Pick and place robots are widely used in industries for product pick and place. These manipulators have different kind of sorting mechanism to identify the desired product. The linear manipulators are widely used for this purpose. In this project we will do the Forward Kinematics, Inverse kinema
DESIGN, SIMULATION AND MODEL FABRICATION OF INDUSTRIAL MANIPULATOR FOR PICK & PLACE PURPOSE USING SORTING MECHANISM
Pick and place robots are widely used in industries for product pick and place. These manipulators have different kind of sorting mechanism to identify the desired product. The linear manipulators are widely used for this purpose.
In this project we will do the Forward Kinematics, Inverse kinematics, dynamics, Trajectory Planing and simulation of Manipulator using MATLAB and eventually make a control system using PLC and workspace calculation. The links use in these robotic arms will be optimize with help of topology in Fusion 360 to reduce the material consumption and overall cost of product. An industrial PLC based controller will be use for reliable performance. Then we design a sorting mechanism for product identification by using IR, metal detector or Image-processing etc. Then we will fabricate a conveyor belt for product picking. This manipulator will be fully Autonomous.
Purpose of our project is to develop and fast, accurate, inexpensive and easy to manufacture & control Articulated Robotic arm that will be used for identifying and pick & place desired produd in any process or manufacturing industries.
Our aim in this project is to design, analyze and model fabrication of industrial manipulator with conveyor belt and use Image processing as sorting mechanism for Pick and Place purpose.
In this project we will do the Forward Kinematics, Inverse kinematics, dynamics, Trajectory Planing and simulation of Manipulator using MATLAB and eventually make a control system using PLC and workspace calculation. The links use in these robotic arms will be optimize with help of topology in Fusion 360 to reduce the material consumption and overall cost of product. An industrial PLC based controller will be use for reliable performance. Then we design a sorting mechanism for product identification by using IR, metal detector or Image-processing etc. Then we will fabricate a conveyor belt for product picking.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Stepper motors | Equipment | 4 | 2000 | 8000 |
| Links and Base 3D printing | Equipment | 4 | 3500 | 14000 |
| PLC Controller | Equipment | 1 | 20000 | 20000 |
| Driver unit | Equipment | 1 | 15000 | 15000 |
| gears and pullies | Equipment | 10 | 500 | 5000 |
| Conveyor structure | Equipment | 1 | 8000 | 8000 |
| sensors | Miscellaneous | 14 | 400 | 5600 |
| wiring and clippers | Miscellaneous | 28 | 150 | 4200 |
| Total in (Rs) | 79800 |
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