• Title/Summary/Keyword: dissolution properties

검색결과 385건 처리시간 0.033초

시차주사열량측정법에 의한 니켈기 초내열 합금의 열분석 (Thermal Analysis of Nickel-Base Superalloys by Differential Scanning Calorimetry)

  • 윤지현;오준협;김홍규;윤존도
    • 한국재료학회지
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    • 제26권5호
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    • pp.235-240
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    • 2016
  • Appropriate thermo-mechanical properties of nickel-based superalloys are achieved by heat treatment, which induces precipitation and solid solution hardening; thus, information on the temperature ranges of precipitation and dissolution of the precipitates is essential for the determination of the heat treatment condition. In this study, thermal analyses of nickel-based superalloys were performed by differential scanning calorimetry method under conditions of various heating rates of 5, 10, 20, or 40K/min in a temperature range of 298~1573K. Precipitation and dissolution temperatures were determined by measuring peak temperatures, constructing trend lines, and extrapolating those lines to the zero heating rate to find the exact temperature under isothermal condition. Determined temperatures for the precipitation reactions were 813, 952, and 1062K. Determined onset, peak, and offset temperatures of the first dissolution reaction were 1302, 1388, and 1406K, respectively, and those values of the second dissolution reaction were 1405, 1414, and 1462K. Determined solvus temperature was 1462K. The study showed that it was possible to use a simple method to obtain accurate phase transition temperatures under isothermal condition.

액상 콜린알포세레이트의 고형 제제화 연구 (Formulation of Liquid Choline Alphoscerate as a Solid Dosage Form)

  • 최성업;조성완
    • 한국산학기술학회논문지
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    • 제14권12호
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    • pp.6324-6329
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    • 2013
  • 본 연구에서는 액상 형태인 콜린알포세레이트를 알루미늄마그네슘규산화합물에 흡착시켜 고형의 제형화가 가능한 콜린알포세레이트를 함유하는 정제의 제조하고 평가하였다. 정제는 콜린알포세레이트 대비 흡착제의 비율을 달리하여 제조하고, 물리적 특성 및 용출률을 조사하였다. 정제의 타정성과 용출률을 고려할 때 흡착제는 주성분 대비 50~75%가 적절하였다. 주성분 대비 62.5%의 흡착제를 사용한 제제에서 정제의 경도, 붕해, 마손도 시험, 용출곡선하면적 비율 결과가 가장 우수하였다. 알루미늄마스네슘규산화합물은 액상 약물의 고형화 설계 시 좋은 소재가 될 수 있을 것이다.

The Enhanced Physico-Chemical and Electrochemical Properties for Surface Modified NiO Cathode for Molten Carbonate Fuel Cells (MCFCs)

  • Choi, Hee Seon;Kim, Keon;Yi, Cheol-Woo
    • Bulletin of the Korean Chemical Society
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    • 제35권5호
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    • pp.1305-1311
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    • 2014
  • The nickel oxide, the most widely used cathode material for the molten carbonate fuel cell (MCFC), has several disadvantages including NiO dissolution, poor mechanical strength, and corrosion phenomena during MCFC operation. The surface modification of NiO with lanthanum maintains the advantages, such as performance and stability, and suppresses the disadvantages of NiO cathode because the modification results in the formation of $LaNiO_3$ phase which has high conductivity, stability, and catalytic activity. As a result, La-modified NiO cathode shows low NiO dissolution, high degree of lithiation, and mechanical strength, and high cell performance and catalytic activity in comparison with the pristine NiO. These enhanced physico-chemical and electrochemical properties and the durability in marine environment allow MCFC to marine application as a auxiliary propulsion system.

압출-구형화 공정에 의한 구형과립제조의 제형향인자 검토 (제1보) (Effects of Some Factors on the Preparation of Spherical Particles by Extrusion-spheronization Processing. I)

  • 이강춘;민신홍;이상의;김용배;이철우
    • 약학회지
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    • 제18권4호
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    • pp.236-242
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    • 1974
  • Extrusion-spheronization processing combination was used to produce spherical granules with experimental formulations which contain microcrystalline cellulose as a diluent. The produced granules were compared on the basis of the following physical properties ; (a) bulk density, (e) porosity, (f) friabillity and (g) dissolution rate. With the specific experimental formulations used in this study, the increased plate rotational speeds of Marumerizer (400-1200rpm) produced continually more spherical material and also the obtained data indicated that the particle size distribution and dissolution rate depend upon the amount of microcrystalline cellulose used. As a result, the spherical granule preparation with microcrystalline cellulose has good properties in flow rate, packing propertyu and friability and offers a suitable method of granule preparation in pharmaceutical industry.

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Effect of nano-stabilizer on geotechnical properties of leached gypsiferous soil

  • Bahrami, Reza;Khayat, Navid;Nazarpour, Ahad
    • Geomechanics and Engineering
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    • 제23권2호
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    • pp.103-113
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    • 2020
  • Gypsiferous soils classified as problematic soils due to the dissolution of gypsum. Presence of gypsum in the soils texture subjected to steady flow can cause serious damages for the buildings, roads and water transmission canals. Therefore, researchers have conducted a series of physical, mechanical and microstructural laboratory tests to study the effect of gypsum leaching on the geotechnical properties of a lean clay containing 0%, 3%, 6%, 9%, 12%, and 15% raw gypsum. In addition, a combination of two nano-chemical stabilizers named Terrasil and Zycobond was used in equal proportions to stabilize the gypsiferous clayey samples. The results indicated that gypsum leaching considerably changed the physical and mechanical properties of gypsiferous soils. Further, adding the combination of Terrasil and Zycobond nano-polymeric stabilizers to the gypsiferous soil led to a remarkable reduction in the settlement drop, compressibility, and electrical conductivity (EC) of the water passing through the specimens, resulting in improving the engineering properties of the soil samples. The X-ray diffraction patterns indicate that stabilization by terrasil and zycobond causes formation of new peaks such as CSH and alteration of pure soil structure by adding raw gypsum. Scanning electron microscope (SEM) images show the denser texture of the soil samples due to chemical stabilization and decrease of Si/Al ratio which indicates by Energy dispersive X-ray (EDS) interpretation, proved the enhance of shear strength in stabilized samples.

Drug Polymorphism and its Importance on Drug Development Process

  • Jeong, Seong-Hoon;Youn, Yu-Seok;Shin, Beom-Soo;Park, Eun-Seok
    • Journal of Pharmaceutical Investigation
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    • 제40권spc호
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    • pp.9-17
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    • 2010
  • Polymorphism has been recognized to be a critical issue throughout the drug product development process. Most of solid phase drugs have polymorphism, which has generated a great deal of interest and the field has been evolving rapidly. Preferably, thermodynamically most stable form of a drug substance is selected to obtain consistent bioavailability over its shelf life and various storage conditions. Moreover, it has the lowest potential for conversion from one polymorphic form to another. However, metastable or amorphous forms may be used intentionally to induce faster dissolution rate for rapid drug absorption and higher efficacy. For pharmaceutical industry, polymorphism is one of the key activities in form selection process together with salt selection. This article introduces the main features in the investigation of solid form selection especially polymorphic behavior with thermodynamic backgrounds, physicochemical properties with solubility, dissolution, and mechanical properties, and characterization techniques for proper analysis. The final form can be recommended based on the physicochemical and biopharmaceutical properties and by the processability, scalability and safety considerations. Pharmaceutical scientists especially in charge of formulation need to be well aware of the above issues to assure product quality.

EFFECT OF MICROSTRUCTURE ON MECHANICAL PROPERTIES IN FRICTION STIR WELDED CAST A356 ALUMINUM ALLOY

  • Sato, Yutaka S.;Kaneko, Takayasu;Urata, Mitsunori;Kokawa, Hiroyuki
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2002년도 Proceedings of the International Welding/Joining Conference-Korea
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    • pp.493-498
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    • 2002
  • Friction stir welding (FSW) is a relatively new solid-state joining process which can homogenize the heterogeneous microstructure by intensely plastic deformation arising from the rotation of the welding tool. The present study applied the FSW to an A356 aluminum (AI) alloy with the as-cast heterogeneous microstructure in the T6 temper condition, and examined an effect of microstructure on mechanical properties in the weld. The base material consisted of Al matrix with a high density of strengthening precipitates, large eutectic silicon and a lot of porosities. The FSW led to fragment of the eutectic silicon, extinction of the porosities and dissolution of the strengthening precipitates in the Al alloy. The dissolution of strengthening precipitates reduced the hardness of the weld around the weld center and the transverse ultimate tensile strength of the weld. Longitudinal tensile specimen containing only the stir zone showed the roughly same strength as the base material and a much larger elongation. Moreover, Charpy impact tests indicated that the stir zone had remarkably the higher absorbed energy than the base material. The higher mechanical properties of the stir zone were attributed to a homogenization of the as-cast heterogeneous microstructure by FSW.

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The Electrochemical Properties and Mechanism of Formation of Anodic Oxide Films on Mg-Al Alloys

  • Kim, Seong-Jong;Okido, Masazumi
    • Bulletin of the Korean Chemical Society
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    • 제24권7호
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    • pp.975-980
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    • 2003
  • The electrochemical properties and the mechanism of formation of anodic oxide films on Mg alloys containing 0-15 mass% Al, when anodized in NaOH solution, were investigated by focusing on the effects of anodizing potential, Al content, and anodizing time. The intensity ratio of Mg(OH)₂ in the XRD analysis decreased with increasing applied potential, while that of MgO increased. Mg(OH)₂ was barely detected at 80 V, while MgO was readily detected. The anti-corrosion properties of anodized specimens at each constant potential were better than those of non-anodized specimens. The specimen anodized at an applied potential of 3 V had the best anti-corrosion property. The intensity ratio of the β phase increased with aluminum content in Mg-Al alloys. During anodizing, the active dissolution reaction occurred preferentially in β phase until about 4 min, and then the current density increased gradually until 7 min. The dissolution reaction progressed in α phase, which had a lower Al content. In the anodic polarization test in 0.017 mol·$dm^{-3}$ NaCl and 0.1 mol·$dm^{-3}$ Na₂SO₄ at 298 K, the current density of Mg-15 mass% Al alloy anodized for 10 min increased, since the anodic film that forms on the α phase is a non-compacted film. The anodic film on the α phase at 30 min was a compact film as compared with that at 10 min.

속방형 및 용출조절형 비타민 C 정제의 용출 특성 비교 분석 (Comparative Study of Dissolution Properties of Immediate-release and Controlled-release Type Vitamin C Tablets)

  • 양효진;류나희;양주홍;홍선호;이연경;조양희
    • 한국식품위생안전성학회지
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    • 제37권2호
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    • pp.114-120
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    • 2022
  • 본 연구에서는 체내에서 비타민 C의 지속성을 나타내기 위해 성분의 용출을 조절하는 기술이 적용된 용출조절형 비타민 C 제품과 일반적인 속방형 비타민 C 제품의 비교용출 실험을 진행하여, 일반적인 속방형 제품과 용출조절형 제품 간의 용출 양태를 비교분석 하였다. 비타민 C 정제들의 용출률을 확인하기 위해 '대한약전(제2020-88호)', '경구용의약품의 용출규격 설정 가이드라인'의 용출시험법, '건강기능식품의 기준 및 규격 고시(제2020-63호)'에 근거한 HPLC 함량시험을 수행하여 시간별 용출률을 분석하였다. 분석 결과 속방형 비타민 C 제품은 45분 이후 100% 용출이 이루어진 반면 용출조절형 비타민 C 제품은 480분(8시간) 이후에 100% 용출이 나타났으며, 용출조절형 비타민 C 제품의 60분에서의 용출률이 속방형 비타민 C 제품에 비해 더 느리게 나타나는 것을 확인하였다. 이러한 결과를 바탕으로 비타민 C를 주성분으로 한 용출조절형 정제의 개발 및 용출분석이 가능함을 확인하였다.

마그네타이트 (Fe3O4) 전극의 제조와 전기화학 특성 (Manufacture of magnetite (Fe3O4) electrode and its electrochemical properties)

  • 김명진;김동진;김홍표
    • Corrosion Science and Technology
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    • 제14권1호
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    • pp.19-24
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    • 2015
  • 지금까지 마그네타이트 전극의 제조 방법과 전기화학적 특성에 대해 살펴보았다. 마그네타이트 전극을 제조하는 방법은 프레스법, 페이스트법, 전기도금법 등이 있으며, 이들의 전기화학 특성은 다음과 같이 정리할 수 있다. 1. Cycle voltammetry 실험을 통하여 애노딕, 캐소딕 분극 방향으로 각각 2개의 peak가 관찰되고, 이것은 $Fe_3O_4$$Fe(OH)_2$, FeO 등의 중간 산화물 형태를 거쳐 $Fe^{2+}$로 용해되는 반응들이다. 2. 산성 및 중성 용액에서는 마그네타이트의 환원적 용해가, 염기성 용액에서는 헤마타이트로의 산화 반응이 나타난다. 3. 전기화학 실험 결과와 마그네타이트 용해도를 관련시키기 위해서는 마그네타이트 용해가 일어나는 전위에서 실험 후, 용액에서 $Fe^{2+}$, $Fe^{3+}$ 이온들에 대한 분석이 필요하다.