JH pitches ultrasonic homogenizers for battery and energy material processing
Hangzhou Precision Machinery Co., Ltd. is promoting ultrasonic liquid processing as a way to improve battery, solar and fuel cell manufacturing. The company says its systems can reduce agglomeration, lower viscosity and speed recovery in battery recycling across 10 applications.
Why it matters: - Battery makers, solar manufacturers and fuel cell producers all need tighter control over particle dispersion, viscosity and coating quality. - JH is positioning ultrasonic homogenizers as a single processing tool for multiple steps in the new energy supply chain. - The company says the technology can improve electrochemical consistency, coating uniformity and metal recovery.
What happened: - Hangzhou Precision Machinery Co., Ltd. (JH) outlined 10 applications for ultrasonic liquid processing in new energy materials and lithium battery manufacturing. - The company tied the technology to cathode and anode slurry preparation, CNT and graphene dispersion, separator coatings, solid-state electrolytes, photovoltaic pastes, fuel cell inks and battery recycling. - JH directed readers to its official portal for technical specifications, flow-cell engineering drawings, pilot test reports and customized quotations: More information.
The details: - For lithium-ion electrodes, JH says ultrasonic homogenizers de-agglomerate LFP, NCM, graphite and silicon-carbon materials while preserving crystal morphology. - The company says the process can reduce slurry viscosity by 20% to 40% and support solid loading up to 70% or higher. - JH says inline flow-cell systems unbundle CNTs without breaking their carbon backbone and can shear graphite into few-layer graphene dispersions. - For battery separator coatings, the company says the systems disperse alumina and boehmite into low-viscosity slurries for 5 to 9 micron base films. - JH says the same approach helps dissolve and disperse PVDF, CMC and other binders in NMP and aqueous solvents. - For solid-state batteries, the company says sealed circulation reactors can homogenize sulfide, garnet-type oxide and polymer electrolyte precursors in an inert environment. - JH says its systems also process silver and aluminum metallization pastes for solar cell screen printing. - The company says its fuel cell systems disperse Pt/C catalyst inks without catalyst detachment. - For battery recycling, JH says ultrasonic processing accelerates leaching of lithium, nickel, cobalt and manganese from spent black mass and can cut leaching time by up to 50%. - JH says its lineup includes 500W benchtop sonicators, 5L to 20L pilot systems and 3.0kW inline industrial circulation skids. - The company says its equipment handles viscosities up to 6,000 cP, pressures up to 0.6 MPa and continuous temperature control below 100°C. - JH says it has 15 years of ultrasonic homogenizer engineering experience and cites certified medical-grade titanium metallurgy and CE compliance standards. - The company lists social media channels on Facebook and YouTube, along with a contact phone number: +8613600541971.
Between the lines: - JH is not just selling lab equipment. The company is pitching an end-to-end manufacturing platform for battery, solar and recycling workflows. - The emphasis on inline operation, high viscosity handling and continuous temperature control suggests JH is targeting production-scale customers, not just R&D labs. - Claims about higher solid loading, lower viscosity and faster leaching are performance claims from the company and would need independent validation for buyers.
What's next: - JH says manufacturers can request engineering consultations and customized skid quotations through its company portal. - The company appears to be aiming at battery gigafactories and other high-throughput energy material facilities that need scalable dispersion equipment. - Further adoption will likely depend on pilot results, throughput performance and process economics in real manufacturing lines.
The bottom line: - JH is betting that ultrasonic homogenization can become a core processing step across the new energy manufacturing chain, from electrode slurries to battery recycling.
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.
Sign up for:
Energy Press Releases
The daily local news briefing you can trust. Every day. Subscribe now.
Check Your Email!
We sent a one-time activation link to: .
Confirm it's you by clicking the email link.
If the email is not in your inbox, check spam or try again.
Welcome back!
is already signed up. Check your inbox for updates.