Industrial Stamping Robot| 3-4-5 Axis Flexible Joint Robot Arm
Industrial Stamping Robot| 3-4-5 Axis Flexible Joint Robot Arm
Intelligent Joint Stamping Robot
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Industrial stamping robots or palletizing robot arm revolutionize metal stamping processes by automating tasks traditionally performed by human workers. At FUXIN, we offer cutting-edge robotic solutions tailored to streamline stamping and palletizing operations with precision and efficiency.
Unlike traditional stamping production lines, stamping robot solution offers numerous advantages:
1) Protects workers from injuries
2) Alleviates worker fatigue
3) Cuts labor costs by up to 70%
4) Increases production efficiency by 20%-30%
5) Ensures consistent high product quality
6) Maintains precision in stamping
7) Minimizes errors to zero
8) Operates 24 hours/7 working days
Industrial stamping robot features:
1. Material Handling: Max payload 100KG, armspan from mm to mm, 8-20 times/min(subject to equipment type and site conditions).
2. Path Programs: Robotic arm production line applicable for stacking, depalletizing, and handling common materials.
3. Flexibility: Achieve various stamping and palletizing actions such as turnover, scrap handling, side mounting, slanting, or stacking. Compatible with progressive dies, single dies, and transfer dies.
4. Performance Optimization: High-performance servo systems. Power-off position memory.
5. Open Program Technology: Easy motion track editing, simple operation and control.
6. Compatibility: Compatible with hydraulic presses, gear presses, and pneumatic punches.
For more information, please visit Fuxin Intelligent.
7. Quality Components: Renowned brand components. Tolerance within ±0.1mm. Failure rate below 1', service life 8-10 years.
The longest service life reaches 16 million cycles, a maximum of 6 million cycles recorded without any failures.
8. Standardization and Customization: Easy installation enables mass production within 3 days of delivery.
Industrial stamping robot applications:
FUXIN Robot intelligent flexible joint robot can be used in various applications across industries:
1. Automotive: Auto body parts, chassis components, and engine parts.
2. Electronics: Metal parts of electronic devices and appliances.
3. Aerospace: Aircraft components, including structural parts and interior fittings.
4. Home Appliances: Metal parts of refrigerators, washing machines, computer cases, and air conditioners, etc.
5. Machinery: Fabricating components used in industrial machinery and equipment.
6. Consumer Goods: Metal parts of furniture, hardware, and tools.
7. Medical Equipment: Metal components of medical devices and equipment.
8. Energy: Metal parts of renewable energy systems, power generation equipment, and electrical infrastructure.
As a professional industrial stamping robot supplier, FUXIN Robot can custom make rotational joint robots as per customer's specific requirements of different industry and manufacturing process.
[Video] Dongguan Fuxin Intelligent Technology Co., Ltd. on ...
Hiii Connection!!!! Topic: Evolution of robotics manufacturing.. #snsinstitutions #snsdesignthinkers #designthinking The origins of robotics can be traced back to the early s when scientists began experimenting with automatons, or self-operating machines. 1.The Evolution of Robotics: The two categories of robots used in manufacturing are industrial grade robots and collaborative robots (cobots); adaptive robots were only introduced in . We will examine how each new generation of robots is more flexible and intelligent... Industrial grade robots 2.Industrial grade robots: Which we are tempted to call traditional robots at this point ' have been used in the automotive industry for more than 70 years. General Motors purchased the first industrial robot in and installed it in a plant in'Trenton, N.J.,'to lift and stack hot pieces of metal from a'die casting'machine. A typical automobile assembly plant today contains hundreds of'industrial robots'working on automated production lines. 3.Collaborative robots: Collaborative or cobots ' have been used in manufacturing for about two decades. Cobots are specifically designed to interact with humans in a shared workspace and therefore minimize the risk of accidents or injuries. They are equipped with sensors to avoid collisions and ensure passive compliance in the event of unplanned contact.
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