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 Body and Safety, Materials and Recycling
ASYMMETRIC HARDENING BEHAVIOR OF AZ31B MAGNESIUM ALLOY SHEET WITH LARGE STRAIN AT VARIOUS STRAIN RATES
Minki Kim, Hoon Huh
Int J Automot Technol. 2019;20(4):645-653.    DOI: https://doi.org/10.1007/s12239-019-0061-4
      
 Automobile Body and Safety
FRACTURE LOCI OF DP980 STEEL SHEET FOR AUTO-BODY AT INTERMEDIATE STRAIN RATES
Sung Jun Lim, Hoon Huh
Int J Automot Technol. 2017;18(4):719-727.    DOI: https://doi.org/10.1007/s12239-017-0071-z
         Cited By 1
 Other Fields of Automotive Engineering
DETERMINATION OF DYNAMIC STRAIN HARDENING PARAMETERS USING THE VIRTUAL FIELDS METHOD
J. H. KIM, G. A. LEE, M. G. LEE
Int J Automot Technol. 2015;16(1):145-151.
 Automobile Chassis & Vehicle Dynamic
DYNAMIC FAILURE CHARACTERIZATION OF LASER WELDS UNDER COMBINED LOADING CONDITIONS
J. HA, H. HUH
Int J Automot Technol. 2014;15(2):237-252.
 Materials and Recycling, Manufacturing
HIGH-STRAIN-RATE FRACTURE OF ADHESIVELY BONDED COMPOSITE JOINTS IN DCB AND TDCB SPECIMENS
M. S. HAN, J. U. CHO, A. KINLOCH, B. BLACKMAN, F. S. RODRIGUEZ SANCHEZ
Int J Automot Technol. 2012;13(7):1127-1131.
 Automobile Body and Safety
DYNAMIC HARDENING EQUATION OF THE AUTO-BODY STEEL SHEET WITH THE VARIATION OF TEMPERATURE
Hoon Huh, H. J. LEE, J. H. SONG
Int J Automot Technol. 2012;13(1):43-60.
 
HIGH SPEED TENSILE TEST OF STEEL SHEETS FOR THE STRESS-STRAIN CURVE AT THE INTERMEDIATE STRAIN RATE
H. HUH, J. H. LIM, S. H. PARK
Int J Automot Technol. 2009;10(2):195-204.
      
 
NUMERICAL SIMULATION OF CONVEX AND CONCAVE TUBES WITH CONSIDERATION OF STRAIN RATE SENSITIVITY
B.-W. YE, S. OH, Y.-B. CHO, H.-C. SIN
Int J Automot Technol. 2007;8(2):193-201.
      
 
CRASH ANALYSIS OF AUTO-BODY STRUCTURES CONSIDERING THE STRAIN-RATE HARDENING EFFEC
W. J. KANG, H. Huh
Int J Automot Technol. 2000;1(1):35-41.
      
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