• 제목/요약/키워드: Permeability materials

검색결과 1,061건 처리시간 0.027초

Evaluation of the effect of aggregate on concrete permeability using grey correlation analysis and ANN

  • Kong, Lijuan;Chen, Xiaoyu;Du, Yuanbo
    • Computers and Concrete
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    • 제17권5호
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    • pp.613-628
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    • 2016
  • In this study, the influence of coarse aggregate size and type on chloride penetration of concrete was investigated, and the grey correlation analysis was applied to find the key influencing factor. Furthermore, the proposed 6-10-1 artificial neural network (ANN) model was constructed, and performed under the MATLAB program. Training, testing and validation of the model stages were performed using 81 experiment data sets. The results show that the aggregate type has less effect on the concrete permeability, compared with the size effect. For concrete with a lower w/b, the coarse aggregate with a larger particle size should be chose, however, for concrete with a higher w/c, the aggregate with a grading of 5-20 mm is preferred, too large or too small aggregates are adverse to concrete chloride diffusivity. A new idea for the optimum selection of aggregate to prepare concrete with a low penetration is provided. Moreover, the ANN model predicted values are compared with actual test results, and the average relative error of prediction is found to be 5.62%. ANN procedure provides guidelines to select appropriate coarse aggregate for required chloride penetration of concrete and will reduce number of trial and error, save cost and time.

A predicting model for thermal conductivity of high permeability-high strength concrete materials

  • Tan, Yi-Zhong;Liu, Yuan-Xue;Wang, Pei-Yong;Zhang, Yu
    • Geomechanics and Engineering
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    • 제10권1호
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    • pp.49-57
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    • 2016
  • The high permeability-high strength concrete belongs to the typical of porous materials. It is mainly used in underground engineering for cold area, it can act the role of heat preservation, also to be the bailing and buffer layer. In order to establish a suitable model to predict the thermal conductivity and directly applied for engineering, according to the structure characteristics, the thermal conductivity predicting model was built by resistance network model of parallel three-phase medium. For the selected geometric and physical cell model, the thermal conductivity forecast model can be set up with aggregate particle size and mixture ratio directly. Comparing with the experimental data and classic model, the prediction model could reflect the mixture ratio intuitively. When the experimental and calculating data are contrasted, the value of experiment is slightly higher than predicting, and the average relative error is about 6.6%. If the material can be used in underground engineering instead by the commonly insulation material, it can achieve the basic requirements to be the heat insulation material as well.

Preparation and Properties of Silicone Hydrogel Material Containing Silane Group with Cobalt Oxide Nanoparticles through Thermal Polymerization

  • Lee, Min-Jae;Kong, Ki-Oh;Sung, A-Young
    • 한국재료학회지
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    • 제30권6호
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    • pp.273-278
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    • 2020
  • This research is conducted to analyze the compatibility of used monomers and produce the high functional hydrogel ophthalmic polymer containing silane and nanoparticles. VTMS (vinyltrimethoxysilane), TAVS [Triacetoxy(vinyl)silane] and cobalt oxide nanoparticles are used as additives for the basic combination of SilM (silicone monomer), MMA (methyl methacrylate) and MA (methyl acrylate). Also, the materials are copolymerized with EGDMA (ethylene glycol dimethacrylate) as cross-linking agent, AIBN (thermal polymerization initiator) as the initiator. It is judged that the lenses of all combinations are optically excellent and thus have good compatibility. Measurement of the optical and physical characteristics of the manufactured hydrophilic ophthalmic polymer are different in each case. Especially for TAVS, the addition of cobalt oxide nanoparticles increases the oxygen permeability. These materials are considered to create synergy, so they can be used in functional hydrogel ophthalmic lenses.

Development of POS446M & POS430 Ti Flatron Rail Manufacturing Process for Practical Use

  • Chun, Hyun-Tae;Koh, Nam-Je;Han, Soo-Deok;Park, No-Jin;Oh, Myung-Hoon
    • Journal of Information Display
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    • 제3권1호
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    • pp.27-34
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    • 2002
  • POS446M and POS430Ti alloys were investigated for application to a Flatron rail instead of conventional 28 wt%Cr alloy in order to reduce material costs. It was found that the permeability decrement of materials could be successfully minimized by proper heat treatment, and that the beam landing drift of the Flatron was not overly affected by the permeability of materials. In addition, the Flatron manufacturing process using POS430Ti was also stabilized without glass cracking by the application of the modified process conditions, which were optimized through the design of the experiment method.

격자형 자성 복합재의 전파흡수 특성 (Microwave Absorbing Properties of Grid-type Magnetic Composites)

  • 박명준;김성수
    • 대한금속재료학회지
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    • 제50권5호
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    • pp.389-393
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    • 2012
  • Improvement in microwave absorbance has been investigated by insertion of a periodic air cavity in rubber composites filled with magnetic powders. A mixture of $Co_2Z$ hexagonal ferrite and Fe powders were used as the absorbent fillers in silicone rubber matrix. The complex permeability and complex permittivity of the magnetic composites were measured by reflection/transmission technique. In the grid-type magnetic absorbers, the equivalent permeability (${\mu}_{eq}$) and permittivity (${\varepsilon}_{eq}$) are calculated as a function of air volume rate (K) on the basis of effective medium theory. Reduction in the material parameters (especially, dielectric permittivity and magnetic loss) has been estimated with the increase of K. Plotting the ${\mu}_{eq}$ and ${\varepsilon}_{eq}$ on the solution map of wave-impedance matching, wide bandwidth microwave absorbance has been predicted in the magnetic composites with an optimum value of K.

Effect of damage on permeability and hygro-thermal behaviour of HPCs at elevated temperatures: Part 1. Experimental results

  • Gawin, D.;Alonso, C.;Andrade, C.;Majorana, C.E.;Pesavento, F.
    • Computers and Concrete
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    • 제2권3호
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    • pp.189-202
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    • 2005
  • This paper presents an analysis of some experimental results concerning micro-structural tests, permeability measurements and strain-stress tests of four types of High-Performance Concrete, exposed to elevated temperatures (up to $700^{\circ}C$). These experimental results, obtained within the "HITECO" research programme are discussed and interpreted in the context of a recently developed mathematical model of hygro-thermal behaviour and degradation of concrete at high temperature, which is briefly presented in the Part 2 paper (Gawin, et al. 2005). Correlations between concrete permeability and porosity micro-structure, as well as between damage and cracks' volume, are found. An approximate decomposition of the thermally induced material damage into two parts, a chemical one related to cement dehydration process, and a thermal one due to micro-cracks' development caused by thermal strains at micro- and meso-scale, is performed. Constitutive relationships describing influence of temperature and material damage upon its intrinsic permeability at high temperature for 4 types of HPC are deduced. In the Part II of this paper (Gawin, et al. 2005) effect of two different damage-permeability coupling formulations on the results of computer simulations concerning hygro-thermo-mechanical performance of concrete wall during standard fire, is numerically analysed.

Effects of Mordanting, Dyeing, Rinsing, and Fiber Characteristics on the Air-permeability and Color of Fabrics Dyed using Cochineal Dyestuff

  • Na, Ho-Jin;Jeon, Dong-Won;Kim, Jong-Jun
    • 패션비즈니스
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    • 제9권3호
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    • pp.114-124
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    • 2005
  • Based on the previous study, three types at synthetic fibers comprising nylon, PET, and acrylic fibers were investigated in this study. The effect at mordanting on the air-permeability and dyeing properties at fabrics was investigated. The effect at rinsing process on the air-permeability and color was quantitatively investigated by rinsing the mordanted fabric specimens 1$\sim$3 times after mordanting. The air-permeability changed peculiarly according to the characteristics of the tiber materials after mordanting. The air-permeability values of nylon and acrylic fabric specimens dropped significantly after mordanting. On the other hand, those of PET fabric specimens hardly changed after mordanting. The metal ions absorbed on the fibers of nylon and acrylic fabrics did not show the mordanting effect. Regardless of mordanting, cochineal dyestuff made direct links with the molecular chains in nylon fabrics exhibiting dark colors. After dyeing acrylic fabrics, the color did not develop at all, even though partial components of the cochineal dyestuff were absorbed apparently.

Zn 첨가에 따른 Ba-$Co_2Z$ 페라이트의 마이크로파 특성 (Microwave Properties of Ba-$Co_2Z$ Ferrite with Zn addition)

  • 김재식;최의선;류기원;고중혁;이영희
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2010년도 하계학술대회 논문집
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    • pp.299-299
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    • 2010
  • In this study, microwave properties with compositions and frequency of the $Ba_3Co_2Fe_{24}O_{41}$ ceramics with Zn substitution for Co were investigated. From the XRD patterns, hexagonal structure of Z-type phase was existed as main phase. Diffraction peaks of Z-type phase were shifted to lower angle by Zn substituted for Co site. The permittivity was increased with Zn additions. In all composition, loss tangent of permittivities were increased with frequency. Permeability and magnetic resonance frequency were increased with Zn additions. Permeability was increased and loss tangent of permeability was decreased rapidly over 600 MHz~800 MHz. The loss tangent of permeability did not changed with composition ratio. In the case of $Ba_3Co_{1.6}Zn_{0.4}Fe_{24}O_{41}$ ceramics sintered at $1250^{\circ}C$ for 3 hours, the permittivity, loss tangent of permittivity, permeability and loss tangent of permeability were 28.277, 0.193, 22.992 and 0.065 at 310 MHz, respectively.

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성토재로의 활용을 위한 Bottom Ash의 파쇄지수 산정 및 투수계수 변화 (Breakage Index and Changes in Permeability of Bottom Ash for Use as Fill Material)

  • 김동근;손영환;박재성;봉태호
    • 한국농공학회논문집
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    • 제57권6호
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    • pp.107-115
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    • 2015
  • The objective of the this study is to find the breakage index and changes in permeability of Bottom ash from thermoelectric power plants in Korea. Bottom ash was crushed by compaction according to compaction energy from 0 to $1661.4\;kN/m^2$. The particle size distribution was estimated by sieve analysis. The various breakage indexes were used for analyzing the change in particle size distribution and effect of compaction energy. In the result, breakage indexes were increased as compaction energy and initial upper 4.75 mm diameter ratio, but values and tendencies of breakage indexes appeared in different as calculation method of breakage indexes. The coefficient of permeability was decreased with particle breakage, but decreasing ratio of permeability was very small. Bottom ash has a higher permeability than the weathered soil and it is considered high usability as a permeable materials.

고차단성 자동차 부품용 고무소재 (Elastomeric High Barrier Materials for Vehicle)

  • 김진국
    • Elastomers and Composites
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    • 제46권1호
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    • pp.2-9
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    • 2011
  • 가스와 증기에 대한 투과성(Permeability to gases and Vapors)은 고무 제품을 타이어 튜브나 다이아후램(diaphragm)과 같은 제품으로 사용하고자 할 때 아주 중요한 특성이다. 모든 고무는 가스와 증기에 대하여 투과성이 있다. 그러나 그 투과 속도는 고무 재질에 따라 아주 다르다. 일반적으로 실리콘 고무의 투과성이 제일 크고, 그 다음으로 NR, EPDM, SBR, CR, NBR, FPM, ECO, IIR 순이다. 이러한 투과성은 같은 원료고무를 사용해도 사용 배합약품의 종류에 따라 크게 다를 수도 있다. 고무와 기체와의 메커니즘은 발포고무에 매우 중요하게 되어 이에 대한 연구$^{1-7}$는 많이 이루어졌으나 고무의 차단성에 대한 연구는 그리 많지 않다. 고무소재의 투과성 또는 차단성 기능을 주기위하여 나노복합탄성체$^8$의 기술 동향 및 코팅에 의한 기능성 향상$^{9-13}$을 하거나 열가소성탄성체 본문에서 적용하는 기술이 있는데 자동차에 사용되는 액체 및 기체 차단용 고무부품에 대하여 몇가지 소개하여 본다.