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 inTrenton, N.J.,to lift and stack hot pieces of metal from adie castingmachine. A typical automobile assembly plant today contains hundreds ofindustrial robotsworking 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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