7/8-14 Grade 8 Fine Hex Nuts

Brand: Midwest

SKU: 03738

Product Attributes:
  • Finish: Yellow Zinc
  • Material: Steel
  • Color: Gold
  • Brand: Midwest
  • Scale: Standard
  • Diameter: 7/8"
  • Thread Type: Fine
  • Package Type: Box

Product Description:

These 7/8-14 Grade 8 Fine Hex Nuts are crafted from durable steel with a yellow zinc finish, providing superior strength and excellent corrosion resistance for demanding fastening applications. Designed with precision fine threads, they ensure a secure fit and exceptional durability, making them ideal for heavy-duty industrial and automotive use.

Perfect for securing critical components in automotive assemblies and industrial projects, these hex nuts combine reliable performance with a professional gold finish. Their fine-thread design is especially suited for tight-tolerance applications that require both strength and long-lasting reliability. Whether used in manufacturing, repair, or maintenance, these hex nuts deliver consistent quality and dependable fastening.

Features:

  • Crafted from durable steel with a yellow zinc finish, these 7/8-14 Grade 8 Fine Hex Nuts offer superior strength and corrosion resistance for reliable fastening in demanding applications.
  • Designed for precision and high performance, these fine-thread hex nuts ensure a secure fit and exceptional durability, making them ideal for heavy-duty industrial and automotive fastening needs.
  • Enhance your fastening projects with these gold-finished hex nuts that combine precision engineering and a sleek look, ensuring both reliability and a professional appearance in every application.
  • Ideal for securing critical components in automotive and industrial projects, these hex nuts deliver dependable performance and long-lasting strength across a wide range of demanding fastening applications.
  • These 7/8-14 Grade 8 Fine Hex Nuts provide precise, fine-thread fastening ideal for heavy-duty automotive and industrial assemblies requiring exceptional strength and corrosion resistance in tight-tolerance applications.