• Title/Summary/Keyword: Carbon frame

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카본 자전거 프레임 소재의 적층 패턴에 따른 프레임 강성 연구 (Study on Frame Stiffness based on Lamination Pattern of Carbon Bicycle Frame Materials)

  • 최웅재;김홍건;곽이구
    • 한국기계가공학회지
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    • 제20권6호
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    • pp.51-58
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    • 2021
  • The notion of leisure has changed with industrial development and improvement in life quality. Bicycling is a healthy sport; it is an exercise performed while enjoying nature. There have been many changes in the materials that are used to manufacture the bicycle frame. Iron and aluminum have been mainly used in bicycle frames. However, carbon-based materials are lighter and stronger than metal frames. The bicycles made of carbon composite changes frame rigidity depending on the direction of the carbon sheet sacking angle. We study the direction of composite material and how they affect the stiffness of frames based on the stacking angle.

분할형 탄소복합재 자전거 프레임 개발에 관한 연구 (A Study on the Development of the Split-Type Carbon Composite Bicycle Frames)

  • 박찬곤;최영;강봉용;김은규
    • 한국정밀공학회지
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    • 제34권2호
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    • pp.139-143
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    • 2017
  • Finite element analysis was performed for a split-type CFRP bicycle frame, which was designed to apply a compression molding process with carbon fiber prepreg for a conventional bicycle. An epoxy adhesive material for joining the frames was selected by the extent of stress at joint interfaces. The split-type bicycle frame was then formed and its weak parts examined by the boundary conditions according to reliability tests. The results verified the reliability of the bicycle frame after modification of these weak parts. The finished product was manufactured by using this developed split-type bicycle frame.

나노탄소섬유소재(Carbon fiber)를 활용한 로드형 자전거에서의 프레임 디자인 개발에 관한 연구 (A study on the design for the road bike frame made by carbon fiber materials)

  • 김기태;김현성;강승민
    • 한국결정성장학회지
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    • 제27권4호
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    • pp.178-185
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    • 2017
  • 탄소섬유가 차세대 자전거 프레임의 소재로 자리잡아감에 따라 각 제조사별로 탄소섬유 프레임 개발을 위한 연구가 활발하게 진행되고 있으며, 현재도 탄소섬유의 강성, 내구성, 충격흡수, 경량화, 강도를 중시하며 개발되고 있다. 또한 탄소섬유 자전거모델은 고가 제품으로써, 이에 맞는 개성적이고 차별화된 디자인 컨셉의 제품이 필요하며, 기본적으로 요구되는 구조 역학적 프레임의 개발이 중요하고, 안전성과 조형성이 뛰어난 제품개발과 무엇보다도 자기만의 아이덴티티(Identity)가 필요하다. 본 연구에서는 소비자 요구의 조사연구와 이미지 분석의 과정을 통해 개성적이고 통일된 이미지를 도출하였고, 본 디자인 개발에서는 최근 수요가 급증하고 있는 로드형 자전거를 타켓으로 잡아 탄소섬유를 소재로 한 자전거 프레임 디자인을 개발하고 제안하였다.

다관절 복합이동 해저로봇을 위한 탄소섬유 복합소재 프레임의 구조 해석 (Finite Element Analysis of Carbon Fiber Reinforced Plastic Frame for Multi-legged Subsea Robot)

  • 유승열;전봉환;심형원;이판묵
    • 한국해양공학회지
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    • 제27권6호
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    • pp.65-72
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    • 2013
  • This paper describes a finite element analysis (FEA) of the body frame of a subsea robot, Crabster200 (CR200). CR200 has six legs for mobility instead of screw type propellers, which distinguishes it from previous underwater robots such as remotely operated vehicles (ROVs) and autonomous underwater vehicles (AUVs). Another distinguishing characteristic is the body frame, which is made of carbon fiber reinforced plastic (CFRP). This body frame is designed as a rib cage structure in order to disperse the applied external loads and reduce the weight. The frame should be strong enough to support many devices for exploration and operation underwater. For a reasonable FEA, we carried out specimen tests. Using the obtained material properties, we performed a modal analysis and FEA for CR200 with a ready posture. Finally, this paper presents the FEA results for the CFRP body frame and the compares the characteristics of CFRP with conventional material, aluminum.

구조공법별 환경부하 산출·비교분석에 관한 연구 (철근콘크리트구조와 철골구조를 중심으로) (Comparison of Environmental Load per Constructional Methods (Focus on Reinforced Concrete Structures and Steel-Frame Structures))

  • 문준호;이현주;정영철;김태희;김광희
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2011년도 춘계 학술논문 발표대회 1부
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    • pp.193-195
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    • 2011
  • Nowadays, climatic environment change has become a major issue in the world. This causes major emissions of carbon dioxide industries steel industry, thermal power industry, cement industry is essential in the reduction of carbon dioxide, which is based on total carbon dioxide emissions account for most of the construction industry in an effort to minimize the environmental load is needed. accordingly, through case studies, It can be induce the selection to minimize environmental load by comparing the output of quantitative energy consumption and carbon dioxide emissions per constructional methods. As a result of this study, RC Structure was less environmental load than SC structure.

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자동차용 탄소 연속섬유 복합재 선루프 프레임의 개발에 대한 연구 (Development of Carbon Continuous-fiber Composite Frame for Automotive Sun-roof Assembly)

  • 김진봉;김경덕;김성진;신동완;김덕기
    • 한국자동차공학회논문집
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    • 제25권3호
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    • pp.350-359
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    • 2017
  • This paper presents a new holistic development approach for the carbon continuous-fiber composite frame of an automotive sunroof assembly. The original steel frame has been designed to get higher bending stiffness with its corrugated cross-sectional shape. The new approach uses the prepregs of a fast cure epoxy and PCM manufacturing processing. For higher productivity, the new frames feature a very simple plat cross sectional shape but achieve high bending stiffness through the laminate design. The sandwich structure with a PET foam core was presented. The frames were made of carbon UD laminae covered single carbon fabric on the outer surfaces. The fabrics provide torsional stiffness and also hold the carbon UD fibers floating in the low viscous epoxy resin of prepregs at the curing temperature during processing. The final product yields approximately 18 % savings in weight compared with the original.

경기력 향상을 위한 경주용 탄소 자전거 프레임의 하중과 변형에 관한 연구 (A Study on the Load and Deformation of Race Carbon Bicycle Frame for Improved Athletic Performance)

  • 최웅재;최승호;김용선;윤성민;김홍건
    • 한국기계가공학회지
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    • 제18권1호
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    • pp.46-51
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    • 2019
  • As the industry develops and quality of life increases, the concept of leisure is also changing. Bicycling is a healthy sport for exercising while enjoying nature, facilitating the enjoyment of a healthy life. As a result, the awareness surrounding bicycles has increased, and so has the interest in lighter and more luxurious carbon bikes. The number of domestic companies producing carbon bicycles frames is nil. In this study, we analyze the frames of existing foreign brands and analyze the deformation and stress concentration area according to the load of the frame, using the finite element analysis. In addition, we set up the range of stiffness based on the content of the structural analysis, to localize the carbon bicycle frame and famous foreign products, and compare the prototype with the stiffness by using bicycle molds for track races.

트럭경량화를 위한 Deck Frame의 수치해석 연구 (Numerical Analysis of Deck Frame for Lightweight Trucks)

  • 윤성우;고선호;김홍건;곽이구
    • 한국기계가공학회지
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    • 제17권3호
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    • pp.127-133
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    • 2018
  • To reduce fuel consumption, research on the weight reduction of vehicles is being actively carried out. Researchers have typically tried to replace metal materials with composites materials, but these materials did not satisfy the required strength and rigidity of a vehicle. Composites are usually not used because of their high cost. There are incomplete studies on lightweight trucks that transport cargo. Therefore, in this paper, we enhance the lightness and mechanical strength through design optimization of the deck frame for a lightweight truck. For that purpose, the side member and cross member, which are mounted on the lower part of the truck to assure the safety of the vehicle and support the luggage load, were targeted. The result of numerical analysis on the safety of the frame was obtained by changing the shape of each cross-section. To verify the numerical analysis, we compared it with the theoretical value of a cantilever beam. As a result, the suitability of the cross-sectional shapes of each frame was confirmed through numerical analysis.

항공기용 복합재 윈도우 프레임 설계 및 해석 (Design and Analysis of Aircraft Composite Window Frame)

  • 홍대진;김위대;이건영;김주식
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2004년도 추계학술발표대회 논문집
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    • pp.232-235
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    • 2004
  • This is the preliminary study to develop composite window frame of commercial aircraft using VaRTM process. For two candidate carbon fabric(triaxial fabric, sleeving braider dry carbon fiber), specimens were fabricated using VaRTM process ,and then the physical & mechanical tests were performed to gain material property according to ASTM. FEM analysis for each candidate carbon fabric were performed to find the minimum ply number and weight for composite window frame. In this study Tsai-Wu strength failure criteria was utilized to evaluate the safety of structure.

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Experimental investigation of a frame retrofitted with carbon textile reinforced mortar

  • Sinan M., Cansunar;Kadir, Guler
    • Earthquakes and Structures
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    • 제23권5호
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    • pp.473-491
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    • 2022
  • The research investigates experimentally the effect of confinement on structural behavior at the ends of beam-column in reinforced concrete (RC) frames. In the experimental study, five specimens consisting of 1/3-scaled RC frames having single-bay, representing the traditional deficiencies of existing buildings constructed without receiving proper engineering service is investigated. The RC frame specimens were produced to represent most of the existing buildings in Turkey that have damage potential. To decrease the probable damage to the existing buildings exposed to earthquakes, the carbon Textile Reinforced Mortar (TRM) strengthening technique (fully wrapping) was used on the ends of the RC frame elements to increase the energy dissipation and deformation capacity. The specimens were tested under reversed cyclic lateral loading with constant axial loads. They were constructed satisfying the weak column-strong beam condition and consisting of low-strength concrete, such as compressive strength of 15 MPa. The test results were compared and evaluated considering stiffness, strength, energy dissipation capacity, structural damping, ductility, and damage propagation in detail. Comprehensive investigations of these experimental results reveal that the strengthening of a brittle frame with fully-TRM wrapping with non-anchored was effective in increasing the stiffness, ductility, and energy dissipation capacities of RC bare frames. It was also observed that the frame-only-retrofitting with an infill wall is not enough to increase the ductility capacity. In this case, both the frame and infill wall must be retrofitted with TRM composite to increase the stiffness, lateral load carrying, ductility and energy dissipation capacities of RC frames. The presented strengthening method can be an alternative strengthening technique to enhance the seismic performance of existing or moderately damaged RC buildings.