Sale!
Home / Fasteners & Hardware / Screws / Last Chance 14 X 1/2″ Type B Self Tapping Sheet Metal Screws Indented Hex Washer Head Unslotted Drive Steel Zinc & Bake (3000/Pkg.)

Last Chance 14 X 1/2″ Type B Self Tapping Sheet Metal Screws Indented Hex Washer Head Unslotted Drive Steel Zinc & Bake (3000/Pkg.)

Original price was: $437.78.Current price is: $183.87.

For orders under $150.00, a shipping fee of $12.99 applies.

SKU: SKHWTA0180F Category: Tag:
Share

These Type B self-tapping sheet metal screws are engineered for efficient fastening in thin materials, eliminating the need for pre-drilled holes in many applications. With an indented hex washer head and unslotted drive, they deliver secure and precise connections suitable for demanding industrial environments.

Specs

    Dimensions: Diameter #14, length 1/2 inch

    Finish: Zinc and bake coating for enhanced durability

    Drive Type: Unslotted, designed for hex tools to prevent cam-out and ensure torque control

    Thread Type: Type B self-tapping, optimized for penetrating and forming threads in sheet metal up to 0.048 inch thick

Features

    Self-Tapping Design: Enables quick installation by creating its own threads, reducing assembly time and labor costs in high-volume projects like manufacturing fixtures or enclosures, where efficiency is critical for engineers working on tight schedules.

    Indented Hex Washer Head: Provides a built-in washer effect for even load distribution and improved resistance to loosening under vibration, making it ideal for applications in automotive panels or electrical housings where reliability prevents failures and extends service life.

    Zinc and Bake Coating: Offers superior corrosion resistance in exposed environments, such as outdoor structures or marine settings, allowing for longer-lasting performance compared to uncoated alternatives and minimizing maintenance needs for professionals in construction or fabrication.

    Unslotted Drive: Facilitates secure, tool-specific engagement that reduces the risk of slippage during tightening, enhancing safety and precision in precision assembly tasks like aerospace components or machinery builds, where exact torque is essential to avoid over-tightening damage.