Area of research
Biomedical Engineering · Computational Mechanics
Research interest
Research interests include Materials science, Mechanics, Piezoelectricity, Volumetric flow rate, Aperture (computer memory), and Voltage.
Genetic and clinical insights into acute kidney injury in maturity‑onset diabetes of the young caused by the <i>ABCC8</i> c.2500C>T mutation: Potential risk factors associated with SGLT2 inhibitors
A high flow-rate single-chamber valveless piezoelectric pump with airfoil baffles
Optimal design of fluidic diode for valveless piezoelectric pump based on entropy production theory
A heat exchanger based on the piezoelectric pump for CPU cooling
Study on the Formation and Separation Process of Droplets in the Medical Piezoelectric Atomization Device Induced by Intra-hole Fluctuation
Effects of Vibration Characteristics on the Atomization Performance in the Medical Piezoelectric Atomization Device Induced by Intra-Hole Fluctuation
Study on the Influencing Factors of the Atomization Rate in a Piezoceramic Vibrating Mesh Atomizer
Optical-resolution photoacoustic microscopy for monitoring vascular normalization during anti-angiogenic therapy
A Novel PZT Pump with Built-in Compliant Structures
Design and Experimental Verification of a PZT Pump with Streamlined Flow Tubes
The Effect of Vibration Characteristics on the Atomization Rate in a Micro-Tapered Aperture Atomizer
Experimental Verification of the Pumping Effect Caused by the Micro-Tapered Hole in a Piezoelectric Atomizer
Advances in Valveless Piezoelectric Pump with Cone-shaped Tubes
3D FEM analyses on flow field characteristics of the valveless piezoelectric pump
Theoretical calculations and experimental verification for the pumping effect caused by the dynamic micro-tapered angle