• 제목/요약/키워드: composite liner technology

검색결과 33건 처리시간 0.022초

Thermo-Viscoelastic Residual Stress Analysis of Metal Liner-Inserted Composite Cylinders

  • Hwang, Ho-Yon;Kim, Yeong-Kook;Kim, Cheol;Kwon, Young-Doo;Park, Woong
    • Journal of Mechanical Science and Technology
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    • 제17권2호
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    • pp.171-180
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    • 2003
  • One of the most significant problems in the processing of composite materials is residual stress. The high residual stress may cause cracking in the matrix without external loads and degrade the integrity of composite structures. In this study, thermo-viscoelastic residual stresses occurred in an aluminum liner-inserted polymer composite cylinder are investigated. This type of the structure is used for rocket fuselage due to the convenience to attach payloads and equipment to the metal liner by machining. The time and degree of cure dependent thermo-viscoelastic constitutive equations are developed and coupled with a thermo-chemical process model. These equations are solved with the finite element method to predict the residual stresses in the composite cylinder and also in the interface between the liner and the composite during cure.

복합모델을 이용한 CNG 복합재 압력용기 최적설계 (Optimal Design for CNG Composite Vessel Using Coupled Model with Liner and Composite Layer)

  • 배준호;이현우;김문생;김철
    • 한국정밀공학회지
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    • 제29권9호
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    • pp.1012-1019
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    • 2012
  • In this study, CNG composite vessel is analyzed by using coupled model with liner and composite layer. For the coupled model, a method using theoretical analysis and FEA is suggested: elastic solution for laminated tube is used for theoretical analysis of the composite vessel, FEA is performed to the model of CNG composite vessel in actual conditions. On the basis of these results, optimal thickness and winding angle of the composite layer considering the material properties and thickness of the liner are determined. The results of theoretical analysis and FEA are compared with those carried out in previous studies for verifying the suggested analysis method.

금속라이너를 가진 후프 와인딩 복합재 연소관의 파열예측 (Burst Prediction of Hoop Winding Composite Case with Metal Liner)

  • 한혁섭;김형근;이영원
    • 한국추진공학회지
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    • 제19권5호
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    • pp.78-83
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    • 2015
  • 복합재 연소관은 적층구조이므로 한 층이 손상되면 손상이 진전되어 전체 연소관의 파손이 발생한다. 금속재 라이너 위에 복합재를 와인딩하면 한 층이 손상되어도 전체 연소관의 파손이 발생되지는 않는다. 본 연구에서는 금속재 연소관에 후프 와인딩한 하이브리드 연소관의 파열압력을 예측하기 위해 유한요소해석과 연소관의 파열시험을 통하여 결과를 비교하였으며, 하이브리드 연소관의 파열압력 예측을 통하여 알루미늄 라이너의 두께를 결정하고 복합재료의 적층두께를 결정함으로써 하이브리드 연소관 설계에 사용할 수 있다.

복합차수층 조성기술을 이용한 폐기물매립지 바닥차수층 시공사례 (A Case Study of Bottom Liner Construction Using Composite Liner Technology in a Solid Waste Landfill)

  • 이규정;이남훈;박수영;전원표;이채영
    • 유기물자원화
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    • 제15권3호
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    • pp.90-96
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    • 2007
  • 폐기물 관리시설 중 하나인 폐기물매립지는 유해성분을 함유한 침출수와 가스로부터 발생되는 위생문제와 환경오염 방지를 위해 필요한 시설이며 이중에서 바닥차수층은 가스포집층과 더불어 반드시 설치되어져야 히는 공종이다. 매립된 폐기물에서 발생된 오염된 침출수는 지하수를 오염시키기 때문에 바닥치차수층은 내구성과 함께 $1{\times}10^{-7}cm/sec$ 이하의 저투수성을 확보해야만 한다. 본 고에서는 강원도 P군 폐기물 종합처리시설 중 "복합차수층 조성기술" 이 적용된 매립시설의 바닥차수층 공종과 관련하여 현장시공과정 상의 시험내용 및 품질관리 사항들을 요약, 정리하여 개발기술의 현장적용 사례를 소개하고자 한다.

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KSR-III 복합재 가압탱크의 설계 및 제작

  • 공철원;윤종훈;장영순;이영무
    • 항공우주기술
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    • 제2권2호
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    • pp.124-132
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    • 2003
  • 본 논문에서는 "KSR-III 복합재 가압탱크“에 대한 구조 설계/제작 과정을 기술하였다. 복합재 가압탱크는 라이너 위에 복합재가 덮어 씌워진 형태이다. 하중을 부담하지 않는 라이너는 AI 6061-0로 만들어 졌으며, 라이너는 헬륨가스 기밀만을 담당하였다. 복합재 탱크는 라이너 위에 T700/Epoxy로 와인딩 하였다. 알루미늄 라이너가 얇았기 때문에 다단계 경화 공정이 필라멘트 와인딩 기법에 적용되었다. 다단계 경화 공정은 라이너의 실린더가 원형 형상을 잃지 않게 하였다. 보스부의 체결력은 보스링에 의하여 카본섬유로 분산되었다. 또한 보스링은 보스부의 국부적 변형을 막았다.

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현무암 섬유를이용한 CNG 복합재 압력용기의 최적설계 (Optimal Design for CNG Composite Pressure Vessel Using Basalt Fiber)

  • 장효성;배준호;김철
    • 한국정밀공학회지
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    • 제32권3호
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    • pp.269-277
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    • 2015
  • Compressed natural gas (CNG) composite vessels for vehicles have been generally made of 34CrMo4 for a inner liner part and E-glass/epoxy for a composite layer part. But, there is a problem of material loss of CNG composite vessels used in vehicles due to the design of excessive thickness of the liner. And, light weight of the CNG composite vessel is required for improving fuel efficiency. In this study, optimal design for CNG composite pressure vessel was performed by using basalt fiber, which is the environment-friendly material having a good mechanical strength. The optimal thickness of each part (inner liner and composite layer) was determined by theoretical analysis and FEA for satisfying structural safety and lightweight of the vessel. Also, for improving fatigue life, optimal autofrettage pressure was derived from FEA results.

70MPa 수소가스차량용 복합소재 압력용기의 응력특성에 관한 안전성 연구 (A Safety Study on the Stress Characteristics of a Composite Pressure Cylinder for a Use of 70MPa Hydrogen Gas Vehicle)

  • 김청균;김도현
    • 한국생산제조학회지
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    • 제21권1호
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    • pp.1-6
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    • 2012
  • This paper presents a stress safety of a composite pressure cylinder for a hydrogen gas vehicle. The composite pressure cylinder in which is composed of an aluminum liner and carbon fiber wound layers contains 104 liter hydrogen gas, and is compressed by a filling pressure of 70 MPa. The FEM computed results are analyzed based on the US DOT-CFFC basic requirement for a hydrogen gas cylinder and KS B ISO specification. The FEM results indicate that the stress, 255.2 MPa of an aluminum liner is sufficiently low compared with that of 272 MPa, which is 95% level of a yield stress for aluminum. Also, the composite layers in which are wound on the surface of an aluminum cylinder are safe because the stress ratios from 3.46 to 3.57 in hoop and helical directions are above 2.4 for a minimum safety level. The proposed composite pressure cylinder wound by carbon fibers is useful for 70 MPa hydrogen gas vehicles.

Thixoforging을 이용한 중공형 금속복합재료 부품의 성형공정에 있어서 결함예측 (Defect Prediction in Part Fabrication Process of Metal Matrix Composites by Thixoforging Process)

  • 윤성원;김병민;강충길
    • 소성∙가공
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    • 제12권2호
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    • pp.102-109
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    • 2003
  • In the manufacturing process of metal matrix composites parts, thixoforging is one of the most effective forming processes. The major purpose of the current study is to provide the proper conditions such as the die shape, the forging velocity, the forging time, the forging pressure and reinforcement injection velocity and pressure on various defects in thixoforged cylinder liner, filling tests were performed by MAGMA S/W. In order to evaluate the effectiveness of the calculated conditions which is given by computer aided engineering, A357, A380 and SiC$_{p}$/A380 cylind~5$mu extrm{m}$r liner were fabricated under the calculated conditions. SiC$_{p}$/A380 composite billets were fabricated by both the mechanical stirring and electrical magnetic stirring process. Incase fo SiC$_{p}$/A380 composite cylinder liner, reinforcement distribution and effect of reinforcement(SiC$_{p}$) content(10~20 vol. %)and size(5.5~14${\mu}{\textrm}{m}$) on the mechanical properties were investigatedstigated.

차량용 복합소재 수소연료탱크의 강도안전성에 관한 연구 (A Study on the Strength Safety of a Composite Hydrogen Fuel Tank for a Vehicle)

  • 김청균;김도현
    • 한국가스학회지
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    • 제15권5호
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    • pp.37-41
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    • 2011
  • 본 연구에서는 미국의 DOT-CFFC와 한국의 KS 기준에 근거하여 수소가스 복합소재 연료탱크에 대한 강도안전성을 FEM으로 해석하였다. 알루미늄 라이너 소재인 6061-T6와 탄소섬유 복합소재인 T800-24K로 적층이 형성되도록 감은 수소가스 복합소재 연료탱크는 130L의 저장용량을 갖으며, 70MPa의 충전압력으로 수소가스가 채워진다. FEM 해석결과에 의하면, 내부탱크를 형성하는 알루미늄 라이너에 작용하는 von Mises 응력 255.2MPa은 알루미늄 소재의 항복응력 대비 95%인 272MPa보다 낮기 때문에 안전하다. 또한, 복합소재 연료탱크에서 후프방향의 탄소섬유 응력비는 3.11이고, 헤리컬방향의 응력비는 3.04인 것으로 나타났다. 이들 응력비 데이터는 탄소섬유 복합소재 연료탱크에서 안전기준으로 권고한 2.4에 비해 높기 때문에 양방향 모두에서 안전하다. 따라서 70MPa의 충전압력을 갖는 130L 저장용량의 복합소재 연료탱크에 대한 강도안전성은 유용한 것으로 판단된다.

Seismic performance of the thin-walled square CFST columns with lining steel tubes

  • Wang, Xuanding;Liu, Jiepeng;Wang, Xian-Tie;Cheng, Guozhong;Ding, Yan
    • Steel and Composite Structures
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    • 제44권3호
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    • pp.423-436
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    • 2022
  • This paper proposes an innovative thin-walled square concrete filled steel tubular (CFST) column with an octagonal/circular lining steel tube, in which the outer steel tube and the inner liner are fabricated independently of each other and connected by slot-weld or self-tapping screw connections. Twelve thin-walled square CFST columns were tested under quasi-static loading, considering the parameters of liner type, connection type between the square tube and liner, yield strength of steel tube, and the axial load ratio. The seismic performance of the thin-walled square CFST columns is effectively improved by the octagonal and circular liners, and all the liner-stiffened specimens showed an excellent ductile behavior with the ultimate draft ratios being much larger than 1/50 and the ductility coefficients being generally higher than 4.0. The energy dissipation abilities of the specimens with circular liners and self-tapping screw connections were superior to those with octagonal liner and slot-weld connections. Based on the test results, both the finite element (FE) and simplified theoretical models were established, considering the post-buckling strength of the thin-walled square steel tube and the confinement effect of the liners, and the proposed models well predicted the hysteretic behavior of the liner-stiffened specimens.