- Research Article
1
- 10.1016/j.afres.2025.101576
Varietal differences in flavor, stability, and functional components analysis of fried red and green Huajiao oils
- Jun 01, 2026
- Applied Food Research
- Fei Hu + 5 more +5
Publications from 2021 to 2026
Showing 10 of 771 papers
Varietal differences in flavor, stability, and functional components analysis of fried red and green Huajiao oils
Carbon coating-induced electron-thermal synergistic modulation for enhanced photocatalytic hydrogen evolution over CdS/CuMoO4 heterojunctions
Self-assembled 8-shogaol/curcumin nanoparticles via hydrogen bonding: enhanced stability and sustained release in vitro.
Critical ventilation thresholds for hydrogen leakage of fuel cell vehicles in tunnels based on scaled experiment
A robust strategy for enhanced UV stability and flame retardancy of LDPE via synergistic polysiloxane encapsulation and amine grafting
Efficiency improvements in AlGaN-based deep-ultraviolet light-emitting diodes with p-doped graded AlInGaN last quantum barrier
Diffusion-based contrastive learning for multimodal recommendation
In situ shear behavior of Co-extruded 3D-Printed carbon fiber reinforced thermoplastic composites with polyamide matrix
3D printing of continuous carbon fiber reinforced thermoplastic composites has gained significant attention for its flexibility in fiber path design and mold-free manufacturing. However, weak interfacial bonding remains a key constraint on mechanical performance. This research examines the in-situ shear behavior of co-extruded carbon fiber/polyamide (PA) composites using three binder materials: PA6/PA66 blend, short carbon fiber-reinforced PA6, and short glass fiber-reinforced PA6, which were co-extruded with continuous carbon fiber/PA6 prepreg to produce single-bead specimens. The study analyzes the effects of printing temperature, speed, layer thickness, and prepreg volume fraction on interfacial failure mode and shear strength. Results demonstrate ductile failure with plastic deformation. Short fibers enhanced interfacial properties by inhibiting crack propagation. Increasing printing temperature, reducing speed, and raising prepreg content from 7% to 16% all improved shear strength, peaking at 35.13 ± 1.36 MPa with 0.6 mm layer thickness. These findings provide valuable insights for optimizing material selection and process parameters in 3D printed composites.
Read moreA multi-class imbalanced data stream classification algorithm based on sample weighting and adaptive oversampling
UVConv: A UV grid-based convolutional neural network for classification and segmentation of 3D CAD models