• Title/Summary/Keyword: 융해 속도

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Long-term Durability Characteristics of Fly ash Concrete Containing Lightly Burnt MgO Powder (저온 소성한 MgO 분말을 함유한 플라이애시 콘크리트의 장기재령에서의 내구특성)

  • Jang, Bong-Seok;Choi, Seul-Woo;Lee, Kwang-Myong
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.33 no.3
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    • pp.909-916
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    • 2013
  • Concrete containing lightly burnt MgO has long term expansibility. It also could compensate for the thermal shrinkage of mass concrete, because the hydration of MgO proceeds at a slow pace to long-term age. Thus, lightly burnt MgO has been applied to the construction of mass concrete such as dams. Recently, the expansion characteristics of MgO concrete with fly ash that could be applied to mass concrete for the reduction of hydration heat have been studied and however, limited studies on its durability. This study investigates the long-term durability characteristics of fly ash concrete with lightly burnt MgO. The durability tests on carbonation, freezing-thawing, diffusion of chloride, and resistance to sulfate attack were carried out for MgO concrete with curing for 360 days in submerged condition with different temperature of 20 and $50^{\circ}C$. The results reveal that MgO concrete shows a greater resistance of carbonation, diffusion of chloride, and resistance to sulfate attack. On the other hand the resistance of freezing-thawing was little influenced by MgO powder.

Strength Development and Durability of Geopolymer Mortar Using the Combined Fly ash and Blast-Furnace Slag (플라이애시와 고로슬래그 미분말을 혼합 사용한 지오폴리머 모르타르의 강도발현 및 내구성)

  • Ryu, Gum-Sung;Koh, Kyung-Taek;Lee, Jang-Hwa
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.1 no.1
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    • pp.35-41
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    • 2013
  • In this study, we investigated the strength development and durability of geopolymer mortar using blast furnace slag only, and admixed with blast-furnace slag and fly ash as cementious materials in oder to develop cementless geopolymer concrete. In order to compare with the geopolymer mortar, the normal mortar using ordinary portland cement was also test. In view of the results, we found out that strength development, the resistance to freezing-thawing of the geopolymer mortar have better than the mortar using ordinary portland cement. Especially, using the combined with blast furnace slag and fly ash develop high strength of above 60 MPa, and improve the resistance of freezing-thawing of approximately 20%, but promote the velocity of carbonation of 2.2~3.5 times.

Development of Rural Road Pavement Technology Using Cement Stabilizer (시멘트계 고화재를 활용한 농어촌도로 포장공법 개발)

  • Oh, Young-In;Kong, Gil-Yong;Kim, Seung-Wook
    • International Journal of Highway Engineering
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    • v.9 no.4
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    • pp.171-184
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    • 2007
  • Chemical admixture stabilization has been extensively used in both shallow and deep stabilization in order to improve inherent properties of the soil such as strength and deformation behavior. An increment in strength, a reduction in compressibility, an improvement of the swelling or squeezing characteristics and increasing the durability of soil are the main aims of the admixtures for soil stabilization. Recently, the various advanced cement stabilizer mixing technique was developed. Advanced cement stabilizer mixing technique is environmentally-friendly and has an excellent mixing property and outstanding mixing speed. In this study, to develop the rural road pavement technology using cement stabilizer, compaction and unconfined compression test were performed with various mixing ratio and two types of soil(clay and silty soil). And the freezing/thaw test and bending strength test performed to develop suitable cement stabilizer material for stabilization of rural road. Based on the test results, the liquid types of cement stabilizer material and silty soil mixture are most suitable for rural road construction and although the mixing ratio is low, cement stabilizer mixture is effective for durability of rural road surface layer.

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An approximate analytical solution for the initial transient process of close-contact melting on an isothermal surface (등온가열에 의한 접촉융해의 초기 과도과정에 대한 근사적 해석해)

  • Yu, Ho-Seon
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.21 no.12
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    • pp.1710-1719
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    • 1997
  • An approximate analytical solution for the initial transient process of close-contact melting occurring between a phase change material kept at its melting temperature and an isothermally heated flat surface is derived. The model is so developed that it can cover both rectangular and circular cross-sectional solid blocks. Normalization of simplified model equations in reference to the steady solution enables the solution to be expressed in a generalized form depending on the liquid-to-solid density ratio only. A selected result shows an excellent agreement with the previously reported numerical data, which justifies the present approach. The solution appears to be capable of describing all the fundamental characteristics of the transient process. In particular, dependence of the solid descending velocity oft the density ratio at the early stage of melting is successfully resolved. The effects of other parameters except the density ratio on the transient behaviors are efficiently represented via the steady solution implied in the normalized result. A simple approximate method for estimating the effect of convection on heat transfer across the liquid film is also proposed.

Effect of Glycerol Concentration, Freezing Rate and Thawing Rate on Semen Characteristics in PoongSan-dog (풍산개 정자의 동결보존에 있어서 Glycerol 농도, 동결 및 융해속도가 정자성상에 미치는 영향)

  • Ji, D.Y.;Yoon, T.C.;Rho, J.R.;Cho, S.R.;Kim, C.K.;Pang, M.G.;Kim, Bo-Sook
    • Journal of Animal Science and Technology
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    • v.49 no.5
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    • pp.585-592
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    • 2007
  • This research was carried out in order to establish the production technique for Poong-san dog’s frozen semen, by examining the semen characteristic and the volume of glycerol added to the dilution solution, thawing temperature and sperm motility and viability as well as the motility using CASA according to time variation. Average semen volume was 5.9ml, sperm concentration 116.3×106 sperm/ml, total sperm number 789.3×106 sperm, motility 88.7±1.7% and viability 87.6±7.8%. When it was cryopreservation and thawed at different glycerol concentrated extender, it showed 52.7% motility and 57.7±10.3% viability at 7% glycerol, compared to other treatments. For semen cryogeny, at conditions of 5, 7cm and a height of 10cm for pre-cryogeny and maintaining the semen at 7cm from the surface of liquid nitrogen resulted in profitable motility and viability.

Developmental Capacity of Bovine Follicular Oocytes after Ultra-Rapid Freezing by Electron Microscope Grid - I. Cryopreservation of Bovine Immature Oocytes (Electron Microscopic Grid를 이용한 초급속동결이 소 난포란의 발달능에 미치는 영향 - I. 소 미성숙난자의 동결에 관한 연구)

  • Kim, E.Y.;Kim, N.H.;Yi, B.K.;Yoon, S.H.;Park, S.P.;Chung, K.S.;Lim, J.H.
    • Clinical and Experimental Reproductive Medicine
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    • v.25 no.1
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    • pp.71-76
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    • 1998
  • This study was carried out to examine whether the developmental capacity of bovine immature oocytes frozen ultra-rapidly using electron microscope (EM) grids and EFS30 can be obtained. As freezing solution, we used EFS30 which consisted of 30% ethylene glycol, 0.5 M sucrose, 18% ficoll and 10% FBS added in D-PBS. As criterior of oocyte viability, the rates of maturation, fertilization and embryonic development were determined. The results obtained in this experiment were summarized as follows: When ultra-rapidly frozen immature oocytes were thawed, 43.2% of them were survived. The rates of maturation (84.1%) and normal 2 pronuclei formation (57.5%) of frozen immature oocytes were not significantly different when compared to those of control (92.5, 65.0%). In addition, the rates of $\geq2$-cell (65.0%) and blastocyst formation (30.8%) of freezing group were not significantly different when compared to those of control (73.7, 35.7%). These results demonstrate that developmental capacity of frozen-thawed bovine immature oocytes can be successfully obtained when survived from the ultra-rapid freezing method using EM grid and EFS30.

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여러 종류의 동해방지제를 이용한 소 체외수정란의 동결 및 일단계 융해후의 체외배양 생존율 및 수태율

  • Suzuki, T.;Takagi, M.;Yamamoto, M.;Boediono, A.;Saha, S.;Sakakibara, H.;Oe, M.
    • Proceedings of the Korean Society of Embryo Transfer Conference
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    • 1997.05a
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    • pp.9-15
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    • 1997
  • 치밀 난구세포로 둘러싸인 소 난자를 $38^{circ}C$. 5% $CO_2$ 배양기에시 5% superovulated cow serum(SCS)이 첨가된 m-TCM 199 medium 으로 $20{\sim}22$ 시간 배양하였으며, 수정능이 획득된 정자와 체외수정하였다. 7일${\sim}$8일경의 수정란을 1.3M methyl cellosolve(MC), 1.1M diethylene glycol(DEG), 1.8M ethylene glycol(EG), 1.6M propylene glycol(PG) 및 1.1M 1,3-butylene glycol(BG) 용액에서 10분간 평형시킨 후 0.25 ml 스트로내에 장전하였다. 스트로를 $0^{\circ}C$의 alcohol bath freezer에 넣고 $-6^{\circ}C$까지 $-1^{\circ}C$/분 속도로 냉각, 식빙 후 10분간 정체시켰으며, $-0.3^{\circ}C$/분 또는 $-0.5^{\circ}C$/분으로 $-30^{\circ}C$까지 냉각 후 스트로를 액체질소에 침지하여 보관하였다. 수정란이 들어있는 스트로를 $30^{\circ}C$ 온수에서 융해하였으며, 수정란을 TCM 199 medium 으로 옮긴 후 5% SCS가 첨가된 TCM 199 medium 에서 48시간 배양하였다. 수정란이 양호한 형태를 유지하며 나중의 발육단계로 진행된 것을 생존한 것으로 간주하였다. 각 종류의 동해방지제에서 동결된 수정란의 일부는 융해 후 동해방지제를 제거하지 않고 직접 비외과적으로 이식하였다. 동결-융해 후 동해방지제의 종류에 따른 탈출배반포 발달율은 EG 50.0%, MC 53.6%, DEG 56.9%, PG 58.0% 그리고 BG 11.5%였다. $-0.3^{\circ}C$/분 또는 $-0.5^{\circ}C$/분 으로 냉각한 수정란의 생존율은 두 그룹간에 유의적인 차이가 없었으나 (P<0.05), 탈출배반포 발달율은 -0.5분 $^{\circ}C$/분(22.6%, 12/53)보다 $-0.3^{\circ}C$/분(64.6%, 31/48) 냉각시에 유의적으로 높았다(P<0.01). 동해방지제의 종류에 따른 수정란의 수태율은 MC 48%(10/21). DEG 30%(3/10), EG 74%(20/27) 및 PG 40%(4/10) 였다. 이러한 결과로 보아 MC, DEG, EG 그리고 PG는 소의 체외수정란의 동결을 위한 동해방지제로서 이용될 수 있음을 보여주었다.

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Evaluation of Deicing Performance and Effects of Deicers of the Winter Season (동절기의 융빙제들의 융빙 성능 및 영향 평가)

  • Doh, Young-Soo;Lee, Byeong-Duck;Choi, Kwang-Soo;Kim, Kwang-Woo
    • International Journal of Highway Engineering
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    • v.10 no.3
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    • pp.149-158
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    • 2008
  • This study was estimated on performance of deicers, corrosion inhibitors and low corrodible deicer used for removal of snow or ice on the road and on influence on structure. The weight loss rate after freezing and thawing of low corrodible deicer is lower than one of deicer, corrosion inhibitors and these combination. Relative dynamic elastic modulus of all except water, low corrodible deicer and NaCl+JF-1004 was radically reduced after freezing and thawing 150 cycles. And concretes after freezing and thawing were showed severe surface damage. It was found that individual use of low corrodible deicer and corrosion inhibitors had a problem of field application because of lack of early ice melting effect and considerably low durability. Products combined with NaCl was showed rapid weight loss by metal corrosion. Therefore, It will need to circumspectly select combination of deicers having low effect on concrete pavement and bridge if possible.

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The Effect of Modified Cryopreservation Method on Viability of Frozen-thawed Blastodermal Cells on the Korean Native Chicken(Ogolgye Breed) (한국재래닭(오골계)종 배반엽세포에 있어서 동결 방법의 개선이 융해 후 생존율에 미치는 영향)

  • Kim, Hyun;Kim, Dong-Hun;Park, Soo-Bong;Choi, Seong-Bok;Ko, Yeoung-Gyu;Kim, Jae-Hwan;Do, Yoon-Jung;Park, Hae-Geum;Kim, Sung-Woo
    • Reproductive and Developmental Biology
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    • v.36 no.1
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    • pp.65-70
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    • 2012
  • For reconstituting genetic resource(Korean Native Chicken: KNC) with grem-line chimeric chicken made with cryopreserved biastdermal cells, the experiments were carried out to optimize cryopreservating conditions. Stage X biastdemal cells were collected from KNC embryos and dissociated. Cells were susupended in medium containing cyopretectant and fetal bovine serum(FBS), and distributed into plastic ampules. Cell susupensions were seeded to induce ice formation at $-7^{\circ}C$ to $-35^{\circ}C$ at in the experiments, the effect of modification of dissociation way, concentration of FBS and cell density on the vaibility of frezen-thawed cells were investigated by trypan blue exclusion. Then change the way of cell dissociation from pipetting to short time vortexing, viability of frozen-thawed cell tended to be increaced from 29 % to 52 %. Increase concentraition of FBS in frozen medium from 20 % to 80 % made viability of thawed cell from 28 % to 35 %. The viability of thawed cells were 33.9% frozen at 2 embryos/0.5 ml, and 43.6 % frozen at 20 embryos/0.5 ml. Furthermore, combination of three modifications make big improvement. The viability of frozen-thawed cell was 60 % for combinated method, and 41 % for general method. This result means the advance to practical cryoreservation of blastdermal cell of the KNC(Ogolgye breed).

Evaluation of mechanical characteristics of marine clay by thawing after artificial ground freezing method (인공동결공법 적용 후 융해에 따른 해성 점토지반의 역학적 특성 평가)

  • Choi, Hyun-Jun;Lee, Dongseop;Lee, Hyobum;Son, Young-Jin;Choi, Hangseok
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.21 no.1
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    • pp.31-48
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    • 2019
  • The artificial ground freezing (AGF) method is a groundwater cutoff and/or ground reinforcement method suitable for constructing underground structures in soft ground and urban areas. The AGF method conducts a freezing process by employing a refrigerant circulating through a set of embedded freezing pipes to form frozen walls serving as excavation supports and/or cutoff walls. However, thermal expansion of the pore water during freezing may cause excessive deformation of the ground. On the other hand, as the frozen soil is thawed after completion of the construction, mechanical characteristics of the thawed soil are changed due to the plastic deformation of the ground and the rearrangement of soil fabric. This paper performed a field experiment to evaluate the freezing rate of marine clay in the application of the AGF method. The field experiment was carried out by circulating liquid nitrogen, which is a cryogenic refrigerant, through one freezing pipe installed at a depth of 3.2 m in the ground. Also, a piezo-cone penetration test (CPTu) and a lateral load test (LLT) were performed on the marine clay before and after application of the AGF method to evaluate a change in strength and stiffness of it, which was induced by freezing-thawing. The experimental results indicate that about 11.9 tons of liquid nitrogen were consumed for 3.5 days to form a cylindrical frozen body with a volume of about $2.12m^3$. In addition, the strength and stiffness of the ground were reduced by 48.5% and 22.7%, respectively, after a freezing-thawing cycle.