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750x550mm Rear-Mounted Motor Scissor Lift Table with Steel Top

750x550mm Rear-Mounted Motor Scissor Lift Table with Steel Top

Description: 750 × 550 mm Rear-Mounted Motor Scissor Lift Table with Steel Top The 750 × 550 mm Rear-Mounted Motor Scissor Lift Table with Steel Top is a compact and durable electric lifting solution designed for industrial applications requiring stab...

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Product Description:

750 × 550 mm Rear-Mounted Motor Scissor Lift Table with Steel Top

The 750 × 550 mm Rear-Mounted Motor Scissor Lift Table with Steel Top is a compact and durable electric lifting solution designed for industrial applications requiring stable vertical movement, efficient space utilization, and a strong working platform. It is widely used in workshops, assembly lines, maintenance stations, inspection equipment, warehouses, and customized material handling systems.

Featuring a rear-mounted motor configuration, scissor lifting mechanism, and heavy-duty steel tabletop, this lift table provides reliable lifting performance while optimizing the installation space and improving accessibility around the working platform.

Structural Design

The lift table consists of a scissor lifting frame, rear-mounted electric drive system, fixed base, lifting platform, and steel top surface.

The rear-mounted motor design places the drive unit behind the lifting structure, helping reduce interference with the working area and allowing more flexible equipment integration.

The scissor mechanism uses crossed lifting arms connected through pivot joints. When the motor operates, the drive system controls the movement of the scissor arms, enabling smooth vertical lifting and lowering.

The 750 × 550 mm specification generally refers to the platform size or structural dimensions. The actual performance parameters, including rated load capacity, lifting height, stroke range, and lifting speed, depend on the specific engineering design and application requirements.

Rear-Mounted Motor System

The rear-mounted motor provides power for the lifting mechanism while keeping the front working area clear.

This configuration offers advantages such as space optimization, easier maintenance access, and improved equipment integration flexibility. It is especially suitable for applications where the lifting platform needs to be installed close to other equipment or workstations.

The motor and transmission system should be selected according to working load, lifting frequency, duty cycle, and operating environment. Proper motor matching ensures smooth operation, reduces mechanical stress, and extends service life.

The control system should provide stable acceleration and braking to minimize impact forces during lifting and lowering operations.

Scissor Mechanism Design

The scissor structure provides stable vertical movement through the coordinated action of lifting arms and pivot connections.

Accurate alignment of scissor arms and pivot points is essential for maintaining smooth operation and preventing uneven loading.

The lifting arms are manufactured from high-strength steel materials to provide sufficient rigidity and load-bearing capability. Pivot joints may use bearings, bushings, or wear-resistant components to reduce friction and improve durability.

Regular inspection of moving components, fasteners, and lubrication points helps maintain long-term reliability.

Steel Top Design

The steel tabletop provides a strong and durable working surface suitable for industrial environments.

Steel construction offers advantages including high load resistance, impact protection, wear resistance, and easy maintenance. It is suitable for supporting tools, equipment, components, and workpieces during production and assembly processes.

The steel top can be customized with different thicknesses, dimensions, coatings, and surface finishes according to customer requirements.

A secure connection between the steel platform and lifting frame ensures stability during lifting and working operations.

Manufacturing Process

The production process includes steel cutting, drilling, bending, welding, machining, surface treatment, motor installation, assembly, and performance testing.

High-quality structural materials are selected to ensure strength and durability. During fabrication, welding quality, dimensional accuracy, and assembly precision directly affect the performance and safety of the lift table.

After assembly, manufacturers inspect structural alignment, motor operation, lifting movement, steel top installation, and overall stability.

Quality Control Standards

Strict quality control procedures ensure reliable and safe operation.

Material inspection verifies that raw materials meet required mechanical strength standards.

Dimensional inspection ensures components meet design specifications.

Welding inspection confirms structural integrity and connection strength.

Functional testing evaluates lifting and lowering performance.

Load testing verifies safe operation under rated conditions.

Surface treatment inspection ensures corrosion resistance and long-term durability.

Application and Selection Considerations

Before selecting a 750 × 550 mm rear-mounted motor scissor lift table with steel top, users should evaluate required lifting height, load capacity, platform size, installation space, operating environment, and working frequency.

This type of lift table is suitable for industrial workstations, production equipment, maintenance platforms, assembly systems, and applications requiring efficient space utilization.

Conclusion

The 750 × 550 mm Rear-Mounted Motor Scissor Lift Table with Steel Top provides a reliable and practical lifting solution for industrial applications requiring stable operation, durable construction, and optimized motor placement.

A strong scissor structure, rear-mounted drive system, high-quality steel platform, precise manufacturing process, and strict quality control ensure safe and efficient performance. Customized solutions can be developed according to specific lifting requirements, installation conditions, and working environments.

References

  1. ISO 12100 – Safety of Machinery: Risk Assessment and Risk Reduction

  2. ISO 13849-1 – Safety-Related Parts of Control Systems

  3. ANSI/ASME B20.1 – Safety Standard for Conveyors and Related Equipment

  4. ISO 9001 – Quality Management Systems and Manufacturing Quality Control


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Contact:Su Mengmeng

Mobile:+86 13463710111

Email:membershitzler@gmail.com

Website:https://www.kunshenglonglift.com

Address:Urban Sunshine Office Building,Cangzhou City, Hebei Province(Madein China)

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