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Application

Rack & Pinion for Robot Travel and 7th Axes

A robot seventh axis adds long linear travel to a robot that already produces rapid acceleration, frequent reversals and changing payload moments. The rack, pinion and gearbox interface should therefore be treated as one drivetrain rather than as separate catalogue items.

Helical gear rack for robot travel axis
Operating context

What the rack drive has to do

Smooth meshing is valuable when the robot repeatedly changes direction or approaches programmed points at speed. Helical rack-and-pinion systems are often considered for that reason, while the final decision still depends on load, positioning target, mounting stiffness and the control strategy.

The application should be described as a complete axis. That means the rack tooth system, pinion, gearbox interface, mounting base and lubrication method are reviewed together instead of assuming the rack alone determines performance.

Selection data

Define the machine duty before fixing the component

These inputs make the difference between a quotation based on geometry alone and one that reflects how the drive will actually be used.

Travel Total rail length and whether one or multiple rack sections are needed.
Robot system mass Robot, base, dress pack, tooling, fixture and maximum payload.
Dynamics Acceleration, deceleration, reversal rate and emergency-stop load case.
Accuracy Repeatability along the rail, backlash target and calibration strategy.
Drive packaging Gearbox orientation, pinion support, motor brake and cable-management envelope.
Component fit

Products commonly evaluated for this application

The choices below are starting points, not automatic selections. Final suitability depends on the drawing and the operating data.

Precision Helical Gear Rack

Precision Helical Gear Rack

For smooth long-travel rack drives where helical geometry suits the drive.

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Helical Pinion

Helical Pinion

Mating pinion with bore, shaft or interface geometry matched to the drive.

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Pinion Shaft

Pinion Shaft

Useful when the gear and output shaft need to be integrated into one component.

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Integration

Installation details can erase or preserve the value of a precision rack

Support the pinion and gearbox so that robot acceleration does not deflect the mesh out of alignment.

Provide a practical way to set and re-check engagement after installation or maintenance.

Protect the rack from welding debris, grinding dust or floor contamination where the rail crosses active production areas.

Pinion and shaft options for robot travel drive
RFQ preparation

Information to send with the application enquiry

Include robot model/mass, maximum payload, rail travel, target speed and acceleration, duty cycle, required repeatability, gearbox output details and the preferred rack mounting arrangement. For dual-drive or master/slave axes, identify how the two sides will be synchronized.

If some values are still open, mark them as design targets. That is more useful than inserting a guessed specification that later becomes difficult to change.

図面やアプリケーションデータをお持ちですか?

部品を定義する詳細情報を送信してください。

A useful quotation starts with the geometry and the operating context. Send the drawing, quantity and controlled requirements; for rack-driven axes, add travel, speed, acceleration, load and the mating pinion or gearbox information when available.

注文方法: 最小注文数量(MOQ)は、製品の種類と注文金額によって柔軟に対応可能です。新規顧客向けのサンプルは1~5個が適切です。複数モデルを組み合わせた注文は、合計金額が1,500米ドル以上であれば対応可能ですが、1~2個の場合は単価が高くなります。

時期と条件: 標準部品の納期は通常10~25営業日、特注部品は20~45営業日、プロジェクト機器は45~120営業日です。EXW、FOB、CIF、DAPは一般的に利用可能ですが、FCA、CFR、CPT、CIP、DDPについては個別にご相談ください。

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