B2B 3D printing service: technical prototypes, brackets and CAD design on a workbench

CAD · prototypes · small batches from Chemnitz

3D printing service
for custom parts

Custom plastic parts, CAD support and fast sample production for companies, workshops and specialist businesses – local, flexible and hands-on.

Fast samples & iterations
Local, from Chemnitz
CAD support to your specification
Modern 3D printing production with compact desktop printers and technical cover and adapter prototypes

For companies & specialist businesses

3D printing, CAD support and made-to-measure custom parts

FABLLE supports companies, workshops and technical service providers with custom plastic parts – from CAD design and prototypes to small batches and workshop-oriented special solutions.

  • Prototypes, sample parts and design variants
  • Brackets, adapters and small fixtures
  • Plastic replacement and custom parts
  • Small batches without high minimum quantities
  • Non-load-bearing covers and housings to professional specification

Possibilities

What can be printed with FDM & SLA?

A compact overview for companies, workshops and specialist businesses: typical components, samples and special solutions that 3D printing can deliver quickly.

FDM

Brackets & adapters

For assembly aids, spacers, adapter blocks and functional small parts, when stability, fit and fast turnaround matter.

FDM

Fixtures & auxiliary parts

Practical workshop and process aids such as gauges, stops, guides, protective caps or replacement handles – adapted to your existing dimensions and workflows.

FDM

Small batches & functional parts

For recurring plastic parts, small production runs and robust functional parts without high minimum quantities or tooling costs.

SLA

Design samples & presentation models

When surface finish, details and visual impact matter – ideal for clean visible parts, samples and highly detailed functional parts.

SLA

Housings, clips & fit checks

For precise edges, fine details and clean fit checks – especially for small housings, clips, mounts and detailed components.

SLA

Cover & shell prototypes

For non-load-bearing covers, shell shapes and precisely fitting visible parts built to professional specifications – with no medical design or approval by FABLLE.

FDM and SLA complement each other: FDM is often economical and robust, while SLA delivers especially smooth, highly detailed parts. Which process fits depends on function, surface, load and the quantity you need.

Project process

How your custom part is made

A clear process from inquiry to sample part or small batch – with short coordination loops.

1

Clarify inquiry & purpose

You describe the application, dimensions, existing data and requirements. Sketches, photos, STL or STEP files help to get started.

2

CAD / data check

We check existing data or create a CAD design to your specification, agreeing critical details before printing.

3

Produce the sample part

The part is printed to match its intended use – e.g. as a prototype, fixture, bracket or non-load-bearing cover.

4

Refine or small batch

After feedback come refinements, further variants or a small production run – without large minimum quantities.

B2B custom manufacturing

Local support for prototypes, components and small batches

Whether it's a technical bracket, adapter, sample part, presentation model or workshop aid: we provide supporting CAD, prototyping and manufacturing services. For specialist or patient-related applications, work is carried out exclusively to the specification and approval of the respective professional partner; FABLLE does not provide medical design or certification.

Request a project – no obligation

Materials & applications

FDM filaments and SLA resins for your project

Depending on the application, we choose the right process together: FDM filaments for robust functional parts and fast samples, SLA/resin printing for smooth surfaces, high detail and precise prototypes.

FDM Filament Standard

PLA

Polylactide

57 °C
Affordable prototypes
  • Very affordable
  • Perfect surfaces & a clean look
  • Biodegradable – ideal for prototypes & decor
  • Heat-resistant only up to approx. 57 °C
  • Unsuitable for highly stressed components (brittle)
  • UV-sensitive – not for outdoor use
FDM Filament Standard

PLA-CF

Carbon-fiber reinforced PLA

57 °C
Affordable reinforced
  • Affordable
  • Stiffer & more stable than standard PLA
  • Good for simple moving components
  • Heat-resistant only up to approx. 57 °C
  • Unsuitable for highly stressed parts
  • Not UV-resistant
FDM Filament Standard

PETG

Polyethylene terephthalate glycol

69 °C
Affordable outdoor
  • Very affordable
  • Suitable for outdoor use
  • More flexible – yields instead of breaking
  • Heat-resistant only up to approx. 69 °C
  • Lower layer adhesion
  • Unsuitable for highly stressed parts
FDM Filament Standard

PETG-CF

Carbon-fiber reinforced PETG

69 °C
Affordable outdoor reinforced
  • Affordable
  • Suitable for outdoor use
  • Handles moderate loads
  • Heat-resistant only up to approx. 69 °C
  • Bends rather than breaks
  • Unsuitable for wear-stressed parts
FDM Filament Standard

ABS-GF

Glass-fiber reinforced ABS

99 °C
Heat-resistant impact-resistant
  • Mid-range price segment
  • Heat-resistant up to approx. 87–99 °C
  • Impact-resistant – for lasting loads
  • Not resistant to oils & cleaning agents
  • Not flexible
  • UV-sensitive
FDM Filament Standard

TPU

Thermoplastic polyurethane

65 °C
Flexible shock-absorbing
  • Returns to its original shape after deformation
  • Ideal for impact absorption
  • Protects objects
  • Lower detail accuracy
  • Heat-resistant only up to approx. 65 °C
  • Not for stiff, precise components
FDM Filament Engineering

PC

Polycarbonate

117 °C
Heat-resistant impact-resistant
  • Heat-shielding up to approx. 117 °C
  • Extremely impact-resistant
  • Suitable for demanding environments
  • Higher price segment
  • UV-sensitive
  • Not flexible
FDM Filament Engineering

PA6-CF

Carbon-fiber reinforced nylon 6

186 °C
Mechanical heat-resistant
  • Very good mechanical load capacity
  • Heat-resistant up to approx. 186 °C
  • Ideal for gears, bearings & functional parts
  • Higher price segment
  • May absorb moisture
  • May generate noise under friction
FDM Filament Engineering

PAHT

High-temperature polyamide

194 °C
Industrial heat-resistant
  • Temperature-resistant up to approx. 194 °C
  • Very high strength & toughness
  • Ideal for automotive & industry
  • Higher price segment
  • Tighter dimensional tolerances are harder to hold
  • Post-processing can lead to cracking
FDM Filament Engineering

PET

Polyethylene terephthalate

205°C
Chemical-resistant heat-resistant
  • Chemical-resistant
  • Heat-resistant up to approx. 205 °C
  • Insensitive to moisture
  • Higher price segment
  • Brittle under point loads
  • Limited post-processing
FDM Filament High Performance

PPA-CF

Carbon-fiber reinforced polyphthalamide

200+ °C
Metal replacement industrial
  • Metal-like strength
  • Industrial precision
  • Stable in high humidity & temperature
  • Higher price segment
  • Not very flexible
  • Unsuitable for clips or snap-fit parts
FDM Filament High Performance

PPS

Polyphenylene sulfide

264 °C
Heat-resistant flame-retardant
  • Ultra-high heat resistance up to 264 °C
  • Flame-retardant
  • Resistant to chemicals & solvents
  • Higher price segment
  • Relatively brittle
  • Unsuitable for parts under bending stress
SLA Harz Standard

Standard Resin

All-round SLA resin

SLA
Smooth surface details
  • Fine details and clean surfaces
  • Good for presentation and sample parts
  • Quick alignment of shape and fit
  • Not for high continuous mechanical loads
  • Post-curing and cleaning required
  • Material choice depends on the project
SLA Harz Engineering

Tough 2000 Resin

ABS-like engineering resin

SLA
Robust prototypes
  • More stable than standard resin
  • Good for functional prototypes
  • Clean look on technical parts
  • More brittle than many FDM functional parts
  • Not ideal for flexible snap-fit parts
  • Mechanical properties depend on post-curing
SLA Harz Engineering

Durable Resin

PP-like SLA resin

SLA
Tough flexible
  • Tougher and less brittle
  • Suitable for clips, housings and fit tests
  • Good surface finish on moving parts
  • Not for high temperatures
  • Not as stiff as tough resins
  • Material availability depends on the project
SLA Harz Engineering

Flexible 80A Resin

Elastic SLA resin

SLA
Flexible damping
  • Elastic and shock-absorbing
  • Good for grips, pads and flexible samples
  • More detailed than many flexible FDM parts
  • Lower stiffness
  • Not for precise rigid components
  • More delicate post-processing
SLA Harz High Performance

High Temp Resin

Heat-resistant SLA resin

SLA
Heat-resistant mold making
  • Very high temperature resistance possible
  • Good for heat-adjacent prototypes and fixtures
  • Very precise surfaces
  • Higher price segment
  • Rather brittle
  • Not for impact/bending stress
SLA Harz High Performance

BioMed Resin

Special resin to professional partner specification

SLA
Special professional partner
  • Conceivable for specialist samples to specification
  • Clean, smooth surfaces
  • Material selection only after project approval
  • No medical design by FABLLE
  • Only to the specification/approval of the professional partner
  • Not automatically suitable for every patient-related part

Ready for a custom part?

Send us your inquiry or idea

Briefly send us the purpose, dimensions, a photo/sketch or existing 3D files. We'll check – with no obligation – whether and how your part can sensibly be made.

Local from Chemnitz · CAD support · prototypes & small batches · Made in Germany