• Title/Summary/Keyword: carbon effect

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The effect of carbon content on hot cracking of low carbon steel weld (저탄소성 용접금속의 응고균열에 미치는 탄소함량의 영향)

  • ;;Masumoto, I.
    • Journal of Welding and Joining
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    • v.6 no.4
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    • pp.16-26
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    • 1988
  • The effect of carbon content on hot cracking of welded carbon steel was investigated Eight steel plates whose carbon content range from 0.02 to 0.23 percent were welded by autogeous gas tungsten are process. Constant strain was applied to the hot crack test specimen under the strain rate of 0.15 mm per second during welding. The hot cracking susceptibility ws high in the rnage of 0.02-0.05 and 0.12-0.23 percent carbon contents. The critical carbon content immune to hot cracking is in the range from 0.07 to 0.12 percent carbon. By electron probe microanalyser, amanganese segregation was not seen significantly in the whole carbon range. But segregation of silicon was higher in the region of low carbon contents. However, sulphur was segregated remarkably in the region betwen 0.18 and 0.23 percent carbon by peritectic reaction. Very smal lamount of dnedritic structure was observed in the region from 0.02 to 0.05 percent carbon by peritectic reaction. Very small amount of dendritic structure was observed in the region from 0.02 to 0.05 percent carbon but the predominant solidification structure was smooth by cellular growth. The higher the carbon content is, the more the columnar dendritic structure was observed.

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Antioxidation Characteristics of Surface-Modified Carbon in ${Al_2}{O_3}$-C Refractory (${Al_2}{O_3}$-C계 내화물에서 표면개질된 탄소의 산화특성)

  • 홍영호;김동한;심광보
    • Journal of the Korean Ceramic Society
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    • v.37 no.6
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    • pp.583-588
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    • 2000
  • Antioxidation characteristics of carbon at high temperature with the co-addition of Al and Si powder in Al2O3-C system refractory were analyzed. The use of surface-modified phosphate carbon as a starting material was found to be very effective in improving the mixing effect of raw materials and antioxidation behavior of carbon. In particular, this effect was dominant at higher temperatures than 130$0^{\circ}C$.

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Analysis of the Impact of Idle Time on the Estimation of Carbon Emissions of Construction Equipment (건설장비의 탄소배출량 산정에 미치는 유휴시간의 영향 분석)

  • Oh, Sangmin;Lee, Dongyoun;Kang, Goune;Cho, Hunhee;Kang, Kyung-In
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2017.05a
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    • pp.193-194
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    • 2017
  • Effect of variable factors on carbon emissions in construction industry is hard to analysis. Therefore this study analyzies effect of variable factors on carbon emissions. This study shows importance of variable factors and emphasizes need of estimation of carbon emissions considering variable factors.

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Study on the mechanical Properties of Carbon Fiber Sheet (탄소섬유쉬트의 재료 역학적 특성에 관한 연구)

  • 이한승
    • Proceedings of the Korea Concrete Institute Conference
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    • 1998.10b
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    • pp.803-808
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    • 1998
  • As carbon fiber is a light-weight materials, high tensile strength and durability compared with rebar, the retrofitting method for RC structures using carbon fiber sheet (CFS) must be use widely. In this paper, the tensile strength test for carbon fiber sheet variable of CF's weight and elastic modulus to evaluate the design tensile strength of carbon fiber sheet which is needed for the strengthening design of CFS and the calculation of strengthening effect. As a result, the design tensile strength of CFS can be calculate using the effect coefficient of strengthening(α) of CFS, the average tensile strength of CFS and the standard deviation of CFS(equation 5)

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The Effect of Carbon on the Hot Corrosion of lron by Sulfur Containing Environment. (철의 고온 황화부식에 미치는 탄소의 영향)

  • 최성필;강성군;백영남
    • Journal of the Korean institute of surface engineering
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    • v.21 no.2
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    • pp.53-67
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    • 1988
  • The high temperature corrosion of Fe-C alloys were studied at I atm SO gas in the temperature range 500~80$0^{\circ}C$ by means of a thermogravimetric analysis. The Na2SO4 induced high tempwrature corrosion rate was also measured at atm O2 gas under above the temperature renge. The reaction products were identified with the aid of X-ray diffraction technique, and micostruction of the alloy/scale interface was observed with a optical microscope and SEM. The experimental results were disussed by the themodeynamic calcutions. Under above the experimental condition. the reaction rates decrbon with increasing carbon content. The transfer of Fe ion was limited by a residue of carbon precipitated at alloy scale interface due to the oxidation of Fe-C alloys at alloy surface. The effect of cold working on reaction rate was different between the Fe containing low carbon and Fe-C Alloy containing carbon above 0,73 wt%. In a cold worked iron containing low carbon content, the crystallization of metal surface leads to the poor adherence between the alloy and the cavity formed between the alloy and scale. The outward diffusion of ion through the scale is estimated to be hindered by the cavity formed between the scale, consequently decreasing reaction rate. In the case Fe-C containing carbon above 0.73 Wt% alloy, the reaction rate was little affected by cold working, because the effect of content on reaction rats is greater than the effect of cold working.

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Effect of Silicon Infiltration on the Mechanical Properties of 2D Cross-ply Carbon-Carbon Composites

  • Dhakate, S.R.;Aoki, T.;Ogasawara, T.
    • Carbon letters
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    • v.5 no.3
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    • pp.108-112
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    • 2004
  • Effect of silicon infiltration on the bend and tensile strength of 2D cross-ply carbon-carbon composites are studied. It is observed that bend strength higher than tensile strength in both types of composite is due to the different mode of fracture and loading direction. After silicon infiltrations bend and tensile strength suddenly decreases of carbon-carbon composites. This is due to the fact that, after silicon infiltration, silicon in the immediate vicinity of carbon forms the strong bond between carbon and silicon by formation silicon carbide and un-reacted silicon as free silicon. Therefore, these composites consist of three components carbon, silicon carbide and silicon. Due to mismatch between these three components secondary cracks developed and these cracks propagate from $90^{\circ}$ oriented plies to $0^{\circ}$ oriented plies by damaging the fibers (i.e., in-situ fiber damages). Hence, secondary cracks and in-situ fiber damages are responsible for degradation of mechanical properties of carbon-carbon composites after silicon infiltration which is revealed by microstructure investigation study by scanning electron microscope.

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Comparison of Carbon Stock Between Forest Edge and Core by Using Connectivity Analysis (연결성 분석을 활용한 산림의 주연부와 내부의 탄소저장량 비교)

  • Sung, Sun-Yong;Lee, Dong-Kun;Mo, Yong-Won
    • Journal of Korean Society of Rural Planning
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    • v.21 no.4
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    • pp.27-33
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    • 2015
  • Forest ecosystem is considered as an important stepping stone to minimize the impact of climate change. However, the rapid urbanization has caused fragmentation of forest ecosystem. The fragmentation of forest patch results in edge effect which brings about adverse impacts on forest function and structure. Degradation of forest ecosystem decreases carbon sequestration because edge effect reduces productivity. Therefore, we analyzed the impact of forest edge effect on forest ecosystem carbon stock change in Seongnam-si, Gyeonggi-do. We used connectivity analysis to determine forest edge and core area. The field study sites were selected with considering forest age, density, class and soil type. Secondly, forest carbon stock was calculated with allometric equation. The soil carbon stock was derived from Walkely-Black method. Lastly, Mann-Whitney test was conducted to validate differences between carbon stock in edge and core area. As a result of study, the connectivity analysis was effective to determine forest edge and core. The core and edge of forest patch showed different composition of tree species and soil properties. Carbon stock per tree in the edge area was lower than that in the core area. However, the difference of soil organic carbon content between the edge and core were relatively small. This assessment can be applied for the conservation of forest patch as well as quantitative assessment on the forest carbon stock change caused by fragmentation.

Effect of Chlorine on PAC Adsorption to Remove Odor Compound in Natural Water (자연수중 이취미 물질의 분말활성탄 흡착시 염소의 영향)

  • Lee, Jeong-Kyu;Kim, Dong-Yeun
    • Journal of Korean Society of Water and Wastewater
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    • v.14 no.4
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    • pp.350-355
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    • 2000
  • Powdered activated carbon(PAC) is widely used to control 2-MIB와 geosmin causing earthy-musty odor in water supplies. It was known that chlorine is one of the chemicals often come into contact with activated carbon. But activated carbon react with chlorine and surface oxide accumulate on carbon surface. As result, adsorption capacity of activated carbon is reduced. To investigate the effect of chlorine on the PAC's ability to adsorb 2-MIB and Geosmin, a series of experiments was carried out to show (1) the effect of aqueous chlorine doses on the ability of PAC to adsorb 2-MIB and Geosmin from Lake Heodong water. (2) the effect of delaying the chlorine addition after PAC had been added (to simulate the effect of using an alternative point of chlorine addition). As a result of experiment, as chlorine dose increased correspondingly decreased the capacity of activated carbon to adsorb 2-MIB and geosmin. Even though previously adsorbed 2-MIB and geosmin released, as result of the application of delaying the chlorine adding was more beneficial than simultaneous adding chlorine with PAC.

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Adsorption of Organic Chemical by Coconut Activated Carbon treated with Zinc Salt (아연염으로 표면처리한 활성탄에 의한 수중 유기화합물의 흡착)

  • 김영규;한진수
    • Journal of environmental and Sanitary engineering
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    • v.10 no.1
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    • pp.132-141
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    • 1995
  • The objectives of this study was to find the effect of zinc salt treated with coconut activated carbon and the effect of humic substance. The bottle- Point technique was used in determining the Freundlich isotherm equation. The adsorptive capacity of granular activated carbon was reduced when humic substance are present. Coconut activated carbon was coated with 0.0001 N zinc chloride decreased the BET surface area but increased the adsorptive capacity more than coconut activated carbon not coated with zinc chloride. The adsorptive capacity of TCE in coconut activated carbon coated with higher concentration of zinc chloride was reduced but increased in the solution containing humic substance when the coconut activated carbon was coated with 0.01 N- zinc chloride. The zinc salt coated with coconut activated carbon did not Increase the adsorptive velocity of coconut activated carbon.

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The Effect of Dimethyl-esculetin on the Serum Transaminase Activity of Rabbit Pretreated with Carbon-tetrachloride (Dimethyl-esculetin이 Carbon-tetrachloride 부하가토혈청 Transaminase 활성도에 미치는 영향)

  • Lee, Ton-Il
    • Korean Journal of Pharmacognosy
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    • v.1 no.4
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    • pp.115-118
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    • 1970
  • Antihepatotoxic effect of dimethyl-esculetin, the major constituent of herbal drug Artemisia capillaris $T_{HUNBERG}$ (Compositae) which has long been used as folk medicine for gall stone and hepatitis in Asian country (China and Japan, except Korea) was investigated on the rabbit intoxicated with carbon-tetrachloride. Ten rabbits were divided into two parts, group A and B in five each. The group A was injected with carbon-tetrachloride, 0.1ml per kg at begining of the experiments for control. The group B was injected with carbon-tetrachloride soon after 7 days treatment of dimethyl-esculetin, 30mg per day. The results obtained in this experiment were as follows.: 1) Antihepatotoxic activity of dimethyl esuletin on the rabbits intoxicated with carbon tetrachloride has shown the serum glutamic oxaloacetic transaminase activity and serum glutamic pyruvic transaminase activity decreased respectively. 2) The component of Artemisia capillaris, dimethyl-esculetin, has shown remarkable antihepatotoxic effect.

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