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Multi-Crop Cutter and Herbicide with Auto Feeder
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Abstract
Information
Inventors
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Specification
Documents
ORDINARY APPLICATION
Published
Filed on 19 November 2024
Abstract
The main objective of this initiative is to entirely reinvent traditional farming techniques by providing a versatile, productive, and enduring solution for herbicide control and crop cutting. A significant development in agricultural technology, the Multi-Crop Cutter and Herbicide Sprayer with Auto Feeder aims to enhance productivity and fulfill the growing demands of the modern farming sector. With adaptable cutting mechanisms for handling various crop heights and levels,the Multi-Crop Cutter device is designed to handle any kind of crop. This adaptability increases yields while ensuring minimal harm to the crops. The auto feeder system is another prominent innovation in design that enables continuous operation with comparatively little human input. In order to ensure that a steady supply of crops enters the cutter, the feeder regulates the flow rate in line with the cutting speed and herbicide application. It additionally enhances working effectiveness and leads to a more reliable and consistent harvesting process. Adaptability to different field circumstances, real-time monitoring, and automated controls are some of the design's primary features. The system is eco-friendly since it runs on a combination of reliable energy sources and effective battery storage. To protect both the individual and the equipment, safety features are also incorporated into the design.
Patent Information
Application ID | 202441089351 |
Invention Field | MECHANICAL ENGINEERING |
Date of Application | 19/11/2024 |
Publication Number | 48/2024 |
Inventors
Name | Address | Country | Nationality |
---|---|---|---|
Dr.S.THILLIKKANI | Associate Professor Mechanical Engineering Akshaya College of Engineering and Technology Bhagavathipalayam, Kinathukadavu, Coimbatore, Tamil Nadu 642109 | India | India |
Mr. S.KARTHIKEYAN | Assistant Professor Mechanical Engineering Erode Sengunthar Engineering College Thuduppathi Post, Perundurai ,Tamil Nadu | India | India |
Mr.P.SELVABHARATHI | Assistant Professor (Selection Grade) Electrical and Electronics Engineering Akshaya College of Engineering and Technology Bhagavathipalayam, Kinathukadavu, Coimbatore, Tamil Nadu 642109 | India | India |
Prof. RUPALI SURESH GAIKWAD | Assistant Professor Department of Mechanical Engineering Atma Malik Institute of Technology and Research Mohili-Aghai, Shahapur, Thane, Maharashtra, India. | India | India |
Mrs.N.AMUTHA | Assistant Professor Computer Science and Engineering EASA College of Engineering and Technology Navakkarai (p.o),NH - 47, Palakkad Main Road, Coimbatore, Tamil Nadu | India | India |
Dr. PRADIPKUMAR S. CHAUDHARI | ASSISTANT PROFESSOR Department of Mechanical Engineering U. V. Patel College of Engineering Ganpat University - U. V. Patel College of Engineering, Ganpat Vidyanagar, Highway, Gandhinagar, Gujarat . | India | India |
Mr. RAVIKIRAN KAMATH BILLADY | Assistant Professor Department of Mechanical Engineering NMAM Institute of Technology Nitte, SH1, Karkala, Karnataka 574110 | India | India |
Applicants
Name | Address | Country | Nationality |
---|---|---|---|
Dr.S.THILLIKKANI | Associate Professor Mechanical Engineering Akshaya College of Engineering and Technology Bhagavathipalayam, Kinathukadavu, Coimbatore, Tamil Nadu 642109 | India | India |
Mr. S.KARTHIKEYAN | Assistant Professor Mechanical Engineering Erode Sengunthar Engineering College Thuduppathi Post, Perundurai ,Tamil Nadu | India | India |
Mr.P.SELVABHARATHI | Assistant Professor (Selection Grade) Electrical and Electronics Engineering Akshaya College of Engineering and Technology Bhagavathipalayam, Kinathukadavu, Coimbatore, Tamil Nadu 642109 | India | India |
Prof. RUPALI SURESH GAIKWAD | Assistant Professor Department of Mechanical Engineering Atma Malik Institute of Technology and Research Mohili-Aghai, Shahapur, Thane, Maharashtra, India. | India | India |
Mrs.N.AMUTHA | Assistant Professor Computer Science and Engineering EASA College of Engineering and Technology Navakkarai (p.o),NH - 47, Palakkad Main Road, Coimbatore, Tamil Nadu | India | India |
Dr. PRADIPKUMAR S. CHAUDHARI | ASSISTANT PROFESSOR Department of Mechanical Engineering U. V. Patel College of Engineering Ganpat University - U. V. Patel College of Engineering, Ganpat Vidyanagar, Highway, Gandhinagar, Gujarat . | India | India |
Mr. RAVIKIRAN KAMATH BILLADY | Assistant Professor Department of Mechanical Engineering NMAM Institute of Technology Nitte, SH1, Karkala, Karnataka 574110 | India | India |
Specification
Description:The Multi-Crop Cutter and Herbicide with Auto Feeder is an advanced agricultural implement designed to streamline the process of crop cutting, herbicide application, and automated feeding for various types of crops. This multi-functional machine integrates cutting-edge technology to assist farmers in enhancing efficiency, reducing manual labor, and promoting sustainable farming practices. Below is a detailed description of the key components and functionalities, the machine is built on a robust frame, typically composed of high-strength steel and lightweight aluminum alloys to ensure durability while maintaining maneuverability. Its modular design allows it to be adapted for different types of crops, from cereals like wheat and rice to cash crops such as sugarcane, maize, and cotton. Multi-Blade Rotary System: Equipped with high-speed rotary blades made from carbon steel or tungsten carbide for durability and precision. The blades are adjustable to handle crops of varying heights and thicknesses. Height Adjustment Mechanism: Using sensors and actuators, the cutting height can be automatically adjusted based on the type and maturity of the crop, minimizing wastage and ensuring uniform cutting. The Safety Features cutting blades are encased in protective shields to ensure operator safety, and the machine has automatic shutdown mechanisms if an obstruction is detected. The herbicide dispensing system works in parallel with the cutting operation to ensure effective weed management. The herbicide is applied only in areas where weeds are detected, thanks to an integrated AI-based camera and sensor system that distinguishes between crops and weeds. The system adjusts the quantity of herbicide dispensed based on the density of the weed population, which minimizes chemical usage and reduces environmental impact. A large, corrosion-resistant tank holds the herbicide, which can be easily refilled and cleaned. The tank's capacity ensures extended operation without frequent refills. Conveyor System: After cutting, the crops are automatically transferred via conveyor belts to the feeder unit. This system reduces the need for manual handling, ensuring smooth and continuous operation. Sorting Mechanism: A built-in sorting mechanism separates the crop from residual materials such as leaves and stems. The clean crop is fed into collection bins or silos for further processing or transport. Variable Speed Feeder: The auto feeder system operates at variable speeds, adjusting to the volume of harvested crops, which reduces jamming and ensures optimal productivity. Multi-Crop Functionality: The ability to handle a variety of crops makes this machine versatile, reducing the need for separate tools for different types of farming. Automating the cutting, herbicide application, and feeding process significantly reduces the need for manual labor, making it an ideal solution for large farms or areas with labor shortages. The machine can cover large areas in a relatively
short period, allowing farmers to complete harvesting and herbicide application in less time than traditional methods. By targeting weeds specifically and reducing overall herbicide use, this machine supports environmentally friendly farming practices. A Multi-Crop Cutter and Herbicide with Auto Feeder is a groundbreaking innovation in modern agriculture, merging multiple essential farming processes into one efficient and automated system. Its high degree of adaptability, coupled with automation and precision features, makes it a valuable tool for farmers aiming to improve productivity, reduce costs, and practice sustainable agriculture. With hybrid power options, the machine promotes the use of renewable energy sources, reducing carbon emissions associated with agricultural machinery.
, C , Claims:
1. The multi-crop cutting and herbicide application device of claim 1, where in the cutting mechanism comprises, an adjustable blade system capable of switching between different cutting speeds or blade depths depending on the crop type.
2. The multi-crop cutting and herbicide application device of claim 1, wherein the herbicide dispenser includes, are savoir and nozzle system, a sensor to detect the crop's condition, and a mechanism to adjust the herbicide dispensing rate in real-time.
3. The multi-crop cutting and herbicide application device of claim 1, wherein the auto- feeder system includes, a conveyor or similar feeding mechanism that adjusts speed and pressure based on the physical properties of the crops being processed.
4. The multi-crop cutting and herbicideapplicationdeviceofclaim1, further comprising, a sensor-based detection system that evaluates crop density, height, or moisture content to optimize the cutting and herbicide application process.
5. Thesystemofclaim1, where in the herbicide reservoir is equipped with a mixing system to ensure uniform distribution of herbicide during application.
6. The system of claim 1, wherein the mobility unit is equipped with GPS navigation for autonomous operation across pre-mapped agricultural fields.
7. The systemofclaim1, wherein the automatic feeder includes pressure sensors to adjust feeding speed based on the density and size of the crops being processed.
8. The system of claim 1, wherein the herbicide dispensing mechanism includes precision sensors to detect the location of weeds or unwanted plants, and to selectively apply herbicide only to the target areas.
9. This customization enhances both the quality and precision of the scraping process, reducing wastage and improving efficiency is groundwork for future research.
Documents
Name | Date |
---|---|
202441089351-COMPLETE SPECIFICATION [19-11-2024(online)].pdf | 19/11/2024 |
202441089351-DRAWINGS [19-11-2024(online)].pdf | 19/11/2024 |
202441089351-FIGURE OF ABSTRACT [19-11-2024(online)].pdf | 19/11/2024 |
202441089351-FORM 1 [19-11-2024(online)].pdf | 19/11/2024 |
202441089351-FORM-9 [19-11-2024(online)].pdf | 19/11/2024 |
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