Brief: Want to see how the Mechanical Hydraulic Grab performs under real-world conditions? This video provides a comprehensive testing demonstration, showcasing its robust operation in handling bulk materials like ore, scrap, and wood chips. You'll learn how its simple structure and precise opening/closing movements ensure reliable performance in harsh environments, including river dredging and pebble-laden areas.
Related Product Features:
Efficiently handles bulk cargoes such as ore, scrap, nickel ore, garbage, and wood chips in harsh environments.
Simple structure for easy operation and precise opening and closing movements under various conditions.
Designed using 3D virtual modeling and ANSYS analysis for optimized strength and weight distribution.
Features a bearing maze seal to extend service life and ensure reliable performance.
Suitable for use with double-reel cranes, with a lifting chain that connects directly to the crane's hoisting rope.
Wire rope head connection can be customized to meet specific crane requirements.
Semi-open hopper flap design facilitates easy insertion into large scrap steel or domestic garbage.
Main structure is integrated as a whole, providing stable quality and dependable operation.
FAQs:
What types of materials can the Mechanical Hydraulic Grab handle?
The grab is designed to efficiently load and unload bulk cargoes such as ore, scrap, nickel ore, garbage, and wood chips, even in harsh environments including rivers with pebbles and for dredging purposes.
How is the grab connected to the crane?
The grab features a lifting chain that connects directly to the crane's hoisting rope, and the wire rope head connection can be customized according to specific crane requirements for seamless integration.
What design features enhance the grab's durability and performance?
The grab utilizes 3D virtual design and ANSYS analysis to ensure optimal strength and weight distribution. It includes a bearing maze seal to extend service life and has an integrated main structure for stable, reliable performance in demanding conditions.