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Buffers Behind Industrial Robots

2025-09-11 Views:5

At the 2025 Global Industrial Internet Conference, a large number of industrial AI products made a brilliant appearance, including the SIASUN Industrial Robot Thin-Plate Intelligent Welding System and the SIASUN Intelligent Humanoid Dual-Arm Platform, showcasing the vigorous development trend of industrial intelligence.

Take the SIASUN Industrial Robot Thin-Plate Intelligent Welding System as an example. During the welding process, the robotic arm needs to start, stop, and change positions frequently to precisely complete the welding tasks of complex seams. At this moment, the buffer acts like an invisible guardian. When the robotic arm moves rapidly and stops suddenly, a strong impact force is generated. This not only may accelerate the wear of the arm's own components and affect its repeat positioning accuracy, but also disrupt the stability of the entire welding system, thereby affecting welding quality. With its unique structure and working principle, the buffer can efficiently absorb the kinetic energy generated by the robotic arm's movement, converting the impact force into other forms of energy such as heat and dissipating it, thereby greatly reducing mechanical vibration and impact. Just like on automated production lines, hydraulic buffers can reduce the impact force produced by robotic arm movement by more than 80%, ensuring the precision of each positioning of the arm, allowing welding operations to be carried out in a stable environment, achieving high-precision, high-speed, and low-cost welding, and greatly improving work efficiency.

When the SIASUN Intelligent Humanoid Dual-Arm Platform performs tasks, its dual arms need to carry out delicate and complex operations. For example, in a simulated water-fetching task, the arms must accurately grasp a cup and control the force and angle to fetch water. In this process, buffers are equally indispensable. When the arms move quickly to approach the target object, buffers can smoothly reduce their speed, preventing collision impacts caused by excessive speed, and protecting the end effectors of the arms and the objects being handled. At the same time, they can also reduce the stress on joints caused by frequent starts and stops, extending the service life of core components such as joints. According to tests, the dual-arm platform equipped with buffers showed a joint wear rate reduction of about 50%, greatly improving the reliability and stability of the equipment, enabling the dual arms to perform various complex tasks more stably and accurately in multiple scenarios such as industrial manufacturing and life services.

When the Lenovo Daystar legged robot moves across complex terrain and performs tasks, buffers also ensure its smooth operation. Whether crossing obstacles during industrial inspections or carrying items in special environments, buffers absorb the energy generated by uneven ground or motion impacts during the robot's movement, making the robot's gait more stable and ensuring that the sensors and actuators it carries can work normally, providing solid support for the development of industrial intelligence. In the process of industrial intelligence, although buffers are small, they make tremendous contributions to the stable operation and efficient work of advanced equipment.