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Injection Molded Plastic Parts and Engineering Components

Browse product families, compare geometry and material routes, then open the relevant product page for a drawing-led RFQ.

Choose a product family, then define the controlling inputs

The catalogue below is organized around component geometry and application rather than around generic resin names. Each product page explains the dimensions, material decisions and production information needed for a useful quotation.

For an existing part, include a drawing or sample reference. For a new design, add mating-part information and identify which dimensions or motion characteristics are critical.

Plastic gear, rack, sprocket and molded component families

Common selection routes

Custom molded parts

Drawing-specific housings, guides, covers, structural features and functional mechanisms.

Plastic gears and racks

Spur, helical, bevel, worm, internal, planetary and linear-motion geometries.

Plastic sprockets

Chain-drive components selected around chain series, tooth count, bore, hub and operating environment.

How the catalogue is structured

Use geometry as the first filter. A rack, bevel gear, internal gear, worm wheel and chain sprocket can all be made from engineering plastics, but they require different mating information and different assembly datums. The product-family pages therefore start from the mechanical interface instead of presenting a long resin list.

Starting point Open this route when… Bring to the review
Standard geometry family The component is recognizably a gear, rack or sprocket. Tooth or chain system, mate, shaft interface and duty.
Custom molded component The shape is defined by your assembly and cannot be selected from a standard family. CAD, datums, wall map, inserts, loads, environment and volume.
Material-led replacement A legacy metal or plastic part has a known field problem. Existing sample, failure mode, mating surfaces and the requirement the new material must solve.

Do not choose the manufacturing route too early

Injection molding is usually evaluated against annual demand, geometry, tool access, wall design and repeatability needs. Machining can be more practical for lower quantities, larger stock shapes, cast nylon components or projects where geometry is still changing. Some projects combine molding with a controlled secondary bore, datum or insert operation.

The correct route is the one that meets the functional drawing with acceptable process risk and total project cost. Send both quantity and revision status so tooling is not proposed for a design that is still moving.

Product Categories

すべての製品

Product records are loaded from WooCommerce and remain linked to their assigned categories.

#40 Plastic Sprockets
プラスチック製スプロケット

#40 Plastic Sprockets

#40 roller-chain sprocket family — Select tooth count and material first, then confirm pitch diameter, stock or finished…

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MC Nylon Gears
ナイロン/MCナイロンギア

MC Nylon Gears

Custom gear components including bevel configurations — Humidity and conditioning, bore fit, mating material, load, speed, lubrication and…

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Nylon / MC Nylon Gear Rack
ナイロン/MCナイロンギア

Nylon / MC Nylon Gear Rack

Straight plastic gear rack — Rack section, module, total length, mounting pattern, mating pinion, moisture environment and required…

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Plastic Bevel Gears
プラスチック製ベベルギア

Plastic Bevel Gears

Intersecting-shaft bevel gear pair — Confirm ratio, module, tooth count, pressure angle, shaft angle, bore, mounting distance, mating…

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Plastic Gear Racks
プラスチック製ギアラック

Plastic Gear Racks

Straight rack / rack segment — Module, pressure angle, length, mounting pattern, rack section, pinion match, pitch-line height…

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Plastic Helical Gears
プラスチック製ヘリカルギア

Plastic Helical Gears

Parallel-axis helical gear — Helix angle and hand, normal module, face width, mating gear, axial reaction, bore and…

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