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Faced with the demand for stacking goods at different heights, how can fully electric stackers flexibly adjust and maintain stability?

Publish Time: 2025-01-21
Faced with the demand for stacking goods at different heights, fully electric stackers achieve flexible adjustment and stability through a variety of designs and functions.

1. Flexible height adjustment

Hydraulic lifting system: fully electric stackers are usually equipped with efficient hydraulic lifting systems, which realize rapid lifting and lowering of forks through precise control of electric hydraulic pumps and control valves. Users can adjust the height of the forks through the control panel or operating lever according to the height requirements of the goods. The operation is simple and responsive.

Multi-level lifting: Some high-end stackers have multi-level lifting functions, and the forks can stop at multiple heights. Users can choose the appropriate height according to specific needs to avoid energy waste and time delays caused by excessive lifting.

2. Stable structural design

Wide base: The base design of fully electric stackers is wide and stable, providing good support and balance, and can remain stable even at the highest position. The base is usually made of high-strength materials to ensure the stability of the structure under different loads and heights.

Low center of gravity design: The overall design of the stacker takes the center of gravity into consideration. By placing the battery and main components at a low position, the center of gravity of the whole vehicle is lowered, and good stability can be maintained even during the lifting process. The low center of gravity design effectively reduces the risk of rollover and improves operational safety.

3. Intelligent control system

Electronic control unit (ECU): The fully electric stacker is equipped with an advanced electronic control unit to monitor and adjust the operating status of the hydraulic system and motor in real time to ensure smoothness and accuracy during the lifting process. The ECU can automatically adjust the output pressure of the hydraulic system according to the load weight and lifting height to maintain stability.

Anti-rollover protection: The intelligent control system has an anti-rollover protection function. When it detects that the vehicle is in an unstable tilted state, it will automatically slow down or stop the lifting operation to prevent accidents. This protection mechanism is particularly important when handling high loads or unstable cargo.

4. High-precision sensor

Height sensor: The stacker is equipped with a height sensor that can monitor the height position of the fork in real time. These sensors work with the control system to ensure the accuracy and consistency of the lifting operation and avoid cargo damage or operational errors caused by inaccurate height.

Load sensor: The load sensor is used to monitor the load weight on the fork. When the load exceeds the rated range, the system will sound an alarm and limit the lifting operation to prevent equipment damage or safety accidents caused by overload.

5. Humanized operation interface

Simple operation interface: The operation interface design of fully electric stacker is intuitive and simple, and the operation lever and control panel are reasonably laid out, so that users can easily adjust the height and perform other operations. Some high-end stackers are also equipped with a touch screen control panel, providing more intuitive and rich operation options.

Feedback system: During operation, the system will provide feedback information through sound or light, such as height arrival prompts, load status prompts, etc., to help operators better understand the equipment status and make timely adjustments.

6. Safety design

Emergency stop button: The stacker is equipped with an emergency stop button, and the operator can immediately stop all operations in an emergency to ensure safety.

Protective devices: Stackers are usually equipped with a variety of protective devices, such as guardrails, seat belts, etc., to protect the safety of operators during lifting. At the same time, these protective devices can also maintain the stability of the vehicle during high-speed lifting to a certain extent.

7. Adapt to different environments

Multiple tire options: Fully Electric Stacker offers multiple tire options, such as pneumatic tires, solid tires, and polyurethane tires, to adapt to different ground conditions, ensuring good stability and flexibility in different environments.

Anti-slip design: The tire and base design of the stacker takes anti-slip requirements into consideration, and it can remain stable even on slippery or uneven ground, avoiding operational risks caused by poor ground conditions.

Fully Electric Stacker can flexibly adjust and maintain stability to meet the needs of stacking goods at different heights through a flexible hydraulic lifting system, stable structural design, intelligent control system, high-precision sensors, user-friendly operation interface, safety design, and functions that adapt to different environments. These designs and functions not only improve the convenience and efficiency of operation, but also ensure safety and reliability in various application scenarios, providing strong support for modern logistics and warehousing.
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