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Selective Localization of Nanofillers: Effect on Morphology and Crystallization of PLA/PCL Blends
Selective localization of multiwalled carbon nanotubes in poly(epsilon-caprolactone)/polylactide blend.
Owing to that unique selective interface-localization and improved phase morphology, the ternary composites present far lower rheological and conductive percolation thresholds than those of the binary composites, and also present extraordinary mechanical properties even at very low loading levels of the MWCNTs.
Nonisothermal cold crystallization behavior and kinetics of polylactide/clay nanocomposites
The nonisothermal cold crystallization behavior of intercalated polylactide (PLA)/clay nanocomposites (PLACNs) was studied using differential scanning calorimetry, polarized optical microscope, X-ray…
Cracking and interfacial debonding of the Al–Si coating in hot stamping of pre-coated boron steel
Investigation on Tribological Behavior of Advanced High Strength Steels: Influence of Hot Stamping Process Parameters
In order to investigate the friction and wear behavior of high strength steel in hot stamping process, a hot strip drawing tribo-simulator is developed and the friction coefficient, which is an…
The dissolution and passivation mechanism of chalcopyrite in bioleaching: An overview
Phase behavior and its viscoelastic response of polylactide/poly(ε-caprolactone) blend
Phase transformation mechanisms and piezoelectric properties of poly(vinylidene fluoride)/montmorillonite composite
Microstructure evolution and enhanced performance of a novel Nb-Mo microalloyed medium Mn alloy fabricated by low-temperature rolling and warm stamping
Flow and friction behaviors of 6061 aluminum alloy at elevated temperatures and hot stamping of a B-pillar
- Yong Liu, Zhoujie Zhu, Zi-jian Wang, B. Zhu, Yilin Wang, Yisheng Zhang
- Materials Science
- 17 March 2018
The flow and friction behaviors of 6061 aluminum alloy (Al6061) at elevated temperatures were investigated to form a B-pillar by hot stamping with Al6061 sheets. The modified Arrhenius and…