OJTECH

FUSED DEPOSITION MODELING

FDM 3D Printing Services

Produce cost-effective thermoplastic parts for design checks, functional testing, fixtures and low-volume use. FDM is especially practical for fast iterations, robust components and larger-format prototypes.

  • Cost-effective prototypes
  • Engineering thermoplastics
  • Fast design iterations
FDM functional thermoplastic prototypes, fixtures and low-volume parts

DESIGN GUIDE

Design Around Layer Direction and Support Access

FDM builds parts one extruded road at a time, so orientation affects strength, surface texture and support marks. Wall thickness, overhangs and critical interfaces should be planned around how the part will be loaded and assembled.

Maximum build size
Confirmed by machine and material
Typical tolerance
±0.5%, minimum ±0.5 mm
Typical layer thickness
0.10–0.30 mm
Minimum wall
From 1.0 mm
Minimum feature
From 0.8 mm
Available finishes
As-printed, sanded, sealed or painted
01

Orient for the working load

Place the strongest filament paths along the primary load direction and avoid relying on layer-to-layer strength for critical clips, tabs or thin arms.

02

Control walls and thick sections

Use consistent wall thickness where possible. Hollow or rib large solid areas to reduce print time, material use and heat-related distortion.

03

Keep supports away from key faces

Design self-supporting angles where practical and place required supports on hidden or accessible surfaces that can be cleaned and finished.

All FDM projects are quoted with a production lead time starting from 3 days.

FDM MATERIALS

Three Clear Starting Points

Choose the thermoplastic around stiffness, impact, heat, outdoor exposure and surface requirements. OUJI confirms the final material, build orientation and finishing route after reviewing the part.
FDM ABS and ASA functional housings and fixture parts
01

ABS / ASA

Housings, fixtures and durable general-purpose prototypes

Key traits
Tough · Practical · Finishable
Colors
Black / White / Gray / Custom options
Lead time
From 3 days
FDM polycarbonate functional prototypes and durable components
02

PC / PC-ABS

Strong prototypes and heat-exposed functional components

Key traits
Strong · Heat resistant · Impact resistant
Colors
Natural / Black
Lead time
From 3 days
FDM nylon and carbon-fiber nylon fixtures and lightweight tooling
03

Nylon / CF Nylon

Wear-resistant fixtures, brackets and lightweight tooling

Key traits
Tough · Wear resistant · Stiff options
Colors
Natural / Black
Lead time
From 3 days
FDM heated nozzle depositing thermoplastic filament layer by layer

HOW FDM WORKS

A Heated Nozzle Builds the Part One Layer at a Time

FDM feeds thermoplastic filament through a heated nozzle and deposits it along a programmed path. Each layer bonds to the one below, while removable or soluble supports hold overhangs and complex features during the build.
  1. 01

    Fast, economical iteration

    Design revisions can be printed quickly without tooling, making FDM effective for early engineering loops and fit checks.

  2. 02

    Engineering thermoplastics

    Material options range from practical ABS and ASA to heat-resistant polycarbonate and reinforced nylon.

  3. 03

    Practical large parts

    Larger housings, covers and fixtures can be built as one piece or split into controlled bonded sections.

  4. 04

    Low tooling commitment

    Functional parts, assembly aids and short-run components can be produced without molds or dedicated dies.

COMMON APPLICATIONS

Where FDM Adds the Most Value

01

Concept and fit models

Affordable physical parts for envelope, interface and assembly reviews.

02

Jigs and fixtures

Lightweight nests, drill guides, checking tools and assembly aids for shop-floor use.

03

Functional prototypes

Thermoplastic housings, brackets and mechanisms for practical engineering tests.

04

Low-volume components

Custom covers, replacement parts and non-cosmetic end-use components without tooling.