• 제목/요약/키워드: Al-Mg-Mn

검색결과 438건 처리시간 0.028초

급속응고 분말법으로 제조한 Al-Zn-Mg-Zr-Mn-Cu합금의 시효특성 (The Aging Characteristics of an RS-P/M Al-Zn-Mg- Zr-Mn-Cu Alloy)

  • 이갑호
    • 한국분말재료학회지
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    • 제4권2호
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    • pp.100-105
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    • 1997
  • In this study the changes of the hardness and microstructures during aging at 120$^{\cire}C$ of an RS-P/M Al-5.6wt%Zn-2.0wt%Mg-1.3wt%Zr-1.0wt%Mn-0.25wt%Cu alloy were studied using a transmission electron microscopy. The hardness increased rapidly at early stage of aging and reached the maximun when the specimen was aged for 24 hr. The many irregular-shaped $Al_4Mn$ and rod-shaped $Al_6Mn$ dispersoids with 0.1-0.4 $\mu$m in length were observed in the as-extruded alloy. The dark particles with 2-3 nm in size were observed in aged specimen for 5hr and those are thought to be G.P.zones or precursor of $\eta'$ precipitates. In aged specimen for 24 hr, the $\eta'$ phases were distributed homogeneously within the matrix and the PFZ with 30-40 nm in width was observed along the grain boundary. With further aging, the width of PFZ increased and $\eta$ phases were also detected within the matrix.

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충남 금산의 인삼 및 토양의 무기 원소 함량 비교 (Comparisons of Inorganic Compounds between the Ginsengs, Keumsan, Chungnam and their Soils)

  • 송석환;유선균;김일출
    • 한국자원식물학회지
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    • 제20권1호
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    • pp.12-21
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    • 2007
  • 토양에서 화강암 지역은 $Al_2O_3,\;Na_2O$, 천매암 지역은 $Fe_2O_3,\;MnO,\;MgO$, 혈암 지역은 $SiO_2,\;CaO$에서 높았다. 이 화강암 지역과 천매암 토양의 원소 특성은 이들 토양 중의 광물 차이를 반영한다. 상관관계에서 화강암, 천매암, 혈암 3지역 공히, 정의 관계가 $Al_2O_3-K_2O,\;Fe_2O_3-MgO$ 쌍에서, 부의 관계가 $SiO_2-CaO$ 쌍에서 나타났다. 인삼에서 동일 연생 인삼의 지역적 비교 시 2, 3년에 관계없이 혈암 지역이 높은 함량 원소가, 화강암 지역이 낮은 함량의 원소가 많았다. 즉 2년생은 천매암 지역의 Fe, Ca, 혈암 지역의 Al, Mn, Na, Ti에서, 3년생은 화강암 지역의 Mn, Na, 천매암 지역의 Ca, 혈암 지역의 Al, Fe, Ti에서 높은 값이 나타났다. 같은 지역 인삼의 연생 차이별 비교에서 3지역 공히 2년생에서 Al, Na, Ti가 높았다. 또한 화강암 지역은 2년생의 Al, Mn, Mg, Na, Ti, 3년생의 Fe, Ca에서, 천매암 지역은 2년생의 Al, Fe, Mg, Ca, Na, Ti, 3년생은 Mn, K에서 높았다. 지상부의 무기성분 함량에 대한 2, 3년의 지역 별 비교에서 혈암 지역이 높은 원소가 많았고 화강암 지역이 낮은 원소가 많았다. 2년생의 경우 화강암 지역은 Ca, 천매암 지역은 Fe, Ca, 혈암 지역은 Al, Mn, Na, Ti에서, 3년생의 화강암 지역은 Mn, 천매암 지역은 Ca, 혈암 지역은 Al, Fe에서 높았다. 상관관계에서 2, 3년생의 경우 공히 Al-Ti, Mn-Na쌍에서 정의 관계가 나타났다. 뿌리의 무기성분 함량에서 2년생은 화강암 지역에서 높은 원소가 많았고, 천매암 지역이 낮은 원소가 많았다. 3년생은 혈암 지역에서 높은 원소가 많았고, 천매암 지역이 낮은 원소가 많았다. 즉 2년생은 화강암의 Al, Mn, Na, 천매암 지역의 Fe, Ca, 혈암지역의 Ti에서, 3년생은 화강암 지역의 Ca, Na, 혈암 지역의 Al, Fe, Mn, Ti에서 높았다. 2년생은 화강암 지역의 Fe, 천매암 지역의 Al, Mn, Na, Ti, 혈암 지역의 Ca, 3년생은 화강암 지역의 Fe, 천매암 지역의 Al, Mn, Na, Ti, 혈암 지역의 Ca, K에서 낮았다. 지상부와 뿌리 부분 비교에서 지역에 관계없이 수 배 차이로 Fe, Mn, Ca는 지상부가, Ti는 하부가 높았다. 지역에 관계없이 Mn, Ca, Fe, Al, Na, Ti 순서로 지상/하부 비율이 내려갔다. 토양과 인삼의 무기성분 함량관계에서 지역에 관계없이 Ca는 수 십 배의 차이로, Mn는 수 배에서 수 십 배 차이로 인삼이 높았고, Na, Fe, Ti, Al은 수배의 차이로 토양이 높았다. 인삼과 토양의 비에서 대부분 지역이 2년생이 크고 3년생이 작았으며, 지역에 관계없이 공히 Al, Mn, Na는 2년생이 크고 3년생이 작았다. 이 결과는 인삼의 연령이 증가함에 따라 토양 중 원소를 흡수하여, 더욱더 토양의 특성을 반영하기 때문으로 생각된다.

금속기 복합재료의 틱소포밍 특성 ($SiC_p/AZ91HP$ Mg 복합재료의 상분석을 중심으로) (Thixoforming Characteristics of Metal Matrix Composites (Phase identification of $SiC_p/AZ91HP$ Mg composite))

  • 이정일;김영직
    • Applied Microscopy
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    • 제29권3호
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    • pp.281-289
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    • 1999
  • 교반관법으로 제조한 $AZ91HP/SiC_p$ Mg 복합재료를 틱소포팅하여 미세조직과 존재상들을 조사하였다. $AZ91HP/SiC_p$ Mg 복합재료를 반응고 가공시 액상율 50% 이상에서 완전 충전이 이루어겼으며 전형적인 반응고 조직을 보였다. 복합재료내의 강화상이 초정 $\alpha$상의 합체, 조대화를 억제하여 보다 용이하게 thixotropic 조직을 가질 수 있었다. TEM 관찰결과, 복합재료내의 계면반응 생성물은 MgO, $Mg_2Si$$Al_{12}Mg_{17}$등이며, 직접 가압시 정출상으로 나타나는 비평형상인 decagonal T상이 관찰되었으며, 이 상은 간접가압시 안정상인 $Al_6Mn$의 형태로 관찰되었다. 이는 간접가압시 승온시간이 직접가압보다 상대적으로 길어, 비평형의 decagonal T상이 안정한 $Al_6Mn$상으로 생성된 것으로 판단된다. 아직까지 생성과정이 명확하진 않으나 교반관법으로 제조 후, 2차가압 성형시 비평형상의 존재는 재료의 강화에 기여할 것으로 판단된다.

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SKD61 금형강의 소착 반응층 두께에 미치는 Al-9wt%Si-0.3wt%Mg 합금의 Fe, Mn 영향 (Effect of Fe, Mn Contents of Al-9wt%Si-0.3wt%Mg Alloys on the Thickness of Die Soldering Reaction Layer for SKD61 Die Steel)

  • 김헌주;조치만;정창렬
    • 한국주조공학회지
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    • 제29권4호
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    • pp.169-175
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    • 2009
  • Effect of iron and manganese contents on die soldering reaction has been studied in Al-9wt.%Si-0.3wt.%Mg alloy. Ternary ${\alpha}_{hcp}-Al_8Fe_2Si$ and ${\alpha}_{bcc}-Al_8Fe_2Si$ intermetallic compounds formed by interaction diffusion between Al-Si-Mg system alloy melt and SKD61 die steel surface. Thickness of soldering reaction layer in die steel surface decreased as Fe and Mn contents of the melts increased : When Fe content of Al-9wt.%Si-0.3wt.%Mg melts at constant 0.5wt%Mn content was 0.15wt.%, 0.45wt.% and 0.6wt.%, thickness of soldered layer of each alloy was $64.5{\mu}m,\;57.3{\mu}m$ and $46.9{\mu}m$ respectively. For Mn content of the alloy melts at constant 0.45wt.%Fe content was 0.30wt.%, 0.50wt.% and 0.70wt.%, thickness of soldered layer of each alloy was $66.1{\mu}m,\;57.3{\mu}m$ and $48.3{\mu}m$ respectively.

A Novel Slury-Making Process for AZ91-Alloy Rheocasting

  • Byun, Ji-Young;Kwon, Soon-Il;Yoon, Jin-Kook;Kim, Seon-Jin
    • 한국주조공학회지
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    • 제23권3호
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    • pp.153-157
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    • 2003
  • 본 논문은 레오캐스팅용 AZ91 합금 슬러리를 제조하는 새로운 방법에 관한 것이다. 그 원리는 AZ91 합금 액상에서 Mn의 용해도차에 의해 생성되는 $Al_8(Mn,Fe)_5$ 정출물을 ${\alpha}-Mg$ 초정 생성을 위한 불균일 핵생성 자리로 사용하고자 하는 것이다. 제조된 슬러리의 미세조직 분석결과 $Al_8(Mn,Fe)_5$ 정출물이 ${\alpha}-Mg$ 내에 위치하고 있어, 이로부터 정출물이 효과적으로 불균일 핵생성 자리로 작용하고 있음을 알 수 있었다. 또한 Mn 함량의 증가는 $Al_8(Mn,Fe)_5$ 정출물 수를 증가시켜 고상분율이 일정할 때 슬러리 내 ${\alpha}-Mg$ 고상의 크기를 감소시키고 구형도를 향상시킨다. 이외에도 냉각속도 및 유지시간이 슬러리 미세조직에 미치는 영향에 대해서도 보고하였다.

Al-5%Mg-1%Mn-x%Zn합금의 미세조직 및 기계적 성질 (Microstructure and Mechanical Properties of Al-5%Mg-1%Mn-x%Zn Alloys)

  • 김정민;성기덕;유정훈;전중환;김기태;정운재
    • 열처리공학회지
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    • 제18권1호
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    • pp.12-17
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    • 2005
  • Effects of Zn and Zr additions on the microstructure and mechanical properties of Al-5%Mg-1%Mn alloys were investigated. As Zn content increased in the Al-Mg-Mn-Zn alloys, the tensile strength and ductility of as-cast alloys rather decreased while the tensile strength of the heat-treated alloys significantly increased mainly due to the precipitation of fine $MgZn_2$ phases. Small amount of Zr was added to the 3%Zn alloy to further enhance the mechanical properties, and it appeared to increase the strength and ductility, especially in as-cast state.

합금원소 Si, Mn, Zn 첨가에 따른 Al-Mg 합금의 유동도 및 기계적 성질 변화 (Variation of Fluidity and Mechanical Properties of Al-Mg Alloys with the Addition of Si, Mn, and Zn)

  • 김정민;성기덕;전중환;김기태;정운재
    • 한국주조공학회지
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    • 제24권3호
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    • pp.138-144
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    • 2004
  • Effects of alloying elements such as Si, Mn, Zn on the fluidity and mechanical properties of high ductility Al-Mg based alloys were investigated. The fluidity of alloys was evaluated using a vacuum suction fluidity test, and Si addition was observed to increase the fluidity of AI-Mg binary alloys substantially while Zn somewhat decreased the fluidity. However, both the strength and ductility were significantly deteriorated by the Si additions. It was observed that a small amount of Mn addition to Al-Mg alloy increased the tensile strength effectively without losing much ductility but the effect of Zn addition on the strength was relatively small.

THE ELECTROMAGNETIC PROPERTIES OF Mg-Mn FERRITES

  • Lee, D.Y.;Cho, S.I.;Shon, H.J.;Hur, W.D.
    • 한국자기학회지
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    • 제5권5호
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    • pp.552-555
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    • 1995
  • The magnetic properties of Mg-Mn ferrites were investigated in the composition range of $Mg_{a}Mn_{b}Fe_{c}O_{4\pm\delta}$ (a+b+c=3) with the addition of $Al_{2}O_{3}$. In $MgO-MnO-Fe_{2}O_{3}$ ternary system, the spinel single phase existed within the composition range of MgO-50 mol%, MnO-70 mol% and $Fe_{2}O_{3}-60\;mol%$. The saturation magnetic flux density increased with the increase of $Fe_{2}O_{3}$ content and showed the maximum at the stoichiometric composition of $(Mg,Mn)Fe_{2}O_{4}$. In $Mg_{x}Mn_{1-x}Fe_{2}O_{4}(x=0.2~0.8)$ system, the saturation magnetic flux density showed the maximum at $Mg_{0.2}Mn_{0.8}Fe_{2}O_{4}$. The addition of $Al_{2}O_{3}$ resulted in the decrease of saturation magnetic flux density but increased the electrical resistivity.

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자동차용 핫스탬핑 AlSi 도금중 Mg 첨가효과 (Effects of Adding Mg to AlSi Coating for Hot Stamping Steel)

  • 양원석;이재민;김창규;안승호
    • Corrosion Science and Technology
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    • 제20권4호
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    • pp.196-203
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    • 2021
  • To improve corrosion resistance and reduce the hydrogen uptake of 22MnB5, up to 5% Mg was added to the AlSi coating of 22MnB5. After hot-stamping and electrocoating were done on the metallic-coated specimen, the surface characteristics of the steel, hydrogen uptake content, and corrosion resistance were examined by transmittance electron microscopy, thermal desorption spectrometry, cyclic corrosion testing, and electrochemical impedance spectroscopy. Mg was investigated as MgO on the surface layer after hot-stamping while it existed as Mg2Si before hot-stamping. The total hydrogen content of 22MnB5 was decreased along with the Mg content. However, there was no difference at 0.2 wt% or more. When a small amount of Mg was added, the coating corrosion resistance was decreased, but when it was added at around 1.0 wt%, the greatest corrosion resistance increase was seen. However, when 3 wt% or more was added excessively, the corrosion resistance was decreased. MgO on the surface was considered to suppress H uptake by the AlSi melting solution and increase the barrier effect of the coating.

A study of the inorganic element contents for the ginsengs of Keumsan, Chungnam

  • 송석환
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 2008년도 춘계 학술대회
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    • pp.74-75
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    • 2008
  • This study is for geochemical relationships between ginsengs and soils from three representative soil types from Keumsan, shale, phyllite and granite. For these study, ginsengs, with the field and weathered soils were collected from the three regions, and are analysed for the major and trace elements. In the weathered soils(avg.), the granite and phyllite areas are high in the most of elements while the shale area is low. In the correlation coefficients, negative correlations are shown in the $Al_2O_3$-MgO pair while positive correlations, are shown in the Ba-Sr, Zr, Sr-Zr and Cs-Ge pairs. In the field soils(avg.), the granite and phyllite areas are, generally, high in the most of elements while the shale area is low. In the shale area, the major elements are high in the 4 year soils, but low in the 2 year soils. The LFS(Ba, Sr, Cs) and transitional elements are high in the 2 year soils, but low in the 4 year soils. The HFS(Y, Zr) is high in the 4 year soils. In the correlation coefficients, most of the elements from the 4 year show positive relationships. Positive correlations are shown in the $Al_2O_3$-CaO, MnO-MgO, V-Tl, and Ba-Sr pairs in all localities. In the ginseng contents, clear chemical differences with the ages are shown in the shale and granite ares, but not clear in the phyllite area. In the shale area Mn, Mg, Ba, Sr, and Y contents, increase with ages but decrease in Al, Cs, Be and Cd. In the correlation coefficients, degrees of the correlations for the major elements become low with the ages. Positive correlations are shown in the Al-Mn, Ti, Mn-Ti, Mg-Ca, Ca-K, Ba-Cs, Y and Cs-Y pairs. Comparisons with ginsengs of the same ages from the different areas suggest that generally, the 2 years in the shale and 3 and 4 years in the granite area are distinctive. Relative ratios(granite/ shale area) of the ginsengs are below 1 in the major elements except Mn in the 2 year ginsengs and above 1 in the other elements except Mg and Na in the 4 year. Relative ratios(granite/ phyllite area) of the ginsengs are high in the 3 year from the phyllite area. In the relative ratios(weathered/field soils) of the soils, numbers of the elements showing the ratios of above 1 increase from the shale, to phyllite and granite in the case of the major elements, but decrease in the case of the trace elements. These results suggest that major elements are high in the granite while trace elements are high in the shale area. In the relative ratios between field soils and ginsengs(field soils/ginseng), the shale area, regardless of the ages, show differences of several hundred times in the $Al_2O_3$, $TiO_2$, Y and Tl, of several ten times in the MnO, MgO and Ba and of several times in the CaO contents. These results suggest that ginseng contents are significantly different from the field soils in the $Al_2O_3$, $TiO_2$, Y and Tl, but similar in the CaO contents. The phyllite area, regardless of the ages, show differences of several hundred times in the $Al_2O_3$, $TiO_2$, Y, Tl and Be, of several ten times in the MnO, MgO, $Na_2O$ and Ba, and of several times to ten times in the CaO, $K_2O$ and Sr contents. These results suggest that ginseng contents are significantly different from those of the field soils in the $Al_2O_3$, $TiO_2$, Y, Tl and Be, but similar in the CaO, $K_2O$ and Sr contents. The granite area, regardless of the ages, show differences of several hundred times in the $Al_2O_3$, $TiO_2$, Tl and Be, of several ten times in the Ba, and of several times to ten times in the MgO and CaO contents. Of the other elements, differences of several times to ten times are shown in the MnO, $K_2O$ and Sr contents. These results suggest that ginseng contents are significantly different from those of the field soils in the $Al_2O_3$, $TiO_2$, Tl and Be, but similar in the $K_2O$ and Sr contents. Comparisons among the different ages from the same area suggest that, in the case of shale area, differences of several hundred times in the $Al_2O_3$ and $TiO_2$, of the several ten times in the MnO, MgO and Ba and several times in the CaO and $K_2O$ are shown in the 2 year ginsengs. Differences of several hundred times in the $Al_2O_3$, $TiO_2$, Cs, Y, Tl and Be, of above several ten times in the MnO, MgO, $K_2O$ and Ba, and of several times in the CaO and Sr are shown in the 3 year ginsengs. Differences of several hundred to thousand times in the $Al_2O_3$, of above several hundred times in the $TiO_2$, Cs and Y, and of several ten times in the MnO, MgO, $K_2O$ and Ba, and of several times in the $Na_2O$ are shown in the 4 year ginsengs. These relationships suggest that, regardless of the localities in the shale area, $Al_2O_3$ contents of the soils show big differences from those of the ginsengs. Regardless of the ages of ginsengs, comparisons with the overall average contents of each area show differences of several hundred times in the $Al_2O_3$, $TiO_2$, Cs and Tl and of several ten times in the MnO. These overall relationships suggest that the $Al_2O_3$, $TiO_2$, Cs and Tl contents of the soils are higher than those of the ginsengs, show big differences between two and low different contents are found in the MnO. In detail, differences of several hundred times in the Y, and ten times in the MgO and Sr, and of several times in the CaO, $Na_2O$, $K_2O$ in the case of shale area, are shown. These results suggest that the soils are higher than the ginsengs in the Y and significantly differences in Y, and moderately differences in the MgO and Sr, and low differences in the CaO, $Na_2O$ and $K_2O$ are shown between soils and ginsengs.

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