S-96545A443 3/8"-16 x 6" ASTM A193 Threaded Rods
Threaded Rods
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Basic Information
Dimension Parameters
Thread Parameters
Material & Strength Parameters
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Key Features & Benefits at a Glance
- Superior corrosion resistance with 316 stainless steel construction, ideal for harsh chemical and marine environments
- High tensile strength of 75,000 psi ensures reliable performance in demanding structural and industrial applications
- Precise Class 2A thread fit guarantees smooth assembly and secure fastening with consistent engagement
- Fully threaded 6" length provides maximum adjustability and flexibility across the entire rod
- UNC coarse threading offers excellent resistance to vibration loosening and quick installation
- ASTM A193 Grade B8M compliance ensures material integrity and performance in high-temperature service
- Right-hand threading design enables standard, intuitive installation for efficient operations
Professional Applications & Engineering Value
This 316 stainless steel threaded rod excels in industrial fastening where corrosion resistance and high tensile strength are critical. The fully threaded design with UNC coarse threads provides uniform load distribution and vibration resistance, making it ideal for chemical processing, marine equipment, and structural frameworks. Manufactured to ASTM A193 Grade B8M, it withstands elevated temperatures and aggressive environments, reducing maintenance and replacement costs. The Class 2A thread fit ensures compatibility with standard nuts, streamlining assembly in heavy-duty applications while maintaining durability under stress.
Specification Summary & Compliance
This 3/8"-16 UNC threaded rod features a 6" length with right-hand coarse threading and Class 2A thread fit per standard inch system requirements. It complies with ASTM A193 Grade B8M for material and mechanical properties, including a tensile strength of 75,000 psi. The rod meets industry specifications for dimensional accuracy and is suitable for applications requiring reliable performance under corrosive and high-stress conditions.