• 제목/요약/키워드: Mg-Ca alloys

검색결과 81건 처리시간 0.033초

The Oxide Coating Effects on the Magnetic Properties of Amorphous Alloys

  • 배영제;Jang, Ho G.;Chae, Hee K.
    • Bulletin of the Korean Chemical Society
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    • 제17권7호
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    • pp.621-625
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    • 1996
  • A variety of metal oxides were coated by sol-gel process from their metal alkoxides on the ribbons of Co-based and Fe-based amorphous alloys, and the effects of surface oxide coating on the magnetic properties of the alloy are investigated. The core loss is found to be reduced significantly by the oxide coating, the loss reduction becoming more prominent at higher frequencies. The shape of the hystersis loop is also dependent upon the kind of the coated metal oxide. The coatings of MgO, SiO2, MgO·SiO2 and MgO·Al2O3 induce tensile stress into the Fe-based ribbon whereas those of BaO, Al2O3, CaO·Al2O3, SrO·Al2O3 and BaO·Al2O3 induce compressive stress. These results may be explained by the modification of domain structures via magnetoelastic interactions with the shrinkage stress induced by the sol-gel coating.

AZ91 합금의 시효경화 거동에 미치는 CaO 첨가의 영향 (Effect of CaO Addition on Age Hardening Behavior of AZ91 Alloy)

  • 전중환
    • 열처리공학회지
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    • 제24권4호
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    • pp.193-198
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    • 2011
  • Effect of CaO addition on age hardening response has been studied by using optical microscopy, scanning electron microscopy and differential thermal analysis in AZ91 and CaO-containing ECO-AZ91 alloys. After solution treatment, the ${\beta}$($Mg_{17}Al_{12}$) phase formed during solidification mostly disappeared in the microstructure in the AZ91 alloy, whereas numerous ${\beta}$ precipitates containing Ca were still observed in the ECO-AZ91 alloy due to its enhanced thermal stability. The ECO-AZ91 alloy showed the delayed peak aging time and higher peak hardness compared with those of the AZ91 alloy. The activation energies for ${\beta}$ precipitation calculated by means of Kissinger method increased from 71.4 to 85.6 kJ/mole by the addition of CaO, which implies that CaO plays a role in reducing ${\beta}$ precipitation rate in the AZ91 alloy.

Grain Refinement를 통한 Mg-Ca-Zn합금의 기계적 특성 및 부식 특성 향상 (Improvement of Mechanical and Corrosion Properties of Mg-Ca-Zn Alloy by Grain Refinement)

  • 김대한;최종민;임현규
    • 한국산학기술학회논문지
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    • 제18권9호
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    • pp.418-424
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    • 2017
  • 마그네슘은 다른 금속들에 비해 비강도가 높으며, 우수한 진동 흡수능, 전자파 차폐성 등으로 산업 전반에 많이 활용되고 있다. 예를 들면, 자동차 시트 프레임, 실린더 헤드 등 자동차 부품으로도 사용되며 노트북 케이스, 핸드폰 케이스 등의 전자제품에도 널리 사용되고 있다. 또한 신체의 뼈가 금이 가거나 부서졌을 경우, 그 손상된 뼈의 치료를 보조하기 위해 사용되는 골 접합용 임플란트 재료로 각광받고 있다. 현재 임플란트 재료로는 Ti alloy, Stainless steel, Co-Cr-Mo alloy등이 사용되어 지고, Mg 합금은 연구단계에 머물러 있다. 현재 골접합용 임플란트 재료의 문제점으로는 한번 접합 수술 후에 회복이 되면 이것을 제거하기 위한 수술을 또 해야 한다는 점이 있다. 하지만 마그네슘은 현재 재료와 비교하여 충분한 강도를 실현 할 수 있으며, 일정시간 후 자체적으로 분해되고 인체에 무해한 원소기 때문에 연구가 진행되고 있다. 그러나 순수 Mg으로는 충분한 강도와 내식성을 가질 수 없기 때문에 합금원소를 첨가하여 Mg 합금을 설계한다. 본 논문에서는 마그네슘에 인체에 무해한 Ca, Zn를 첨가하여 합금을 설계하였고, 추가적으로 강도와 내식성을 향상시키기 위해서 Grain refiner로서 Sr을 소량 첨가하여 최종 합금을 설계하였다. Sr은 방사선 원소는 인체에 유해하지만, 그 외 천연 Sr 원소는 인체에 무해하다. 이렇게 제조된 합금을 광학현미경, 주사전자현미경을 통해 미세조직분석을 수행하고, 인장시험, 동전위 분극 시험, 침지시험을 통해 기계적 특성 및 부식특성을 평가하였다. 결론적으로, Sr 첨가에 의해 조직이 미세해졌으며, 기계적 특성 및 내식성이 향성된 것을 확인 할 수 있었다.

Ca$CN_2$ 첨가에 의한 AM60 마그네슘 합금의 결정립 미세화 및 기계적 성질 (Grain Refinement and Mechanical Properties of AM60 Mg Alloy by $CaCN_2$ Addition)

  • 엄정필;정승규;임수근;신희택;정득수
    • 한국주조공학회지
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    • 제18권4호
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    • pp.383-388
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    • 1998
  • Effects of $CaCN_2$ addition on the grain refinement in the AM60 magnesium ingots were investigated. The effects of the $CaCN_2$ are estimated with different inoculation temperatures, inoculation contents, and holding time to find out the optimum condition. AM60 alloy was melted in the low carbon steel crucible by cylindrical electric furnace under an argon atmosphere. The melting and casting apparatus is specially designed for magnesium alloys. The grain size of AM60 magnesium alloy decreased significantly with an increase in $CaCN_2$ content and, at 0.8 wt% $CaCN_2$ or more, grain size becomes constant at about $85 {\mu}m$. The optimum condition was obtained in the 0.8 wt% $CaCN_2$ for holding molten metal of 30 min. at the temperature of $710^{\circ}C$. The tensile properties of AM60 magnesium alloys were improved due to grain refinement by addition of $CaCN_2$. In the optimum condition, the yield strength, tensile strength and elongation were ${\sigma}_{0.2}=107 MPa$, ${\sigma}_{T.S}=234 MPa$ and e=14.2%. The variation of stress with strain obeyed the relationship of the ${\sigma}=K{\varepsilon}^n$. The strain-hardening exponent, n and strength coefficient, K obtained in the 0.8 wt% $CaCN_2$ added AM 60 magnesium alloy were n=0.21 and K=390 MPa.

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고용 강화 및 결정립 미세화를 통한 마그네슘 합금 주조재의 기계적 물성 향상 (Improvement in Mechanical Properties of Cast Magnesium Alloy through Solid-solution Hardening and Grain Refinement)

  • 김상훈;문병기;유봉선;박성혁
    • 한국주조공학회지
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    • 제37권6호
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    • pp.207-216
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    • 2017
  • This study investigated the effects of the addition of Zn, Ca, and SiC on the microstructure and mechanical properties of Mg-Al alloys. The tensile properties of homogenized Mg-xAl (x = 6, 7, 8, and 9 wt.%) alloys increased with increasing Zn content by the solid-solution strengthening effect. However, when the added Zn content exceeded the solubility limit, the strength and ductility of the alloys decreased greatly owing to premature fracture caused by undissolved coarse particles or local melting. Among the Mg-xAl-yZn alloys tested in this study, the AZ74 alloy showed the best tensile properties. However, from the viewpoints of the thermal stability, castability, and tensile properties, the AZ92 alloy was deemed to be the most suitable cast alloy. Moreover, the addition of a small amount (0.17 wt.%) of SiC reduced the average grain size of the AZ91 alloy significantly, from $430{\mu}m$ to $73{\mu}m$. As a result, both the strength and the elongation of the AZ91 alloy increased considerably by the grain-boundary hardening effect and the suppression of twinning behavior, respectively. On the other hand, the addition of Ca (0.5-1.5 wt.%) and a combined addition of Ca (0.5-1.5 wt.%) and SiC (0.17 wt.%) increased the average grain size of the AZ91 alloy, which resulted in a decrease in its tensile properties. The SiC-added AZ92 alloy exhibited excellent tensile properties (YS 125 MPa, UTS 282 MPa, and EL 12.3%), which were much higher than those of commercial AZ91 alloy (YS 93 MPa, UTS 192 MPa, and EL 7.0%). The fluidity of the SiC-added AZ92 alloy was slightly lower than that of the AZ91 alloy because of the expansion of the solid-liquid coexistence region in the former. However, the SiC-added AZ92 alloy showed better hot-tearing resistance than the AZ91 alloy owing to its refined grain structure.

기계적 특성 향상을 위한 마그네슘 합금의 등틍로각압출 공정 조건에 관한 연구 (A study on equal-channel angular extrusion process conditions for improving mechanical properties of magnesium alloy)

  • 배성환;민경호
    • Design & Manufacturing
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    • 제10권1호
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    • pp.12-18
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    • 2016
  • Although magnesium alloy has received much attention to date for its lightweight and high specific strength, their applications are impeded by the low formability which is caused by the hexagonal crystal structure at room temperature. In general, equal-channel angular extrusion(ECAE) is recognized as one of the attractive severe plastic deformation techniques where the processed bulk metals generally achieve ultrafine-grained microstructure leading to improved physical characteristics and mechanical properties. ECAE process has several parameters such as angle of die, process temperature, process route and speed. During ECAE process of Mg alloy, these parameters has great influence on the extrudability and the mechanical properties of alloy. The aim of this study is to estimate the influences of process conditions on the formability of AZ31 and AZ31-CaO alloys. Mg alloys are processed through ECAE at elevated temperatures using three types of die with channel angle of $90^{\circ}$, $110^{\circ}$, $135^{\circ}$ using route $B_c$, respectively. This study discusses the feasibility of using ECAE to improve both formability and strength on magnesium alloys by comparative analyzing the mechanical properties and microstructural evolution in each condition.

다이캐스팅으로 제조한 AXE710 Mg 합금의 미세조직 및 크리프 특성 (Microstructure and Creep Property of Die-Cast AXE710 Mg Alloy)

  • 강문구;소태일;정화철;신광선
    • 대한금속재료학회지
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    • 제49권9호
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    • pp.686-691
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    • 2011
  • To develop creep resistant die-cast Mg alloys, various alloying elements, including Ca, Ce, and Sr, were added to a Mg-Al alloy. The AXE710 alloy was produced on a 320 ton high-pressure die casting machine. The microstructure and creep properties of the alloy were examined. The creep behavior was investigated at $150^{\circ}C$ for stresses ranging from 50 to 100 MPa. The stress exponent was derived from the relationship between normalized secondary creep rates and compensated effective stresses. It was found to be 4.9, indicating that the dislocation climb is a dominant creep mechanism.

Mg2NiHx-10wt% CaF2 수소저장합금의 제조와 수소화 흡수평가 (Fabrication and Evaluation Hydrogenation Absorbing on Mg2NiHx-10 wt% CaF2 Composites)

  • 유제선;한정흠;신효원;홍태환
    • 한국수소및신에너지학회논문집
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    • 제31권6호
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    • pp.553-557
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    • 2020
  • It is possible that hydrogen could replace coal and petroleum as the predominant energy source in the near future, but several challenges including cost, efficiency, and stability. Mg and Mg alloys are attractive hydrogen storage materials because of their lightweight and high absorption capacity. Their range of applications could be further extended if their hydrogenation properties could be improved. The main emphasis of this study was to investigate their hydrogenation properties for Synthesis of 10wt.% CaF2 in Mg2NiHx systems. The effect of BCR (66:1) and MA time (96 hours) on the hydrogenation properties of the composite was investigated. also, Mg2NiHx-10wt% CaF2 composites prepared by Mechanical Alloying are used in this work to illustrate the effect of catalysts on activation energy and kinetics of Magnesium hydride.

Mg2NiHx-CaO 수소 저장 복합물질의 물질 전과정 평가 (Material Life Cycle Assessments on Mg2NiHx-CaO Composites)

  • 황준현;신효원;홍태환
    • 한국수소및신에너지학회논문집
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    • 제33권1호
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    • pp.8-18
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    • 2022
  • With rapid industrialization and population growth, fossil fuel use has increased, which has a significant impact on the environment. Hydrogen does not cause contamination in the energy production process, so it seems to be a solution, but it is essential to find an appropriate storage method due to its low efficiency. In this study, Mg-based alloys capable of ensuring safety and high volume and hydrogen storage density per weight was studied, and Mg2NiHx synthesized with Ni capable of improving hydrogenation kinetics. In addition, in order to improve thermal stability, a hydrogen storage composite material synthesized with CaO was synthesized to analyze the change in hydrogenation reaction. In order to analyze the changes in the metallurgical properties of the materials through the process, XRD, SEM, BET, etc. were conducted, and hydrogenation behavior was confirmed by TGA and hydrogenation kinetics analysis. In addition, in order to evaluate the impact of the process on the environment, the environmental impact was evaluated through "Material Life Cycle Assessments" based on CML 2001 and EI99' methodologies, and compared and analyzed with previous studies. As a result, the synthesis of CaO caused additional power consumption, which had a significant impact on global warming, and further research is required to improve this.

Microstructure and Mechanical Properties of Mg-Li Powder by Hot Rolling Process

  • Choi, Jeong-Won;Kim, Yong-Ho;Kim, Jung-Han;Yoo, Hyo-Sang;Woo, Kee-Do;Kim, Ki-Beom;Son, Hyeon-Taek
    • 한국재료학회지
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    • 제25권1호
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    • pp.32-36
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    • 2015
  • Hot rolling of Mg-6Zn-0.6Zr-0.4Ag-0.2Ca-(0, 8 wt%)Li powder was conducted at the temperature of $300^{\circ}C$ by putting the powder into the Cu pipe. The microstructure and mechanical properties of the samples were observed. Mg-6Zn-0.6Zr-0.4Ag-0.2Ca without Li element was consisted of ${\alpha}$ phase and precipitates. The microstructure of the 8 wt%Li containing alloy consisted of two phases (${\alpha}$-Mg phase and ${\beta}$-Li phase). In addition, $Mg_2Zn_3Li$ was formed in 8%Li added Mg-6Zn-0.6Zr-0.4Ag-0.2Ca alloy. By addition of the Li element, the non-basal planes were expanded to the rolling direction, which was different from the based Mg alloy without Li. The tensile strength was gradually decreased from 357.1 MPa to 264 MPa with increasing Li addition from 0% to 8%Li. However, the elongation of the alloys was remarkably increased from 10 % to 21% by addition of the Li element to 8%. It is clearly considered that the non-basal texture and ${\beta}$ phase contribute to the increase of elongation and formability.