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3D Printing Polymers
Products in 3D Printing Polymers
448 Products found in 3D Printing Polymers
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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.
3D Systems
DuraForm® TPU Elastomer
Tensile Strength:
2.1 - 2.1 MPa
FKuR
Bio-Flex® 3D Clear
Density:
1250.0 - 1250.0 kg/m³
Bio-Flex® 3D Clear by FKuR is comprised of Polylactic Acid. It is commonly used
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.
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.
Formlabs
Formlabs Dental SG
Processing Methods:
3D Printing
End Uses:
Dental Applications, 3D Printing Resins
Formlabs Dental SG is specifically designed to work with your Form 2 3D Printer. After being post-cured, this material can be steam sterilized in an autoclave, or by gamma-ray sterilization.
EnvisionTEC
EnvisionTEC Q-VIEW
Polymer Name:
Thermoset (unspecified)
Processing Methods:
3D Printing
EnvisionTEC Q-View is ideal for providing fast design verification models. This exciting material is capable of impressive print speeds on EnvisionTEC’s cDLM (Continuous Digital Light Manufacturing) 3D printers.
FKuR
Bio-Flex® F 7510
Density:
1250.0 - 1250.0 kg/m³
Bio-Flex® F 7510 by FKuR is comprised of Polylactic Acid. It is commonly used
3D Systems
VisiJet® FTX Gold
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Modeling Material, Prototyping, Mold Making
VisiJet FTX Gold and FTX Silver provide metallic appearanceUV Curable PlasticMetallic gold appearance
3D Systems
Accura® Amethyst
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
Features Accurate, high-resolution master patterns High resolution in X, Y, and Z dimensions Manufacture master patterns for jewelry and other microcasting applications
Solaxis
Solaxis Nylon 12
Applications:
Interior, Interior Fixtures, Tooling & Moldmaking
Product Families:
Other 3D Printing Polymers, 3D Printing Polymers
Chemical Family:
Polyamides
Polymer Name:
Polyamide 12 (PA 12)
End Uses:
Prototyping, 3D Printing Applications
Solaxis Nylon 12 is the first material in Stratasys’ family of nylon offerings, complementing the current portfolio of FDM® materials and enabling new applications requiring: repetitive snap fits, high fatigue resistance, strong chemical resistance and press (friction) fit inserts. FDM Nylon 12 is primarily used in aerospace, automotive and consumer goods industries to take on everything from tooling, jigs and fixtures to covers, panels and vibration resistant components. For use with Fortus 380mc™, 450mc™ and 900mc™ 3D Printers, FDM Nylon 12 offers unparalleled toughness and a simple, clean process – free of powders.
3D Systems
FabPro™ Tough BLK
Tensile Strength:
44.0 - 44.0 MPa
Extrudr
XPETG MATT Black
Polymer Name:
Polyethylene Terephthalate Glycol (PETG)
Processing Methods:
3D Printing
End Uses:
Consumer Applications, Toys, Industrial Parts, 3D Printing Applications, Prototyping
XPETG MATT Black is one of the world‘s most common thermoplastic polymers. Extrudr XPETG Matt was developed for a wide range of applications where the main requirement is a good balance between mechanical and optical material properties. The raw material is approved according to the REACH- and RoHS-Standards.
Push Plastic
Push Plastic High Heat + Tough PLA - 1 kg
Polymer Name:
Polylactic Acid (PLA)
Labeling Claims:
Biodegradable
Processing Methods:
3D Printing, Fused Filament Fabrication
High Heat PLA (Polylactic Acid) 3D Printing Filament engineered to deliver improved heat-resistance and high impact strength to 3D printed parts, this formulated grade achieves thermal and mechanical properties similar to ABS while offering an alternative to styrenic-based materials. Printed parts made from this PLA can be heat treated, which can obtain properties that exceed ABS. To achieve a heat treat on a printed part, submerge in water (or bake in oven) at 100-120C for up to 30 minutes. Manufactured in the USA using High Heat PLA 3D870 resin. This material is a great substitute for normal PLA when greater heat resistance and impact strength is desired.
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
VisiJet® M2 EBK
Tensile Strength:
0.2 - 0.4 MPa
Essentium
ESSENTIUM HTN
Polymer Name:
Polyamide (unspecified)
End Uses:
Molds/Dies/Tools, Gears, Electrical Housing
Density:
1200.0 - 1200.0 kg/m³
Essentium HTN (high-temperature nylon) is a polyamide based chemistry that has improved mechanical and thermal properties compared to standard nylons. Additionally, it is an easy-to-print, low-warp material that boasts high toughness and wear resistantance. This material is a drop-in replacement for Acetal (Delrin®) and has best-in-class slow moisture absorption.
Formlabs
Formlabs Tough 1500
Processing Methods:
Thermoforming, 3D Printing
End Uses:
Electronic Accessory Cases, Prototyping, 3D Printing Resins, Consumer Applications, Thermoforming Applications, 3D Printing Applications
Formlabs Tough 1500 is the strongest and stiffest material in our functional family of Tough and Durable Resins.
NANOVIA
NANOVIA PETG CF Carbon fibre reinforced
Polymer Name:
Polyethylene Terephthalate Glycol (PETG)
Processing Methods:
Fused Filament Fabrication, 3D Printing
Nanovia PETG CF allows for the creation of functional projects with ease thanks to its carbon fiber reinforced structure. Nanovia PETg CF allows for the creation of structural 3D prints with low warping thanks to its compound carbon fibers structure. This composite 3D filament has been specially designed to be compatible with standard 3D printers equipped with a heated bed.
Asiga
Asiga FusionGRAY
Processing Methods:
Injection Molding
End Uses:
Tooling
Asiga FusionGRAY is a high temperature material for injection mold tooling inserts. It reduce time to market with FusionGRAY for rapid tooling and digital manufacturing. It is resistant to temperatures to to 160°C / 320°F with excellent compressive strength. The Layer thickness range from 10 microns.
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.
Essentium
ESSENTIUM PET-CF
Polymer Name:
Polyethylene Terephthalate (PET)
End Uses:
Electrical Housing, Prototyping, Automotive Exterior Parts, Automotive Brackets, Molds/Dies/Tools, Automotive Interior Parts
Density:
1400.0 - 1400.0 kg/m³
Essentium PET-CF is a 15% carbon fiber reinforced polyester filament made with Luvocom® 3F resin from Lehvoss. Polyethylene terephthalate (PET) is a semicrystalline polyester commonly used in soda bottles and automotive parts when reinforced with a fiber-filler. This material is one of the easiest filaments in our portfolio to print and has an outstanding price-to-performance ratio. PET-CF has a good balance of stiffness and strength, and when annealed it has temperature resistance of over 155˚C, and good chemical resistance for common solvents.
Elogio AM
Elogio AM PEEK Filament
Polymer Name:
Polyetheretherketone (PEEK)
Processing Methods:
Fused Filament Fabrication
End Uses:
Oil/Gas Applications, Automotive Interior Parts, Automotive Applications, Aerospace Applications, Automotive Exterior Parts, Medical/Healthcare Applications
Flexural Modulus:
3900.0 - 3900.0 MPa
Polyether Ether Ketone (PEEK) PEEK is a semicrystalline thermoplastic with excellent mechanical and chemical resistance properties that are retained to high temperatures. PEEK is regarded as one of the highest performing engineering thermoplastics in the world. PEEK is used to fabricate items used in demanding applications in aerospace, automotive, oil and gas and medical industries.
Push Plastic
Push Plastic PLA - 3 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.
3D Systems
VisiJet® M2 ENT
Tensile Strength:
0.2 - 0.4 MPa
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
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
Volaprint
Volaprint Nylon D65 schwarz
Applications:
Equipment & Parts, Other Industrial Applications, Other Consumer Goods Applications
Product Families:
Thermoplastic Filament, 3D Printing Polymers
Chemical Family:
Polyamides
Polymer Name:
Polyamide 12 (PA 12)
End Uses:
Pneumatic Applications, Industrial Applications, Hydraulic Applications
Volaprint Nylon D65 schwarz schwarz is a black molding compound.
3D Systems
VisiJet® M3 Stoneplast
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
3D Printing, Photopolymer Jetting
End Uses:
Modeling Material, Dental Applications
VisiJet Stoneplast Dental Model Material provides for low-cost, convenient production of dental models directly from digital data for dentists and dental labs looking to streamline workflow, reduce turn-around time and improve accuracy and quality.
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.
Fabru
Fabru ABS
Polymer Name:
Acrylonitrile Butadiene Styrene (ABS)
Processing Methods:
3D Printing
End Uses:
Prototyping
Fabru ABS has general chemical resistance.
Push Plastic
Push Plastic PETG - 1 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.
Volaprint
Volaprint TPE 90 Natur
Polymer Name:
Thermoplastic Elastomer (unspecified)
Processing Methods:
3D Printing
End Uses:
Mold Making
Volaprint TPE 90 Natur colored molding compound.
3D Systems
VisiJet® FTI Zoom
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.
Zortrax
Zortrax BlueCast X10 LCD/DLP
Polymer Name:
Thermoplastic (unspecified)
Processing Methods:
Digital Light Processing, 3D Printing
End Uses:
Consumer Applications, Jewelry
Advanced castable 3D printing resin designed to guarantee smooth surfaces and precise details in relatively big models. BlueCast X10 makes it possible to print jewelry pieces requiring large amounts of metal. It exhibits properties nearly identical to wax and thus can be processed with the same toolset. Full burnout is possible at a relatively low temperature of 740° C. The resin requires post-curing only when post processing techniques like polishing are to be applied to the 3D printed pattern. Otherwise, post-curing is not necessary. Storing a pattern for 7 days causes a negligible 0.7% shrinkage which is particularly useful when patterns need to be made in advance. The resin can lose color when exposed to UV light. It is completely normal and does not affect its specified properties.
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