Results 231 to 240 of about 79,064 (331)
Circular recycling of PETG using 3D printing leads to the development of crystalline inclusions of oligomers generated from thermomechanical degradation during recycling. However, the concentration of crystals generated depends on the PETG sourcing that is associated with its molar mass and copolymer composition.
Sierra F. Yost +2 more
wiley +1 more source
Distribution of relaxation times as a tool to monitor tissue electroporation. [PDF]
Le Berre T +4 more
europepmc +1 more source
This study uses four 3D‐printed polylactic acid composites filled with copper or bronze. Tests evaluate the material's thermal and mechanical properties and its toxicity. The results show the material becoming more brittle with increased metal percentage.
Kinga Kardos +8 more
wiley +1 more source
The device architecture consists of layers: ITO (transparent electrode), PEDOT:PSS (hole transport layer), P3HT:PCBM@Cu:Zn (active layer with Cu:Zn doping), LiF, and Al (cathode). The current density–voltage (J–V) curves compare the pristine device (black) with the Cu:Zn‐doped device (red). The doped device exhibits significantly higher current density,
Mohammed S. G. Hamed +2 more
wiley +1 more source
A nondestructive method enables quantification of local coercivity variations in permanent magnets. By combining magnetic field mapping with closed‐circuit hysteresisgraph measurements, spatial coercivity distributions Hcj(y) are reconstructed. Validation by destructive analysis confirms accuracy, enabling reliable quality assessment and supporting ...
Maximilian Lanz +4 more
wiley +1 more source
Serial parametric response mapping (PRM)‐computed tomography revealed dynamic changes in PRM‐functional small airway disease with occupational exposure, highlighting PRM's utility for detecting and monitoring small airway disease. ABSTRACT We report a case illustrating the role of parametric response mapping (PRM) in detecting and monitoring small ...
Yeun Ho Lee +4 more
wiley +1 more source
Novel Debris Material Identification Method Based on Impedance Microsensor. [PDF]
Shi H, Xie Y, Zhang H.
europepmc +1 more source

