With more than 10 years of experience in industrial kiln equipment and thermal processing technology, HONGHAI has developed capabilities covering R&D, process engineering, equipment design, manufacturing, automation, installation, commissioning, and after-sales service.
The company has established an independent provincial-level R&D center and its own industrial manufacturing facilities. HONGHAI has also been recognized as a provincial-level specialized, refined, distinctive and innovative enterprise and a technology-oriented enterprise.
With a professional team that includes engineers and technical specialists with approximately 20 years of research institute experience, HONGHAI continues to develop high-temperature thermal processing technologies for new energy, semiconductor, electronic materials, advanced ceramics, and other advanced material industries.
HONGHAI provides a broad range of industrial heat treatment equipment for continuous, batch, laboratory, pilot-scale, and customized production processes.
Our main equipment includes:
Different furnace technologies can be selected according to the material characteristics, production capacity, target temperature, atmosphere, heating profile, residence time, cooling requirements, and production method.
HONGHAI develops high-temperature thermal processing equipment for a wide range of lithium-ion battery cathode and anode materials.
Lithium-Ion Battery Cathode Materials
These materials may require controlled thermal processes such as calcination, sintering, atmosphere-controlled heat treatment, and other high-temperature processing steps, depending on the material formulation and production process.
Lithium-Ion Battery Anode Materials
Thermal processing may include graphitization, carbonization, heat treatment, coating, sintering, and other controlled thermal processes, depending on the material and production requirements.
The roller hearth kiln is one of HONGHAI's key continuous thermal processing technologies.
Roller hearth kilns can be engineered for high-throughput production processes requiring controlled temperature profiles, atmosphere, heating and cooling rates, residence time, material conveying, and production capacity.
Depending on the specific process, roller hearth kiln systems can be used for the thermal processing of selected lithium-ion battery materials, including LFP, NCM/NMC, LMFP, high-nickel cathode materials, graphite, hard carbon, and other advanced electrode materials.
The final furnace configuration is determined by the material characteristics and process requirements rather than applying the same furnace design to every battery material.
HONGHAI also develops thermal processing solutions for sodium-ion battery materials.
Potential applications include:
Hard carbon is one of the main anode materials used in sodium-ion battery development and production.
HONGHAI provides thermal processing solutions for hard carbon and other emerging sodium-ion battery anode materials, with furnace configurations selected according to carbonization temperature, atmosphere, heating profile, residence time, and production capacity.
Beyond battery materials, HONGHAI provides thermal processing equipment for semiconductor materials, electronic materials, advanced ceramics, and other high-temperature materials.
Applications include:
For semiconductor and advanced ceramic applications, furnace systems can be designed with precise control of temperature uniformity, atmosphere, gas flow, heating and cooling rates, vacuum conditions, pressure, and process time according to the material and manufacturing process.
HONGHAI's equipment can be configured for different thermal processing applications, including:
The specific process and equipment configuration are developed according to the customer's material characteristics and production requirements.
HONGHAI focuses on the matching of furnace equipment, material characteristics, and production processes.
Important design factors include:
This process-oriented approach helps improve production stability, thermal uniformity, equipment reliability, and overall process control.
HONGHAI continuously develops thermal structures, refractory systems, atmosphere-control technologies, and equipment designs for demanding high-temperature applications.
The company's furnace structures can incorporate high-temperature-resistant and oxidation-resistant materials, as well as corrosion-resistant refractory masonry technologies designed for demanding operating environments.
HONGHAI also develops optimized thermal structures and atmosphere management systems to improve heat utilization and energy efficiency.
Where verified by specific project testing and operating conditions, optimized equipment designs can achieve energy savings of up to 20–25% compared with conventional furnace systems.
Actual energy consumption and savings depend on the material, process temperature, production capacity, atmosphere, furnace configuration, and operating conditions.
HONGHAI integrates thermal engineering, mechanical engineering, automation, electrical control, atmosphere control, and production-line engineering into its equipment solutions.
Depending on project requirements, systems can incorporate:
These technologies support the development of more automated, digitalized, and efficient thermal processing production lines.
HONGHAI combines industrial furnace engineering experience with ongoing research and development.
The company has established a provincial-level R&D center and works with technical expertise developed through long-term research and engineering experience.
HONGHAI also draws on advanced technical experience from Germany, Japan, and other countries, benchmarking its equipment development against international industrial furnace technologies.
The company continues to invest in new technologies for high-efficiency heating, intelligent control, atmosphere management, thermal structure optimization, and automated production.
HONGHAI has obtained multiple high-standard certifications and national patent certificates related to its technologies and equipment.
These certifications and intellectual property achievements support the company's ongoing development of industrial heat treatment, kiln, automation, and thermal processing technologies.
Industrial materials have different thermal characteristics and production requirements. A furnace designed for one material may not be suitable for another material or process.
HONGHAI therefore provides customized solutions based on:
Material Analysis → Process Requirements → Furnace Selection → Thermal Design → Equipment Engineering → Manufacturing → Automation → Installation → Commissioning → Process Optimization → After-Sales Service
This approach enables HONGHAI to provide both individual furnace equipment and complete thermal processing production lines.
HONGHAI equipment is used across a wide range of industrial sectors, including:
Based in Xuancheng, Anhui Province, China, HONGHAI serves customers in China and international markets.
The company is committed to expanding its global presence by providing industrial kiln equipment, heat treatment systems, automation solutions, and technical services for customers in the new energy, semiconductor, advanced materials, electronic materials, and advanced ceramic industries.
From intelligent equipment design to installation, commissioning, process optimization, maintenance, and technical support, HONGHAI provides one-stop lifecycle service for its equipment.
HONGHAI is committed to becoming a world-class supplier and service provider of industrial heat treatment and automation equipment systems.
By combining advanced thermal processing technology, intelligent manufacturing, process engineering, and lifecycle technical support, HONGHAI aims to help customers achieve more efficient, stable, automated, and sustainable production in the fields of new energy, semiconductor materials, advanced ceramics, electronic materials, and other advanced materials.
The founder and technical and service team of the company have over 20 years of experience in professional technical research and design in research institutes and foreign-funded enterprise groups. They have rich experience in equipment production, maintenance, and customer frontline use, as well as the ability to solve problems.
The company has established close cooperative relationships with professional technical experts from countries such as the United States, Germany, Japan, and Canada, providing us with cutting-edge technology research and technical support.
Focus on device applicability and maintainability;
Pay attention to high-precision fitting of equipment and product processes;
Realize stable temperature and atmosphere fields;
Realize high-precision process control.
Independent development and modular design;
Refractory materials inside the mold forming furnace;
Ancient mortise and tenon structure masonry;
Strong durability and easy maintenance;
High temperature resistance, oxidation resistance, acid and alkali resistance.
Unique thermal structure and atmosphere design;
Excellent material selection and matching;
Efficient and energy-saving, Energy savings of 20-25% year-on-year.
Unique code certificate, database management;
Artificial intelligence and remote assisted regulation,
Significantly improve stability and reliability;
Realize intelligent operation and remote maintenance.