Kawasaki Robotics has an advantage over other robots

Create Date: 2024-8-30 12:03:23|Source: Kawasaki/Kawasaki

Kawasaki robot, as an important functional component with universal characteristics in the manufacturing industry, has been widely used in the automotive industry, aviation manufacturing, electronic appliances and modern logistics and other planned production, including processing, transfer, welding, cutting, spraying, inspection, sorting, assembly, etc., has become an indispensable tool to ensure product quality, improve work efficiency, and reduce costs.

                               Kawasaki Robotics has an advantage over other robots

With the continuous development of computer skills and network skills, Kawasaki Robot has gradually developed from a manipulator that only completes a single and repetitive operation mission to a work unit and automated production line with the characteristics of rapid reconfigurability, multi-function and intelligence. At the same time, some applications put forward higher requirements for the speed, accuracy, stiffness, dynamic characteristics, power density per unit weight output, and environmental adaptability of the industrial robot body, which also poses new challenges to the planning skills of industrial robots.

As we all know, Kawasaki industrial robots mainly include two categories: tandem robots and parallel (hybrid) robots. During this period, the planning skills of traditional tandem robots were relatively mature, and the key points of discussion at that time would focus on high-performance component planning, advanced control and system optimization. In recent years, the planning skills of parallel robots are generally in the middle of development, and they have been developed in configuration synthesis, evaluation indicators, integrated modeling theory, advanced control, etc., but there is still a lot of room for improvement.

At that time, the key mission of Kawasaki Industrial Robot Planning was to carry out independent innovation and integration of configurations and systems around the development trend of high-speed, high-power, precision, lightweight, and intelligent, and to transform the traditional theoretical research on aspiring institutions into engineering planning research for real mechanical products. Therefore, it is necessary to fully consider the service environment, and organize and integrate existing planning theories and software skills, etc., to cover all phases from conceptual planning to concrete planning to prototype testing. The following is an introduction to the most important developments in the overarching synthesis, analysis, and testing missions addressed in the digital plan.
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