• 제목/요약/키워드: Cu-Fe alloy

검색결과 278건 처리시간 0.025초

고잔류자화 $\alpha$-Fe기 Nd-Fe-B 초미세결정립 합금의 자기특성 (Magnetic Properties of $\alpha$-Fe Based Nd-Fe-B Nanocrystalline with High Remanence)

  • 조용수;김윤배;박우식;김창석;김택기
    • 한국자기학회지
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    • 제5권1호
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    • pp.38-41
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    • 1995
  • $\alpha$-Fe를 주상으로 하는 새로운 Nd-Fe-B계 합금을 개발하기 위하여 Nd 함유량을 4at.%로 고정시킨 Nd-Fe-B 초미세결정립합금의 제조 및 자기특성이 조사되었다. 급속응고법으로 제조된 $Nd_{4}Fe_{85.5}B_{10.5}$ 비정질합금은 결정화하여 $\alpha$-Fe 기지상에 $Nd_{2}Fe_{14}B$이 형성되나 자기특성${_{i}H_{c}=95.5kA/m(1.2kOe),\;Br=1.2T}$은 열화된다. Nb 및 Cu를 첨가한 $Nd_{4}Fe_{82}B_{10}Nb_{3}Cu_{1}$ 합금은 $\alpha$-Fe 결정립미세화(<30nm)로 보자력이 207kA/m(2.6 kOe)로 증가하나 잔류자화는 개선되지 않았다. 이 합금조성에 8at.% Co 첨가는 결정립을 더욱 미세화시키며 자기특성을 개선 시킨다. 최적열처리조건에서 $Nd_{4}Fe_{74}Co_{8}B_{10}Nb_{3}Cu_{1}$ 합금의 잔류자화, 보자력 및 최대에너지적이 각각 1.34 T, 219 kA/m (2.75kOe) 및 $95.5kJ/m^{3}$(12MGOe) 이다.

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시효 처리후 Sn-3.5Ag solder의 Cu, Alloy42 기판에서의 접합특성 (Adhesion Properties of Sn-3.5Ag solder on Cu, Alloy42 substrates after aging)

  • 김시중;김주연;배규식
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 하계학술대회 논문집
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    • pp.640-644
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    • 2000
  • Sn-3.5Ag 무연합금을 Cu 및 Alloy42 리드프레임에 납땜접합(solder joint)하고 미세조직, 젖 음성, 전단강도, 시효효과를 측정하여 비교하였다. CU의 경우, 납땜의 Sn기지상안에 Ag$_3$Sn$_{5}$상이, 그리고 땜납/리드프레임의 경계면에는 1~2$\mu\textrm{m}$ 두께의 Cu$_{6}$Sn$_{5}$상이 형성되었다. Alloy42의 경우, 기지상내에는 낮은 밀도의 Ag$_3$Sn상만이, 그리고 계면에는 0.5~1.5$\mu\textrm{m}$ 두께의 FeSn$_2$이 형성되었다. 한편. Cu에 비해 Alloy42 리드프레임에서 전단강도는 낮았으며, 시효 시간에 따라 전단강도는 모두 감소하였다. 18$0^{\circ}C$에서 1주일간 시효처리 후, Cu 리드프레임에는 계면에 η-Cu$_{6}$Sn$_{5}$ 층이 15-20$\mu\textrm{m}$ 성장하였고, A11oy42 리드프레임에는 기지상내에 AgSn$_3$이 조대하게 성장하였으며, 계면에는 FeSn$_2$층만이 약 $1.5\mu\textrm{m}$로 성장하였다.성장하였다.

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Dynamic Magnetostriction Characteristics of an Fe-Based Nanocrystalline FeCuNbSiB Alloy

  • Chen, Lei;Li, Ping;Wen, Yumei
    • Journal of Magnetics
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    • 제16권3호
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    • pp.211-215
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    • 2011
  • The dynamic magnetostriction characteristics of an Fe-based nanocrystalline FeCuNbSiB alloy are investigated as a function of the dc bias magnetic field. The experimental results show that the piezomagnetic coefficient of FeCuNbSiB is about 2.1 times higher than that of Terfenol-D at the low dc magnetic bias $H_{dc}$ = 46 Oe. Moreover, FeCuNbSiB has a large resonant dynamic strain coefficient at quite low Hdc due to a high mechanical quality factor, which is 3-5 times greater than that of Terfenol-D at the same low $H_{dc}$. Based on such magnetostriction characteristics, we fabricate a new type of transducer with FeCuNbSiB/PZT-8/FeCuNbSiB. Its maximum resonant magnetoelectric voltage coefficient achieves ~10 V/Oe. The ME output power reaches 331.8 ${\mu}W$ at an optimum load resistance of 7 $k{\Omega}$ under 0.4 Oe ac magnetic field, which is 50 times higher than that of the previous ultrasonic-horn-substrate composite transducer and it decreases the size by nearly 86%. The performance indicate that the FeCuNbSiB/PZT-8/FeCuNbSiB transducer is promising for application in highly efficient magnetoelectric energy conversion.

Cu-Fe계 합금의 강도 및 전기전도도에 미치는 Cr 원소첨가의 영향 (Effects of Added Cr Element on the Tensile Strength and Electrical Conductivity of Cu-Fe Based Alloys)

  • 김대현;이광학
    • 한국재료학회지
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    • 제20권2호
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    • pp.60-64
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    • 2010
  • This study looked at high performance copper-based alloys as LED lead frame materials with higher electrical-conductivity and the maintenance of superior tensile strength. This study investigated the effects on the tensile strength, electrical conductivity, thermal softening, size and distribution of the precipitation phases when Cr was added in Cu-Fe alloy in order to satisfy characteristics for LED Lead Frame material. Strips of the alloys were produced by casting and then properly treated to achieve a thickness of 0.25 mm by hot-rolling, scalping, and cold-rolling; mechanical properties such as tensile strength, hardness and electrical-conductivity were determined and compared. To determine precipitates in alloy that affect hardness and electrical-conductivity, electron microscope testing was also performed. Cr showed the effect of precipitation hardened with a $Cr_3Si$ precipitation phase. As a result of this experiment, appropriate aging temperature and time have been determined and we have developed a copper-based alloy with high tensile strength and electrical-conductivity. This alloy has the possibility for use as a substitution material for the LED Lead Frame of Cu alloy.

Magnetic Properties of Amorphous FeSiB and Nanocrystalline $Fe_{73}Si_{16}B_7Nb_3Cu_1$ Soft Magnetic Sheets

  • Cho, H.J.;Cho, E.K.;Song, Y.S.;Kwon, S.K.;Sohn, K.Y.;Park, W.W.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part2
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    • pp.786-787
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    • 2006
  • The magnetic inductance of nanocrystalline $Fe_{73}Si_{16}B_7Nb_3Cu_1$ and an amorphous FeSiB powder sheet has been investigated to identify RFID performance. The powder was mixed with binder and solvent and tape-casted to form films. Results show annealing significantly influenced on the inductance of the material. The surface oxidation of the particles was the main reason for the reduced inductance. The maximum inductance of $Fe_{73}Si_{16}B_7Nb_3Cu_1$ alloy was about $88{\mu}H$ at 17.4 MHz, about 65% greater compared to the FeSiB alloy. The higher inductance in the nanocrystalline alloy indicates it may be used as a potential replacement of current RFID materials.

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Fabrication of FeCuNi alloy by mechanical alloying followed by consolidation using high-pressure torsion

  • Asghari-Rad, Peyman;Kim, Yongju;Nguyen, Nhung Thi-Cam;Kim, Hyoung Seop
    • 한국분말재료학회지
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    • 제27권1호
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    • pp.1-7
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    • 2020
  • In this research, a new medium-entropy alloy with an equiatomic composition of FeCuNi was designed using a phase diagram (CALPHAD) technique. The FeCuNi MEA was produced from pure iron, copper, and nickel powders through mechanical alloying. The alloy powders were consolidated via a high-pressure torsion process to obtain a rigid bulk specimen. Subsequently, annealing treatment at different conditions was conducted on the four turn HPT-processed specimen. The microstructural analysis indicates that an ultrafine-grained microstructure is achieved after post-HPT annealing, and microstructural evolutions at various stages of processing were consistent with the thermodynamic calculations. The results indicate that the post-HPT-annealed microstructure consists of a dual-phase structure with two FCC phases: one rich in Cu and the other rich in Fe and Ni. The kernel average misorientation value decreases with the increase in the annealing time and temperature, indicating the recovery of HPT-induced dislocations.

Microstructural Change and Magnetic Properties of Nanocrystalline Fe-Si-B-Nb-Cu Based Alloys Containing Minor Elements

  • Nam, Seul-Ki;Moon, Sun-Gyu;Sohn, Keun Yong;Park, Won-Wook
    • Journal of Magnetics
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    • 제19권4호
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    • pp.327-332
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    • 2014
  • The effect of minor element additions (Ca, Al) on microstructural change and magnetic properties of Fe-Nb-Cu-Si-B alloy has been investigated, in this paper. The Fe-Si-B-Nb-Cu(-Ca-Al) alloys were prepared by arc melting in argon gas atmosphere. The alloy ribbons were fabricated by melt-spinning, and heat-treated under a nitrogen atmosphere at $520-570^{\circ}C$ for 1 h. The soft magnetic properties of the ribbon core were analyzed using the AC B-H meter. A differential scanning calorimetry (DSC) was used to examine the crystallization behavior of the amorphous alloy ribbon. The microstructure was observed by X-ray diffraction (XRD), transmission electron microscope (TEM) and scanning electron microscope (SEM). The addition of Ca increased the electrical resistivity to reduce the eddy current loss. And the addition of Al decreased the intrinsic magnetocrystalline anisotropy $K_1$ resulting in the increased permeability. The reduction in the size of the ${\alpha}$-Fe precipitates was observed in the alloys containing of Ca and Al. Based on the results, it can be concluded that the additions of Ca and Al notably improved the soft magnetic properties such as permeability, coercivity and core loss in the Fe-Nb-Cu-Si-B base nanocrystalline alloys.

$Nd_{x}{(Fe_{0.9}Co_{0.1})}_{90-x}B_{6}Nb_{3}Cu_{1}(x=\;3,\;4,\;5)$ 초미세결정립합금의 자기특성 (Magnetic Propertes of $Nd_{x}{(Fe_{0.9}Co_{0.1})}_{90-x}B_{6}Nb_{3}Cu_{1}(x=\;3,\;4,\;5)$ Nanocrystalline Alloys)

  • 조용수;김만중;천정남;김택기;박우식;김윤배
    • 한국자기학회지
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    • 제5권5호
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    • pp.880-894
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    • 1995
  • B의 함유량을 6 at% 고정하고 Nd함유량을 3~5 at%로 변화시킨 $\alpha$-Fe기 Nd-Fe-B 합금의 자기특성이 조사 되었다. 급속응고법으로 제조된 $Nd_{x}{(Fe_{0.9}Co_{0.1})}_{90-x}B_{6}Nb_{3}Cu_{1}(x=\;3,\;4,\;5)$ 비정질합금은 열처리에 의하여 초미세결정립으로 결정화하며, Nd의 함유량에 따라 잔류자화 및 보자력이 변한다. x=3의 경우 최적열처리조건에서 $\alpha$-Fe(Co) 부피분율의 증가로 잔류자 화는 증가하나, 보자력은 감소한다. 그러나 Nd 함유량의 증가는 $Nd_{2}{(Fe,\;Co)}_{14}B$ 부피분율의 증가로 인하여 잔류자화는 감소하나 보자력은 향상된다. $640^{\circ}C$, 10 min 열처리조건에서 $Nd_{5}{(Fe_{0.9}Co_{0.1})}_{85}B_{6}Nb_{3}Cu_{1}$의 결정립크기는 약 20 nm이며, 잔류자화, 보자력 및 최대에너지적 은 각각 1.35 T, 219 kA/m (2.75 kOe) 및 $129\;kJ/m^{3}$ (16.2 MGOe)으로 가장 우수하다.

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Fe-Al-Nb-B-(Cu)계 초미세결정합금의 자기적 특성 (Magnetic Properties of Ultrafine grained Fe-Al-Nb-B-(Cu) Alloys.)

  • 박진영;서수정;김규진;김광윤;노태환
    • 한국자기학회지
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    • 제6권4호
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    • pp.218-224
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    • 1996
  • 새로운 고성능 자심용 연자성 합금을 개발하기 위해, 급냉응고 방식에 의해 제조된 $Fe_{83-x}Al_{x}Nb_{5}B_{12}(X=1~5at%)$ 합금의 결정화거동 및 자기적 특성을 조사하였다. 3at% Al의 $Fe_{80}Al_{3}Nb_{5}B_{12}$ 합금이 조사된 Fe-Al-Nb-B계 합금중에서 가장 우수한 연자기 특성을 가지며, 이때 미세한 $\alpha-Fe$상 결정립 조직을 가지는 것으로 판명되었다. 또, 이 조성의 합금에 1 at%의 Cu를 첨가하면, 약 6~7 nm정도의 크기를 가지는 극히 미세한 결정립의 $\alpha-Fe$ 상조직이 얻어졌으며 이에 따라 대단히 현저한 연자기 특성의 향상이 실현되었다. 이때 초미세 결정구조 $Fe_{79}Al_{3}Nb_{5}B_{12}Cu_{1}$ 합금의 자기적 특성은 다음과 같다 : ${\mu}_{eff}(1\;kHz)=26,000,\;B_{10}=1.45\;T,\;H_{c}=25\;mOe,\;P_{c}(100\;kHz,\;0.2\;T)=55\;W/kg$.

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열처리조건에 따른 Cu-Ni-Si-Sn-Fe-P 석출경화형 동합금계의 물성변화 특성 (Mechanical and Physical Property Changes of Cu-Ni-Si-Sn-Fe-P Copper Alloy System According to the Heat Treatment Conditions)

  • 김승호;염영진
    • 열처리공학회지
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    • 제26권5호
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    • pp.225-232
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    • 2013
  • The influence of aging treatment, addition elements and rolling reduction ratio on the microstructure, mechanical, electrical and bendability properties of Cu-Ni-Si-P-x (x = Fe, Sn, Zn) alloys for connector material application was investigated. SEM/EDS analysis exhibited that Ni2-Si precipitates with a size of 20~100 nm were distributed in grains. Fe, Sn, Zn elemnets in Cu-Ni-Si-P alloy imporved the mechanical strength but it was not favor in increasing of electrical conductivity. As higher final rolling reduction ratio, the strength and electrical conductivity is increased after aging treatment, but it indicated excellent bendability. Especially, Cu-2Ni-0.4Si-0.5Sn-0.1Fe-0.03P alloy show the tensile strength value of 700MPa and the electrical conductivity was observed to reach a maximum of 40%IACS. It is optimal for lead frame and connector.