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Lifting frame + wire rope combined lifting beam: the "master of balance art" for lifting heavy components

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In fields like heavy equipment manufacturing and steel structure engineering, hoisting large and irregularly shaped components has always been a challenge. Due to their large tonnage and irregular shapes, conventional hoists either suffer from uneven force distribution, leading to deformation, or unstable hoisting and difficulty in precise alignment, severely hampering construction efficiency and component safety.

Product Introduction

In fields like heavy equipment manufacturing and steel structure engineering, hoisting large and irregularly shaped components has always been a challenge. Due to their large tonnage and irregular shapes, conventional hoists either suffer from uneven force distribution, leading to deformation, or unstable hoisting and difficulty in precise alignment, severely hampering construction efficiency and component safety.

This combination lifting beam, featuring a lifting frame and wire ropes, offers a breakthrough in heavy component hoisting thanks to its design of distributed force, precise balance, and reliable heavy-duty operation. It enables rock-solid and precise hoisting of large, complex workpieces.

1. "Force Distribution": Gentle Protection for Heavy Components
Large components, such as the large box structure in the image, are most vulnerable to localized overload. The combination lifting beam, utilizing multiple sets of wire ropes and a multi-point lifting frame, evenly distributes the lifting force across multiple support points, preventing deformation and damage caused by localized stress concentration.
Whether it's a thin-walled steel structure or a precision heavy equipment component, they can remain intact during lifting, eliminating the risk of component scrapping due to improper lifting equipment.

Second, "Balanced Precision": Perfect Lifting Alignment in One Step

Balance during lifting directly determines alignment efficiency. This lifting beam's design incorporates ingenious features:

The lifting frame's lifting point layout allows for flexible adaptation (wire rope connection points can be adjusted based on the component's center of gravity and shape);

The wire rope length and tension can be finely adjusted to ensure components remain horizontal or at a preset angle during lifting.

Even irregularly shaped components with offset centers of gravity can be stably suspended and precisely aligned during lifting, significantly reducing the time and risk of high-altitude adjustments and doubling lifting efficiency. 3. "Heavy-Load Reliability": Confidently Lift Large-Tonnage Structures

For heavy components weighing tens or even hundreds of tons, the lifting beam's "load-bearing capacity" is the key guarantee:

The main body of the lifting beam is constructed from high-strength alloy materials (such as high-quality carbon steel and alloy structural steel), precision-machined and heat-treated for exceptional bending and tensile strength.

The wire ropes are made from special, wear-resistant, high-breaking-force steel ropes, and feature anti-slip, wear-resistant connectors, ensuring a safety factor far exceeding industry standards.

When lifting large-tonnage components, the entire lifting system remains motionless, providing a solid foundation for both safety and efficiency in heavy-duty construction.

4. "Modularity and Flexibility": Adapting to Ever-Changing Lifting Requirements

In industrial applications, component sizes and shapes vary widely. The modular design of the modular lifting beam allows for adaptability:

The length and width of the lifting frame can be customized to suit the component;

The number, length, and connection methods of the wire ropes can be flexibly combined;

The lifting device connectors can be quickly disassembled and replaced to accommodate various lifting interfaces. From large ship sections to core power plant equipment to long-span steel structures, a single lifting system can cover a wide range of scenarios, saving companies money on lifting equipment procurement and management.

Application Scenario: An All-Round Player for Heavy Lifting

This system serves a wide range of applications in heavy equipment manufacturing (such as lifting core components for machine tools and mining machinery), steel structure engineering (installation of long-span steel components for factory buildings and large box structures), and shipbuilding and offshore engineering (lifting of hull sections and offshore platform components). It has become the standard solution for lifting large, heavy, and unusually shaped components.

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