CN212437011U - Moth trapper - Google Patents

Moth trapper Download PDF

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Publication number
CN212437011U
CN212437011U CN202020870495.4U CN202020870495U CN212437011U CN 212437011 U CN212437011 U CN 212437011U CN 202020870495 U CN202020870495 U CN 202020870495U CN 212437011 U CN212437011 U CN 212437011U
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barrel
moth
semi
core
funnel
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CN202020870495.4U
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Chinese (zh)
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谢志娟
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Abstract

The utility model relates to a moth trapper, including the barrel, the upper cover lures the core, the worm gauze mask, semi-net shape funnel and phosphor strip, the upper cover sets up in the barrel top, and the barrel side is equipped with the installation department, lures the core to insert and establishes in the upper cover, and the core of luring in the core is located the barrel, and the lateral wall of barrel is equipped with multiseriate micropore, lures the lateral wall of core to be equipped with the thru hole, semi-net shape funnel sets up in the barrel below, and semi-net shape funnel top has the mesh, the worm gauze mask sets up and sets up above semi-net shape funnel and interval, and the worm gauze mask covers the mesh, the phosphor strip is located the barrel bottom and sets up in semi-net shape funnel. All the components of the moth trap of the utility model can be disassembled, the operation is simple, and the moth trap is convenient to carry and transport; the trap integrates light induction and sexual induction, and can effectively increase the insect induction quantity; the trap is provided with the insect mask, which can effectively prevent the moths from escaping and effectively improve the insect-attracting effect.

Description

Moth trapper
Technical Field
The utility model relates to an insect trapping equipment, in particular to moth trapper.
Background
The rice moth pests mainly comprise Lepidoptera noctuidae diaphania inferens, snout moth larvae, rice leaf rollers and the like. In recent years, the rice borer pests such as the sesamia inferens and the chilo suppressalis grow more and more due to the change of rice varieties, farming systems, drug use varieties and drug use methods; the migratory rice leaf rollers are very easy to occur due to the factors of favorable rice varieties, uneven growth period levels, proper climatic conditions, large migration amount, short duration of prevention and control agents and the like. Effectively control the generation of pests such as rice borer, chilo suppressalis, rice leaf roller and the like, and is beneficial to ensuring the safety of rice grains.
In order to effectively implement negative growth actions of pesticide application, physical prevention and control become a development trend of safe production of agricultural products. The rice moth pests are phytophagous pests, are triangular in shape, have 15-30 mm wings, usually fly at night, and have phototaxis characteristics. Light induction is to utilize the phototaxis characteristic of insects to trap adult insects; the insect pheromone trapping and killing is to release female sex pheromone through a sex attractant, trap male moths, interfere or destroy mating and reproduction between males and females. The light-induced and insect pheromone-induced insect-killing physical prevention and control means reduces the population density by trapping and killing adult insects, and has the characteristics of protecting the environment and natural enemies, being difficult to generate drug resistance, being convenient to use and the like. The two are combined for use, and the insect attractant has the characteristics of strong pertinence and high sensitivity, and has an obvious insect attracting effect.
The common insect traps are various in types, wherein the triangular traps and the ship-shaped traps are easy to accumulate water and deposit dust due to viscose, so that the insect trapping effect is influenced, and the viscose needs to be replaced frequently; the water bucket type trapper is reduced due to evaporation of water, the insect trapping effect is influenced, and water needs to be added frequently; in the common trap cover type trap, because the trapping core is positioned at the opening at the bottom of the trap, the trapped moths only partially ascend to fly into the moth port, and the moths entering the trap can escape from the entrance again due to simple flight path, thereby also influencing the trapping effect. Generally, the triangular, ship-shaped and bucket-shaped traps have a large insect attracting amount, but need to be maintained by frequently replacing viscose or adding water, and are not simple and convenient to operate; the ordinary trapping cover type trap is simple and convenient to operate, can be put into use for a long time after being installed, but has the advantages of small insect trapping amount, poor effect and low accuracy, and brings inconvenience to production and measurement and prediction.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects of the prior art, the moth trapper is detachably mounted, simple and convenient to operate, convenient to carry and transport and good in moth trapping effect.
The specific technical scheme is as follows: the utility model provides a moth trapper, includes the barrel, and the upper cover lures the core, and the worm gauze mask, semi-net funnel and phosphor strip, the upper cover sets up in the barrel top, and the barrel side is equipped with the installation department, lures the core to insert and establishes in the upper cover, lures the core in the core to be located the barrel, and the lateral wall of barrel is equipped with multiseriate micropore, lures the lateral wall of core to be equipped with the thru hole, semi-net funnel sets up in the barrel below, and semi-net funnel top has the mesh, the worm gauze mask sets up above semi-net funnel and interval, and the worm gauze mask covers the mesh, the phosphor strip is located the barrel bottom and sets up in semi-net funnel, barrel bottom fret.
The following is the attached technical proposal of the utility model.
Preferably, the edge of the upper cover is provided with an extension part, and the extension part is formed by extending the upper cover to the outer side of the barrel body.
Preferably, the insect mask and the semi-net-shaped funnel are connected through a connecting assembly.
As the preferred scheme, coupling assembling includes connecting rod and connector, and the connector setting is on half netted funnel, and connecting rod one end is connected with the worm's mouth cover, and the other end is inserted and is established in the connector.
Preferably, the semi-mesh funnel is conical, the large-caliber end of the semi-mesh funnel is arranged at the bottom of the cylinder, and the small-caliber end of the semi-mesh funnel is positioned below the insect mask.
Preferably, the large-caliber end is provided with a socket, the end part of the fluorescent strip is provided with a connector, and the connector is inserted into the socket.
Preferably, the connecting head is conical.
Preferably, the fluorescent strip has a plurality of fluorescent strips.
Preferably, the number of the fluorescent strips is two, and the two fluorescent strips are arranged in a crossed manner.
As preferred scheme, lure the core portion including holding chamber and stopper, lure the core setting in holding the chamber, hold the chamber and be equipped with the hole all around, the stopper setting is in the opening that holds the chamber.
The technical effects of the utility model: all the components of the moth trap of the utility model can be disassembled, the operation is simple, and the moth trap is convenient to carry and transport; the trap integrates light induction and sexual induction, and can effectively increase the insect induction quantity; the trap is provided with the insect mask, which can effectively prevent the moths from escaping and effectively improve the insect-attracting effect.
Drawings
Fig. 1 is a schematic view of a moth trap according to an embodiment of the present invention.
Fig. 2 is a schematic view of a semi-mesh funnel according to an embodiment of the present invention.
Fig. 3 is a top view of a semi-mesh funnel in accordance with an embodiment of the present invention.
Fig. 4 is an enlarged view of a portion a in fig. 1 according to the present invention.
Fig. 5 is a schematic view of the installation of the phosphor strip according to the embodiment of the present invention.
Fig. 6 is a schematic view of a lure according to an embodiment of the present invention.
Detailed Description
The essential features and advantages of the invention will be further explained below with reference to examples, but the invention is not limited to the embodiments listed.
As shown in fig. 1 to 6, the moth trap of the present embodiment includes a cylinder 1, an upper cover 2, a lure part 3, an insect opening cover 4, a semi-net-shaped funnel 5 and a fluorescent strip 6, wherein the upper cover 2 is disposed above the cylinder 1 for closing the upper part of the cylinder 1. The side of barrel 1 is equipped with installation department 7 for fix barrel 1 in positions such as trees, wall, installation department 7 accessible screw, fixing device such as clamp are fixed. The core inducing part 3 is inserted in the upper cover 2, the inducing core in the core inducing part 3 is positioned in the cylinder body 1, the side wall 11 of the cylinder body 1 is provided with a plurality of rows of micropores, and the side wall of the core inducing part 3 is provided with a through hole 31. Lure core portion 3 to be used for placing and lure the core, and the pheromone that lures the core and give out can attract moth, through setting up thru hole 31, can make the pheromone that lures the core give off to barrel 1, through setting up multiseriate micropore, makes the pheromone can give off through the micropore along with the air current. The semi-mesh funnel 5 is arranged below the barrel body 1, and the top of the semi-mesh funnel 5 is provided with the mesh 50, so that the pheromone in the lure core is favorably concentrated and emitted, and the target moths are induced to fly into the semi-mesh funnel holes. Worm gauze mask 4 sets up 5 tops of half reticular funnel and interval setting, and worm gauze mask 4 covers mesh 50, has sufficient space between worm gauze mask and the half reticular funnel to be convenient for the moth to pursue the pheromone and fly into in the barrel, but because the flight path becomes complicated, the moth flies out the trapper degree of difficulty increase according to the original route, and the hindrance moth that can be fine escapes to can increase lures worm quantity. The fluorescent strip is located the barrel bottom and sets up in half netted funnel, barrel bottom fretwork. The fluorescent rod absorbs natural light in the daytime and emits light at night, and the moth can be attracted to fly to the periphery of the trap by utilizing the phototaxis characteristic of insects, so that the insect trapping effect is improved. Through the technical scheme, the moth trap can be detachably mounted, and is convenient to carry and transport; the lure is convenient to replace, the operation is simple and convenient, and the lure effect is good. In this embodiment, only the top end of the half-mesh funnel, which is about 5 cm from the small-caliber side, is provided with the mesh-shaped holes, and the rest of the half-mesh funnel is provided with no mesh-shaped holes, so that the pheromone in the lure core can be favorably concentrated and emitted, and the target moth 10 can be induced to fly into the half-mesh funnel hole.
In this embodiment, the edge of the upper cover 2 has an extension 21, and the extension 21 is formed by extending the upper cover 2 to the outside of the cylinder 1. Through above-mentioned technical scheme, after upper cover and barrel upper end concatenation installation, the barrel can be extended to the extension at upper cover edge, and the upper cover that extends can effectively prevent that the rainwater from getting into the barrel.
In this embodiment, be connected through coupling assembling between worm gauze mask 4 and the half netted funnel 5 to make things convenient for being connected between worm gauze mask 4 and the half netted funnel 5.
In this embodiment, coupling assembling includes connecting rod 7 and connector 8, and connector 8 sets up on half netted funnel 5, and connecting rod 7 one end is connected with worm's mouth cover 4, and the other end is inserted and is established in connector 8. Through the technical scheme, when the insect-shaped mask is installed, the insect-shaped mask can be positioned and installed only by inserting the connecting rod 7 into the connecting port 8.
In this embodiment, half netted funnel 5 is the toper, and the big aperture end 51 of half netted funnel 5 sets up in barrel 1 bottom, and the small aperture end 52 of half netted funnel is located worm gauze mask 4 below to be favorable to moth 10 to fly into half netted funnel 5 through the barrel bottom, and guide it to the flight of small aperture end, the multistage dotted line in fig. 1 is moth 10 flight path show.
In this embodiment, the large-caliber end 51 has a socket 9, and the end of the fluorescent strip 6 is provided with a connector 61, and the connector 61 is inserted into the socket 9. Through the technical scheme, two ends of the fluorescent strip 6 can be inserted into the inserting holes 9 and fixed at the large-caliber end 51.
In this embodiment, the connector 61 is tapered to facilitate insertion of the fluorescent strip 6 into the socket.
In this embodiment, there are a plurality of fluorescent strips 6, so as to enhance the light-inducing ability.
In this embodiment, the fluorescent strips 6 have two, and two fluorescent strips are alternately arranged, so that the light rays of the fluorescent strips 6 are dispersed more uniformly.
In this embodiment, the lure part 3 includes a containing cavity 31 and a plug 32, the lure part is disposed in the containing cavity 31, holes 311 are disposed around the containing cavity 31, and the plug 32 is disposed at an opening of the containing cavity 31. When the lure needs to be replaced, the plug 32 is opened by the grabbing handle 33, and then the plug 32 is covered after the lure is replaced.
All parts of the moth trap of this embodiment all demountable installation, it is easy and simple to handle, conveniently carry the transportation. The trap integrates light induction and sexual induction, and can effectively increase the quantity of the induced insects. The trap is provided with the insect mask, which can effectively prevent the moths from escaping and effectively improve the insect-attracting effect.
It should be noted that the above-mentioned preferred embodiments are only for illustrating the technical concepts and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and to implement the present invention accordingly, and the protection scope of the present invention cannot be limited thereby. All equivalent changes and modifications made according to the spirit of the present invention should be covered by the protection scope of the present invention.

Claims (9)

1. The utility model provides a moth trapper, its characterized in that, includes the barrel, and the upper cover lures the core, the worm gauze mask, semi-net shape funnel and phosphor strip, the upper cover sets up in the barrel top, and the barrel side is equipped with the installation department, lures the core to insert and establishes in the upper cover, lures the core in the core to be located the barrel, and the lateral wall of barrel is equipped with multiseriate micropore, lures the lateral wall of core to be equipped with the thru hole, semi-net shape funnel sets up in the barrel below, and semi-net shape funnel top has the mesh, the worm gauze mask sets up in semi-net shape funnel top and interval setting, and the worm gauze mask covers the mesh, the phosphor strip is located the barrel bottom and sets up in semi-.
2. A moth trap as claimed in claim 1, wherein the edge of the cover has an extension formed by the cover extending outwardly of the barrel.
3. The moth trap of claim 1 wherein the insect trap housing is connected to the semi-mesh funnel by a connection assembly.
4. A moth trap according to claim 3, wherein the connection assembly comprises a connection rod and a connection port, the connection port being provided on the semi-mesh funnel, the connection rod being connected at one end to the moth-eye shield and at the other end being inserted in the connection port.
5. The moth trap of claim 1 wherein the half-mesh funnel is conical, the large diameter end of the half-mesh funnel being disposed at the bottom of the barrel and the small diameter end of the half-mesh funnel being disposed below the moth-killing mask.
6. A moth trap according to claim 5, wherein the larger diameter end has a socket, and the end of the fluorescent strip is provided with a connector which is inserted into the socket.
7. The moth trap of claim 6, wherein the connector is tapered.
8. The moth trap of claim 7 wherein the fluorescent strip has a plurality of strips.
9. The moth trap of claim 1, wherein the lure comprises a receiving chamber and a plug, the lure is disposed in the receiving chamber, holes are disposed around the receiving chamber, and the plug is disposed in an opening portion of the receiving chamber.
CN202020870495.4U 2020-05-22 2020-05-22 Moth trapper Active CN212437011U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020870495.4U CN212437011U (en) 2020-05-22 2020-05-22 Moth trapper

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020870495.4U CN212437011U (en) 2020-05-22 2020-05-22 Moth trapper

Publications (1)

Publication Number Publication Date
CN212437011U true CN212437011U (en) 2021-02-02

Family

ID=74500897

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020870495.4U Active CN212437011U (en) 2020-05-22 2020-05-22 Moth trapper

Country Status (1)

Country Link
CN (1) CN212437011U (en)

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