Filters

Mechanical properties

Impact strength

0 KJ/m² - 230 KJ/m²

Elongation at break

0 % - 30 %

Tensile strength

0 MPa - 2630 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

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Resins

This category includes 3D printing resins for SLA/LCD/DLP technologies for various applications such as prototyping, engineering, dental, medical or jewellery.

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Showing 1-48 of 231 item(s)

IND402 resin - Loctite 3D

Rubber-like ESD resin POC Lab

RG 9400 B FR

ABS-like resin Phrozen - creamy white

SiOmaster resin - 1 L - Grey

RG1100

HT-160C ESD resin POC Lab

Liqcreate Flame Retardant HDT resin 1 kg
Anycubic - High Speed Resin 1kg Grey
xPRO9400-FR resin Nexa 3D

Basic Resin - HARZ Labs
PRO9499 White resin Nexa 3D - 1.5 kg

Standard Plus 10K resin Black

TGM-7 resin - Grey 1 kg

Model Resin - HARZ Labs

Basic Resin - HARZ Labs

BASF Ultracur3D DM 2505 Model
KeyOrtho IBT resin
xPRO1100 Black resin Nexa 3D - 1.5 kg

MED414 resin - Loctite 3D

BASF Ultracur3D RG35

Ultracur ST45

BASF Ultracur3D Elástica

Castable Dental Green resin Phrozen

HARZ Labs Dental Pink LCD

ST1400

EL 4000

DMD 1005

EPD 2006

EPD 3500
zABS (UniZ)

EPD 4006

EPD 1086
zWAX (UniZ)

EPD 1006
Dentistry Resin (UniZ)
Resina Normal UV - White
KeyCast resin 0.5 kg
KeyDenture Try-In Resin 1 kg
KeyGuide resin 500 g
KeyMask resin 500 g
KeyModel Ultra resin Light grey
KeySplint Hard resin 500 g
KeySplint Soft resin 500 g

Industrial Nylon-like - HARZ Labs
KeyTray resin

AMD-3 resin - 1 L - Grey

Deep Blue resin

Resins are the fundamental materials utilized by 3D printers with the stereolithography (SLA), liquid crystal display (LCD), or digital light processing (DLP) technologies to produce intricate and high-resolution objects layer by layer. These resins typically come in liquid form and are cured or solidified by UV light to form solid three-dimensional structures. Resins are available in a variety of formulations, including standard resins, engineering resins, dental/medical resins, and jewelry/modeling resins, each tailored to specific applications and performance requirements.

Within the category of resins, standard formulations offer a balance of properties suitable for general-purpose 3D printing applications. Engineering resins, on the other hand, are engineered for enhanced performance in demanding applications, with variants designed for high-temperature resistance, high impact strength, elasticity/flexibility, electrostatic discharge (ESD) protection, and rigidity. These resins are commonly used in aerospace, automotive, electronics, and other industries where precision and durability are paramount.

Dental/medical resins are specially formulated for use in dental and medical applications, including calcinable resins for creating investment casting patterns, resins for fabricating crowns and bridges, splints, surgical guides, and dental models. Similarly, jewelry/modeling resins cater to the needs of jewelry designers and model makers, offering calcinable options for lost-wax casting, as well as high-detail resins for intricate designs and fine surface finishes. With their diverse range of formulations and applications, resins play a crucial role in pushing the boundaries of 3D printing technology and enabling innovation across various industries.