[1]A. Heinz, et al., 2000 “Recent development in aluminum alloys for aerospace applications”, Mater Sci. Eng A, 280(1), pp.102-107.
[2]盧仲湘,1989,"高強度鋁合金之銲接熱裂研究",國立交通大學機械工程研究所碩士論文。[3]黃振賢,1980,"機械材料",文晶圖書股份有限公司,第 311~331 頁。
[4]賴耿陽,1982,"非鐵金屬材料",復漢出版社,第151~168 頁。
[5]賴耿陽,1982,"非鐵金屬材料",復漢出版社,第175頁。
[6]呂璞石、黃振賢,1986,"金屬材料",文京圖書有限公司。
[7]趙光榮,2001,"氬氣鎢極電銲能力本位訓練教材_鋁板平銲機本銲道銲接",行政院勞工委員會職業訓練局。
[8]姜志華編著,1995,"鋁合金電弧焊接及硬軟銲應用技術",台北:徐氏基金3-212頁。
[9] 陳皇鈞,1986,"材料科學與工程",曉園出版社,323-335 頁。
[10]H. W. Kerr and M. Katoh 1987. "Investigation of Heat-Affected Zone Cracking of GMA Welds of Al-Mg-Si Alloys Using the Varestraint Test. "Welding Journal. Vol.66. No.9.
[11]周長彬、蔡丕椿、郭央諶,1997,"銲接學",65 頁。台北:全華,
[12]P. A. Kammer, K. Masubuchi and R. E. Monroe 1964. "Cracking in high-strength steel weldments. A critical review. " DIMC report 197.
[13]吳政江,1997,"鋁合金5052與6061銲後熱處理機械性質研究",國立台灣師範大學工業教育研究所,碩士論文。[14]趙勇,付娟,張培磊,嚴堅,蔣成禹,2006,"銲接方法對6061 鋁合金接頭性能影響的研究",江蘇科技大學學報。
[15]X. Hou, X. Yang, L. Cui, G. Zhou, 2014 "Influences of joint geometry on defects and mechanical properties of friction stir welded AA6061-T4 T-joints,‖ Materials and Design" Vol. 53, pp. 106-117.
[16]唐自勇,2011,"A7050 與A2024 鋁合金異質銲接與焊後熱處理",國立交通大學,碩士論文。[17]X. H. Wang, J. T. Niu, S. K. Guan, L. J. Wang, D. F. Cheng, 2009 "Investigation on TIG welding of Si Cp-reinforced aluminum–matrix composite using mixed shielding gas and Al–Si filler" Materials Science and Engineering, Vol. 499, pp. 106-110.
[18]林暉,2016,"鋁合金6061-T6 鎢極惰性氣體保護銲與真空硬銲接頭之疲勞壽命評估研究",國立中央大學機械工程研究所博士論文。[19]姜家斌,1995,"鋁合金5052 與6061 應用惰氣金屬極電弧銲對接之研究",國立交通大學機械工程研究所碩士論文。[20]馮永光,1997,"鋁合金7003 與6061 銲接與熱處理之研究",國立台灣師範大學工業教育研究所碩士論文。[21]M.B. Chennaiah, P.N. Kumar, K.P. Rao, 2015 "Effect of Pulsed TIG Welding Parameters on the Microstructure and Micro-Hardness of AA6061 Joints", Journal of Material Sciences & Engineering.
[22]H. Wang, X. Liu, L. Liu, 2020 "Research on Laser-TIG Hybrid Welding of 6061-T6 Aluminum Alloys Joint and Post Heat Treatment", Metals,.
[23]楊欣璟,2018,"銲後熱處理對鋁合金5083 與7005-T6 異材TIG 焊接機械性質之研究" 國立中央大學機械工程研究所碩士論文[24]"ASTM-E8 2012 : Standard Test Methods for Tension Testing of Metallic Materialisms"
[25]N. Coniglio, 2008 “Aluminum alloy weldability: "Identification of weld solidification cracking mechanisms through novel experimental technique and model development", Ottovon- Guericke University.
[26]N. Coniglio, 2008 “Aluminum alloy weldability: "Identification of weld solidification cracking mechanisms through novel experimental technique and model development", Ottovon- Guericke University.
[27]CNS 2115: Method of Vickers Hardness Test, CNS, 1983.
[28]董基良,1988,"銲接學",三民書局股份有限公司。
[29]R. F. Ashton, R. P. Wesley and C. R. Dixon 1975 . "The Effect of Porosity on 5086-H116 Aluminum Alloy Weld". Welding Journal. 95-98.
[30]BS 8118:1991. Structural use of aluminum—part 1 code of practice for design. London: BSI.
[31]Eurocode 9. 1991 . Design of aluminum structures: part 1-3: structures susceptible to fatigue. Brussels: CEN
[32]C. D. Lundin, W. T. Delong, and D. F. Spend, 1976 "The Fissure Bend Test",Welding Journal, 145-151, June.
[33]N. F. Gittos and M. H. Scott 1981 "Heat-affect Zone Cracking of Al-Mn-Si Alloy" ibid, pp.95-103, June .
[34]J. A. Liptax, and F. R.1985 Baysinger, ibid, 47,173.
[35]C. D. Lundin, A. C. Lingenfelter, G. E. Grptle, G. G. 1980 Lessmann and S. Matthews, "The VA restraint Test", WRC Bulletin 280, August .
[36]H. B. Cary,1998 Modern Welding Technology, 3rd ed., Englewood Cliff, New Jersey, Prentice-Hall Inc,.
[37]. W. F. Savage, and C. D.1965 Lundin, ibid 44, pp.443,.
[38]Y. Liang, J. Shen, S. Hu, H. Wang, J. Pang, 2018 "Effect of TIG Current on Microstructural and Mechanical Properties of 6061-T6 Aluminum Alloy Joints by TIG-CMT Hybrid Welding", Journal of Materials Processing Technology, , 255, pp.161-174.
[39]楊欣璟,2018,"焊後熱處理對鋁合金5083 與7005 異材TIG 銲接機械性質之研究",國立中央大學機械工程學系碩士論文。
[40]William R. Oates,1987 "Welding Handbook, American Welding Society", Vol. 3, pp 26,30-41