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PODER ETERNOEngrenagens e cremalheiras de precisão
Application

Gear Racks for CNC Machine Tools

For long CNC feed axes, the rack and pinion have to carry the commanded feed force while preserving predictable positioning over the whole travel. Rack joints, mounting datums and drive stiffness matter as much as the nominal module.

Ground precision gear rack for CNC machine axis
Operating context

What the rack drive has to do

CNC axes usually combine long travel with frequent direction changes and a demand for consistent motion. Ground racks are commonly evaluated when pitch consistency and smooth engagement are important, while hardened or milled racks can be suitable where the machine accuracy target is less demanding.

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.

Axis geometry Travel length, rack section length, horizontal/vertical orientation and the machine-base datum.
Moving load Slide, spindle/head, tooling and process-force contribution.
Feed performance Rapid-traverse speed, cutting-feed speed, acceleration and reversal frequency.
Positioning Target positioning/repeatability, compensation strategy and allowable backlash.
Protection Chip guards, coolant exposure, lubrication method and maintenance access.
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.

Ground Helical Gear Rack

Ground Helical Gear Rack

A starting point for smooth high-quality long-travel axes where helical teeth suit the drive layout.

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Ground Straight Gear Rack

Ground Straight Gear Rack

For precision axes that use a straight-tooth mesh.

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Helical Pinion

Helical Pinion

Mating pinion option where the rack uses a helical tooth form.

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Integração

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

Machine-base straightness and the relationship between rack mounting face and guideway datum should be treated as part of the axis geometry.

Joined rack sections need a controlled pitch transition. The pinion should cross the joint without a local change in mesh or running feel.

Backlash is a system property. Rack tooth thickness, pinion geometry, gearbox torsional behaviour and mounting adjustment all contribute.

Helical rack for long-travel machine tools
Preparação de RFQ

Information to send with the application enquiry

Send the axis layout, travel, load, feed speed, acceleration, required positioning/repeatability, proposed gearbox/pinion data and the rack mounting drawing. If the machine builder already has a compensation strategy, note how mechanical backlash is expected to be set.

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.

Você tem um desenho ou dados de aplicação?

Envie os detalhes que definem a peça.

Um orçamento útil começa com a geometria e o contexto operacional. Envie o desenho, a quantidade e os requisitos de controle; para eixos acionados por cremalheira, adicione o curso, a velocidade, a aceleração, a carga e as informações sobre o pinhão ou a caixa de engrenagens de acoplamento, quando disponíveis.

Como encomendar: A quantidade mínima de encomenda (MOQ) é flexível, variando conforme o tipo de produto e o valor do pedido. Para novos clientes, as amostras podem ser de 1 a 5 unidades; pedidos com modelos variados são aceitos a partir de USD 1.500, enquanto pedidos de 1 a 2 unidades podem ser considerados mediante um preço unitário mais elevado.

Cronograma e condições: As peças padrão têm um prazo de entrega de 10 a 25 dias úteis, os componentes personalizados de 20 a 45 dias e os equipamentos para projetos de 45 a 120 dias. Os termos EXW, FOB, CIF e DAP são comumente utilizados; FCA, CFR, CPT, CIP e DDP podem ser discutidos caso a caso.

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