
9 ton shackle , Iran
The 9-ton horseshoe shackle is a steel tool with a unique design, used for connecting and moving heavy loads in industrial and construction projects. This shackle is specifically designed to withstand tensile stresses and heavy loads up to 9 tons. The shackle body is typically made of alloy steel, offering high tensile and impact properties. The horseshoe design of the shackle helps evenly distribute forces across the connection surface, thus effectively preventing damage to the connection points. This shackle is commonly used in loading, transportation, and installation of heavy equipment.
The 9-ton horseshoe shackle has an upper ring that allows it to be connected to crane hooks or other lifting systems. For optimal use, the shackle is usually coated with anti-corrosion materials, preventing rust and wear, which extends its service life. These shackles are generally designed and manufactured according to international safety standards such as ASME B30.9 and EN 1677. Additional features of this shackle include its ability to handle loads in various environmental conditions, including high humidity and extreme temperatures. This tool is widely used in heavy industries, construction, mining, and the transportation of large loads.You can order and buy 9 ton shackle from Iran by contacting us through whatsaap and email.
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Comparison of the Horseshoe Shape with Other Shape Types
The horseshoe shape is one of the most commonly used geometries in engineering design, offering unique advantages compared to other shapes. Due to its smooth, continuous curve, it provides higher resistance against concentrated stresses. In contrast, rectangular or triangular shapes, with sharp corners, are more likely to experience stress concentration. Additionally, the horseshoe shape ensures better load distribution across structures. In terms of aerodynamics, this shape performs better by reducing vortex flow. While circular or square shapes may have their specific advantages in certain applications, the horseshoe shape is generally preferred in load-bearing and structural designs.











