A black soldier fly integrated breeding equipment
The technology of black soldier flies and equipment is applied in the field of integrated breeding equipment of black soldier flies, which can solve the problems of restricting the efficiency of egg collection, mixing of larvae, and inconvenience, so as to improve the breeding efficiency, reduce the transition work, and reduce the production cost. Effect
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Embodiment 1
[0107] see Figure 1-Figure 2 , the black soldier fly integrated breeding equipment in this embodiment includes a larvae area and an adult area, and the adult area is connected to the larvae area through an egg delivery device; the egg delivery device transports the eggs collected in the adult area In the larval area, the eggs hatch in the larval area, and the hatched larvae grow in the larval area, and enter the adult area to mate and lay eggs after growing to adults. The egg conveying device in this embodiment is composed of a conveyor belt mechanism, and the specific structure can refer to related technologies for conveying materials in the prior art.
[0108] see Figure 3-Figure 5 , the larva area comprises a larva breeding room 1a, including at least three breeding boxes 2a for providing a feeding mechanism for feeding materials to the black soldier fly larvae and at least three breeding boxes 2a for providing a growth space for the black soldier fly larvae, and a plural...
Embodiment 2
[0147] see Figure 20 , different from Embodiment 1, the vibrating mechanism includes a vibrating rod 3b and a vibrating motor 4b, the lower end of the vibrating rod 3b is against the upper surface of the egg collector 2b, and the upper end is connected to the driving end of the vibrating motor 4b; The bottom of the egg collector 2b is supported on the top end of the compression spring 9b, and the bottom end of the compression spring 9b is connected in the imago breeding chamber 1b through a fixed structure (fixed column 10b). Through the above structure, driven by the vibrating motor 4b, the vibrating rod 3b hits the egg collector 2b downward at a high speed. Since the bottom of the egg collector 2b is supported on the top of the compression spring 9b, the impacted egg collector 2b will first Move down a certain distance, at this time the compression spring 9b is stretched and deformed to store energy. When the egg collector 2b moves down to the maximum limit, the compression...
Embodiment 3
[0149] see Figure 21-Figure 22 , and embodiment 1 is different, described ovum collection mechanism comprises the blower mechanism that is used for blowing off worm eggs from ovum collecting plate 2-1b and is used to drive the rotating drive mechanism that ovum collecting device 2b rotates, and described Blowing mechanism comprises tuyere 4c and vertical drive mechanism, and described vertical actuation mechanism is used for driving described tuyere 4c to move up and down on the outside of egg collector 2b; Egg collector 2b, and the tuyere 4c communicates with the air supply device that provides high-pressure wind.
[0150] The working principle of the above-mentioned egg-collecting mechanism is: first start the air supply device that provides high-pressure wind, so that the fast wind is delivered to the tuyere 4c, and blows from the tuyere 4c to the egg collector 2b. Wherein, the fast wind impacts on the eggs attached to the surface of the egg collecting plate 2-1b, and the...
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