• 제목/요약/키워드: Trier

검색결과 22건 처리시간 0.017초

CoFe/Cu/NiFe Pseudo스핀밸브의 자기저항 특성 (The Giant Magnetoresistance Properties of CoFe/Cu/NiFe Pseudo Spin Valve)

  • 최원준;홍진표;김태송;김광윤
    • 한국자기학회지
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    • 제12권6호
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    • pp.212-217
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    • 2002
  • 비자성층을 사이에 둔 두 강자성층의 보자력 차이를 이용하여 거대자기저항특성을 나타내는 Ta/CoFe/Cu/NiFe/Ta 구조의 pseudo 스핀밸브를 DC 마그네트론 스퍼터링 방법으로 제조하였다. Ta/CoFe/Cu/NiFe/Ta 구조에서 CoFe층의 두께 변화에 따른 자화 특성 및 자기저항 특성을 조사하였으며, 이 구조에서 CoFe층의 두께가 60 $\AA$일 때 자기저항비는 3.82%이고 CoFe층과 NiFe층 사이의 보자력 차이는 27.4 Oe이다. Ta/CoFe/Cu/NiFe/Ta 구조를 갖는 pseudo 스핀밸브에서 CoFe층과 NiFe층의 보자력 차이는 CoFe층의 두께가 20 $\AA$에서 40 $\AA$까지 증가함에 따라 증가하였으며 40 $\AA$ 이상에서는 감소하였다. 이와 같은 결과는 박막의 결정성 및 포화 자기변형(λ$_{s}$)의 변화에 의한 것으로 판단된다. Cu층과 NiFe층 사이에 CoFe층을 삽입한 Ta/CoFe/Cu/NiFe/Ta 구조에서 삽입층인 CoFe층의 두께 변화에 따른 자화특성 및 자기저항 특성을 조사한 결과 CoFe두께가 10$\AA$시 자기저항비가 6.7 %이며. 삼층막 구조 보다 자기저항비가 약 1.5배 이상 증가함을 알 수 있었다.

Analysis of Broken Rice Separation Efficiency of a Laboratory Indented Cylinder Separator

  • Kim, Myoung Ho;Park, Seung Je
    • Journal of Biosystems Engineering
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    • 제38권2호
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    • pp.95-102
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    • 2013
  • Purpose: Using a laboratory indented cylinder separator, broken rice separation experiments were conducted and the characteristics of the separation process were studied to provide information for developing a prototype indented cylinder broken rice separator. Methods: Rice (Ilmi variety) milled in a local RPC was used for the experiment. Rice kernels were classified into four groups according to their length l; whole kernels (I > 3.75 mm), semi-whole kernels (2.5 < I < 3.75 mm), broken kernels (1.75 < I < 2.5 mm), and foreign matters (I < 1.75 mm). A laboratory grain cleaner, Labofix '90 (Schmidt AG, Germany) was used for the experiments. Experiments were designed as a $4{\times}4$ factorial arrangement in randomized blocks with three replications. Cylinder rotational speeds (17, 34, 51, 68 rpm) and trough angles (15, 37.5, 60, $82.5^{\circ}$) were the two factors and feed rates (25, 50 kg/h), indent shapes (Us, $S_1$ type), and indent sizes (2.5, 3.75 mm) were treated as the blocks. Two 125 g samples and one 125 g sample were taken at the cylinder outlet and from the trough, respectively. The whole, semi-whole, and broken kernel weight ratio of the samples and feed was determined by a rice sizing device. From these weight ratios, purities, degrees of extraction and coefficient of separation efficiency were calculated. Results: Trough angle, cylinder speed, and their interaction on the coefficient of separation efficiency were statistically significant. Cylinder speed of 17, 34, and 51 rpm made the most effective separation when the trough angle was $15^{\circ}$ or $37.5^{\circ}$, $60^{\circ}$, and $82.5^{\circ}$, respectively. Maximum values of coefficient of separation efficiency were in the range of 60 to 70% except when the indent size was 2.5 mm and were recorded for the combinations of low cylinder speed (17 rpm) with medium trough angle ($37.5^{\circ}$ or $60^{\circ}$). Indent shape did not appear to make any noticeable difference in separation efficiency. Conclusions: Due to the interaction effect, the trough angle needs to be increased appropriately when an increase in cylinder speed is made if a rapid drop of effectiveness of separation should be avoided. In commercial applications, $S_1$ type indents are preferred because of their better manufacturability and easier maintenance. For successful separation of broken kernels, the indent size should be set slightly bigger than the actual sizes of broken kernels: an indent size of 3.0 mm for separating broken kernels shorter than 2.5 mm.