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Tooling & Moldmaking
Products in Tooling & Moldmaking: Wear Resistant
28 Products found in Tooling & Moldmaking
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Ultimaker
Ultimaker CPE+
Polymer Name:
Copolyester Resin
Processing Methods:
3D Printing, Fused Filament Fabrication
End Uses:
Prototyping
Density:
1180.0 - 1180.0 kg/m³
Flexural Modulus:
1555.0 - 1555.0 MPa
Ultimaker CPE+ is chemical and temperature resistant, tough, and demonstratesgood dimensional stability. CPE+ shows higher temperature resistanceand increased impact strength than regular CPE.
AFT Fluorotec
AF801 PEEK™ 450g
Polymer Name:
Polyetheretherketone (PEEK)
AF801 Peek™ 450G are used in a wide range of oil and gas applications due to the unique combination of properties and range of compounds and unfilled polymers.
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.
Advanced Laser Materials (ALM)
Advanced Laser Materials (ALM) PA 614 GS
Polymer Name:
Polyamide 12 (PA 12)
Fillers Included:
Glass Ball
Advanced Laser Materials (ALM) PA 614 GS is a 40% glass sphere filled material for improved dimensional stability, increased stiffness, and higher temperature applications when compared to unfilled PA. Drop-in replacement for other commercially available 40% glass sphere filled PA 12 laser sintering powders. More recyclable, produces a better part surface finish, and the dry powder flow has been optimized.
Solaxis
Antero™ 800NA
Polymer Name:
Polyetherketoneketone (PEKK)
Processing Methods:
3D Printing
End Uses:
Prototyping, 3D Printing Applications
Features:
Chemical Resistant, Very Good Heat Resistance, Excellent Dimensional Accuracy, High Strength, Good Toughness, Wear Resistant
Antero™ 800NA is a PEKK-based FDM® thermoplastic. It combines FDM’s design freedom and ease of use with the excellent strength, toughness and wear-resistant properties of PEKK material. Antero 800NA exhibits high heat resistance, chemical resistance, low outgassing and dimensional stability, particularly in large parts. Appropriate applications include aircraft components exposed to jet fuel, oil and hydraulic fluid, spacecraft parts that demand low outgassing and chemical-resistant industrial parts. Using Antero 800NA with FDM technology avoids the waste associated with subtractive manufacturing of high-cost bulk PEKK material. Antero 800NA is available on Fortus 450mc™ and F900™ 3D Printers and is compatible with breakaway support material SUP8000B™.
Essentium
ESSENTIUM TPU 74D
Polymer Name:
Thermoplastic Polyurethane (unspecified)
End Uses:
Automotive Fuel Structural Components, Scr Structural Components, Industrial Connectors
Density:
1230.0 - 1230.0 kg/m³
Essentium’s TPU 74D is the highest durometer filament in our broad flexible portfolio. It is a no-warp drop in replacement for ABS. It has excellent impact strength, tear strength, and abrasion resistance.
Essentium
ESSENTIUM TPU 80A-Z
Polymer Name:
Thermoplastic Polyurethane (unspecified)
End Uses:
Side Spoiler, Automotive Bumpers, Constant Velocity Joint Boots, Suspension Jounce Bumpers, Flexible Grips, Automotive Boots, Gaskets, Electrical Seals, Molds/Dies/Tools, Pipe Seals, Footwear, Suspension Rebound Bumpers, Handbrake Mechanism Seal, Front Spoiler, Plugs
Density:
1110.0 - 1110.0 kg/m³
Essentium TPU 80A-Z is the lowest durometer filament in Essentium’s electrostatically dissipative (ESD) portfolio. With non-marring surface properties, you don’t have to worry about latent failures in electronics. These materials are the only industrially proven, safe material for ESD sensitive applications. Currently, Essentium TPU 80A-Z is the softest 3D printing material that can be printed on any open-source printer. It has excellent elongation at break and impact strength and has a low friction surface that allows for easier feeding while printing.
Advanced Laser Materials (ALM)
Advanced Laser Materials (ALM) PA 615 GS
Polymer Name:
Polyamide 12 (PA 12)
Fillers Included:
Glass Ball
Advanced Laser Materials (ALM) PA 615 GS is a 50% glass sphere filled material for improved dimensional stability, increased stiffness, and higher temperature applications when compared to unfilled PA. Drop-in replacement for other commercially available 50% glass sphere filled PA 12 laser sintering powders. PA 615 is more recyclable, produces a better part surface finish, and the dry powder flow has been optimized.
Ebalta Kunststoff Gmbh
Ebalta Kunststoff Gmbh GM 727Comp. A+B
Polymer Name:
Polyurethane (unspecified)
Processing Methods:
Casting
End Uses:
Foundry Dressings, Industrial Castings
Density:
1650.0 - 1750.0 kg/m³
Ebalta GM 727 is a well castable two components polyurethane casting resin, curing slowly at room temperature. This casting resin is particularly suitable for solid casting of dimensionally accurate large-volume models with high temperature resistance. Due to low mixing viscosity of GM 727 you can add 70% filler F-B and about 50% plastic granules to reduce shrinkage to approx. 0.05%.
RECKLI
RECKLI Epoxy BT
Polymer Name:
Epoxy Resins & Compounds
End Uses:
Thin Coatings
Epoxy BT is a thixotropic pigmented epoxy resin coating.
Essentium
ESSENTIUM TPU 74D-Z
Polymer Name:
Thermoplastic Polyurethane (unspecified)
End Uses:
Scr Structural Components, Industrial Connectors, Electrical/Electronic Applications, Automotive Fuel Structural Components, Molds/Dies/Tools
Density:
1230.0 - 1230.0 kg/m³
Essentium TPU 74D-Z is a high durometer filament in Essentium’s electrostatically dissipative (ESD) portfolio. With non-marring surface properties, you don’t have to worry about latent failures in electronics. Essentium’s Z line of filaments are the only industrially-proven safe materials for ESD sensitive applications. Essentium TPU 74D-Z is a no-warp drop in replacement for ABS. It has excellent impact strength, tear strength, and abrasion resistance.
Essentium
ESSENTIUM TPU 95A-Z
Polymer Name:
Thermoplastic Polyurethane (unspecified)
End Uses:
Exhaust Duct Systems, Grommets, Bushings, Flexible Grips, Molds/Dies/Tools, Protective Coverings, Hoses
Density:
1150.0 - 1150.0 kg/m³
Essentium TPU 95A-Z is a medium durometer filament in Essentium’s electrostatically dissipative (ESD) portfolio. With nonmarring surface properties, you don’t have to worry about latent failures in electronics. These materials are the only industrially proven, safe material for ESD sensitive applications. Essentium TPU 95A-Z balances high elongation with impressive impact resistance and tensile strength. This filament has a low friction surface that allows for easier feeding while printing.
Advanced Laser Materials (ALM)
Advanced Laser Materials (ALM) PA 616 GS
Polymer Name:
Polyamide 12 (PA 12)
Fillers Included:
Glass Ball
Advanced Laser Materials (ALM) PA 616 GS is a 50% glass sphere filled material for improved dimensional stability, increased stiffness, and higher temperature applications when compared to unfilled PA. The PA 616-GS can be processed on any laser sintering platform, but has been specifically engineered for EOS platforms. PA 616-GS is slightly less recyclable when compared to PA 615-GS, but produces a smooth part surface finish.
BCC Products
BCC Resins™ MB4000
Polymer Name:
Polyurethane (unspecified)
End Uses:
Molds/Dies/Tools, Modeling Material, Prototyping
BCC Products now offers a revolutionary state-of-the-art machineable foundry plank for today's demanding tooling requirements. MB4000 Red is an extremely tough, high impact Urethane Plank, that can replace aluminum and other metals for many foundry applications.
BCC Products
BCC Resins™ MB5000
Polymer Name:
Polyurethane (unspecified)
Processing Methods:
Machining
End Uses:
Molds/Dies/Tools, Prototyping, Agricultural Applications
BCC Products now offers a revolutionary state-of-the-art machineable high density board for today's demanding tooling requirements. MB 5000 is an extremely tough, high impact Urethane Plank that can be used for metal forming as well as nickel plating mandrels.
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.
Ultimaker
Ultimaker TPU 95A
Density:
1220.0 - 1220.0 kg/m³
Flexural Modulus:
78.7 - 78.7 MPa
Ultimaker TPU 95A is highly versatile for industrial applications, TPU 95A filament is thego-to choice for a wide array of manufacturing projects that demand thequalities of both rubber and plastic. Designed for 3D printing consistency,TPU 95A is a semi-flexible and chemical resistant filament with stronglayer bonding. In addition, it is easier and faster to print than otherTPU filaments.
Westlake Plastics
POMALUX® Polyoxymethylene (POMC)
Polymer Name:
Polyacetal Copolymer (POM)
Physical Form:
Slab, Sheets, Rods, Film
Features:
Chemical Resistant, Wear Resistant, Low Moisture Absorption, Low Friction, Dimensional Stability, Good Machinability, Semi Crystalline, Excellent Dielectric Properties, Stiffness, High Temperature Resistance, Food Contact Acceptable
Density:
1410.0 - 1410.0 kg/m³
Tensile Modulus:
2461.42 - 2461.42 MPa
Color:
Black, Natural
Pomalux® Polyoxymethylene (POMC) is a high-performance acetal copolymer used for a wide range of applications. Pomalux® has good chemical and high-temperature resistance. As a semi-crystalline material, Pomalux® has good wear resistance and low frictional characteristics.Pomalux® also has low moisture absorption making Pomalux® a good candidate for a wide range of structural and mechanical components that carry or transmit loads in dry or wet environments .
BCC Products
BCC Resins™ BC 8160
Polymer Name:
Polyurethane (unspecified)
Processing Methods:
Casting
End Uses:
Prototyping, Living Hinges
BC8160 is a low viscosity two-component urethane casting compound that is specifically formulated for its flexural and impact strength. It is recommended for use for the production casting of highly wear-resistant parts and prototypes. BC8160 can be used to develop thermoplastics type prototypes. This product is a safe, easy-to-handle, room temperature mixing and curing system that does not contain TDI, MDI, or MOCA. BC8160 is relatively insensitive to typical environmental moisture and will make good void-free parts without the problems that some conventional urethane systems exhibit.
Ebalta Kunststoff Gmbh
Ebalta Kunststoff Gmbh GM 979PUR 1
Polymer Name:
Polyurethane (unspecified)
Processing Methods:
Injection Molding, Casting
End Uses:
Foundry Dressings
Density:
1600.0 - 1700.0 kg/m³
Ebalta GM 979 is an easy-to-handle-2components-polyurethane casting compound which shows very low adhesive properties compared to molding sand. Due to its high abrasion resistance, GM 979 is especially suitable for foundry patterns, which have to resist to abrasive wear by molded sand. GM 979 even keeps its high mechanical strength when using molding sands with higher temperatures.
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.
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.
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.
Advanced Laser Materials (ALM)
Advanced Laser Materials (ALM) PA 415 GS
Polymer Name:
Polyamide 12 (PA 12)
Fillers Included:
Glass Ball
Advanced Laser Materials (ALM) PA 415 GS is a is a 40% glass sphere filled nylon 12 with good mechanical properties and surface finish. Stabilized against thermal degradation, so you will see a reduction in scrap material similar to PA 250. Nearly 85% recyclable, but has a much smaller processing window when compared to other glass filled products. Good temperature control is required to process this material.
BCC Products
BCC Resins™ BC 8002
Polymer Name:
Polyurethane (unspecified)
Processing Methods:
Casting
End Uses:
Power/Other Tools, Molds/Dies/Tools, Prototyping
BCC Kwik Kast II is an advanced fast cast polyurethane tooling system. BC 8002 exhibits exceptionally low viscosity, low odor and is color contrasted for uniform mix. It features low exotherm and minimal shrinkage. Kwik Kast II cures hard, yet more durable resulting in less brittle parts. Uses include; tracing models core boxes, duplicating aids, patterns, prototypes, low temperature vacuum form tools, etc.Handling Properties:BCC's Kwik Kast II is a fast-setting, two part casting system which requires careful preparation prior to mixing parts A and B. Because Kwik Kast II contains components of high density there will be some separation at the bottom of each container. Using a paint shaker, jiffy mixer, or mixing spatula, re-suspension of the ingredients is easily accomplished. Precaution should be taken to prevent any moisture contamination from containers or utensils. It is recommended that the work area be well ventilated and normal cleanliness and safety rules be observed. Avoid prolonged exposure to vapors and contact with skin.Preparation of Mold Surface:Clean the surface from dust and possible presence of moisture. Apply BC 87 Parting Agent and polish to a uniform high gloss finish (usually 2-3 coats are recommended). For plaster or wood surfaces seal with PVC sealer to ensure complete absence of moisture, followed by 2-3 coats of 87 Parting Agent.Mixing and Pouring:Although not necessary, best results are obtained by evacuation of each component under 29 inches of vacuum which removes entrapped air prior to blending the two components. Pour weighed or measured amounts of Part A & B into a separate dry container by pouring Part A into Part B. Mix with a spatula or mechanical stirrer for 30-40 seconds for quart size batches or 40-50 seconds for gallon batches while avoiding air entrapment. Immediately pour mixed resin uninterrupted from a convenient height above the mold cavity. Clean your mixing tools by rinsing in an alcohol type solvent. Larger masses (2 feet or more) may be built up with successive pours. Castings may be demolded within 60-90 minutes but should be properly supported while "green". Under normal conditions, maximum hardness or cure will be achieved in 12-18 hours.
RECKLI
RECKLI Epoxy OH
Polymer Name:
Epoxy Resins & Compounds
End Uses:
Thin Coatings
Epoxy OH is a pigmented, thixotropic, solvent-free two-component epoxy resin. It shows high dimensional stability under heat as well as impact- and wearresistance. It is available in white and blue.
Ebalta Kunststoff Gmbh
Ebalta Kunststoff Gmbh GH 706GL
Polymer Name:
Epoxy Resins & Compounds
Processing Methods:
Casting
End Uses:
Foundry Dressings, Modeling Material
Flexural Strength:
80.4 - 85.6 MPa
Ebalta GH 706/GL is a well castable two-components epoxy resin, which cures at room temperature and can be casted 40 - 50 mm thickness. The resin GH 706 contains very fine hard fillers and with hardener GL it has got a very hard, wear resistant surface with high compression strength and very fine structure. Physical data as per test specimen cured for 8 hrs. at 80°C ebalta GH 706 is the castable version of the very hard gelcoat OH 6-1.
BCC Products
BCC Resins™ MB3500
Polymer Name:
Polyurethane (unspecified)
Processing Methods:
Machining
End Uses:
Modeling Material, Prototyping, Agricultural Applications
BCC Products now offers a revolutionary state-of-the-art machinable fixture board for today's demanding tooling requirements. MB 3500 is an extremely tough, high impact Urethane Plank, that can replace aluminum and other metals for many foundry applications.