综述了国内外达克罗涂层技术的腐蚀保护机理、锌片制备、涂料、涂覆工艺和设备的研究进展.阐述国内外达克罗涂层技术的主要差距和国内克罗涂层技术发展的重点及达克罗技术的研究情况.
The mechanism of corrosion protection,zinc flake preparation,coating material,coating process and equipment for Dacromet coating technology were reviewed. The difference of Dacromet coating at home and abroad,and domestic development focus and research status are mainly introduced.
参考文献
[1] | Burton L;Carter R;Champagne R et al.Army targets age old problems with new gun barrel materials[J].Amptiac Quarterly,2004,18(04):49-56. |
[2] | A 723/A723M-02.Standard specification for alloy steel forging for high-strength pressure component application[S].United States:ASTM Committee on Standards,2002. |
[3] | Defence Standard 10-13/Issue 4 Steel Forgings for Guns[S].Britian:Ministry of Defence,2005. |
[4] | MIL-S-46119C.(MR)Steel Forgings,Tubular Parts for Cannon[S].United States:Military of Refence,1988. |
[5] | GJB 1237-91.炮身管件用钢锻件规范[S].国防科学技术工业委员会,1991. |
[6] | GJB 5207-2003.火炮炮身零件用钢锻件规范[S].国防科学技术工业委员会,2003. |
[7] | Lee E U .Corrosion behavior of landing gear steels.AD-A285862[R]. |
[8] | 范长刚,董瀚,雍岐龙,翁宇庆,王毛球,时捷,惠卫军.低合金超高强度钢的研究进展[J].机械工程材料,2006(08):1-4. |
[9] | 张锐生 .近代高强度炮钢[J].兵器材料科学与工程,1995,18(03):3-9. |
[10] | GJB 1951-94.航空用优质结构钢棒规范[S].国防科学技术工业委员会,1994. |
[11] | 梁波 .G4335V钢冷脆转变温度分析[J].兵器材料科学与工程,1990,13(07):36-37. |
[12] | Eric Petitpas;B. Campion .Crack Propagation in a Gun Barrel Due to the Firing Thermo-Mechanical Stresses[J].Journal of pressure vessel technology,2003(3):293-298. |
[13] | 张锐生 .高强度炮钢的断裂韧度[J].兵器材料科学与工程,1997,20(05):45-52. |
[14] | 张树松;张金孝 .炮钢的KIC与炮管的安全性[J].兵器材料科学与工程,1996,19(05):3-9. |
[15] | 白德忠.身管失效与炮钢材料[M].北京:兵器工业出版社,1989:30-32. |
[16] | 马德林.常用黑色金属材料断裂力学性能参数手册[M].北京:兵器工业出版社,1994:6-9. |
[17] | Troiano E;Underwood J H;Crayon D et al.Low cycle notched fatigue behavior and life predictions of A723 high strength steels[R].US Benet Laboratories,Technical Report ARCCB-TR-95026,1995. |
[18] | Troiano E;Vigilante G N;Underwood J H .Experiences and Modeling of Hydrogen Cracking in a Thick-Walled Pressure Vessel[R].US Benet Laboratories Technical Report ARCCB-TR-01016,2001. |
[19] | Underwood J H;Parker A P;Cote P J et al.Compressive thermal yielding leading to hydrogen cracking in a fired cannon[R].US Benet Laboratories,Technical Report ARCCB-TR-98006,1998. |
[20] | 惠卫军,董瀚,翁宇庆.耐延迟断裂高强度螺栓钢的研究开发[J].钢铁,2001(03):69-73. |
[21] | 赵创业;张志云.国外是如何提高炮钢性能延长炮管寿命的[A].五二研究所,1984:118-126. |
[22] | MIL-S-46119C(AR).Noticel steel forgings,tubular parts for cannon[S].United States:Military of Refence,1998. |
[23] | MIL-S-46119C(AR).Notice2 steel forgings,tubular parts for cannon[S].United States:Military of Refence,2000. |
[24] | MIL-T-10458D(MR).Steel Forgings,Tubular parts for cannons over 30 mm[S].United States:Military of Refence,1966. |
[25] | Underwood J H;Troiano E .Critial fracture processes in army cannons:a review[J].Journal of Pressure Vessel Technology,Transactions of the ASME,2003,125(03):287-292. |
[26] | MIL-S-46119(MR).steel forgings,tubular parts for cannon[S].United States:Military of Refence,1967. |
[27] | 杨书武.大锻件生产工艺的若干进展[J].热加工工艺,1986(01):5. |
[28] | 白德忠;黄通伟 .论炮钢生产技术的转折与开发[J].兵器材料科学与工程,1987,10(04):75-83. |
[29] | 孙钟尧;黄可乎 .厚壁炮钢冶炼工艺的重大变革[J].兵器材料科学与工程,1988,11(10):62-66. |
[30] | MIL-S-46119B(MR).steel forgings,tubular parts for cannon[S].United States:Military of Refence,1983. |
[31] | 白德忠 .厚壁炮钢的生产与科研[J].兵器材料科学与工程,1980,3(01):73-80. |
[32] | 张树松.材料、工艺与枪炮身管寿命[J].西安工业学院学报,1989(01):1-9. |
[33] | 王毓麟 .近二十年来薄壁炮钢之进展[J].兵器材料科学与工程,1980,3(02):43-57. |
[34] | 白德忠 .大型锻件冶金技术的转折对身管设计提出的要求[J].兵器材料科学与工程,1987,10(03):47-51. |
[35] | 孙文山 .高强度厚壁自紧炮管用钢的强韧性探讨[J].兵器材料科学与工程,1986,9(03):15-19. |
[36] | Wasserbly D U S .Army test-fires lightweight XM-360 gun for MCS[J].Jane's Defence Weekly,2009,46(05):10. |
[37] | 钟家湘;郑秀华;徐宗瑞 .4335V钢中碳化物的研究[J].金属学报,1989,25(01):31-36. |
[38] | 蔡刚毅,吕广庶,雷丙旺.Si、Mn含量对中碳Cr-Ni-Mo钢力学性能的影响[J].新技术新工艺,2004(08):37-39. |
[39] | Kwon H;Kim C M;Lee K B .Effect of alloy additions on secondary hardening behavior of Mo-containing steels[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1997,28A(03):621-627. |
[40] | 张树松 .稀土在Cr-Mo-V系炮钢中的作用[J].兵器材料科学与工程,1997,20(06):19-25. |
[41] | 张树松;贾佩璋 .提高Cr-Mo-V系炮钢韧性的有效途径[J].兵器材料科学与工程,1997,20(01):3-10. |
[42] | 宁建荣 .稀土渣系在电渣重熔过程中的应用[J].兵器材料科学与工程,1994,17(05):71-72. |
[43] | Dong Yanchi .Study of rare earth segregation to grain boundaries in gun steel[J].Acta Metallurgica Sinica,1986,22A:149. |
[44] | 周淑兰 .Cr-Mo-V系炮钢中磷锡的控制容限[J].兵器材料科学与工程,1998,21(01):13-19. |
[45] | 孙文山,丁桂荣,罗铭蔚,傅杰,杨媛媛,李玉兰.残铝对35CrNiMoV钢晶粒度的影响[J].兵器材料科学与工程,2002(05):21-23,28. |
[46] | 孙文山 .残铝在35CrNiMoV钢中的作用[J].兵工学报,1996,17(03):238-242. |
[47] | 张志刚;李宝臣;董霞 等.电渣重熔PCrNi3MoVA钢的过热特性[J].兵器材料科学与工程,1990,13(07):30-33. |
[48] | 田野,王毛球,李金许,时捷,惠卫军,董瀚.1500 MPa级40CrNi3MoV钢的氢脆敏感性[J].金属学报,2008(04):403-408. |
[49] | E. Troiano;A. P. Parker;J. H. Underwood .Mechanisms and Modeling Comparing HB7 and A723 High Strength Pressure Vessel Steels[J].Journal of pressure vessel technology,2004(4):473-477. |
[50] | Gay Gerald;Gaillard-Allemand Bruno .Process for manufacturing steel blanks[P].WO,2008015258,2008-02-07. |
[51] | 孙文山 .电渣重熔是生产高强度高韧性厚壁炮钢经济有效的工艺途径[J].兵器材料科学与工程,1985,8(04):12-20. |
[52] | 王毓麟;万洪;李宪文 等.高强度厚壁无缝钢管制造工艺的研究[J].兵器材料科学与工程,1985,8(04):62-64. |
[53] | 王瑞清;雷经义 .用双炼-联锻方法生产厚壁炮管[J].兵器材料科学与工程,1990,13(05):31-36. |
[54] | 黄通伟;白德忠 .高强度高韧性钢的电渣重熔[J].兵器材料科学与工程,1986,9(05):34-39. |
[55] | 赵振业.超高强度钢中二次硬化现象研究[J].航空材料学报,2002(04):46-55. |
[56] | Vigilante G N;A Fish;G P O' Hara et al.Elevated temperature properties of steels[R].US Benet Laboratories,Technical Report ARCCB-TR-96023,1996. |
[57] | Maoqiu Wang,Han Dong,Qi Wang.Elevated-temperature properties of one long-life high-strength gun steel[J].北京科技大学学报(英文版),2004(01):62-66. |
[58] | 范长刚,董瀚,时捷,刘燕林,雍岐龙,惠卫军,王毛球,翁宇庆.2200 MPa级超高强度低合金钢的组织和力学性能[J].兵器材料科学与工程,2006(02):31-35. |
[59] | 陈克明,苏杰,李荣,翁宇庆,王剑志.无钴二次硬化超高强度钢合金设计[J].钢铁,2000(08):40-44. |
[60] | 夏志新,杨卓越,李保成,陈嘉砚.EAF-VOD-VAR和VIM-VAR冶炼工艺对G50超高强度钢韧性的影响[J].特殊钢,2008(01):60-61. |
[61] | 杨玉婷,陈东方.G50超高强度钢冶炼工艺与韧性的相关性研究[J].特钢技术,2008(03):30-32. |
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