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3124X364P - Brass Press-In Threaded Insert

Inventory Status
Limited Availability

5/16-24 Brass press-in threaded inserts manufactured with a length of 0.364 Inch and an 0.383 Inch outside diameter.

Unit System
View Spec Sheet
Specs (in standard)
Label Value
A 0.383 in
Boss Size 0.736 in
Brand RAF
Display Name 3124X364P
Finish None
Hole Size 0.368 in
Length L 0.364 in
Material Brass
SKU 3124X364P
Series P
Thread Size 5/16-24
Specs (in metric)
Label Value
A 9.73 mm
Boss Size 18.69 mm
Brand RAF
Display Name 3124X364P
Finish None
Hole Size 9.35 mm
Length L 9.25 mm
Material Brass
SKU 3124X364P
Series P
Thread Size 5/16-24
Introducing the 3124X364P Press-in Threaded Insert, a high-quality component designed for precision and durability in threaded applications. Crafted from sturdy brass material, this insert boasts exceptional strength and corrosion resistance, making it ideal for a wide range of industrial and commercial settings.

Measuring at 0.3124 inches in outer diameter and 0.364 inches in length, the 3124X364P insert is compact yet robust, providing reliable reinforcement to your assemblies without adding unnecessary bulk. The press-in design ensures easy installation, allowing for seamless integration into various materials, including metals, plastics, and composites.

One of the standout features of the 3124X364P insert is its versatile application. Whether used in electronics, automotive, aerospace, or general manufacturing, this threaded insert excels in providing strong, vibration-resistant threads that enhance the integrity of the assembly. The absence of finish on the insert further ensures compatibility with different finishes or coatings, offering flexibility in design and aesthetics.

Engineered for efficiency and performance, the 3124X364P Press-in Threaded Insert is a reliable solution for creating secure and lasting threads in diverse applications. With its precision construction, durable brass material, and user-friendly design, this insert is a valuable addition to any engineering or manufacturing project, promising strength and reliability for the long haul.