Non reactive bio plasticizers
Non-reactive bio-based plasticizers for tuning softness, flexibility and toughness in advanced photopolymer resin systems without relying on reactive dilution.
3Dresyns® bio plasticizers in this collection are positioned for formulation projects where flexibility, softness and property balancing are required while preserving a non-reactive additive strategy.
Navigate by: water-solubility profile, lipophilic route and viscosity class.
This collection groups non-reactive bio-based plasticizers developed for plasticising 3D resins in controlled formulation workflows.
These materials are positioned for softness and flexibility tuning, toughness improvement strategies and property balancing in demanding photopolymer applications.
Key features & benefits
Choose your bio-plasticizer family
Use the routes below to navigate the collection by water-solubility profile, lipophilic character and viscosity behaviour.
- Non-reactive bio-based plasticizers for controlled softness and flexibility tuning.
- Improved toughness and impact behaviour depending on use case and formulation strategy.
- Renewable-content positioning with property balancing without reactive dilution.
- Suitable for custom formulation development in medical and healthcare-oriented resin systems.
Typical applications
Typical use scenarios across the collection
This collection is relevant for formulation projects where non-reactive plasticising logic is preferred over reactive dilution.
- Flexibility tuning of resin systems: adjusting bendability and compliant behaviour in otherwise stiffer formulations.
- Softness adjustment in elastomeric grades: reducing hardness or altering feel in softer resin systems.
- Toughness improvement strategies: balancing flexibility and resistance to brittle failure.
- Custom formulation development: creating project-specific property profiles for demanding applications.
- Property balancing: tuning softness, flexibility and processability while keeping a non-reactive additive route.
Why choose this collection
How to choose the right bio-plasticizer
Select the most suitable route according to polarity, water-solubility profile and viscosity logic in the target formulation.
- Need low water-solubility plasticising behaviour → choose MF1 MHP
- Need high water-solubility plasticising behaviour → choose MF2 HHP
- Need a lipophilic route → choose MF3 LP
- Need a lipophilic route with high viscosity → choose MF3 HV LP
- Prioritise lower water affinity → start with MF1 MHP
- Prioritise higher water affinity → start with MF2 HHP
- Prioritise lipophilic plasticising behaviour → start with MF3 LP
- Prioritise high-viscosity lipophilic tuning → start with MF3 HV LP
Decision tree summary
Use this simplified formulation logic before detailed validation.
- Need low water-solubility route → MF1 MHP
- Need high water-solubility route → MF2 HHP
- Need lipophilic route → MF3 LP
- Need high-viscosity lipophilic route → MF3 HV LP
Then validate the final route under the intended resin chemistry, additive loading, printer process window and post-curing protocol.
Products in this collection
Low water-solubility bioplasticizer
For formulations requiring non-reactive plasticising behaviour with lower water-solubility positioning.
High water-solubility bioplasticizer
For formulations requiring a non-reactive plasticizer with higher water-solubility behaviour.
Lipophilic bioplasticizer options
For formulations where a lipophilic non-reactive plasticising route is more suitable for the target balance of flexibility and compatibility.
High-viscosity lipophilic bioplasticizer
For formulations where a lipophilic route is needed together with higher-viscosity additive behaviour.
Technical overview table
Workflow-dependent performance
Plasticising effect, softness tuning, toughness balance and final compatibility depend on the interaction between the selected plasticizer, the base resin, additive loading and the overall formulation strategy.
Successful implementation therefore requires alignment between plasticizer selection, polarity profile, target property window and qualified processing workflow.
| Plasticizer | Core profile | Water-solubility / affinity logic | Main function | Typical positioning | Target workflow |
|---|---|---|---|---|---|
| MF1 MHP | Monomer free biocompatible plasticizer | Low water solubility | Non-reactive plasticising and flexibility tuning | Property balancing where lower water-solubility behaviour is preferred | SLA / DLP / LCD / vat photopolymerization formulation tuning |
| MF2 HHP | Monomer free biocompatible plasticizer | High water solubility | Non-reactive plasticising and softness tuning | Property balancing where higher water-solubility behaviour is preferred | SLA / DLP / LCD / vat photopolymerization formulation tuning |
| MF3 LP | Lipophilic monomer free biocompatible plasticizer | Lipophilic | Non-reactive plasticising with lipophilic route | Formulations requiring lipophilic property-balancing logic | SLA / DLP / LCD / vat photopolymerization formulation tuning |
| MF3 HV LP | High-viscosity lipophilic monomer free biocompatible plasticizer | Lipophilic / High viscosity | Non-reactive plasticising with higher-viscosity behavior | Formulations requiring lipophilic tuning with higher-viscosity additive logic | SLA / DLP / LCD / vat photopolymerization formulation tuning |
Mobile: scroll horizontally to view all columns. The first column remains visible while scrolling.
Portfolio overview
A non-reactive property-balancing platform rather than a single softener
This collection is structured around distinct polarity and water-affinity routes, helping users choose a non-reactive plasticizer according to how the additive should behave inside the target resin system.
- MF1 MHP covers the low water-solubility route.
- MF2 HHP covers the high water-solubility route.
- MF3 LP covers the lipophilic route.
- MF3 HV LP extends the lipophilic route into a high-viscosity class.
Workflow note
The right bioplasticizer depends on compatibility and target balance, not only on softness
These materials are most useful when the formulation objective is clearly defined first: whether the target is softness, flexibility, toughness, water-affinity behavior or lipophilic compatibility.
In practice, the most effective path is to define the target property balance first, then validate the selected plasticizer under the intended resin chemistry, additive loading and process conditions.
Technical and commercial support
Documentation, technical selection help and custom formulation support
Use the resources below to move from bioplasticizer preselection to formulation planning, technical discussion or project-specific development support.
Final CTA
Select the right non-reactive plasticizer and validate the final formulation workflow
Use the route-based navigation above to identify the most relevant bioplasticizer, compare candidates in the technical overview table, and move forward with formulation-specific validation for flexibility, softness and toughness tuning.
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From prototyping to industrial production, performance depends on materials, calibration and process control




