Menu

1 Inch Drive Breaker Bar 27 Inch Length - Armstrong

Part #: 14-918

Specifications

  • Manufacturer: Armstrong
  • Model Number: 14-918
  • Drive Size: 1 inch
  • Length: 27 inches
  • Weight: 7.9 lbs

Key Features

  • Heavy-Duty Construction: Built for demanding tasks in automotive, industrial, and construction environments.
  • Extended Length Design: The 27-inch handle provides significant leverage, making it easier to break loose seized or overtightened fasteners.
  • 1-Inch Drive Compatibility: Engineered to accommodate large, heavy-duty sockets for high-torque applications.
  • Durable Finish: Resists corrosion and wear, ensuring long-term reliability and performance.

Applications

This breaker bar is essential for tasks requiring substantial leverage and force. It is commonly used in:

  • Automotive repair, particularly for trucks, heavy machinery, and farm equipment.
  • Industrial maintenance and assembly lines.
  • Construction projects involving large bolts and nuts.
  • Any situation where extreme torque is needed to loosen stubborn fasteners.

Benefits

  • Enhanced Leverage: The extended 27-inch length dramatically increases leverage, significantly reducing the effort required to free rusted or seized bolts and nuts.
  • Increased Efficiency: Speeds up the process of disassembling tightly secured components, saving valuable time and labor in professional settings.
  • Superior Durability: Constructed to withstand rigorous use, offering a dependable tool that performs consistently in challenging conditions.
  • Problem-Solving Power: Effectively addresses the common pain point of stubborn fasteners that standard wrenches cannot budge, preventing damage to smaller tools.

Recommended Alternatives

  • (image for) Armstrong
    Other products
    Armstrong Homepage
  • Model: 127508
  • Shipping Weight: 7.9lbs
  • UPC: 781412149180
  • Manufacturers Part #: 14-918
  • Manufactured by: Armstrong
  • Also Known As: ARM14-918, ARM14-918

This product was added to our catalog on Friday 21 October, 2011.