• 제목/요약/키워드: Energy Deposition

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정상 혈당을 가진 여자노인에서의 인슐린 수준 관련 요인분석 (Analysis of the Fasting Insulin Level Associating factors in Elderly Females with Normal Glycemic Control)

    • Journal of Nutrition and Health
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    • 제35권10호
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    • pp.1060-1069
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    • 2002
  • High insulin level is known to be a risk factor of coronary heart disease. High insulin level with normal glycemic control is known to be an indicator for insulin resistance. This study was aimed to find out the influencing factors for the fasting serum insulin levels in elderly females with normal glycemic control. One hundred thirty-eight older females aged over 60 years without diabetes medication and high blood HBA1c level were examined on the serum fasting insulin concentration, anthropometry and asked about nutrient intake and exercise habits. The elderly were categorized into 3 group according to the fasting insulin level. The high insulin group was in a state of hyperinsulinemia. Except vitamin C, the nutrient intakes showed no difference according to fasting serum insulin level. But the intakes of calorie and protein per kg body weight were significantly lower in the high insulin group. The intakes of most nutrients except vitamin B$_1$, C and niacin were lower than the korean RDA in all the insulin group. Especially, the intakes of vitamin B$_1$ and Ca were below 75% of the korean RDA. Weight, BMI, body fat percent, body fat mass and fat-free mass, circumferences of waist and hip, WHR of elderly females were significantly higher in the group with the highest insulin level. The body fat percent in the highest insulin group was 35.8%. showing a state of obesity. The high insulin group showed higher proportion of low exercise frequencies per week and short exercise duration. Therefore, the mean energy expenditure for exercise were lower in this group, showing a state of very low exercise activity. Age and waist circumference in elderly females could explain to the 14.5% variances of the fasting insulin level according to multiple stepwise regression. It can be concluded that aging and central body fat deposition influence independently the serum fasting insulin level in elderly females with normal glucose level.

천연해수 중 전류밀도 변화에 따라 형성된 환경친화적인 전착 코팅막의 특성 분석 (Properties Analysis of Environment Friendly Electrodeposit Films Formed at Various Current Density Conditions in Natural Seawater)

  • 이찬식;배일용;김기준;문경만;이명훈
    • 한국표면공학회지
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    • 제37권5호
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    • pp.253-262
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    • 2004
  • Calcareous deposits are the consequence of pH increase of the electrolyte adjacent to metal surface affected by cathodic current in seawater. It obviously has several advantages over conventional coatings, since the calcareous deposit coating is formed from coating (Mg$^{2+}$, $Ca^{2+}$) naturally existing in seawater. In consideration of this respect, environment friendly calcareous deposit films were formed by an electro deposition technique on steel substrates submerged in 48$^{\circ}C$ natural seawater. And the influence of current density, coating time and attachment of steel mesh on composition ratio, structure and morphology of the electrodeposited films were investigated by Scanning Electron Microscopy(SEM), Energy Dispersive Spectroscopy(EDS) and X-Ray Diffractor(XRD), respectively. Accordingly, this study provides a better understanding of the composition between the growth of $Mg(OH)_2$ and $CaCO_3$ during the formation of electro deposit films on steel substrate under cathodically electrodeposition in $48^{\circ}C$ natural seawater. The Mg compositions, in general, are getting decreased regardless of current density but Ca compositions are getting increased as electrodeposition time runs. That is, $Mg(OH)_2$ compounds of brucite structure shaped as flat type is formed at the initial stage of electrodeposition, but CaCO$_3$ compounds of aragonite structure shaped as flower type is formed in large scale. Besides, $Mg(OH)_2$ compounds were much formed at 5 A/$\m^2$ environment condition compared to the 3 A/$\m^2$ and 4 A/$\m^2$ environment conditions. This is because that OH- which was comparatively largely generated at the metal surface is preferably combined with $Mg^{2+}$TEX>.

용융알루미늄 도금 강판 상에 스퍼터링법으로 형성된 마그네슘 코팅막에 의한 내식성 향상 (Improvement of Corrosion Resistance by Mg Films Deposited on Hot Dip Aluminized Steel using a Sputtering Method)

  • 박재혁;김순호;정재인;양지훈;이경황;이명훈
    • 한국표면공학회지
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    • 제51권4호
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    • pp.224-230
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    • 2018
  • In this study, Mg films were prepared on hot dip aluminized steel (HDA) by using a sputtering method as a high corrosion resistance coating. The corrosion resistance of the Mg films was improved by controlling the morphology and the crystal structure of films by adjusting the Ar gas pressure during the coating process. Anodic polarization measurement results confirm that the corrosion resistance of the Mg films was affected by surface morphology and crystal structure. The corrosion resistance of the Mg coated HDA specimen increased with decreasing crystal size of the Mg coating and it was also improved by forming a film with denser morphology. The crystal structure oriented at Mg(101) plane showed the best corrosion resistance among crystal planes of the Mg metals, which is attributed to its relatively low surface energy. Neutral salt spray test confirmed that corrosion resistance of HDA can be greatly improved by Mg coating, which is superior to that of HDG (hot dip galvanized steel). The reason for the improvement of the corrosion resistance of Mg films on hot dip aluminized steel was due to the barrier effect by the Mg corrosion products formed by the corrosion of the Mg coating layer.

염료감응형 태양전지용 나노두께 Pt와 Ru 상대전극의 물성 (Property of Counter Electrode with Pt and Ru Catalyst Films for Dye-Sensitized Solar Cell)

  • 노윤영;유병관;유기천;고민재;송오성
    • 대한금속재료학회지
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    • 제50권3호
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    • pp.243-247
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    • 2012
  • A ruthenium (Ru) catalytic layer and a conventional Pt layer were assessed as counter electrodes (CE) for dye sensitized solar cells (DSSCs). Ru films with different thicknesses of 34, 46, and 90 nm were deposited by atomic layer deposition (ALD). Pt layers with the same thicknesses were prepared by sputtering. $0.45cm^2$ DSSCs were prepared and their properties were characterized by FE-SEM, cyclic voltammetry (CV), impedance spectroscopy (EIS), and current-voltage (I-V). FE-SEM revealed that the crystallized Ru films and Pt films had been deposited quite conformally. CV showed that the catalytic activity of Pt was much greater than that of Ru. In addition, although the catalytic activity of Pt did not depend on the thickness, that of Ru showed an increase with increasing thickness. Impedance analysis revealed high charge transfer resistance at the Ru interface and a decrease with increasing Ru thickness, whereas Pt showed low resistance with no thickness dependence. Despite the relatively small catalytic activity of Ru, the I-V result revealed the average energy conversion efficiency of Ru and Pt to be 2.98% and 6.57%, respectively. These results suggest that Ru can be used as counter electrodes in DSSCs due to its extremely low temperature process compatibility.

VRS/RTK GPS 측량을 통한 태안해안국립공원 해빈과 해안사구의 지형변화 - 학암포와 안면 해안을 사례로 - (Morphological changes of the beach and dune of The Taeanhaean National Park using VRS/RTK GPS - a case of Hakampo and Anmyeon beach -)

  • 박정원;오선관;서승직;서종철
    • 한국지형학회지
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    • 제19권2호
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    • pp.161-172
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    • 2012
  • 태안해안국립공원은 파랑의 에너지가 큰 해안과 조차가 큰 해안이 공존하고 있어, 갯벌, 모래해빈, 해안사구, 해식애 등의 해안지형이 잘 나타나고 해안생태계의 다양성이 매우 높다. 그러나 무분별한 모래채취와 인공구조물의 설치 등으로 인해 해빈과 해안사구의 침식이 심각한 실정이다. 이러한 문제의 원인을 파악하기 위해서는 현황에 대한 정확한 이해가 선행되어야 하는데, 해안에서의 이러한 변화를 정확히 계측하기 위해, 본 연구에서는 VRS 방식의 RTK GPS를 이용해 학암포 해안과 안면(창정교) 해안을 대상으로 3차례의 주기적인 측량을 실시하였고 장기적인 해안지형변화 모니터링을 위한 VRS 측량의 활용 가능성을 제시하였다.

충남분지 충전물의 층서, 퇴적시기, 조성에 관한 고찰 (A Review on the Stratigraphy, Depositional Age, and Composition of the Chungnam Basin Fills)

  • 이효종;박승익;최태진
    • 자원환경지질
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    • 제52권5호
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    • pp.357-366
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    • 2019
  • 대동누층군은 삼첩기 송림조산운동과 쥬라기 대보조산운동으로 대표되는 두 차례의 광역적인 중생대 지각변형과 관련하여 퇴적되었다. 한반도 남부의 대동누층군을 대표하는 충남분지 충전물은 전기-중기 중생대의 한반도 지질진화사를 이해하는데 있어 매우 중요한 연구 대상이다. 식물화석 및 고지자기를 기반으로 한 과거 연구들은 충남분지 충전물의 퇴적시기가 대체로 후기 삼첩기로부터 전기 쥬라기 사이에 해당하는 것으로 해석하였다. 그러나 저어콘 U-Pb 연대측정 결과에 기반한 퇴적시기가 기존의 해석과 불일치함에 따라 충남분지의 발달과 조산운동과의 관계에 대한 논쟁의 여지가 있어 왔다. 본 논문은 충남분지 충전물의 퇴적시기, 층서, 조성에 대한 최근까지의 연구결과를 다루면서, 분지발달 모델이 갖는 문제점을 함께 고찰하였다.

금속 3D 프린팅 적층제조(AM) 공정 시뮬레이션 기술에 관한 고찰(II) (Investigation to Metal 3D Printing Additive Manufacturing (AM) Process Simulation Technology (II))

  • 김용석;최성웅;양순용
    • 드라이브 ㆍ 컨트롤
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    • 제16권3호
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    • pp.51-58
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    • 2019
  • The objective of this study was to investigate a simulation technology for the AM field based on ANSYS Inc.. The introduction of metal 3D printing AM process, and the examining of the present status of AM process simulation software, and the AM process simulation processor were done in the previous study (part 1). This present study (part 2) examined the use of the AM process simulation processor, presented in Part 1, through direct execution of Topology Optimization, Ansys Workbench, Additive Print and Additive Science. Topology Optimization can optimize additive geometry to reduce mass while maintaining strength for AM products. This can reduce the amount of material required for additive and significantly reduce additive build time. Ansys Workbench and Additive Print simulate the build process in the AM process and optimize various process variables (printing parameters and supporter composition), which will enable the AM to predict the problems that may occur during the build process, and can also be used to predict and correct deformations in geometry. Additive Science can simulate the material to find the material characteristic before the AM process simulation or build-up. This can be done by combining specimen preparation, measurement, and simulation for material measurements to find the exact material characteristics. This study will enable the understanding of the general process of AM simulation more easily. Furthermore, it will be of great help to a reader who wants to experience and appreciate AM simulation for the first time.

SM45C재의 PVD코팅과 필름에 의한 트라이볼러지 특성 (Variations in Tribological Characteristics of SM45C by PVD Coating and Thin Films)

  • 심현보;서창민;김종형;서민수
    • 한국해양공학회지
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    • 제32권6호
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    • pp.502-510
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    • 2018
  • In order to accumulate data to lower the friction coefficient of a press mold, tribological tests were performed before and after coating SM45C with a PVC/PO film and plasma coating (CrN, concept). The ultrasonic nanocrystal surface modification (UNSM)-treated material had a nano-size surface texture, high surface hardness, and large and deep compressive residual stress formation. Even when the load was doubled, the small amount of abrasion, small weight of the abrasion, and width and depth of the abrasion did not increase as much as those of untreated materials. A comparison of the weight change before and after the tribological test with the CrN and the concept coating material and that of the untreated material showed that the wear loss of the concept coating material and P-UNSM treated material (that is, the UNSM treated material treated with the concept coating) showed a tendency to decrease by approximately 55-75%. Concept 100N had a lower friction coefficient of about 0.6, and P-UNSM-30-100N showed almost the same curve as concept 100N and had a low coefficient of friction of about 0.6. The concept multilayer coating had a thickness of $5.32{\mu}m$. In the beginning, the coefficient of friction decreased because of the plasma coating, but it started to increase from about 250-300 s. After about 350 s, the coefficient of friction tended to approach the friction coefficient of the SM45C base metal. The SGV-280F film-attached test specimen was slightly pushed back and forth, but the SM45C base material was not exposed due to abrasion. The friction coefficient was 0.22, which was the lowest, and the tribological property was the best in this study.

산소환원반응을 위한 탄화철이 내재된 질소 도핑된 탄소의 제조 (Synthesis of Fe3C-Embedded Nitrogen Doped Carbon for Oxygen Reduction Reaction)

  • 이영근;안건형;안효진
    • 한국재료학회지
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    • 제28권11호
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    • pp.640-645
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    • 2018
  • The design of non-precious electrocatalysts with low-cost, good stability, and an improved oxygen reduction reaction(ORR) to replace the platinium-based electrocatalyst is significant for application of fuel cells and metal-air batteries with high energy density. In this study, we synthesize iron-carbide($Fe_3C$) embedded nitrogen(N) doped carbon nanofiber(CNF) as electrocatalysts for ORRs using electrospinning, precursor deposition, and carbonization. To optimize electrochemical performance, we study the three stages according to different amounts of iron precursor. Among them, $Fe_3C$-embedded N doped CNF-1 exhibits the most improved electrochemical performance with a high onset potential of -0.18 V, a high $E_{1/2}$ of -0.29 V, and a nearly four-electron pathway (n = 3.77). In addition, $Fe_3C$-embedded N doped CNF-1 displays exellent long-term stabillity with the lowest ${\Delta}E_{1/2}=8mV$ compared to the other electrocatalysts. The improved electrochemical properties are attributed to synergestic effect of N-doping and well-dispersed iron carbide embedded in CNF. Consequently, $Fe_3C$-embedded N doped CNF is a promising candidate for non-precious electrocatalysts for high-performance ORRs.

Enhanced oxidative stability of meat by including tannin-rich leaves of woody plants in goat diet

  • Garcia, Elisa Mariana;Lopez, Agustin;Zimerman, Maria;Hernandez, Olegario;Arroquy, Jose Ignacio;Nazareno, Monica Azucena
    • Asian-Australasian Journal of Animal Sciences
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    • 제32권9호
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    • pp.1439-1447
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    • 2019
  • Objective: The aim of this study was to evaluate the effect of dietary incorporation of tanninrich woody species on meat oxidative stability, carcass traits and meat quality in goats. Methods: Two tannin-rich species were tested using a three-treatments feeding trial, where treatments consisted of: Larrea divaricata and Acacia aroma both at 12.5% in dry matter basis of the diet and a control diet (alfalfa hay). All feeding diets were iso-protein and iso-energy. Carcass conformation, carcass compactness, carcass fatness and subcutaneous fat deposition were evaluated. Intake, liveweigh, Longissimus thoracis et lumborum muscles of goats were analyzed in order to evaluate quality parameters such as pH value, instrumental color evaluation, water holding capacity, total phenolic content, antioxidant activity, meat oxidative stability and fatty acid profiles in meat. Results: Feed intake, liveweight gain, carcass, and meat traits did not differ among treatments. Changes in meat lipid profile among treatments were observed for oleic and elaidic acid contents. Meat total phenolic content and antioxidant activity did not differ among treatments; although, meat oxidative status after storage at room temperature, as well as under refrigerated and frozen conditions were different between control and both supplemented groups. Conclusion: The inclusion of Acacia aroma and Larrea divaricata leaves in goat diet enhanced meat oxidative stability. Modulation of the ruminal biohydrogenation of fatty acids produced by condensed tannins of these plant species need to be further investigated.