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

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.

Particle size engineered from sub-10 microns to >150 microns, with narrow distributions where the target process requires them.
Shape, surface characteristics, and functional additives are set during particle formation — not by post-processing.
Applicable across polymer chemistries, from commodity resins to engineering polymers, matched to the application.
Flow, packing, and morphology are measured in-house against the requirements of the target process, as with the TPU70 SLS grade below.

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

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

Functional particles dispersed into a coating, an ink, or a host polymer, at volume.
The particle platform's controlled-release capability is being developed into identified programs — stated at their actual maturity.
Particles that hold an active and release it slowly and predictably — a behaviour set by particle size, morphology, and surface.
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.
Custom quantities available upon request. Grades are engineered per program and confirmed during scoping.
Available for partner development · Internally characterized
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.
| Particle size | 20–100 µm (GSD: 1.25)Characterized |
|---|---|
| Aerated bulk density | 0.60 g/mLCharacterized |
| Tapped bulk density | 0.70 g/mLCharacterized |
| Angle of repose | 32.6 °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.
When you need particles engineered to a target size, morphology, and surface for a process such as SLS.