S-96545A112 1/4"-20 x 1 1/2" 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 environments and chemical exposure.
- High tensile strength of 75,000 psi ensures reliable performance in heavy-duty and high-stress applications.
- Full threading along the entire 1 1/2" length provides maximum flexibility for nut placement and adjustable fastening.
- Precise UNC coarse thread with Class 2A fit guarantees easy assembly and consistent engagement with standard nuts.
- Compliance with ASTM A193 B8M specification assures material quality and performance for critical industrial uses.
- Right-hand thread direction offers standard, intuitive installation for efficient operations.
- Durable inch-system design supports seamless integration with existing equipment and components.
Professional Applications & Engineering Value
This fully threaded rod in 316 Stainless Steel addresses common industrial challenges such as corrosion-induced failure and mechanical stress. The UNC coarse thread design resists loosening under vibration, while the Class 2A thread fit ensures smooth installation without galling. Engineered to meet ASTM A193 B8M standards, it provides dependable fastening in demanding sectors like chemical processing, marine equipment, and structural assemblies. Its 75,000 psi tensile strength and corrosion-resistant properties make it a cost-effective solution for extending service life and reducing maintenance in aggressive environments.
Specification Summary & Compliance
This rod features a 1/4"-20 UNC coarse thread with Class 2A external thread fit for precise tolerances. It complies with ASTM A193 B8M material and manufacturing specifications, ensuring high strength and reliability. The product is manufactured to meet industry standards for dimensional accuracy and is suitable for applications requiring consistent performance under mechanical loads.