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Worm Gear For Ball Screw Jacks

In heavy-duty linear drives, reliability and performance are paramount, and our worm gear drive is the ideal choice for ball screw jacks. This component is meticulously designed to ensure smooth torque delivery, high positioning accuracy, and long service life even under harsh conditions.

The worm gear, made of CuSn12Ni2 (bronze alloy), offers excellent wear resistance, a low coefficient of friction, and superior anti-galling properties. The worm shaft, made of 42CrMo (chromium-molybdenum steel), boasts high tensile strength, high toughness, and excellent fatigue resistance. The CuSn12Ni2 bronze worm gear perfectly matches the hardened 42CrMo steel worm, minimizing friction and heat generation. The worm shaft (240–280 HB) is QT-treated to effectively resist surface pitting and wear, while the inherent lubricity of the bronze alloy extends maintenance intervals.

Precision grades: worm gear is DIN 8, worm is DIN 6. This precise matching ensures smooth meshing, minimal backlash, and stable positioning accuracy in the ball screw jack system. This is crucial for synchronous multi-lift systems where multiple lifts must move in perfect synchronization. Backlash is kept to a minimum, thus improving repeatability in positioning applications such as assembly lines, lifting platforms, or industrial presses.

Each gear set is manufactured under stringent quality control to ensure compliance with European standards. Robust and durable materials, precise heat treatment processes, and proven precision levels make this worm gear a reliable component for ball screw jacks in automation, material handling, and heavy machinery applications.

Please contact us today to discuss your specific needs or request a sample.

Specification
Module
2
Application
Ball Screw Jacks
Material
CuSn12Ni2+42CrMo
Heat Treatment
NA+QT: 240-280HB
Accuracy
DIN 8 + DIN 6
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Worm Gear Used In Ball Screw Jacks

 

If you need to convert the rotary motion of an electric motor into linear lifting or pushing motion, you’ll typically use a screw jack. There are two common types of screw jacks: standard screw jacks and ball screw jacks. Both can lift heavy objects, but their working principles differ slightly.

Standard screw jacks use a simple threaded screw and nut. The metal parts slide against each other, generating significant friction. This friction consumes energy, so these jacks are only about 25% to 35% efficient. They are slower, but can hold the load in position without additional brakes.

Ball screw jacks are much more efficient, reaching up to 90%. Instead of sliding, tiny ball bearings roll between the screw and nut. This reduces friction, so the jack runs faster, has a longer lifespan, and can position the load more precisely. The disadvantage is that ball screw jacks sometimes cannot hold the load in position independently; they may require brakes. Due to their high efficiency and precision, ball screw jacks are widely used in various fields: CNC machine tools, aircraft assembly lines, automobile factories, solar tracking systems, and heavy-duty lifting platforms.

So how do worm gear jacks work? Worm gear jacks have a simple structure, consisting of two parts: a threaded rod (worm) and a gear (worm wheel). A motor drives the worm to rotate, which in turn drives the worm wheel. The worm wheel is connected to the ball screw nut. When the worm wheel rotates, the nut also rotates, thus driving the ball screw to move up and down.

Worm gear jacks have two advantages. First, they can reduce motor speed while significantly increasing lifting force—like a low gear on a bicycle. Second, worm gear jacks typically have a self-locking function: the load cannot reverse the worm, so even if the motor stops, the jack remains in its original position. This compensates for the lack of a self-locking function in ball screws.

The combination of ball screws and worm gears enables smooth and efficient motion, while the worm gears also provide strong torque and built-in holding force. Therefore, worm gear-driven ball screw jacks are very popular in applications with high speed and safety requirements, such as synchronous multi-point lifting systems and automated factory equipment.

Production process

9-Step Production Process

Worm Gear Casting
Worm Shaft Baiting
Turning or Machining
Worm Gear Hobbing
Worm Shaft Milling
Worm Shaft Grinding
OD Grinding
Worm Gear Marking
Worm Shaft Marking
1
2
3
4
5
6
7
8
9
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Worm Gear Casting

Worm gear casting uses molten metal poured into precision molds to form worm gears near-net shape, ideal for complex geometries and high-volume production.
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Worm Shaft Baiting

Baiting cuts raw steel bars to precise lengths, preparing consistent blanks for subsequent forging or machining operations.
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Turning or Machining

Turning or Machining includes rough and fine turning on a lathe, removing bulk material first and achieving final dimensions, tight tolerances and excellent surface finish for gears.
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Worm Gear Hobbing

Gear Hobbing is a gear cutting process that used a worm-like cutting tool called a hob cutter meshes with a gear blank in a continuous, synchronized motion (like a worm gear pair).
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Worm Shaft Milling

In worm shaft milling, a threaded rotating cutter progressively generates the worm profile, ensuring precise thread geometry and surface finish.
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Worm Shaft Grinding

Worm shaft grinding uses a rotating grinding wheel to achieve precise thread geometry and superior surface finish.
Worm-gear-OD-grinding-custom-gear-manufacturer-gear-supplier-Belon

OD Grinding

OD Grinding is also called External Cylindrical Grinding, which is in order to finish the external cylindrical surface of a gear to precise diameter, roundness, and surface finish.
Worm-gear-marking-custom-gear-manufacturer-gear-solutions-Belon

Worm Gear Marking

Precision laser marking permanently engraves traceability data (part numbers, date codes, logos) onto gears, ensuring reliable identification and quality tracking throughout the product lifecycle.
Worm-shaft-marking-custom-gear-manufacturer-Belon-small-worm-gear

Worm Shaft Marking

Precision laser marking permanently engraves traceability data (part numbers, date codes, logos) onto gears, ensuring reliable identification and quality tracking throughout the product lifecycle.
Inspection

Strict Quality Inspection

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Dimension Inspection

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Material Inspection

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Runout Testing

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Heat Treatment Testing

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Worm Shaft Accuracy Inspection

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Worm Wheel Accuracy Inspection

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Meshing Testing

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Dimension Inspection

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Material Inspection

Worm-gear-runout-testing-custom-gear-manufacturer-Belon

Runout Testing

Heat-treatment-testing-gear-manufacturing-quality-control-process-Belon

Heat Treatment Testing

Worm-shaft-accuracy-inspection-custom-gear-manufacturer-Belon

Worm Shaft Accuracy Inspection

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Worm Wheel Accuracy Inspection

Worm-gear-meshing-testing-custom-gear-manufacturer-Belon

Meshing 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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