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Polymer particles, engineered to your process

Powders built to a defined size, shape, surface, and composition — from sub-10 microns to over 150 — so they behave the way your process needs them to.

Particle size
sub-10 to >150 µm
Tapped density
0.70 g/mL
Angle of repose
32.6°
Polymer powder being dosed under a filling head in the materials lab

Why the particle matters as much as the polymer

Two powders can share a chemistry and behave nothing alike. How they flow, pack, melt, and disperse is set by the particle, not by the polymer name.

So we engineer the particle itself — its size, its distribution, its shape, its surface — around the process it has to survive.

Engineered polymer particles at high magnification — near-spherical and tightly distributed

The variables we control

  • Size and distribution

    Particle size engineered from sub-10 microns to >150 microns, with narrow distributions where the target process requires them.

  • Morphology and surface

    Shape, surface characteristics, and functional additives are set during particle formation — not by post-processing.

  • Composition

    Applicable across polymer chemistries, from commodity resins to engineering polymers, matched to the application.

  • Characterized for the process

    Flow, packing, and morphology are measured in-house against the requirements of the target process, as with the TPU70 SLS grade below.

Processes it was made for

Additive manufacturing

Additive manufacturing

SLS powders whose flow and packing suit a powder bed, for lightweight printed parts.

Dosing and delivery

Dosing and delivery

Particles engineered to carry a payload and let it go on a defined schedule.

Coatings and fillers

Coatings and fillers

Functional particles dispersed into a coating, an ink, or a host polymer, at volume.

Development programs

The particle platform's controlled-release capability is being developed into identified programs — stated at their actual maturity.

  • In development

    Controlled and drug-release particles, with Osmotex

    Particles that hold an active and release it slowly and predictably — a behaviour set by particle size, morphology, and surface.

    How it works

    In development for controlled- and drug-release applications, including a program for the Osmotex platform, a Myant ecosystem technology.

Release profiles, actives, and regulatory pathway are defined per program during scoping — controlled-release grades are not offered as standard supply.

Supply and scoping

Custom quantities available upon request. Grades are engineered per program and confirmed during scoping.

Available for partner development · Internally characterized

5 kgIdeal for R&D and prototyping.
25 kgDesigned for pilot runs and production.
  • How it is described technically

    MyantX engineers polymer particles around defined size, morphology, surface chemistry, and composition — from sub-10 microns to >150 microns — and the processing behavior a target application requires.

    Current development work includes a TPU70 SLS powder designed around the flow and packing requirements of a powder-bed (selective laser sintering) process. The specifications below are for that identified grade; the platform's broader ranges are engineered per program.

  • TPU70 SLS powder — identified grade

    Engineered Polymer Particles — full specifications
    Particle size20–100 µm (GSD: 1.25)Characterized
    Aerated bulk density0.60 g/mLCharacterized
    Tapped bulk density0.70 g/mLCharacterized
    Angle of repose32.6 °Characterized

    Values are for the identified TPU70 SLS grade. The platform's broader size, morphology, and composition ranges are engineered per program and confirmed during scoping.

Build with Engineered Polymer Particles

When you need particles engineered to a target size, morphology, and surface for a process such as SLS.