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轻型化——压力容器的发展方向 被引量:65

Light-weight:A Trend in the Development of Pressure Vessels
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摘要 安全与经济并重、安全与资源节约并重已成为压力容器发展的重要理念,轻型化是这一理念的具体体现。从提高材料强度、降低安全系数、选用更高屈服强度、采用应变强化技术、运用分析设计方法以及优化压力容器结构等方面阐述压力容器的轻型化发展趋势。 The concepts of safety, economy and resource saving have becoming equally important in the development of pressure vessels, which are being reflected in the trend of light - weight. This trend of light - weight is introduced in several aspects, including increasing material strength, reducing safety factors, choosing higher yield strength with the same material, using pressure strengthening technology, designing by analysis and optimizing structure of pressure vessels.
出处 《压力容器》 北大核心 2009年第9期42-48,共7页 Pressure Vessel Technology
基金 国家科技支撑计划(2006BAK04A02)项目资助
关键词 压力容器 轻型化 安全系数 pressure vessels light - weight safety factor
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参考文献34

  • 1GB6654-86,压力容器用碳素钢和低合金钢厚钢板[S].
  • 2GB6654--1996,压力容器用钢板[S].
  • 3GB19189--2003,压力容器用调质高强度钢板[S].
  • 4GB713--2008,锅炉和压力容器用钢板[S].
  • 5EN 10028 -5:2003, Flat Products Made of Steels for Pressure Purposes - Part 5 : Weldable Fine Grain Steels, Thermomeehanically Rolled [ S ].
  • 6EN 10028 -6:2003, Flat Products Made of Steels for Pressure Purposes - Part 6 : Weldable Fine Grain Steels, Quenched and Tempered [ S ].
  • 72007, ASME Boiler & Pressure Vessel Code, Section Ⅱ MATERIALS, Part A: Ferrous Material Specifications Is].
  • 8GB/T4237--2007,不锈钢热轧钢板和钢带[S].
  • 9ASME Code Case 2503 -2006, UNS S32003 Stainless Steel[ S].
  • 10GB4237-92,不锈钢热轧钢板[S].

二级参考文献47

  • 1[1]MORRIS E E. Composite fiber/metal pressure vessels for propulsion systems[R]. AIAA83-1329.
  • 2[2]MORRIS E E, DARMS F J, LYNN V. Lower cost, high-performance composite fiber/metal tanks for spacecraft[R]. AIAA86-1694.
  • 3[3]PEARCE T M, NEVERMAN D A, DARMS F J, et al. Composite fiber/metal space station tank age-applications, material/process/design trades, and subscale manufacturing/test results[R]. AIAA87-2157.
  • 4[4]HADDOCK R C, DARMS F J. Space system application of advanced composite fiber/metal pressure vessels[R].AIAA90-2227.
  • 5[5]BRAUN C A. PAPANICOLOPOULOS A, DEVEY I. Advanced composite fiber/metal pressure vessels for space system applications[R]. AIAA91-1976.
  • 6[6]VEYS R B, CEDERBERG A R, SCHIMENTI J D. Fatigue analysis techniques for composite tankage with plastically operating aluminum liners[R].AIAA91-1974.
  • 7[7]VEYS R B, CEDERBERG A R, SCHIMENTI J D. Design and analysis techniques for composite pressure tankage with plastically operating aluminum liners[R].AIAA90-2345.
  • 8[8]VEYS R B, CEDERBERG A R, SCHIMENTI J D. Design and qualification of a carbon over wrapped, aluminum lined pressurant tank for the INTELSATVII satellite[R].AIAA91-2092.
  • 9[9]KAWAHARA G, McCIESKEY S F. Titanium lined,carbon composite over wrapped pressure vessel[R]. AIAA96-2751.
  • 10[10]TAM W H,BALLIMGER I A,LAY W D,et al.Design and manufacture of acomposite over wrapped Xenon conical pressure vessel[R].AIAA96-2752.

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