정성, 에폭사이드기의 전환율, shrinkage(%), 유리전이온도와 선팽창계수, 기계적특성 그리고 굴곡 파단특성을 알아보기 위하여 각각 DSC 분석, TGA 분석, FT-IR 분석, 밀도측정, TMA 분석, 인장시험과 3점 굴곡시험, 광학현미경 시험을 행하였다. 그 결과, 에폭시수지 경화물의 분석, 밀도측정, TMA 분석, 인장시험과 3점 굴곡시험, 광학현미경 시험을 행하였다. 그 결과, 에폭시수지 경화물의 특성은 경화제의 벤젠링 사이의 관능기 구조에 따라 매우 큰 영향을 받았다. 즉, 벤젠링 사이에 길이가 길고 bulky한 술폰기를 포함한 DDS는 epoxiderl의 전환율, shrinkage(%), 유리전이온도, 인장탄성율, 인장강도, 굴곡탄성율 및 굴곡강도의 값이 길이가 짧고 compact한 메틸기를 가지는 DDM 경화물계 보다 높게 나타났지만, 최대발열온도, 열안정성, 선팽창계수의 값은 낮게 나타냈다. 이것은 술폰기의 강한 전기음성도와 메틸기의 전기 양성적인 repulsive한 성질의 차이와 epoxide group의 전환율의 영향인 것으로 판단된다. 굴곡 파단면의 관찰 결과는 DDM경화물계의 feather like structure의 각개 grain의 크기가 DDS 경화물계 보다 작은 것을 확연하게 보여준다.gG1 항체 합성은 spleen B cell과는 달리 TGF-$\beta$3에 의해 증가하였다. 본 실험의 결과는 전반적으로 TGF-$\beta$3가 TGF-$\beta$1과 비슷한 정도로 마우스 B cell의 항체합성에 영향을 미침을 보여준다. 그렇지만, 생체 내에서TGF-$\beta$3의 발현조절이 TGF-$\beta$1과 다를 것으로 예상됨으로 과연 TGF-$\beta$3가 B cell 분화에서 중요한 조절인자로 작용할지는 좀 더 연구되어야 할 것이다.적을 볼 때 적극적으로 수술에 임하는 것이 바람직하다고 사료된다.나타나 이의 규명을 위해서는 향후 p53 단백의 유전자 변이와 두 단백의 발현과 환자의 생존율과의 상관관계에 대한 연 구가 요할 것으로 사료된다.을 줄이기 위한 대책이 도움이 될 것으로 사료된다.4.00$\pm$0.14, 2.50$\pm$ 0.31, 4.02$\pm$0.70으로 기준(1.84$\pm$0.21)에 비하여 IP군과 10 mM 칼슘 전처치군에서 유의하게 증가하였다 (p<0.05). 그러나 허혈대조군에서는 두 분획 모두 기준선과 비교하여 큰 차이가 없었다. 결론: 이상으로 적출 관류 토끼심장에서 장시간 동안의 허혈전 높은 농도의 칼슘으로 전처치하면 허혈후 재관류시 심근기능의 회 복증가는 기대하기 어려우나 IP와 유사한 심근괴사 범위 감소효과가 있으며 이러한 효과는 아마도 칼슘의 매개에 따라 PKC활성화가 일어남으로써 나타나는 것으로 생각된다. 점을 함께 고려하면 그룹 B에서의 더 큰 증폭 효과가 광배근의 활성도 및 수축력의 차이로부터 기인한다고 평가할

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Spalling Properties of High Strength Concrete Mixed with Various Mineral Admixtures Subjected to Fire

  • Han, Cheon-Goo;Han, Min-Cheol;Heo, Young-Sun
    • International Journal of Concrete Structures and Materials
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    • 제2권1호
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    • pp.41-48
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    • 2008
  • This study investigates the spalling properties of high strength concrete designed with various types of mineral admixture and diverse content ratios of polypropylene (PP) fiber. Experimental factors considered in series I are four pozzolan types of mineral admixture and series II consists of three shrinkage reducing types of mineral admixture. PP fiber was added 0.05, 0.10 and 0.15vol. % in each mixture of series I and series II, so that totally 27 specimens including control concretes in each series were prepared. Test results showed that the increase of fiber content decreased the slump flow of fresh concrete and increased or decreased the air content depending on the declining ratio of slump flow. For the properties of compressive strength, all specimens were indicated at around 50 MPa, which is high strength range; especially all specimens in series II were 60 MPa. Fire test was conducted in standard heating curve of ISO 834 with ${\phi}100{\times}200\;mm$ size of cylinder moulds for 1 hour. The specimens incorporating silica fume exhibited severe spalling and most specimens without the silica fume could be protected from the spalling occurrence in only 0.05vol % of PP fiber content. This fire test results demonstrated that the spalling occurrence in high strength concrete was not only affected by concrete strength related to the porosity of microstructure but also, even more influenced by micro pore structure induced by the mineral admixtures.

Elastic and Superhydrophobic Monolithic Methyltrimethoxysilane-based Silica Aerogels by Two-step Sol-gel Process

  • Mahadik, D.B.;Jung, Hae-Noo-Ree;Lee, Yoon Kwang;Lee, Kyu-Yeon;Park, Hyung-Ho
    • 마이크로전자및패키징학회지
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    • 제23권1호
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    • pp.35-39
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    • 2016
  • The flexible and superhydrophobic properties of silica aerogels are extremely important material for thermal insulation and oil spill cleanup applications for their long-term use. Flexible silica aerogels were synthesized by using a two-step sol-gel process with precursors, methyltrimethoxysilane (MTMS) followed by supercritical drying. Silica aerogels were prepared at different molar ratio of methanol to MTMS (M). It was observed that the silica aerogels prepared at M=28 were monolithic but inelastic in nature, however, for M=35, the obtained aerogels were monolithic, elastic in nature with less shrinkage. The microstructural studies were carried out using scanning electron microscopy and surface area measurements. The hydrophobicity was confirmed by Fourier transform Infrared spectroscopy and water contact angle measurements. The detailed insight mechanism for flexible nature of silica aerogels and hydrophobic behavior were studied.

Effect of treatment temperature on mechanical properties of silk textiles made with silk/polyurethane core-spun yarn

  • Bae, Yeon Su;Um, In Chul
    • International Journal of Industrial Entomology and Biomaterials
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    • 제33권2호
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    • pp.108-112
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    • 2016
  • Silk has been used extensively in textile applications because of its good luster and feel. However, the low elongation and elastic recovery of silk has limited its use in a wider variety of textile applications. In this study, silk textile samples were made with a highly twisted silk/polyurethane core-spun yarn. They were immersed in water and dried at different temperatures, and the effect of treatment temperature on the mechanical properties of the silk textile was examined. It was found that the water temperature strongly affected the morphology and mechanical properties of the silk textile, whereas the drying temperature did not. As the water temperature was increased, the weft silk yarn became tangled and the interval between warp yarns decreased, resulting in shrinkage of the silk textile. When the silk textile was immersed in water at high temperature (i.e., $100^{\circ}C$), the elongation of the textile increased eight-fold as compared to an untreated silk textile. The maximum elastic recovery ratio of the silk textile was 96.7%.

MILC 성장 속도에 비정질 실리콘의 기하학적 형상이 미치는 영향 (The Effect of Geometric Shape of Amorphous Silicon on the MILC Growth Rate)

  • 김영수;김민선;주승기
    • 한국재료학회지
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    • 제14권7호
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    • pp.477-481
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    • 2004
  • High quality polycrystalline silicon is very critical part of the high quality thin film transistor(TFT) for display devices. Metal induced lateral crystallization(MILC) is one of the most successful technologies to crystallize the amorphous silicon at low temperature(below $550^{\circ}C$) and uses conventional and large glass substrate. In this study, we observed that the MILC behavior changed with abrupt variation of the amorphous silicon active pattern width. We explained these phenomena with the novel MILC mechanism model. The 10 nm thick Ni layers were deposited on the glass substrate having various amorphous silicon patterns. Then, we annealed the sample at $550^{\circ}C$ with rapid thermal annealing(RTA) apparatus and measured the crystallized length by optical microscope. When MILC progress from narrow-width-area(the width was $w_2$) to wide-width-area(the width was $w_1$), the MILC rate decreased dramatically and was not changed for several hours(incubation time). Also the incubation time increased as the ratio, $w_1/w_2$, get larger. We can explain these phenomena with the tensile stress that was caused by volume shrinkage due to the phase transformation from amorphous silicon to crystalline silicon.

진공흡입주형 주조법에서 주강의 압탕 방안 설계 (Risering of Steel Castings in Vacuum Molding Process)

  • 강복현;김기영;김명한;홍영명
    • 한국주조공학회지
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    • 제27권2호
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    • pp.88-94
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    • 2007
  • General criteria for the risering design of steel castings and commercial codes for the flow and solidification analysis were used to design the optimized risering in V-process. Three type of specimens were chosen including thin plates and a thick disc. Sided riser installed in the front of a plate casting was effective to prevent the shrinkage defects and to increase the casting yield ratio. Exothennic sleeve and chill were also effective. It was possible to apply the general criteria for the risering design of steel castings to V-process. Temperature of a mold surface was expected to rise over $1,000^{\circ}C$ in the temperature calculation considering radiation effect of molten metal in the mold. Since weakening temperature of the vinyl used in V-process is about $70^{\circ}C$, it should be emphasized that a proper coating of the vinyl film is necessary to prevent the possibility of burning out of the vinyl by the molten metal.

New Medical Image Fusion Approach with Coding Based on SCD in Wireless Sensor Network

  • Zhang, De-gan;Wang, Xiang;Song, Xiao-dong
    • Journal of Electrical Engineering and Technology
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    • 제10권6호
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    • pp.2384-2392
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    • 2015
  • The technical development and practical applications of big-data for health is one hot topic under the banner of big-data. Big-data medical image fusion is one of key problems. A new fusion approach with coding based on Spherical Coordinate Domain (SCD) in Wireless Sensor Network (WSN) for big-data medical image is proposed in this paper. In this approach, the three high-frequency coefficients in wavelet domain of medical image are pre-processed. This pre-processing strategy can reduce the redundant ratio of big-data medical image. Firstly, the high-frequency coefficients are transformed to the spherical coordinate domain to reduce the correlation in the same scale. Then, a multi-scale model product (MSMP) is used to control the shrinkage function so as to make the small wavelet coefficients and some noise removed. The high-frequency parts in spherical coordinate domain are coded by improved SPIHT algorithm. Finally, based on the multi-scale edge of medical image, it can be fused and reconstructed. Experimental results indicate the novel approach is effective and very useful for transmission of big-data medical image(especially, in the wireless environment).

펄스전류활성소결법을 이용한 스퍼터링 타겟용 Cu-Mn 소결체 제조 및 특성평가 (Fabrication and Property Evaluation of Cu-Mn Compacts for Sputtering Target Application by a Pulsed Current Activated Sintering Method)

  • 장준호;오익현;임재원;박현국
    • 한국분말재료학회지
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    • 제23권1호
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    • pp.1-7
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    • 2016
  • Cu-Mn compacts are fabricated by the pulsed current activated sintering method (PCAS) for sputtering target application. For fabricating the compacts, optimized sintering conditions such as the temperature, pulse ratio, pressure, and heating rate are controlled during the sintering process. The final sintering temperature and heating rate required to fabricate the target materials having high density are $700^{\circ}C$ and $80^{\circ}C/min$, respectively. The heating directly progresses up to $700^{\circ}C$ with a 3 min holding time. The sputtering target materials having high relative density of 100% are fabricated by employing a uniaxial pressure of 60 MPa and a sintering temperature of $700^{\circ}C$ without any significant change in the grain size. Also, the shrinkage displacement of the Cu-Mn target materials considerably increases with an increase in the pressure at sintering temperatures up to $700^{\circ}C$.