Automatic cleaning device for copepod biological bait

A biological bait and automatic cleaning technology, applied in cleaning methods and utensils, cleaning methods using tools, cleaning methods using liquids, etc., can solve the problems of pathogenic organisms affecting the human body, consuming manpower and material resources, and consuming large manpower and material resources. Achieve the effects of good cleaning effect, low manufacturing cost and low use cost

Inactive Publication Date: 2018-09-28
ZHEJIANG OCEAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Due to limited conditions, many farms mostly obtain clawed feet by fishing in the wild or buying them from bait companies. Before feeding, they need to be manually cleaned and removed, which consumes a lot of manpower and material resources.
Copepods are small crustaceans with a body length of <3 mm. They are generally caught with 100-mesh sieve silk nets and placed in 100-mesh siev

Method used

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  • Automatic cleaning device for copepod biological bait
  • Automatic cleaning device for copepod biological bait
  • Automatic cleaning device for copepod biological bait

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0015] Such as figure 1 As shown, the copepod biological bait automatic cleaning device includes a sieve silk bag 1 suspended in the casing 9, a vibration plate 8 is arranged below the sieve silk bag 1, and the bottom of the vibration plate 8 is connected to the flipper 3 by a spring 2, and the flipper 3 passes through The bracket 4 is connected with the box body 9, a motor 10 is placed on the lower side of one end of the flipper 3, a washing plate 5 is arranged above the sieve bag 1, and a high-pressure water gun is connected above the rinsing plate 5, and the water pressure force is used to move downwards to the inside of the sieve bag 1. Wash the copepods, and use the fins 3 under the sieve bag 1 to simulate the shaking effect of human feet, and transmit the shaking force through the spring 2 to the vibration plate with a large surface area. 8 pairs of sieve bags are continuously shaken to improve the cleaning of the copepods Effect, when shaking, the spring 2 can produce a...

Embodiment 2

[0018] Such as figure 2 As shown, the optimization scheme of this embodiment on the basis of Example 1 is: a cleaning ball 7 is placed in the sieve bag 1, and the cleaning ball 7 is driven to roll between the copepods under the impact of water to clean it, and Reasonable distribution of copepods, no dead ends for cleaning, an opening cover 701 is provided on the surface of the cleaning ball 7, activated carbon is placed inside the cleaning ball 7, brushes 702, suction holes 703 and buffer strips are irregularly arranged on the surface of the cleaning ball 7 705. The high-pressure water gun is used for cleaning the copepods. The impact force of the high-pressure water gun is not conducive to protecting the biological integrity of the cleaned copepods and affects the quality of the bait obtained after cleaning. The cleaning ball 7 is between the copepods When rolling, at the same time bear the impact of part of the water flow and then make the water flow impact the copepods. Th...

Embodiment 3

[0020] The sieve silk bag 1 is soaked in the antifouling liquid before loading the copepods. The antifouling liquid is composed of the following components and parts by weight: 13 parts of pyrithione, 4 parts of zinc pyrithione, 0.7 part of cuprous thiocyanate, methyl 8 parts of hydrogen-containing silicone oil, 4 parts of trichlorophenyl maleamide, 0.01 part of imidacloprid, 0.001 part of L-lysine hydrochloride, 0.002 part of D-lysine hydrochloride, 0.004 part of diuron, pyrethroid 0.06 parts of grease, 35 parts of acrylic resin, methyl hydrogen-containing silicone oil and other ingredients to prepare the anti-fouling liquid anti-biological adhesion, anti-pollutant adhesion effect is good, select a special ratio of L-lysine hydrochloride and D-lysine The hydrochloric acid salt configuration can adjust the components of the antifouling agent, so that the components of the antifouling agent in the sieve silk bag 1 soaked in the antifouling agent have no slow release phenomenon i...

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Abstract

The invention discloses an automatic cleaning device for copepod biological bait and belongs to the technical field of bait cleaning devices. The automatic cleaning device comprises a bolting silk baghanging inside a box body; a jolting board is arranged under the bolting silk bag; a flipper is connected to the lower part of the jolting board through a spring; the flipper is connected to the boxbody through a support; a motor is installed at a lower side of one end of the flipper; a flushing plate is installed over the bolting silk bag. The cleaning device of the invention can automaticallyand efficiently clean the copepods, and the biological integrity after cleaning is high, saving manpower and material resources.

Description

technical field [0001] The invention belongs to the technical field of bait cleaning devices, in particular to an automatic cleaning device for copepod biological bait. Background technique [0002] Copepod is an important category of marine animal bait, and it is also an important part of freshwater zooplankton. About 30 species of copepods have been studied in the culture of continuous generations under laboratory conditions. [0003] Due to limited conditions, many farms obtain scleropoda through wild fishing or purchase from bait companies. Before feeding, they need to be cleaned and removed manually, which consumes a lot of manpower and material resources. Copepods are small crustaceans with a body length of <3 mm. They are generally caught with 100-mesh sieve silk nets and placed in 100-mesh sieve silk bags for direct cleaning with water. The traditional cleaning method is to continuously wash with a large amount of water and rely on Manually using feet to shake t...

Claims

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Application Information

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IPC IPC(8): B08B3/02B08B1/00B08B3/10B08B3/14B08B13/00
CPCB08B1/001B08B3/02B08B3/10B08B3/14B08B13/00
Inventor 赵波刘新奇卞盼施明文代红欢
Owner ZHEJIANG OCEAN UNIV
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