概述复合材料炮管的开发研究背景,介绍几种典型复合材料炮管技术,重点讨论钢内衬、陶瓷内衬、高熔点金属内衬复合材料炮管的工艺技术,并展望复合材料炮管技术的应用前景.
参考文献
[1] | 张喜发;卢兴华.火炮烧蚀内弹道学[M].北京:国防工业出版社,2001:1-13. |
[2] | W. S. de Rosset;M. J. Audino .Advanced Gun Barrel Materials and Manufacturing Technology Symposium-Overview and Perspective[J].Materials and Manufacturing Processes,2006(5/6):571-572. |
[3] | Burnett J M;Gigerenzer H;Pennell E.Reinforced metal structural jackets for advanced gun barrels[A].America,2002:341-354. |
[4] | Andrew Littlefield;Edward Hyland;Andrew Andalora;Nathaniel Klein;Robert Langone;Robert Becker .Carbon Fiber/Thermoplastic Overwrapped Gun Tube[J].Journal of pressure vessel technology,2006(2):257-262. |
[5] | Anthony P. Parker;Edward Troiano;John H. Underwood .Stresses Within Compound Tubes Comprising a Steel Liner and an External Carbon-Fiber Wrapped Laminate[J].Journal of pressure vessel technology,2005(1):26-30. |
[6] | Hasenbein R;Hyland E .Dynamic strain waves and permanent bore enlargement[ARCCB-TR-92042][R].U S Army Benet Laboratories,1992. |
[7] | Littlefield A;Hyland E .Prestressed carbon fiber composite overwrapped fun tube[ADA481065][R].,2006. |
[8] | Larry Burton;Carter Robert;Victor Champagne .Army targets age old problems with new gun barrel materials[J].AMPTIAC,2004,18(04):49-55. |
[9] | R. H. Carter;J. H. Underwood;J. J. Swab .Material Selection for Ceramic Gun Tube Liner[J].Materials and Manufacturing Processes,2006(5/6):584-590. |
[10] | Underwood J H;Todaro M E;Vigilante G N .Modeling of transient thermal damage in ceramics for cannon bore applications[J].Ceramic Engineering and Science Proceedings,2004,25:189-194. |
[11] | R. Carter .MODEL DEVELOPMENT FOR PARAMETRIC DESIGN OF PRESSURIZED CERAMIC TUBING[J].Ceramic Engineering and Science Proceedings,2003(4):477-482. |
[12] | Carter R.Probabilistic modeling for ceramic lined gun barrels[A].England,Oxford,2005:10-13. |
[13] | J. H. Underwood;P. J. Cote;G. N. Vigilante .THERMO-MECHANICAL AND FRACTURE ANALYSIS OF SiC IN CANNON BORE APPLICATIONS[J].Ceramic Engineering and Science Proceedings,2003(4):503-508. |
[14] | Emerson R;Kaste R;Carter R et al.Approaches for the design of ceramic gun barrels[ADA480918][R].,2006. |
[15] | R. Emerson;R. Carter;J. Tzeng .Press-Fit Sheathing for Ceramic Gun Liners[J].Materials and Manufacturing Processes,2006(5/6):597-601. |
[16] | Swab J J;Wereszczak A A;Tice J et al.Mechanical and thermal properties of advanced ceramics for gun barrel applications[ARL-TR-3417][R].U S Army Research Laboratory,2005. |
[17] | R. N. Katz;L. A. Bracamonte;J. C. Withers .Hybrid Ceramic Matrix/Metal Matrix Composite Gun Barrels[J].Materials and Manufacturing Processes,2006(5/6):579-583. |
[18] | Vigilante G;Sage T;Kendall G .Characterization of tantalum liners applied to 25 mm and 120 mm cannon bore sections via explosive[ADA387587][R].,2001. |
[19] | David G .Gleem testing fixture[ADA506447][R].,2009. |
[20] | Carter R H;Gray D M.Gun liner emplacement using elastomeric materials[A].USA:Washington,2010:1-6. |
[21] | de Rosset William S .Cost estimate for gun liner emplacement[ARL-CR-0677][R].U S Army Research Laboratory,2011. |
[22] | Montgomery J S;Ellis R L.Large caliber gun tube materials systems design[A].America,2002:385-397. |
[23] | Daniel Wasserbly .Us Army Test-fires Lightweight Xm360 Gun For Mcs[J].Jane's defence weekly: IHS Jane's defence weekly,2009(5):10-10. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%