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Formlabs Flexible

Formlabs Flexible Resin is excellent for simulating soft-touch materials and adding ergonomic features to multi-material assemblies.

Processing Methods: 3D Printing

End Uses: 3D Printing Applications, 3D Printing Resins, Consumer Applications, Cookware Handles, Flexible Grips, Gaskets, Handles, Household Goods, Prototyping

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Knowde Enhanced TDS

Identification & Functionality

Plastics & Elastomers Functions
Technologies

Features & Benefits

Applications & Uses

Plastics & Elastomers Processing Methods
Applications

Handles, grips, and overmolds
Wearables prototyping
Stamps

Cushioning and damping
Packaging

Properties

Physical Form
Mechanical Properties
ValueUnitsTest Method / Conditions
Ultimate Tensile Strength (Metric)3.3 - 3.4MPaASTM D 412-06 (A)
Elongation At Failure (Metric)60%ASTM D 412-06 (A)
Hardness70 - 75Shore AASTM 2240
Compression Set4 (Metric)0.4%ASTM D 395-03 (B)
Tear Strength (Metric)9.5 - 9.6 kN/mASTM D 624-00
Ultimate Tensile Strength (Imperial)483 - 494psiASTM D 412-06 (A)
Elongation At Failure (Imperial)60%ASTM D 412-06 (A)
Compression Set4 (Imperial)0.4%ASTM D 395-03 (B)
Tear Strength (Imperial)54 - 55lbf/inASTM D 624-00
Thermal Properties
ValueUnitsTest Method / Conditions
Vicat Softening Point (Metric)231°CASTM D 1525-09
Vicat Softening Point (Imperial)448°FASTM D 1525-09

Technical Details & Test Data

Solvent Compatibility

Solvent

24 hr weight gain (%)

Acetic Acid, 5 %

1.3

Acetone

33

Isopropyl Alcohol

9.8

Bleach, ~5 % NaOCl

1.1

Butyl Acetate

16

Diethyl glycol monomethyl ether

30

Hydrogen Peroxide (3 %)

1.3

Isooctane

< 1

Salt Water (3.5 % NaCl)

< 1

Sodium hydroxide (0.025 %, pH = 10)

1

Xylene

29