Application Scenarios for Robotic Arms – Yamaha

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

Scenarios are an important part of the use of new skills, the more scenes represent the wider use and the greater the hope space for the future, and if a skill is born without practical use scenarios, that is, it cannot be integrated into people's daily life and manufacturing, which will have a fatal impact on its subsequent development.

                               Application Scenarios for Robotic Arms – Yamaha

What are the use scenarios of robotic arms? Its use characteristics are very remarkable, mainly to replace manual operations engaged in scene risk or replace intensive, highly repetitive actions. If the operation scenario fits the above two characteristics, the robotic arm can be used.

The use scenarios of robotic arms are mostly in the manufacturing industry, with heavy industry characteristics, such as metal processing, polishing and grinding, devices, machine tool loading and unloading, palletizing/transferring, rubber/plastic, sorting, etc.

Metalworking

Metal processing is the processing of raw materials such as copper, iron, and aluminum into articles, parts, and components. It can replace manual casting, rolling, drawing wire, impact kneading, twisting, shearing and other processes.

Polishing and grinding

The robot drives the pneumatic grinding machine at the end to automatically replace sandpaper with different particle sizes, and grind, polish and polish the workpiece. The robot automatically removes and replaces sandpaper with different particle sizes, two stations, one for grinding and one for loading and unloading workpieces, and the grinding and polishing operations are carried out in a water-based environment.

device

In the automated production line, the car device is divided into a series of programs, and the engineer sets up various programs to cooperate with the workers to meet the needs of the door, front cover, tires and other components.

Machine loading and unloading

Machine tool feeding, first of all, for the production of difficult material problems, like textile machine tools, the material from the body size is large and heavy, manual operation is bound to cooperate with many people to transfer, with the mechanical arm loading and unloading, the program is fixed, the action is fixed, only need to load and unload.

Palletizing/transferring

Because of the large supply volume and the rapid rise of human costs, manufacturing or FMCG occupations can improve production efficiency and reduce production costs by equipping the packing line with automated palletizing equipment. System features: The system is safe and stable, ensuring the palletizing speed, ensuring that the appearance of the packaging box is not damaged, and ensuring the precise position of stable palletizing.

Rubber/plastic

In the production of tire skins, there are many cutting stations, which are boring and repetitive, and have certain risks. Therefore, it is hoped that the computer system can be designed to replace the manual cutting operation, so as to improve the production efficiency, and the one-shift operation system can be increased from the robot to two to three shifts, which will reduce the production cost in the long run.

Sorting

Under the guidance of vision, the robot follows and picks the work on the conveyor belt, and then sorts it to different trays, featuring a vision system that compensates for positioning and follows and grabs online.

The use of robotic arms in production and manufacturing has formed a certain trend, which is due to the vigorous development of robot skills in the past few decades, the continuous realization of the integration of new skills, the new positioning of automated manufacturing, and the continuous development of use scenarios. Skills are the driving force, scenarios are benefits and values, as long as the value of skills occurs, they can be gradual and have a long-term impact.

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