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Planetary Gear Set For Robotics Reducer

The planetary gear set is specifically for high-performance robotics reducers, it delivers exceptional precision, durability, and operational smoothness under demanding cyclic loads. Material 8620H with carbuziring heat treatment to achieve hardness of 58–62 HRC. This metallurgical strategy significantly extends service life by minimizing pitting, scuffing, and tooth breakage, even in continuous start-stop or reverse-motion applications.

Every gear is precision-ground to meet DIN 6 accuracy standard after the heat treatment, guaranteeing minimized transmission error, low backlash, and superior meshing consistency, all essential for repeatable positioning and smooth velocity control in collaborative and industrial robots.

The gears are compact yet robust with module 1.0, ideal for space-constrained reducer designs without compromising torque density. Supplied with stringent dimensional and metallurgical inspection reports, they are fully compatible with harmonic-drive and cycloidal-style reducers. Whether deployed in articulated arms, AGV drivetrains, or surgical robotic systems, these planetary gears provide the reliability and precision that next-generation automation demands. Customizable finishing options and anti-corrosion coatings are also available upon request.

Specification
Module
1
Application
Robotics
Material
8620H
Heat Treatment
Carburizing 58-62HRC
Accuracy
DIN 6
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Manufacturing Process of Precision Planetary Gears for Robotics Reducers

 

To meet the rigorous requirements for robotic gear reducers, specifically minimal backlash, high torsional rigidity, and reliable operation over millions of cycles, we employ distinct optimized machining strategies for the ring gear, sun gear, and planet gears. Each selected based on the balance bwtween material, accuracy, cost, functional demands.

Ring Gear (Helical Internal Gear) – Power Skiving

The ring gear features an internal helical tooth profile with a module of 1.0. Machining such a geometry is challenging due to limited tool access and the need for precise helix angle control. We adopt power skiving, a continuous, high-productivity cutting process that combines rotational synchronization between the skiving cutter and the workpiece, with an axial feed that generates the helical tooth flanks.

Why power skiving?

Unlike traditional shaping or broaching, skiving completes roughing and finishing in a single clamping, drastically reducing cycle time.  The kinematic synchronisation allows precise helix generation without tool interference, even for small-diameter ring gears, to reach the superior accuracy for internal helicals. And the skived flanks require minimal subsequent honing, reducing overall lead time.  One skiving cutter can accommodate a range of tooth counts with the same module, offering production agility.

Power skiving demands a upfront investment in custom designed skiving cutters. Tool wear management and regrinding schedules are critical to maintain consistent quality. However, for medium-to-large batch production of robotics ring gears, the productivity gain and repeatable accuracy far outweigh the tooling cost, delivering a lower cost-per-piece over the product lifecycle.

Sun and Planet Gears – Grinding

Unlike the internal ring gear, the sun and planet gears are external helical gears. After carburizing and hardening, these components may experience distortion. To reach the required DIN 6 tolerance, we apply profile and lead grinding using CNC grinding machines.

Why grinding?

Grinding corrects heat-treatment distortions to achieve tooth-to-tooth spacing error < 3 µm and total cumulative pitch error within DIN 6 limits.  The ground brings a mirror-like finish Ra, reducing friction and noise. We can apply tip relief and root crowning to optimize load distribution under elastic deflection, a feature impossible with skiving alone.

Why these choices matter for robotics?

Robotic gear reducers operate under extreme conditions involving frequent reversals, shock loads, and high-speed intermittent motion. As the largest and most constrained component, the internal ring gear benefits from the power skiving process; this technique produces precise internal helical gear profiles with minimal runout, ensuring uniform load distribution across all planetary gear meshing points. Meanwhile, the sun and planetary gears—which endure the highest contact stresses—undergo grinding to minimize wear and ensure long-term stability. The combination of these processes ensures that every gear set meets DIN Class 6 precision standards, a hallmark of high-end robotics gearing.

Although power skiving requires an investment in specialized tooling, the high productivity and precision it delivers for internal helical gears fully justify the cost. While the grinding process is slower, it guarantees the superior quality required for external gears. Together, these complementary methods form a manufacturing strategy that balances performance with cost-effectiveness, perfectly meeting the rigorous demands of the collaborative and industrial robotics sectors.

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Production process

6-Step Production Process

Forging
Turning
Gear Cutting
Heat Treatment
ID & OD & Surface Grinding
Tooth Grinding
1
2
3
4
5
6
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Forging

When gears need high performance that needs to withstand high loads, high stress, impact loads or fatigue loads, forgings are suggested to use. Forging allows metal fibers to be continuously distributed along the gear profile, significantly improving root strength and fatigue life.
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Turning

This is the process of cutting and shaping solid materials into precise parts. It uses tools like lathes, mills, and drills to remove excess material. Machining transforms a simple block of metal into a finished, functional component.
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Gear Cutting

Gear Cutting includes all processes to create gear teeth after rough or fine machining. It shapes teeth to ensure smooth and efficient power transfer for performance, strength and cost efficiency.
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Heat Treatment

Gears need to be running with two gears or above two gears, that makes them easy to be worn-out. That’s why most types of gears need to be harden through heat treatment.
ID-Grinding-Gear-Manufacturing-Process-Gear-Supplier-Belon

ID & OD & Surface Grinding

ID grinding, OD grinding, Surface grinding are all belonging to CNC grinding which are the foundational precision abrasive machining processes used to achieve exceptional dimensional accuracy and surface finishes, especially on hardened materials.
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Tooth Grinding

Tooth Grinding are the final processes are applied after heat treatment to correct distortion, improve geometry, and achieve the final surface finish necessary for quiet, efficient power transmission.
Inspection

Strict Quality Inspection

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Dimension Inspection

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Material Inspection

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Heat Treatment Testing

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UT & MT Testing

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Meshing Testing

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Accuracy Testing

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Dimension Inspection

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Material Inspection

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Heat Treatment Testing

UTMT-testing-Gear-Quality-Test-Gear-Manufacturing-Company-Belon

UT & MT Testing

Meshing-testing-Gear-Quality-Test-Gear-Manufacturing-Process-Belon

Meshing Testing

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Accuracy Testing

Packages

Professional Packaging Safe Arrival

Customized cost-effective packages for products protection. We select multi-model solutions, combining air, sea, or land freight for the optimal balance of cost, speed, and reliability.
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Inner Package

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Out Package

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Carton

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Wooden Package

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Transmission Partner

Do you have drawings to be implemented, or problems to be solved? Please feel free to contact us. From initial inquiry and technical specification confirmation to production and delivery, our dedicated team will provide you with one-on-one service, ensuring that every step meets your stringent requirements for precision.
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