Keys & Keystock
Square, rectangular, Woodruff keys and keystock bar.
Also searched as: woodruff keysquare keymachine keykeystockparallel key
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0.13 x 12 in. Square Key Stock
Length: 12 inShape: SquareWidth: 0.13 in
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0.25in. X 12in. Square Key Stock
Length: 12 inShape: SquareWidth: 0.25 in
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1-1/8" x 3/4" x 12" Plain Finish Carbon Steel Oversized Keystock
Height: 3/4 inLength: 12 inWidth: 1-1/8 in
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1/2" x 1/2" x 12" Square Steel Key Stock (Bar), Undersized
Length: 12 inchShape: SquareSize: 1/2 inch x 1/2 inchTolerance: Undersized
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1/2x1/2x12 Mak-A-Key OVERSIZED Steel Keystock
Height: 1/2 inLength: 12 inType: OversizedWidth: 1/2 in
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1/8" Square x 12" Keystock
Length: 12 inShape: SquareWidth: 1/8 in
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3/16" Keystock
Size: 3/16"
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3/16" Square Keystock, 12" Length
Length: 12 inchShape: SquareSize: 3/16 inch
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304 Stainless Steel Parallel Key
Sizes: M3x3 to M16x10
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40mmx6mmx6mm 304 Stainless Steel Key Stock Keystock
Height: 6 mmLength: 40 mmWidth: 6 mm
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5/8 SQ BRASS KEYSTOCK
Shape: SquareWidth: 5/8 inch
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7/8" X 12" Zinc Plated Keystock
Length: 12"Width: 7/8"
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7mm Square Key
Shape: SquareWidth: 7 mm
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A-type Shaft Keys
Sizes: M3-M16
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A3 Steel Woodruff Keys
Sizes: M2-M10
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Bilateral Key Stock
Height: 1/4 inLength: 12 inTensile Strength: 140,000 psiWidth: 1/4 in
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Bilateral Keystock
Finish: PlainHeight: 1/4 inchLength: 12 inchWidth: 5/16 inch
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Budget Key T Bar Key Lock Tapered Square Drive Key
Square Drive: 6.5 mm
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Cold Rolled Square Key Stock
Size: 2" x 1-5/8"
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DIN6885 Machine Key Stock
Standard: DIN6885
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Double Round Ends Parallel Key DIN 6885
Standard: Din 6885
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Flat Parallel Key DIN6885
Standard: DIN6885
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Gib Head Machine Key / Taper Key DIN6887
Size: 6X6X30~16X10X100Standard: DIN6887
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Half Moon Woodruff Key
Length: 15 mmQuantity: 10 KeysThickness: 5 mm
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Half Round Shaft Key Woodruff Key
Length: 9.5 mmThickness: 3 mmWidth: 3.8 mm
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Imperial Woodruff Key 1/4" x 7/8"
Size: 1/4 inch x 7/8 inch
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Key Stock
Height: 3/8 inLength: 36 inWidth: 3/8 in
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Key Stock
Height: 1/4 inLength: 36 inWidth: 1/4 in
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Key Stock Keystock Assortment kit, Smooth Round Ended Feather Key Parallel Drive Shaft Keys Set
Number of Sizes: 16Quantity: 140PcsSizes: 8mm 10mm 12mm 16mm 20mm 25mm 30mm
from $15.99Amazon $15.99 -
Key Stock, Under, 36 In L, 1/4 x 1/4
Length: 36 inchSize: 1/4 inch x 1/4 inch
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Key Stock: 1/8" High, 3/16" Wide, 36" Long
Height: 1/8 inLength: 36 inWidth: 3/16 in
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Keystock Assortment Kit
Quantity: 140 pcSizes: 16 different sizes
About keys & keystock
Keys and keystock are essential mechanical components used to prevent relative rotation between a shaft and a rotating machine element such as a gear, pulley, or coupling. They transmit torque by fitting into keyways machined into both the shaft and the hub. The primary types include square keys, rectangular keys, and Woodruff keys. Square and rectangular keys are typically parallel keys, often specified by their width, height, and length, conforming to standards such as ASME B17.1 or DIN 6885. Woodruff keys are semicircular in shape, designed to seat in a semicircular keyway in the shaft, which can reduce stress concentrations and provide easier assembly; they are specified by their nominal width and diameter, often per ASME B17.2. Keystock refers to bar material, typically supplied in standard lengths, from which custom keys can be cut. Common materials for keys and keystock include low-carbon steel (e.g., 1018, 1045) for general applications, stainless steel (e.g., 303, 304, 316) for corrosion resistance, and alloy steels for higher strength requirements. Finishes are typically plain, although some may be offered with a black oxide coating for minor corrosion protection or improved appearance.
How to choose
Selecting the correct key involves a sequence of decisions. First, determine the required torque transmission capacity to establish the necessary key dimensions (width, height, length) and material. Second, consider the shaft and hub keyway geometry; this dictates whether a square, rectangular, or Woodruff key is appropriate. Woodruff keys are often preferred for tapered shafts or lighter duty applications where alignment is critical. Third, verify the available space and keyway dimensions on both the shaft and the mating component. Finally, choose the material based on environmental conditions and strength requirements, with carbon steel being standard, and stainless steel for corrosive environments.