AKLN SÀRL

Materials

The right material for every function.

The choice of material is not a detail: it determines the strength, temperature resistance, precision and appearance of your part. Here are the materials we work with — and, for each, what it can do. Not sure which to choose? Describe the part's function and we'll recommend the right one.

FDM printing

Technical filaments

Fused filament deposition, on enclosed-chamber machines for filled and high-temperature materials.

PLA

Polylactic acid

Easy, precise, economical

Rigid and easy to work with, but brittle and low in heat resistance (~55 °C). Perfect for prototyping fast and cheaply.

Strengths
Precision, cost, clean finish
Typical use
Prototypes, mock-ups, lightly stressed aesthetic parts
PLA-CF

PLA carbon fibre

Rigid and aesthetic

Carbon-fibre reinforced PLA: stiffer and more stable than PLA, with a nice matte finish. Remains heat-sensitive — ideal for aesthetic and semi-technical parts.

Strengths
Rigidity, matte look, stability
Typical use
Rigid aesthetic parts, clean prototypes (~55 °C)
PETG

Polyethylene terephthalate glycol

The robust all-rounder

A good balance of strength and flexibility, tough, with good chemical and moisture resistance. The functional “do-it-all” material.

Strengths
Strength, toughness, chemistry
Typical use
Common functional parts, brackets, guards (~70 °C)
PETG-CF

PETG carbon fibre

Robust and rigid

Carbon-fibre reinforced PETG: the robustness of PETG with increased rigidity and dimensional stability. A good technical compromise, with a matte finish.

Strengths
Rigidity, robustness, stability
Typical use
Rigid functional parts, technical mounts (~70 °C)
PA

Polyamide (Nylon)

Résistance & tenue à l'usure

Tough, fatigue- and abrasion-resistant, low friction coefficient. A mechanical material par excellence. Moisture-sensitive (drying before printing).

Strengths
Wear, fatigue, friction
Typical use
Gears, slides, moving mechanical parts (~100 °C)
PA6-CF

Carbon-fibre polyamide

Our technical signature

Carbon-fibre reinforced nylon: high rigidity, great dimensional stability, abrasion resistance, lightweight and black throughout. Printed in an enclosed chamber, carbide nozzle.

Strengths
Rigidity, stability, lightness
Typical use
Tooling, grippers, demanding technical parts (~120 °C)
PC

Polycarbonate

Chocs & température

Very impact- and heat-resistant, robust and durable. Demanding to print (high temperatures), for parts that take a beating.

Strengths
Impact, heat resistance, robustness
Typical use
Covers, guards, thermally stressed parts (~120 °C)
TPU

Thermoplastic polyurethane

Souplesse & absorption

Technical elastomer: flexible, abrasion- and impact-resistant, absorbs vibration and impacts. Hardness adjustable to the application.

Strengths
Flexibility, abrasion, damping
Typical use
Seals, dampers, guards, flexible parts
PPS

Polyphenylene sulfideIn development · on request

High performance

High-performance material: exceptional chemical resistance, high temperature resistance (~200 °C continuous), flame-retardant behaviour. For harsh environments.

Strengths
Chemistry, high temperature, fire
Typical use
Parts in harsh environments, demanding industry
PPS-CF

PPS carbon fibreIn development · on request

The technical peak

Carbon-fibre reinforced PPS: extreme rigidity and dimensional stability, combined with the chemical and thermal resistance of PPS. The top of technical thermoplastics.

Strengths
Extreme rigidity, chemistry, heat
Typical use
Most demanding technical applications

Resin printing · SLA / DLP

High-definition resins

Photopolymerisation, for fine details, smooth surfaces and precision parts.

Standard

Standard resin

Détail & précision

High definition, smooth surfaces and fine details. Ideal for appearance and geometry. More fragile and UV-sensitive than technical resins.

Strengths
Definition, surfaces, details
Typical use
Aesthetic prototypes, mock-ups, presentation parts
Tough

Tough resin (ABS-like)

Mechanical strength

Mechanical behaviour close to ABS: impact- and flex-resistant. For functional parts that must take a load.

Strengths
Impact, flex, toughness
Typical use
Functional parts, clips, housings
Rigide

Rigid / engineering resin

Rigidité & stabilité

Filled resin, very rigid and dimensionally stable. For precise technical parts that must not flex.

Strengths
Rigidity, stability, precision
Typical use
Jigs, precise technical parts, fixtures
Haute T°

High-temperature resin

Heat resistance

Withstands high temperatures (HDT ~200 °C and above). For heat-exposed parts.

Strengths
Heat, thermal stability
Typical use
Moulds, thermal parts, temperature testing

Material advice

We choose the material with you.

Every project has its dominant constraint: mechanical load, temperature, chemistry, flexibility, appearance, weight. Our engineering office guides the choice of process + material based on the part's real use — not a catalogue. Metal and SLS (nylon) are also available through our partner network.