S-91563A306 5/8"-11 x 3" Vibration-Resistant Setup Studs
Vibration-Resistant Setup Studs
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Basic Information
Dimension Parameters
Thread Parameters
End A Parameters
End B Parameters
Material & Strength Parameters
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Key Features & Benefits at a Glance
- Superior vibration resistance for stable performance in high-stress industrial environments
- High tensile strength of 60,000 PSI ensures reliable load-bearing capacity and structural integrity
- Dual thread classes (Class 2A and Class 5) provide precise fit and optimal engagement with mating components
- Threaded on both ends enables versatile installation and secure fastening in complex assemblies
- Robust steel construction delivers long-lasting durability and resistance to wear and corrosion
- Full RoHS 3 and REACH compliance guarantees environmental safety and regulatory adherence
- Standard 5/8"-11 inch threading ensures compatibility with common industrial equipment and fittings
Professional Applications & Engineering Value
This vibration-resistant steel stud is engineered to address critical challenges in demanding industrial settings, such as machinery vibration, dynamic loads, and assembly stability. The combination of Class 2A and Class 5 thread ends provides a balanced approach: Class 2A ensures easy assembly and disassembly, while Class 5 offers tighter tolerances for secure, vibration-proof connections. Made from high-strength steel, it maintains integrity under 60,000 PSI tensile stress, making it ideal for heavy-duty applications in construction, automotive, and manufacturing. The double-ended threading allows for flexible mounting in vibration-prone setups, reducing maintenance needs and enhancing operational reliability.
Specification Summary & Compliance
This stud features precision 5/8"-11 inch threading with Class 2A (1" length) and Class 5 (7/8" length) thread ends, adhering to standard dimensional tolerances for consistent performance. It meets RoHS 3 (2015/863/EU) and REACH (EC 1907/2006) compliance, ensuring it is free from hazardous substances and suitable for global industrial use. The 60,000 PSI minimum tensile strength underscores its reliability in high-stress applications, backed by robust material specifications.