TPU 95A 3D filament is a flexible and durable material ideal for printing parts that require bendability, abrasion resistance, and chemical resistance. With a Shore hardness of 95A, it offers an excellent balance between flexibility and toughness, making it suitable for applications such as phone cases, seals, shock absorbing components, and functional prototyping.
TPU
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JAYO 3D filament TPU 95A
TPU (Thermoplastic Polyurethane) filament is a flexible and elastic material used for 3D printing, especially when flexibility, stretchability and shock resistance are important. Here are the main properties of TPU filament: Flexibility and Elasticity Flexible and Stretchable: TPU is one of the most flexible filaments available for 3D printing. It can easily bend and stretch without breaking, making it ideal for applications such as phone cases, shoe soles, rubber-like parts, and shock absorbers. Elasticity: TPU can be stretched significantly and then returns to its original shape without deformation. Shock and wear resistance Shockproof: Due to its elasticity, TPU absorbs shocks very well, making it ideal for applications that require cushioning, such as sports equipment, protective cases and bumpers. Wear-resistant: TPU is highly wear-resistant, meaning it is resistant to friction, scratches and wear. This makes it a suitable material for moving parts or parts that are frequently touched. Chemical Resistance TPU is resistant to a wide range of oils, greases, solvents and chemicals, making it suitable for industrial applications where exposure to these substances is a factor. Weather resistance UV and Ozone Resistant: TPU has good resistance to UV rays and ozone, which means it is suitable for outdoor applications as it will not degrade quickly under the influence of sunlight or other environmental factors. Water Resistance: TPU is resistant to moisture and can come into contact with water without degrading, making it suitable for wet environments. Strength and Durability Strong yet flexible: TPU combines strength with flexibility. It can carry high loads without breaking, yet remains flexible enough to bend or stretch. Tear Resistance: TPU is less susceptible to tearing or cracking compared to rigid materials such as PLA or ABS. Temperature resistance TPU has good temperature resistance and can withstand temperatures up to around 80-100 °C. While this is lower than some other filaments such as ABS, it is high enough for many everyday applications. Printability Printing Challenges: TPU can be more difficult to print than rigid filaments like PLA. Its flexibility can cause issues such as clogging the extruder or not fitting properly in the filament feeder. It usually requires a lower print speed (around 20-30 mm/s) and specific adjustments to the 3D printer. Temperature and heated bed: TPU is usually printed at temperatures between 210-240 °C. A heated bed of around 40-60 °C is recommended to prevent warping. Adhesion and Shrinkage TPU generally has good adhesion properties to the print bed and between layers, which reduces the occurrence of warping. Shrinkage is also usually minimal compared to materials such as ABS. Disadvantages of TPU Difficult to print: The flexibility of TPU can cause issues with filament feeding and often requires a specialized extruder (such as a direct drive extruder) to print properly. Slower print speeds: Due to the flexible nature of TPU, printers must run slower to achieve good results. Less precise finishing: Due to the elasticity of the material, sharp details or precise geometries may be more difficult to achieve than with stiffer filaments. Applications of TPU Flexible Parts: TPU is ideal for parts that need to be flexible, such as shoe soles, wristbands, phone cases and rubbery seals. Shock Absorption: Due to its shock absorbing properties, it is often used in protective applications such as bumpers, covers and shock absorbers. Industrial applications: It is also used for parts that must be resistant to chemicals, wear and weathering, such as in the automotive industry and machine parts. Summary TPU filament offers exceptional flexibility, stretchability, shock resistance and abrasion resistance, making it ideal for applications where elastic and durable properties are required. Although more difficult to print than rigid materials, it offers unique advantages for functional and protective parts. TPU Filament Specifications: Wire diameter: 1.75 mm Tolerance: ±0.02 mm Nozzle temperature: 205-230 ℃ Bed temperature: 0 ℃ Rally (KGF): 11-15 Melt index: 5-8 g/10 min (190℃, 2.16kg) tensile strength to break: 600% Print speed: 20-40 MM/s Net weight: 0.5 kg/roll
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Kingroon 3D filament TPU 95A
TPU (Thermoplastic Polyurethane) filament is a flexible and elastic material used for 3D printing, especially when flexibility, stretchability and shock resistance are important. Here are the main properties of TPU filament: Flexibility and Elasticity Flexible and Stretchable: TPU is one of the most flexible filaments available for 3D printing. It can easily bend and stretch without breaking, making it ideal for applications such as phone cases, shoe soles, rubber-like parts, and shock absorbers. Elasticity: TPU can be stretched significantly and then returns to its original shape without deformation. Shock and wear resistance Shockproof: Due to its elasticity, TPU absorbs shocks very well, making it ideal for applications that require cushioning, such as sports equipment, protective cases and bumpers. Wear-resistant: TPU is highly wear-resistant, meaning it is resistant to friction, scratches and wear. This makes it a suitable material for moving parts or parts that are frequently touched. Chemical Resistance TPU is resistant to a wide range of oils, greases, solvents and chemicals, making it suitable for industrial applications where exposure to these substances is a factor. Weather resistance UV and Ozone Resistant: TPU has good resistance to UV rays and ozone, which means it is suitable for outdoor applications as it will not degrade quickly under the influence of sunlight or other environmental factors. Water Resistance: TPU is resistant to moisture and can come into contact with water without degrading, making it suitable for wet environments. Strength and Durability Strong yet flexible: TPU combines strength with flexibility. It can carry high loads without breaking, yet remains flexible enough to bend or stretch. Tear Resistance: TPU is less susceptible to tearing or cracking compared to rigid materials such as PLA or ABS. Temperature resistance TPU has good temperature resistance and can withstand temperatures up to around 80-100 °C. While this is lower than some other filaments such as ABS, it is high enough for many everyday applications. Printability Printing Challenges: TPU can be more difficult to print than rigid filaments like PLA. Its flexibility can cause issues such as clogging the extruder or not fitting properly in the filament feeder. It usually requires a lower print speed (around 20-30 mm/s) and specific adjustments to the 3D printer. Temperature and heated bed: TPU is usually printed at temperatures between 210-240 °C. A heated bed of around 40-60 °C is recommended to prevent warping. Adhesion and Shrinkage TPU generally has good adhesion properties to the print bed and between layers, which reduces the occurrence of warping. Shrinkage is also usually minimal compared to materials such as ABS. Applications of TPU Flexible Parts: TPU is ideal for parts that need to be flexible, such as shoe soles, wristbands, phone cases and rubbery seals. Shock Absorption: Due to its shock absorbing properties, it is often used in protective applications such as bumpers, covers and shock absorbers. Industrial applications: It is also used for parts that must be resistant to chemicals, wear and weathering, such as in the automotive industry and machine parts. Summary TPU filament offers exceptional flexibility, stretchability, shock resistance and abrasion resistance, making it ideal for applications where elastic and durable properties are required. Although more difficult to print than rigid materials, it offers unique advantages for functional and protective parts. TPU Filament Specifications: Wire diameter: 1.75 mm Tolerance: ±0.05 mm Nozzle temperature: 190-220 ℃ Bed temperature: 60-80℃ Melting point: 140℃ tensile strength to break: 450kg/cm² bending strength to break: 400kg/cm² Print speed: 15-90MM/s Net weight: 1 kg/roll Shore hardness: 95A
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eSUN TPU 95A 3D Filament 1,75mm 1kg
eSUN TPU 95A 3D-filament – Flexibel, Duurzaam & Veelzijdig – Diverse Kleuren Het eSUN TPU 95A 3D-filament is een hoogwaardig thermoplastisch polyurethaanfilament dat uitblinkt in flexibiliteit, veerkracht en duurzaamheid. Dit filament is ontworpen voor 3D-printen van onderdelen die sterke mechanische prestaties combineren met elastische eigenschappen. Dankzij de 95A hardheid biedt het materiaal een perfecte balans tussen flexibiliteit en stevigheid; het is soepel genoeg om te buigen en te rekken, maar behoudt tegelijkertijd een hoge vormvastheid. Waarom kiezen voor eSUN TPU 95A? Veelzijdig inzetbaar: ideaal voor functionele prototypen, mechanische onderdelen, rubbers, pakkingen, beschermkappen, flexibele verbindingen en wearables. Veerkrachtig en slijtvast: uitstekende weerstand tegen slijtage, impact en mechanische belasting. Comfortabel printbaar: optimaal gedrag op een breed scala aan 3D-printers dankzij stabiele extrusie en beperkte neiging tot vervorming. Uiterst elastisch: kan vervormd worden en keert terug naar de oorspronkelijke vorm zonder blijvende schade. Beschikbaar in diverse levendige kleuren: kies de kleur die past bij je project — van klassiek zwart en wit tot opvallende accentkleuren. Technische specificaties Materiaal: Thermoplastisch polyurethaan (TPU) Hardheid: 95A (shore) Diameter: 1,75 mm (± 0,05 mm) Netto filamentgewicht: 1 kg per rol Printtemperatuur: 210 – 230 °C Heated bed (aanbevolen): 40 – 60 °C Printsnelheid: 15 – 30 mm/s (aanbevolen voor beste kwaliteit) Krimp/warpage: zeer laag Toepassingen: flexibele onderdelen, functionele prototypes, rubbers, afdichtingen, draagbare producten, automotive onderdelen Verpakking: vacuümverpakt met droogmiddel Belangrijkste kenmerken Goede laag-aan-laag hechting voor sterke prints Minimale neiging tot stringing bij juiste instellingen Flexibel en schokabsorberend materiaal Printbaar op de meeste FDM/FFF 3D-printers met directe of Bowden-extrusie eSUN kartonnen spoel adapters STL: Voor gebruikers van een AMS, ACE, AFS, multi rolsysyteem heeft eSUN een STL-bestand ontworpen voor een adapter om de kartonnen spoelen van 1 kg, zodat u deze kunt printen en installeren voor het soepel printen vanuit de multi rolsysteem. U kunt het STL-bestand voor de adapter voor de papieren/kartonnen spoel van 1 kg vinden op de officiële website van eSUN met de naam: “eSUN Paper Spool Adaptor” of “eSUN paper spool solution for Bambu Lab AMS” U kunt een van beide kiezen om te printen, de geschatte printtijd is 30 minuten. https://www.esun3d.com/zldownload_catalog/model-download/
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JAYO 3D filament TPU Silk 98A
Discover Jayo TPU Silk Filament, a high-quality 3D printing material that stands out for its unique glossy finish and excellent flexibility. This filament is perfect for creating elastic and durable objects, such as accessories, prototypes and decorative items. With its excellent interlayer adhesion and easy processability, TPU Silk offers an ideal balance between aesthetics and functionality. Available in a variety of vibrant colors, this filament will inspire your creativity and impress hobbyists and professionals alike. Take advantage of TPU Silk for an unparalleled 3D printing experience! TPU Filament Specifications: Wire diameter: 1.75 mm Tolerance: ±0.02 mm Nozzle temperature: 200-230 ℃ Bed temperature: 60-80 ℃ Rally (KGF): 6-8 tensile strength to break: 600% Print speed: 30-60 MM/s Net weight: 1 kg/roll
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Polymaker Polyflex TPU 90A 3D filament 1,75mm 750gr
Polymaker PolyFlex TPU 90A – Flexibele Filament van Topkwaliteit Polymaker PolyFlex TPU 90A is een professioneel 3D-printfilament van thermoplastisch polyurethaan (TPU) met een hardheid van 90A, ideaal voor flexibele, slijtvaste en duurzame prints. Perfect voor functionele onderdelen zoals grips, mobiele hoesjes, rubbers, rubberen afdichtingen en mechanische flexibele componenten. Belangrijkste Specificaties Filament Type TPU (thermoplastisch polyurethaan) Hardheid 90A (rubberachtig, flexibel) Diameter 1.75 mm Printtemperatuur 210–230 °C Bedtemperatuur 30–60 °C Flexibiliteit Zéér flexibel met sterke terugvering Toepassingen Flexibele onderdelen, functionele prototypes, elastische modellen Verpakking Vacuüm met droog-middel Waarom kiezen voor Polymaker PolyFlex TPU 90A? Uitzonderlijke Flexibiliteit Dankzij de 90A hardheid print dit filament elastische objecten die buigen zonder te breken — ideaal voor rubberen modellen, slijtvaste onderdelen en shock-absorberende prints. Uitstekende Printkwaliteit PolyFlex TPU 90A staat bekend om vloeiende filamentvoer, minimale ophoping, en hoge printconsistentie — zelfs bij complexe geometrieën. Duurzaamheid en Slijtvastheid Prints blijven sterk en veerkrachtig, met hoge weerstand tegen scheuren en herhaalde buiging. Gemakkelijk te Printen Flexibel maar stabiel — ideaal voor direct gebruik zonder geavanceerde printeraanpassingen. Compatibel met de meeste FDM-printers. Perfect voor zowel beginners als professionals. Toepassingen Functionele onderdelen Rubberen koppelingen Elastische clips Flexibele onderdelen in robots/mechanica Consumenten & Gadgets Smartphone-hoesjes Elastische banden Wearables Prototyping Flexibele prototypes die mechanisch getest moeten worden Simulaties van eindproducten Printtips voor Perfecte Resultaten Print langzaam → 20–30 mm/sGebruik een direct drive extruder voor betere filamentcontrolePlaats een lichte bedhechting (blauwe tape / PEI)Minimaliseer retraction (terugtrekken) om filamentprop te voorkomenGebruik een filament droger zodat het filament goed droog is.