Wei Min Huang
- A phenomenological formulation for the shape/temperature memory effect in amorphous polymers with multi-stress components. In: Smart Materials and Structures, v. 26, n. 9 (September 2017). (2017):
- On the Takayanagi principle for the shape memory effect and thermomechanical behaviors in polymers with multi-phases. In: Smart Materials and Structures, v. 25, n. 12 (Dezember 2016). (2016):
- Quantitative separation of the influence of hydrogen bonding of ethanol/water mixture on the shape recovery behavior of polyurethane shape memory polymer. In: Smart Materials and Structures, v. 23, n. 12 (Dezember 2014). (2014):
- Quantitative separation of the influence of copper (II) chloride mass migration on the chemo-responsive shape memory effect in polyurethane shape memory polymer. In: Smart Materials and Structures, v. 25, n. 10 (Oktober 2016). (2016):
- On the origin of Gaussian network theory in the thermo/chemo-responsive shape memory effect of amorphous polymers undergoing photo-elastic transition. In: Smart Materials and Structures, v. 25, n. 6 (Juni 2016). (2016):
- A phenomenological model for simulating the chemo-responsive shape memory effect in polymers undergoing a permeation transition. In: Smart Materials and Structures, v. 23, n. 4 (April 2014). (2014):
- On the origin of the Vogel–Fulcher–Tammann law in the thermo-responsive shape memory effect of amorphous polymers. In: Smart Materials and Structures, v. 22, n. 10 (Oktober 2013). (2013):
- Chemo-responsive shape memory effect in shape memory polyurethane triggered by inductive release of mechanical energy storage undergoing copper (II) chloride migration. In: Smart Materials and Structures, v. 24, n. 3 (März 2015). (2015):
- Heating/ethanol-response of poly methyl methacrylate (PMMA) with gradient pre-deformation and potential temperature sensor and anti-counterfeit applications. In: Smart Materials and Structures, v. 23, n. 6 (Juni 2014). (2014):
- A phenomenological model for the chemo-responsive shape memory effect in amorphous polymers undergoing viscoelastic transition. In: Smart Materials and Structures, v. 22, n. 11 (November 2013). (2013):