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3D Printing Polymers
Products in 3D Printing Polymers
448 Products found in 3D Printing Polymers
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Floreon
Floreon Therma Tech Flame Retarded Grade
Polymer Name:
Polylactic Acid (PLA)
Additives Included:
Flame Retardant, Nucleating Agent, Impact Modifier
Labeling Claims:
From Renewable Resources, Recyclable, Biodegradable, Plant-Based
Processing Methods:
3D Printing, Extrusion, Injection Molding
Density:
1260.0 - 1260.0 kg/m³
Floreon Therma Tech Flame Retarded Grade is a PLA based compound intended for durable applications requiring flame retardancy. This developmental grade contains a flame retardant, impact modifier, nucleating agent. The material is based on PLA and is designed as a drop in replacement for ABS in injection molding, extrusion and 3D printing. Drying of the material is recommended to ensure melt stability and limit degradation of the material during processing.
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
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
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
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 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.
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.
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.
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.
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.
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-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 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.
3D Systems
VisiJet® FTI Blue
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.
3D Systems
VisiJet® PXL
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Engineering Parts, Modeling Material, Prototyping
The VisiJet® line of materials offers numerous capabilities to meet a variety of commercial applications. Using the ColorJet Printing (CJP) technology, 3D Systems' ProJet® x60 3D Printers use the VisiJet® PXL™ material set to build strong, high-definition, full color concept models, assemblies and prototypes, for design realization, advanced communication, as well as development and production cost reduction. Printed models benefit transportation, energy, consumer products, recreation, healthcare, education and other vertical markets. Parts can be sanded, drilled, tapped, painted and electroplated, which further expands the options available for finished part characteristics. Additionally, models have high-temperature resistance, ideal for digital manufacturing and molding applications.Our premium composite for the ProJet x60 product line, VisiJet PXL delivers the best of everything: Toughest parts Best resolution Whitest whites Excellent color accuracy Low cost per printed part
Ultimaker
Ultimaker Tough PLA
Polymer Name:
Polylactic Acid (PLA)
Processing Methods:
Fused Filament Fabrication, 3D Printing
End Uses:
Prototyping
Density:
1220.0 - 1220.0 kg/m³
Flexural Modulus:
2490.0 - 2490.0 MPa
Ultimaker Tough PLA is a technical PLA filament with toughnesscomparable to Ultimaker ABS. Ideal for reliably printing technical modelsat large sizes, our Tough PLA offers the same safe and easy use asregular PLA.
Essentium
ESSENTIUM TPU 80A LOW FRICTION
Density:
1110.0 - 1110.0 kg/m³
Essentium’s TPU 80A Low Friction is the lowest durometer filament in our broad flexible portfolio. Currently, it is the softest 3D printing material that can be printed on any open-source printer. It has excellent elongation at break and impact strength. This filament has a low friction surface that allows for easier feeding while printing.
Elogio AM
Elogio AM ABS ESD Filament
Polymer Name:
Acrylonitrile Butadiene Styrene (ABS)
Processing Methods:
Fused Filament Fabrication
End Uses:
Housings, Industrial Connectors
Density:
1030.0 - 1030.0 kg/m³
ABS ESD Filament has been designed for protection of electronic devices which are sensitive to electrostatic discharges. The material prevents the risk of damage to vulnerable electronic components due to its dissipative properties. Its surface resistivity ranging from 10^7 to 10^9 Ohm. The filament is ideal for industrial applications like housings / casings for connectors, sensors and measuring devices. Available in black and its natural color.
3D Systems
VisiJet® SL Jewel
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Jewelry, Molds/Dies/Tools, Modeling Material
VisiJet® SL Jewel Direct casting of jewelry patterns High contrast blue color Reduce cost and speed process with stone-in-place casting Models requiring high detail Excellent resolution and accuracy
Volaprint
Volaprint HIPS Natur
Polymer Name:
High Impact Polystyrene (HIPS)
Processing Methods:
3D Printing
End Uses:
Mold Making
Volaprint HIPS Natur is a natural colored molding compound.
Fabru
Fabru MABS
Polymer Name:
Methyl Methacrylate Acrylonitrile Butadiene Styrene (MABS)
Processing Methods:
3D Printing
End Uses:
Prototyping
Fabru MABS is Copolymer of methyl methacrylate, butadiene and styrene which is scratch resistance.
Push Plastic
Push Plastic PETG - 3 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.
Solaxis
Solaxis Nylon 11 - PA 11 - Polyamide 11
Applications:
Other Consumer Goods Applications, Tooling & Moldmaking, Chemical & Industrial Manufacturing
Product Families:
Other 3D Printing Polymers, 3D Printing Polymers
Chemical Family:
Polyamides
Polymer Name:
Polyamide 11 (PA 11)
End Uses:
Prototyping, 3D Printing Applications
Solaxis Nylon 11 - PA 11 - Polyamide 11 is a strong and tough engineering-grade SLS thermoplastic and parts produced with this material show a high elongation at break, elasticity and high impact resistance. Typical applications are in environments where high deformations and/or exposure to special surroundings may occur.
GEHR
FIL-A-GEHR® PEEK
Polymer Name:
Polyetheretherketone (PEEK)
End Uses:
Aerospace Applications, Aircraft Interiors
Density:
1290.0 - 1290.0 kg/m³
FIL-A-GEHR® PEEK is a Polyetheretherketone ranks among the high Performance thermoplastics thanks to its high melting point of 343 °C and its maximum continuous operating temperature of 260 °C. Its particular chemical structure makes PEEK largely stable against thermal and chemical damage and permits its usage inside the body. In case of fire, the smoke development of PEEK is the lowest of all thermoplastics; the material is therefore used in aviation. FIL-A-GEHR PEEK® is an experimental filament with a processing temperature of 375 °C in the heated chamber (180 °C). The material is specifically apt for use on 3D printers.
Fabru
Fabru TPC
Polymer Name:
Thermoplastic Copolyester Elastomer (TPC-ET)
Processing Methods:
3D Printing
End Uses:
Prototyping
Fabru TPC is a Copolymer of ethylene and other unsaturated monomer.
3D Systems
DuraForm® PA
Polymer Name:
Polyamide (unspecified)
Processing Methods:
Selective Laser Sintering, 3D Printing
End Uses:
Prototyping, Housings, Connectors, Computer Components, Machine/Mechanical Parts, Medical/Healthcare Applications, Sporting Goods, Consumer Applications, Automotive Interior Trim, Aerospace Applications
Density:
1000.0 - 1000.0 kg/m³
Tensile Strength:
43.0 - 43.0 MPa
Durable polyamide (nylon) material for real-world physical testing and functional use.Applications Complex, thin-wall ductwork Functional prototypes that approach end-use performance properties Appropriate for low-to-mid-volume rapid manufacturing Medical applications requiring USP Class VI compliance, or biocompatibility Motorsports Aerospace Housing and enclosures Impellers and connectors Consumer sporting goods Vehicle dashboards and grilles Snap-fit designs Parts requiring machining or joining with adhesives Features Excellent surface resolution and feature detail Easy-to-process Compliant with USP Class VI testing Compatible with autoclave sterilization Good chemical resistance and low moisture absorption Benefits Nicely balanced mechanical properties and processability Build prototypes that withstand functional testing Produce durable end-use parts without tooling Create accurate and repeatable parts as demanded by manufacturers Machinable and paintable for demonstration parts
3D Systems
Accura® Sapphire
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Stereolithography, 3D Printing
End Uses:
Jewelry, Molds/Dies/Tools, Modeling Material, Mold Making
An accurate print material for jewelry and fine featured pattern productionApplications Jewelry manufacturing Direct casting Master pattern production Models requiring high detail Features Outstanding accuracy 0.025mm layer thickness capability Low ash formulation Benefits Fine features are faithfully reproduced Easy feature visualization Material can be burned out for direct casting
EnvisionTEC
E-SHELL® 500 SERIES
Polymer Name:
Thermoset (unspecified)
Processing Methods:
3D Printing
E-shell® 500 Series has been designed especially for applications in thehearing aid industries and is distinguished for soft durability. The material is a liquid, photo-reactive acrylate for building functional parts.
Taulman 3D
Taulman 3D Alloy 910 HDT
Polymer Name:
Polyamide 6/69 Copolymer
Processing Methods:
Fused Filament Fabrication, 3D Printing
End Uses:
Prototyping, Automotive Exterior Parts, Automotive Components, 3D Printing Applications, Industrial Parts, Automotive Interior Parts
Taulman 3D Alloy 910 HDT is a newly released material, developed to incorporate the legendary printing characteristics of Alloy 910 with additional heat deflection and thermal resistance properties. Many of our customers are placing their 3d printed parts close to heat sources and this led to requests for a higher degree of heat and thermal resistance. In turn, we developed Alloy 910 HDT.
Zortrax
Zortrax Z-ESD
Polymer Name:
Thermoplastic (unspecified)
Processing Methods:
3D Printing
End Uses:
Housings, Tooling, Industrial Parts
Flexural Modulus:
1500.0 - 1500.0 MPa
Z-ESD is a material which perfectly fits the needs of the industrial sector, especially the electrical and electronics industries. It is durable, warpage resistant, and provides protection against electrostatic discharge which can be particularly damaging to electronic equipment. This unique property can significantly help to reduce the loss of electronic components and generate savings. Z-ESD allows you to print functional objects, elements and casings containing highly sensitive electronics, and tools used for control processes.
3D Systems
VisiJet® CR-BK
Tensile Strength:
37.0 - 48.0 MPa
Farsoon Technologies
Farsoon Technologies FS 3401GB
Polymer Name:
Polyamide (unspecified)
Processing Methods:
3D Printing, Selective Laser Sintering
End Uses:
Machine/Mechanical Parts, Electrical Parts, Automotive Coolant Pipes
Features:
Excellent Surface Properties, Good Mechanical Properties, Good Thermal Stability, Abrasion Resistant, Good Processability, Dimensional Stability
Tensile Strength:
44.0 - 44.0 MPa
Farsoon Technologies FS 3401GB produce parts with high mechanical properties and good abrasive resistance. 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.
Elogio AM
Elogio AM PLA Filament
Polymer Name:
Polylactic Acid (PLA)
Processing Methods:
Fused Filament Fabrication
End Uses:
Tooling, Prototyping, Automotive Exterior Parts, Automotive Applications, Modeling Material, Containers, Automotive Interior Parts
Density:
1240.0 - 1240.0 kg/m³
Elogio AM PLA Filament (Polylactic Acid) is a biodegradable plastic coming from renewable organic resources (corn starch or sugarcane). PLA Filament is recyclable but can also be biological decomposed in composting plants.PLA is a polyester that is built from several lactic acid units. It is colorless and transparent. PLA has a density of about 1.25 kg/cm3. Polymers made of lactic acid are flammable.
Push Plastic
Push Plastic PMMA
Polymer Name:
Polymethyl Methacrylate (PMMA)
Processing Methods:
Fused Filament Fabrication, 3D Printing
End Uses:
Modeling Material
PMMA is commonly used as a replacement for glass and is very clear in it's natural form. This material also has the ability to be acetone smoothed to give a truly clear print!
Volaprint
Volaprint Nylon natur
Applications:
Other Packaging Materials, Equipment & Parts, Other Industrial Applications
Product Families:
Thermoplastic Filament, 3D Printing Polymers
Chemical Family:
Polyamides
Polymer Name:
Polyamide 12 (PA 12)
End Uses:
Rigid Films, Rigid Packaging, Industrial Applications
Volaprint Nylon natur colored molding compound.
Elogio AM
Elogio AM PETG Carbon Filament
Polymer Name:
Polyethylene Terephthalate Glycol (PETG)
Processing Methods:
Fused Filament Fabrication
End Uses:
Automotive Exterior Parts, Automotive Interior Parts, Automotive Applications, Tooling
Density:
1317.0 - 1317.0 kg/m³
PETG Carbon Filament is a Polyethylene Terephthalate reinforced with carbon fibers. Due to the carbon fibers compounded in the PETG you can create 3D printed parts with exceptional stiffness, great dimensional stability and excellent suface quality. This filament is highly suitable for printing a wide range of industrial applications like frames, drones, tools, parts for the automotive and more.
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