Guangdong SinterZone Tech Co., Ltd. is located in Dongguan City, formerly known as Shenzhen SinterZone Tech Co., Ltd., founded in 2012, is a professional manufacturer focusing on debinding and sintering thermal equipment. Covering an area of 10,000 square meters, with 100+ employees, the introduction of talents in the technical echelon accounts for more than 30%, and has applied for more than 70 patents and more than 10 invention patents.
The company mainly develops, produces and sells a series of powder metallurgy and 3D printing special thermal equipment such as catalytic debinding furnace, vacuum sintering furnace, Brazing Furnace, continuous furnace, etc.
Since its establishment, SinterZone company has won the titles of "National High-tech Enterprise" and "SRDI" Enterprise in Guangdong Province.
At the end of 2024, HP, the world's leading provider of 3D printing technology, officially announced that it has reached a strategic cooperation with SinterZone, SinterZone has officially become a global partner of HP 3D printing.
SinterZone is the inventor of oxalic acid debinding furnace, and in 2013, it was the first company in the world to develop and achieve mass production. The company's products are exported to: Japan, South Korea, Russia, Vietnam, India, Thailand, Singapore, Italy, Spain, Africa and other regions; It is recognized as the best partner and the best furnace supplier in the powder metallurgy industry chain;Vacuum brazing furnaces are core suppliers for NVIDIA's liquid-cooled servers.
SinterZone invented the oxalic acid catalytic debinding furnace in 2013, making it the world's first manufacturer to successfully develop and achieve mass production of oxalic acid debinding furnaces. The oxalic acid debinding experiment has exceeded 100 times and more than 60 patents have been applied for. Since its development, our oxalic acid degreasing furnace has been upgraded to the sixth generation and has more than 200 partners. The latest oxalic acid debinding furnace has a higher debinding efficiency (equivalent to the efficiency of HNO3); More suitable for thicker products (60-80mm thickness); Wider range of material applications (titanium, copper, iron, stainless steel, etc.); Higher safety, cleaner environmental protection, and lower human toxicity to operators.