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UV Laser Hard

$38.50$77.00

Rigid prototyping  resin with crisp details, high stiffness and hardness. Parts printed with this resin won’t deform when pressure is applied.

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1Kg

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Key features:

• Rigid
• Quick curing
• High stiffness

Applications:

• Prototyping
• Engineering

Compatible Printers:

Compatible with UV Laser printers such as Formlabs, Peopoly, Maoi, Nobel and more.

View Printer Settings

Properties

Tensile Properties

Tensile Modulus *

Tensile Strength *

Elongation at break *

2060 MPa

35 MPa

4%

ASTM D638

ASTM D638

ASTM D638

General Properties

Hardness *

Heat Deflection Temperature *

Viscosity

Density

Storage

77 Shore D

60 °C

230 cPs

1.19 g/cm3

10<T>50°C

ASTM D2240

ASTM D648 (0.455 MPa)

At 25°C Brookfield spindle 3

* Post cured for 1hr at 60°C in Cure L2

Download TDS >          Download SDS >         

 

Key features:

• Rigid
• Quick curing
• High stiffness

Applications:

• Prototyping
• Engineering

Compatible Printers:

Compatible with UV Laser printers such as Formlabs, Peopoly, Maoi, Nobel and more.

View Printer Settings

Properties

Tensile Properties

Tensile Modulus *

2060 MPa

ASTM D638

Tensile Strength *

35 MPa

ASTM D638

Elongation at break *

4%

ASTM D638

General Properties

Hardness *

77 Shore D

ASTM D2240

Heat Deflection Temperature *

60 °C

ASTM D648 (0.455 MPa)

Viscosity

230 cPs

At 25°C Brookfield spindle 3

Density

1.19 g/cm3

 

Storage

10<T>50°C

* Post cured for 1hr at 60°C in Cure L2

Glossary of Key Terms

Tensile strength: Tensile strength is the ability of a material to withstand a pulling (tensile) force. It is customarily measured in units of force per cross-sectional area.

% elongation: indication of how much an object can be extended from it’s original shape.

Young’s Modulus: Young’s Modulus is a measure of how much force is needed to stretch or compress a substance.

Flexural Strength: The flexural strength of a material is defined as its ability to resist deformation under load.

Flexural Modulus: (also know as the Bend modulus) is a measure of a materials stiffness/ resistance to bend when a force is applied on the sample.

HDT: is the temperature at which a plastic deforms under heat

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