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이영석,이건직,박권필 順天大學校 1999 論文集 Vol.18 No.1
This study focused on the increase of lime plate strength by adding reinforced material into limestone and chemical reaction with carbon dioxide gas. Also we did experiment to find the optimum content of plaster as a binding component. Carbon fiber as reinforced material has disadvantages. It did not mixed well in the forming process and had low cohesion force with limestone. Content of glass fiber showed optimum at 1.0cm, 4.16 wt% in lime plate. The increase of strength in lime plate was ??, after reaction with CO₂at 70℃ for 6hr. When lime plate consists of 40wt% of plaster, 4.16 wt% of 1.0cm glass fiber, its strength was ??
이현직 ( Lee Hyeon-jik ),백성진 ( Baek Sung-jin ),이승민 ( Lee Seung-min ),임군수 ( Lim Gun-su ),김종 ( Kim Jong ),한민철 ( Han Min-cheol ) 한국건축시공학회 2023 한국건축시공학회 학술발표대회 논문집 Vol.23 No.1
In this study, light-heat generating materials were produced in two ways, and the performance of two light-generating insulation sheets was reviewed. As a result of the experiment, it was possible to confirm the improved heating performance of the light heating insulation sheet compared to the existing bubble sheet. The light heat insulation sheet (b) showed improved thermal properties compared to the existing bubble sheet, and it is believed that the temperature has increased due to the combined effect of initial hydration heat and heat generation after installation. In future studies additional experiments are needed to compensate for the insufficient insulation performance due to the single bubble sheet through the double bubble sheet and to adjust the amount of light-generating materials added as a consideration of the optimal heat-generating effect of the light-generating insulation sheet (b).
Synthesis and Characterization of Cubic Boron Nitride Thin Films Using the ME - ARE Method
Yoon, Jae Hong,Sugimoto, Katsuhisa,Byon, Eung Sun,Lee, Sung Hun,Lee, Gun Hwan,Lee, Eung Jik,Sung, Chang Mo,Lee, Sang Ro 대한금속재료학회(대한금속학회) 2000 METALS AND MATERIALS International Vol.6 No.5
Cubic boron nitride (cBN) films were deposited by a magnetically enhanced activated reactive evaporation (ME-ARE) technique. Pulsed DC instead of r.f. power was used to bias the substrate. The effect of deposition parameters such as substrate bias voltage, plasma discharge current and gas flow ratio on the formation of cBN was investigated. BN films were characterized by FTIR and TEM. CBN films with a high content of cubic phase were successfiolly synthesized. It was found that formation of cBN film requires the bambardment of ions with both high flux and high energy. TEM observation showed that the cBN film had grain sizes of 15-50 ㎚ and that a non-cubic phase BN, 10-15 ㎚ was initially grown.
( Gun Ha Park ),( Chang Min Lee ),( Jae Won Song ),( Moon Chan Jung ),( Jwa Kyung Kim ),( Young Rim Song ),( Hyung Jik Kim ),( Sung Gyun Kim ) 대한내과학회 2018 The Korean Journal of Internal Medicine Vol.33 No.3
Background/Aims: Tolvaptan is a very effective treatment for hypervolemic or euvolemic hyponatremia. We compared the clinical efficacy of and response to tolvaptan in patients with the syndrome of inappropriate antidiuretic hormone secretion (SIADH) and congestive heart failure (CHF). Methods: We retrospectively reviewed the medical records of 50 patients (SIADH, n = 30; CHF, n = 20) who were prescribed tolvaptan between July 2013 and October 2015. Tolvaptan was prescribed when the serum sodium level was < 125 mmol/L and the standard treatment failed. Normonatremia was defined as a serum sodium level of > 135 mmol/L. Results: After the initiation of tolvaptan therapy, there was an immediate response in the urine volume and serum sodium level in all patients. The improvements in the urine volume and serum sodium concentration were highest within the first 24 hours of treatment. In addition, the mean change in the serum sodium level during the first 24 hours was significantly higher in patients with SIADH than in those with CHF (ΔNa, 9.9 ± 4.5 mmol/L vs. 6.9 ± 4.4 mmol/L, respectively; p = 0.025). Also, the mean maintenance dose was lower, and the total duration of tolvaptan use was slightly shorter in the SIADH group than CHF group (21.5 ± 14.9 days vs. 28.0 ± 20.1 days, p = 0.070). Conclusions: The early response to tolvaptan treatment was better in patients with SIADH than in those with CHF. Thus, the tolvaptan treatment strategy should be differed between patients with SIADH and those with CHF.
Analysis of the Structural Failure of Marine Propeller Blades
Lee, Chang-Sup,Kim, Yong-Jik,Kim, Gun-Do,Nho, In-Sik The Society of Naval Architects of Korea 2002 Journal of ship and ocean technology Vol.6 No.3
A series of detailed study was performed to identify the sources of the propeller blade failure and resolve the problem systematically, by use of the theoretical tools and by the direct measurement and observation in the full-scale sea trials. The selection of inexperienced propulsion control system with a reversible gear system is shown to cause the serious damage to the propeller blades in crash astern maneuver, when the rotational direction of the propeller is changed rapidly. Quasi-steady analysis for propeller blade strength using FEM code in bollard backing condition indicates that the safety factor should be order of 18∼20 to avoid the structural failure for the selected propeller geometry and reduction gear system.
Lee, Byung-Hyun,Kim, Yong-Il,Kim, Bong-Soo,Woo, Dong-Soo,Park, Yong-Jik,Park, Dong-Gun,Lee, Si-Hyung,Rho, Yong-Han The Korean Institute of Electrical and Electronic 2008 Transactions on Electrical and Electronic Material Vol.9 No.1
In this study, we investigated effects of hydrogen annealing (HA) and plasma nitridation (PN) applied in order to improve $Si/SiO_2$ interface characteristics of TiN metal gate. In result, HA and PN showed a positive effect decreasing number of interface state $(N_{it})$ respectively. After FN stress for verifying reliability, however, we identified rapid increase of $N_{it}$ for TiN gate with HA, which is attributed to hydrogen related to a change of $Si/SiO_2$ interface characteristic. In contrast to HA, PN showed an improved Nit and gate oxide leakage characteristic due to several possible effects, such as blocking of Chlorine (Cl) diffusion and prevention of thermal reaction between TiN and $SiO_2$.
김건엽(Gun-Yeob Kim),이연진(Yeon-Jin Lee),조은지(Eun-Ji Cho),이재인(Jae-In Lee),임은채(Eun-Chae Im),황한철(Hancheol Hwang),김상윤(Sang-Yoon Kim),홍성창(Sung-Chang Hong),김진호(Jin-Ho Kim),박성직(Seong-Jik Park) 대한환경공학회 2022 대한환경공학회지 Vol.44 No.11
목적 : 토양에서 암모니아 배출에 미치는 영향에 관한 문헌 고찰을 통하여 주요 요인들을 파악하고, 암모니아 배출감소를 위한 대책을 설립한다. 방법 : 농업, 암모니아, 미세먼지 등의 키워드를 활용하여 학술검색을 수행하였으며, 수집된 문헌에 대하여 토양의 특성이 암모니아 배출에 미치는 영향에 대해서 각 항목별로 정리하였다. 결과 및 토의 : 암모니아의 대기 중으로 배출은 잠재적으로 농업인의 경제적 수익을 감소시킬 뿐만 아니라 초미세먼지(PM2.5) 형성에 전구물질로 작용하여 대기 환경에 부정적인 영향을 미칠 수 있다. 국내 암모니아 주요 배출원 중에서 농업이 차지하는 비중은 78% 정도로 보고되고 있다. 본 연구에서는 토양에서 암모니아 배출은 암모니아 비료의 종류, 토양수분, pH, 온도, 양이온교환용량, 유기물, 토성에 영향을 받는다. 토양수분의 증가는 암모니아 배출량을 증가시킨다. 토양 pH가 증가함에 따라서 암모니아 배출량이 증가하는데 특히 7.5 이상에서 크게 증가한다. 토양 온도의 증가는 요소의 가수분해 속도와 암모니아 가스로 전환하는 속도를 증가시켜 암모니아 배출이 증가한다. 양이온교환용량이 큰 토양은 암모늄을 흡착시켜서 암모니아 배출을 감소시킨다. 점토 함량과 토양 유기물 함량이 높은 토양은 토양 pH 변화에 완충성이 커서 암모니아 배출을 감소시킨다. 결론 : 토양에서 암모니아 배출에 대한 기작 및 원인에 대한 이해를 바탕으로 최적의 토양 관리 및 환경 관리를 통해서 대기 중으로의 암모니아 배출을 저감 할 수 있다. Objectives : Major factors affecting ammonia emission from the soil and strategies to reduce ammonia emission were investigated through literature surveys. Methods : An academic search was conducted using keywords such as agriculture, ammonia, and fine dust, and the effects of soil characteristics on ammonia emission were summarized for each factor. Results and Discussion : Emissions of ammonia into the atmosphere can reduce economic returns for a farmer and negatively impact the atmospheric environment by acting as a precursor to PM2.5 formations. It is reported that agriculture accounts for 78% of the total ammonia emission sources in Korea. Ammonia emission from the soil is affected by the type of ammonia fertilizer, soil moisture, pH, temperature, cation exchange capacity, organic matter, and soil texture. An increase in soil moisture increases ammonia emissions. As soil pH increases, ammonia emissions increase, noticeably above 7.5. An increase in soil temperature increases the rate of hydrolysis of urea and the rate of conversion to ammonia gas, resulting in increased ammonia emissions. Soils with high cation exchange capacity adsorb ammonium to reduce ammonia emissions. Soils with a high clay content and soil organic matter content are more buffered to changes in soil pH, reducing ammonia emissions. Conclusion : Based on understanding the mechanisms and causes of ammonia emission from the soil, it is possible to establish soil and environmental management to reduce ammonia emissions into the atmosphere.