10-32 x 1 Fine Socket Cap Screws

Brand: Midwest

SKU: 67813

Product Attributes:
  • Finish: Stainless Steel
  • Material: 18-8 Stainless Steel
  • Color: Silver
  • Brand: Midwest
  • Scale: Standard
  • Length: 1"
  • Head Type: Knurled Socket
  • Drive Size: 5/32" Hex Key
  • Drive Type: Socket
  • Thread Type: Fine
  • Package Type: Refill Box

Product Description:

These 10-32 x 1 Fine Socket Cap Screws from Midwest are crafted from high-quality 18-8 stainless steel, offering excellent corrosion resistance and long-lasting durability in demanding environments. Featuring a knurled top for easy hand tightening or loosening without tools, they provide convenience for applications requiring frequent access. The fine machine threads ensure a precise fit in pre-tapped holes, delivering strong clamping force for reliable fastening.

Designed with a hex socket for secure torque transfer, these screws are ideal for precision assembly tasks where added clamping strength is needed beyond hand-tightening. Their robust construction and reliable performance make them well-suited for high-performance industrial settings, including manufacturing, machinery maintenance, and equipment assembly. Midwest’s commitment to quality ensures these screws meet the needs of both professional and industrial users seeking dependable fastening solutions.

Features:

  • Made from high-quality 18-8 stainless steel for excellent corrosion resistance, strength, and long-lasting performance in demanding environments.
  • Knurled top allows for easy hand tightening or loosening without tools, providing convenience in frequent-access applications.
  • Fine machine threads ensure accurate fit in pre-tapped holes, delivering strong clamping force and reliable fastening.
  • Hex socket allows secure torque transfer for applications requiring added clamping strength beyond hand-tightening.
  • Ideal for precision assembly tasks, these fine socket cap screws deliver reliable fastening with a hex socket that enables secure torque application, ensuring optimal clamping strength in high-performance industrial settings.