• Title/Summary/Keyword: amorphous alloy ribbon

Search Result 38, Processing Time 0.031 seconds

A Study on Development of the Displacement Sensor of CoFeSiB Amorphous Alloy Magnetic Ribbon (CoFeSiB 아몰퍼스합금 자기리본 변위센서 개발에 관한 연구)

  • 강재덕;신용진
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
    • /
    • v.14 no.2
    • /
    • pp.163-168
    • /
    • 2001
  • This dissertation describes the development of a sensor for measuring microscopic displacement where we use CoFeSiB amorphous alloy magnetic ribbon having near zero magnetostrictive properties. For the development of the sensor, we first fabricate amorphous alloy magnetic ribbon, and then investigate its physical and magnetic properties. Finally, its possibility of practical application as a displacement sensor is discussed. The experimental samples were made of near zero magnetostrictive (Co$\_$0.94/Fe$\_$0.06/)$\_$9/Si$_2$B$\_$19/ alloy which were fabricated by a rapid liquid quenching method. As a results, we got amorphous alloy magnetic ribbons of 12㎛ in thickness, 10 mm in length, and 2.5 m in width. It was found that the crystallization temperature and the Curie temperature are around 451$\^{C}$ and around 441$\^{C}$ respectively. We couldn't observe any noticeable change of the impedance frequency of 10MHz, but observed the impedance change of 3.76 %/Oe at 100 MHz. The inductance was nearly stable over the frequency range of 1∼10 MHz, In addition, it was observed that the variation of the inductance and the impedance were linear within the displacement ranges of 20∼60㎛. As the results of the experiments, it is suggested that the displacement sensor which is fabricated by using amorphous alloy magnetic ribbon of (Co$\_$0.04/Fe$\_$0.06/)$\_$79/Si$_2$B$\_$19/ compound, can be used as a sensor to detect microscopic displacement.

  • PDF

Spatial Distributions of Alloying Elements Obtained from Atom Probe Tomography of the Amorphous Ribbon Fe75C11Si2B8Cr4

  • Shin, Jinkyung;Yi, Seonghoon;Pradeep, Konda Gokuldoss;Choi, Pyuck-Pa;Raabe, Dierk
    • Korean Journal of Materials Research
    • /
    • v.23 no.3
    • /
    • pp.190-193
    • /
    • 2013
  • Spatial distributions of alloying elements of an Fe-based amorphous ribbon with a nominal composition of $Fe_{75}C_{11}Si_2B_8Cr_4$ were analyzed through the atom probe tomography method. The amorphous ribbon was prepared through the melt spinning method. The macroscopic amorphous natures were confirmed using an X-ray diffractometer (XRD) and a differential scanning calorimeter (DSC). Atom Probe (Cameca LEAP 3000X HR) analyses were carried out in pulsed voltage mode at a specimen base temperature of about 60 K, a pulse to base voltage ratio of 15 %, and a pulse frequency of 200 kHz. The target detection rate was set to 5 ions per 1000 pulses. Based on a statistical analyses of the data obtained from the volume of $59{\times}59{\times}33nm^3$, homogeneous distributions of alloying elements in nano-scales were concluded. Even with high carbon and strong carbide forming element contents, nano-scale segregation zones of alloying elements were not detected within the Fe-based amorphous ribbon. However, the existence of small sub-nanometer scale clusters due to short range ordering cannot be completely excluded.

Bulk Amophisation and Decomposition Behavior of Mg-Cu-Y Alloys (Mg-Cu-Y합금의 벌크 비정질화 및 상분해 거동)

  • Kim, S.H.;Kim, D.H.;Lee, J.S.;Park, C.G.
    • Applied Microscopy
    • /
    • v.26 no.2
    • /
    • pp.235-241
    • /
    • 1996
  • Amophization and decomposition behaviour in $Mg_{62}Cu_{26}Y_{12}$ alloy prepared by melt spinning method and wedge type metal mold casting method have been investigated by a detailed transmission electron microscopy. Amorphous phase has formed in melt-spun ribbon. In the case of the wedge type specimen, however, the amorphous phase has formed only around the tip area within about 2 mm thickness. The remaining part of the wedge type specimen consists of crystalline phases, $Mg_{2}Cu\;and\;Cu_{2}Y$. The supercooling for crystallization behaviour of the amorphous $Mg_{62}Cu_{26}Y_{12}$ alloy, ${\Delta}T_x$ has been measured to be about 60 K. Such a large undercooling of the crystallization bahaviour enables formation of the amorphous phase in the $Mg_{62}Cu_{26}Y_{12}$ alloy under the cooling rate of $10^{2}K/s$. The amorphous $Mg_{62}Cu_{26}Y_{12}$ has decomposed into crystalline phases, $Mg_{2}Cu\;and\;Cu_{2}Y$ after heat treatment at $170^{\circ}C\;and\;250^{\circ}C$.

  • PDF

Effect of Substrate on Electroless Co-Base Deposited Films (무전해 코발트계 석출막에 미치는 기판의 영향)

  • Han, Chang-Suk;Chun, Chang-Hwan;Han, Seung-Oh
    • Korean Journal of Materials Research
    • /
    • v.19 no.6
    • /
    • pp.319-324
    • /
    • 2009
  • The deposition behavior and structural and magnetic properties of electroless Co-B and Co-Fe-B deposits, as well as the amorphous ribbon substrates, were investigated. These Co-based alloy deposits exhibited characteristic polycrystalline structures and surface morphology and magnetic properties that were dependent on the type of amorphous substrates. The catalytic activity sequence of the amorphous ribbon electrodes for anodic oxidation of DMAB was estimated from the current density-potential curve in the anodic partial electrolytic bath that did not contain the metal ions. Both the deposition rate and potential in the initial region were obtained in order of the catalytic activity, depending on the alloy compositions of the substrates. The deposition rate linearly varied against the deposition time. The initial deposition potential may have also determined the structural and magnetic properties of the deposit based on the thickness of ${\mu}m$ order. Furthermore, a basic study of the electroless deposition processes on an amorphous ribbon substrate has been carried out in connection with the structural and magnetic properties of the deposits.

Magnetic Impeadance Effects by the Displacement of Amorphous Ribbon (아몰퍼스 리본의 변위에 의한 자기임피던스 효과)

  • 신용진;소대화;김현욱;임재근;강재덕
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
    • /
    • 1999.11a
    • /
    • pp.73-76
    • /
    • 1999
  • In this thesis, we fabricate a zero-magnetostrictive amorphous ribbon measure the impeadance effect, and then Investigate possibility as a sensor material. $Co_{72.5}$F $e_{0.5}$M $o_{2}$ $B_{15}$ S $i_{5}$ is used as composition of specimen alloy. We first melt the specimen in high frequency induction furnace and then rapidly quench it by using single roll technique. As the result, we obtain a ribbon where thickness is 12${\mu}{\textrm}{m}$, width is 1mm and length is 93mm. Consequently, it is proved through this study that zero-magnetostrictive amorphous ribbon can be used as an excellent magnetic sensor material.rial.l.

  • PDF

MICROCRYSTALLINE Fe-Si-Al-B THIN RIBBON

  • Sun, Guiqin;Yu, Xiaojun;Zhang, Jikai;Narita, Kenji
    • Journal of the Korean Magnetics Society
    • /
    • v.5 no.5
    • /
    • pp.504-506
    • /
    • 1995
  • By means of adding B into Sendust alloy (Fe-Si-Al) with state of amorphous ribbon, mechnical properties of alloy was improved effectively, and magnetic properties didn't decrease obviously. The optimum adding quantity of B is 0.015-0.03 wt%. The adding of B was thought to give rise to reduction of ordering degree of $Fe_{3}(Si,Al)$ phase of Sedust alloy(Fe-Si-Al-B) and result in improvment of embrittlement of this alloy.

  • PDF

Hydrogen Embrittlement and Surface Properties of Pd-coated Zr-based Amorphous Alloys (Pd 코팅된 Zr기 비정질 합금의 수소취성 및 표면특성)

  • Seok, Song;Lee, Dock-Young;Kim, Ki-Bae
    • Transactions of the Korean hydrogen and new energy society
    • /
    • v.18 no.2
    • /
    • pp.182-188
    • /
    • 2007
  • [ $Zr_{50}-Ni_{27}-Nb_{18}-Co_5$ ] amorphous alloys ribbon was prepared by a single-roller melt-spinning technique. In order to improve the hydrogen kinetics Pd-coating were carried out on each side of the amorphous ribbon. Pd prevents oxidation of Zr and catalyses the dissociation of molecular hydrogen to atomic hydrogen. In this work, the hydrogen embrittlement and surface properties on Zr-based amorphous alloys were investigated. The Zr-based amorphous alloys were characterized by X-ray diffractometry(XRD) and differential scanning calorimetry(DSC). The morphology of surface and roughness was observed by using scanning electron microscopy(SEM) and atomic force microscopy (AFM). A lattice parameter of both Pd and Zr-based amorphous alloy was increased after hydrogen permeation at 473 K. After hydrogen permeation at 473 K, some cracks were observed on the surface of Pd, which was the cause for the hydrogen embrittlement. The crystallization temperature of Zr-based amorphous alloy was decreased due to the permeated hydrogen.

Influence of Humidity Variation on the Surface Deffects and Soft Magnetic Properties in the Fabrication of Fe Based Amorphous Alloy Ribbon by the PFC Process (PFC프로세스 의한 Fe기 Fe78Si9B13 비정질 합금리본 제조에 있어서 습도변화가 표면결함 및 연자기적 특성에 미치는 영향)

  • Choi, Y.J.;Jang, S.J.;Kim, S.W.;Jeon, B.S.;Kim, S.M.;Song, C.B.;Kim, Y.C.;Namkung, J.
    • Journal of the Korean Magnetics Society
    • /
    • v.25 no.1
    • /
    • pp.4-9
    • /
    • 2015
  • This study was carried out to investigate a influence of humidity variation (%) on the magnetic properties and the surface flaws in the fabrication of Fe-based $Fe_{78}Si_9B_{13}$ amorphous alloy ribbon by Planar Flow Casting process. As a result, the size of the air pocket and the droplet which is observed in the contact surface and the free face of the amorphous alloy ribbon becomes large when the humidity increases and the size highly increases with the surface roughness at the same time. Especially, the surface roughness value which is made in the 65 % of the humidity is the lowest in the contact surface ($Ra=0.60{\mu}m$, $Rz=3.11{\mu}m$) and the free face ($Ra=0.47{\mu}m$, $Rz=3.00{\mu}m$). Also, in case of the soft magnetic property of the magnetic core which is made with the toroidal core of $23(OD)^*20(ID)^*20(H)$ size, in the sample of the amorphous alloy ribbon which is made in 65% of the humidity, the most excellent value is gained as $B_s(B_{700})=1.055T$, $H_c=0.083Oe$, permeability = 1,197 and core loss = 0.276W/kg.

Bulk Processing of an Amorphous $AI_{85}Ni_{10}Y_{5}$ Alloy Ribbon and Mechanical Properties by Annealing Treatment (비정질 $AI_{85}Ni_{10}Y_{5}$ 합금 리본의 벌크화와 어닐링에 따른 기계적 특성)

  • 고병철;김종현;유연철
    • Transactions of Materials Processing
    • /
    • v.8 no.6
    • /
    • pp.626-633
    • /
    • 1999
  • $Al_{85}Ni_{10}Y_5$ (at. %) amorphous alloy ribbons have been produced by rapidly solidification process and consolidated by the conventional powder metallurgy method. The grains with ∼90 nm were obtained in the Al85Ni10Y5 alloy extrudates by hot-pressing followed by hot-extusion. To investigate the effect of heat treatment on microstructural change of the extrudates, heat treatment was carried out from 200℃ to 400℃ at the step of 50℃. In addition, mechanical properties of the extrudates were analysed from torsion test at the temperature range or 400∼500℃ under a strain rates of 0.2, 0.5, and 1.0/sec. The extrudates showed a flow stress of ∼190 MPa and low elongation of ∼150% at 400℃, contributing to the enhancement of ductility and hardness for extrudates. Also, grain boundary sliding was occurred in the $Al_{85}Ni_{10}Y_5$ alloy during hot deformation.

  • PDF

Core Losses of Amorphous Fe-B-Si Alloy for Transformer Core (변압기 철심용 Fe-B-Si비정질 합금의 철손 특성)

  • 김기욱;송재성;홍진완;강원구
    • The Transactions of the Korean Institute of Electrical Engineers
    • /
    • v.40 no.1
    • /
    • pp.67-72
    • /
    • 1991
  • For improving the magnetic properties of the amorphous Fe-B-Si alloy, we annealed the sample in a magnetic field oriented in the plane of the ribbon longitudinal to its long axis. By field annealing, coercive force and total core loss are reduced from 0.04 Oe to 0.02 Oe, and from 0.25 watt/kg to 0.15 watt/kg respectively in comparsion with non-field annealed specimen. These reductions were caused by the formation of 180 dcmain wall parallel to the annealing field due to the induced anisotropy.