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Crosby® S-1317 SHUR-LOC® Clevis Hooks. These innovative and secure lifting hooks feature a unique locking mechanism for relia

Crosby® S-1317 SHUR-LOC® Clevis Hooks

Crosby® S-1317 SHUR-LOC® Clevis Hooks are innovative and reliable lifting hooks designed for secure and efficient attachment in heavy-duty rigging applications. Manufactured by Crosby, a trusted provider of high-quality lifting and rigging solutions, the S-1317 SHUR-LOC® Clevis Hooks offer exceptional strength, durability, and safety.

The S-1317 SHUR-LOC® Clevis Hooks feature a unique locking mechanism that ensures a positive and secure connection. The clevis pin is equipped with a spring-loaded locking device that automatically engages and locks the pin in place, preventing accidental disengagement during lifting operations. This locking mechanism provides an added layer of safety and peace of mind.

These hooks are meticulously engineered and constructed from premium-grade alloy steel, ensuring superior strength and reliability. They undergo rigorous testing, including non-destructive testing and load testing, to meet or exceed industry standards for safety and performance. This ensures their durability and adherence to safety guidelines.

Crosby® S-1317 SHUR-LOC® Clevis Hooks are available in various sizes and capacities to accommodate different lifting requirements. They are commonly used in industries such as construction, manufacturing, and transportation, where secure and efficient load attachment is essential.

When using Crosby® S-1317 SHUR-LOC® Clevis Hooks, it is important to follow the manufacturer's instructions and guidelines for proper installation, inspection, and usage. Regular maintenance and inspections are necessary to ensure continued performance and safety.

Overall, Crosby® S-1317 SHUR-LOC® Clevis Hooks provide a reliable and secure lifting solution. With their innovative locking mechanism, robust construction, and adherence to safety standards, these hooks offer enhanced load stability, secure attachment, and improved safety during heavy lifting operations.

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