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Automotive
Fuel Systems
Products in Fuel Systems: Coextrusion
31 Products found in Fuel Systems
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Evonik
VESTAMID® MLT 7400
Polymer Name:
PA 12/ EVOH/ EFEP (Polyamide 12/ Ethylene Vinyl Alcohol Copolymer / Ethylene Tetrafluoroethylene Copolymer)
Physical Form:
Granules, Pellets, Tube, Solid
Features:
Low Extractables, Anti-Static, Good Barrier Properties, Oil Resistant, Conductive, Chemical Resistant, Good Thermal Stability, Fuel Resistant
Color:
Black
Materials Features:
Good Thermal Stability, Low Extractables, Good Barrier Properties, Fuel Resistant, Oil Resistant, Anti-Static, Conductive, Chemical Resistant
VESTAMID® MLT 7400 is a proven 5-layer tube designed specifically for fuel handling systems in the automotive industry. This innovative system features an outer layer of VESTAMID® polyamide 12, along with two barrier layers: ethylene vinyl alcohol (EVOH) as the middle layer and a fluoropolymer, EFEP NEOFLONTM, as the inner layer. The combination of these materials provides exceptional resistance to alcohol-containing fuels, superior chemical resistance on the inner tube surface, and virtually zero extraction levels. VESTAMID® MLT 7400 delivers reliable performance and durability. It comes in the form of pellets or granules, allowing for easy integration into manufacturing processes. With its excellent thermal stability and resistance to oil and fuels, this tube finds extensive applications in the automotive and mobility sectors.
Evonik
VESTAMID® MLT 4300
Polymer Name:
PA 12/ EVOH/ PA 6 (Polyamide 12/ Ethylene Vinyl Alcohol Copolymer / Polyamide 6)
Physical Form:
Granules, Pellets, Tube, Solid
Features:
Good Barrier Properties, Permeation Resistant, Low Temperature Impact Resistance, Oil Resistant, Good Thermal Stability, Fuel Resistant
Color:
Black
Materials Features:
Good Thermal Stability, Good Barrier Properties, Fuel Resistant, Permeation Resistant, Low Temperature Impact Resistance, Oil Resistant
VESTAMID® MLT 4300 is an established 4-layer tube for automotive fuel handling systems. It is a multilayer tubing system with an outer layer of VESTAMID® polyamide 12 and a barrier layer of ethylene vinyl alcohol (EVOH). VESTAMID® MLT 4300 offers excellent permeation resistance against ethanol-containing fuels and good cold impact performance.
Evonik
VESTAMID® MLT 7440
Polymer Name:
PA 12/ EVOH/ EFEP (Polyamide 12/ Ethylene Vinyl Alcohol Copolymer / Ethylene Tetrafluoroethylene Copolymer)
Physical Form:
Granules, Pellets, Tube, Solid
Features:
Chemical Resistant, Good Thermal Stability, Fuel Resistant, Electrically Conductive, Low Extractables, Anti-Static, Good Barrier Properties, Oil Resistant, Conductive
Color:
Black
Materials Features:
Electrically Conductive, Chemical Resistant, Good Thermal Stability, Low Extractables, Good Barrier Properties, Fuel Resistant, Oil Resistant, Anti-Static, Conductive
VESTAMID® MLT 7440 is an automotive industry-proven 5-layer tube specifically designed for fuel handling systems. This system features an outer layer of VESTAMID® polyamide 12, along with two barrier layers: ethylene vinyl alcohol (EVOH) as the middle layer and a fluoropolymer, EFEP NEOFLONTM, as the inner layer. With excellent resistance properties against alcohol-containing fuels, the MLT 7400 offers superior chemical resistance on the inner tube surface and a close-to-zero extraction level. In certain regions, antistatic properties may be required, which are fulfilled by the multilayer tubing system (MLT) 7440. Based on the same design, the MLT 7440 incorporates a conductive fluoropolymer EFEP NEOFLONTM inner layer. Experience the reliability and exceptional performance of the multilayer tubing systems (MLT) 7400 and (MLT) 7440 in fuel handling systems, ensuring superior fuel resistance and meeting the specific requirements of your automotive applications.
Evonik
VESTAMID® MLT 4840
Polymer Name:
PA 12/ EVOH/ PA 612 (Polyamide 12/ Ethylene Vinyl Alcohol Copolymer / Polyamide 612)
Physical Form:
Granules, Pellets, Tube, Solid
Features:
Low Extractables, Anti-Static, Good Barrier Properties, Hydrolysis Resistant, Low Temperature Impact Resistance, Light Weight, Conductive, Electrically Insulating, High Hydrolytic Stability, Hot Water Resistant, Good Thermal Stability
Materials Features:
Good Thermal Stability, Hot Water Resistant, Low Extractables, High Hydrolytic Stability, Good Barrier Properties, Low Temperature Impact Resistance, Anti-Static, Conductive, Light Weight, Hydrolysis Resistant, Electrically Insulating
VESTAMID® MLT 7840 is an innovative 'low extractable' 5-layer tube designed for automotive fuel handling systems. It features high thermal stability, resistance to oil and fuels, and excellent barrier properties. It is resistant to fuel and finds applications in the automotive and mobility sectors.
Evonik
VESTAMID® MLT 4800
Polymer Name:
PA 12/ EVOH/ PA 612 (Polyamide 12/ Ethylene Vinyl Alcohol Copolymer / Polyamide 612)
Physical Form:
Granules, Pellets, Tube, Solid
Features:
Low Extractables, Anti-Static, Good Barrier Properties, Low Temperature Impact Resistance, Oil Resistant, Conductive, Good Thermal Stability, Fuel Resistant
Color:
Black
Materials Features:
Good Thermal Stability, Low Extractables, Good Barrier Properties, Fuel Resistant, Low Temperature Impact Resistance, Oil Resistant, Anti-Static, Conductive
VESTAMID® MLT 4800 is an innovative 'low extractable' 5-layer tube designed for automotive fuel handling systems. It consists of an outer layer of VESTAMID® polyamide 12, a barrier layer of ethylene vinyl alcohol (EVOH), and an inner layer of VESTAMID® polyamide 612. VESTAMID® MLT 4800 offers excellent barrier properties against ethanol-containing fuels and has very low extractables. It exhibits excellent cold impact properties, like all Evonik multilayer systems.
Evonik
VESTAMID® MLT 4540
Polymer Name:
PA 12/ EVOH/ PA 12 (Polyamide 12/ Ethylene Vinyl Alcohol Copolymer / Polyamide 12)
Physical Form:
Granules, Pellets, Tube, Solid
Features:
Electrically Conductive, Anti-Static, Good Barrier Properties, Permeation Resistant, Low Temperature Impact Resistance, Oil Resistant, Conductive, Unreinforced, Good Thermal Stability, Fuel Resistant
Color:
Black
Materials Features:
Good Thermal Stability, Good Barrier Properties, Fuel Resistant, Unreinforced, Permeation Resistant, Low Temperature Impact Resistance, Oil Resistant, Anti-Static, Conductive, Electrically Conductive
VESTAMID® MLT 4540 is an established 5-layer tube used in automotive fuel handling systems. It consists of an outer and inner layer of VESTAMID® polyamide 12 and a barrier layer of ethylene vinyl alcohol (EVOH). The VESTAMID® MLT 4540 offers good permeation resistance against alcohol-containing fuels and excellent cold impact performance.
Evonik
VESTAMID® MLT 4500
Polymer Name:
PA 12/ EVOH/ PA 12 (Polyamide 12/ Ethylene Vinyl Alcohol Copolymer / Polyamide 12)
Physical Form:
Granules, Pellets, Tube, Solid
Features:
Anti-Static, Good Barrier Properties, Permeation Resistant, Low Temperature Impact Resistance, Oil Resistant, Conductive, Electrically Insulating, Good Thermal Stability, Fuel Resistant
Color:
Black
Materials Features:
Good Thermal Stability, Good Barrier Properties, Fuel Resistant, Permeation Resistant, Low Temperature Impact Resistance, Oil Resistant, Anti-Static, Conductive, Electrically Insulating
VESTAMID® MLT 4500 is a well-established 5-layer tube designed for automotive fuel handling systems. This system features an outer and inner layer of VESTAMID® polyamide 12, providing excellent performance and durability. The MLT 4500 series also incorporates a barrier layer of ethylene vinyl alcohol (EVOH), offering superior permeation resistance against alcohol-containing fuels. Additionally, it delivers exceptional cold impact performance, ensuring reliable operation even in challenging conditions. In specific regions where antistatic properties are required, the multilayer tubing system (MLT) 4540 is available. Based on the same design, the MLT 4540 includes a conductive VESTAMID® polyamide 12 inner layer to fulfill the antistatic requirements. Experience the reliability and versatility of the MLT 4500 series and MLT 4540 in automotive fuel handling systems, ensuring efficient fuel transport and meeting the specific needs of your applications.
AGC Chemicals Americas, Inc.
Fluon+™ LM-ETFE AH-2000
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Compression Molding, Blow Molding, Coextrusion, Injection Molding, Transfer Molding, Extrusion
AGC Chemicals Americas, Inc. Fluon+™ LM-ETFE AH-2000 is a modified copolymer of ethylene and tetrafluoroethylene used in applications where strong adhesion to polyamide polymers, especially nylon 12, is required. This product also exhibits high permeation resistance to many fluids and gasses, especially automotive fuels. It is processed using conventional melt extrusion methods and is available as a 1/8” pellet.
AGC Chemicals Americas, Inc.
Fluon+™ ETFE AH-800C
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Compression Molding, Blow Molding, Coextrusion, Injection Molding, Transfer Molding, Extrusion
AGC Chemicals Americas, Inc. Fluon+™ ETFE AH-800C is a compound designed for use in automotive fuel hose. This product is ideal for hose constructions which require chemical resistance, permeation resistance, and unsurpassed protection against static build-up. AH-800C has a higher upper-end temperature rating (approaching 200°C) and improved resistance to stress cracks at elevated temperatures. These products are supplied in cylindrical pellet form. These pellets are approximately 0.080 inches in diameter x 0.125 inches long.
AGC Chemicals Americas, Inc.
Fluon+™ Non-Conductive ETFE AH-700
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Compression Molding, Blow Molding, Coextrusion, Injection Molding, Transfer Molding, Extrusion
AGC Chemicals Americas, Inc. Fluon+™ Non-Conductive ETFE AH-700 is a compound designed for use in automotive fuel hose. This product is ideal for hose constructions which require chemical resistance, permeation resistance, and an unsurpassed bond to polyamide materials. Non-Conductive AH-700 balances performance and economics. These products are supplied in cylindrical pellet form. These pellets are approximately 0.080 inches in diameter x 0.125 inches long.
AGC Chemicals Americas, Inc.
Fluon+™ LM-ETFE LH-8000
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Compatible Substrates & Surfaces:
Metal
Processing Methods:
Coextrusion
AGC Chemicals Americas, Inc. Fluon+™ LM-ETFE LH-8000 is a new addition to the LM-ETFE AH Series. This ETFE (tetrafluoroethylene-ethylene copolymer) has a functional group polymerized directly in to the chain backbone, allowing it to adhere to other materials. This resin is ideal for producing multi-layer structures in a one-step process without the need for surface treatment or a separate adhesive layer. LH-8000 offers the lowest melting point of all the AH series resins, yet with the same desirable properties of other ETFEs, including non-stick, excellent processability, and superior chemical resistance.
AGC Chemicals Americas, Inc.
Fluon+™ Non-Conductive ETFE AH-800
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Compression Molding, Blow Molding, Coextrusion, Injection Molding, Transfer Molding, Extrusion
AGC Chemicals Americas, Inc. Fluon+™ Non-Conductive ETFE AH-800 is a compound designed for use in automotive fuel hose. This product is ideal for hose constructions which require chemical resistance, permeation resistance, and an unsurpassed bond to polyamide materials. AH-800 has a higher upper-end temperature rating (approaching 200°C) and improved resistance to stress cracks at elevated temperatures. These products are supplied in cylindrical pellet form. These pellets are approximately 0.080 inches in diameter x 0.125 inches long.
AGC Chemicals Americas, Inc.
Fluon+™ ETFE AH-700C
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Compression Molding, Blow Molding, Coextrusion, Injection Molding, Transfer Molding, Extrusion
AGC Chemicals Americas, Inc. Fluon+™ ETFE AH-700C is a compound designed for use in automotive fuel hoses. This functionalized polymer is ideal for hose constructions that require chemical resistance, permeation resistance, and unsurpassed protection against static buildup. AH-700C balances performance and economics. It is supplied in cylindrical pellet form, with pellets measuring approximately 0.080 inches in diameter and 0.125 inches in length.
AGC Chemicals Americas, Inc.
Fluon+™ LM-ETFE AH-5000
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Coextrusion
AGC Chemicals Americas, Inc. Fluon+™ LM-ETFE AH-5000 is a modified copolymer of ethylene and tetrafluoroethylene used in applications where strong adhesion to polyamide polymers, especially nylon 12, is required. This modified ETFE contains functionality which forms a strong chemical bond with polyamides. It is processed using conventional melt extrusion methods and is available as a 1/8” pellet.
AGC Chemicals Americas, Inc.
Fluon+™ LM-ETFE AH-3000L
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Compression Molding, Blow Molding, Coextrusion, Injection Molding, Transfer Molding, Extrusion
AGC Chemicals Americas, Inc. Fluon+™ LM-ETFE AH-3000L is a semiconductive modified copolymer of ethylene and tetrafluoroethylene used in applications where superior stress-cracking properties and strong adhesion to polyamide polymers, especially nylon 12, are required. It also exhibits high permeation resistance to many fluids and gasses, especially automotive fuels. It is processed using conventional melt extrusion methods and is available as a 1/8” pellet.
AGC Chemicals Americas, Inc.
Fluon+™ LM-ETFE AH-2100
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Compression Molding, Blow Molding, Coextrusion, Injection Molding, Transfer Molding, Extrusion
AGC Chemicals Americas, Inc. Fluon+™ LM-ETFE AH-2100 is a modified copolymer of ethylene and tetrafluoroethylene used in applications where strong adhesion to polyamide polymers, especially nylon 12, is required. It also exhibits high permeation resistance to many fluids and gasses, especially automotive fuels. It is processed using conventional melt extrusion methods and is available as a 1/8” pellet.
AGC Chemicals Americas, Inc.
Fluon+™ LM-ETFE AH-3000
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Compression Molding, Blow Molding, Coextrusion, Injection Molding, Transfer Molding, Extrusion
AGC Chemicals Americas, Inc. Fluon+™ LM-ETFE AH-3000 is a semiconductive modified copolymer of ethylene and tetrafluoroethylene used in applications where strong adhesion to polyamide polymers, especially nylon 12, is required. It also exhibits high permeation resistance to many fluids and gasses, especially automotive fuels. It is processed using conventional melt extrusion methods and is available as a 1/8” pellet.
AGC Chemicals Americas, Inc.
Fluon+™ LM-ETFE AH-600C
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Compression Molding, Blow Molding, Coextrusion, Injection Molding, Transfer Molding, Extrusion
AGC Chemicals Americas, Inc. Fluon+™ LM-ETFE AH-600C is a compound designed for use in automotive fuel hose. This product is ideal for hose constructions which require chemical resistance, permeation resistance, and unsurpassed protection against static build-up. AH-600C offers a lower melting compound that results in a wider process window and better compatibility with some polyamide nylons for co-extrusion. These products are supplied in cylindrical pellet form. These pellets are approximately 0.080 inches in diameter x 0.125 inches long.
AGC Chemicals Americas, Inc.
Fluon+™ Non-Conductive LM-ETFE AH-600
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Compression Molding, Blow Molding, Coextrusion, Injection Molding, Transfer Molding, Extrusion
AGC Chemicals Americas, Inc. Fluon+™ Non-Conductive LM-ETFE AH-600 is a compound designed for use in automotive fuel hose. This product is ideal for hose constructions which require chemical resistance, permeation resistance, and an unsurpassed bond to polyamide materials. These products are supplied in cylindrical pellet form. These pellets are approximately 0.080 inches in diameter x 0.125 inches long. It offers a lower melting compound that results in a wider process window and better compatibility with some polyamide nylons for co-extrusion.
AGC Chemicals Americas, Inc.
Fluon+™ ETFE AH-700
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Chemical Family:
Fluoropolymers
Processing Methods:
Extrusion, Coextrusion, Injection Molding
AGC Chemicals Americas, Inc. Fluon+™ ETFE AH-700 is a functionalized polymer designed for use in automotive applications. It is based on ETFE and has been chemically modified to adhere to polyamides during the co-extrusion process. The compound is available in pellet form, measuring approximately 0.080 inches in diameter and 0.125 inches in length.
AGC Chemicals Americas, Inc.
Fluon+™ PFA EA-2000
Polymer Name:
Perfluoroalkoxy Polymer (PFA)
Processing Methods:
Coextrusion
Flexural Modulus:
640.0 - 640.0 MPa
AGC Chemicals Americas, Inc. Fluon+™ PFA EA-2000 is a perfluoro resin which has been functionalized to include an adhesive group within the polymer backbone. The perfluoro backbone gives the material excellent electrical characteristics, and heat and chemical resistance, while the adhesive functionality facilitates adhesion to other materials in a one-step process, without the need for surface treatment or a separate adhesive layer. Example materials include glass cloth, polyimide, or various metals. This grade is semi-commercialized and may be available upon request. This material is supplied as pellets and packaged in 25kg plastic bags.
Daikin Industries, Ltd.
Neoflon EFEP RP-4020
Polymer Name:
Ethylene Tetrafluoroethylene Hexafluoropropylene Fluoroterpolymer (EFEP)
Processing Methods:
Extrusion, Injection Molding, Coextrusion, Hot Melt, Compression Molding
Neoflon EFEP RP-4020, offered in pellet and solid forms, boasts features such as chemical resistance, excellent transparency, good adhesion, and a low melting point. Targeting markets like automotive, electrical, electronics, industrial, and printing and packaging, this product is suitable for applications such as automotive fuel systems, oil, gas, mining exploration, and semiconductor manufacturing. With compatibility with various polymers and resins, it excels in automotive fuel lines, blown containers, fuel hoses, and semiconductor applications.
Daikin Industries, Ltd.
Neoflon ETFE EP-7000
Polymer Name:
Ethylene Tetrafluoroethylene Copolymer (ETFE)
Processing Methods:
Coextrusion
Neoflon ETFE EP-7000, available in white pellet and solid forms, presents features like chemical resistance, excellent flexibility, and good adhesion. Designed for markets in automotive, electrical, and electronics, it caters to applications like automotive fuel lines, connectors, and tubes. Its processing method, coextrusion, further enhances its suitability for specific end uses.
Daikin Industries, Ltd.
Neoflon EFEP RP-5000
Polymer Name:
Ethylene Tetrafluoroethylene Hexafluoropropylene Fluoroterpolymer (EFEP)
Processing Methods:
Extrusion, Injection Molding, Coextrusion, Hot Melt, Compression Molding
Neoflon EFEP RP-5000, in pellet and solid forms, shares key features with RP-4020, including chemical resistance, good adhesion, and a low melting point. Targeting similar markets, it finds application in automotive fuel systems, oil, gas, and mining exploration, as well as semiconductor manufacturing. With its processing methods covering coextrusion, compression molding, extrusion, hot melt, and injection molding, it caters to a diverse range of end uses such as automotive fuel lines, blown containers, fuel hoses, and semiconductor applications.
Daikin Industries, Ltd.
Neoflon CPT LP-1030
Polymer Name:
Fluoropolymer
Processing Methods:
Extrusion, Coextrusion, Compression Molding
Neoflon CPT LP-1030 is a copolymer combining tetrafluoroethylene and perfluoroalkyl vinyl ether, distinguished by its exceptional mechanical properties and permeability. Resistant to a wide range of organic solvents, acids, and alkalis, it stands out for its low permeability to volatile chemicals and gasses, as well as its impressive light transmission from ultraviolet to visible ranges. Comparable in mechanical properties to PFA and FEP, LP-1030 is ideal for melt-molding processes like extrusion molding of tubes and films and compression molding. Notably, it facilitates the creation of multi-layer tubes in conjunction with PFA, which is crucial for applications demanding superior barrier properties in chemical liquid piping for semiconductors in the automotive and electronics sectors.
Daikin Industries, Ltd.
Neoflon EFEP RP-5000AS
Polymer Name:
Ethylene Tetrafluoroethylene Hexafluoropropylene Fluoroterpolymer (EFEP)
Processing Methods:
Extrusion, Injection Molding, Coextrusion, Hot Melt, Compression Molding
Neoflon EFEP RP-5000AS, presented in black pellets and solid forms, combines chemical resistance, conductivity, and good adhesion. Designed for automotive, electrical, electronics, industrial, and printing and packaging markets, it finds applications in automotive fuel systems, oil, gas, and mining exploration, and semiconductor manufacturing. The product excels in automotive fuel lines, blown containers, fuel hoses, and semiconductor applications, offering versatility through coextrusion, compression molding, extrusion, hot melt, and injection molding.
Elastocon TPE Technologies
Elastocon® 3360
Polymer Name:
Thermoplastic Elastomer (unspecified)
Processing Methods:
Coextrusion, Extrusion, Injection Molding
End Uses:
Tubing, Consumer Applications
Density:
950.0 - 950.0 kg/m³
Tear Strength:
151.0 - 151.0 kN/m
Elastocon® 3360 is a white S-B-S thermoplastic elastomer formulated for applications that require rubber-like properties and a good surface finish. Elastocon® 3360 is heat sealable and well suited for consumer goods and extruded tubing and profile applications. Elastocon® 3360 can be overmolded and/or coextruded onto polystyrene.Elastocon® 3360 is supplied as ready to use pellets in 50 lb. bag quantities.
Kadakia Plastics and Chemicals
KPC® KT-LT
Polymer Name:
NBR/PVC
Processing Methods:
Extrusion, Coextrusion
Density:
1340.0 - 1340.0 kg/m³
Tensile Strength:
12.25 - 12.25 MPa
KPC® KT-LT by Kadakia Plastics and Chemicals is a low temperature (-45 °C) polyvinyl chloride (PVC) and nitrile butadiene rubber (PVC/NBR) alloy. Can be processed by co-extrusion. Possible applications of KPC® KT-LT could be could be seals, footwear upper & soiling, hose and tubing, compressed air hose, fuel line hose, building & construction, gaskets, weatherstrips, cables in arc welding, appliance and industrial.
Elastocon TPE Technologies
Elastocon® 3353
Polymer Name:
Thermoplastic Elastomer (unspecified)
Processing Methods:
Coextrusion, Extrusion, Injection Molding
End Uses:
Tubing, Consumer Applications
Density:
950.0 - 950.0 kg/m³
Tear Strength:
126.0 - 126.0 kN/m
Elastocon® 3353 is a white S-B-S thermoplastic elastomer formulated for applications that require rubber-like properties and a good surface finish. Elastocon® 3353 is heat sealable and well suited for consumer goods and extruded tubing and profile applications. Elastocon® 3353 can be overmolded and/or coextruded onto polystyrene.Elastocon® 3353 is supplied as ready to use pellets in 50 lb. bag quantities.
Kadakia Plastics and Chemicals
KPC® KT-03HR
Polymer Name:
NBR/PVC
Processing Methods:
Extrusion, Coextrusion
Density:
1260.0 - 1260.0 kg/m³
Tensile Strength:
16.66 - 16.66 MPa
KPC® KT-03HR by Kadakia Plastics and Chemicals is a transparent polyvinyl chloride (PVC) and nitrile butadiene rubber (PVC/NBR) alloy. Can be processed by co-extrusion. Possible applications of KPC® KT-03HR could be could be seals, footwear upper & soiling, hose and tubing, compressed air hose, fuel line hose, building & construction, gaskets, weatherstrips, cables in arc welding, appliance and industrial.
Kadakia Plastics and Chemicals
KPC® KN-78
Polymer Name:
NBR/PVC
Processing Methods:
Extrusion, Coextrusion
Tensile Strength:
12.25 - 12.25 MPa
KPC® KN-78 by Kadakia Plastics and Chemicals is a transparent, non toxic, filled polyvinyl chloride (PVC) and nitrile butadiene rubber (PVC/NBR) alloy. Can be processed by co-extrusion. Possible applications of KPC® KN-78 could be could be seals, footwear upper & soiling, hose and tubing, compressed air hose, fuel line hose, building & construction, gaskets, weatherstrips, cables in arc welding, appliance and industrial.