4mm-.70 Metric Flange Nuts

Brand: Midwest

SKU: 39304

Product Attributes:
  • Finish: Chrome
  • Material: Steel
  • Color: Silver
  • Brand: Midwest
  • Scale: Metric
  • Diameter: 4mm
  • Thread Type: Coarse
  • Package Type: Refill Box

Product Description:

These 4mm-.70 Metric Flange Nuts are crafted from durable steel with a sleek chrome finish, offering excellent strength and corrosion resistance for reliable performance. Featuring a coarse thread design, they provide secure fastening and easy installation, ideal for a variety of metric hardware projects. The flange design increases the bearing surface, enhancing load distribution and vibration resistance to keep assemblies secure under pressure.

Perfect for automotive, machinery, and general hardware applications, these flange nuts deliver long-lasting, dependable connections. Their vibration-resistant properties make them especially suitable for tight, high-stress environments where joint stability is critical. Whether you’re working on vehicle repairs or industrial machinery, these metric flange nuts provide a versatile and effective fastening solution.

Features:

  • Crafted from durable steel with a sleek chrome finish, these 4mm-.70 metric flange nuts deliver reliable strength and corrosion resistance, making them an essential addition to your fastening needs.
  • Designed with a coarse thread for secure fastening, these flange nuts ensure a tight grip and easy installation, perfect for your metric hardware projects.
  • The flange design provides extra bearing surface for enhanced load distribution and vibration resistance, ensuring your assemblies stay secure under pressure.
  • Versatile and dependable, these metric flange nuts are perfect for a wide range of fastening applications, delivering secure, long-lasting connections across automotive, machinery, and general hardware projects.
  • Ideal for automotive and machinery applications, these 4mm-.70 metric flange nuts provide a secure, vibration-resistant fastening solution that enhances joint stability in tight, high-stress environments.