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·1306· 工程科学学报.第41卷,第10期 [8]Zuo J R.Mechanisms for Optimizing the Microstructures and Prop- [18]Li H,Yang Y X,Zheng Z Q,et al.Effect of minor addition of erties by Thermomechanical Treatments based on Strain-induced scandium on microstructures and mechanical properties of 7055 Precipitation in 7055 Aluminum Alloy Dissertation].Beijing: aluminum alloy.Mater Sci Technol,2006,14(1):46 University of Science and Technology Beijing,2018 (李海,杨迎新,郑子樵,等.少量Sc对7055铝合金组织与 (左锦荣.基于应变诱导析出的形变热处理工艺对7055铝合 性能的影响.材料科学与工艺,2006,14(1):46) 金组织和性能的改善[学位论文].北京:北京科技大学, [19 Yang K.The Effect of Sc on the Microstructure and Properties of 2018) 7075 Aluminum Alloy [Dissertation].Hefei:Hefei University of [9]Yu C F,Liu Z W,Yang L.Effect of heat treatment process on Technology,2016 corrosion properties of 7075 alloy.Heat Treat Technol Equip, (杨凯.S对7075铝合金组织和性能的影响[学位论文] 2018,39(2):50 合肥:合肥工业大学,2016) (于长富,刘兆伟,杨路.热处理工艺对7075合金腐蚀性能的 [20] Xiao D H,Chao H,Chen K H,et al.Effect of minor Se addition 影响.热处理技术与装备,2018,39(2):50) on microstructure and properties of AA7085 alloy.Chin J Nonfer- [10]Wang JJ,Huang Y C.Liu Y,et al.Influence of aging treatment osMt,2008,18(12):2145 on the microstructure and corrosion properties of Al-Zn-Mg-Cu- (肖代红,巢宏,陈康华,等.微量SC对AA7085铝合金组织 Zr-Er aluminum alloy.Nonferrous Met Sci Eng,2018,9(2): 与性能的影响.中国有色金属学报,2008,18(12):2145) [21]Zhao B,Li X B,Wang JL,et al.Influence of micro-Sc on cast- (王井井,黄元春,刘字,等.时效工艺对A-Zm-Mg-Cu-Z- ing microstructures and mechanical properties of high strength 铝合金组织与耐腐蚀性影响.有色金属科学与工程, aluminum alloy.J Netshape Form Eng,2015,7(6):70 2018,9(2):47) (赵宾,李向博,王久林,等.微量S对高强铝合金铸态组 [11]Zhao X Y,Song H,Wang X.Effect of aging process on corrosion 织性能的影响.精密成形工程,2015,7(6):70) behavior of rolled 7075 aluminum alloy.Trans Mater Heat Treat, [22]Zheng X J,Wang M X,Guo Q N,et al.Effects of scandium on 2018,39(3):21 the mechanical properties and recrystallization behaviour of 7050 (赵晓燕,宋航,王旭.时效工艺对轧制态7075铝合金耐蚀 aluminum alloy.Spec Cast Nonferrous Alloys,2016,36(8):876 性能的影响.材料热处理学报,2018,39(3):21) (郑晓静,王明星,郭巧能,等.S℃对7050铝合金力学性能 [12]Liu JT,Zhang YA.Li X W.et al.Microstructure and proper- 和再结品行为的影响.特种铸造及有色合金,2016,36(8): ties of two-step aged novel 7056 aluminum alloy.Chin J Nonfer- 876) rous Met,.2016,26(9):1850 [23]Zhou M,Gan P Y,Deng HH,et al.Research status and pros- (刘俊涛,张永安,李锡武,等.新型7056铝合金双级时效 pect of Sc microalloying aluminum alloys.Mater China,2018, 的显微组织和性能.中国有色金属学报,2016,26(9): 37(2):154 1850) (周民,甘培原,邓鸿华,等.含钪微合金化铝合金研究现状 [13]Jiang J H.Study on Heat Treatment Process and Microstructure of 及发展趋势.中国材料进展,2018,37(2):154) 7056 Aluminum Alloy Dissertation ]Changsha:Central South [24] Cao HQ.Preparation and Properties of Oxide Dispersion Strength- University,2012 ened Aluminum Alloys Dissertation ]Beijing:University of Sci- (蒋建辉.7056铝合金热处理工艺与组织性能研究[学位论 ence and Technology Beijing.2016 文].长沙:中南大学,2012) (曹慧钦.弥散强化铝合金的制备及性能研究[学位论文] [14]Jiang J H,Zheng ZQ,Tang J,et al.Microstructure and proper- 北京:北京科技大学,2016) ties of single-aging 7056 aluminum alloy.Mater Mech Eng, [25]Chen X.Study on the Heat Treatment,Microstructure and Proper- 2013,37(4):69 ties of an Al-Zn-Mg-Cu Alloy Dissertation].Changsha:Cen- (蒋建辉,郑子樵,唐娟,等.单级时效7056铝合金的显微 tral South University,2012 组织与性能.机械工程材料,2013,37(4):69) (陈旭.A-Zm-Mg-Cu合金热处理工艺及组织性能研究[学 [15] Guo F A,Zhao Y Q,Li J P,et al.Effect of deformation condi- 位论文].长沙:中南大学,2012) tions on microstructure evolution of 7056 aluminium alloy during [26] Wang T,Yin Z M.Research status and development trend of ul- hot deformation.Mater Rev,2014,28(24):463 tra-high strength aluminum alloys.Chin J Rare Met,2006,30 (郭富安,赵业青,李俊鹏,等.变形条件对7056铝合金热 (2):197 变形显微组织演化的影响.材料导报,2014,28(24):463) (王涛,尹志民.高强变形铝合金的研究现状和发展趋势 [16]Wang G J,Sun L M,Li X W,et al.Experimental study on mi- 稀有金属,2006,30(2):197) crostructure and properties of 7056 aluminum alloy.Light Alloy [27] Wang H B,Ma P C,Zhao H Y,et al.Effect of aging treatments Fabric Technol,2016,44(4):45 on microstructure and properties of cast-rolled 7050 aluminum al- (王国军,孙黎明,李锡武,等.7056铝合金组织与性能的 loy.Trans Mater Heat Treat,2011,32(10):85 试验研究.轻合金加工技术,2016,44(4):45) (王洪斌,马鹏程,赵红阳,等.时效处理对铸轧7050铝合 [17]Liu H N,Yang G Y,Qi Y H,et al.Effeets of Se on the micro- 金组织和性能的影响.材料热处理学报,2011,32(10):85) structures and mechanical properties of Al-Zn-Mg-Cu casting [28]Li Q.Influence of natural aging on mechanical properties of 7085 aluminum alloy.Foundry,2013,62(1):4 aluminum alloy.Alum Fabric,2018(2):4 (刘华娜,杨光昱,齐元吴,等.Sc对A-Zm-Mg-Cu系铸造 (李群.自然时效对7085铝合金力学性能的影响.铝加工, 铝合金组织与性能的影响.铸造,2013,62(1):4) 2018(2):4)工程科学学报,第 41 卷,第 10 期 [8] Zuo J R. Mechanisms for Optimizing the Microstructures and Prop鄄 erties by Thermomechanical Treatments based on Strain鄄induced Precipitation in 7055 Aluminum Alloy [ Dissertation ]. Beijing: University of Science and Technology Beijing, 2018 (左锦荣. 基于应变诱导析出的形变热处理工艺对 7055 铝合 金组织和性能的改善[ 学位论文]. 北京: 北京科技大学, 2018) [9] Yu C F, Liu Z W, Yang L. Effect of heat treatment process on corrosion properties of 7075 alloy. Heat Treat Technol Equip, 2018, 39(2): 50 (于长富, 刘兆伟, 杨路. 热处理工艺对7075 合金腐蚀性能的 影响. 热处理技术与装备, 2018, 39(2): 50) [10] Wang J J, Huang Y C, Liu Y, et al. Influence of aging treatment on the microstructure and corrosion properties of Al鄄鄄Zn鄄鄄Mg鄄鄄Cu鄄鄄 Zr鄄鄄Er aluminum alloy. Nonferrous Met Sci Eng, 2018, 9 (2): 47 (王井井, 黄元春, 刘宇, 等. 时效工艺对 Al鄄鄄Zn鄄鄄Mg鄄鄄Cu鄄鄄Zr鄄鄄 Er 铝合金组织与耐腐蚀性影响. 有色金属科学与工程, 2018, 9(2): 47) [11] Zhao X Y, Song H, Wang X. Effect of aging process on corrosion behavior of rolled 7075 aluminum alloy. Trans Mater Heat Treat, 2018, 39(3): 21 (赵晓燕, 宋航, 王旭. 时效工艺对轧制态 7075 铝合金耐蚀 性能的影响. 材料热处理学报, 2018, 39(3): 21) [12] Liu J T, Zhang Y A, Li X W, et al. Microstructure and proper鄄 ties of two鄄step aged novel 7056 aluminum alloy. Chin J Nonfer鄄 rous Met, 2016, 26(9): 1850 (刘俊涛, 张永安, 李锡武, 等. 新型 7056 铝合金双级时效 的显微组织和性能. 中国有色金属学报, 2016, 26 (9 ): 1850) [13] Jiang J H. Study on Heat Treatment Process and Microstructure of 7056 Aluminum Alloy [Dissertation]. Changsha: Central South University, 2012 (蒋建辉. 7056 铝合金热处理工艺与组织性能研究[学位论 文]. 长沙: 中南大学, 2012) [14] Jiang J H, Zheng Z Q, Tang J, et al. Microstructure and proper鄄 ties of single鄄aging 7056 aluminum alloy. Mater Mech Eng, 2013, 37(4): 69 (蒋建辉, 郑子樵, 唐娟, 等. 单级时效 7056 铝合金的显微 组织与性能. 机械工程材料, 2013, 37(4): 69) [15] Guo F A, Zhao Y Q, Li J P, et al. Effect of deformation condi鄄 tions on microstructure evolution of 7056 aluminium alloy during hot deformation. Mater Rev, 2014, 28(24): 463 (郭富安, 赵业青, 李俊鹏, 等. 变形条件对 7056 铝合金热 变形显微组织演化的影响. 材料导报, 2014, 28(24): 463) [16] Wang G J, Sun L M, Li X W, et al. Experimental study on mi鄄 crostructure and properties of 7056 aluminum alloy. Light Alloy Fabric Technol, 2016, 44(4): 45 (王国军, 孙黎明, 李锡武, 等. 7056 铝合金组织与性能的 试验研究. 轻合金加工技术, 2016, 44(4): 45) [17] Liu H N, Yang G Y, Qi Y H, et al. Effects of Sc on the micro鄄 structures and mechanical properties of Al鄄鄄 Zn鄄鄄 Mg鄄鄄 Cu casting aluminum alloy. Foundry, 2013, 62(1): 4 (刘华娜, 杨光昱, 齐元昊, 等. Sc 对 Al鄄鄄Zn鄄鄄Mg鄄鄄Cu 系铸造 铝合金组织与性能的影响. 铸造, 2013, 62(1): 4) [18] Li H, Yang Y X, Zheng Z Q, et al. Effect of minor addition of scandium on microstructures and mechanical properties of 7055 aluminum alloy. Mater Sci Technol, 2006, 14(1): 46 (李海, 杨迎新, 郑子樵, 等. 少量 Sc 对 7055 铝合金组织与 性能的影响. 材料科学与工艺, 2006, 14(1): 46) [19] Yang K. The Effect of Sc on the Microstructure and Properties of 7075 Aluminum Alloy [Dissertation]. Hefei: Hefei University of Technology, 2016 (杨凯. Sc 对 7075 铝合金组织和性能的影响[学位论文]. 合肥: 合肥工业大学, 2016) [20] Xiao D H, Chao H, Chen K H, et al. Effect of minor Sc addition on microstructure and properties of AA7085 alloy. Chin J Nonfer鄄 rous Met, 2008, 18(12): 2145 (肖代红, 巢宏, 陈康华, 等. 微量 Sc 对 AA7085 铝合金组织 与性能的影响. 中国有色金属学报, 2008, 18(12): 2145) [21] Zhao B, Li X B, Wang J L, et al. Influence of micro鄄Sc on cast鄄 ing microstructures and mechanical properties of high strength aluminum alloy. J Netshape Form Eng, 2015, 7(6): 70 (赵宾, 李向博, 王久林, 等. 微量 Sc 对高强铝合金铸态组 织性能的影响. 精密成形工程, 2015, 7(6): 70) [22] Zheng X J, Wang M X, Guo Q N, et al. Effects of scandium on the mechanical properties and recrystallization behaviour of 7050 aluminum alloy. Spec Cast Nonferrous Alloys, 2016, 36(8): 876 (郑晓静, 王明星, 郭巧能, 等. Sc 对 7050 铝合金力学性能 和再结晶行为的影响. 特种铸造及有色合金, 2016, 36(8): 876) [23] Zhou M, Gan P Y, Deng H H, et al. Research status and pros鄄 pect of Sc microalloying aluminum alloys. Mater China, 2018, 37(2): 154 (周民, 甘培原, 邓鸿华, 等. 含钪微合金化铝合金研究现状 及发展趋势. 中国材料进展, 2018, 37(2): 154) [24] Cao H Q. Preparation and Properties of Oxide Dispersion Strength鄄 ened Aluminum Alloys [Dissertation]. Beijing: University of Sci鄄 ence and Technology Beijing, 2016 (曹慧钦. 弥散强化铝合金的制备及性能研究[学位论文]. 北京: 北京科技大学, 2016) [25] Chen X. Study on the Heat Treatment, Microstructure and Proper鄄 ties of an A1鄄鄄Zn鄄鄄Mg鄄鄄Cu Alloy [Dissertation]. Changsha: Cen鄄 tral South University, 2012 (陈旭. Al鄄鄄Zn鄄鄄Mg鄄鄄Cu 合金热处理工艺及组织性能研究[学 位论文]. 长沙: 中南大学, 2012) [26] Wang T, Yin Z M. Research status and development trend of ul鄄 tra鄄high strength aluminum alloys. Chin J Rare Met, 2006, 30 (2): 197 (王涛, 尹志民. 高强变形铝合金的研究现状和发展趋势. 稀有金属, 2006, 30(2): 197) [27] Wang H B, Ma P C, Zhao H Y, et al. Effect of aging treatments on microstructure and properties of cast鄄rolled 7050 aluminum al鄄 loy. Trans Mater Heat Treat, 2011, 32(10): 85 (王洪斌, 马鹏程, 赵红阳, 等. 时效处理对铸轧 7050 铝合 金组织和性能的影响. 材料热处理学报, 2011, 32(10): 85) [28] Li Q. Influence of natural aging on mechanical properties of 7085 aluminum alloy. Alum Fabric, 2018(2): 4 (李群. 自然时效对 7085 铝合金力学性能的影响. 铝加工, 2018(2): 4) ·1306·
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