Feed production equipment for aquatic plant treatment and working method thereof
A technology of production equipment and working methods, applied in the field of feed production equipment for aquatic weed management, can solve problems such as affecting breeding benefits and increasing the cost of configuring feed, and achieve the effect of accelerating the fermentation speed.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0048] Such as figure 1 , 2As shown in , 3, a feed production equipment for water and weed management includes a housing 1, a control mechanism 2 and a screw propulsion mechanism 3, the control mechanism 2 includes a processor 4, a driving device 5, a navigation device 6 and a positioning device 7, The processor 4 is respectively connected to the driving device 5, the navigation device 6 and the positioning device 7, the driving device 5 is used to drive the screw propulsion mechanism 3, and the navigation device 6 is used to generate the navigation route of the production equipment and send the navigation route to the processor 4, The positioning device 7 is used to obtain the position information of the production equipment and send the position information to the processor 4. The housing 1 includes a camera device 8, a cutting device 9, a grinding chamber 10, a fermentation chamber 11, a granulator 12 and a conveying device 13. The device 8 is connected with the processor ...
Embodiment 2
[0056] Such as Figure 5 Shown, a kind of working method of the feed production equipment that is used for waterweed control, comprises the following working steps:
[0057] a) The processor 4 sets a preset area in the navigation device 6;
[0058] b) The navigation device 6 automatically generates the navigation route from the production equipment to the preset area and the navigation route in the preset area and sends the navigation route to the processor 4;
[0059] c) The processor 4 outputs a navigation signal to the driving device 5 according to the navigation route, and the driving device 5 drives the screw propulsion mechanism 3 to sail according to the navigation route;
[0060] d) The camera device 8 takes pictures along the navigation route and sends the pictures taken to the processor 4;
[0061] e) Processor 4 judges whether there is a preset aquatic plant in the picture;
[0062] f) If so, the processor 4 outputs a cutting signal to the driving device 5, and t...
Embodiment 3
[0076] Such as Figure 9 As shown, step g also includes:
[0077] The humidity sensor 20 detects the ambient humidity value in the grinding chamber 10 and sends the humidity value to the processor 4;
[0078] The processor 4 judges whether the humidity value is greater than or equal to the first humidity value;
[0079] If so, the processor 4 outputs a drying signal to the driving device 5, and the driving device 5 drives the drying device 21 to start.
[0080] The humidity sensor 20 detects the ambient humidity value in the grinding chamber 10 and sends the humidity value to the processor 4;
[0081] The processor 4 judges whether the humidity value is less than or equal to the second humidity value;
[0082] If so, the processor 4 outputs a drying stop signal to the driving device 5, and the driving device 5 drives the drying device 21 to stop working.
[0083]Specifically, in order to further speed up the fermentation process, it is necessary to speed up the drying of a...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


