CN114128687B - Monitoring facilities of tea garden insect - Google Patents

Monitoring facilities of tea garden insect Download PDF

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Publication number
CN114128687B
CN114128687B CN202111371193.8A CN202111371193A CN114128687B CN 114128687 B CN114128687 B CN 114128687B CN 202111371193 A CN202111371193 A CN 202111371193A CN 114128687 B CN114128687 B CN 114128687B
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China
Prior art keywords
rod
barrel
gear
tea garden
butt
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CN202111371193.8A
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CN114128687A (en
Inventor
孙钦玉
张家侠
叶涛
陈伟立
牛婷婷
丁勇
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Tea Research Institute Anhui Academy of Agricultural Sciences
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Tea Research Institute Anhui Academy of Agricultural Sciences
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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
    • A01M1/026Stationary means for catching or killing insects with devices or substances, e.g. food, pheronones attracting the insects combined with devices for monitoring insect presence, e.g. termites

Abstract

The invention relates to the technical field of tea garden insect monitoring, and discloses tea garden insect monitoring equipment which comprises a cylinder body, a cylinder cover matched with the cylinder body, two label boxes oppositely arranged on the cylinder body and a locking mechanism, wherein the locking mechanism comprises two butt-joint blocks, and the two butt-joint blocks are respectively fixed on one sides, close to the cylinder body, of the two label boxes. A hollow cavity is formed in a block body of each butt joint block, a first gear is arranged in the hollow cavity, a worm wheel which moves synchronously with the first gear is coaxially arranged on a wheel shaft of the first gear, a worm which is parallel to the axis direction of the cylinder body and matched with the worm wheel is arranged in the hollow cavity, and a second gear is arranged at one end, far away from the worm wheel, of the worm. Through add locking mechanical system between barrel and label box, not only make things convenient for the dismouting of label box on the barrel, still can accomplish the installation of cover on the barrel fixed in step, still can make the connection between label box, cover and barrel more firm simultaneously, convenient and fast, safe and reliable.

Description

Monitoring facilities of tea garden insect
Technical Field
The invention relates to the technical field of tea garden insect monitoring, in particular to a tea garden insect monitoring device.
Background
Over 1000 kinds of pests in tea gardens have been reported all over the world, and more than 840 kinds of pests of tea trees have been recorded in China. Tea tree pests also have natural enemies, and the natural enemies of tea gardens in China are more than 1100. The research on insects in the tea garden is beneficial to the high-quality and high-quality tea. At present, insects in a tea garden are used as research objects in many laboratories, indoor toxicity determination and field drug resistance monitoring are carried out on pests in the tea garden, and the insects are effectively used as pharmacological bases for preventing and controlling the pests; the natural enemy insects of the pests are also researched for certain physiological characteristics, so that the natural enemy is utilized to control the pests in the tea garden, the use of chemical pesticides is reduced, and the method has important guiding significance for protecting the ecological environment and green production of the industry.
In the process of gathering insects, because the larva of many kinds crawls the ability reinforce, easily crawls and flees, mostly adopts a feeder cylinder to receive and put the collection. Each feeding cylinder is provided with a label box, and an information label card marked with tea aphids collected at the time is placed in the label box, so that monitoring and recording of tea garden insects are facilitated.
Monitoring facilities among the prior art, the label box on it is mostly integrated into one piece setting on raising a section of thick bamboo, is not convenient for carry out the dismouting according to the user demand of reality, and partial label box adopts the mounting screw on raising a section of thick bamboo, and the dismouting is wasted time and energy, and the use of person of not being convenient for has gradually can't satisfy people to the user demand of raising a section of thick bamboo.
Disclosure of Invention
The invention provides a monitoring device for tea garden insects, which aims to solve the technical problem that a label box of a feeding barrel on the monitoring device in the prior art is inconvenient to disassemble and assemble.
The invention is realized by adopting the following technical scheme: a tea garden insect monitoring device comprises a cylinder body, a cylinder cover matched with the cylinder body, two label boxes oppositely arranged on the cylinder body and a locking mechanism, wherein the locking mechanism comprises two butt joint blocks which are respectively fixed on one sides, close to the cylinder body, of the two label boxes;
a hollow cavity is arranged in the block body of each butt joint block, a first gear is arranged in the hollow cavity, a worm wheel which moves synchronously with the first gear is coaxially arranged on a wheel shaft of the first gear, a worm which is parallel to the axial direction of the cylinder body and is matched with the worm wheel is arranged in the hollow cavity, and a second gear is arranged at one end of the worm, which is far away from the worm wheel; a sleeve parallel to the worm is rotatably inserted into the top of the butt joint block; one end of the sleeve extends into the hollow cavity and is fixed with a gear III which is meshed with the gear II; a screw rod is inserted into the other end of the sleeve in a threaded manner, a fixed plate is arranged at one end, away from the sleeve, of the screw rod, a first telescopic rod is arranged between the butt joint block and the fixed plate, a positioning rod parallel to the screw rod is arranged at one side, away from the screw rod, of the fixed plate, and a first positioning hole in locking fit with the positioning rod is formed in the barrel cover;
an insertion rod I is horizontally inserted into the butt joint block, a rack matched with the gear I is axially arranged on the outer wall of a rod body of the insertion rod I, and a clamping hole I matched with the insertion rod I in a clamping mode is formed in the outer side wall of the barrel.
As a further improvement of the scheme, a cross arm is arranged in the hollow cavity, and the middle of a rod body of the worm is rotatably inserted in the cross arm.
As a further improvement of the scheme, two opposite through holes for the insertion rod to pass through are formed in two sides of the butt joint block.
As a further improvement of the scheme, the positioning rod is connected with the first positioning hole in a clamping fit mode.
As a further improvement of the above scheme, the positioning rod is inserted into and matched with the first positioning hole; the end part, far away from the fixing plate, of the positioning rod penetrates through the first positioning hole and is located above the fixing plate.
As a further improvement of the above scheme, a first sliding groove is radially formed in the top of the cylinder cover, two first sliding blocks are oppositely arranged in the first sliding groove, the two first sliding blocks are elastically connected, a locking rod parallel to the first insertion rod is arranged on one side, away from the first sliding blocks, of each first sliding block, and a second clamping hole for allowing the end portion of the locking rod to penetrate through is formed in each positioning rod.
As a further improvement of the scheme, a second telescopic rod is arranged between the first two sliding blocks, and a first spring is sleeved on the outer side of the second telescopic rod.
As a further improvement of the above scheme, the ends, close to each other, of the tops of the two sliding blocks are respectively provided with an inclined table, and the sides, away from each other, of the two inclined tables are respectively provided with inclined planes with opposite inclined directions; the inclined plane inclines upwards from one side of the inclined platform far away from the second telescopic rod to one side of the inclined platform close to the second telescopic rod; every be provided with the stopper on the inclined plane, two the top of slider one is provided with two the chute of sloping platform looks adaptation, the cell wall both sides of chute seted up relatively with stopper slip joint complex spacing groove.
As a further improvement of the above scheme, a supporting plate for supporting the butt-joint block and the label box is arranged on the side wall of the barrel, a pull rod parallel to the sleeve is inserted into the plate body of the supporting plate, and a second positioning hole which is communicated with the hollow cavity and is used for the pull rod to pass through is formed in the bottom of the butt-joint block.
As a further improvement of the above scheme, a second sliding groove is formed in the plate body of the supporting plate, a second sliding block is connected to the second sliding groove in a sliding manner, one end of the pull rod fixedly penetrates through the second sliding block and penetrates out of the outer side of the bottom of the supporting plate to be connected with a lapping block, and a second spring is sleeved on the outer side of the pull rod between the bottom of the second sliding block and the wall of the second sliding groove; and a limiting hole matched with the end part of the other end of the pull rod in a clamping manner is formed in the first inserted rod.
The beneficial effects of the invention are as follows:
according to the monitoring equipment for the tea garden insects, the locking mechanism is additionally arranged between the barrel body and the label box, so that the label box is conveniently disassembled and assembled on the barrel body, the barrel cover can be synchronously installed and fixed on the barrel body, and the label box, the barrel cover and the barrel body can be connected more stably, conveniently, quickly, safely and reliably.
Drawings
Fig. 1 is a schematic structural diagram of a monitoring device for tea garden insects provided in embodiment 1 of the present invention;
FIG. 2 is a schematic cross-sectional view of the tea garden insect monitoring apparatus of FIG. 1;
FIG. 3 is an enlarged schematic view of the structure at A in FIG. 2;
FIG. 4 is a schematic cross-sectional view of the docking block and pallet of FIG. 2;
FIG. 5 is a schematic structural diagram of a monitoring device for tea garden insects provided in embodiment 2 of the present invention;
FIG. 6 is a schematic cross-sectional view of the tea garden insect monitoring apparatus of FIG. 5;
fig. 7 is a schematic cross-sectional structure view of the docking block and the pallet in fig. 6.
Description of the main symbols:
1. a barrel; 2. a barrel cover; 3. a label box; 4. a butt joint block; 5. inserting a first rod; 6. a first gear; 7. a worm gear; 8. a cross arm; 9. a worm; 10. a second gear; 11. a sleeve; 12. a third gear; 13. a fixing plate; 14. a first telescopic rod; 15. a first positioning hole; 16. a first sliding chute; 17. a first sliding block; 18. a second telescopic rod; 19. a first spring; 20. a locking lever; 21. a sloping platform; 22. a chute; 23. a limiting block; 24. a limiting groove; 25. positioning a rod; 26. a pallet; 27. a second chute; 28. a second sliding block; 29. a screw; 30. a pull rod; 31. a second spring; 32. building blocks; 33. a second positioning hole; 34. a limiting hole; 35. a rack.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Example 1
Referring to fig. 1 to 4, the monitoring device for tea garden insects includes a barrel 1, a barrel cover 2 adapted to the barrel 1, two label boxes 3 oppositely disposed on the barrel 1, and a locking mechanism, wherein the locking mechanism includes two butt-joint blocks 4, and the two butt-joint blocks 4 are respectively fixed on one sides of the two label boxes 3 close to the barrel 1.
In this embodiment, the cross-section of the cylinder body 1 and the cylinder cover 2 are circular, one end of the cylinder body is closed, and the other end of the cylinder body is provided with an opening (not shown) for receiving insects in a tea garden. An inlet (not shown) for the tea garden insects to be thrown into is reserved on the cylinder cover 2, and a detachable baffle (not shown) is installed on the inlet, so that the thrown tea garden insects are prevented from running out of the cylinder body 1 from the inlet. A plurality of air holes (not marked) are uniformly arranged on the wall of the cylinder body 1 so as to provide oxygen for the tea garden insects to breathe in the cylinder body 1.
The hollow cavity (not marked) is arranged in the block body of each butt joint block 4, a first gear 6 is arranged in the hollow cavity, a worm wheel 7 which moves synchronously with the first gear 6 is coaxially arranged on a wheel shaft of the first gear 6, the first gear 6 and the worm wheel 7 are inserted and fixed on a rotating shaft (not marked) together, and the rotating shaft is rotated and inserted on the cavity wall of the hollow cavity. A worm 9 which is parallel to the axis direction of the cylinder 1 and is matched with the worm wheel 7 is arranged in the hollow cavity, and a second gear 10 is arranged at one end, far away from the worm wheel 7, of the worm 9. A sleeve 11 parallel to the worm 9 is inserted on the top of the butt-joint block 4 in a rotating way. One end of the sleeve 11 extends into the hollow cavity and is fixed with a gear three 12 which is meshed with the gear two 10. A screw 29 is inserted into the other end of the sleeve 11 through threads, a fixing plate 13 is arranged at one end of the screw 29 far away from the sleeve 11, a first telescopic rod 14 is arranged between the abutting block 4 and the fixing plate 13, the screw 29 can be limited to rotate under the driving of the sleeve 11 through the first telescopic rod 14, and the screw 29 is kept to move in the axial direction thereof, namely, the screw extends out or retracts relative to the sleeve 11, so that the fixing plate 13 is kept to move in the axial direction of the screw 29.
A positioning rod 25 parallel to the screw 29 is arranged on one side of the fixing plate 13 away from the screw 29, and a first positioning hole 15 matched with the positioning rod 25 in a locking manner is formed in the barrel cover 2. The installation and the positioning of the cylinder cover 2 on the cylinder body 1 can be facilitated through the positioning rod 25 and the positioning hole I15.
An inserting rod I5 is horizontally inserted into the butt joint block 4, a rack 35 matched with a gear I6 is axially arranged on the outer wall of a rod body of the inserting rod I5, and a clamping hole I (not marked) matched with the inserting rod I5 in a clamping mode is formed in the outer side wall of the barrel body 1. Through the inserted bar 5 that will have the rack 35 additional pushing into the card hole one of barrel 1, not only realize the installation between label box 3 and barrel 1 on the butt joint piece 4 fixed, rack 35 can drive gear 6 and rotate at this in-process, realizes stretching out of locating lever 25 indirectly.
A cross arm 8 is arranged in the hollow cavity, and the middle of the rod body of the worm 9 is rotatably inserted on the cross arm 8.
Two opposite through holes (not marked) for the insertion rod I5 to pass through are formed on two sides of the butt joint block 4.
The positioning rod 25 is connected with the first positioning hole 15 in a clamping fit mode, when the positioning rod 25 is clamped into the first positioning hole 15, the label box 3 is fixed, the barrel cover 2 can be installed and fixed on the barrel body 1 synchronously, and the operation is convenient and fast.
To sum up, when the cover 2 and the label box 3 need to be assembled on the barrel 1, the butt-joint block 4 on the label box 3 can be firstly attached to the side wall of the barrel 1, and the first insertion rod 5 attached with the rack 35 is inserted through the through hole of the butt-joint block 4 to be clamped into the first clamping hole on the barrel 1, so that the label box 3 attached with the butt-joint block 4 can be fixedly installed. During the insertion of the first inserting rod 5, the rack 35 on the first inserting rod drives the first gear 6 to rotate, so that the first gear 6 drives the worm 9, the second gear 10, the third gear 12 and the sleeve 11 to rotate synchronously through the worm wheel 7, the sleeve 11 and the screw 29 are in mutual threaded action, and under the limiting action between the fixing plate 13 and the first telescopic rod 14, the screw 29 extends out of the sleeve 11 to push the positioning rod 25 to protrude upwards through the fixing plate 13 and out of the opening of the barrel 1. The positioning hole I15 on the cylinder cover 2 is aligned with the positioning rod 25 and pressed down to the opening of the sealed cylinder body 1, so that the cylinder cover 2 is clamped and fixed on the cylinder body 1, the installation and fixation of the cylinder cover 2 and the label box 3 on the cylinder body 1 are synchronously completed, and the device is convenient, rapid, safe and reliable.
In this embodiment, the positioning rod 25 and the first positioning hole 15 can be inserted and connected in a matching manner. The end part of the positioning rod 25 far away from the fixing plate 13 penetrates through the first positioning hole 15 and is positioned above the fixing plate 13.
The top of the cylinder cover 2 is radially provided with a first sliding groove 16, two first sliding blocks 17 are oppositely arranged in the first sliding groove 16, the two first sliding blocks 17 are elastically connected, one sides, away from each other, of the two first sliding blocks 17 are respectively provided with a locking rod 20 parallel to the first inserted rod 5, and two positioning rods 25 are respectively provided with a second clamping hole (not shown) for the end part of the locking rod 20 to penetrate through. The locking rod 20 is clamped into the second clamping hole of the positioning rod 25, so that the movement of the positioning rod 25 can be blocked, and the barrel cover 2 is fixed on the barrel body 1.
A second telescopic rod 18 is arranged between the first two sliding blocks 17, and a first spring 19 is sleeved on the outer side of the second telescopic rod 18. When the first spring 19 is not deformed, the distance between the two separated ends of the locking rods 20 is larger than the distance between the two positioning holes 15.
The ends, close to each other, of the tops of the two first sliding blocks 17 are provided with inclined platforms 21, and the sides, away from each other, of the two inclined platforms 21 are respectively provided with inclined planes (not marked) with opposite inclined directions. The inclined plane inclines upwards from one side of the inclined platform 21 far away from the second telescopic rod 18 to one side of the inclined platform 21 close to the second telescopic rod 18. A limiting block 23 is arranged on each inclined surface, a chute 22 matched with the two inclined tables 21 is arranged above the two first sliding blocks 17, and limiting grooves 24 matched with the limiting blocks 23 in a sliding clamping mode are oppositely formed in two sides of the wall of the chute 22.
In this embodiment, the sloping platform 21 is a right trapezoid structure, the right-angle sides of the two right trapezoids are opposite, the sloping sides are separated, and the bottom side is fixedly connected with the top of the respective first sliding block 17. When the two inclined platforms 21 are in close contact with each other, an isosceles trapezoid can be formed. The bottom of the chute 22 has a notch which is concave towards the inner side and has an isosceles trapezoid structure. The two stoppers 23 are forced to slide obliquely upward in the respective stopper grooves 24 by pressing the inclined grooves 22 downward, so as to bring the two inclined stages 21 closer to each other.
The side wall of the barrel body 1 is provided with a supporting plate 26 for supporting the butt joint block 4 and the label box 3, a pull rod 30 parallel to the sleeve 11 is inserted into the plate body of the supporting plate 26, and the bottom of the butt joint block 4 is provided with a second positioning hole 33 which is communicated with the hollow cavity and through which the pull rod 30 passes. The pull rod 30 on the supporting plate 26 can be used for conveniently positioning and supporting the connecting block 4 when the connecting block is installed on the cylinder body 1.
In summary, when the cover 2 and the label box 3 need to be assembled on the barrel 1, the butt-joint block 4 on the label box 3 can be firstly attached to the side wall of the barrel 1, the second positioning hole 33 at the bottom of the butt-joint block 4 is aligned with the pull rod 30 and inserted until contacting with the top of the supporting plate 26 for positioning, the first insertion rod 5 attached with the rack 35 is inserted through the through hole of the butt-joint block 4 to be clamped into the first clamping hole on the barrel 1, and the label box 3 attached with the butt-joint block 4 is installed and fixed.
During the insertion of the first inserting rod 5, the rack 35 on the first inserting rod drives the first gear 6 to rotate, so that the first gear 6 drives the worm 9, the second gear 10, the third gear 12 and the sleeve 11 to rotate synchronously through the worm wheel 7, the sleeve 11 and the screw 29 are in mutual threaded action, and under the limiting action between the fixing plate 13 and the first telescopic rod 14, the screw 29 extends out of the sleeve 11 to push the positioning rod 25 to protrude upwards through the fixing plate 13 and out of the opening of the barrel 1. The first positioning hole 15 on the cylinder cover 2 is aligned with the opening of the positioning rod 25, and the inclined groove 22 is pressed downwards at the same time, so that the two limiting blocks 23 are forced to slide obliquely upwards in the respective limiting grooves 24 to drive the two inclined platforms 21 to approach each other, and the two inclined platforms 21 drive the respective sliding blocks 17 to approach each other in the first sliding grooves 16 and compress the first springs 19 to drive the two locking rods 20 to approach each other. And downwards pressing the cylinder cover 2 to enable the positioning rod 25 to penetrate through the positioning hole I15, loosening the chute 22, releasing the elastic force of the spring I19, pushing the two sliding blocks I17 to return to the initial positions in the chute I16, enabling the two locking rods 20 to be mutually separated to the initial positions, enabling the two locking rods 20 to be respectively clamped into the clamping holes II of the two positioning rods 25, blocking the movement of the positioning rods 25, and completing the further fixing of the cylinder cover 2 on the cylinder body 1.
Example 2
Referring to fig. 5 to 7, in this embodiment 2, a second sliding slot 27 is formed in a plate body of the supporting plate 26, a second sliding block 28 is slidably connected in the second sliding slot 27, one end of the pull rod 30 fixedly penetrates through the second sliding block 28 and penetrates out of the outer side of the bottom of the supporting plate 26 to be connected with a second overlapping block 32, and a second spring 31 is sleeved on the outer side of the pull rod 30 between the bottom of the second sliding block 28 and the wall of the second sliding slot 27. And a limiting hole 34 which is matched with the end part of the other end of the pull rod 30 in a clamping manner is formed in the inserted rod I5.
Before the butt joint block 4 is inserted into the pull rod 30 aligned to the supporting plate 26, the pull rod 30 is pulled downwards through the lapping block 32, the pull rod 30 drives the second sliding block 28 and compresses the second spring 31, the pull rod 30 prevents the subsequent insertion of the first inserted link 5, after the insertion of the first inserted link is completed, the lapping block 32 is loosened, the elastic force of the second spring 31 is released and returns to the initial position in the second sliding groove 27 through pushing the second sliding block 28, the second sliding block 28 drives the pull rod 30 to move upwards, the top of the pull rod 30 enters the limiting hole 34 of the first inserted link 5, the first inserted link 5 is further locked and fixed, and the tag box 3 is more stably installed on the barrel 1.
The present invention is not limited to the above preferred embodiments, and any modifications, equivalent substitutions and improvements made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. The monitoring equipment for the tea garden insects is characterized by comprising a barrel, a barrel cover matched with the barrel, two label boxes oppositely arranged on the barrel and a locking mechanism, wherein the locking mechanism comprises two butt-joint blocks which are respectively fixed on one sides, close to the barrel, of the two label boxes;
a hollow cavity is arranged in the block body of each butt-joint block, a first gear is arranged in the hollow cavity, a worm wheel which moves synchronously with the first gear is coaxially arranged on a wheel shaft of the first gear, a worm which is parallel to the axial direction of the cylinder body and is matched with the worm wheel is arranged in the hollow cavity, and a second gear is arranged at one end of the worm, which is far away from the worm wheel; a sleeve parallel to the worm is rotatably inserted into the top of the butt joint block; one end of the sleeve extends into the hollow cavity and is fixed with a gear III which is meshed with the gear II; a screw rod is inserted into the other end of the sleeve in a threaded manner, a fixing plate is arranged at one end, away from the sleeve, of the screw rod, a first telescopic rod is arranged between the butting block and the fixing plate, a positioning rod parallel to the screw rod is arranged at one side, away from the screw rod, of the fixing plate, and a first positioning hole in locking fit with the positioning rod is formed in the barrel cover;
an insertion rod I is horizontally inserted into the butt joint block, a rack matched with the gear I is axially arranged on the outer wall of a rod body of the insertion rod I, and a clamping hole I matched with the insertion rod I in a clamping mode is formed in the outer side wall of the barrel.
2. The tea garden insect monitoring device of claim 1, wherein a cross arm is disposed in the hollow chamber, and a middle portion of a rod body of the worm is rotatably inserted into the cross arm.
3. The tea garden insect monitoring device as claimed in claim 1, wherein two opposite sides of the butt-joint block are provided with two through holes for the insertion rod to pass through.
4. The tea garden insect monitoring device of claim 1, wherein the positioning rod is in snap fit connection with the first positioning hole.
5. The tea garden insect monitoring device as claimed in claim 1, wherein the positioning rod is inserted into and connected with the first positioning hole in a matching manner; the end part, far away from the fixing plate, of the positioning rod penetrates through the first positioning hole and is located above the fixing plate.
6. The tea garden insect monitoring device as claimed in claim 5, wherein a first sliding groove is radially formed in the top of the cylinder cover, two first sliding blocks are oppositely arranged in the first sliding groove, the two first sliding blocks are elastically connected, locking rods parallel to the first insertion rods are arranged on the sides, away from each other, of the two first sliding blocks, and a second clamping hole for allowing the end portions of the locking rods to penetrate through is formed in each of the two positioning rods.
7. The monitoring device for the insects in the tea garden as claimed in claim 6, wherein a second telescopic rod is arranged between the first sliding blocks, and a first spring is sleeved outside the second telescopic rod.
8. The tea garden insect monitoring device as claimed in claim 7, wherein the ends of the two sliding blocks, which are close to each other at the tops, are provided with inclined platforms, and the sides of the two inclined platforms, which are away from each other, are respectively provided with inclined planes with opposite inclined directions; the inclined plane inclines upwards from one side of the inclined platform far away from the second telescopic rod to one side of the inclined platform close to the second telescopic rod; every be provided with the stopper on the inclined plane, two the top of slider one is provided with two the chute of sloping platform looks adaptation, the cell wall both sides of chute seted up relatively with stopper slip joint complex spacing groove.
9. The tea garden insect monitoring device as claimed in claim 8, wherein a supporting plate for supporting the butt-joint block and the label box is arranged on the side wall of the barrel, a pull rod parallel to the sleeve is inserted on a plate body of the supporting plate, and a second positioning hole through which the pull rod passes is formed in the bottom of the butt-joint block and is communicated with the hollow cavity.
10. The tea garden insect monitoring device as claimed in claim 9, wherein a second sliding groove is formed in a plate body of the supporting plate, a second sliding block is slidably connected in the second sliding groove, one end of the pull rod fixedly penetrates through the second sliding block and penetrates out of the outer side of the bottom of the supporting plate to be connected with a lapping block, and a second spring is sleeved on the outer side of the pull rod between the bottom of the second sliding block and the wall of the second sliding groove; and a limiting hole matched with the end part of the other end of the pull rod in a clamping manner is formed in the first inserted rod.
CN202111371193.8A 2021-11-18 2021-11-18 Monitoring facilities of tea garden insect Active CN114128687B (en)

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