JH touts ultrasonic systems for graphene, CNT and nanoceramic production

an hour ago
By AI, Created 04:59 UTC, Sep 04, 2026, AGP -

Hangzhou Precision Machinery Co., Ltd. says its industrial ultrasonic dispersion systems are built to help manufacturers scale graphene, carbon nanotube and nanoceramic production without the damage linked to conventional mechanical mixing. The company highlights modular flow cells, frequency tracking and cooling features aimed at continuous, high-volume processing.

Why it matters: - Graphene, carbon nanotubes and nanoceramics are hard to scale because they clump together and can be damaged by mechanical mixing. - JH is pitching ultrasonic dispersion as a way to separate those materials while preserving structure, which matters for conductive plastics, adhesives, battery materials, electronics and aerospace uses. - The company is also targeting manufacturers that need continuous, multi-ton output rather than lab-scale batches.

What happened: - Hangzhou Precision Machinery Co., Ltd. outlined its industrial ultrasonic dispersion systems for graphene, CNT and nanoceramic production. - The company said the systems use 20kHz acoustic cavitation, pressurized flow cells and modular circulation skids. - JH said the equipment is designed for large-scale commercial production and repeatable acoustic energy transfer.

The details: - JH said conventional high-shear mixers and bead mills can fracture graphene sheets, shorten nanotubes and introduce metallic wear debris. - The company said its ultrasonic approach uses cavitation micro-jets to de-agglomerate nanomaterials without destructive mechanical contact. - JH said its flow-cell reactors operate under hydraulic backpressure up to 0.6 MPa. - The company said benchtop inline flow-cell systems are available for lab R&D and pilot validation. - JH said 2.0kW, 3.0kW and 5.0kW processors can be configured into modular production skids. - The company said series configurations give fluid sequential cavitation exposure, while parallel manifold setups let manufacturers expand throughput. - JH said the systems handle slurry viscosity swings from 3,000 to 6,000 cP by using digital frequency-tracking generators that auto-tune around 20kHz in real time. - The company said amplitude can be adjusted from 30% to 100%. - JH said double-jacketed cooling chambers help keep slurry temperatures below 100°C during continuous operation. - The company said industrial horns are made from medical-grade titanium alloy and are designed to resist cavitation pitting and corrosion. - JH said the systems support tri-clamp fittings and are compatible with Clean-in-Place and Sterilize-in-Place workflows. - The company said standard equipment comes with a 2-year warranty, 2-week dispatch availability and lifetime technical support. - JH said it has 15 years of acoustic engineering experience and CE certification. - The company directed readers to the official company portal for specifications, CAD drawings, pilot testing reports and quotations.

Between the lines: - The release positions ultrasonic processing as a scale-up tool, not just a lab technique. - JH is trying to differentiate on process control features, including resonance tracking and thermal management, which are critical when slurry behavior changes during exfoliation and de-bundling. - The pitch also frames the equipment as a contamination-reduction alternative to bead milling and other mechanical systems.

What's next: - JH said manufacturers can contact the technical sales team for acoustic power density matching, inline manifold design, fluid viscosity handling and plant integration support. - The company is also offering custom skid quotations for manufacturing plants that need higher-volume dispersion lines.

The bottom line: - JH is selling ultrasonic dispersion as a turnkey path to cleaner, more scalable production of advanced nanomaterials.

Disclaimer: This article was produced by AGP Wire with the assistance of artificial intelligence based on original source content and has been refined to improve clarity, structure, and readability. This content is provided on an “as is” basis. While care has been taken in its preparation, it may contain inaccuracies or omissions, and readers should consult the original source and independently verify key information where appropriate. This content is for informational purposes only and does not constitute legal, financial, investment, or other professional advice.

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