Monday, February 24, 2020

How To select the correct robotic Gripper For Your Application.


Gripper consisting of suction cups, pliers or finger assemblies are some of the most common end-of-arm (EOAT) tools used in industrial robots. Choosing the right clamp is essential to ensure economic and practical success in automation projects. After all, this is where rubber hits the road. This article focuses on the technical factors to consider when choosing the right clamp for application from a process and part perspective.



The Process:-

What happens to the robot? Automation projects are very different from each other.



Task itself:-  The task that the robot must perform often determines the type of clamp to be used. Very fast loading / unloading requirements favor suction cups, but slower processes prefer tweezers or fingers for greater accuracy.



Cycle time:- The cycle time is determined by the speed required to hold and / or open and close the clamp. The cycle time determines the acceleration of the clamp and, therefore, the force G, and the greater the clamp, the more tension G is applied to the robot, which causes wear on the part. The robot's specification for maximum acceleration is calculated as the sum of the weight of the gripper and the part, so that the greater the weight of the gripper, the lower the weight of the part being processed. In addition to this specification, the EOAT range and weight determine the resulting torque of the robot base. We will try again to minimize the weight of the clamp. That's why many modern tweezers prefer to use hollow aluminum parts.



Precision demand:- Some assembly work requires precision, ideal for mechanical gripper operated by electric servo motor. The process of classifying parts requires the adaptability of the clamp, in particular to allow the classification of different parts of different size ranges.

Environmental requirements:- Not all types of gripper are available for all processes. In the food and pharmaceutical industries, for example, hydraulic clamps are prohibited due to the risk of oil spills and contamination. In many cleanroom industries, pneumatic and vacuum clamps are not recommended because they can produce a flow of airborne particles. The clamps used in dirty environments, such as foundries, machining and welding, are exposed to dust and particles and must be protected. Corrosive or toxic environments in the nuclear or chemical industry create special considerations to protect the clamp to ensure its stability and safety of use. In most applications, the clamp must be a safety device. Dropping bananas on the floor does not have a big impact, but spilling chemicals or radioactive substances can sometimes be fatal or toxic.



Part:-
The knowledge of the parts to manipulate is important to determine the clamp to use. The main factors are:

Size: Except for the vacuum grippers, all other grippers must grip the pieces with parallel or angular closure. That is, the larger the part, the more the clamp fingers must reach. In all cases, the clamp must have a sufficient range to handle the piece, but the longer the finger, the more torque the tool and the robot will have, so it should not be exceeded.

Shape: The shape of the object determines what type of object you can grab. Flat surfaces can be treated with a vacuum clamp or magnet type, other shapes with chin, claw or several fingers. When using a complete or fingertip understanding, you should consider calculating the fingertips.



Weight: To maintain the grip strength, the clamp must be strong enough to support the weight of the piece and the acceleration time it can withstand during the process. The designer cannot simply use the maximum clamping force, as the pieces or gripper can be damaged.

Type of surface: The type of surface on which the grip will occur is also an important factor in estimating friction.

The calculation of the clamping force must take into account the weight of the piece, the maximum acceleration during the process, the friction of the surface and the maximum tension that the piece and the clamp can withstand.