• 제목/요약/키워드: Al-alloying

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기계적 밀링 처리하여 SPS법으로 제작한 티타늄의 미세조직과 강화기구 특성 (Microstructure and Strengthening Mechanism Characteristics of Titanium Fabricated by SPS Method after Mechanical Milling Treatment)

  • 한창석;김준성;심우빈
    • 한국재료학회지
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    • 제33권6호
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    • pp.242-250
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    • 2023
  • Titanium, which has excellent strength and toughness characteristics, is increasingly used in the aerospace field. Among the titanium alloys used for body parts, more than 80 % are Ti-6Al-4V alloys with a tensile strength of 931 MPa. The spark plasma sintering (SPS) method is used for solidification molding of powder manufactured by the mechanical milling (MM) method, by sintering at low temperature for a short time. This sintering method avoids coarsening of the fine crystal grains or dispersed particles of the MM powder. To improve the mechanical properties of pure titanium without adding alloying elements, stearic acid was added to pure titanium powder as a process control agent (PCA), and MM treatment was performed. The properties of the MM powder and SPS material produced by solidifying the powder were investigated by hardness measurement, X-ray diffraction, density measurement and structure observation. The processing deformation of the pure titanium powder depends on the amount of stearic acid added and the MM treatment time. TiN was also generated in powder treated by MM 8 h with 0.50 g of added stearic acid, and the hardness of the powder was higher than that of Ti-6Al-4V alloy when treated with MM for 8 h. When the MM-treated powder was solidified in the SPS equipment, TiC was formed by the solid phase reaction. The SPS material prepared as a powder treated with MM 8 h by adding 0.50 g of stearic acid also formed TiN and exhibited the highest hardness of Hv1253.

Electrodes for contact electric welding of aluminium alloys

  • Bondar, M.P.;Moon, J.G.
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 1997년도 특별강연 및 추계학술발표 개요집
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    • pp.184-193
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    • 1997
  • Aluminium and aluminium alloys have the high electrical and heat conductivity. It gives rise to difficulties for a choice of electrodes material for their contact electric welding. This paper describes the investigations performed to solve the above problem. The purpose of this investigation was to obtain dispersion-hardening alloys by the internal oxidation method, to optimize their contents and treatment modes, to produce electrodes of these alloys and to test them. The strengthing effect of alloys with oxide particles depends on their size stability at high temperatures. Despite of the fact, that oxides are the most stable of all the non-metallic phases their coagulation takes place. Based on the early results, we chose two types of alloys, first No. 1 Cu - 0,4%Al and second No. 2 Cu - 0,2%Be for production of electrodes. These alloys had not additional alloying elements. These alloys were prepared as 1 mm plates and flake-formed 200 m thick, and also No. 1 as a powder of size 100 mkm (received from Korea). The large samples for electrodes were produced by three methods : explosive welding method, dynamic one including the explosion compression of electrode blank and the quasi-dynamic method including the high-speed compression of dense briquest and the further hot extrusion of a rod.

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순수 타이타늄 기반 산화물분산강화 합금의 미세조직 및 기계적 특성 (Microstructure and Mechanical Properties of Oxide Dispersion Strengthened alloy Based on Commercially Pure Titanium)

  • 박태성;김정한
    • 한국분말재료학회지
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    • 제25권4호
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    • pp.327-330
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    • 2018
  • This study is conducted as a preliminary research to verify the feasibility of Ti-based Oxide dispersion strengthened (ODS) alloy. Pure-Ti powder is mixed with $Y_2O_3$ powder and subsequently, mechanically alloyed at $-150^{\circ}C$. The Ti-based ODS powder is hot-isostatically pressed and subsequently hot-rolled for recrystallization. The microstructure consists of elongated grains and Y excess fine particles. The oxide particle size is larger than that of the typical Fe-based ODS steel. Tensile test shows that the tensile ductility is approximately 25%, while the strength is significantly higher than that of pure Ti. The high-temperature hardness of the Ti-ODS alloy is also significantly higher than that of pure Ti at all temperatures, while being lower than that of Ti-6Al-4V. The dimple structure is well developed, and no evidence of cleavage fracture surface is observed in the fracture surface of the tensile specimen.

분말야금법을 활용한 나노 하이브리드 구조 철-망간계 분말야금재 제조 (Development of Fe-Mn-based Hybrid Materials Containing Nano-scale Oxides by a Powder Metallurgical Route)

  • 전종규;김정준;최현주
    • 한국분말재료학회지
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    • 제27권3호
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    • pp.203-209
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    • 2020
  • The automotive industry has focused on the development of metallic materials with high specific strength, which can meet both fuel economy and safety goals. Here, a new class of ultrafine-grained high-Mn steels containing nano-scale oxides is developed using powder metallurgy. First, high-energy mechanical milling is performed to dissolve alloying elements in Fe and reduce the grain size to the nanometer regime. Second, the ball-milled powder is consolidated using spark plasma sintering. During spark plasma sintering, nanoscale manganese oxides are generated in Fe-15Mn steels, while other nanoscale oxides (e.g., aluminum, silicon, titanium) are produced in Fe-15Mn-3Al-3Si and Fe-15Mn-3Ti steels. Finally, the phases and resulting hardness of a variety of high-Mn steels are compared. As a result, the sintered pallets exhibit superior hardness when elements with higher oxygen affinity are added; these elements attract oxygen from Mn and form nanoscale oxides that can greatly improve the strength of high-Mn steels.

페라이트계 스테인리스강의 고온염 부식특성에 관한 연구 (High Temperature Salt Corrosion Property of Ferritic Stainless Steels)

  • 송전영;박중철;안용식
    • Journal of Advanced Marine Engineering and Technology
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    • 제33권6호
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    • pp.860-866
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    • 2009
  • It is very important to choose optimal material having good corrosion resistance and capabilities for the part materials such as the automotive exhaust system under a hot salt corrosion atmosphere. Generally, two types of corrosion come into the automotive exhaust system. One is 'Condensate Corrosion', which is occurred by exhaust gas condensate formed at the inner surface of exhaust system heated up during driving, which results in the acid condensate pitting. The other is 'High Temperature Salt Corrosion' occurring from the interaction between the chloride ion coming from salt at the seaside district or snow salt and the outer surface of exhaust system. By the corrosion attack, the main muffler is firstly damaged and the life cycle of an automobile is significantly decreased. It has been investigated that the hot salt corrosion properties of a STS 409L and 436L ferritic stainless steels which are well-known for the materials of the automotive exhaust system. In addition, the corrosion properties of hot dip aluminum coated STS 409L have been compared with uncoated steels. Aluminum coated STS 409L showed a superior corrosion resistance than uncoated STS 409L, and futhermore showed a better corrosion resistance than a STS 436L, which is an expensive ferritic stainless steel having a excellent corrosion resistance caused from more chromium content of an alloying element.

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.

대기 및 Ar-0.2%SO2가스에서 Inconel 740 합금의 고온부식 연구 (Study of High Temperature of Inconel 740 Alloy in Air and Ar-0.2%SO2 Gas)

  • 이동복;김민정
    • 한국표면공학회지
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    • 제54권2호
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    • pp.43-52
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    • 2021
  • The Ni-based superalloy, Inconel 740, was corroded between 800 and 1100℃ for up to 100 hr in air and Ar-0.2%SO2 gas in order to study its corrosion behavior in air and sulfur/oxygen environment. It displayed relatively good corrosion resistance in both environment, because its corrosion was primarily dominated by not sulfidation but oxidation especially in Ar-0.2%SO2 gas. Such was attributed to the thermodynamic stability of oxides of alloying elements when compared to corresponding sulfides. The scales consisted primarily of Cr2O3, together with some NiAl2O4, MnCr2O4, NiCrMnO4, and rutile-TiO2. Sulfur from SO2 gas made scales prone to spallation, and thicker. It also widened the internal corrosion zone when compared to air. The corrosion resistance of IN740 was mainly indebted to the formation of protective Cr2O3-rich oxides, and suppression of the sulfide formation.

합금원소 첨가가 TiAI계의 내산화성에 미치는 영향 (Effects of 3rd Element Additions on the Oxidation Resistance of TiAi Intermetallics)

  • 김봉구;황성식;양명승;김길무;김종집
    • 한국재료학회지
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    • 제4권6호
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    • pp.669-680
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    • 1994
  • 합금원소(Cr, V, Si. Mo, Nb)가 첨가된 TiAi 금속간화합물의 고온 산화거동을 대기중의 900~$1100^{\circ}C$에서 관찰하였다. 산화반응물은 XRD, SEM, WDX을 이용하여 분석하였다. 등온 산화에 있어서 Cr과 V이 각각 첨가된 시편은 무게증가가 많았으나, Si, Mo, Vb가 각각 첨가된 시편은 상대적으로 무게증가각 적었아. 그리고, Cr과 V이 각각 첨가된 시편의 산화속도는 TiAi의 그것보다 항상 크게 나타났으며, Si, Mo, Vb가 각각 첨가된 시편의 산화속도는 TiAi의 그것보다 향상되지 않고, Si, Mo또는 Nb 첨가는 내산화성을 향상시킨다. Si, Mo, Nb이 각각 첨가된 TiAI합금표면에 형성된 산화물은 보호막 역할을 함으로 산소와 합금원소의 확산을 감소시키는 역할을 하였다. 특히, Nb는 산화의 초기단계에서는 $AI_{2}O_{3}$를 형성하려는 경향이 강하기 때문에 연속적인 $AI_{2}O_{3}$층과 조밀한 $Tio_{2}+AI_{2}O_{3}$ 혼합층이 형성되었다. Nb가 첨가된 합금의 백금 marker 실험결과에 따르면, 산소가 주로 합금내부로 확산하여 합금표면에서 산화물을 형성하였다. $900^{\circ}C$에서의 열반복주기(thermal cyclic)산화실험 결과, 다른 합금원소와 비교해 볼 때 Cr또는 Nb첨가가 금속기지와 산화층간의 접착력을 향상시키는 것으로 나타났다.

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B, Nb및 Ti를 함유한 극저탄소강에서 탄화물 및 질화물의 석출이 집합조직에 미치는 영향(ll) (Effects of the Precipitation of Carbides and Nitrides on the Texture Structures in Extra Low Carbon Steel Sheets containing B, Nb and Ti(ll))

  • 이종무;윤국한;이도형
    • 한국재료학회지
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    • 제3권2호
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    • pp.131-139
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    • 1993
  • 극저탄소 알루미늄 킬드강내에 합금원소로 첨가된 Al, Ti, Nb, B등은 열처리 공정중 질화물이나 탄화물로 석출되어 강의 재결정집합조직을 변화시킴으로써 강판재의 디입드로잉 특성에 결정적인 영향을 미친다. 본 연구에서는 Ti및 Nb를 단독으로 또는 동시에 첨가한 데 이어, B, P, Si 및 Mn등을 추가로 첨가한 극저탄소 고강도 강판의 집삽조직에 미치는 질화물, 탄화물과 같은 미세 석출물의 영향을 TEM, SEM, 광학현미경분석에 의하여 조사하였다. Nb 및 Ti를 동시에 첨가한 강에서는 미세한 N$b_2$C 및 T$i_2$AIN가 주로 석출되는 반면, Nb를 단독으로 첨가한 강에서는 미세한 AIN 및 조대한 BN이 석출되고,Ti를 단독으로 첨가한 강에서는 비교적 조대한 T${i_4}{N_3}$및 조대한 ${N_10}{N_22}$/T$i_68$이 석출되는 것으로 관찰되었다. 또한 이러한 탄질화물들의 석출에 의하여 세 강이 서로 다른 결정입도를 나타내는데, 결정입도는 Nb 및 Ti동시첨가강과 Nb단독첨가강이 서로 비슷하고, Ti단독첨가강이 가장 큰 것으로 나타났다.

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기계적 합금화 방법에 의한 금속-카본계에서의 나노복합금속분말의 제조 (Preparation of Nanocomposite Metal Powders in Metal-Carbon System by Mechanical Alloying Process)

  • 김현승;이광민
    • 한국재료학회지
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    • 제8권4호
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    • pp.328-336
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    • 1998
  • 본 연구에서는 기지금속과의 고상이나 액상의 고용한이 거의 없는 금속-카본(carbon)계에서 고에너지 볼밀공정을 이용하여 고체 윤활 청동베어링용 Cu-C-X계 나노복합금속분말을 제조하고자 하였다. Cu-10wt.%C-5wt.%AI과 Cu-10wt.%C-5wt.%Fe의 혼합분말을 이르곤 분위기의 attritor내에서 기계적 합금화한 후 Cu-C-X의 나노복합금속분말의 미세조직 특성을 조사하였다. AI, Fe를 첨가하였을 때 10시간 이상의 MA공정에서부터 약 $10\mu\textrm{m}$이하의 미세한 Cu-C-X나노복합금속분말을 얻을 수 있었으며, MA 시간에 따른 분말의 형상과 미세구조 변화는 금속-금속계의 MA 과정과 유사하게 진행되는 것을 알 수 있었다. Cu-C-X 나노복합금속분말의 X-선 회절시험 결과, MA 시간에 따라 Cu와 C분말의 회절피크의 폭은 넓어지고 회절강도는 감소하였으며, 특히 흑연피크의 MA시간에 따른 소멸은 흑연의 낮은 원자산란계수 때문에 의한 X-선 흡수 영향으로 고찰하였다. Williamson-Hall식으로 계산된 Cu-C-X 나노복합금속분말내의 Cu의 결정립은 15시간 이상의 MA공정에서부터 약 10nm이하의 크기를 가졌으며, TEM 분석결과로는 불규칙한 형상의 약 10-30nm 크기로 복합화된 Cu결정립을 확인할 수 있었다.

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