Passivated 303 Stainless Steel Shoulder Screw, Hex Socket Drive, #10-32, 1/4" Shoulder Diameter, 1/2" Shoulder Length (Pack of 5) Reviews
Passivated 303 Stainless Steel Shoulder Screw, Hex Socket Drive, #10-32, 1/4" Shoulder Diameter, 1/2" Shoulder Length (Pack of 5) Feature
- Shoulder Screws reduce rotation through locking
- Stainless Steel 303 is known for its ability to cut and finish with relative ease
- Socket cap head fasteners are very common in industrial applications
- 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
Stainless steels are used for their corrosion resistance, high-temperature strength, scaling resistance, and low-temperature toughness. These properties account for their extremely wide use in practically every industry. Austenitic Stainless Steels are alloys of iron and carbon that contain between 16% and 30% Chromium, a maximum of 0.15% carbon, along with Nickel (or Manganese), and other alloying elements. The chromium, which helps develop a passive surface oxide film, provides corrosion resistance in stainless steels. Austenitic Stainless Steels are designated by a 3 digit SAE Stainless Steel Grade beginning with the number 3 (e.g. 304, 316).
Stainless Steel 303 contains 0.15% carbon, along with traces of sulfur and phosphorus which makes this a free machining alloy. Free machining refers to the ability to cut and finish the materials without heavy wear on the machining tools. Tensile Strength is 35000 psi (pounds per square inch).
With a high cylindrical head, socket cap head fasteners have a recessed driving area and offer high hold power at high torque levels. Hex socket drive systems are driven by hex wrenches or power tools with hexagonal bits.
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.
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