Industry 4.0 is a high-tech strategic plan proposed by the German government to improve the intelligence level of the manufacturing industry and establish a smart factory with adaptability, resource efficiency and human factors engineering. Obviously it is necessary to complete the development of 4.0 robot application. Trends, a new era of robots is coming. So how can I choose the right robot? I will elaborate on this issue in four aspects.
Four steps to help you accurately purchase industrial robots
According to the International Robotics Association, the sales of robots have increased by more than 45% in the past five years. More and more companies in all walks of life are using robotic solutions to increase production capacity, reduce costs and improve worker safety. Today's industrial robots are becoming smarter, faster, more adaptable and collaborative. With advanced vision and sensing technology, robots can perform complex tasks that were not possible in the early years. With all these new technologies, it is now a golden age to consider investing in industrial robots.
When assessing which process is suitable for which target robot application is used in the production environment, carefully consider the problem you want to solve and consider all the costs that the robot can save: reduce waste, increase efficiency, increase throughput. Improve safety or reduce labor costs. These cost savings can be used as a basis for ROI, which is an important factor in determining whether a robot is suitable for a particular application.
There are four steps to consider when evaluating the potential value of a robot in a production plant:
1. Industrial robot purchase - adaptability:
In the past, robots were fenced to perform repetitive tasks. Today, robots work side by side with human workers in a collaborative environment. The robot has the space consciousness control engineering network copyright, which ensures the personal safety of the workers and creates an open and flexible working unit.
2. Industrial robot purchase - danger:
Identify the risks to workers in a hazardous environment in which the robot is used. For example, robots are more resistant to the chemical environment than human workers. A well-designed work shop minimizes the danger and improves the safety of workers.
3. Industrial robot purchase - global:
Finally, consider all robotic automation applications in the production floor. Some areas may still be complex and unrealistic, but with vision and terminators, many become possible.
4. Industrial robot purchase - intelligent:
The 3D vision system greatly enhances the capabilities of the robot. By combining such sensing capabilities with the agility of the robot, the robot can perform complex tasks related to component processing. The following is a list of visual robot enhancement component processing applications:
Component/Package Inspection: A visually capable robotic platform can look for existing or missing features and measure their size under a specified package. The robot randomly picks up a placed part and then puts it under the vision system to check if it is a good one, thus realizing the automation of quality control.
Component Identification: With hybrid applications, robots can identify, track, and sort items based on preset criteria. Component Position/Azimuth: Using a 2D or 3D vision system, the robot can identify, capture and process components for drilling, grinding and spraying applications. In addition to vision, the robotic work cell can also include tactile feedback, velocity control, and infrared sensing.
The above four steps can help you to give guidance on how to purchase industrial robots from a general direction, and hope to help you find the right industrial robots faster and more accurately.
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