3[1]Boeman R.Development of A Cost Competitive,Composite Intensive Body-In-White,SAE Paper 2002-01-1905.
4[2]Larsson J et al. Strandberg,Innovative Techniques for Body-in White Design and Assembly,Body International Quarterly,1997,2(2)
5[3]http://www. twi.co.uk/j32k/Protected/Band_3/Kschjg002 html. TWI WORLD CENTRE FOR MATERIALS JOININGTECHNOLOGY.
6[4]Velkner W.Present and Future Development of Metal Forming:Selected Examples,Journal of Materials Processing Technology(106)2000.
7[5]http ://www.twi.co.uk/j32k/Protected/Band_3/Kschjg002.html. Self-Piercing Riveting Process Description.
8[6]Fu M F et al. Fatigue of Self-Piercing Riveted Joints in an Aluminum Alloy 6111,International Journal of Fatigue: to be Submitted for Publication.
9[7]Fu M F et al. Effect of Process Variables on the Static and Fatigue Properties of Self-Piercing Riveted Joints in Aliuminum Alloy 5754,SAE TECHNICAL PAPER SERIES,2001.
10[8]Krause A R et al.A Comparative Study of the Fatigue Behavior of Spot Welded and Mechanically FastenedAluminum Joints,SAE Paper No.950710,1995.