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Planetary Gear Carrier


The planet carrier (also known as the planetary wheel carrier or planetary wheel bracket) is the core load-bearing and moving component in a planetary gear transmission mechanism. It is not a simple bracket but a precise dynamic structural part that withstands complex loads.

Planetary gear carrier assembly


The planet carrier (also known as the planetary wheel carrier or planetary wheel bracket) is the core load-bearing and moving component in a planetary gear transmission mechanism. It is not a simple bracket but a precise dynamic structural part that withstands complex loads.

Planetary gear carrier for precision drive


The planet carrier (also known as the planetary wheel carrier or planetary wheel bracket) is the core load-bearing and moving component in a planetary gear transmission mechanism. It is not a simple bracket but a precise dynamic structural part that withstands complex loads.

Precision planetary carrier


The planet carrier (also known as the planetary wheel carrier or planetary wheel bracket) is the core load-bearing and moving component in a planetary gear transmission mechanism. It is not a simple bracket but a precise dynamic structural part that withstands complex loads.

There are new advances in small module gear lubrication technology


When the tooth surface roughness Ra=0.2μm, the lubrication film needs to be >1.2μm. New lubrication technologies are continuously emerging, providing reliable support to ensure the efficient and stable operation of small module gears.

Laser quenching technology extends gear lifespan


Laser quenching technology increases the surface hardness of small module gears by 30%, doubling the service life compared to traditional processes, greatly enhancing the durability of the gears.

Ultrasound-Assisted Electrolytic Plasma Polishing Technology


To address the shortcomings of traditional polishing techniques, ultrasonic-assisted electrolytic plasma polishing technology uses high-speed photography to capture the dynamic changes of the gas layer in real time during the polishing process, effectively improving the surface roughness and tooth surface hardness of small module gears.

Digital and intelligent production enhances the manufacturing level of small module gears


Industry leaders have introduced digital twin systems to digitally simulate the entire gear processing workflow (design - processing - inspection), resulting in a 30% increase in production efficiency and a defect rate reduced to below 0.5%.

Precision forging technology optimizes gear production


Precision forging technology increases gear material utilization from 60% to 90%, effectively reducing production costs and enhancing the company's economic benefits.

Material innovation drives the development of small module gears


The application proportion of carbon fiber composite gears in the fields of drones and robotics has increased from 5% to 15%. Their specific strength is three times that of steel gears. The use of new materials provides strong support for the lightweight and high-performance development of small module gears.