6.3mm Metric Extruded U Nuts

Brand: Midwest

SKU: 69251

Categories: Extruded U Nuts

Product Attributes:
  • Finish: Black Phosphate
  • Material: Steel
  • Color: Black
  • Brand: Midwest
  • Scale: Metric
  • Diameter: 6.3mm
  • Thread Type: Coarse
  • Package Type: Refill Box

Product Description:

6.3mm Metric Extruded U Nuts are crafted from durable steel with a sleek black phosphate finish, providing excellent strength and corrosion resistance for reliable fastening. Designed for quick and easy installation, these U nuts offer a secure grip and consistent performance, making fastening tasks faster and more efficient.

Ideal for automotive, industrial, and sheet metal applications, these extruded U nuts deliver vibration-resistant connections that maintain a strong hold even under challenging conditions. They are especially effective in fastening sheet metal components where traditional nuts are impractical, ensuring enhanced assembly reliability in tight spaces. Whether used in manufacturing or repair projects, these versatile U nuts provide dependable and long-lasting fastening solutions.

Features:

  • Crafted from durable steel with a sleek black phosphate finish, these 6.3mm metric extruded U nuts offer reliable strength and corrosion resistance for secure fastening in any project.
  • Designed for quick and easy installation, these extruded U nuts provide a secure grip and consistent performance, making your fastening tasks faster and more efficient.
  • Provides a versatile fastening solution that fits tightly and maintains strong hold under vibration, ensuring long-lasting reliability for your automotive or industrial applications.
  • Ideal for a wide range of fastening applications, these extruded U nuts offer dependable, vibration-resistant connections that enhance assembly reliability across automotive, industrial, and sheet metal projects.
  • These 6.3mm metric extruded U nuts excel in fastening sheet metal components where traditional nuts are impractical, delivering secure, vibration-resistant connections in tight spaces for enhanced assembly reliability.