CN109275637B - Pest attracting and catching method - Google Patents

Pest attracting and catching method Download PDF

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Publication number
CN109275637B
CN109275637B CN201811337462.7A CN201811337462A CN109275637B CN 109275637 B CN109275637 B CN 109275637B CN 201811337462 A CN201811337462 A CN 201811337462A CN 109275637 B CN109275637 B CN 109275637B
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pest
pests
odor
block
placing grid
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CN109275637A (en
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黄定平
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Weihai Xinbao Food Co ltd
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Jiaxing Shengkang Information Technology Co Ltd
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M1/00Stationary means for catching or killing insects
    • A01M1/02Stationary means for catching or killing insects with devices or substances, e.g. food, pheronones attracting the insects
    • A01M1/04Attracting insects by using illumination or colours
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M1/00Stationary means for catching or killing insects
    • A01M1/02Stationary means for catching or killing insects with devices or substances, e.g. food, pheronones attracting the insects
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M1/00Stationary means for catching or killing insects
    • A01M1/02Stationary means for catching or killing insects with devices or substances, e.g. food, pheronones attracting the insects
    • A01M1/023Attracting insects by the simulation of a living being, i.e. emission of carbon dioxide, heat, sound waves or vibrations
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M1/00Stationary means for catching or killing insects
    • A01M1/10Catching insects by using Traps

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  • Life Sciences & Earth Sciences (AREA)
  • Pest Control & Pesticides (AREA)
  • Engineering & Computer Science (AREA)
  • Insects & Arthropods (AREA)
  • Wood Science & Technology (AREA)
  • Zoology (AREA)
  • Environmental Sciences (AREA)
  • Catching Or Destruction (AREA)

Abstract

The invention discloses a pest trapping method, which is realized based on a pest trapping catcher, the structure of the pest trapping catcher comprises a removable pest placing grid, a trapping anti-reverse running device comprises an inclined auxiliary block, an anti-reverse running inlet, a threaded connecting end, an energy guide conversion body, a smell inducing body, a shock wave layer and a dense taste end, the removable pest placing grid comprises a placing grid, a protective net, a scale powder processing groove and a movable magnet sliding rod, the protective net is positioned in the placing grid, the movable magnet sliding rod is provided with two movable blocks, the bottom ends of the two movable blocks are connected with the two ends of the protective net, the scale powder processing groove is arranged right below the placing grid, beet armyworms can be attracted to the connecting inlet through the diffusion of common-frequency shock waves and smell and can fly into the interior through a pushing warping plate, when the beet armyworms need to be taken out for processing, the two movable blocks are moved together, the beet armyworms are enclosed in the net, so that the whole part can be easily taken out.

Description

Pest attracting and catching method
Technical Field
The invention belongs to the field of agricultural greenhouses, and particularly relates to a pest attracting and capturing method.
Background
The pest trapper is arranged in a large cabbage shed, the solar panel absorbs energy in the daytime, when the high-temperature arid climate exists, the energy is converted into electric energy at night to enable the trapper to be turned on through current, the odor and the seismic wave for trapping beet noctuids are started, the adult noctuids flying are trapped by the seismic wave and the odor and are attracted into the device, and the device runs by solar energy in a part of time, if the solar energy is not supplied enough, and the current is changed, a few beet noctuids are easy to find an outlet to fly out, and the effect of the stage loses the effect on the noctuids or the attracted noctuids to escape.
When the device lures its beet armyworm and packs inside, when the night moth is too much, need clear up it, the check that holds the dress with the bottom unscrew, when it unscrewed, some noctuids still were flying in disorder and are colliding, probably fly out at the in-process of taking out, on spilling the scale powder puff that even its self was taken on the human body, when human skin contacted this scale powder, arouse the discomfort more easily.
Therefore, it is necessary to provide a method for attracting and catching pests and realizing the attraction and the reversion prevention.
Disclosure of Invention
In order to solve the problems that in the technology, due to the fact that equipment stops in the process of replacing solar energy and electric energy, beet armyworms fly out, when the beet armyworms need to be taken out for treatment, the beet armyworms easily fly out and run off, and scale powder easily falls down to cause injury to human skin.
The invention provides a pest attracting and catching method, which is realized based on a pest attracting and catching device and is realized by the following specific technical means:
the structure of the pest trapping catcher comprises a removable pest placing grid, a trapping anti-back-running device, a simulated light, a diffusing transparent shell, a solar panel and a linking fixing sleeve;
the removable pest placing grids are arranged under the trapping and anti-reverse-running device and are communicated with each other and located on the same axis, one end of the trapping and anti-reverse-running device, which is far away from the removable pest placing grids, is screwed into an inner groove of a linking fixing sleeve, the linking fixing sleeve is welded on the outer surface of the bottom end of the emission transparent shell and is located on the same central line, and the simulation light is located inside the emission transparent shell and is electrically connected with the solar panel through a conductor.
The trapping anti-reverse-running device comprises two inclined auxiliary blocks, an anti-reverse-running inlet, a threaded connecting end, an energy-guiding conversion body, an odor inducing body, a shock wave layer and a thick-flavor end, wherein the inclined auxiliary blocks are in right-angled triangle structures, the shorter vertical end of each inclined auxiliary block is attached to the lower end of the inner wall of the anti-reverse-running inlet, one end, far away from the inclined auxiliary block, of the anti-reverse-running inlet is in threaded connection with the threaded connecting end, the energy-guiding conversion body is positioned right above the odor inducing body and is electrically connected with the odor inducing body, the shock wave layer is nested on the outer surface of the odor inducing body, the thick-flavor end is in a rounded triangle structure, one planar end of each thick-flavor end is connected with the odor inducing body, the removable pest placing grid comprises a placing grid, a protective net, a scale powder processing groove and a movable magnet sliding rod, the protective net is positioned inside the placing, the scale powder treatment tank is arranged right below the placing grid.
The attracting and capturing method comprises the following steps:
(1) when the adult beet noctuids are emerged, the odor and the same frequency vibration wave are respectively emitted by the vibration wave layer and the odor inducing body, so that the beet noctuids are induced by the beet noctuids, and the closer the beet noctuids are to the signals, the stronger the signals are;
(2) in the approaching process, pests can search for the sources of the pests vigorously, the pests can be squeezed into the connecting end through the pushing warping plate, the return springs of the pests are squeezed when the pests push the warping plate to be pushed, the pests can push the warping plate to return quickly through the force of the return springs after entering the pest control box, and the pests are prevented from flying outwards;
(3) the strong odor at the bottom is stronger than that at the top, so that the pests fly downwards and fly into the placing grid, and when the pests fly inside, the self-carried unicorn powder falls into the water level tank containing liquid, so that the pests cannot fly again due to the fly;
(4) when beet armyworms reach a certain amount or need to collect and handle, through removing one of them magnetic field movable block, remove near another magnetic field movable block, both will adsorb together through the power that the magnetic field is inhaled mutually to it encloses the beet armyworms of inside to have driven the protection network, live the back with its whole encircles, it can to take out through the software closed mouth.
As a further improvement of the invention, the anti-reverse-running inlet comprises a connection end, a pushing rocker, a return rotating shaft body and a connection inlet, wherein the connection end and the connection inlet are communicated with each other, the pushing rocker is installed in the middle of the connection end and the connection inlet, one end of the pushing rocker penetrates through the interior of the return rotating shaft body, the return rotating shaft body comprises a connection fixed block, two return springs and a stressed rotating shaft body, the connection fixed blocks are arranged and embedded in the interior of the stressed rotating shaft body, the head end and the tail end of each return spring are connected with the connection fixed blocks, the return springs are wound on the outer surface of the return rotating shaft body, the return rotating shaft body and the pushing rocker are integrated into a whole, the two bodies are in one group, and six.
As a further improvement of the present invention, the movable magnet slide bar includes two magnetic field moving blocks, a circular slide rail, and a soft sealing opening, wherein one end of each of the two magnetic field moving blocks is embedded in an inner groove of the circular slide rail and is movably connected to the inner groove of the circular slide rail, the soft sealing opening penetrates through the circular slide rail, the magnetic field moving block includes a fixed threaded block, a threaded rotary body, a magnetic field layer, a magnetic conductive layer, and an end clamping groove, the threaded rotary body is in threaded connection with the fixed threaded block, the magnetic field layer wraps the magnetic conductive layer, the top end of the magnetic conductive layer is connected to the threaded rotary body, the end clamping groove penetrates through the bottom end of the magnetic conductive layer, the end clamping groove of the magnetic conductive layer includes an end placing grid and a clamping block, the clamping block is embedded in the end placing grid, two outer surfaces of the magnetic field layer attract each other through a.
As a further improvement of the invention, the scale powder treatment tank comprises a water level tank, a connection grid and a protective layer, wherein the connection grid is arranged between the protective layer and the connection grid, the connection grid is in a U-shaped structure, and the protective layer is made of stainless steel.
Compared with the prior art, the invention has the following beneficial effects:
can be through same frequency seismic wave at its beet armyworm, with the diffusion of smell, lure to linking up the entry and let it fly into inside through can promoting the wane cisoid, make it unable departure, introduce it down through the more violent taste of dense flavor end, its beet armyworm is when putting the plotter in the check, its on one's body scale powder will fall into the water level inslot, make it can not fly up once more, when needing to take out the beet armyworm and handle, move two movable blocks together, beet armyworm will be enclosed to the net in, make its whole taking out that can relax.
Drawings
FIG. 1 is a schematic structural view of a pest trapping trap with anti-back-running easy-to-take-out treatment according to the present invention.
Fig. 2 is a schematic view of the internal structure of the insect pest trapping trap with anti-back-running and easy-to-take-out treatment of the invention.
Fig. 3 is a schematic view of the internal structure of an anti-reverse running inlet according to the present invention.
Fig. 4 is a schematic side view of a return rotary shaft according to the present invention.
FIG. 5 is a schematic top view of the internal structure of a movable magnet slide bar according to the present invention.
Fig. 6 is a schematic diagram of an internal structure of a magnetic field moving block according to the present invention.
Fig. 7 is an enlarged schematic structural view of a tip card slot according to the present invention.
FIG. 8 is a schematic view of the internal structure of a scale treatment tank according to the present invention
In the figure: a removable pest placing grid-1, an attracting anti-back running device-2, a simulated light-3, a diffusing transparent shell-4, a solar panel-5, a connecting fixed sleeve-6, a placing grid-11, a protective net-12, a scale powder processing groove-13, a movable magnet slide bar-14, an inclined auxiliary block-21, an anti-back running inlet-22, a threaded connecting end-23, an energy guide conversion body-24, a smell inducing body-25, a shock wave layer-26, a strong flavor end-27, a connecting end-221, a pushing wane-222, a returning rotating shaft body-223, a connecting inlet-224, a connecting fixed block-2231, a returning spring-2232, a stress rotating shaft body-2233, a magnetic field moving block-141, a circular slide rail-142, a soft sealing port-143, a stress rotating shaft body-2233, a magnetic field moving block-141, a circular, A fixed thread block-1411, a thread screw-1412, a magnetic field layer-1413, a magnetic conduction layer-1414, an end socket-1415, an end socket placing grid-14151, a fixture block-14152, a water level groove-131, a connecting grid-132 and a protective layer-133.
Detailed Description
The invention is further described below with reference to the accompanying drawings:
example (b): a pest attracting and catching method, which is implemented based on a pest attracting and catching device, as shown in the accompanying drawings 1 to 8:
the structure of the pest trapping catcher comprises a removable pest placing grid 1, a trapping anti-running-back device 2, simulated light 3, a diffusion transparent shell 4, a solar panel 5 and a linking fixing sleeve 6;
the removable pest placement grids 1 are arranged under the luring anti-reverse-running device 2 and are mutually communicated and are positioned on the same axis, one end of the luring anti-reverse-running device 2, which is far away from the removable pest placement grids 1, is screwed into an inner groove of a linking fixing sleeve 6, the linking fixing sleeve 6 is welded on the outer surface of the bottom end of the emission transparent shell 4 and is positioned on the same central line, and the simulated light 3 is positioned inside the emission transparent shell 4 and is electrically connected with the solar panel 5 through a conductor.
The attracting anti-reverse running device 2 comprises an inclined auxiliary block 21, an anti-reverse running inlet 22, a threaded connection end 23, an energy guiding conversion body 24, an odor inducing body 25, a shock wave layer 26 and a strong flavor end 27, wherein the inclined auxiliary block 21 is provided with two right-angled triangle structures, the shorter vertical end of the inclined auxiliary block 21 is attached to the lower end of the inner wall of the anti-reverse running inlet 22, one end of the anti-reverse running inlet 22 far away from the inclined auxiliary block 21 is in threaded connection with the threaded connection end 23, the energy guiding conversion body 24 is positioned right above and electrically connected with the odor inducing body 25, the shock wave layer 26 is nested on the outer surface of the odor inducing body 25, the strong flavor end 27 is in a round-angled triangle structure, one plane end of the strong flavor end is connected with the odor inducing body 25, the same inducing body as the odor inducing body 25 is arranged in the strong flavor, the effect is better, and the extractable pest placing grid 1 comprises a placing grid 11, the device comprises a protective net 12, scale powder treatment grooves 13 and movable magnet sliding rods 14, wherein the protective net 12 is positioned inside a placing grid 11, the number of the movable magnet sliding rods 14 is two, the bottom ends of the movable magnet sliding rods are connected with the two ends of the protective net 12, and the scale powder treatment grooves 13 are arranged right below the placing grid 11;
the attracting and capturing method comprises the following steps:
(1) when the device is started, the energy-guide conversion body 24 guides the electric energy to the simulated light 3, the simulated light 3 starts to operate to simulate the sunlight in the daytime, when the adult beet armyworms appear and sink, the earthquake wave layer 26 and the odor inducing body 25 respectively emit odor and vibration waves with the same frequency, so that the beet armyworms are induced by the beet armyworms, and the closer the beet armyworms are, the stronger the signals are;
(2) in the approaching process, pests can search for the source of the pests vigorously, the pests can be pushed into the connecting end 221 through the pushing rocker 222, when the pushing rocker 222 is pushed, the return spring 2232 of the pests is pushed, and the pests can push the rocker 222 to return quickly through the force of the return spring 2232 after entering the pest, so that the pests are prevented from flying outwards;
(3) the strong odor at the bottom 27 is stronger than that at the top, so that the pests fly downwards and fly into the placing grid 11, when the pests fly inside, the self-carried unicorn powder falls into the water level tank 131 containing liquid, and the pests cannot fly up again due to the fly;
(4) when the beet armyworms reach a certain amount or need to be collected and processed, one of the magnetic field moving blocks 141 is moved to the position near the other magnetic field moving block 141, and the beet armyworms and the other magnetic field moving blocks are adsorbed together by the attraction of the magnetic fields, so that the protective net 12 is driven to enclose the beet armyworms inside, and after all the beet armyworms are enclosed, the beet armyworms are taken out through the soft sealing port 143.
The anti-back-running inlet 22 comprises a connecting end 221, a pushing rocker 222, a return rotating shaft body 223 and a connecting inlet 224, wherein the connecting end 221 and the connecting inlet 224 are communicated with each other, the pushing rocker 222 is installed in the middle of the connecting end 221, one end of the pushing rocker 222 penetrates through the return rotating shaft body 223, the return rotating shaft body 223 comprises a connecting fixing block 2231, a return spring 2232 and a stressed rotating shaft body 2233, two connecting fixing blocks 2231 are arranged and embedded in the stressed rotating shaft body 2233, the head end and the tail end of the return spring 2232 are connected with the connecting fixing block 2231, the return spring 2232 is wound on the outer surface of the return rotating shaft body 223, the return rotating shaft body 223 and the pushing rocker 222 are integrated into a whole, the two bodies are combined into a group, six groups are arranged, the openings and the outlets of the six groups face to the same direction, the pushing rocker 222 can be pushed by the outside only to one side, and the other end of the pushing, the movable magnet slide bar 14 comprises two magnetic field moving blocks 141, a circular slide rail 142 and a soft sealing opening 143, wherein one end of each of the two magnetic field moving blocks 141 is embedded in an inner groove of the circular slide rail 142 and movably connected with the inner groove, the soft sealing opening 143 penetrates through the circular slide rail 142, each of the magnetic field moving blocks 141 comprises a fixed threaded block 1411, a threaded body 1412, a magnetic field layer 1413, a magnetic conductive layer 1414 and an end socket clamping groove 1415, the threaded body 1412 is in threaded connection with the fixed threaded block 1411, the magnetic field layer 1413 wraps the magnetic conductive layer 1414, the top end of the magnetic conductive layer 1414 is connected with the threaded body 1412, the end socket 1415 penetrates through the bottom end of the magnetic conductive layer 1414, the magnetic conductive layer end socket 1415 comprises an end placing grid 14151 and a clamping block 14152, the clamping block 14152 is embedded in the end placing grid 14151, two surfaces of magnetic field layer 1413 will be inhaled through magnetic field opposite poles mutually, and it will be in the same place the atress fast when both remove to a certain distance, need unpack it apart and only need hold the top and be equal to a fulcrum, just can easily open it, and both adsorb in-process together, do not leave half a little gap more firm, software closed end 143 is made for the rubber material, scale powder treatment trough 13 includes water level tank 131, links up net 132, inoxidizing coating 133, install between inoxidizing coating 133 and the linking net 132 and link up net 132, it is U type structure to link up net 132, and itself is comparatively heavy, and the gravity distribution of material is comparatively even, can not rock too hard when making its inside contain water, inoxidizing coating 133 is made for stainless steel matter.
Wherein, the pushing seesaws 222 are combined to form an inverted triangle structure to assist the external objects to enter the interior, the force-bearing rotating shaft 2233 is driven by the return spring 2232 to bear the force of recovery, so that the two components can return conveniently and rapidly,
the soft body sealing opening 143 is pressed to be attached to an object to be opened, so that the magnetic field moving block 141 can be taken out easily, internal pests are prevented from flying out, the clamping block 14152 is fixedly installed, the top end of the clamping block 14152 is controlled, the connector can be expanded above the clamping block 14152, the connector is difficult to fall out, and one end of the connector is difficult to loosen.
Wherein, linking net 132 is installed in inoxidizing coating 133 surface because the material of itself is comparatively easy, and water level groove 131 and linking net 132 switch on each other, and there is linking net 132 at the top to carry out the blocking of subtotal to the water that rocks out from time to time now, and what make it can not spill is too violent, lets it lose original effect.
The working principle of the embodiment is as follows:
in the invention, the top end of the device collects the solar energy through the solar panel 5 in the daytime, so that the solar energy is guided into the energy-guiding conversion body 24 to be stored and converted into electric energy, at night when the device is in high temperature and drought, the device is started, the energy-guiding conversion body 24 guides the electric energy to the simulation lamp light 3, the simulation lamp light 3 starts to operate to simulate the sunlight in the daytime, so that the larva of the beet armyworm generates a miszone to fly out the larva, when the adult beet armyworm is emerged, the simulation sunlight is ineffective, the earthquake wave layer 26 and the odor inducing body 25 respectively emit odor and same-frequency vibration waves, so that the beet armyworm is induced by the beet armyworm, the stronger the closer to the signal, the pest can forcefully search the source of the beet armyworm, the pest can push the wane 222 into the connecting end 221, and push the return spring 2232 to be extruded when the beet armyworm is pushed, after the pests enter, the tilting plate 222 can be pushed to return quickly by the force of the return spring 2232, so that the pests are prevented from flying outwards, the dense-flavor end 27 at the bottom is stronger than that at the top, so that the pests fly downwards and fly into the placing grid 11, when the pests fly inside, the carried unicorn powder on the bodies of the pests falls into the water level groove 131 filled with liquid, so that the pests cannot fly up again due to the flying of the pests, when the beet armyworms reach a certain number or need to be collected and treated, the beet armyworms move to the vicinity of the other magnetic field moving block 141 by moving one of the magnetic field moving blocks 141, and the beet armyworms are adsorbed together by the force of the magnetic field, so that the protective net 12 is driven to enclose the beet armyworms inside, and after the beet armyworms are all enclosed, the beet armyworms can be taken out through the soft sealing opening 143, and the powdered beet armyworms are difficult to fly to human.
The technical solutions of the present invention or similar technical solutions designed by those skilled in the art based on the teachings of the technical solutions of the present invention are all within the scope of the present invention to achieve the above technical effects.

Claims (7)

1. A pest attracting and catching method based on a pest attracting and catching device, characterized in that: the trap comprises a removable pest placing grid (1), an attracting anti-back-running device (2), a simulated light (3), a diffusing transparent shell (4), a solar panel (5) and a linking fixing sleeve (6);
the removable pest placement grids (1) are arranged under the luring anti-reverse-running device (2) and are communicated with each other and are positioned on the same axis, one end of the luring anti-reverse-running device (2) far away from the removable pest placement grids (1) is screwed into an inner groove of a linking fixing sleeve (6), the linking fixing sleeve (6) is welded on the outer surface of the bottom end of the emission transparent shell (4) and is positioned on the same central line, and the simulation lamp light (3) is positioned in the emission transparent shell (4) and is electrically connected with the solar panel (5) through a conductor;
the luring anti-reverse running device (2) comprises an inclined auxiliary block (21), an anti-reverse running inlet (22), a threaded connecting end (23), an energy guiding conversion body (24), an odor inducing body (25), a shock wave layer (26) and a thick odor end (27), wherein the inclined auxiliary block (21) is provided with two right-angled triangle structures, the vertical shorter end of the inclined auxiliary block (21) is attached to the inclined bottom end of the inner wall of the anti-reverse running inlet (22), one end, far away from the inclined auxiliary block (21), of the anti-reverse running inlet (22) is in threaded connection with the threaded connecting end (23), the energy guiding conversion body (24) is positioned right above the odor inducing body (25) and is electrically connected with the odor inducing body, the shock wave layer (26) is nested on the outer surface of the odor inducing body (25), the thick odor end (27) is in a round-angled triangle structure, one flat end of the thick odor inducing body (25) is connected with the odor inducing body, and the removable pest placing grid (1) comprises a, The device comprises a protective net (12), scale powder treatment grooves (13) and movable magnet sliding rods (14), wherein the protective net (12) is positioned inside a placing grid (11), the movable magnet sliding rods (14) are provided with two movable magnet sliding rods (14), the bottom ends of the two movable magnet sliding rods (14) are respectively connected with the two ends of the protective net (12), and the scale powder treatment grooves (13) are arranged right below the placing grid (11);
the attracting and capturing method comprises the following steps:
(1) when the device is started, the energy-guide conversion body (24) guides electric energy to the simulated light (3), the simulated light (3) starts to operate to simulate the sunlight in the daytime, and when adult beet armyworms are emerged, the odor and the same-frequency vibration waves are respectively emitted through the seismic wave layer (26) and the odor induction body (25), so that the beet armyworms are induced by the beet armyworms, and the closer the beet armyworms are to the signals, the stronger the beet armyworms are;
(2) in the approaching process, pests can search for the sources of the pests vigorously, the pests can be squeezed into the connecting end (221) through the pushing rocker (222), when the pushing rocker (222) is pushed, the return springs (2232) of the pests are squeezed, and the pests can push the rocker (222) to return quickly through the force of the return springs (2232) after entering the pests, so that the pests are prevented from flying outwards;
(3) the odor of the dense odor end (27) at the bottom is stronger than that of the top, so that the pests fly downwards and fly into the placing grid (11), and when the pests fly inside, the unicorn powder carried by the pests fall into the water level tank (131) filled with liquid, so that the pests cannot fly again;
(4) when the beet armyworms reach a certain number or need to be collected and processed, one magnetic field moving block (141) is moved to the position near the other magnetic field moving block (141), the beet armyworms and the other beet armyworms are adsorbed together through the attraction of the magnetic fields, so that the protective net (12) is driven to enclose the beet armyworms inside, and the beet armyworms are completely enclosed and then taken out through the soft sealing port (143).
2. The pest attracting and catching method according to claim 1, wherein: the anti-reverse-running inlet (22) comprises a connection end (221), a pushing warping plate (222), a return rotating shaft body (223) and a connection inlet (224), wherein the connection end (221) and the connection inlet (224) are communicated with each other, the pushing warping plate (222) is installed in the middle of the connection end (221) and the connection inlet (224), and one end of the pushing warping plate (222) penetrates through the interior of the return rotating shaft body (223).
3. The pest attracting and catching method according to claim 2, wherein: the return pivot body (223) is including linking up fixed block (2231), return spring (2232), atress pivot body (2233), it is equipped with two and imbeds inside atress pivot body (2233) to link up fixed block (2231), return spring (2232) head and the tail both ends are connected with linking up fixed block (2231), return spring (2232) twine in return pivot body (223) surface.
4. The pest attracting and catching method according to claim 1, wherein: the movable magnet sliding rod (14) comprises two magnetic field moving blocks (141), a circular sliding rail (142) and a soft body sealing opening (143), wherein one end of each magnetic field moving block (141) is embedded into an inner groove of the circular sliding rail (142) and is movably connected with the inner groove, and the soft body sealing opening (143) penetrates through the inner part of the circular sliding rail (142).
5. The pest attracting and catching method according to claim 4, wherein: the magnetic field moving block (141) comprises a fixed thread block (1411), a thread rotating body (1412), a magnetic field layer (1413), a magnetic conduction layer (1414) and an end head clamping groove (1415), wherein the thread rotating body (1412) is in threaded connection with the fixed thread block (1411), the magnetic field layer (1413) wraps the magnetic conduction layer (1414), the top end of the magnetic conduction layer (1414) is connected with the thread rotating body (1412), and the end head clamping groove (1415) penetrates through the inner bottom end of the magnetic conduction layer (1414).
6. The pest attracting and catching method according to claim 5, wherein: the magnetic conduction layer end clamping groove (1415) comprises an end placing grid (14151) and a clamping block (14152), and the clamping block (14152) is embedded into the end placing grid (14151).
7. The pest attracting and catching method according to claim 1, wherein: the scale powder treatment tank (13) comprises a water level tank (131), a connection grid (132) and a protection layer (133), the connection grid (132) is installed between the protection layer (133) and the connection grid (132), and the connection grid (132) is of a U-shaped structure.
CN201811337462.7A 2018-11-12 2018-11-12 Pest attracting and catching method Active CN109275637B (en)

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CN109275637B true CN109275637B (en) 2020-12-18

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CN114223631B (en) * 2021-12-15 2023-04-11 中国林业科学研究院亚热带林业研究所 Conveniently unpick and wash portable trapping device

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CN107668007A (en) * 2017-10-13 2018-02-09 苏州艾维科斯园林设备有限公司 Mosquito machine and its manufacture assembly method are caught in a kind of cleaning easy to disassemble
CN107889807A (en) * 2017-11-02 2018-04-10 伍超群 A kind of energy saving and environment friendly rice terrace moth-killer
CN207589919U (en) * 2017-11-30 2018-07-10 宜兴市蔬菜办公室 A kind of prodenia litura trapper
CN207692797U (en) * 2018-01-10 2018-08-07 安顺学院 A kind of rice field insect investigation and sampling device
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US4282673A (en) * 1979-06-21 1981-08-11 Focks Dana A Flying insect trap
US4501088A (en) * 1983-01-05 1985-02-26 Boisvert J Roger Fly trap with disposable collector
US6550181B1 (en) * 2000-06-15 2003-04-22 Randy D. Ray Elevated beetle trap
CN201069955Y (en) * 2007-05-16 2008-06-11 钟德铧 Long afterglow energy-saving high-efficiency safe trap device
CN101766156A (en) * 2008-12-28 2010-07-07 张少伟 Solar broad-spectrum multicolor stroboscopic concentrating long-shot high-trapping LED lamp
CN201451099U (en) * 2009-01-20 2010-05-12 骆文强 Fly trapping bag
CN102893965A (en) * 2012-09-27 2013-01-30 辽宁省林业科学研究院 Method for trapping gipsy moth by using lamplight
CN203581453U (en) * 2013-12-10 2014-05-07 无锡大阿福信息科技有限公司 Excrement collecting box
CN204090831U (en) * 2014-10-11 2015-01-14 安吉安宁生物科技有限公司 A kind of collection worm device of trapping lamp
CN104381232A (en) * 2014-11-24 2015-03-04 天峨县平昌生态农业有限公司 Wasp trapping device
CN104396908A (en) * 2014-11-30 2015-03-11 李洋 Forestry disinfectation device and insecticide liquid thereof
CN204762895U (en) * 2015-06-30 2015-11-18 山东省农业科学院植物保护研究所 Collect device that purifies lepidoptera insect ovum
CN205180145U (en) * 2015-12-11 2016-04-27 北京依科曼生物技术股份有限公司 Insect trapping device who can be used to automatic monitoring
CN205640377U (en) * 2016-05-06 2016-10-12 锠钢精密科技股份有限公司 Incessant lighting device of mosquito lamp function is caught to utensil
CN206808499U (en) * 2017-06-22 2017-12-29 四川江力晶晶科技有限公司 A kind of efficient outdoor trapping lamp
CN107668007A (en) * 2017-10-13 2018-02-09 苏州艾维科斯园林设备有限公司 Mosquito machine and its manufacture assembly method are caught in a kind of cleaning easy to disassemble
CN107889807A (en) * 2017-11-02 2018-04-10 伍超群 A kind of energy saving and environment friendly rice terrace moth-killer
CN207589919U (en) * 2017-11-30 2018-07-10 宜兴市蔬菜办公室 A kind of prodenia litura trapper
CN207692797U (en) * 2018-01-10 2018-08-07 安顺学院 A kind of rice field insect investigation and sampling device
CN207978767U (en) * 2018-03-20 2018-10-19 武汉市农业科学院 A kind of pest-catching device for lepidoptera pest

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