Máquina de dobrar painéis
A panel bender machine is a specialized piece of equipment used in sheet metal fabrication to create bends in flat sheets of metal. They are typically used to create complex shapes and forms that would be difficult or impossible to achieve with other methods, such as hand bending or press brakes. Panel bender machines are used in a wide variety of industries, including:
- Automotive: Panel benders are used to create body panels for cars and trucks.
- Aerospace: Panel benders are used to create aircraft wings, fuselage panels, and other components.
- Appliance manufacturing: Panel benders are used to create appliance bodies, doors, and other components.
- Construction: Panel benders are used to create roofing panels, siding panels, and other building components.
- HVAC: Panel benders are used to create ductwork and other HVAC components.
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Panel Bender Machine list
Suction Cup Type Panel Bender
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Telefone
+86 189 5208 7956
Localização
Nanquim, Jiangsu, China
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Panel Bender Machine Video
In this section, you will find a variety of videos that demonstrate the capabilities of our panel bending machines. These videos include:
- Product overview videos: These videos provide an introduction to our panel bending machines, including their features and benefits.
- How-to videos: These videos provide step-by-step instructions on how to use our panel bending machines.
- Customer testimonial videos: These videos feature testimonials from our customers who have used our panel bending machines.
We encourage you to watch these videos to learn more about our panel bending machines and how they can benefit your business.
Panel Bender Machine Blog
You will find a variety of articles that provide in-depth information about panel bending machines. These articles include:
- Buying guides: These articles provide guidance on how to choose the right panel bending machine for your needs.
- Technical articles: These articles provide detailed information on the technical aspects of panel bending machines.
- Case studies: These articles provide real-world examples of how panel bending machines have been used to solve problems and improve productivity.
We encourage you to read these articles to learn more about panel bending machines and how they can be used in your business.
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What are the advantages of KRRASS Panel Bender’s Control System?
The entire control system of KRRASS panel bender is designed according to the platform, which has good stability and scalability; its self-driven robotic arm and multi-axis linkage cutting machine tool have good scalability. It is easy to extend to other fields.
However, most competitors’ control systems are temporarily assembled or improved based on turret punching machines, which need better stability and scalability.
How does KRRASS panel bender load and unload automatically?
KRRASS panel bender can directly mount the self-driven robotic arm, which is effectively combined with the bending center, with high efficiency and muscular flexibility. It is also convenient to replace the workpiece; the movement of the self-driven robotic arm of the panel bender is automatically generated according to the bending action, so the user does not need to maintain the automated arm program, and the operation is simple and convenient.
Most competitors’ panel bender robotic arms cannot be directly driven but can only be docked with the mechanical arm system, resulting in users needing to maintain two systems. Changing workpieces requires repeated debugging between the two systems very inconvenient during the bending process.
What about the concurrent linking of the KRRASS panel bender?
The underlying driver of the KRRASS panel bender is developed using a hardware description language, which can realize absolute multi-axis concurrent linkage control, coordinate movement between axes without time difference, and efficiently complete various complex action combinations.
However, most of the panel benders of other manufacturers use the bus control method, not accurate concurrent linkage, which leads to more axes of the machine, more significant time difference, and poorer association, so it can only complete some relatively simple actions. The overall efficiency could be higher.