8mm-1.25 x 60mm Class 8.8 Coarse Hex Cap Screws

Brand: Midwest

SKU: 87109

Product Attributes:
  • Finish: Chrome
  • Material: Steel
  • Brand: Midwest
  • Scale: Metric
  • Length: 60mm
  • Diameter: 8mm
  • Drive Size: 13mm Wrench/Socket
  • Drive Type: Hex
  • Thread Type: Coarse
  • Package Type: HandiPack Refill Bag

Product Description:

These 8mm-1.25 x 60mm Class 8.8 Coarse Hex Cap Screws are crafted from high-strength Class 8.8 steel, ensuring reliable durability and long-lasting performance in demanding automotive, industrial, and maintenance applications. Featuring a bright chrome-plated finish, these screws offer excellent corrosion resistance along with a polished, decorative appearance, making them ideal for visible installations where both function and aesthetics matter.

Designed with a hex head for secure torque, these screws allow for easy installation and consistent tightening using standard hand or power tools. Their durable steel construction provides dependable performance in light to moderate environments, while the clean, professional look enhances the overall appearance of your projects.

Perfect for use in a variety of settings, these bolts are well-suited for professionals and DIY enthusiasts alike who require strong, corrosion-resistant fasteners that combine strength with style. Whether for automotive repairs, industrial machinery, or general maintenance, these hex cap screws deliver dependable quality and a polished finish.

Features:

  • Manufactured from Class 8.8 steel for reliable strength and long‑lasting performance in demanding applications.
  • Bright chrome‑plated finish delivers corrosion resistance along with a polished, decorative appearance ideal for visible installations.
  • Hex head design for secure torque which allows easy installation and consistent tightening with standard hand or power tools.
  • Durable steel construction engineered for dependable performance in automotive, industrial, and maintenance applications.
  • Clean, professional look enhances aesthetics while maintaining functional durability in light to moderate environments.