Plastic Stock
Delrin, HDPE, UHMW, PTFE, nylon and polycarbonate sheet and rod.
Also searched as: delrinacetaluhmwhdpe sheetpolycarbonatenylon rod
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Clear Polycarbonate Safety Button Safety Attachment
Color: Clear
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Clear Polycarbonate Sheet
Dimensions: 12" x 12"Thickness: 1/2"
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Clear Polycarbonate Sheet Roof Panels
Dimensions: 1.97x6.56ft
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Colorless Polycarbonate Sheet
Length: 12 in
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from $0.05Alibaba $0.05 -
DELRIN Acetal Block, White
Length: 12.5"Thickness: 1.25"Width: 2"
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Delrin / Acetal Copolymer Plastic Sheet, Black
Length: 12"Thickness: 1-3/4"Width: 6"
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Delrin 150 (Acetal Homopolymer) Natural Sheet
Thickness: 4.00"Width: 3.25"
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Delrin AF-100 Acetal Plastic Sheet, Brown
Length: 7.50"Thickness: 1.50"Width: 5.375"
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Delrin Acetal Copolymer Rod, White
Diameter: 3/8"Length: 3 ft
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Delrin Acetal Homopolymer Plastic Bar, White
Diameter: 1-1/4 in
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Delrin Acetal Homopolymer Plastic Bar, White
Thickness: 0.375 in
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Delrin Acetal Homopolymer Plastic Rod, Black
Diameter: 7/16 in
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Delrin Acetal Plastic Rod
Diameter: 3.25"Length: 48"
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Delrin Acetal Plastic Rod, Black
Diameter: 2"Length: 12"
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Delrin Acetal Plastic Sheet
Length: 8"Thickness: 1.25"Width: 8"
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Delrin Acetal Rod, Black
Diameter: 3"
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Delrin Black Acetal POM Sheet
Thickness: .125" (1/8")Width: 12"
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Delrin Rod Stock
Length: 1 ft
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Delrin Rod, White
Diameter: 1/8"
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Delrin Seat for Industrial Valve
Application: ValvePerformance: CorrosionShape: O-RingStandard: NonstandardType: Shaft Seal
from $1.00Made-in-China $1.00 -
Delrin® Acetal Plastic Rod
Color: WhiteDiameter: 0.4375 inLength: 1 ft
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Durable Lightweight UHMW-PE Roller
Application: Chemical Industry, Grain Transportation, Mining Transport, Power PlantBearing Type: Double Sealed BearingCertificate: CE, ISO, Cema, SGS, CB, DIN, JIS, BSColor: as Per Customer`S RequriementsDiameter: ['60-219']
from $1.00Made-in-China $1.00 -
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from $0.50Made-in-China $0.50 -
Foamed Polycarbonate
Length: 144 inThickness: 0.063 inWidth: 26 in
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Garland Slides - UHMW - Black
Color: BlackLength: 40 in
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HDPE Bar, White, 1" x 10-1/4" x 11-1/4"
Color: WhiteLength: 11-1/4"Thickness: 1"Width: 10-1/4"
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HDPE Bar, White, 1" x 3" x 21"
Color: WhiteHeight: 3"Length: 21"Width: 1"
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HDPE Bar, White, 3/4" x 2" x 18" LONG
Color: WhiteLength: 18"Thickness: 3/4"Width: 2"
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HDPE Plastic Sheet
Length: 48"Thickness: 3/8"Width: 8"
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HDPE Plastic Sheet
Length: 32"Thickness: 1/8"Width: 16"
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HDPE Plastic Sheet
Length: 48"Thickness: 3/4"Width: 12"
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HDPE Plastic Sheet
Length: 48"Thickness: 1"Width: 36"
About plastic stock
Plastic stock refers to semi-finished plastic materials, typically in sheet, rod, or tube form, used for machining custom components. Common materials include Delrin (acetal), known for its high strength, stiffness, and low friction; High-Density Polyethylene (HDPE), valued for its chemical resistance and impact strength; Ultra-High Molecular Weight Polyethylene (UHMW), offering exceptional abrasion resistance and low coefficient of friction; Polytetrafluoroethylene (PTFE), recognized for its extreme temperature resistance and non-stick properties; Nylon, chosen for its toughness, wear resistance, and chemical compatibility; and Polycarbonate, favored for its optical clarity, impact resistance, and high heat deflection. Selection is primarily based on material type, defined by mechanical properties such as tensile strength, flexural modulus, and impact strength (e.g., Izod notched). Thermal characteristics like continuous use temperature and coefficient of thermal expansion are critical. Chemical compatibility, dielectric strength, and UV resistance may also be defining factors. Dimensions are specified by thickness, width, and length for sheets, or by diameter and length for rods and tubes. Surface finishes are typically as-extruded or as-cast, with no further treatment.
How to choose
When selecting plastic stock, first determine the primary functional requirements. Is it for wear, impact, chemical exposure, or electrical insulation? This narrows down the material type (e.g., UHMW for wear, HDPE for chemical, Polycarbonate for impact). Next, consider the operating environment, specifically temperature range and UV exposure, to ensure material stability. Third, define the required mechanical properties, such as strength, stiffness, and hardness, to confirm the chosen material meets structural demands. Finally, specify the required dimensions – thickness, width, and length for sheets, or diameter and length for rods – to match the part's geometry and minimize material waste.