• 제목/요약/키워드: Ti-Fe alloy

검색결과 204건 처리시간 0.023초

TiFe 공정합금의 미소합금 첨가에 따른 미세구조 변화 및 기계적 물성 (Influence of Minor Element on Microstructure and Mechanical Properties of TiFe Ultrafine Eutectic Alloys)

  • 이찬호;조재혁;문상철;김정태;여은진;김기범
    • 한국재료학회지
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    • 제22권11호
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    • pp.615-619
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    • 2012
  • Recently, ultrafine grained (ufg, typically 100 > d > 500 nm) Ti-Fe eutectic materials have been highlighted due to their extraordinarily high strength and good abrasion resistance compared to conventional coarse grained (cg, d > $1{\mu}m$) materials. However, these materials exhibit limited plastic strain and toughness during room temperature deformation due to highly localized shear strain. Several approaches have been extensively studied to overcome such drawbacks, such as the addition of minor elements (Sn, Nb, Co, etc.). In this paper, we have investigated the influence of the addition of Gd and Y contents (0.3-1.0 at.%) into the binary Ti-Fe eutectic alloy. Gd and Y are chosen due to their immiscibility with Ti. Microstructural investigation reveals that the Gd phase forms in the eutectic matrix and the Gd phase size increases with increasing Gd content. The improvement of the mechanical properties is possibly correlated to the precipitation hardening. On the other hand, in the case of Ti-Fe-Y alloys, with increasing Y contents, primary phases form and lamellar spacing increases compared to the case of the eutectic alloy. Investigation of the mechanical properties reveals that the plasticity of the Ti-Fe-Y alloys is gradually improved, without a reduction of strength. These results suggest that the enhancement of the mechanical properties is closely related to the formation of the primary phase.

Fe 함량에 따른 Ti-5Mo-xFe 준안정 베타 합금의 압축 변형거동 변화 (Change of Compressive Deformation Behaviors of Ti-5Mo-xFe Metastable Beta Alloy According to Fe Contents)

  • 이용재;이재관;이동근
    • 열처리공학회지
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    • 제36권5호
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    • pp.303-310
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    • 2023
  • β titanium alloys are widely used in aerospace industry due to their excellent specific strength and corrosion resistance. In particular, mechanical properties of metastable β titanium can efficiently be controlled by various deformation mechanisms such as slip, twinning, and SIM (Stress-Induced Martensite Transformation), making it an ideal material for many industrial applications. In this study, Ti-5Mo-xFe (x=1, 2, 4 wt%) alloy was designed by adding a relatively inexpensive β element to ensure price competitiveness. Additionally, microstructural analysis was conducted using OM, SEM, and XRD, while mechanical properties were evaluated through hardness and compression tests to consider the deformation mechanisms based on the Fe content. SIMT occurred in all three alloys and was influenced by the presence of βm (metastable beta) and beta stability. As the Fe content decreased, the α'' phase increased due to SIMT occurring within the βm phase, resulting in softening. Conversely, as the Fe content increased, the strength of the alloy increased due to a reduction in α'' formation and the contributions of solid solution strengthening and grain strengthening. Moreover, unlike the other alloys, shear bands were observed only in the fracture of the Ti-5Mo-4Fe alloy, which was attributed to differences in texture and microstructure.

Ni/MH 2차전지용 TiFe1-xNix 합금전극의 방전특성에 대한 열처리의 영향 (Effects of Heat-treatments on Discharge Characteristics of TiFe1-xNix Alloy Electrodes for Ni/MH Secondary Battery)

  • 정순돌;정상식;안효준;김기원
    • 한국수소및신에너지학회논문집
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    • 제9권4호
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    • pp.135-141
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    • 1998
  • Fe-Ti계 수소저장합금 전극의 방전특성을 개선하기 위하여 Ni을 첨가한 $TiFe_{1-x}Ni_x$ 합금을 제조하여 방전특성과 열처리 온도에 따른 변화를 조사하였다. 합금의 조성은 x = 0.1에서 0.6까지 0.1 단위씩 변화시킨 6가지 조성을 선택하여 각각에 대한 초기방전용량과 충방전사이클에 따른 용량변화를 조사하였다. 초기방전용량은 Ni의 조성이 클수록 증가하다가 x = 0.6 에서 다시 감소하였으며 Ni의 조성이 증가함에 따라 사이클특성은 전반적으로 매우 악화되었다. 열처리온도가 사이클 특성에 미치는 영향을 조사하기 위하여 초기용량이 가장 우수한 $TiFe_{0.5}Ni_{0.5}$ 합금에 대하여 $700{\sim}900^{\circ}C$ 의 온도범위에서 열처리를 시행한 후 방전특성을 조사하였다. 열처리에 의해서 초기용량은 감소되지만 사이클 특성은 현저히 개선되었다. $700{\sim}850^{\circ}C$의 온도범위에서 1시간 열처리한 전극의 경우에 사이클이 진행되면서 방전용량이 크게 회복되었으며, 열처리한 표면조직을 SEM 으로 관찰해 본 결과 이는 충분한 전극강도 및 기공율에 기인한 것으로 생각되었다. $900^{\circ}C$에서 1시간 열처리한 전극은 충분한 기공율을 갖지 못하여 방전특성이 좋지 않음을 알 수 있었다.

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산소함량에 따른 Ti-Al-Fe-Si-O 합금의 기계적 특성 및 미세조직 변화 (The Effects of Oxygen Content on Microstructure and Mechanical Properties of Ti-Al-Fe-Si-O alloy)

  • 배진주;염종택;박찬희;홍재근;김성웅;윤석영;이상원
    • 열처리공학회지
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    • 제29권6호
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    • pp.264-271
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    • 2016
  • The effect of the oxygen content and the annealing temperature on the tensile behavior of the Ti-1.5Al-3Fe-0.25Si-(0.1~0.5)O alloy was investigated. The tensile properties were dependent on the volume fraction of the microstructure constituents, i.e. the equixed ${\alpha}$, equixed ${\beta}$ and lamellar ${\alpha}$. The results showed that the O-partitioned equixed ${\alpha}$ had a much higher strength compared to the equixed ${\beta}$. The strength of the lamellar ${\alpha}$ increased with increasing the annealing temperature because the O content of the lamellar ${\alpha}$ increased. Ti-1.5Al-3Fe-0.25Si-0.3O alloy annealed to $900^{\circ}C$ where the volume fraction of lamellar ${\alpha}$ was the highest exhibited an excellent combination of the strength (1198.5 MPa) and ductility (27.5%). The effect of the lamellar ${\alpha}$ on the ductility was discussed.

수소분리용 TiCoxFe1-x(x=0.50~1.00)계 금속막 제조 (Preparation of TiCoxFe1-x(x=0.50~1.00) System Metal Membrane for Hydrogen Separation)

  • 장규영;강태범
    • 멤브레인
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    • 제25권2호
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    • pp.191-201
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    • 2015
  • $TiCo_xFe_{1-x}$(x=0.50~1.00)계 합금을 제조하고, 합금의 특성을 X-ray diffractometer (XRD), pressure composition temperature (PCT)곡선, scanning electron microscopy (SEM)에 의해 조사하였고, $TiCo_xFe_{1-x}$(x=0.50~1.00)-stainless steel (SS) 복합막에 대해 $H_2-N_2$ 혼합기체분리실험을 하였다. X-선 회절분석에 의하면 $TiCo_xFe_{1-x}$(x=0.50~1.00)계 합금의 결정구조는 TiCo와 같은 입방정구조이었다. $TiCo_xFe_{1-x}$(x=0.50~1.00)계 합금은 $120^{\circ}C$에서 hysteresis현상을 나타내었고, 합금 중 Fe의 양이 증가함에 따라 x=0.90~1.00과 0.50~0.55 범위에서는 hysteresis가 증가하였고, x=0.55~0.90 범위에서는 감소하였다. 가장 작은 hysteresis를 나타낸 합금은 $TiCo_{0.55}Fe_{0.45}$이었다. $120^{\circ}C$에서 $TiCo_xFe_{1-x}$(x=0.50~1.00)-SS 복합막의 수소투과압력의 최저값은 $TiCo_{0.55}Fe_{0.45}$에서 2.5 atm을 나타내었고, 최대값은 $TiCo_{0.90}Fe_{0.10}$에서 10 atm을 나타내었다. $TiCo_xFe_{1-x}$(x=0.50~.00)-SS 복합막에 의하여 $120^{\circ}C$에서 $H_2-N_2$ 혼합기체를 분리하는 경우, 가장 우수한 복합막은 고압부의 수소투과압력이 2.5 atm으로 가장 낮고, hysteresis가 가장 작은 $TiCo_{0.55}Fe_{0.45}$-SS 복합막이었다.

표면처리와 전극 재료가 철-니켈 합금 도금에 미치는 영향 (Effects of Surface Treatment of Cathode Materials on the Electrodeposition Behavior of Fe-Ni Alloy)

  • 강나영;이재호
    • 마이크로전자및패키징학회지
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    • 제29권4호
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    • pp.71-75
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    • 2022
  • 본 연구에서는 환원전극 기판이 철-니켈 합금 도금에 미치는 영향을 알아보기 위해 경면 스테인리스강(SS304, SS430)과 티타늄 판을 환원전극으로 사용해 도금을 진행했으며, 티타늄의 경우 3M 황산-메탄올 용액에서 전압과 연마시간을 조절하여 찾은 최적의 시편(10 V, 8 분)과 표면 처리하지 않은 시편을 사용하였다. 도금층의 조성을 분석한 결과, 스테인리스강과 티타늄 기판에서 니켈보다 환원 경향성이 낮은 철이 먼저 환원되는 비정상 도금 현상이 관찰되었으나 도금층의 앞면과 뒷면의 조성 불균일이 확인되었다. 도금 중 포텐셜 변화를 관찰한 결과, 스테인리스강보다 티타늄을 사용했을 때 도금 셀에 높은 과전압이 걸렸으며, 이로 인해 철의 핵생성 속도가 증가해 과전압이 가장 높았던 표면처리를 하지 않은 티타늄에서 형성된 도금층 뒷면의 철 함량이 높아진 것으로 보인다. 또한 티타늄을 기판을 표면 처리했을 때 셀에 걸린 과전압이 낮아진 것을 확인할 수 있었다.

Ti-10V-2Fe-3Al 합금의 열간성형성에 미치는 초기미세조직의 영향 (Effect of Initial Microstructures on Hot Formability of Ti-10V-2Fe-3Al Alloy)

  • 신동혁
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 1999년도 춘계학술대회논문집
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    • pp.153.2-158
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    • 1999
  • A study has been made to investigate how the fomability of Ti-10V-2Fe-3Al alloy is related to the initial microstructure and process variables such as temperature and strain rate. It has been found that the deformation resistance at high temperature is increased with the increase in the thickness of grain boundary a (GB)a and/or acicular a phase and however the effect of a morphology on the hot formability is considered insignificant due to the breakage of GB a and/or acicular a into several equiaxed a particles

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주조용 Al-4wt%Mg-0.9wt%Si-0.3wt%Mn-0.15wt%Fe 합금의 결정립 미세화와 주조특성에 미치는 Ti, B, Zr 첨가원소의 영향 (Effect of Ti, B, Zr Elements on Grain Refinement and Castability of Al-4wt%Mg-0.9wt%Si-0.3wt%Mn-0.15wt%Fe Casting Alloy)

  • 김헌주;박수민
    • 한국주조공학회지
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    • 제35권5호
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    • pp.120-127
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    • 2015
  • The effects of Ti, B and Zr on grain refinement and castability were investigated in Al-4wt%Mg-0.9wt%Si-0.3wt%Mn-0.15wt%Fe alloy. Measurement of cooling curve and micro-structure observation were performed to analyze the effects of the addition of minor elements Ti, B and Zr during solidification. The prominence of effect on grain refinement was in increasing order for Ti, Zr and B element. Fine grain size and an increase of the crystallization temperature for ${\alpha}$-Al solution were evident as the amount of addition elements increased in this study. Addition of 0.15wt% Ti was most effective for grain refinement, and the resulting grain size of ${\alpha}$-Al solution for shell mold and steel mold were $72.3{\mu}m$ and $23.5{\mu}m$, respectively. Fluidity and shrinkage tests were perform to evaluate the castability of the alloy. Maximum fluidity length and minimum ratio of micro shrinkage were recorded for 0.15wt% Ti addition due to the effect of the finest grain size.

저융점 원소의 첨가에 따른 Ti65Fe35 과공정 합금의 미세구조와 기계적 특성의 변화 (Evolution on Microstructure and Mechanical Property of Ti65Fe35 Hypereutectic Alloys by Adding Low Melting Temperature Elements)

  • 황윤중;홍성환;김정태;김영석;박혜진;김희진;정연범;이영훈;김기범
    • 한국재료학회지
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    • 제27권10호
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    • pp.557-562
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    • 2017
  • The microstructural evolution and modulation of mechanical properties were investigated for a $Ti_{65}Fe_{35}$ hypereutectic alloy by addition of $Bi_{53}In_{47}$ eutectic alloys. The microstructure of these alloys changed with the additional BiIn elements from a typical dendrite-eutectic composite to a bimodal eutectic structure with primary dendrite phases. In particular, the primary dendrite phase changed from a TiFe intermetallic compound into a ${\beta}$-Ti solid solution despite their higher Fe content. Compressive tests at room temperature demonstrated that the yield strength slightly decreased but the plasticity evidently increased with an increasing Bi-In content, which led to the formation of a bimodal eutectic structure (${\beta}$-Ti/TiFe + ${\beta}$-Ti/BiIn containing phase). Furthermore, the (Ti65Fe35)95(Bi53In47)5 alloy exhibited optimized mechanical properties with high strength (1319MPa) and reasonable plasticity (14.2 %). The results of this study indicate that the transition of the eutectic structure, the type of primary phases and the supersaturation in the ${\beta}$-Ti phase are crucial factors for controlling the mechanical properties of the ultrafine dendrite-eutectic composites.