Area of research
Polymers and Plastics · Biomedical Engineering
Research interest
Research interests include Polymer Nanocomposites and Properties, Innovative Microfluidic and Catalytic Techniques Innovation, Polymer crystallization and properties, and Microfluidic and Capillary Electrophoresis Applications.
Superhydrophobic microfluidic engineered droplet triboelectric nanogenerator for optimizing multichannel energy conversion
Microfluidic bubble-templating 3D printing of ordered macroporous hydrogels
Measurement techniques in injection molding: A comprehensive review of machine status detection, molten resin flow state characterization, and component quality adjustment
In-situ melt flowability detection and product quality evaluation in injection molding: A simplified approach
Preparation of lignin-based epoxy resins with tunable properties through constructing a partially ordered crosslinking network
Enhanced scale-up performance on residence time distribution by integrated microcapillaries with high size uniformity
Molten resin flowing state identification, inner-mold thermal analysis, and final product quality determination in a complex thermal-regulated mold: Full-scale prototype establishment and validation
Recent progress in minimizing the warpage and shrinkage deformations by the optimization of process parameters in plastic injection molding: a review
Multivariate time-series classification with hierarchical variational graph pooling
Similarity-based prediction method for machinery remaining useful life: A review
Improved similarity based prognostics method for turbine engine degradation with degradation consistency test
Artificial intelligence-powered microfluidics for nanomedicine and materials synthesis