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3D Printing Polymers
Products in 3D Printing Polymers
448 Products found in 3D Printing Polymers
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Liqcreate
Liqcreate Wax Castable
Processing Methods:
Digital Light Processing, Stereolithography, Casting, 3D Printing
End Uses:
Forging Applications, Industrial Castings, Masked Stereolithography (MSLA), Jewelry, LCD Applications, Dental Applications
Density:
1180.0 - 1180.0 kg/m³
Liqcreate Wax Castable is a wax-based photopolymer resin, perfect for manufacturing jewelry, dental and industrial parts using the direct investment casting method.Liqcreate Wax Castable is easy to use on open LCD/MSLA, DLP, and laser-based 3D printers in the range of 385 - 420nm. 3D-printed parts from this material captures intricate features and show crisp details. This wax-based material offers smooth surfaces with clean burnout for a reliable casting process. Create custom-made elegant organic geometries according to your preferences with excellent casting for positive and negative engravings.
Liqcreate
Liqcreate Gingiva Mask
Processing Methods:
Stereolithography, 3D Printing, Digital Light Processing
End Uses:
Dental Applications, Soft Touch Applications, Masked Stereolithography (MSLA), Body Implants
Density:
1180.0 - 1180.0 kg/m³
Tensile Strength:
2.2 - 2.2 MPa
Liqcreate Gingiva Mask is a pink-colored photopolymer resin. This resin is perfect for manufacturing soft tissue, and gum-like parts for dental implant models.Liqcreate Gingiva Mask is easy to use on open SLA, MSLA, and DLP 3D printers in the range of 385 - 420nm. It is a soft and flexible material that can be used in combination with Liqcreate Dental Model Pro Beige or Gray. Gingiva Mask opens the possibility to create the soft part for highly precise models, bridges, and implant superstructures. With its soft and flexible properties, it is perfect for the production of gum parts and soft tissue which supports dental implant models and C&B projects.
BNNano
Boron Nitride NanoBarb™ PolyBarb Filament PEEK
Polymer Name:
Polyetheretherketone (PEEK)
Processing Methods:
3D Printing
End Uses:
3D Printing Applications
Density:
1280.0 - 1280.0 kg/m³
Synonyms:
Elbor
PolyBarb Filament PEEK is a series of high quality and easy to print PolyEther Ether Ketone filaments with printed mechanical properties surpassing chopped carbon fiber filled PEEK, allowing for significantly stronger parts.
Nexa3D
Nexa3D xCAST
Processing Methods:
3D Printing
End Uses:
Industrial Castings
Density:
1100.0 - 1100.0 kg/m³
Tensile Strength:
9.0 - 9.0 MPa
Nexa3D xCAST resin is formulated for making investment casting patterns with excellent surface finish and low a shafter burnout. Patterns made from xCAST are suitable for both dip-shell and flask-type investment casting processes.
Nexa3D
KeyPrint® KeySplint Soft®
Processing Methods:
3D Printing, Digital Light Processing
End Uses:
Medical Devices, Repositioners, Dental Applications, Dental Splints, Mouth Guards, Bite Planes, Snoring Appliances, Night Guards
Density:
1000.0 - 1100.0 kg/m³
KeyPrint® KeySplint Soft® is a light-curing resin for the 3D printing of flexible biocompatible dental devices for use with DLP printers (385-405nm).
Nexa3D
KeyGuide®
Processing Methods:
Digital Light Processing, 3D Printing
End Uses:
Dental Guides, Dental Applications
KeyGuide® is alight-curing resin for the fabrication of biocompatible dental surgical guides to be used in DLP 3D printer sutilizing wave lengths between 385nm - 405nm.
Nexa3D
Nexa3D xPA12
Polymer Name:
Polyamide 12 (PA 12)
Processing Methods:
3D Printing, Quantum Laser Sintering
End Uses:
Hinges, Prototyping, Structural Parts, Springs
Features:
Durable, Good Thermal Stability, Excellent Mechanical Strength, Flexible
Tensile Strength:
47.96818 - 47.96818 MPa
Nexa3D xPA12 is a durable nylon plastic thatcan be used for a wide range of applications, both for prototyping and for end products. Printed using Quantum Laser Sintering (QLS), when thin, it’s flexible enough for hinges and springs and when thick, it’s strong enough for structural components.
Nexa3D
Nexa3D xPBT
Polymer Name:
Polybutylene Terephthalate (PBT)
Processing Methods:
Selective Laser Sintering, 3D Printing
End Uses:
Electrical/Electronic Applications, Automotive Electronics, Lighting Applications, Connectors
Features:
Low Moisture Absorption, Good Printability, Recyclable, Dimensional Stability, Excellent Dielectric Properties
Nexa3D xPBT is the first-ever PBT powder commercially available for selective laser sintering. The material is the ideal solution for small series production via additive manufacturing in industrial applications such as automotive electronics.
Liqcreate
Liqcreate Premium Black
Processing Methods:
Digital Light Processing, 3D Printing
End Uses:
LCD Applications, Eyeglass Frames
Density:
1180.0 - 1180.0 kg/m³
Tensile Strength:
45.0 - 45.0 MPa
Liqcreate Premium Black is an opaque black photopolymer resin with excellent color stability, ideal for rapid prototyping and concept product development.3D-printed parts from this material have exceptional dimensional stability and low shrinkage during printing. Liqcreate Premium Black is easy to use on all open source MSLA/LCD and DLP 3D printers in the range of 385 - 420nm. This material has excellent properties like low shrinkage and low odor, which makes it ideal for applications that require an opaque, deep black surface finish.
BNNano
Boron Nitride NanoBarb™ PolyBarb Filament PC
Processing Methods:
Fused Filament Fabrication, 3D Printing
End Uses:
3D Printing Applications
Density:
1190.0 - 1190.0 kg/m³
Synonyms:
Elbor
PolyBarb Filament PC is a series of high quality and easy to print Poly Carbonate / PBT Blend filaments with printed mechanical properties approximate to chopped carbon fiber filled PEI, allowing for significantly stronger parts printed at lower temperature.
Nexa3D
Nexa3D x45-Natural
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Prototyping
Tensile Strength:
52.0 - 52.0 MPa
Nexa3D x45-Natural a tough material that is ideal for models and functional prototypes requiring high strength and durability. Capable of much higher print speeds than current materials, x45-NATURAL features excellent out-of-printer properties with robust print styles to ensure high first-time build success. Supporting a wide variety of applications with short processing times, x45-NATURAL’s draft build mode enables companies greater flexibility within their manufacturing processes.
Nexa3D
Nexa3D xPRO410
Processing Methods:
3D Printing
End Uses:
Modeling Material, Prototyping, Consumer Applications
Tensile Strength:
20.71 - 20.71 MPa
Nexa3D xPRO410 is a fast printing, rigid photopolymer that can be printed with very high resolution features. Formulated with exceptional surface finish and extremely high print accuracy. IND410 exhibits dimensional accuracy of within 0.2% 13 after post curing. This product is perfect for printing accurate prototypes, that will be exposed to temperatures up to 70°C. Accuracy, combined with high HDT, makes this product ideal for consumer goods functional prototyping and small series production.
Nexa3D
Nexa3D x45-Clear
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Prototyping
Tensile Strength:
52.0 - 52.0 MPa
Nexa3D x45-Clear combines good clarity with toughness for a wide variety of models and functional prototypes requiring fast turnaround times. x45-CLEAR has outstanding build speed to give companies greater adaptability within their manufacturing processes. x45-CLEAR has excellent out-of-printer properties with robust print styles to ensure high first-time build success.
Gianeco
Gianeco PLA FILAMENT polylactic acid
Polymer Name:
Polylactic Acid (PLA)
Labeling Claims:
Biodegradable, Contains PCR Resin, Recycled
Processing Methods:
Fibers Extrusion, 3D Printing, Injection Molding, Extrusion
Gianeco PLA FILAMENT polylactic acid is used in extrusion, injection, fiber, 3D printing, filament and thermoforming.
Push Plastic
Push Plastic PETG - 25 kg
Polymer Name:
Polyethylene Terephthalate Glycol (PETG)
Processing Methods:
3D Printing, Fused Filament Fabrication
End Uses:
Modeling Material, Prototyping, Bottles
PETG (Polyethylene Terephthalate Glycol Comonomer) 3D Printing Filament. PETG - 1 kg benefits include Great impact resistance, Natural color is very clear, Excellent chemical resistance for a clear plastic, Perfect for applications that require high durability and clarity.
3D Systems
VisiJet® CR-WT 200
Tensile Strength:
33.0 - 40.0 MPa
3D Systems
VisiJet® M3 ProWax
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
3D Printing, Photopolymer Jetting
End Uses:
Modeling Material, Mold Making
VisiJet Prowax Material provides 100% RealWax patterns for lost-wax casting of mid-sized and large foundry applications across numerous industries and uses. RealWax patterns can replace traditional casting waxes in standard casting processes with no special modifications.
BigRep
BigRep PETG
Polymer Name:
Polyethylene Terephthalate Glycol (PETG)
Processing Methods:
Fused Filament Fabrication, 3D Printing
Density:
1270.0 - 1270.0 kg/m³
Flexural Modulus:
2145.0 - 2145.0 MPa
BigRep PETG is the material is full compatible with all FFF open-build 3D printers, and has been optimized for use on BigRep large-scale machines, for a wide range of applications.
Volaprint
Volaprint TPE 70 Natur
Polymer Name:
Thermoplastic Elastomer (unspecified)
Processing Methods:
3D Printing
End Uses:
Mold Making
Volaprint TPE 70 Natur colored molding compound.
Ultimaker
Ultimaker ABS
Polymer Name:
Acrylonitrile Butadiene Styrene (ABS)
Processing Methods:
3D Printing, Fused Filament Fabrication
End Uses:
Prototyping
Density:
1100.0 - 1100.0 kg/m³
Flexural Modulus:
2070.0 - 2070.0 MPa
ABS used by an array of industries worldwide, ABS is known for itsexceptional mechanical properties. Ultimaker ABS is specificallyformulated to minimize warping and ensure consistentinterlayer adhesion.
Push Plastic
Push Plastic PLA - 10 kg
Polymer Name:
Polylactic Acid (PLA)
Labeling Claims:
Biodegradable
Processing Methods:
3D Printing, Fused Filament Fabrication
PLA (Polylactic Acid) 3D printer filament. The most commonly used 3D printing media, the benefits of PLA include affordability, easy to use, large color selection, and low print temperature.
Carbon Inc.
CarbonResin™ EPX 82
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
3D Printing, Digital Light Synthesis
End Uses:
Housings, Connectors
Density:
1155.0 - 1155.0 kg/m³
CarbonResin™ EPX 82 combines functional toughness, stiffness, and temperature resistance making it useful in a variety of automotive, industrial, and consumer applications. EPX 82 is a high-strength engineering material with excellent long-term durability and mechanical properties comparable to lightly glass-filled thermoplastics (e.g. 20% GF-PBT, 15% GF-Nylon). EPX 82 has a heat deflection temperature ranging from 104°C to 130°C (depending on conditioning) and the functional toughness required for a variety of automotive and industrial applications such as connectors, brackets, and housings.
3D Systems
VisiJet® M3 PearlStone
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
3D Printing, Photopolymer Jetting
End Uses:
Modeling Material, Dental Applications
VisiJet Pearlstone dental material prints dental models that are accurate, economical to produce and offer the appearance of dental stone.VisiJet Pearlstone is compatible with all intraoral, impression and plaster scanners and prints models for crowns, bridges, orthodontic devices, implants and partial dentures.
3D Systems
VisiJet® M3 X
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
3D Printing, Photopolymer Jetting
End Uses:
Modeling Material, Prototyping
Look, feel and performance of injection molded ABS plastic Ideal for prototyping and product mockups End use applications requiring extreme toughness and high temperature resistance Stunning white finish
Volaprint
Volaprint PLA Soft HT
Polymer Name:
Polylactic Acid (PLA)
Labeling Claims:
Food Contact Acceptable, Biodegradable
Processing Methods:
3D Printing
Volaprint PLA Soft HT natural colored molding compound.
Push Plastic
Push Plastic ABS - 3 kg
Applications:
Tooling & Moldmaking, Other Devices & Assemblies, Sports & Recreation
Product Families:
Thermoplastic Filament, 3D Printing Polymers
Chemical Family:
Acrylonitrile Butadiene Styrene (ABS)
Polymer Name:
Acrylonitrile Butadiene Styrene (ABS)
End Uses:
Prototyping, Modeling Material
ABS - 3kg benefits include Higher strength and flexibility compared to PLA, Higher temperature resistance over PLA, Machinability allows for end-use parts, Finished parts can be vapor smoothed with acetone.
EnvisionTEC
EnvisionTEC Ortho Tough Series (Ortho Tough M, Ortho Tough 3SP)
Polymer Name:
Thermoset (unspecified)
Processing Methods:
3D Printing
EnvisionTEC Ortho Tough Series (Ortho Tough M, Ortho Tough 3SP) is a 3D printing material. Mainly used with E-Appliance for 3D prints dental models.
Fabru
Fabru TPU
Polymer Name:
Thermoplastic Polyurethane (unspecified)
Processing Methods:
3D Printing
End Uses:
Prototyping
Fabru TPU is a thermoplastic elastomer.
Push Plastic
Push Plastic ABS - 25 kg
Applications:
Tooling & Moldmaking, Other Devices & Assemblies, Sports & Recreation
Product Families:
Thermoplastic Filament, 3D Printing Polymers
Chemical Family:
Acrylonitrile Butadiene Styrene (ABS)
Polymer Name:
Acrylonitrile Butadiene Styrene (ABS)
End Uses:
Prototyping, Modeling Material
ABS - 25kg benefits include Higher strength and flexibility compared to PLA, Higher temperature resistance over PLA, Machinability allows for end-use parts, Finished parts can be vapor smoothed with acetone.
3D Systems
DuraForm® TPU Elastomer
Tensile Strength:
2.1 - 2.1 MPa
3D Systems
VisiJet® M3-X
Tensile Strength:
49.0 - 49.0 MPa
3D Systems
VisiJet® SL HiTemp
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Engineering Parts, Automotive Under The Hood, Engineered Applications
VisiJet® SL HiTemp High temperature resistance to 130°C+ (266°F+) Translucent Humidity and chemically resistant with high rigidity Long term stable properties Ideal for under-the-hood component testing
3D Systems
Accura® CeraMAX
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
3D Printing, Stereolithography
End Uses:
Automotive Applications, Aerospace Applications, Engineering Parts, Modeling Material, Prototyping
Tensile Strength:
78.0 - 87.0 MPa
Accura® CeraMAX is a a rigid ceramic-reinforced composite with excellent thermal, moisture and abrasion resistance.applications heat and wear resistant components stiff/rigid assemblies and prototypes composite ceramic-like components esthetic components for art and archival models moisture stable components automotive and aerospace applications a plastic-ceramic composite high thermal resistance excellent abrasion resistance moisture resistant extremely rigid benefits esthetically beautiful white parts withstand temperatures of up to 220°C models that can withstand wear in aggressive applications components can survive in adverse thermal environments components can be plated parts retain properties & dimensions for extended durations.
3D Systems
VisiJet® FTI Black
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Prototyping
VisiJet FTI materials create durable plastic parts with excellent, high resolution detail that are tough enough for functional testing and snap-fit applications.
Carbon Inc.
CarbonResin™ FPU 230
Polymer Name:
Polyurethane (unspecified)
Processing Methods:
Digital Light Synthesis, 3D Printing
CarbonResin™ FPU 230 is an impact, abrasion and fatigue resistant semi-rigid material that is a good choice for parts that must withstand repetitive stresses such as living hinges or friction fits.
Zortrax
Zortrax Z-PETG
Polymer Name:
Polyethylene Terephthalate Glycol (PETG)
Processing Methods:
3D Printing
End Uses:
Prototyping, Machine/Mechanical Parts, Power/Other Tools, Industrial Parts, Containers, Molds/Dies/Tools
Flexural Modulus:
1390.0 - 1390.0 MPa
Z-PETG is an industrial-grade material which offers outstanding resistance to impact of time, most acids and alcohols, and weak alkalies. Its properties include durability and tensile strength. Z-PETG is the best choice for prototypes which will undergo real crash tests, including industrial trials that involve oils and greases. Z-PETG is a blend of the popular PET material and glycol. This helped to eliminate the brittleness of models and boost their durability. Z-PETG will support your innovative ideas with its low shrinkage level, and allow you to create prototypes of complex mechanisms, automotive parts, and manufacturing tools unaffected by some chemicals.
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