Materials Design
as a Service

Our materials design platform combines physics-driven simulation with AI modeling in one seamless tool.

We are revolutionizing multiscale modeling

We are revolutionizing multiscale modeling

We are revolutionizing multiscale modeling

Multiscale simulation

Optimization

Experiment validation

Online platform

Accurate multiscale modeling for materials behavior prediction


Multiscale physics modeling allows you to simulate material behavior from atomic level up to real-world conditions, capturing complex behaviors across scales.

Scientist wearing safety goggles and blue lab attire, using a pipette to transfer liquid into a vial in a laboratory setting.

Multiscale simulation

Optimization

Experiment validation

Online platform

Accurate multiscale modeling for materials behavior prediction


Multiscale physics modeling allows you to simulate material behavior from atomic level up to real-world conditions, capturing complex behaviors across scales.

Scientist wearing safety goggles and blue lab attire, using a pipette to transfer liquid into a vial in a laboratory setting.

Multiscale simulation

Optimization

Experiment validation

Online platform

Accurate multiscale modeling for materials behavior prediction


Multiscale physics modeling allows you to simulate material behavior from atomic level up to real-world conditions, capturing complex behaviors across scales.

Scientist wearing safety goggles and blue lab attire, using a pipette to transfer liquid into a vial in a laboratory setting.

How it works?

Define your material challenge

Input your material parameters or problem statement into PhaseTree’s setup (no coding needed).

Run simulation & AI analysis

The platform’s engines simulate and analyze countless variations, applying physics rules and AI learning to pinpoint the best candidates.

Review results & iterate

Get a clear report of predicted material properties and top recommendations. Adjust parameters or proceed to lab validation with confidence.