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Mechanical properties

Impact strength

0 KJ/m²
-
70 KJ/m²

Elongation at break

0 %
-
20 %

Tensile strength

0 MPa
-
90 MPa

Tensile modulus

0 MPa
-
10600 MPa

Flexural strength

0 MPa
-
90 MPa

Flexural modulus

20 MPa
-
11200 MPa

Surface hardness

0
-
10

Thermal properties

Softening temperature

0 ºC
-
300 ºC

Highlighted feature

In stock

Engineering

Advanced materials developed for industrial applications that require certain properties such as resistance to high temperatures, rigidity, flexibility or hardness among others..

Showing 1-48 of 103 item(s)

IND6845

BASF Ultracur3D RG35

IND249 Black resin - Loctite 3D

TR300 Ultra-High Temp resin Phrozen
Rigid 3K resin Raise3D

ST 7500 G

Ultracur ST45

Premium Tough resin

Model Resin - HARZ Labs

ABS-like ESD resin POC Lab

BASF Ultracur3D Elástica
zWAX (UniZ)

RG1100
xFLEX402 resin Nexa 3D

ST1400

EL 4000

EPD 1006

EPD 1086

EPD 4006

EPD 2006

Art-Engineering 10K resin Black

3955 HDT280 FST resin - Loctite 3D

IND405 HDT50 High Elongation resin - Loctite 3D

3843 HDT60 High Toughness black resin - Loctite 3D

3172 HDT50 High Impact resin - Clear

IND147 HDT230 High Heat resin - Loctite 3D

IND406 HDT100 High Elongation resin - Loctite 3D

IND403 resin - Loctite 3D

Industrial PP-like - 1 kg

IND475 resin - Loctite 3D

IND402 resin - Loctite 3D

ESD resin 1kg

TR250LV resin Phrozen

Onyx resin Phrozen

Protowhite Rigid resin Phrozen

RG3280

FLX-300 Resin - AmeraLabs

Silicone-Compatible Model -...

Industrial ABS V2 - HARZ Labs

Industrial Low Friction -...
  • -30%
xPEEK147-Black resin Nexa 3D 1.5 kg
xCERAMIC3280 resin Nexa 3D 1.5 kg
xESD resin Nexa 3D 1.5 kg
xABS3843-Black resin Nexa 3D 5 kg
xPP405-Black resin Nexa 3D 1 kg
xCE-Black resin Nexa 3D 1.5 kg
xPRO410 resin Nexa 3D 1 kg

Composite-X resin

Engineering resins represent a specialized category of resins tailored to meet the demanding requirements of engineering applications in additive manufacturing. These resins are engineered to offer enhanced mechanical properties, thermal stability, and chemical resistance, making them suitable for a wide range of industrial and functional prototyping applications. Within the realm of engineering resins, various formulations are available to address specific needs, including high-temperature resistance, high impact strength, flexibility, electrostatic discharge (ESD) protection, and rigidity.

Designed to withstand harsh environments and challenging operating conditions, engineering resins provide engineers, designers, and manufacturers with the ability to produce robust and durable parts for critical applications. High-temperature resins, for example, can withstand elevated temperatures without losing their structural integrity, making them suitable for automotive, aerospace, and industrial applications where thermal stability is paramount. Similarly, high-impact resins offer exceptional toughness and durability, ideal for parts subjected to heavy loads or impact forces.

Engineering resins find extensive use in industries such as aerospace, automotive, healthcare, and consumer electronics, where performance and reliability are critical. From producing functional prototypes and tooling to creating end-use parts and components, engineering resins enable manufacturers to streamline product development processes and accelerate time-to-market. With their ability to deliver high-quality, precision-engineered parts, engineering resins continue to drive innovation and advancement in additive manufacturing technology.

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