A heating type remote intelligent sticky insect trap lamp
By designing a heated remote intelligent sticky insect trap lamp and using rubber belts and rubber scraping devices, the problems of high sticking paper and difficult glue application in the existing technology are solved, and automatic glue application, glue removal and pest recovery are achieved, saving materials and resources.
Patent Information
- Application Number
- CN201910869210.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-09-16
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2039-09-16
AI Technical Summary
Existing sticky insect trap lamps use disposable sticky paper, which leads to high manual use costs and high paper sticky costs, and insect traps are not easy to apply to the rubber belt.
A heating-type remote intelligent sticky insect trap lamp is designed, using rubber belt instead of sticky paper, equipped with rubber storage boxes and heating devices to realize automatic glue application and removal, and a rubber scraping device is installed on the lower part of the rubber belt to recover insect corpses.
The recycling of sticky paper is realized, saving materials; the heating device makes glue easy to apply; the glue scraping device is easy to recycle, reducing resource waste.
Smart Images

Figure CN110604110B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of insect catching devices, in particular to a heating type remote intelligent sticky insect catching lamp. Background Art
[0002] Insect traps are insect-killing devices that do not require any chemical insect-killing substances. They are developed using the habits of mosquitoes to move toward light, follow air currents, are sensitive to temperature, and like to gather in groups. Insect traps are mainly divided into three types: electronic insect traps, sticky insect traps, and airflow insect traps. Since sticky insect traps use built-in sticky paper to catch insects, they will not cause secondary pollution. At the same time, they are suitable for indoor use and are conducive to monitoring the types, quantities, and trends of insect pests. They have been increasingly widely used.
[0003] Most of the sticky insect traps on the market currently use disposable sticky paper to trap flies, mosquitoes and other insects. The disadvantage of this sticky method is that the labor cost and sticky paper cost are high in the later stage, resulting in unnecessary waste. Our company has a patent, patent number: 2014205523576, which includes an automatic gluing device that can realize automatic gluing and glue removal functions. Compared with the existing technology, there has been progress, but the patent still has shortcomings, such as the problem that the insect glue is not easy to apply to the gluing belt, so it is necessary to design a new type of insect trap. Summary of the invention
[0004] The purpose of the present invention is to solve the deficiencies of the prior art and to provide an intelligent sticky insect trap lamp which can automatically apply glue and remove glue and automatically collect information about pests.
[0005] In order to achieve the above-mentioned purpose, a heating-type remote intelligent sticky insect trap lamp is designed, comprising a gluing component, a glue scraping component 6, a gluing belt 4 and an ultraviolet lamp 13, characterized in that: a driving device is provided on one side of the gluing belt 4, a glue storage box 8 is provided on one side of the bottom of the gluing belt 4, a gluing shaft 10 and a heating device 9 are provided in the glue storage box 8, the gluing shaft 10 is fitted with the gluing belt 4, the driving device drives the gluing belt 4 and the gluing shaft 10 to rotate, a glue scraping component 6 is provided on the other side of the bottom of the gluing belt 4, and a recycling glue box 7 is provided at the bottom of the glue scraping component 6.
[0006] An ultraviolet lamp tube 13 is arranged above the glue belt 4, a camera and a fill light assembly 14 are arranged above the ultraviolet lamp tube 13, and a lamp tube lifting mechanism 12 is arranged on one side of the ultraviolet lamp tube 13 for unfolding the ultraviolet lamp tube 13 to both sides to expose the glue belt 4, and the camera and the fill light assembly 14 take pictures of insect pests.
[0007] The driving device includes a spindle motor 1, a spindle 3, a spindle transmission belt 2, a gluing shaft 10, a gluing shaft gear 16 and a spindle transmission gear 15. The spindle motor 1 rotates, driving the spindle transmission belt 2 to rotate, the spindle transmission belt 2 drives the spindle 3 to rotate, the spindle 3 drives the spindle transmission gear 15, the spindle transmission gear 15 is meshed with the gluing shaft gear 16, the gluing shaft gear 16 drives the gluing shaft 10 to rotate, and the gluing shaft 10 drives the gluing belt 4 to rotate.
[0008] The scraper assembly 6 is provided with a convex piece, which contacts the bottom of the glue belt 4 .
[0009] A glue bottle 18 is provided at one side of the glue-applying shaft 10 , and a glue bottle opening is provided at the bottom of the glue bottle 18 , and the glue bottle opening and the glue in the glue storage box 8 are at the same level.
[0010] Compared with the prior art, the present invention has the following advantages:
[0011] 1. The adhesive belt replaces the original insect sticky paper, which can be recycled to save materials.
[0012] 2. A heating device is installed in the glue storage box, so that the heated glue can be easily applied to the glue belt.
[0013] 3. A scraper device is provided at the bottom of the upper rubber belt, which can easily scrape the dead insects on the upper rubber belt into the recycling rubber box.
[0014] 4. A glue bottle is set on one side of the glue-applying shaft, which continuously provides glue to the glue storage box. When in use, only the glue storage box, which is much smaller than the glue bottle, needs to be heated, and all the glue does not need to be heated, thus saving a lot of resources.
[0015] 5. The transparent glue bottle design makes it easy to observe the glue content inside and add glue. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0017] Figure 2 It is the front view of the present invention;
[0018] Figure 3 It is a right side view of the present invention;
[0019] Figure 4 It is a detailed view of the scraper assembly of the present invention;
[0020] Figure 5 It is a detailed diagram of the gluing shaft part of the present invention;
[0021] Figure 6 It is a detailed view of part A of the present invention;
[0022] In the figure: 1. Spindle motor 2. Spindle drive belt 3. Spindle 4. Gluing belt 5. Sub-shaft 6. Glue scraping assembly 7. Glue recovery box 8. Glue storage box 9. Heating device 10. Gluing shaft 11. Lamp lifting mechanism motor 12. Lamp lifting mechanism 13. Ultraviolet lamp 14. Camera and fill light assembly 15. Spindle drive gear 16. Gluing shaft gear 17. Control system assembly 18. Glue bottle. DETAILED DESCRIPTION
[0023] The technical solution is further explained in conjunction with the accompanying drawings.
[0024] Example 1: See Figure 1-Figure 6
[0025] The invention comprises a gluing component, a gluing scraping component 6, a gluing belt 4 and an ultraviolet lamp 13. A driving device is arranged on one side of the gluing belt 4. A glue storage box 8 and a heating device 9 are arranged on one side of the bottom of the gluing belt 4. A gluing scraping component 6 is arranged on the other side of the bottom of the gluing belt 4. A glue recovery box 7 is arranged on the bottom of the gluing scraping component 6. An ultraviolet lamp 13 is arranged above the gluing belt 4. A camera and a fill light component 14 are arranged above the ultraviolet lamp 13. A lamp lifting mechanism 12 is arranged on one side of the ultraviolet lamp 13 for unfolding the ultraviolet lamp 13 to both sides to expose the gluing belt 4. The camera and the fill light component 14 take pictures of insect pests. The driving device includes a spindle motor 1, a spindle 3, a spindle transmission belt 2, a gluing shaft 10 and a spindle transmission gear 15. The spindle motor 1 rotates, driving the spindle transmission belt 2 to rotate, the spindle transmission belt 2 drives the spindle 3 to rotate, the spindle 3 drives the spindle transmission gear 15, the spindle transmission gear 15 drives the gluing shaft 10 to rotate, the gluing shaft 10 drives the gluing belt 4 to rotate, a convex piece is provided on the scraping assembly 6, the convex piece contacts the bottom of the gluing belt 4, a glue bottle 18 is provided on one side of the gluing shaft 10, and a glue bottle mouth is provided at the bottom of the glue bottle 18, and the glue bottle mouth and the glue in the glue storage box 8 are at the same level.
[0026] Example 2: See Figure 1 and Figure 2
[0027] When the insect lamp is plugged into the power supply, the control system component starts to instruct the heating device to start heating the glue in the glue storage box, and starts to start the spindle motor according to the set dissolution time. The spindle motor drives the spindle transmission belt and then links the spindle. The spindle starts to link the transmission gear to roll the heated glue in the glue storage box onto the glue belt through the glue box and the glue belt assembly. When the glue belt is rolled with the set length of glue, the spindle motor stops working and the ultraviolet lamp starts to catch insects. When the control system component starts to instruct the heating device to heat the glue in the glue storage box, the spindle motor starts to start, and the glue belt starts to move toward the glue scraping component. Then the lamp lifting mechanism starts to move. After the lamp is spread out to both sides, the camera and fill light component start taking pictures, and transmit the pictures to the server through the 4G module for statistics and analysis of the types and quantities of pests. When the glue belt with insects stuck on it passes through the glue scraping component, the insect corpses will be shoveled into the recycling glue box. At the same time, the glue in the glue storage box that has been heated will be rolled onto the glue belt by the glue shaft and the glue belt component, and this cycle will be repeated regularly.
[0028] Example 3: See Figure 1
[0029] By utilizing atmospheric pressure, when the glue bottle is installed, the hot melt glue will flow into the glue storage box through the glue bottle mouth until the glue in the glue storage box and the glue bottle mouth are at the same plane and then stop. When the glue in the glue storage box is applied to the glue belt through the glue shaft to consume part of the glue, the glue in the glue bottle will flow into the glue storage box through the glue bottle mouth until the glue in the glue storage box and the glue bottle mouth are at the same level. In this way, the cycle can be repeated. According to the pressure, it can be ensured that the glue automatically flows from the glue bottle into the glue storage box and a fixed amount of glue is kept in the glue storage box.
Claims
1. A heating type remote intelligent sticky insect trap lamp, comprising a glue-applying component, a glue-scraping component, a glue-applying belt and an ultraviolet lamp tube, characterized in that: The adhesive belt is provided with a driving device on one side, and a adhesive storage box is provided on one side of the bottom of the adhesive belt. A adhesive shaft and a heating device are provided in the adhesive storage box. The adhesive shaft is in contact with the adhesive belt, and the driving device drives the adhesive belt and the adhesive shaft to rotate. A glue scraping assembly is provided on the other side of the bottom of the adhesive belt, and a glue recovery box is provided at the bottom of the glue scraping assembly. A glue bottle is provided on one side of the adhesive shaft, and a glue bottle opening is provided at the bottom of the glue bottle. The glue bottle opening and the glue in the adhesive storage box are at the same horizontal plane. By utilizing atmospheric pressure, when the adhesive bottle is installed, hot melt adhesive will flow into the adhesive storage box through the glue bottle opening until the adhesive in the adhesive storage box and the glue bottle opening are at the same plane and then stop. When the adhesive in the adhesive storage box is applied to the adhesive belt by the adhesive shaft to consume a part of the adhesive, the adhesive in the glue bottle will flow into the adhesive storage box through the glue bottle opening until the adhesive in the adhesive storage box and the glue bottle opening are at the same level. In this way, the cycle is carried out, and the pressure can ensure that the glue automatically flows from the glue bottle into the adhesive storage box, and the adhesive storage box is kept with a fixed amount of glue. The driving device includes a spindle motor, a spindle, a spindle transmission belt, a gluing shaft, a gluing shaft gear and a spindle transmission gear. The spindle motor rotates, driving the spindle transmission belt to rotate, the spindle transmission belt drives the spindle to rotate, the spindle drives the spindle transmission gear, the spindle transmission gear is meshed with the gluing shaft gear, the gluing shaft gear drives the gluing shaft to rotate, and the gluing shaft drives the gluing belt to rotate.
2. A heating type remote intelligent sticky insect trap lamp as claimed in claim 1, characterized in that: An ultraviolet lamp is arranged above the adhesive belt, a camera and a fill light assembly are arranged above the ultraviolet lamp, a lamp lifting mechanism is arranged on one side of the ultraviolet lamp for unfolding the ultraviolet lamp to both sides to expose the adhesive belt, and the camera and the fill light assembly take pictures of insect pests.
3. A heating type remote intelligent sticky insect trap lamp as claimed in claim 1, characterized in that: The scraper assembly is provided with a convex piece, which contacts the bottom of the glue belt.
Citation Information
Patent Citations
Automatic gluing and glue removing insect catching device with heating function
CN110180737A
Heating type remote intelligent sticky trap type insect trap lamp
CN211020657U
Automatic gluing insect-trapping apparatus
WO2016045004A1