✓ Adaptation of existing gripping systems
✓ Safe component removal
✓ Precise removal process
This product sold by vendor
This gripper is designed for removing a bumper from a die.
It is equipped with a filling end monitor that allows for monitoring the filling ends on the component,
ensuring a precise and safe removal process.
Application | Robot Components |
---|---|
Country of origin | Germany |
Country of shipment | Germany |
Vendor | SP005-0113-AA |
About Vendor | The company develop and produce innovative gripper components, complete gripper and tailor-made, customized solutions. In addition they also engineer and manufacture intelligent feeding systems and sprue cutting stations. |
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This gripper removes finished overloaded components and also
inserts materials such as bushings, sheets, or screws into molds.
Sensors and camera system can be attached in your application. The Kit suits multiples systems, e.g.
– Camera mounted with standard components
– Camera bracket with adjustment X-Y
– Combi bracket – camera and light
 This gripper moves a component, such as a glass slide, from one cavity to another.
The gripper can centre itself on the individual cavities and has a separate stroke movement.
Our removal gripper safely removes plastic parts or workpieces from injection molding machines.
The parts are usually deposited on a conveyor belt or in a container.
These grippers are specially developed using the 3D printing process.
They have internal vacuum generation capabilities and can be customized to suit specific needs.
Customizable design: The grippers can be 3D printed to fit a wide range of objects
and are customizable to meet the specific requirements of your application.
Lightweight: The grippers are 3D printed using high-strength, lightweight materials,
making them easy to manipulate and reducing the load on the robotic arm.
Durable: The grippers are designed to withstand the rigors of industrial environments
and provide long-lasting performance.
Cost-effective: 3D printing technology allows for faster production and lower costs
compared to traditional manufacturing methods.
With their advanced design and 3D printing technology, the grippers offer a cost-effective
and customizable solution for robotic grasping and manipulation.
The company is ready to build the complete gripper, either using the components out of our two systems (PreciGrip or channel nut) or by doing the construction additive, with laser welding technology. Two kinds of documentation are available. A simplified version or the DIN documentation, containing electric / pneumatic diagrams and the declaration of conformity.
Other types of robots: Delta / Scara.
Finger Material: Silicone
Operating Pressure: -0.5 to 1.0 bar
Grip Force per Finger: 5 N
Durability: >10 Mio. Cycles: @1.0 bar, 0.5 Hz
Feed size: 5 mm – 120 mm
Weight: <450 g
Best for products of circular or cylindrical shape.
Unlike conventional devices, the integration of imaging technologies on six-axis robotic arms gives a high degree of flexibility in monitoring the complex curvature on both sides of the inspected object, allowing non-destructive testing (NDT) to be expanded and improved. Robots allow to scan a sample with the use of X-ray from a different perspective to locate defects more easily, quickly, and better.
One of the major advantages is that the system can be moved to the object to be inspected. This is in sharp contrast to common industrial CT systems where the sample has to fit inside. Our machine can get to the sample.
KUKA linear units are translational motion units Linear units can be used to extend a robot?s work envelope or alternatively to move workpieces or tools within the work envelopes of a number of robots. This allows applications such as the tending of more than one machine or fixture, order picking from rows of pallets, or work on very large components. Control of the linear unit is integrated as a mathematically coupled axis in the robot controller, dispensing with the need for an additional controller.
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