• 제목/요약/키워드: Environmental fatigue strength

검색결과 123건 처리시간 0.021초

OrcaFlex를 이용한 심해 SCR 구조 해석 (Structural Analysis of Deepwater Steel Catenary Riser using OrcaFlex)

  • 박규식;최한석;김도균;유수영;강수창
    • 한국해양공학회지
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    • 제29권1호
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    • pp.16-27
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    • 2015
  • The design challenges when attempting to obtain sufficient strength for a deepwater steel catenary riser (SCR) include high stress near the hang-off location, an elevated beam-column buckling load due to the effective compression in the touchdown zone (TDZ), and increased stress and low-cycle fatigue damage in the TDZ. Therefore, a systematic strength analysis is required for the proper design of an SCR. However, deepwater SCR analysis is a new research area. Thus, the objective of this study was to develop an overall analysis procedure for a deepwater SCR. The structural behavior of a deepwater SCR under various environmental loading conditions was investigated, and a sensitivity analysis was conducted with respect to various parameters such as the SCR weight, weight of the internal contents, hang-off angle (HOA), and vertical soil stiffness. Based on a deepwater SCR design example, it was found that the maximum stress of an SCR occurred at a hang-off location under parallel loading direction with respect to the riser plane, except for a wave dominant dynamic survival loading condition. Furthermore, the tensile stress governed the total stress of the SCRs, whereas the bending stress governed the total stress at the TDZ. The weight of the SCR and internal contents affected the maximum stress of the SCR more than the HOA and vertical soil stiffness, because the weight of the SCR, including the internal contents, was directly related to its tensile stress.

보트에 적용되는 하이브리드 복합재에 대한 기계적 특성 연구 (Research on Mechanical Properties and Characteristics of Hybrid Composites for Boat)

  • 조제형;김성훈;윤성원;하종록;김명현
    • Journal of Welding and Joining
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    • 제34권2호
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    • pp.22-29
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    • 2016
  • Recently, Application of composite materials are increased in transport area for weight reduction. Also, Related technical developments have been implemented actively at domestic and abroad. In particular, The carbon fiber has high strength and ultra light property higher than stainless steel, aluminum, GFRP as Eco-friendly material. Carbon fiber contribute to improving the environmental effect such as fuel saving, expansion of loadage, reducing the exhaustion of carbon dioxide through the weight reduction of transport area. In addition, The carbon fiber is applied to the ship in the area of race yacht, luxury cruise boat as weight reduction and high added-value materials, but there is limited application for general boat because price of carbon fiber is very expensive. For the weight reduction of general boat hull, being used as structure materials, glass fiber and carbon fiber are applied to hull with form of hybrid composite materials, but application of domestic and research for development are incomlete. In this study, An evaluations of mechanical strength property and fatigue strength are performed on composite materials by hybrid weaving of glass fiber and carbon fiber and composite materials forming method by hybrid forming.

구조용(構造用) 연강재(軟鋼材)에 대한 피로경화(疲勞硬化)의 영향(影響)에 관한 연구(硏究) (A Study on the Effect of the Cyclic Hardening by Fatigue in Structural Mild Steel)

  • 장동일;용환선;황윤국
    • 대한토목학회논문집
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    • 제2권4호
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    • pp.23-32
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    • 1982
  • 강구조물(鋼構造物)의 안전유지(安全維持) 및 보수보강(補修補强)에 필요한 자료(資料)를 얻기 위해, 공용이역(供用履歷)을 갖는 강재(鋼材)와 갖지 않는 강재(鋼材)의 기계적(機械的) 성능(性能) 및 인성변화(靭性變化)를 실험적(實驗的) 방법(方法)을 통(通)해 비교검토 하였다. 본(本) 연구(硏究)에서는, 공용중(供用中)에 받은 피로누적(疲勞累積)에 의한 경화(硬化) 및 취화인성저하(脆化靭性低下)등을 검토하였으며, 파악된 사항이 강구조물(鋼構造物) 연결방법(連結方法)에 사용되고 있는 용접(鎔接)에 미치는 영향을 고찰하였다. 그 결과(結果), 경화(硬化) 및 취화(脆化)의 영향은 강도증가(强度增加) 보다 인성저하(靭性低下)에 더 많은 작용을 하였으며, 강구조물(鋼構造物) 연결방법(連結方法)으로 채택한 용접(鎔接)에서도 같은 경향을 보였다. 또한 공용이역(供用履歷)을 갖는 강재(鋼材)와 갖지 않는 강재(鋼材)를 용접(鎔接)하였을 경우에는 상온(常溫)에서도 취성(脆性)을 나타내고 있음을 알 수 있었다.

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복합재를 이용한 수평축 풍력터빈 회전 날개의 공력 및 구조설계에 관한 연구 (Aerodynamic and Structural Design for Medium Size Horizontal Axis Wind Turbine Rotor Blade with Composite Material)

  • 공창덕;방조혁;오동우;김기범;김학봉
    • 한국추진공학회지
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    • 제1권2호
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    • pp.12-21
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    • 1997
  • 무공해 에너지원은 화석에너지의 고갈과 환경오염의 심각한 문제로 인하여 절실히 요구되고 있는 실정이다. 그중 풍력발전 시스템은 타 에너지원에 비해 여러 가지 측면에서 유리한 점을 가지고 있다. 본 연구에서는 500㎾급 풍력발전 시스템을 개발함에 있어, 적합한 공력성능 및 구조성능을 가지는 회전날개 설계과정을 수행하였다. 공력설계는 운용지역의 풍황을 고려하여 회전날개의 외형을 결정하였고 이를 바탕으로 공력성능해석이 수행되었으며, 구조설계는 복합재료를 사용하여 쉘-스파 구조를 갖도록 설계하여 굽힘 및 비틀림 그리고 피로수명에 대한 구조해석이 수행되었다. 그 결과 4m/s의 미풍에서도 운용가능하며, 12m/s에서는 정격출력 500㎾를 생산할 수 있는 형상이 설계되었고, 또한 20년 이상의 피로수명이 확보되었으며, 공진 등의 동적인 문제도 발생하지 않음을 확인하였다.

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열충격 사이클에 따른 SnAgCu 솔더별 솔더 접합부의 신뢰성 및 계면반응 (The Interfacial Reactions and Reliability of SnAgCu Solder Joints under Thermal Shock Cycles)

  • 오철민;박노창;한창운;방만수;홍원식
    • 대한금속재료학회지
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    • 제47권8호
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    • pp.500-507
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    • 2009
  • Pb-free solder has recently been used in electronics in efforts to meet environmental regulations, and a number of Pb-free solder alloy choices beyond the near-eutectic SnAgCu solder are now available. With increased demand for thin and portable electronics, the high cost of alloys containing significant amounts of silver and their poor mechanical shock performance have spurred the development of low Ag SnAgCu solder, which provides improved mechanical performance at a reasonable cost. Although low Ag SnAgCu solder exhibits significantly higher fracture resistance under high-strain rates, little thermal fatigue data exist for this solder. Therefore, it is necessary to investigate thermal fatigue reliability of low Ag SnAgCu solder under variation of thermal stress in order to allow its implementation in electronic products with high reliability requirements. In this study, the reliability of Sn0.3Ag0.7Cu(SAC0307), a low Ag solder alloy, is discussed and compared with that of Sn3Ag0.5Cu(SAC305). Three sample types and six samples size are evaluated. Mechanical properties and microstructure of the solder joint are investigated under thermal shock cycles. It was observed that the mechanical strength of SAC0307 dropped slightly with thermal cycling relative to that of SAC305. This reveals that the failure mode of SAC0307 is different from that SAC305 under this critical condition.

수도용 강관의 온도변화에 따른 물리적 특성에 대한 연구 (Study on the Physical Characteristics of Water Supply Steel Pipe according to Temperature Change)

  • 김우영;장암
    • 대한환경공학회지
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    • 제39권12호
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    • pp.733-740
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    • 2017
  • 환경부에서 수립한 "상수도 시설기준(2004)"은 관로 신축이음관 설치기준에 있어서는 용접이음 강관에는 설치하지 않는 것으로 규정하고 있으며, 이에 대한 근거가 명확하지 않고 관로 안정성이 충분히 확보되었는지 확인하기가 어렵다. 금번 연구에서는 강관의 거동 분석을 통한 관로 안정성을 연구하여 신축이음관의 필요여부를 검증하는 것을 목적으로 하였다. 검토결과는 아래와 같다. 첫째, 아스팔트 도복장강관(D2,400 mm)은 온도변화에 따라 4-cycle로 관로 신 수축이 반복되며, 연장 1.24 km에 있어 최대 13.03 mm의 변위를 나타내었다. 둘째, 수도용 강관의 신 수축으로 발생되는 온도응력은 매설깊이(최대 4 m)에 따라 $13.7{\sim}36.1kgf/cm^2$로 발생되며, 강관(STWW 400)의 안정성에 큰 영향을 키치는 주요 비교인자인 허용 인장강도와 피로한도는 $4,100kgf/cm^2$$1,840kgf/cm^2$로 산출되었다. 마지막으로, 수도용 강관의 온도응력은 허용 인장강도와 피로한도와 비교시 매우 작음에 따라, 온도변화에 의한 관로의 신 수축이 발생하여도 관로 안정성에는 영향을 끼치지 못함을 알 수 있었다. 결론적으로 금번 연구를 통하여 수도용 강관의 관로부에는 신축이음관을 설치할 필요가 없는 것으로 증명되었다.

개질 유황결합재를 사용한 중온아스팔트 혼합물의 특성 (Characteristics of the Warm-Mix Asphalt Mixtures Using the Modified Sulfur Binder)

  • 김세원;박흥석;김종규;정용욱
    • 한국건설순환자원학회논문집
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    • 제4권4호
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    • pp.489-495
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    • 2016
  • 본 연구는 원유정제과정에서 발생되는 산업부산물인 유황에 폴리머 성분의 첨가제를 혼입한 개질유황결합재를 사용하여 중온아스팔트 혼합물을 제조하고, 개질유황결합재를 사용한 중온아스팔트 혼합물의 간접인장강도, 수침전후 및 동결융해 전후 인장강도비와 휠트랙킹 시험에 의한 동적안정도 등의 역학 및 내구 특성을 평가하였다. 실험결과, 개질유황 결합재를 사용한 중온아스팔트 혼합물의 수침전후 인장강도비는 0.88로 중온 폼드 개질 아스팔트의 약 1.13배이며, 동결융해 전후의 인장강도비 또한 0.82로 인장강도비 KS 품질기준 값 0.75 이상을 모두 만족하였다. 간접인장강도는 1.60MPa로 KS 품질기준 값 0.80MPa의 2배, 일반가열아스팔트의 1.29MPa과 비교하여 약 1.24배 높은 간접인장강도를 나타내었다. 또한, 휠트랙킹 시험에 의한 동적안정도는 14,075회/mm로 일반가열아스팔트의 약 15배, 중온 폼드 개질 아스팔트의 약 3배로 피로균열 등 소성변형에 대한 저항성이 매우 우수하게 나타났다.

마찰교반용접법을 이용한 2피스 알루미늄 휠의 개발 (Development of the Two-piece Aluminum Wheels Using the Friction Stir Welding)

  • 최인영;강영준;김안드레이;안규생
    • 한국생산제조학회지
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    • 제22권4호
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    • pp.700-707
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    • 2013
  • Owing to high oil prices and environmental issues, the automobile industry has conducted considerable research and made large investments to manufacture a high-efficiency automobiles. In the case of automobile wheels in which a lightweight material is used to increase the fuel efficiency a mold is used to increase the production efficiency; however, the use of the molding method for this purpose is very expensive. Therefore an automobile wheel consists of two parts. In this study a two-piece automobile wheel is manufactured by the friction stir welding(FSW) of Al6061-T6 to reduce the manufacturing cost and process complexity. The FSW welding tool geometry and rotational speed, and the feed rate are key factors that significantly affect the weld strength. Therefore tensile tests were conducted on specimens produced using various welding conditions, and the optimal FSW welding conditions were applied to manufacture aluminum wheels. To ensure reliability, prototype aluminum wheels were manufactured and their mechanical reliability and safety were evaluated using a durability test, fatigue durability test, and impact test. Through this study, aluminum wheel production was made possible using the FSW method.

비닐하우스 농작업자 건강증진프로그램 개발을 위한 진단적 연구 (A Diagnostic Study on the Development of a Health Promotion Program for Vinyl House Farmers)

  • 김정남;임경순
    • 지역사회간호학회지
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    • 제18권1호
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    • pp.90-101
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    • 2007
  • Purpose: The purpose of this study was to investigate influencing factors of health problems which the vinyl house farmers had experienced. Method: Based on PRECEDE model, this study was done with 110 respondents(50 to 69 years old), working in vinyl house and living in the remote area where the primary health post located. Results: Quality of life was low in economical status, emotional status, and physical function. Health problems were founded as pain and chronic fatigue that were caused by physical symptoms, weakened physical strength, and increased blood pressure and cholesterol. Behavioral and environmental factors were related with lack of exercise, irregular eating habit, curtailed sleep, overwork, wrong working postures, stress, and non-fulfillment of safety standard during spraying pesticide. Self efficacy was low in excercise practice, working way, and stress management. Conclusion: The Health Promotion Program for vinyl house farmers should be developed to improve health promoting behavior and self efficacy, to reduce stress, and to strengthen physical function.

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Ultra-High Performance Concrete: Mechanical Performance, Durability, Sustainability and Implementation Challenges

  • Abbas, S.;Nehdi, M.L.;Saleem, M.A.
    • International Journal of Concrete Structures and Materials
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    • 제10권3호
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    • pp.271-295
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    • 2016
  • In this study, an extensive literature review has been conducted on the material characterization of UHPC and its potential for large-scale field applicability. The successful production of ultra-high performance concrete (UHPC) depends on its material ingredients and mixture proportioning, which leads to denser and relatively more homogenous particle packing. A database was compiled from various research and field studies around the world on the mechanical and durability performance of UHPC. It is shown that UHPC provides a viable and long-term solution for improved sustainable construction owing to its ultrahigh strength properties, improved fatigue behavior and very low porosity, leading to excellent resistance against aggressive environments. The literature review revealed that the curing regimes and fiber dosage are the main factors that control the mechanical and durability properties of UHPC. Currently, the applications of UHPC in construction are very limited due to its higher initial cost, lack of contractor experience and the absence of widely accepted design provisions. However, sustained research progress in producing UHPC using locally available materials under normal curing conditions should reduce its material cost. Current challenges regarding the implementation of UHPC in full-scale structures are highlighted. This study strives to assist engineers, consultants, contractors and other construction industry stakeholders to better understand the unique characteristics and capabilities of UHPC, which should demystify this resilient and sustainable construction material.