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2012-03-18

postheadericon Alloy Steel Set Screw, Hex Socket Drive, Cup Point, #10-32, 1" Length (Pack of 25)

Cheap Alloy Steel Set Screw, Hex Socket Drive, Cup Point, #10-32, 1" Length (Pack of 25) Online

Come and check out just one of the Internet's biggest variety items for Alloy Steel Set Screw, Hex Socket Drive, Cup Point, #10-32, 1" Length (Pack of 25), including the products in such widely used brand names at reasonable pricing. Along with Fast Shipping in Selection of Alloy Steel Set Screw, Hex Socket Drive, Cup Point, #10-32, 1" Length (Pack of 25).

Alloy Steel Set Screw, Hex Socket Drive, Cup Point, #10-32, 1" Length (Pack of 25) Features

  • Set Screws keep parts from turning relative to a shaft
  • Alloy Steel is one of the strongest materials used in fasteners, making this an ideal material to use when the primary concern is the application pulling apart
  • Do not have an external head
  • Drive system is a hexagon-shaped hole
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads

Alloy Steel Set Screw, Hex Socket Drive, Cup Point, #10-32, 1" Length (Pack of 25) Overview

Set Screws are often used for holding a pulley, gear, or other parts from turning relative to a shaft.

Alloy Steel is steel that has been alloyed with other materials to improve overall physical properties. Steels are designated by a 4 number SAE Steel grade. The first two digits indicate the primary materials used to form the steel. The last 2 digits identify the percentage of carbon for the alloy (in hundredths). Tensile strength ranges for the alloys typically used in these fasteners range from 170,000 to 180,000 psi (pounds per square inch), making these amongst the strongest of materials.

Hex socket drive systems are driven by hex wrenches or power tools with hexagonal bits. Cup Point is the most common point type, with good holding capability.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths. [else][endif] [if
  • Set Screws keep parts from turning relative to a shaft
  • Alloy Steel is one of the strongest materials used in fasteners, making this an ideal material to use when the primary concern is the application pulling apart
  • Do not have an external head
  • Drive system is a hexagon-shaped hole
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
]

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