1. Hagan, M.,
Rappolt, J., and
Waldrop, J.
, “Formula SAE Hybrid Carbon Fiber Monocoque/Steel Tube Frame Chassis,” Bachelor Thesis, Mechanical Engineering Department, California Polytechnic State University, 2014.
2. Kengkongan, A.,
Rio, A., and
Imaduddin, F.
, “Structural Assessment of an Energy-Efficient Urban Vehicle Chassis Using Finite Element Analysis - A Case Study,” Procedia Structural Integrity 27202069-76, 2020, doi:10.1016/j.prostr.2020.07.010
3. Grediac, M.
, “A Finite Element Study of the Transverse Shear in Honeycomb Cores,” International Journal of Solids and Structure 30, no. 13 (1993): 1777-1788, doi:10.1016/0020-7683(93)90233-W.
4. Schwingshackl, C.W.,
Aglietti, G.S., and
Cunningham, P.R.
, “Determination of Honeycomb Material Properties: Existing Theories and an Alternative Dynamic Approach,” Journal of Aerospace Engineering 19, no. 3 (2006): 177-183, doi:10.1061/(asce)0893-1321(2006)19:3(177).
5. Penado, F.
, “Effective Elastic Properties of Honeycomb Core with Fiber-Reinforced Composite Cells,” Open Journal of Composite Materials 3, no. 4 (2013): 89-96, doi:10.4236/ojcm.2013.34009.