Sale!
Home / Fasteners & Hardware / Screws / [2000 BULK] Thread Rolling Screws Torx Pan Head 18/8 Stainless Steel Tri-Lobe 48-2 1/4-10 X 1/2 Plastite Screws Alternative New Release

[2000 BULK] Thread Rolling Screws Torx Pan Head 18/8 Stainless Steel Tri-Lobe 48-2 1/4-10 X 1/2 Plastite Screws Alternative New Release

Original price was: $1,033.76.Current price is: $434.18.

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

SKU: SKHWTA00WYD Category: Tag:
Share

Engineered for dependable performance, Thread Rolling Screws with a Torx Pan Head offer high strength, smooth installation, and corrosion resistance. Crafted from 18/8 stainless steel, these screws resist rust in demanding environments, while the thread-rolling process produces durable, high-quality threads. Featuring a Tri-Lobe 48-2 drive pattern and a Torx Pan Head, they provide secure engagement and a clean, flush finish. Designed as an alternative to Plastite screws, they excel in metal-to-metal and light structural assemblies.

Key Features

    Material: 18/8 stainless steel for exceptional corrosion resistance and durability.

    Head: Torx Pan Head delivers a flush, professional appearance and a low-profile drive.

    Drive: Tri-Lobe 48-2 pattern provides strong engagement and reliable torque transfer.

    Size: 1/4-10 x 1/2 in (length 1/2 inch) for versatile fastening.

    Threading: Thread-rolling design creates durable threads with excellent load transfer.

    Versatility: An excellent Plastite screws alternative for metal-to-metal and light structural assemblies.

Specifications

    Material: 18/8 stainless steel

    Head: Torx Pan Head

    Drive: Tri-Lobe 48-2

    Size: 1/4-10 x 1/2 in

    Thread Type: Thread Rolling

These screws deliver reliable torque transfer and pull-out resistance in demanding assemblies, while the stainless steel construction ensures longevity in moisture-prone or harsh environments. Choose them for a robust, corrosion-resistant fastening solution that aligns with Plastite-driven applications without compromising performance.