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3D Printing Polymers
Products in 3D Printing Polymers
448 Products found in 3D Printing Polymers
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EnvisionTEC
EnvisionTEC E-GUARD
Polymer Name:
Thermoset (unspecified)
Processing Methods:
3D Printing
EnvisionTEC E-Guard is a biocompatible, crystal clear material for the production of accurate splints and retainers. The results produced by combining E-Gard with EnvisionTEC technology are superior to traditional methods of manufacturing bite guards and night guards.
EnvisionTEC
EnvisionTEC E-PARTIAL
Polymer Name:
Thermoset (unspecified)
Processing Methods:
3D Printing
Density:
1100.0 - 1110.0 kg/m³
Tensile Strength:
57.0 - 57.0 MPa
EnvisionTEC E-Partial was developed for building partials where some flex is required. E-Partial material maintains flexural strength to ensure clasp flex without breakage. The stiffness of the material allows for the production of a very hard retention grid and super tight thin clasps to deliver a metal partial with the perfect every time.
Solaxis
Solaxis PC-ISO
Polymer Name:
Polycarbonate (PC)
Processing Methods:
3D Printing
End Uses:
3D Printing Applications, Prototyping
Features:
High Durability, Very Good Heat Resistance, High Strength
Solaxis PC-ISO an industrial thermoplastic, is biocompatible (ISO 10993 USP Class VI)* and can be gamma or EtO sterilized. PC-ISO is commonly used in food and drug packaging and medical device manufacturing because of the material’s strength and medical compatibility. When combined with a Fortus® 3D Printer, PC-ISO gives you parts that can be used for conceptual modeling, functional prototyping, and production parts.
Volaprint
Volaprint Nylon EL
Polymer Name:
Polyamide (unspecified)
Processing Methods:
3D Printing
End Uses:
Mold Making
Volaprint Nylon EL Antistatic / conductive nylon polymer.
EnvisionTEC
EnvisionTEC R11
Polymer Name:
Thermoset (unspecified)
Processing Methods:
3D Printing
Tensile Strength:
50.0 - 50.0 MPa
EnvisionTEC R11 is a liquid photopolymer that produces robust, accurate and functional parts. The material offers superior chemical resistance, a wide processing latitude, and excellent tolerance to a broad temperature and humidity range during and after build.
Push Plastic
Push Plastic PC + PBT - 3 kg
Polymer Name:
PC/PBT Alloy
Processing Methods:
Fused Filament Fabrication, 3D Printing
End Uses:
Modeling Material
PC+PBT (Polycarbonate + Polybutylene Terephthalate) 3D Printing Filament. PC + PBT - 1 kg benefits include Superior stiffness/ductility balance, Great structural integrity and drop impact performance, Excellent fatigue performance, High chemical resistance to motor oil and grease.
3D Systems
Accura® CastPro Free (SL 7800)
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
Features Produce accurate QuickCast™ patterns Excellent humidity/moisture resistance Free of antimony for cleaner burnout
EnvisionTEC
EnvisionTEC RCP Series (RCP30 M, RCP30, RC70 M, RC70, RC90 M, RC90)
Polymer Name:
Thermoset (unspecified)
Processing Methods:
3D Printing
Tensile Strength:
39.0 - 39.0 MPa
EnvisionTEC RCP Series (RCP30 M, RCP30, RC70 M, RC70, RC90 M, RC90) is a popular line of photosensitive resins that contain ceramic particles, EnvisionTEC’s RC materials build tough and stiff parts at very high resolutions.
Extrudr
Extrudr Flex Medium Blue
Polymer Name:
Polycaprolactone (PCL), Thermoplastic Polyester
Processing Methods:
Fused Filament Fabrication
End Uses:
Toys, Prototyping, Consumer Applications, Industrial Parts, 3D Printing Applications
Density:
1190.0 - 1190.0 kg/m³
Extrudr Flex Medium Blue is a durable elastomere based on Polycaprolacton-Polyester. It was specially developed for industrial applications and is ideally suited for the production of elastic and damping components. The material is optimized for the FFF/FDM process in regards to thermal stability and better flow properties. The raw material is compliant according to the REACH- and RoHS-Standards.
3D Systems
Accura® SL 5530
End Uses:
Industrial Applications, Automotive Under The Hood, Electrical/Electronic Applications, Automotive Interior Parts, Automotive Applications, Household Goods, Automotive Exterior Parts
Tensile Strength:
57.0 - 63.0 MPa
Adaptive3D Technologies
Soft ToughRubber™
End Uses:
3D Printing Applications
Tensile Strength:
1.5 - 1.5 MPa
Soft ToughRubber™ is a tough, 3D printable photopolymer. It combines the feel and mechanical properties of silicone with the resolution and surface finish that Digital Light Processing® (DLP) printing provides.
Farsoon Technologies
Farsoon Technologies FS 3300PA-F
Polymer Name:
Polyamide 1212 (PA 1212)
Processing Methods:
3D Printing, Selective Laser Sintering
End Uses:
Truck Air Brake Tubes, Automotive Coolant Pipes, Flexible Grips
Features:
Good Processability, Dimensional Stability, Good Toughness, Good Mechanical Properties, Oxidation Resistant
Tensile Strength:
40.0 - 50.0 MPa
Farsoon Technologies FS 3300PA-F is considered for use in Powder Bed Fusion, e.g. Laser Sintering. The black powder is optimized for absorbance of Fiber Laser Light for fast melting. It shows good oxidation resistance, good dimensional stability, excellent mechanical properties especially balance of strength and toughness, and easy for processing. Suitable for products with high mechanical properties and toughness requirements, parts manufacturing or smaller parts made with adhesives, as well as complex parts and plastic models, automotive pipelines, brake tubes, stocks, grips, trigger retainers, etc.
NANOVIA
NANOVIA PA-6 CF Carbon fiber reinforced
Polymer Name:
Polyamide 6 (PA 6)
Processing Methods:
3D Printing, Fused Filament Fabrication
End Uses:
Prototyping, Machine/Mechanical Parts, Automotive Components, Automotive Interior Parts
Nanovia PA-6 CFcarbon fibers reducing shrinkage (warping), makes it possible to print polyamide (nylon) more simply and quickly. This FDM filament is perfectly suited to printing mechanical parts with a shock absorption capacity and good heat resistance up to 100°C. Nanovia PA-6 CF is widely used in industry, especially automotive. It is thus used to produce functional prototypes, mechanical parts or even hinges or cogs.
Solaxis
Solaxis Nylon 6 FR - PA 6 flame retardant
Polymer Name:
Polyamide 6 (PA 6)
Processing Methods:
3D Printing, Selective Laser Sintering
End Uses:
Prototyping, 3D Printing Applications
Features:
Chemical Resistant, Good Thermal Stability, Excellent Mechanical Strength, High Fatigue Resistance, High Strength
Solaxis Nylon 6 FR - PA 6 flame retardant is a strong and tough FST engineering-grade SLS thermoplastic It shows very good mechanical properties, such as high modulus, high strength and excellent thermal distortion stability. This material meets flammability standards, and is suitable for aerospace and automotive applications. It can fulfill the requirements of functional applications regarding high accuracy and mechanical strength as well as high heat distortion temperature – properties.
3D Systems
Accura® CastPro
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
Tensile Strength:
52.0 - 53.0 MPa
Features Produce accurate QuickCast™ patterns Excellent humidity/moisture resistance High production speed
Formlabs
Formlabs Clear
Processing Methods:
Thermoforming, 3D Printing
End Uses:
Consumer Applications, Thermoforming Applications, 3D Printing Applications, Prototyping, 3D Printing Resins
Formlabs Clear Resin is great for fluidics and moldmaking, optics, lighting, and any parts requiring translucency.
3D Systems
VisiJet® FTX Clear
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Modeling Material, Prototyping, Mold Making
VisiJet FTX Clear creates models with a crystal-like appearanceUV Curable PlasticTransparent Tough
Ultimaker
Ultimaker PETG
Polymer Name:
Polyethylene Terephthalate Glycol (PETG)
Processing Methods:
3D Printing, Fused Filament Fabrication
End Uses:
Rigid Films, Connectors, Tooling, Prototyping, Rigid Packaging
Density:
1270.0 - 1270.0 kg/m³
Ultimaker PETG sets the standard for industrial applications. Easy to use and versatile, it’s the best PETG on the market for Ultimaker 3D printers, and is suitable for a wide range of use cases.
Essentium
ESSENTIUM TPU 58D-AS
Polymer Name:
Thermoplastic Polyurethane (unspecified)
End Uses:
Molds/Dies/Tools, Covers
Density:
1210.0 - 1210.0 kg/m³
Essentium’s TPU 58D-AS is an industry-first ESD safe and anti-static 58D Shore hardness thermoplastic polyurethane filament that is available in a variety of colors. This cutting-edge material resulted from a close collaboration between Croda and Essentium to develop an exclusive anti-static filament line based on Croda Ionphase™ permanent antistatic additives. It has excellent impact strength, tear strength, and abrasion resistance and is safe for clean room and electronics manufacturing applications.
Farsoon Technologies
Farsoon Technologies FS 3300PA
Tensile Strength:
46.0 - 46.0 MPa
Farsoon Technologies FS 3300PA produces prototype pieces and end-use parts with high mechanical properties and toughness. Farsoon considers material to part of its core competency. Farsoon’s experienced material department has independently developed a portfolio of polymer materials for additive manufacturing. In addition Farsoon’s fully capable material manufacturing is able to vertically control the production of the material from raw material to finished product, ensuring quality and stability. With excellent color stability, oxidation resistance, Farsoon polymer materials produce high quality parts which provide both detailed surface precision and high mechanical properties. In addition Farsoon partners with many material suppliers to bring new and advanced materials to the users through Farsoon’s open material policy.
Push Plastic
Push Plastic ABS - 10 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 - 10kg 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.
Farsoon Technologies
Farsoon Technologies FS 3400CF
Polymer Name:
Polyamide (unspecified)
Processing Methods:
3D Printing, Selective Laser Sintering
End Uses:
Aerospace Applications, Machine/Mechanical Parts, Automotive Exterior Parts
Features:
Good Stiffness, Good Thermal Stability, High Strength, High Hardness
Tensile Strength:
65.0 - 70.0 MPa
Farsoon Technologies FS 3400CF produce parts with high strength and hardness. Farsoon considers material to part of its core competency. Farsoon’s experienced material department has independently developed a portfolio of polymer materials for additive manufacturing. In addition Farsoon’s fully capable material manufacturing is able to vertically control the production of the material from raw material to finished product, ensuring quality and stability. With excellent color stability, oxidation resistance, Farsoon polymer materials produce high quality parts which provide both detailed surface precision and high mechanical properties. In addition Farsoon partners with many material suppliers to bring new and advanced materials to the users through Farsoon’s open material policy.
3D Systems
Accura® 60
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
3D Printing, Stereolithography
End Uses:
Bottles, Lighting Applications, Cosmetic Packaging
Tensile Strength:
58.0 - 68.0 MPa
Features Clear and transparent Rigid and strong Great for investment casting patterns Headlamps, bottles and transparent assemblies
Zortrax
Zortrax Z-ULTRAT
Flexural Modulus:
1850.0 - 1850.0 MPa
Z-ULTRAT is a material characterized by high impact resistance, which gives your models a uniform surface texture. This all-purpose material allows you to 3D print elements requiring durability, such as end-use parts, which, after continued use, keep their initial shape over time. With Z-ULTRAT, you can produce objects with properties comparable to those of models manufactured using injection molding technology, including functional prototypes, test casings, and mechanical parts. Z-ULTRAT allows you to test your tailor-made projects in unlimited ways, in one of twenty-two shades.
Push Plastic
Push Plastic ASA - 750g
Polymer Name:
Acrylonitrile Styrene Acrylate (ASA)
Processing Methods:
Fused Filament Fabrication, 3D Printing
End Uses:
Modeling Material, Automotive Exterior Parts
ASA (Acrylonitirle Styrene Acrylate) 3D Printing Filament- 750grams made from premium UV-resistant resin. Printed parts made from this material offer exceptional UV-stability making it a great choice for outdoor applications. ASA also exhibits excellent mechanical and thermal properties. Manufactured in the USA by Push Plastic using premium ASA resin. This material is a great substitute for normal ABS when resistance to outdoor exposure is needed.Manufactured from 100% virgin resin and then spooled onto 750 gram reels, the filament is then vacuum-sealed with desiccant.
Fun To Do
Fun To Do Standard Blend
Processing Methods:
Digital Light Processing
End Uses:
3D Printing Resins
Our Fun To Do Standard Blend is a real multi purpose resin, most cost effective for printing your day to day objects. The fully cured resin has a hardness of 35 shore D. .
Essentium
ESSENTIUM TPU 90A FLAME RETARDANT
Polymer Name:
Thermoplastic Polyurethane (unspecified)
End Uses:
Protective Coverings, Flexible Grips, Gaskets, Belts & Belt Repair, Plugs, Living Hinges
Density:
1250.0 - 1250.0 kg/m³
Essentium Flame Retardant TPU 90A has been engineered to have the perfect balance of elasticity and toughness. This filament exhibits excellent interlayer adhesion and high strain at break; the base resin is UL94 V0 certified for flame retardancy and printed samples pass FAA FAR 25.853(a) 12 and 60 second vertical flame tests for 1/16” and 1/4” thickness. Our TPU 90A FR filament is perfect for a print that needs inherent flame retardant properties with flexibility, grip, and abrasion resistance. Use this material to make flexible hinges, belts, plugs, gaskets, protective cases, overgrips, wheels, vibration dampeners, energy-absorbing lattices, and so much more.
3D Systems
VisiJet® M2 EBK
Tensile Strength:
0.2 - 0.4 MPa
Farsoon Technologies
Farsoon Technologies FS 1092A - TPU
Tensile Strength:
18.0 - 18.0 MPa
Farsoon Technologies FS 1092A - TPU provides superb elongation and low processing temperature. Farsoon considers material to part of its core competency. Farsoon’s experienced material department has independently developed a portfolio of polymer materials for additive manufacturing. In addition Farsoon’s fully capable material manufacturing is able to vertically control the production of the material from raw material to finished product, ensuring quality and stability. With excellent color stability, oxidation resistance, Farsoon polymer materials produce high quality parts which provide both detailed surface precision and high mechanical properties. In addition Farsoon partners with many material suppliers to bring new and advanced materials to the users through Farsoon’s open material policy.
NANOVIA
NANOVIA ABS ESD Anti electric shock
Polymer Name:
Acrylonitrile Butadiene Styrene (ABS)
Processing Methods:
Fused Filament Fabrication, 3D Printing
End Uses:
Housings, Connectors
Nanovia ABS ESD is a powder carbon based composite specifically designed to be used in conjunction with sensitive electronic equipment. Preventing the build-up of static electricity.
3D Systems
VisiJet® CF-BK
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Engineering Parts
VisiJet® CF-BK Black Rubber-like Material Rubber-like look and feel Extreme flexibility Absorbs shocks and impacts to enhance durability
3D Systems
Accura® 55
Polymer Name:
Acrylonitrile Butadiene Styrene (ABS)
Processing Methods:
Stereolithography, 3D Printing
Tensile Strength:
63.0 - 68.0 MPa
Features Rigid and strong Functional assemblies Short-run production parts
Fabru
Fabru PETG
Polymer Name:
Polyethylene Terephthalate Glycol (PETG)
Processing Methods:
3D Printing
End Uses:
Prototyping
Fabru PETG is a Polyethylene.
3D Systems
Accura® Peak
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Engineering Parts, Modeling Material, Prototyping
Tensile Strength:
57.0 - 78.0 MPa
A hard, accurate plastic with excellent moisture and temperature stability.Applications High temperature requirements Test of water and fluid handling components Wind tunnel models Master patterns Fixtures, gages and jigs Features High stiffness Excellent accuracy Best in class moisture stability Elevated temperature resistance Benefits Stable and rigid parts that withstand adverse environments Outstanding stiffness for demanding applications Ideal for parts requiring high thermal and moisture resistance
Carbon Inc.
CarbonResin™ UMA 90
Polymer Name:
Polyurethane Thermoset Elastomer (unspecified)
Processing Methods:
Digital Light Synthesis, Selective Laser Sintering
End Uses:
General Purpose
CarbonResin™ UMA 90 is an easy-to-use single cure resin with enhanced toughness, appropriate for use in prototypes and manufacturing jigs and fixtures.
Solaxis
Solaxis Nylon 6
Applications:
Interior, Interior Fixtures, Tooling & Moldmaking
Product Families:
Other 3D Printing Polymers, 3D Printing Polymers
Chemical Family:
Polyamides
Polymer Name:
Polyamide 6 (PA 6)
End Uses:
Prototyping, 3D Printing Applications
Solaxis Nylon 6 combines strength and toughness superior to other FDM thermoplastics, for applications that require strong, customized parts and tooling that lasts longer and withstands rigorous functional testing. Engineered with nylon 6, a popular thermoplastic for manufacturing, this material works with the Fortus 900mc™ to produce durable parts with a clean finish and high break resistance. FDM Nylon 6 is ideal for product manufacturers and development engineers in automotive, aerospace, consumer goods and industrial manufacturing.
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