✓ Adaptation of existing gripping systems
✓ Safe component removal
✓ Precise removal process
This product sold by vendor
This gripper is designed to remove 4 rubber parts at once.
It uses 4 parallel grippers to grip the rubber parts at the neck, and an additional 4 parallel grippers
to enclose the bellows, preventing over stretching.
a range of grippers with additional functions that can provide enhanced capabilities and improved performance
in industrial automation applications.
These grippers are designed to be highly customizable and can be tailored
to meet the specific requirements of your application.
If you want to improve the performance and efficiency of industrial automation tasks
and can provide significant cost savings over traditional methods.
These grippers are with additional functions are designed to be easy to integrate with different robotic arms,
and can be controlled by different robotic controller platforms.
Application | Robot Components |
---|---|
Type of Gripper | Parallel |
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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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.
This gripper removes the part and then folds the cutting knives
into position and cuts off the sprues.
A sprue trimming gripper is a robotic end-effector that is designed to grip
the sprue and trim it away from the finished part.
These grippers typically use a cutting mechanism, such as a blade or a wire,
to trim the sprue. Some of them could use a pneumatic or electric actuator to move the blade or wire.
Sprue trimming grippers are used to automate the sprue trimming process,
which can be a time-consuming and labor-intensive task.
They allow for faster and more consistent sprue trimming, which can increase production
efficiency and reduce the risk of errors. They are also used in a wide range of industries,
including automotive, consumer goods, and medical device manufacturing.
Our standard gripper construction kit, which is based on the well-known Channel Nut clamping profile 25/25 and includes
components that are compatible with systems using clamping diameters of 10, 14, 20, and 30mm.
We offer over 2500 different components that have been developed based on practical experience and our own gripper construction expertise.
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.
The kit was developed out of years of experience in gripper construction. The concept is to assemble the components in perpendicular orientation whenever possible and make only the active element, such as the vacuum cups, the sprue gripper or gripper finger freely adjustable. All channel nut components are compatible.
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.
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