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  • Chemours® NXT 75
      Chemours® NXT 75 exhibits the superior properties typical of the fluoropolymer resins: nonaging characteristics, chemical inertness, heat resistance, toughness and flexibility, low coefficient of friction, nonstick characteristics, negligible moisture absorption, and weather resistance.

      In addition, this resin offers weldability, improved resistance to deformation under load, increased resistance to permeation of chemicals, and a higher dielectric breakdown voltage. This resin provides a high degree of weldability for applications where the use of elevated pressure and temperature are limited.

      Chemours® NXT 75 is a fine-cut resin designed for general compression molding of blocks and sheets and for use as a base resin for compounds. It can be used for such applications as: seal rings, valve seats, bearing pads, linings, encapsulations, and as a base resin for filled compounds. This resin is particularly useful in applications where welding of parts to other fluoropolymers such as PFA or standard PTFE is required, e.g., fluid-handling systems.

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  • Chemours® PTFE 7C
      Chemours® PTFE 7C is a white powder with very small particle size. Its most unique feature is the irregular, fibrous character of the particles. The small particle size of Chemours® PTFE 7C helps to minimize voids even at relatively low molding pressure. The fibrous particles promote good capture and uniform distribution of inorganic fillers when they are added to modify the mechanical properties of moldings. Chemours® PTFE 7C exhibits relatively high mold shrinkage.

      Chemours® PTFE 7C is preferred for moldings requiring optimum mechanical and electrical properties. Its relatively low bulk density limits the size of moldings from a given mold or press opening. It is often preferred for making filled compounds, especially with metal powders that are difficult to mix because of density differences.

      Properly processed products made from neat Chemours® PTFE 7C provide the superior properties typical of the fluoropolymer resins: retention of properties after service at 260°C (500°F), useful properties at —240°C (—400°F), chemical inertness to nearly all industrial chemicals and solvents, and low friction and antistick surfaces. Dielectric properties are outstanding and stable with frequency and temperature. Molded products have moderate stiffness and high ultimate elongation.

      In a flame situation, products of Chemours® PTFE 7C resist ignition and do not themselves promote flame spread. When ignited by flame from other sources, their contribution of heat is small and with very little smoke.

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  • Copper
      Copper is a reddish colored metal which is malleable and ductile. It has excellent thermal and electrical conductivities and good corrosion resistance. It is found in sulphide ores and as carbonate, arsenide and chloride (abundance in the Earth's crust is 50 ppm). Extraction of the metal involves roasting the ore to produce the oxide, followed by reduction and purification by electrolysis. The element is inert to non-oxidizing acids but reacts with oxidizing agents. In air, it will weather to produce the characteristic green patina of the carbonate. Copper will combine with oxygen on heating to produce CuO at red heat, and Cu2O at elevated temperatures. Pure copper has an electrical conductivity second only to that of silver and hence its main application is in the electrical industry. Copper is also the basis of many important alloys (e.g. brass, bronze and aluminum bronze) and has been traditionally considered to be one of the coinage metals, along with silver and gold, but being more common, is the least valued. It is one of the first metals ever to have been worked by man and is thought to have been mined for more than 5000 years.
    • Grades include: C101, C110 (ETP), C145 (Tellurium), C147 (Surfur), C182 (Chromium-Copper)
    • Price & Availabilty of Metals & Alloys is subject to change.
    • Professional Plastics has warehouse and logistics capabilities in the USA, Singapore and Taiwan.

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  • CRP-1 PVC FM-4910
      CRP-1 Sheet - FM 4910 Listed (at .250"+) - Enhanced Performance PVC-based Sheet - WHITE - Simona CRP-1 (formerly Lam CRP-1)
      Simona CRP-1's proprietary formulation provides an FM 4910 rated PVC-based sheet with improved surface gloss and easier weldability compared to PVC-C. Its temperature resistance exceeds that of standard PVC compounds and withstands the requirements of typical wet bench cabinetry and enclosures. LAM CRP-1's high gloss, and its consistent surface and color quality also afford exceptional long-lasting clean-room aesthetics over PVC-C based sheet materials. Lamcorr offers its unique JSR rod to weld LAM CRP-1 to LAM PVDF sheet and components. Color is WHITE

      Proven Applications for CRP-1 FM 4910 Listed Sheet:
    • Semicon process enclosures
    • Rinse modules
    • Wafer transfer interfaces
    • Dry tool enclosures, components
    • Electrical cabinets
      Standard Size: 48" x 96"
    • Extruded Gauges: .250" to 1.0"
    • Pressed Gauges: 1.0" through 4.0"

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  • Cushion Pads for Pile Driving
      Cushion pads are used to improve the pile-driving process, a common activity in the construction of large structures such as bridges and buildings. Piles - heavy beams of concrete, steel, or other materials are pounded into the ground by a large "hammer" attached to a crane. The cushion pad, which sits inside a "helmet" placed between the hammer and the pile, must transmit force while protecting the pile.

      Cushion Pads have proven themselves in all types of pile driving applications. Professional Plastics has the ability to cut pads to your specifications on our CNC Router. Hammer cushion pads have to be strong to withstand the pounding and to transmit the driving force needed while protecting your equipment and the pile. Hammer cushion pads extend the life of your hammer while transmitting the maximum striking force to the pile.

      Made of Impact-Resistant Cast Nylon or Phenolic, these cushion pads will absorb the initial hammer shock while transferring the power that you need to the helmet and into the pile. By absorbing this initial hammer shock, these cushion pads reduce the tremendous wear and stress hammers are subjected to, thereby, minimizing breakdowns and nonproductive downtimes. Damage to the contact point of the pile is also lessened often making it unnecessary to trim the pile which can be a time consuming and costly procedure. Nythane® Nylon is chemically formulated copolymer designed to offer an engineering material with the High Tensile and Compressive properties of Cast Nylon, with the impact and wear resistance of polyurethane.

      Nylon Cushion Pads are offered in 3 specific grades:
    • Nythane: The unfilled, or "natural" grade of material, is yellow in color and displays exceedingly high impact resistance and tensile properties. Use considerations include environments with: Shock, Abrasion, Vibration, Impact & Moisture absorption.
    • Nythane Oil: - Using the same proprietary process as our Nylatech® Oil, our liquid lubrication impregnated within the polymer chain offers excellent surface lubricity. In addition to the advantages of Nylatech Nythane, use considerations for Nylatech® Nythane Oil includes the following environments: Increased Wear, Moisture Absorption, Increased Abrasion.
    • Nythane SL:The impact resistance of the Nythane copolymer with the wear resistance of Nylatech® SL (solid lubricant) result in the longest lasting material for the most aggressive industrial applications. Use considerations include: Extreme Wear, Extreme Abrasion

      Canvas Phenolic Cushion Pads provide tremendous impact resistance and stability while absorbing shock. Canvas phenolic is made from a medium weave cotton cloth fabric and mixed with phenolic resins to provide good wear resistance, low moisture absorption, and good mechanical strength at economical cost.

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  • DAP per MIL-M-14
      Diallyl Phthalate per MIL-M-14 Diallyl Phthalate (D72/6120F) is a short glass fibre filled, flame retarant, general purpose diallyl ortho phthalate molding compound which is processed into compression-molded shapes. It has passed NASA outgassing tests. It can be molded at 300° to 380° F and 250 to 1000 psi. Properly cured parts show excellent dimensional stability, as well as good electrical and physical properties.
    • Applications include: connectors, interconnecting devices, terminal boards, potting cups, headers, switches, and circuit breakers.

      DAP possess superior electronic insulation, even under the most adverse environmental conditions. These compounds are easy to mold and have no out gassing. DAP compounds are non-corrosive to inserts and resistant to weathering, fungus, and most solvents. Fully cured parts possess unsurpassed dimensional stability, even under load. They withstand solder temperature and will not creep after curing. That is why this state of the art material is used extensively in the space program, the connector and the electronics industries.
    • Offered in a variety of colors and flows, DAPs do not require cold storage and have an average shelf life of one year at 23° C.

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  • Delrin® 100AF - 20% PTFE (Custom Order)
      Delrin® 100AF (20% PTFE Full-Strength ) is a high viscosity acetal homopolymer containing 20% Teflon® PTFE fibers. It is designed for applications requiring low wear and/or low friction against steel, itself, and other surfaces. This is a CUSTOM-GRADE only.

      Delrin 100AF Sheet (Full Strength 20% PTFE Filled) is classified as National Stock Number NSN: 9330012803453, Part Number: DELRIN100AF Delrin 100AF Rod (Full Strength 20% PTFE Filled) is classified as National Stock Number NSN: 9390012925602, Part Number: DELRIN100AF Delrin 100AF Strip (Full Strength 20% PTFE Filled) is classified as National Stock Number NSN: 9330013470067, Part Number: DELRIN100AF

      Note:
      The large majority of Delrin 100AF shapes commercially available today are actually blended down to a 13% PTFE known as Delrin AF Blend. For this reason, when customers require a full 20% PTFE filler, we ask that they request material as "Full-Strength Delrin 100AF".
    • Full-Strength Delrin 100AF is available as a Custom-Order Only, as no domestic extruders manufacture this grade as standard.

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  • Delrin® 500AF
      Delrin® 500AF is a medium viscosity acetal homopolymer resin containing 20% Teflon® PTFE fibers. It is designed for applications requiring low wear and/or low coefficient of friction against steel, itself, and other plastics.

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  • Delrin® 527 UV Resistant
      Delrin® 527UV Weather Resistant Black- replaces Delrin 507
    • This material replaced Delrin® 507 which has been discontinued by DuPont.

      Delrin® 527UV is a black homopolymer acetal that has been enhanced with UV stabilizers. It is also available in natural on a custom run basis. Developed by DuPont to replace Delrin® 507, this material is particularly suited to automotive and other outdoor applications. It exhibits improvements in UV aging characteristics and thermal stability. Delrin® 527UV is typically used for industrial applications exposed to the outdoors in such industries as electronics, communications, transportation, construction and marine.

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  • Delrin® 570 - 20% Glass-Filled Acetal
      Delrin® 570, this grade has 20% glass fiber filler. It has much greater mechanical properties over unfilled acetals.

      Delrin® Glass Filled provides the same basic properties as Delrin®, with added strength. Delrin® Glass Filled is a tough material that provides the added advantages of greater stiffness, improved creep resistance, low warpage and higher dimensional stability than Delrin® because it possesses surface characteristics of Teflon®. Parts designed using glass-filled will demonstrate good impact resistance, low deformation under load and high fatigue endurance. Delrin® Glass Filled is an excellent choice for its long-term mechanical stability in applications such as Anti-Friction Parts, Application Bearings, Gears and Parts requiring greater stiffness, Electrical Components and other Close Tolerance Precision Parts and Fuel System Parts.
      Note: This item is NOT a standard stock item. Minimum order & lead-time may apply.

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  • Delrin® AF Blend - 13% PTFE (Standard)
      Delrin® AF Blend (Delrin® AF Blend with13% PTFE [Standard Grade] ) Delrin AF Blend is a unique thermoplastic material for use in moving parts in which low friction and long wear life are important. It is a combination of PTFE fibers uniformly dispersed in Delrin® acetal resin.
    • Delrin® AF Blend typically includes 13% PTFE Fibre-Filled
    • LF-13 is always a 13% PTFE Powder-Filled.
    • Also available in Full-Strength Delrin 100AF - 20% PTFE on a Custom Order Basis.
    • DE588 is a Delrin® 100AF fully-certified for US Naval Specifications.

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  • Duratron D7000 PI
      Duratron D7000 PI is an exceptional value for applications where thermal requirements exclude Duratron PAI and do not require the extraordinary thermal resistance of Duratron PBI. Duratron PI is available in several grades for structural and wear applications and in the broadest range of shapes - particularly thick sheets, larger sheets geometries and heavy-wall tubes. It offers good mechanical performance for applications that demand higher temperature resistance than Torlon PAI.

      Duratron D7000 PI machinable shapes are ideal starting points for designs that reduce weight, extend length of service before maintenance or replacement and reduce overall cost by increasing process uptime.

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  • Duratron® U1000 PEI
      Duratron U1000 PEI is an amorphous polymer offering high strength and excellent flame and heat resistance. It performs continuously to 340°F (170°C), making it ideal for high strength/ high heat applications, and those requiring consistent dielectric properties over a wide frequency range. It is hydrolysis resistant, highly resistant to acidic solutions and capable of withstanding repeated autoclaving cycles.

      Duratron U2100, U2200 and U2300 PEI are glass-reinforced versions (10, 20, and 30%, respectively) of Duratron U1000 PEI which provide even greater rigidity and improved dimensional stability while maintaining many of the useful characteristics of basic Duratron U1000 PEI. Duratron PEI is FDA and USP Class VI compliant. FDA compliant colors of Duratron PEI are also available on a custom basis.

      Duratron PEI commonly is machined into parts for reusable medical devices, analytical instrumentation, electrical/electronic insulators (including many semiconductor process components) and a variety of structural components requiring high strength and rigidity at elevated temperatures. MCAM-Quadrant offers Duratron U1000 PEI and Duratron U2300 PEI as standard products.

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  • ECOGEHR® C-L Biodegradable
      ECOGEHR® C-L is comprised of the wood components cellulose, natural fibres, lignin and fatty acids. It possesses many interesting properties that together are very similar to the natural material wood. Consequently, this material is very pleasant to the touch, produces high-quality sound and is easily workable. It also has a high degree of rigidity (tensile module of elasticity up to 4248 MPa). Clearly, its advantages compared with waxed wood lie in the material's homogeneity. Whereas wood displays density variations resulting from growth rings or imperfections (branches), ECOGEHR® C-L provides an isotropic material texture and reproducible properties. This 100% renewable material is largely neutral in terms of its CO2 balance, and like wood it can be disposed of via decomposition or burning.

      Due to its composition and its properties similar to those of wood, C-L is used where wood needs to be replaced by a homogeneous material and where traditional plastics do not meet the requirements. The material is popular in applications where sound and feel are of primary importance.
      Examples: �� Woodwind instruments �� Drumsticks �� Billiard cues �� The furniture industry �� Display construction �� Fashion jewellery �� Writing implements

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  • ECOGEHR® PA - Polyamide Bioplastic
      ECOGEHR PA - Polyamide Bioplastic Shapes
      ECOGEHR PA 6.10 (polyamide) is based upon 60 % of a renewable resource, sebacic acid, which is extracted from castor beans. ECOGEHR PA 6.10 combines a low specific gravity with a high impact strength at low temperatures. It shows a good dimensional stability due to low humidity absorption. With these properties, ECOGEHR PA 6.10 is an adequate material even for applications, where the standard PA 6 meets its limits.

      ECOGEHR PA 11 is a high-performance technical polyamide 11 polymer developed in 1942. It is produced from castor beans. Its properties are basically similar to the PA 12. The resin has earned a preferred material status in the most demanding applications due to its excellent combination of thermal, physical, chemical and mechanical properties. Good impact strength at low temperatures (-40°C), good chemical resistance and low humidity absorption (only 1/6th compared to standard PA 6) are outstanding characteristics of the material.

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  • ECOGEHR® PLA
      ECOGEHR® PLA
      Polylactide and polylactic acid (PLA) is a linear, aliphatic polyester. PLA is obtained from sugar or starch via fermentation by micro-organisms. This means that it is a thermoplastic polymer based on renewable raw materials. PLA materials are CO2- neutral due to the proportion of renewable raw materials.
    • ECOGEHR® PLA-N is a native PLA. It possesses good mechanical properties similar to the polystyrenes, high rigidity, a tensile module of elasticity of up to 3440 MPa, good resistance to polar solvents, is non-toxic and provides good thermal insulation. PLA-N is used in applications in which biodegradability is of particular interest. The material is also translucent in thin-wall applications (a few millimetres). Examples: �� Sinking aids for fence posts �� Tree guards in forestry
    • ECOGEHR® PLA-L is a blend of polylactide, some lignin, natural fatty acids and waxes. It combines good mechanical properties comparable with ABS, high rigidity, a tensile module of elasticity of up to 2770 MPa, good impact strength down to -30°C, good resistance to polar solvents, good thermal insulation and is approved for use with foodstuffs and toys. PLA-L This white bio-polymer is approved for use with both foodstuffs and toys. Examples: �� Mouthpieces for woodwind instruments �� Knobs and buttons �� Industrial brushes �� The foodstuffs processing industry
    • ECOGEHR® PLA-V combines the properties of PLA and a petroleum-based polyester. It possesses high strength, good thermal insulation, is non-toxic, and can be bonded and welded. PLA-V is a relatively soft material and conforms to European foodstuffs approval requirements. Example: �� Writing implements
    • ECOGEHR® PLA-WF is a composite material of polylactide, a small amount of a petroleum-based polyester and wood fibres (30%). It possesses high mechanical strength thanks to the excellent binding of the wood fibres and the polymer blend. This is comparable with standard fibre-reinforced polymers. It also displays good thermal insulation and conforms to the standards governing toys. Thanks to its wood fibre filling, PLA-WF has a woodlike character and can be worked accordingly. This also conforms to the toys standard EN 71-3. Example: �� Wooden toys

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  • ECOGEHR® WPC-30PP / WPC-50PVC
      ECOGEHR WPC-materials are composites based on standard polymers and wood fibres. Due to the excellent bond of the wood fibres to the polymer, the materials have a high mechanical strength. Parts in durable technical applications are possible with ECOGEHR WPC. Suitable for open air applications. Antibacterial grade available. Processability is similar to wood.

      Grades:
    • ECOGEHR WPC-30PP
      Composite based on polypropylene (PP) and wood fibres. The content of renewable resources is 70%.
    • ECOGEHR WPC-50PVC
      Composite based on polyvinylchloride (PVC-U) and wood fibres. The content of renewable resources is about 50%

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  • Flametec - Welding Videos
    • Flametec is stocked in Professional Plastics USA, Singapore & Taiwan Warehouses

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  • Fluoroloy® H (aka Rulon® H)
      Fluoroloy® H (aka Rulon® H) material offers a unique combination of both ceramics and PTFE, and was originally developed for UHF heat-sinking applications. It gives a slightly-better dielectric constant compared to standard Teflon, and has about 8 Times the thermal conductivity of Virgin PTFE. It is easy to machine and is available in rod, sheet and tape. Fluoroloy has high insulative properties, and is widely used in the microwave industry as an alternative to virgin and glass-filled PTFE.
    • Note: This product is made to order. Please allow 4-5 weeks for delivery.
    • If faster service is needed, please contact customer service.

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  • Fluorosint® 135
      Fluorosint® 135 is a PTFE material designed to provide the lowest coefficient of friction and deformation for seals, bearings, and washer applications. Designed to improve the performance of compressor piston rings, rider bands, and packaging sets, Fluorosint 135's extremely competitive pricing allows companies to guard against expensive equipment failure and ensure maximum production, longevity, and profitability.

      Competitive Advantage:
    • MCAM-Quadrant's Fluorosint® product family is not the same old typical PTFE compound. Fluorosint® is well known for its strong ability to out perform where all other compounds fall short. May it be the continuous use temperatures up to 500° F, improved deformation under load, lowest coefficient of friction or the low uniform coefficient of linear thermal expansion, Fluorosint® simply performs.

    • Fluorosint® 135 blend offers high performance at an extremely competitive price position. A perfect blended material which provides extreme performance for seals, bearings and wear applications. The lowest coefficient of friction material along with low deformation provides superior performance over typical filled PTFE compounds.

      Application Highlights
    • Compressor, Pump and Valve wear parts
    • Seals, bearings, thrust washers and seats
    • Insulating blocks and fixtures in diagnostic equipment
    • Compressor Piston Rings, Rider Bands & Packing Sets
    • Lubricated or Non-lube dry running applications
    • Typical Air, Hydrogen, Nitrogen, Refrigerant gas service
    • Service temperatures of 450°F / 232°C
    • Increased part life and improved performance
    • Applications in Chemical Processing, Medical, Aerospace, and Food Market

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