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Plastics
3D Printing Polymers
Products in 3D Printing Polymers: Sporting Goods
16 Products found in 3D Printing Polymers
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Evonik
INFINAM® TPA 4006P RFP
Polymer Name:
Thermoplastic Polyamide Elastomer
Color:
Natural
Physical Form:
Powder
Features:
High Durability, Flexible, High Strength, Excellent Elasticity, Chemical Resistant, High Performance, Fast Printing, Improves Process Stability, Consistent High Quality, Light Weight, Easier Processing, Excellent Processing Stability, High Elasticity, Low Density
INFINAM® TPA 4006P RFP is a white thermoplastic powder ideal for 3D printing using Multi Jet Fusion (MJF) and High-Speed Sintering (HSS) processes. This material is characterized by its chemical resistance, consistently high quality, excellent elasticity, flexibility, high performance, and strength. It is widely used in aerospace, automotive, industrial parts, and medical/healthcare applications, providing consistent high-quality results.
MG Chemicals
MG Chemicals PLA Filament
Polymer Name:
Polylactic Acid (PLA)
Processing Methods:
Fused Filament Fabrication, 3D Printing
End Uses:
Sporting Goods, Prototyping, Tape
PLA is the most popular resin for 3D printing because it is easy to use and has almost no odor. It adheres well to masking tape without requiring a heated printing bed or noxious solvents. It is an optimal choice for homes, schools and laboratories, and has many commercial applications. MG Chemicals premium 3D printing filaments are manufactured under strict quality control to ensure consistency. Our spools have a large hub to ensure uniform winding, and cut-outs on the sides so the user can easily see how much filament is left.
Nexa3D
Nexa3D xFLEX475-Black
Processing Methods:
3D Printing
End Uses:
Gaskets, Sporting Goods, Prototyping, Manifolds, Grips, Pipes, Footwear, Seals, Handles
Density:
1020.0 - 1020.0 kg/m³
Tensile Strength:
2.45 - 2.51 MPa
Nexa3D xFLEX475-Black is an industrial strength UV resin that cures to a soft, elastomeric material. xFLEX475 is suitable for applications where resilience, snap back, and tear resistance is desired, such as lattice structures and functional prototyping. This single component resin is easy to print, making it a superior material for elastomeric applications.
Nexa3D
Nexa3D xFLEX475-White
Processing Methods:
3D Printing
End Uses:
Gaskets, Sporting Goods, Prototyping, Manifolds, Grips, Pipes, Footwear, Seals, Handles
Density:
1020.0 - 1020.0 kg/m³
Tensile Strength:
3.0 - 4.6 MPa
Nexa3D xFLEX475 White is an industrial strength UV resin that cures to a soft, elastomeric material.xFLEX475 is suitable for applications where resilience, snap back, and tear resistance is desired,such as lattice structures and functional prototyping. This single component resin is easy toprint, making it a superior material for elastomeric applications.
Elogio AM
Elogio AM ASA Filament
Density:
1050.0 - 1050.0 kg/m³
Acrylonitrile-Styrene-Acrylate (ASA) polymers are amorphous and have mechanical properties similar to those of ABS plastics. However, the ASA properties are far less affected by outdoor weathering. The outstanding weather resistance abilities of ASA is due to the acrylic ester elastomer. ASA parts have good chemical and heat resistance, and high impact strength, even at low temperatures. Typical ASA applications are buiding/construction, automotive and recreation parts.
Zortrax
Zortrax Z-ABS
Flexural Modulus:
1080.0 - 1080.0 MPa
Z-ABS is a versatile and economic material which perfectly matches the needs of users who begin their work with 3D printing as well as professionals who want to make savings on in-house prototyping. With a wide selection of post-processing methods, either mechanical or chemical, Z-ABS becomes well-suited not only for producing affordable prototypes, but also for creative applications, such as conceptual models, gadgets or figurines. Z-ABS is something you seek for if you need to 3D print low-cost, attractive-looking objects or prototypes with functional requirements.
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
Farsoon Technologies
Farsoon Technologies FS 4100PA
Tensile Strength:
49.0 - 49.0 MPa
Farsoon Technologies FS 4100PA provides excellent mechanical properties and toughness with good heat and corrosion 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.
3D Systems
DuraForm® GF
Polymer Name:
Polyamide (unspecified)
Processing Methods:
Selective Laser Sintering, 3D Printing
End Uses:
Sporting Goods, Prototyping, Housings, Aircraft Applications, Automotive Applications
Density:
1490.0 - 1490.0 kg/m³
Tensile Strength:
26.0 - 26.0 MPa
Glass filled polyamide (nylon) material for real-world physical testing and functional useApplications Durable prototypes that require elevated stiffness and heat resistance Low to mid volume direct manufacturing of end-use parts Enclosures and housings that require more stiffness Aircraft and motorsports parts Sporting Goods Features Excellent mechanical stiffness Elevated temperature resistance Dimensionally stable Compatible with autoclave sterilization Benefits Durable Functional Design for manufacturability Eliminate tooling time and cost Versatile application capability
Essentium
ESSENTIUM TPU 95A LOW FRICTION
Density:
1150.0 - 1150.0 kg/m³
Essentium’s TPU 95A Low Friction is the medium durometer filament in our broad flexible portfolio. It balances high elongation with impressive impact resistance and tensile strength. This filament has a low friction surface that allows for easier feeding while printing.
3D Systems
DuraForm® FR 100
Polymer Name:
Thermoplastic (unspecified)
Processing Methods:
Selective Laser Sintering, 3D Printing
End Uses:
Engineering Parts, Prototyping, Housings, Connectors, Computer Components, Pacifiers, Telecommunications, Appliance Components, Construction Applications, Sporting Goods, Electrical/Electronic Applications, Automotive Applications, Aerospace Applications
DuraForm® FR 100 is halogen-free flame retardant plastic is suitable for Rapid Manufacturing of Aerospace and consumer products where flame retardancy and reduced smoke toxicity is required.In addition to meeting the flame retardancy necessary for many potential aerospace applications, DuraForm® FR100 has been formulated to reduce production of smoke and related toxic byproducts of combustion and achieve UL94 V-0 rating to meet the needs of today's human environmental safety for many other consumer applications.Applications Aerospace and aircraft cabin, compartment & cargo Computers Business equipment Electrical appliances Telecommunications equipment Building and structural components Transportation Complex, thin-walled ductwork Unmanned air vehicles (UAV's) Housings and enclosures Connectors Consumer goods and sporting products Vehicle dashboards and grilles Bumpers Rapid manufacturing Features Flame retardant Halogen and Antimony free FAR 25.853 (non-drip) compliant UL94 V-0 compliant Low smoke density and toxicity Excellent toughness and with good impact resistance Easy to process No emission of corrosive gasses Meets aerospace smoke density and toxicity requirements Benefits Offers toughness of injection molded plastics Build prototypes that withstand functional testing Produce durable end-use parts without tooling Create accurate and repeatable custom parts Increase market opportunities through flame retardancy.
3D Systems
DuraForm® ProX HST Composite
Tensile Strength:
44.0 - 44.0 MPa
Zortrax
Zortrax Z-ABS 2
Density:
1000.0 - 1000.0 kg/m³
Z-ABS is a versatile and economic material which perfectly matches the needs of users who begin their work with 3D printing as well as professionals who want to make savings on in-house prototyping. With a wide selection of post-processing methods, either mechanical or chemical, Z-ABS becomes well-suited not only for producing affordable prototypes, but also for creative applications, such as conceptual models, gadgets or figurines. Z-ABS is something you seek for if you need to 3D print low-cost, attractive-looking objects or prototypes with functional requirements.
3D Systems
DuraForm® ProX GF
Flexural Modulus:
3120.0 - 3120.0 MPa
3D Systems
DuraForm® EX
Processing Methods:
Selective Laser Sintering, 3D Printing
End Uses:
Sporting Goods, Prototyping, Housings, Connectors, Automotive Interior Trim, Aerospace Applications, Automotive Bumpers, Living Hinges
Tensile Strength:
48.0 - 48.0 MPa
Manufacture tough, impact-resistant plastic prototypes or end-use parts requiring molded-part performance and capable of withstanding harsh enviroments.Applications Complex, thin-walled ductwork Motorsports Aerospace Unmanned air vehicles (UAV's) Housings and enclosures Impellers Connectors Consumer sporting goods Vehicle dashboards and grilles Bumpers Snap-fit designs Living hinges Features Outstanding toughness Excellent impact resistance Repeatable mechanical properties Easy-to-process Consistent black or natural color Benefits Parts have the toughness of injection molded ABS and polypropylene Functional prototypes can be tested in "real life" enviroments Complex end-use parts can be economically manufactured in low and medium volumes No painting required for black parts
3D Systems
DuraForm® HST
Polymer Name:
Thermoplastic (unspecified)
Processing Methods:
Selective Laser Sintering, 3D Printing
End Uses:
Sporting Goods, Prototyping, Housings, Connectors, Computer Components, Consumer Applications
Applications Functional prototypes and end-use parts that require high stiffness and/or elevated thermal resistance Typical Applications include: UAV structural components Housings and enclosures Impellers Connectors Consumer sporting goods Features High specific stiffness Elevated temperature resistance Anisotropic mechanical properties just like fiber-filled, injection molded materials Non-conductive and RF transparent Easy-to-finish surface Benefits Functional prototypes can be tested in "real life" environments Complex end-use parts can be economically manufactured in low-to-medium volumes Excels in load-bearing applications at higher temperatures Attractive surface finish