[1] |
VARIS J P, LEPIST¨O J. A simple testing-based procedureand simulation of the clinching process using finiteelement analysis for establishing clinching parameters[J]. Thin-Walled Structures, 2003, 41(8): 691-709.
|
[2] |
HAMEL V, ROELANDT J M, GACEL J N, et al.Finite element modeling of clinch forming with automaticremeshing [J]. Computers and Structures, 2000,77(2): 185-200.
|
[3] |
COPPIETERS S, LAVA P, BAES S, et al. Analyticalmethod to predict the pull-out strength of clinchedconnections [J]. Thin-Walled Structures, 2012, 52(1):42-52.
|
[4] |
COPPIETERS S, LAVA P, HECKE R V, et al. Numericaland experimental study of the multi-axial quasistaticstrength of clinched connections [J]. InternationalJournal of Material Forming, 2012, 6(4): 437-451.
|
[5] |
LAMBIASE F, ILIO A D. Damage analysis in mechanicalclinching: Experimental and numerical study[J]. Journal of Materials Processing Technology, 2016,230: 109-120.
|
[6] |
COPPIETERS S, COOREMAN S, LAVA P, et al.Reproducing the experimental pull-out and shearstrength of clinched sheet metal connections usingFEA [J]. International Journal of Material Forming,2010, 4(4): 429-440.
|
[7] |
OUDJENE M, BEN-AYED L. On the parametricalstudy of clinch joining of metallic sheets using theTaguchi method [J]. Engineering Structures, 2008,30(6): 1782-1788.
|
[8] |
LAMBIASE F, ILIO A D. Optimization of the clinchingtools by means of integrated FE modeling and artificialintelligence techniques [J]. Procedia CIRP, 2013,12: 163-168.
|
[9] |
ROUX E, BOUCHARD P O. Kriging metamodelglobal optimization of clinching joining processes accountingfor ductile damage [J]. Journal of MaterialsProcessing Technology, 2013, 213(7): 1038-1047.
|
[10] |
SUN X, KHALEEL M A. Performance optimizationof self-piercing rivets through analytical rivet strengthestimation [J]. Journal of Manufacturing Processes,2005, 7(1): 83-93.
|
[11] |
OUDJENE M, BEN-AYED L, DELAM′EZI`ERE A, etal. Shape optimization of clinching tools using the responsesurface methodology with moving least-squareapproximation [J]. Journal of Materials ProcessingTechnology, 2009, 209(1): 289-296.
|
[12] |
LEBAAL N, OUDJENE M, ROTH S. The optimaldesign of sheet metal forming processes: Applicationto the clinching of thin sheets [J]. International Journalof Computer Applications in Technology, 2012, 43(2):110-116.
|
[13] |
LEE C J, KIM J Y, LEE S K, et al. Design of mechanicalclinching tools for joining of aluminium alloy sheets[J]. Materials and Design, 2010, 31(4): 1854-1861.
|
[14] |
LEE C J, KIM J Y, LEE S K, et al. Parametric studyon mechanical clinching process for joining aluminumalloy and high-strength steel sheets [J]. Journal of MechanicalScience and Technology, 2010, 24(1): 123-126.
|
[15] |
GERSTMANN T, AWISZUS B. Recent developmentsin flat-clinching [J]. Computational Materials Science,2014, 81(2): 39-44.
|
[16] |
HAMBLI R, RESZKA M. Fracture criteria identificationusing an inverse technique method and blankingexperiment [J]. International Journal of MechanicalSciences, 2002, 44(7): 1349-1361.
|
[17] |
CHEN C, ZHAO S D, HAN X L, et al. Optimization ofa reshaping rivet to reduce the protrusion height andincrease the strength of clinched joints [J]. Journal ofMaterials Processing Technology, 2016, 234: 1-9.
|
[18] |
LEE C J, LEE J M, RYU H Y, et al. Design of hole-clinching process for joining of dissimilar materialsAl6061-T4 alloy with DP780 steel, hot-pressed22MnB5 steel, and carbon fiber reinforced plastic[J]. Journal of Materials Processing Technology, 2014,214(10): 2169-2178.
|