Swivel Hoist Ring
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CustomizeWe offer full customization based on customer requirements, including markings, colors, logos, bolt coating processes, and appearance. We can also design drawings tailored to specific needs.
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ServiceBoth metric and UNC threaded hoist rings are available in stock and can be shipped within 1–3 days. For special threaded hoist rings, delivery can be arranged within 3–15 days (contact our service team for bulk order confirmation).
Swivel Hoist Ring
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Working Load Limit 0.4-50t
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Rotation 360 degree
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Pivot 230 degree
- Material: High-strength chromium-molybdenum alloy steel
- Attachment type: Screw-in
- Rotation angle: 360°
- Pivot angle: 230°
- Surface treatment (rings): Powder-coated
- Surface treatment (bolts): Black oxide finish
- Working temperature range: -40℃~+200℃
- Thread size: M8–M150
- Bolt grade: 10.9
- Custom thread: Metric/Unified National Coarse (UNC)/Unified National Fine (UNF)/pipe thread/lengthened/shortened
- Rotates under load: No
- Holding spring for suspension link: No
- Working load limit: 0.4T-50T
- Safety factor: 4:1
- Standard: DIN EN 1677-1
- Explosion protection: No
- RAL color No.: Customizable
- Identification label available: No
- Passed 6g plug gauge inspection, ensuring compatibility with precision-threaded holes
- Endured 1.5x load fatigue testing (20,000 cycles) and 2.5x rated load testing for reliability
- Verified through magnetic particle inspection to confirm crack-free integrity
- Complies with EN1677-1 standards, with certified test reports available upon request
- Industrial plants: Commonly employed for installing industrial machinery and lifting molds
- Transportation: Suitable for transporting heavy industrial equipment such as transformers and generator sets
Engineered for precision and versatility, this swivel hoist ring offers a working load limit ranging from 0.4t to 50t. With full 360-degree rotation and a 230-degree pivot, it ensures smooth lifting operations, even in the most challenging angles. Its ball-bearing mechanism allows seamless rotation under load for uniform stress distribution and enhanced safety during lifting operation.