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ULTRASONIC ADVANCED

MANUFACTURING LABORATORY

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ULTRASONIC ADVANCED
MANUFACTURING LABORATORY

Think differently to make a difference!

Welcome to the Ultrasonic Advanced Manufacturing Laboratory at Tsinghua University, where we pioneer innovations in cutting-edge ultrasonic manufacturing technologies. Our research integrates advanced materials processing with intelligent manufacturing systems to address complex engineering challenges. We invite prospective scholars and industry partners to join us in shaping the future of industrial technology.

Jianjian Wang

Associate Professor at Tsinghua University

Humboldt Research Fellow

“There's Plenty of Room at the Bottom"

—Richard  Feynman

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July 10, 2026

Nano Energy: Elliptical vibration shovel construction of three-level micro-nano-structured metallic glass electrode, achieving ultra-low platinum acidic hydrogen evolution

The research team has provided a scalable material manufacturing approach for low precious metal acidic hydrogen evolution cathodes for PEM water electrolysis.

June 18, 2026

Friction: Construction of superhydrophobic micro nano composite structure on titanium alloy surface and study on its underwater drag reduction performance

The research team has provided a new technological approach for the interface functionalization of advanced underwater engineering materials.

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August 15, 2026

MSSP: Pixel-level adaptive vibration processing for nonplanar metal surface structural color manufacturing

The research team has proposed a new integrated adaptive manufacturing method that enables the machining system to perceive its own machining status and adjust the tool position in real-time based on actual surface changes.

NEWS HIGHLIGHTS

Ultrasonic Forming Fabrication

We explore ultrasonic-assisted compaction of copper–diamond powders and ultrasonic 3D printing of organic materials, including PDMS and resins, to control material consolidation, shape formation, and functional performance.

Research Overview

Ultrasonic Micro/Nano Fabrication

We develop intelligent devices, including self-sensing force and trajectory, and processes, including chiseling, scribing, indenting, etc., to create micro- and nanoscale structures for structural color, heat dissipation, catalysis,  sensing, etc.

Ultrasonic Precision Machining

We investigate ultrasonic-assisted machining to improve the machinability of difficult-to-cut materials, including NiSi alloys, silicon carbide–reinforced aluminum composites, and titanium alloys, with a focus on precision and surface quality.

Intelligent Ultrasonic Machining Equipment

We develop intelligent robotic systems and self-sensing vibration devices for micro- and nanofabrication, investigating how manufacturing system dynamics evolve and how adaptive control can improve machining accuracy, stability, and consistency.

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