• Title/Summary/Keyword: Vertical Deformation

검색결과 623건 처리시간 0.031초

페룰 가공용 초정밀 무심 연삭기의 유정압 안내면 및 이송계에 대한 구조 특성 해석 (Structural Characteristic Analysis on the Hydrostatic Guide Way and Feeding System of a High-Precision Centerless Grinder for Machining Ferrules)

  • 김석일;이원재;조순주
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2003년도 춘계학술대회
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    • pp.1008-1013
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    • 2003
  • This paper concerns the structural characteristic analysis and evaluation on the hydrostatic guide way and feeding system of a high precision centerless grinder for machining ferrules. In order to realize the required accuracy of ferrules with sub-micron order, the axial stiffness and motion accuracy of feeding system have to become higher level than those of existing centerless grinders. Under these points of view, the physical prototype of feeding system consisted of steel bed, hydrostatic guide way and ballscrew feeding mechanism is designed and manufactured for trial. Experimental results show that the axial and vertical stiffnesses of the physical prototype are very low as compared with those design values. In this paper, to reveal the cause of these stiffness difference, the structural deformations on the virtual prototype of feeding system are analyzed based on the finite element method under experimental conditions. The simulated results illustrate that the deformation of front ballscrew support-bearing bracket is the main cause of reduction in the axial stiffness of feeding system, and the deflection of bed structure and the bending deformation of hydrostatic guide rails are the main causes of reduction in the vertical stiffness of feeding system.

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페룰 가공용 초정밀 무심 연삭기의 유정압 안내면 및 이송계에 대한 구조 특성 해석 (Structural Characteristic Analysis on the Hydrostatic Guide Way and Feeding System of a High-Precision Centerless Grinder for Machining Ferrules)

  • 김석일;박천홍;조순주
    • 대한기계학회논문집A
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    • 제28권7호
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    • pp.896-903
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    • 2004
  • This paper proposes the structural characteristic analysis and evaluation on the hydrostatic guide way and feeding system of a high-precision centerless grinder for machining ferrules. In order to realize the required accuracy of ferrules with sub-micron order, the axial stiffness and motion accuracy of feeding system have to become higher level than those of existing centerless grinders. Under these points of view, the physical prototype of feeding system composed of steel bed, hydrostatic guide way and ballscrew feeding mechanism is designed and manufactured for trial. Experimental results show that the axial and vertical stiffnesses of the physical prototype are very low as compared with those design values. In this paper, to reveal the cause of these stiffness difference, the structural deformations on the virtual prototype of feeding system are analyzed based on the finite element method under experimental conditions. The simulated results illustrate that the deformation of front ballscrew support-bearing bracket is the main cause of reduction in the axial stiffness of feeding system, and the deflection of bed structure and the bending deformation of hydrostatic guide rails are the main causes of reduction in the vertical stiffness of feeding system.

수치해석을 이용한 선재 롤러교정공정 주요인자의 직진도 영향 분석 (Parametric Study on Straightness of Steel Wire in Roller Leveling Process Using Numerical Analysis)

  • 방준호;송정한;이명규;이희종;성대용;배기현
    • 소성∙가공
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    • 제31권5호
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    • pp.296-301
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    • 2022
  • In this study, influence of the process parameters of the roller leveling process on the straightness of the steel wire was analyzed using numerical analysis. To construct the numerical analysis model, cross-sectional and longitudinal element sizes, which affect the prediction accuracy of longitudinal stress caused by bending deformation of the steel wire, were optimized, and mass scaling that satisfies prediction accuracy while reducing computational time was confirmed. By using the constructed numerical analysis model, the influence of various process parameters such as input direction of the steel wire, initial diameter of the steel wire, back tension and intermesh on the straightness was confirmed. The simulation result shows that the 3rd and 4th roller of vertical straightener had a significant influence on vertical shape of the steel wire.

퀸스톤 제일의 시간의존적 변형거동 (Time-dependent Deformation Behaviour of Queenston Shale)

  • 이영남
    • 한국지반공학회지:지반
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    • 제5권2호
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    • pp.57-77
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    • 1989
  • 본고는 팽장성 암석들의 시간의존적변형의 측정을 위한 실험장치와 실험고과에 관해서 설명한다. 새로운 실험장치들은 개선된 일축벽축하의 팽난시험, 일축 인장하의 인창시험과 이축 응력하의 팽 복시험을 위해서 제작하였다. 본 실험장치들은 암반파착시 지반에 작용하는 단순화된 헌력상태하에 있는 암반의 시간의존적 변형을 제 수직방향에서 측정한다. 지난 몇년간에 걸쳐서 얻은 실험결과에 의하면 본 실험장치들은 세공적으로 작동하는 것으로 나타났다. 실험결과로 보면, 퀸스톤 체일(Queenston shale)의 자유변형조건하에서의 시간의존적 변형 거동은 층리면과 수직인 방향에서는 층리면과 평행인 방향에서보다 약간 더 많은 역접이 일어나는 이방성적 거동을 보인다. 한 방향에 응력을 받을 때에는 응력이 작용하는 방향은 물론 그와 수직되는 방향의 역장성변형이 억제된다.

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Study on aerodynamic coefficients and responses of the integrated catwalk of Halogaland Bridge

  • Wan, Jia-wei;Wang, Qi;Liao, Hai-li;Li, Ming-shui
    • Wind and Structures
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    • 제25권3호
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    • pp.215-232
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    • 2017
  • Wind tunnel tests and numerical aerodynamic analyses were conducted for an integrated catwalk structure under strong winds. From the wind tunnel tests, it is found that the aerodynamic coefficients were different from those of the typical type. The drag coefficient was larger than typical and was sensitive to number of vertical meshes installed rather than the solidity ratio. Comparing with typical catwalk, the integrated one showed larger deformation under strong wind, and the large torsional deformation are mainly caused by drag force. It did not show aerodynamic divergence even the torsional deformation reaching $20^{\circ}$. The reason could be that the stiffness is smaller and thus the catwalk is able to deform to the shape compactable with higher loading. Considering safety for construction, storm rope system is introduced to the catwalk to reduce the deformation to acceptable level.

Deformation Analysis of Roll Mold for Nano-flexible Devices

  • Khaliq, Amin;Tahir, Usama;Jeong, Myung Yung
    • 마이크로전자및패키징학회지
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    • 제28권4호
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    • pp.47-50
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    • 2021
  • Nanoimprint lithography (NIL) has revolutionized the fabrications of electronics, photonics, optical and biological devices. Among all the NIL processes, roll-to-roll nanoimprinting is regarded best for having the attributes of low cost, continuous, simple, and energy-efficient process for nanoscale device fabrication. However, large-area printing is limited by the master mold deformation. In this study, a finite element model (FEM) has been constructed to assess the deformation of the roll mold adhesively wrapped on the carbon fiber reinforced material (CFRP) base roll. This study also optimizes the deformations in the metallic roll mold with respect to nip-forces applied in the printing process of nano-fabrication on large scale. The numerical simulations were also conducted to evaluate the deflection in roll mold assembly due to gravity. The results have shown decreasing trend of the deformation with decreasing nip-force. Also, pressure uniformity of about 40% has been optimized by using the current numerical model along with an acceptable deflection value in the vertical axis due to gravity.

철도교용 고무패드의 강성 추정기법 (The Estimated Stiffness of Rubber Pads for Railway Bridges)

  • 오세환;최은수;정희영
    • 한국강구조학회 논문집
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    • 제17권3호통권76호
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    • pp.307-316
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    • 2005
  • 본 연구에서는 철도교량에 교량받침으로 사용될 수 있는 4종류의 고무패드의 사용상의 특성을 분석하고, 강성과 감쇠비를 결정하기 위한 방법을 제시하였다. 고무패드의 강성을 결정하기 위해서는 정적 실험을 통한 직접적인 방법과 동적 실험을 통한 간접적인 방법이 가능하다. 본 연구에서 두 가지 방법에 의해서 고무패드의 강성을 평가하고 비교하였다. 고무패드의 감쇠비는 동적 실험에 의해서만 파악이 가능하며 폴리우레탄 고무의 경우 천연고무나 크로로프렌 고무와 유사한 감쇠비를 가지는 것으로 나타났다. 폴리우레탄 고무는 천연고무나 크로로프렌 고무에 비해 경도가 크기 때문에 작은 면적으로도 큰 하중을 견딜 수 있으며, 또한 같은 형상계수를 가지는 패드에서도 더 큰 강성을 보여 철도교의 교좌로서 활용성이 더 큰 것으로 판단되었다. 천연고무나 크로로프렌 고무 패드는 수직하중에 의한 수평 변형이 크게 발생하는데 비해, 폴리우레탄 고무패드는 수직하중에 의한 수평방향의 변형이 거의 발생하지 않기 때문에 보강재에 의한 보강이 필요하지 않다.

Development of Ergonomic Leg Guard for Baseball Catchers through 3D Modeling and Printing

  • Lee, Hyojeong;Eom, Ran-i;Lee, Yejin
    • 패션비즈니스
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    • 제20권3호
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    • pp.17-29
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    • 2016
  • To develop baseball catcher leg guards, 3-dimensional (3D) methodologies, which are 3D human body data, reverse engineering, modeling, and printing, optimized guard design for representative positions. Optimization was based on analysis of 3D body surface data and subjective evaluation using 3D printing products. Reverse engineering was used for analysis and modeling based on data in three postures: standing, $90^{\circ}$ knee flexion, and $120^{\circ}$ knee flexion. During knee flexion, vertical skin length increased, with the thigh and knee larger in anterior area compared to the horizontal dimension. Moreover, $120^{\circ}$ knee flexion posture had a high radius of curvature in knee movement. Therefore, guard designs were based on increasing rates of skin deformation and numerical values of radius of curvature. Guards were designed with 3-part zoning at the thigh, knee, and shin. Guards 1 and 2 had thigh and knee boundaries allowing vertical skin length deformation because the shape of thigh and knee significantly affects to its performance. Guard 2 was designed with a narrower thigh and wider knee area than guard 1. The guards were manufactured as full-scale products on a 3D printer. Both guards fit better in sitting than standing position, and guard 2 received better evaluations than guard 1. Additional modifications were made and an optimized version (guard 3) was tested. Guard 3 showed the best fit. A design approach based on 3D data effectively determines best fitting leg guards, and 3D printing technology can customize guard design through immediate feedback from a customer.

사이징 프레스에서 폭 압하 공정중 결함 감소를 위한 엔빌의 형상설계 (Design of the anvil shape in sizing press for decrease of the defect generated width reduction)

  • 이상호;김동환;변상민;박해두;김병민
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2006년도 춘계학술대회 논문집
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    • pp.437-438
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    • 2006
  • Generally, the vertical roll process is used to achieve extensive width reduction in hot strip mill. However, it is difficult to avoid the defects such as dog-bone and seam-defect. The sizing press has been developed in response to the defects mentioned above. Especially, this study is carried out to investigate the deformation of slab by two-step sizing press. The deformation behavior in the width sizing process is more favorable than that in conventional vertical rolling edger. The objective of this study is to determine the optimal anvil shape parameters in the sizing press with two-step die from the viewpoint of edge-seam length. In general, the edge-seam defect occurs parallel to the rolling direction at both edges in horizontal rolling process after sizing press. The optimal combination of the parameters is determined by FE-simulation and Artificial Neural Network (ANN). The slab deformation in sizing press with convex anvil is analyzed by FE-simulation. The most suitable profile of the anvil is also discussed fur the improvement of trimming loss because of the side seam defect by FE-simulation and ANN.

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도시철도 인접굴착공사에 따른 운행선 궤도의 궤도틀림 분석 (Evaluation of Track irregularity due to Adjacent Excavation Work on Serviced Urban Transit)

  • 최정열;이호현;강유송;정지승
    • 문화기술의 융합
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    • 제6권2호
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    • pp.481-487
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    • 2020
  • 본 연구는 도시철도 선로를 인접하여 시공되는 대형굴착공사에 따른 기존 지하철 선로구조물의 구조적 안정성을 검토하고자 수치해석을 수행하였다. 수치해석을 바탕으로 단계별 시공과정에서 발생되는 궤도틀림의 영향을 해석적으로 도출하였으며 관련 기준과의 비교를 통해 궤도변형측면에서의 안정성을 검토하였다. 분석결과, 줄틀림과 면틀림과 같이 일정거리에서의 상대변위차를 바탕으로 평가되는 궤도틀림 항목의 경우 인접굴착공사 시종점부와 같이 기존 구조물의 변형이 시작되는 위치에서 가장 명확하게 발생되었다. 반면 궤도의 전반적인 연직 및 수평변위는 공사구간의 중심에서 최대변형이 발생되었다. 인접굴착공사에 따른 기존 구조물의 변형측면의 취약위치는 공사구간의 중심과 같이 구조물의 변형이 크게 발생되는 위치뿐만 아니라 궤도틀림 측면에서는 공사 시종점 구간이 취약위치가 될 수 있음을 해석적으로 입증하였다.