• 제목/요약/키워드: Roll material

검색결과 315건 처리시간 0.028초

중심압축력을 받는 내진 건축구조용 각형강관 CFT 부재의 구조성능평가 (Structural Performance Evaluation to Centrally Compressed CFT Columns Using Seismic Rectangular Steel Tube)

  • 심현주;최병정;이은택
    • 한국강구조학회 논문집
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    • 제24권4호
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    • pp.443-450
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    • 2012
  • 이 연구에서는 내진구조용 강재(SN)의 냉강롤성형된 각형강관을 사용한 CFT 부재의 중심축하중에 대한 구조성능을 평가한다. 일반적으로 냉간롤성형 및 냉간프레스형성으로 인하여 각형강관의 코너부와 평판부 모두 SN강재에 비해 재질변화가 발생하며, 항복강도와 인장강도 및 항복비의 상한치가 높아지는 경향을 나타낸다. 이러한 현상은 강관의 국부좌굴 이후의 비선형거동에 의해 영향을 주며, 이는 CFT 합성 부재와 같이 비선형해석모델에 대하여 영향을 미친다. 따라서 각형강관의 가공열화도를 평가하기 위하여 각형강관의 재료시험을 수행하였고, 세장비 및 판-폭두께비를 실험변수로 하여 일축 압축력을 받는 CFT부재의 구조성능을 평가하였다.

캘린더 처리에 의한 다층지의 두께방향 구조 특성 변화 (A Change of Z-directional Structure in Multi-ply Sheet by Calendering)

  • 윤혜정;이학래;진성민;정현도
    • 펄프종이기술
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    • 제37권3호
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    • pp.23-32
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    • 2005
  • A change of z-directional structural and surface properties by calendering has a great influence on liquid penetration into a sheet. It could be also important for multi-ply sheet because it contacts liquid dunhg coating or converting process. Therefore, this study was aimed to evaluate of a change of z-directional structure in multi-ply sheet by calendering. To do this, multi-ply sheets were prepared with various raw materials and calendered at the different pressure and temperature conditions. In multi-ply sheet which consisted of one kind of pulp fiber, thickness reductions were higher in top and bottom plies than in middle plies. And in the case of soft nip calender treatment with high temperature, top layer which was in contact with heating roll showed the highest reduction of thickness. Hard nip calender treatment showed U-shaped density profile in z-direction, but compression profile by SNC treatment was dependent on calendering condition. To examine z-directional structure of multi-ply sheet which was composed of different raw material for each layer, CLSM (Confocal Laser Scanning Microscopy) analyses were carried out on cross direction of sheet. It turned out to be a useful tool for investigating z-directional analysis. As a result, variation of thickness reduction in z-direction is dependent on ply structure, compressibility of pulp fiber, and calendering condition.

Ultrahigh-Resolution Spectral Domain Optical Coherence Tomography Based on a Linear-Wavenumber Spectrometer

  • Lee, Sang-Won;Kang, Heesung;Park, Joo Hyun;Lee, Tae Geol;Lee, Eun Seong;Lee, Jae Yong
    • Journal of the Optical Society of Korea
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    • 제19권1호
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    • pp.55-62
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    • 2015
  • In this study we demonstrate ultrahigh-resolution spectral domain optical coherence tomography (UHR SD-OCT) with a linear-wavenumber (k) spectrometer, to accelerate signal processing and to display two-dimensional (2-D) images in real time. First, we performed a numerical simulation to find the optimal parameters for the linear-k spectrometer to achieve ultrahigh axial resolution, such as the number of grooves in a grating, the material for a dispersive prism, and the rotational angle between the grating and the dispersive prism. We found that a grating with 1200 grooves and an F2 equilateral prism at a rotational angle of $26.07^{\circ}$, in combination with a lens of focal length 85.1 mm, are suitable for UHR SD-OCT with the imaging depth range (limited by spectrometer resolution) set at 2.0 mm. As guided by the simulation results, we constructed the linear-k spectrometer needed to implement a UHR SD-OCT. The actual imaging depth range was measured to be approximately 2.1 mm, and axial resolution of $3.8{\mu}m$ in air was achieved, corresponding to $2.8{\mu}m$ in tissue (n = 1.35). The sensitivity was -91 dB with -10 dB roll-off at 1.5 mm depth. We demonstrated a 128.2 fps acquisition rate for OCT images with 800 lines/frame, by taking advantage of NVIDIA's compute unified device architecture (CUDA) technology, which allowed for real-time signal processing compatible with the speed of the spectrometer's data acquisition.

도재주조용 합금에 있어서 알루미륨 첨가에 따른 metal-ceramic과의 결합력 증진에 관한 연구 (A Study on Improvement of Metal-Ceramic Bonding Strength by Addition of Aluminum to Casting Metal Alloy)

  • 이재원;민병국;한민수
    • 대한치과기공학회지
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    • 제23권2호
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    • pp.161-170
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    • 2002
  • The Purpose of this study was to investigate the chemically improvement of metal-ceramics bond strength in the course of recasting Ni-Cr metal composite system with 10wt.%, 20wt.% and 30wt.% aluminum respectively. We have tested the bond strength, micro-structure, chemical composition of each metal composites and metal- ceramic bond interfaces by 3-point bending strength tester, SEM and EDS. We have made the conclusions through this study as follow: 1. The most suitable amount of aluminum to the Ni-Cr metal composite recasting is 20wt. % for improving metal-ceramics bond strength with debonding strength value of 49.54 kgf/mm2. 2. The aluminum must be changed to small spread alumina like phases and second aluminum-metal composites phases in the morphology of Ni-Cr metal composite system by adding during it's casting. These second phases have inclined functional oxide phases mixed with metal elements and they must take roll to improvement of metal-ceramics bond strength. 3. In the case of 30wt.% aluminum appended to Ni-Cr metal composite system, an excess of second inclined functional oxide phases produce cracks and spalling of them apart from it's base material. It must be a important factor of reduction of metal-ceramics bond strength.

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페놀 수지를 이용한 NBR/냉연강판 접착계에 미치는 NBR 조성의 효과 (Effect of NBR Component on Adhesion Behaviors between NBR and Metal Joints Using Phenol Adhesive)

  • 이동원;박해윤;유영재;강동국;서관호
    • 폴리머
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    • 제32권1호
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    • pp.1-6
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    • 2008
  • Acrylonitrile butadiene rubber(NBR)의 접착력 및 가공성을 향상시키기 위한 연구를 하였다. 최상의 조건을 선별하기 위해서 NBR의 acrylonitrile(ACN) 함량에 따른 접착물성 및 가공성을 관찰하였다. 무늬 점도, 충전제, 가소제 및 가교제가 접착력에 미치는 영향도 조사하였다. NBR의 ACN 함량은 NBR sealing에서 접착거동 및 가공성에 큰 영향을 미침을 알 수가 있었다. 최상의 혼합 조건을 알기 위해서 분산도를 조사하였다. 분산도는 혼합순서, 시간 및 온도 등의 많은 인자들에 의해 영향을 받는 것이 확인되었다. 가교시스템은 황 가교시스템, 과산화물 가교시스템, 가교밀도 및 구조 등의 관찰로 연구하였다. 접착제의 변화는 건조 상태와 hexamine 함량 등과 같은 것으로부터 NBR과 접착제 사이의 관계를 연구하였다. 이 결과 접착 물성과 가공성은 ACN 함량 및 가교시스템에 따라 차이를 보였다.

Micro-patterning for Biomimetic Functionalization of Surface

  • 전덕진;이준영;여종석
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.272-273
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    • 2013
  • Some living thingsuse micro- or nano- structures for living in nature. Scientists and engineers made efforts to mimic them, and they succeeded in making new types of applications. They used 'Namib desert beetle' to self-filling device by moisture harvesting and 'lotus leaf' to self-cleaning device by water repelling. 'Namib desert beetle' and lotus leaf have micro-patterns on their surface, which consists of hydrophobic or hydrophilic materials [1]. Moreover, micro-patterns on the surface make self-filling or self-cleaning property enhanced because of the surface roughness. Surface roughness enhances wettability [2]. Micro-pattern is a significant factor to make the surface be functional, so we want to make new types of functional surface by micro-patterning. In this work,we make several functional micro-patterns (radial, line, and dot arrays) using maskless lithography and analyze the characteristics of each micro-pattern. In order to analyze and understand surface characteristics, micro-patterns with varying sizes are investigated. All experiments are proceeded on mr-DWL5 photo resists coated on silicon wafers in same condition. All the experiments have demonstrated good performances about hydrophobic or hydrophilic property corresponding to their material and structural combinations. In radial micro-pattern, although the surface is flat, water drops on hydrophilic radial pattern can be convergent to a middle point and water drops on hydrophobic radial pattern can be divergent from the middle point. In line array micro-pattern, water drops can roll off along only one direction in parallel with the line arrays. Such phenomena might be mainly caused by the local change of surface roughness. From these results, controlling the movement and direction of water drops is made feasible without introducing a slope, which can potentially be used for new types of applications.

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해상운송 하중측정 (A Measurement of Sea Transportation Load)

  • 전영두;박종찬;조철훈;박동수;정의승
    • 항공우주기술
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    • 제5권2호
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    • pp.143-148
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    • 2006
  • 본 문서는 KSLV-I의 해상운송과정에서 겪게 될 진동하중조건의 기초자료 획득을 위해 수행된 해상운송 측정결과를 요약정리 한다. KSLV-I은 부산에서 전남 고흥 외나로도의 우주센터로 해상을 통해 운송될 예정이다. 해상운송시의 진동하중은 발사체나 이송치구를 설계할때 반드시 고려되어야 하는 설계인자 중 하나로서, 실제 해상운송시의 하중을 측정하여 그 크기를 확인해야 할 필요가 있다. 본 문서에서는 KSLV-I을 수송할 선박과 동일한 규모인 바지선(예인선으로 견인)을 대상으로 운항중에 3축가속도와 3축각속도 신호를 측정하여 해상운송하중을 획득한 결과를 보여준다. 그 결과 기존의 미군사규격이나 Zenit-3SL(Sea Launch)의 하중조건보다 양호함을 확인할 수 있었다.

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지아니 베르사체의 패션디자인 발상 연구 (A Study on Gianni Versace's Idea Source for Fashion Design)

  • 오윤정;김지영
    • 복식
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    • 제61권8호
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    • pp.18-31
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    • 2011
  • Gianni Versace was a designer who established his unique fashion world by thinking creatively and using rich design sources. The purpose of this study is to present designers a methodology for creative and characteristic design development by searching Gianni Versace's idea source for fashion design. As a method of the study, visual and textual data were investigated for Versace's fashion and design source especially focusing on those elements that inspired him. Versace was born in the southern area of Italy in 1946. Ever since his childhood, he had a lot of experience with clothes because his mother was a dressmaker. His first collection was made in 1978, and Versace became one of the most famous fashion designers in the world within 20 years. He used a wide range of design sources such as history, culture, and art and created his design world with it. He focused on four important epochs. They were classicism, Byzantium, the eighteenth century centering on Baroque, and the 1920s and 1930s centering on Madeleine Vionnet and Madame Gres. Among cultural elements, costume design for ballet and opera and rock 'n' roll music inspired him greatly. Also, Pop art and various paintings such as Chagall's and Delaunay's had a huge effect on Versace. With these elements, he created a bold and unique coordination of style by mixing & matching history, genre, material, and style into his design. Thus he completed an extraordinary and original fashion style by emphasizing on decorative and glamorous points and changing a way of thinking.

다단계 냉간 압연된 고탄소강 와이어의 미세조직 및 기계적 특성에 미치는 패스스케줄의 영향 (Effect of Pass Schedule on the Microstructures and Mechanical Properties of Multi-step Cold Rolled High Carbon Steel Wires)

  • 우동혁;이욱진;박익민;박용호
    • 한국재료학회지
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    • 제21권6호
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    • pp.320-326
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    • 2011
  • Flat rolling of wire is an industrial process used to manufacture electrical flat wire, medical catheters, springs, piston segments and automobile parts, among other products. In a multi-step wire flat rolling process, a wire with a circular crosssection is rolled at room temperature between two flat rolls in several passes to achieve the desired thickness to width ratio. To manufacture a flat wire with a homogeneous microstructure, mechanical and metallurgical properties with an appropriate pass schedule, this study investigated the effect of each pass schedule (1stand ~ 4stand) on the microstructures, mechanical properties and widths of cold rolled high carbon steel wires using four-pass flat rolling process. The evolutions of the microstructures and mechanical properties of the widths of cold rolled wires during three different pass schedules of the flat rolling process of high carbon wires were investigated, and the results were compared with those for a conventional eight-pass schedule. In the width of cold rolled wires, three different pass schedules are clearly distinguished and discussed. The experimental conditions were the same rolling speed, rolling force, roll size, tensile strength of the material and friction coefficient. The experimental results showed that the four-pass flat cold rolling process was feasible for production of designed wire without cracks when appropriate pass schedules were applied.

스트립캐스팅한 구상흑연주철박판의 합금원소 및 열처리에 따른 미세조직과 기계적 성질의 변화 (Effects of Alloying Elements and Heat Treatments on the Microstructures and Mechanical Properties of Ductile Cast Iron by Strip Casting)

  • 이기락;나형용
    • 한국주조공학회지
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    • 제20권2호
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    • pp.122-128
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    • 2000
  • Strip casting process is a new technology that makes a near net shape thin strip directly from molten metal. With this process, a large amount of energy and casting cost could be decreased from the abbreviation of reheating and/or hot rolling process. Ductile cast iron which has spheroidal graphite in the matrix is the most commercial and industrial material, because of its supreme strength, toughness, and wear resistance etc. But it cannot be produced to the thin strip owing to difficulty in rolling of ductile cast iron. In this study, ductile cast iron strips are produced by the twin roll strip caster, with different chemical compositions of C, Si, and Mn contents. And then heat-treated, microstructures and mechanical properties are examined. The microstructures of as-cast strip are that of white cast iron which consists of the mixture of cementite and pearlite, but the equiaxed crystal zone of the pearlite or segregation zone of cementite exists in the center region of the strip thickness, which cannot be observed in the rapidly solidified metallic mold cast specimens. This structure is supposed to be formed from the thermal distribution of strip and the rolling force. Comparing with the structures of each strips after heat treatment, increasing Si content makes smaller spheroidal graphite and more compact in the matrix, furthermore the less of Mn content makes the ferrite matrix be obtained clearer and easier. As a result of the tensile test of graphitization heat-treated strips, the yield strengths are about 250 MPa, the tensile strengths are about $430{\sim}500$ MPa, and the elongations are about $10{\sim}13%$. In the case of the strip which has the smaller and more compact spheroidal graphite in the ferrite matrix, the higher tensile strength and better drawability could be obtained.

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