IOT based Smart & Portable Wheet Floor Mill
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| Project Title |
IOT based Smart & Portable Wheet Floor Mill
| Project Area of Specialization |
Mechatronics Engineering | | Project Summary |
This smart flour mill reduces the electricity bills save our time and money. This is light in weight and size that’s why we can easily use it for both domestic and commercial purposes. This smart flour mill also works with renewable energy sources so we can easily work during load shedding. The idea is to save the time, money and man power by automation using microcontrollers and sensors. We will work on automation using sensors and their integration with their controlling devices for make the process consume less man power and attention and to make process smart. | | Project Objectives |
In this project we’ll try to enhance the conventional design of flour mill which is stone less and we are using casted aluminum structure the rotor and the dia in which rotor rotates the both are toothed for crushing wheat though we are using aluminum structure it will cool in less time than stone and they need lesser torque to initiate the process than stone the lesser the torque the less the power consumes. Designing it as portable, power efficient and diminish weight and size. This design is useful for both domestic and commercial purpose. Will work on automation using sensors and their integration with their controlling devices for make the process consume less man power and attention and to make smart process. | | Project Implementation Method |
Literature Review: To study the sensor integration, its working capability and GUI application. Sensor and Module Integration: Initially import required sensors and modules and then integrate with controlling devices . Simulation: We will have the proper simulation and calculated result earlier, but implementing it on real system will be our main task. Implementation of Hardware Design: To apply solid work design on hardware, Flour Mill frame will be robust and made up of Steel and produce to reduce vibration generated by motor. Assembly: After the completion of steel frame we will fix all components, motor, sensors, switching & preventive equipment on . Field Testing: After testing we will be finalizing the hardware with proper presentations and with best accurate working. Report Writing: After performing all above task in given time we’ll be writing report in which we will describe each and every working component in best understanding formats. | | Benefits of the Project |
• Portable and reduced in weight and also downsize. • Power efficient design for domestics Users. • Beneficial design for domestic as well as commercial purpose. • Minimize the electricity bill. • Fully automatic. • Also works on renewable resources. • Less heat generation then concrete plates design • User friendly interface • Design will ECO friendly | | Technical Details of Final Deliverable |
The process of wheat crushing produce heat due to friction of concrete plates and draw more power for generating more torque to initiate the milling process. In this project we’ll try to enhance the conventional design of flour mill which is stone less we are using casted aluminum structure the rotor and the dia in which rotor rotates the both are toothed for crushing wheat though we are using aluminum structure it will cool in less time than stone and they need lesser torque to initiate the process than stone the lesser the torque the less the power consumes. Designing it as portable, power-efficient and diminish weight and size. | | Final Deliverable of the Project |
HW/SW integrated system | | Core Industry |
Food | | Other Industries |
Energy | | Core Technology |
Internet of Things (IoT) | | Other Technologies |
Clean Tech | | Sustainable Development Goals |
Good Health and Well-Being for People, Affordable and Clean Energy, Industry, Innovation and Infrastructure | Required Resources
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
| Raspberry pi 3 B+ | Equipment | 1 | 5500 | 5500 |
| Electrical items and wires | Equipment | 10 | 500 | 5000 |
| battery | Equipment | 1 | 7000 | 7000 |
| sensors | Equipment | 12 | 400 | 4800 |
| Electric motor | Equipment | 1 | 6000 | 6000 |
| Electronics item | Equipment | 10 | 400 | 4000 |
| Raspberry pi 3 B+ screen | Equipment | 1 | 6000 | 6000 |
| Project structure | Miscellaneous | 1 | 9000 | 9000 |
| | | Total in (Rs) | 47300 |