• 제목/요약/키워드: Magnesium ($Mg^{++}$)

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마그네슘 로드 휠의 유동성형 가공에 관한 연구 (A Study on Flow Forming Process of Magnesium Road Wheel)

  • 김정호;이종주;박수민;윤형석
    • 소성∙가공
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    • 제23권2호
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    • pp.116-121
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    • 2014
  • Low pressure die casting and flow forming have been successfully used to produce sound road wheels from magnesium alloy AM80. In the current study, high speed compression testing was initially conducted to simulate the flow forming of a Mg wheel. Subsequently the flow forming was simulated with "Forge$^{TM}$", an FEM software package. On the basis of flow forming simulations, the flow forming of the Mg wheel was performed under different conditions. For the flow forming experiments, the preform castings were made by low pressure die casting from AM80, a commercial magnesium alloy. In flow forming of the magnesium preform wheel, the flow forming of the Mg wheel was successfully accomplished when the feed rate was less than half that for the forming of an aluminum road wheel. The reduction in feed rate was 52%. Finally, a comparison with the flow forming simulations was made.

수열법에 의한 수산화 마그네슘의 합성과 표면개질 (Synthesis and Surface Modification of Magnesium Hydroxide by Hydrothermal Method)

  • 이해용;강국현;이동규
    • 한국응용과학기술학회지
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    • 제29권1호
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    • pp.149-158
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    • 2012
  • 본 연구에서는 올레산을 표면개질제로 사용하여 수열법을 통해 수산화 마그네슘을 합성하였다. 수산화 마그네슘은 알카리 조건에서 올레인산과의 반응을 통해 표면 개질된 마이크로 크기의 플레이크 형상을 갖는다. 수열합성에서 수산화 마그네슘 입자 생성의 조건은 pH, 온도 그리고 반응시간이 표면개질과 입자 형상의 주요 변수임을 확인하였다. 생성된 수산화 마그네슘 입자는 FE-SEM, XRD, FT-IR 그리고 TGA를 통해 확인하였다. 유기 용매 내에서의 분산성의 확인은 개질되지 않은 수산화 마그네슘과의 침전 테스트 비교를 통해 확인하였다.

AZ61 마그네슘 합금의 어닐링 중 Ca의 첨가에 따른미세조직 변화에 미치는 영향 (The Effect of Calcium on Microstructure of AZ61 Magnesium Alloy during Annealing Heat Treatment)

  • 김기범;전준호;김권후
    • 열처리공학회지
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    • 제34권2호
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    • pp.53-59
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    • 2021
  • Due to high specific strength and low density, AZ series magnesium alloys have been receiving high interest as a lightweight material. However, their industrial application is limited due to the phenomenon that the strength decreases at elevated temperature by the occurrence of softening effect because of the Mg17Al12 phase decomposition. To solve this problem, many research were conducted to increase the high-temperature strength by forming a thermal stable second-phase component by adding new elements to the AZ magnesium. Especially, adding Ca to AZ magnesium has been reported that Ca forms the new second-phase. However, studies about the analysis of decomposition or precipitation temperature, formation composition, and components to understand the formation behavior of these precipitated phases are still insufficient. Therefore, the effect of Ca addition to AZ61 on the phase change and microstructure of the alloy during annealing was investigated. As a result of analysis of the initial and heat-treated specimen, AZ61 formed α-Mg matrix and precipitated phase of Mg17Al12, and AZX611 formed one more type of precipitated phase, Al2Ca. Also, Al2Ca was thermal stable at high temperatures. And after annealing, the laves phase was decomposed to under 10 ㎛ size and distributed in matrix.

마그네슘 주조성형기술의 개발동향 (Development Trend of Magnesium Casting Technology)

  • 김현식;예대희;강민철
    • 한국주조공학회지
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    • 제31권5호
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    • pp.243-248
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    • 2011
  • Magnesium alloys have many advantages such as light-weight, high machinability, damping capacity, etc. So magnesium alloy parts have been used in transportation, mobile phone, military industries. Because of HCP atomic structure, Magnesium is very difficult in plastic deformation process, so most of magnesium products are fabricated by casting process. Magnesium alloys have low heat-capacity, high fluidity and low Fe solubility. For these reasons it is more suitable than aluminum in mass-production by casting. And various casting technologies have been developed. So casting technologies for magnesium developed recently is discussed in this paper.

마그네슘 금속으로부터의 산화마그네슘 나노와이어 제조 (Preparation of Magnesium Oxide Nanowires from a Magnesium Foil)

  • 이병건;최진섭
    • 공업화학
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    • 제22권5호
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    • pp.514-517
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    • 2011
  • 본 실험에서는 옥살산과 알코올계 용매를 사용하여 마그네슘 호일의 화학적 식각에 의해서 마그네슘 옥살레이트(Magnesium oxalate) 나노구조를 제조하였다. 알코올계 용매 중 에탄올 용매에서 마그네슘 옥살레이트 나노와이어를 얻을 수 있었다. 시간에 따른 나노와이어의 형성 과정을 살펴보았고, FE-SEM을 통하여 형상을 살펴보았다. TGA 분석을 통하여 열처리 조건을 결정하였다. 열처리를 통하여 마그네슘 옥살레이트 나노와이어에서 산화마그네슘(MgO) 나노와이어로 전환시켰고, 이를 FE-SEM과 FT-IR을 통하여 확인하였다.

EFFECT OF ADDITIONS OF POTASSIUM AND NITROGEN INTO PRESS CAKE ON MAGNESIUM UTILIZATION OF GOATS WITH RELATION TO WATER INTAKE

  • Kim, S.A.;Ohshima, M.;Kayama, R.
    • Asian-Australasian Journal of Animal Sciences
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    • 제1권1호
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    • pp.33-41
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    • 1988
  • In a study about minerals cycling in grassland agro-ecosystem, investigation on relations among two minerals, potassium(K) and magnesium(Mg), and nitrogen(N) was performed. Four kinds of diets different in K and N levels were fed to four goats with a Latin-square method and $2{\times}2$ factorial design. As the basal diet, press cake silage prepared from Italian ryegrass was used because of its uniformity and comparatively low mineral concentrations. Supplementation of K and N were made using potassium bicarbonate and urea. In the experiment, it was clearly shown that high K concentration in the forage crops is the main reason of the low utilization of Mg in ruminant animals. However, high nitrogen intake resulted in the increase of magnesium retention, urinary potassium excretion, water intake and volume of urine and in the decreases of potassium intake minus urinary potassium excretion. The results of high nitrogen intake seemed to be produced in the following order;increase of urine, increase of water intake, increase of urinary potassium excretion, and decrease of intake minus urinary potassium excretion. The amount of potassium intake minus urinary potassium excretion had significantly close relationships with magnesium utilization and serum magnesium concentration. As a conclusion, higher nitrogen intake by ruminants seemed to be preferable for magnesium utilization through increased water intake and urinary potassium excretion, if the sufficient drinking water could be supplied to ruminants.

Formation of Cerium Conversion Coatings on AZ31 Magnesium Alloy

  • Fazal, Basit Raza;Moon, Sungmo
    • 한국표면공학회지
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    • 제49권1호
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    • pp.1-13
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    • 2016
  • This review deals with one of the surface modification techniques, chemical conversion coating and particularly cerium-based conversion coatings (CeCC) as a promising substitute for chromium and phosphate conversion coating on magnesium and its alloys. The CeCCs are commonly considered environmentally friendly. The effects of surface preparation, coating thickness, bath composition, and e-paint on the corrosion behavior of CeCCs have been studied on the AZ31 magnesium alloy. This review also correlates the coating microstructural, morphological, and chemical characteristics with the processing parameters and corrosion protection. Results showed that the as-deposited coating system consists of a three layer structure (1) a nanocrystalline MgO transition layer in contact with the Mg substrate, (2) a nanocrystalline CeCC layer, and (3) an outer amorphous CeCC layer. The nanocrystalline CeCC layer thickness is a function of immersion time and cerium salt used. The overall corrosion protection was crucially dependent on the presence of coating defects. The corrosion resistance of AZ31 magnesium alloy was better for thinner CeCCs, which can be explained by the presence of fewer and smaller cracks. On the other hand, maximum corrosion protection was achieved when AZ31 magnesium samples with thin CeCCs are e-painted. The e-paint layer further restricts and hinders the movement of chloride and other aggressive ions present in the environment from reaching the magnesium surface.

고전도성 부품용 Mg-RE-Zn계 합금의 미세조직 및 특성 (Microstructure and Properties of Mg-RE-Zn Alloys for High Conductivity Parts)

  • 김정민;김남훈
    • 한국주조공학회지
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    • 제34권5호
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    • pp.151-155
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    • 2014
  • The relatively low conductivity of conventional Mg-Al alloys often limits their areas of application. Therefore, several attempts to develop new high-conductivity magnesium alloys have been made recently. In this research, A Ce-rich rare-earth (RE)material and zinc were added to magnesium which contained no aluminum. As the RE and Zn content were increased, both the hardness and tensile strength were gradually increased, despite the fact that the electrical conductivity decreased slightly. The effects of an aging treatment on the conductivity and mechanical properties of Mg-RE-Zn alloys were also investigated. The electrical conductivity did not change according to the heat treatment conditions; however, the mechanical properties could be enhanced by proper aging heat treatments.

폴리이미드 그라프팅 수산화마그네슘의 이산화탄소 흡수 (Polyimide grafted magnesium hydroxide for $CO_2$ Adsorption)

  • 푸시파라지 헤마라다;마니 가네쉬;팽메이메이;김대경;장현태
    • 한국산학기술학회:학술대회논문집
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    • 한국산학기술학회 2011년도 추계학술논문집 1부
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    • pp.364-366
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    • 2011
  • Polyimide (PI) grafted magnesium hydroxide was synthesised and characterised by XRD, TGA, SEM analysis. XRD patterns of $PI/Mg(OH)_2$ carried the peaks due to $Mg(OH)_2$ with decreased intensity. The $CO_2$ adsorption capacity of $PI/Mg(OH)_2$ at $50^{\circ}C$ was found to be 14 wt% revealing chemisorption of $CO_2$ on $Mg(OH)_2$ which could be regenerated at higher temperatures.

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AM80 마그네슘 합금의 미세조직 및 기계적 특성에 대한 압출조건의 영향 (Effect of Extrusion Conditions on Microstructures and Mechanical Properties of AM80 Magnesium Alloys)

  • 이상구;김덕현;김대환;임수근
    • 소성∙가공
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    • 제27권6호
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    • pp.379-385
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    • 2018
  • This study investigated the effect of extrusion conditions on microstructures and mechanical properties of AM80 magnesium alloys. The billets of magnesium alloy used for hot extrusion were prepared by permanent mold casting method, and its extrusion was hot direct extrusion with different extrusion conditions. The results of microstructural analysis showed that the main phases in the as-casted alloys were ${\alpha}-Mg$, ${\beta}-Mg_{17}Al_{12}$, and lamella $Mg_{17}Al_{12}$. Hot extrusion results, The tensile strength of the most soundly manufactured extruded bars (extrusion temp: $350^{\circ}C$, extrusion ratio: 27:1, ram speed: 2mm/s) was approximately 327MPa at room temperature. The increase in the mechanical properties of hot-extruded alloys was as a result of grain refinement by dynamical recrystallization during hot extrusion.