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      • 경량기포콘크리트의 제조 및 기포제의 특성분석

        임굉,임재석,Yim, Going,Yim, Chai-Suk 배재대학교 공학연구소 2006 공학논문집 Vol.8 No.1

        수축은 콘크리트에 균열을 발생시키는 경우도 있다. 일반적 조건하에서는 콘크리트의 건조를 피할 수 없으며 건조가 일어나면 수축이 생기므로 대부분의 콘크리트 적용분야에서는 실제로 이와 같이 균열발생을 고려하여야 한다. 균열이 발생한 콘크리트는 균열이 없는 콘크리트에 비하여 강도가 약하고 투과성이 크며 화학적 침식의 영향을 받기 쉽다. 또 재령의 경과에 따라 경량기포콘크리트의 강도발현은 기포제의 종류, 물과 시멘트와의 비, 양생조건 및 기간 등과 같은 인자에 의존하고 있다. 경량기포콘크리트의 강도가 높으면 높을수록 수축에 의하여 균열이 발생할 가능성이 감소한다. 그러므로 온돌구조용으로의 경량기포콘크리트의 강도는 소포율과 시멘트의 건조수축과의 균열저감효과에 크게 의존된다. Shrinkage may cause cracking in concrete. In practice such cracking must be considered in most concrete applications because, under normal conditions, drying of the concrete is unavoidable, and when drying takes place shrinkage occurs. Cracked concrete is an inferior concrete because it is weaker, more permeable, and more susceptible to chemical attack. The development of the strength of LAC with aging depends on a few factors such as type of the cement, W/C ratio, curing conditions and periods. The higher the strength of LAC, the lower the possibility of shrinkage cracking. Hence, the strength of LAC in the hypocaust system depends to a large extent on the effect of cracking decrease of the antifoaming rate to drying shrinkage in cement.

      • SCOPUSKCI등재

        알루미나가 11Å Tobermorite의 수열합성에 미치는 영향

        임굉,임재석,Yim Going,Yim Chai Suk 한국재료학회 2005 한국재료학회지 Vol.15 No.2

        [ $11\AA$ ] tobermorite$(5CaO{\cdot}6SiO_2{\cdot}5H_2O)$ is synthesized from the mixtures of calcium hydroride and quartz using alumina in a molar ratio $Ca(OH)_2/SiO_2$ of 0.8 at $180^{\circ}C$ for 8 and 24 hrs under saturated steam pressure. The influence of alumina on the formation of $11\AA$ tobermorite was investigated by X-ray diffraction, differential thermal analysis and infrared spectroscopy. $11\AA$ tobermorite containing increasingly larger amounts of aluminum showed a shift of the basal spacing from 11.3 to $11.6\AA$. In general, there was a direct linear relation between the basal spacing and added content of alumina. The differential thermal analysis curves showed that $11\AA$ tobermorite with increasing alumina contents exhibited the exothermic peak at high temperature, namely $11\AA$ tobermorite containing aluminum gave a sharp exothermic peak at temperature around $850\~860^{\circ}C$ in the case of $S_3\~S_5$. The absorption band at $1607\~1620cm^{-1}$ is attributed to the bending vibration of water, and the position of the main O-H stretching and Si-O lattice vibration of $11\AA$ tobermorite at 3500 and $965cm^{-1}$ respectively is not altered. Consequently the existence of alumina accelerates the crystallization of $11\AA$ tobermorite, and that the aluminum ion appears to substitute for the silicon ion in $11\AA$ tobermorite structure. Al-containing tobermorite is distinguished from Al-free tobermorite.

      • KCI등재

        제올라이트광물을 이용한 폐수중의 중금속제거

        임재석,임굉,Yim Chai Suk,Yim Going 한국재료학회 2004 한국재료학회지 Vol.14 No.3

        All the applications of natural zeolites make use of one or more of their physical and chemical properties: adsorption, ion-exchange and related molecular sieve properties, dehydration and rehydration, and siliceous composition. Accordingly, the applications of zeolite have been carried out in the various aspects because of its large cation exchange capacity and adsorption properties. In this paper, the adsorption effect of heavy metal ions in wastewater on zeolite mineral by batch adsorption process is studied. The amounts of adsorbed ions were variable by original pH and ionic concentration, especially original pH of solution had an important effect on the adsorption. In case of low pH solution, e.g. below 3.0, clinoptilolite adsorbed $Pb^{2+}$ ,$ Cd ^{2+ }$ , $Cu^{2+}$ and $Zn^{ 2+}$ , but mordenite almost did not adsorb except $Pb^{2+}$ . Under the same conditions, these ions were more adsorbed on clinoptilolite than on mordenite mineral. The velocity of adsorption was relatively fast and it was confirmed by shaking test that the equilibrium of adsorption could be attained in about one hour. The species of exchangeable cation of zeolite had an effect on its removing ability and zeolite of the sodium-exchanged type was the best.

      • KCI등재

        금속 알콕사이드로부터 PSZ-seeding Mullite 복합체의 합성 및 소결체의 특성

        임굉,임재석,김영호,Yim, Going,Yim, Chai-Suk,Kim, Young-Ho 한국재료학회 2007 한국재료학회지 Vol.17 No.1

        Mullite-PSZ composite was prepared by sol-gel method using $Al(sec-OC_4H_9)_3,\;Si(OC_2H_5)_4,\;ZrOCl_2\;8H_2O\;and\;Y_2O_3$. The sinterability ana mechanical properties of powder compacts sintered at $1,650^{\circ}C$ for 4 hrs were investigated for various PSZ contents. In result Al-Si spinel formed at $980^{\circ}C$ from amorphous dried gel, and zirconia as well as mullite crystal formed above $1,200^{\circ}C$. The sintered body was densified to $97{\sim}98%$ except the specimen containing 25vol% PSZ which showed the relative density of about 95% obtained by sintering at $1,650^{\circ}C$ for 4 h. The flexural strength of the sintered body was a maximum value of 290 MPa in 20 vol% PSZ, which was also considerably larger than the value of 200 MPa without PSZ. The value of the fracture toughness increased linearly with increase of PSZ content and showed a maximum value of $4.3MPam^{1/2}$ in 25 vol% PSZ, Namely this value was remarkably larger than the $value(2.6MPam^{1/2})$ of pure mullite without PSZ.

      • KCI등재

        금속 알콕사이드로부터 Mullite 초미분체의 제조

        임굉,임재석,김영호,Yim, Going,Yim, Chai-Suk,Kim, Young-Ho 한국재료학회 2006 한국재료학회지 Vol.16 No.12

        Ultrafine mullite powder was prepared from aluminium-secbutoxide and tetraethyl orthosilicate(TEOS) in the molar $Al_2O_3/SiO_2$=3/2. Sol-gel method by partial hydrolysis technique, as it were, first, TEOS was partially hydrolysized and then mixed with Al-secbutoxide for complete hydrolysis was used. X-ray diffraction, infrared spectroscopy and transmission electron microscopy, etc. confirmed that the mullite powder prepared by this method is in the stoichiometric $Al_2O_3/SiO_2$ ratio. Al-Si spinel was formed at $980^{\circ}C$ and ultrafine mullite powder with about 20 nm particle size was obtained above $1,200^{\circ}C$. Also mullite powders calcined at $1,600^{\circ}C$ had a stoichiometric composition, $3Al_2O_3{\cdot}2SiO_2$ and the lattice constants of the mullite powders calcined above $1,200^{\circ}C$ were almost coincided with theoretical values.

      • KCI등재
      • SCOPUSKCI등재

        Structural Effects on the Tensile and Morphological Properties of Zeolite-filled Polypropylene Derivative Composites

        Jagannath, Jagannath Biswas,Kim, Hyun,Yim, Chai-Suk,Cho, Jungh-Wan,Kim, Geon-Joong,Choe, Soon-Ja,Lee, Dai-Soo The Polymer Society of Korea 2004 Macromolecular Research Vol.12 No.5

        We have studied the effects that inorganic zeolite powder have on structurally different copolymer [poly(propylene-co-ethylene)] and terpolymer [poly(propylene-co-ethylene-co-l-butene)] systems and the possibility of preparing suitable porous composite films. The impact strength and yield stress of the composites did not improve upon any further loading of zeolite, but the modulus increased gradually with respect to the filler loading. The experimental modulus of each of the two systems was compared with theoretical models. We performed a morphological study of the filler mixing efficiency and image analysis. The number-, weight-, and z-average air hole diameters were compared with respect to the draw ratio as well as the zeolite loading. The experimental results suggest that these two matrices can provide a new choice for preparing future multiphase polymeric porous films by stretching them unidirectionally. In particular, we suggest that a 40 wt% zeolite loading at a draw ratio of 4 is useful for porous film applications.

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