Winged insect prevention mechanism for pepper planting frame
By designing anti-fly insect mechanisms and step-shaped planting troughs on the pepper planting rack, the problems of small planting volume and flying insect pollution are solved, and the effects of multi-layer planting, sufficient lighting and automatic watering are achieved.
Patent Information
- Application Number
- CN202422349618.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-26
AI Technical Summary
The existing pepper planting rack has a small amount of planting, and the upper cultivation board will block the lower pepper, which has poor planting effect and lacks anti-fly insect structures, which leads to flying insects contaminating the indoor environment.
A flying insect prevention mechanism including a support seat, an insect-proof net and a connecting net is designed. A water pump and a spray system are provided in the support seat. The closed mesh cover is formed through the insect-proof net and the connecting net. The spray system replenishes the water for the peppers to prevent the flying insects from flying out. At the same time, the planting troughs are arranged in a stepped shape to avoid blocking the sunlight.
Multi-layer planting is achieved to prevent flying insects from contamination, ensure that the peppers are fully received by light, automatic watering promotes growth, and improves planting efficiency and effect.
Smart Images

Figure CN223195199U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of pepper planting, in particular to a flying insect prevention mechanism for a pepper planting frame. Background Art
[0002] In order to eat pollution-free peppers, residents choose to grow their own peppers indoors. However, since the soil for growing peppers is moist, it is easy to breed flying insects such as moths and midges, which pollute the living environment of residents and interfere with their normal lives. Therefore, an anti-flying insect mechanism is needed to intercept the flying insects that breed during the pepper planting process.
[0003] Among them, after searching, it was found that there is an application number CN202123441405.3, which discloses an indoor cultivation rack for pepper cultivation, including a frame body, the left and right inner walls of the frame body are respectively fixedly connected to the left and right side surfaces of the two cultivation plates, and the frame body is connected to the cultivation trough by setting a telescopic rod, a placement plate, a support rod and a surrounding plate, and a connecting plate, a connecting rod, a sliding plate, a fixed rod and a sliding sleeve are set to further connect the surrounding plate and the placement plate, and a pull rod and a pull plate are connected to the connecting plate. When using the device to cultivate peppers, the user can place the culture soil and pepper seeds on the placement plate between the two surrounding plates for cultivation, and transplant the peppers. When transplanting peppers, the user can pull the pulling plate upwards to drive the placing plate to move upwards through the pulling rod and the connecting plate. When the connecting plate moves upwards, the two sliding plates are pushed away from each other through the connecting rod. When the two sliding plates are away from each other, the two surrounding plates and the support rod are pulled to rotate to both sides along the pin axis through the fixing rod and the sliding sleeve, thereby pushing the placing plate out of the cultivation trough and unfolding the two surrounding plates to facilitate the user to take out the pepper seedlings and the culture soil intact for transplanting and planting, thereby solving the problem of the existing cultivation device that it is inconvenient to take out the peppers together with the culture soil for transplanting when transplanting peppers, and then using the device to cultivate peppers has the advantage of improving the survival rate of the peppers in subsequent transplanting.
[0004] However, after research, it was found that the amount of peppers grown on this planting rack was small, and the upper cultivation plate would block the lower cultivation plate, making it difficult for the peppers on the lower cultivation plate to come into contact with sunlight, resulting in poor planting results. In addition, there was no structure to prevent flying insects, and the flying insects that bred in the soil where the peppers were planted would fly to other places in the room and cause pollution. Utility Model Content
[0005] The purpose of the utility model is to provide a flying insect prevention mechanism for a pepper planting rack in order to solve the problem that the planting effect is not good and there is no flying insect prevention structure.
[0006] The technical solution adopted by the utility model is as follows: an anti-flying insect mechanism for a pepper planting rack, comprising a support base, a cavity is provided inside the support base, and the cavity is filled with clean water, and a support column is connected to the center of the support base through a rotating disk;
[0007] An anti-flying insect mechanism is provided above the support seat to prevent flying insects that are grown in the soil where peppers are planted from flying into the room.
[0008] Among them, the anti-flying insect mechanism includes a bracket, an insect-proof net and a connecting net. The bracket is fixedly installed above the support seat. The insect-proof net is glued between the brackets, and an opening is provided on the surface of the insect-proof net. The opening of the insect-proof net is connected to the connecting net through a zipper, and the bracket is arranged in a truncated cone shape.
[0009] Among them, a water pump is embedded in the support seat, and the water pump inlet is connected to the cavity pipe inside the support seat, a spray rack is installed on one side of the support seat, and the spray rack is connected to the water pump outlet pipe, and there are four nozzles on one side of the spray rack, and the four nozzles correspond to the top of planting trough A, planting trough B, planting trough C and planting trough D respectively, a motor is embedded on the top of the support seat, and the motor output shaft is connected to the support column through a chain, and sprockets engaged with the chain are nested on the outside of the support column and the outside of the motor output shaft.
[0010] Among them, the outer side of the support column is nested with at least water receiving tray A, water receiving tray B, water receiving tray C and water receiving tray D in sequence from the bottom, and planting troughs A, planting troughs B, planting troughs C and planting troughs D are fixedly installed above the water receiving tray A, above the water receiving tray B, above the water receiving tray C and above the water receiving tray D, respectively. The bottoms of the planting troughs A, planting troughs B, planting troughs C and planting troughs D are all provided with water holes, and gaps are left between them and the bottom planes of the water receiving tray A, water receiving tray B, water receiving tray C and water receiving tray D respectively. The planting troughs A, planting troughs B, planting troughs C and planting troughs D are all circularly arranged. The water collecting tray B, water collecting tray C and water collecting tray D are symmetrically and integrally provided with guide grooves on both sides of the bottom, and the guide groove outlet at the bottom of the water collecting tray B corresponds to the top of the planting groove A, the guide groove outlet at the bottom of the water collecting tray C corresponds to the top of the planting groove B, the guide groove outlet at the bottom of the water collecting tray D corresponds to the top of the planting groove C, and a filter net is embedded in the bottom of the water collecting tray A through a through groove, and an annular opening communicating with the cavity in the support seat is embedded in the upper surface of the support seat corresponding to the through groove at the bottom of the water collecting tray A.
[0011] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:
[0012] 1. In the present invention, the disc-shaped planting troughs A, B, C and D form a four-layer planting rack, which can plant more peppers at one time. The planting troughs A, B, C and D are arranged in a stepped manner, which will not interfere with each other and will not block sunlight, resulting in a better planting effect.
[0013] 2. In the utility model, through the anti-flying insect mechanism, the anti-insect net and the connecting net form a closed net cover on the outside of the pepper planting rack, which protects the pepper planting rack and prevents flying insects that are bred in the soil where peppers are planted from flying to other places indoors and causing pollution. The zipper is unzipped to disconnect the connection between the two sides of the connecting net and the anti-insect net, and the opening of the anti-insect net is exposed. The user can plant peppers, pick peppers, etc. at the opening of the insect net.
[0014] 3. In the utility model, the water pump sprays the water in the cavity of the support seat into the inside of the planting trough A, planting trough B, planting trough C and planting trough D through the nozzle on one side of the spray rack. The motor drives the support column to rotate, and the planting trough A, planting trough B, planting trough C and planting trough D rotate simultaneously with the support column, so that the water sprayed by the spray rack is evenly sprayed into the inside of the planting trough A, planting trough B, planting trough C and planting trough D, replenishing water for the pepper seedlings, promoting the growth of peppers, achieving the purpose of automatic watering, and being more convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of a partial three-dimensional structure of the utility model;
[0016] Figure 2 This is a schematic diagram of the partial three-dimensional structure of the anti-flying insect mechanism in the present invention;
[0017] Figure 3 This is a schematic diagram of the overall side sectional structure of the present utility model;
[0018] Figure 4 For this utility model Figure 3 A schematic diagram of the enlarged structure at point A.
[0019] Markings in the figure: 1. Support base; 101. Support column; 1012. Motor; 102. Water pump; 1021. Spray rack; 103. Water tray A; 1031. Planting trough A; 104. Water tray B; 1041. Planting trough B; 105. Water tray C; 1051. Planting trough C; 106. Water tray D; 1061. Planting trough D; 107. Diversion trough; 2. Bracket; 201. Insect-proof net; 202. Connecting net. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0021] In this utility model:
[0022] Reference Figure 1-4 , a flying insect prevention mechanism for pepper planting racks, comprising a support base 1, a cavity is provided inside the support base 1, and the cavity is filled with clean water, and a support column 101 is connected to the center of the upper part of the support base 1 through a turntable rotation;
[0023] An anti-flying insect mechanism is provided above the support base 1 to prevent flying insects that grow in the soil where peppers are grown from from flying into the room.
[0024] Reference Figure 2-4 In this embodiment, the anti-flying insect mechanism includes a bracket 2, an anti-insect net 201 and a connecting net 202. The bracket 2 is fixedly installed above the support base 1. The anti-insect net 201 is bonded between the brackets 2, and an opening is provided on the surface of the anti-insect net 201. The opening of the anti-insect net 201 is connected to the connecting net 202 through a zipper. The bracket 2 is set in a truncated cone shape;
[0025] The insect-proof net 201 and the connecting net 202 form a closed net cover on the outside of the pepper planting rack to protect the pepper planting rack and prevent flying insects that breed in the soil where the peppers are planted from flying to other places in the room and causing pollution. The zipper is unzipped to disconnect the connection between the two sides of the connecting net 202 and the insect-proof net 201, and the opening of the insect-proof net 201 is exposed. The user can plant peppers, pick peppers, etc. at the opening of the insect-proof net.
[0026] Reference Figure 3-4 In this embodiment, a water pump 102 is embedded in the support base 1, and the inlet of the water pump 102 is connected to the cavity pipe inside the support base 1. A spray rack 1021 is installed on one side of the support base 1, and the spray rack 1021 is connected to the outlet pipe of the water pump 102. There are four nozzles on one side of the spray rack 1021, and the four nozzles correspond to the top of the planting groove A1031, the planting groove B1041, the planting groove C1051 and the planting groove D1061 respectively. A motor 1012 is embedded on the top of the support base 1, and the output shaft of the motor 1012 is connected to the support column 101 through a chain, and sprockets engaged with the chain are nested on the outside of the support column 101 and the outside of the output shaft of the motor 1012;
[0027] The water pump 102 works to spray the water in the cavity of the support seat 1 into the inside of the planting trough A1031, planting trough B1041, planting trough C1051 and planting trough D1061 through the nozzle on one side of the spray rack 1021. The motor 1012 drives the support column 101 to rotate, and the planting trough A1031, planting trough B1041, planting trough C1051 and planting trough D1061 rotate simultaneously with the support column 101, so that the water sprayed by the spray rack 1021 is evenly sprayed into the inside of the planting trough A1031, planting trough B1041, planting trough C1051 and planting trough D1061, replenishing water for the pepper seedlings and promoting the growth of peppers.
[0028] Reference Figure 1 、 3 4. In this embodiment, at least a water receiving tray A103, a water receiving tray B104, a water receiving tray C105 and a water receiving tray D106 are nested on the outside of the support column 101 from the bottom. A planting trough A1031, a planting trough B1041, a planting trough C1051 and a planting trough D1061 are fixedly installed above the water receiving tray A103, above the water receiving tray B104, above the water receiving tray C105 and above the water receiving tray D106, respectively. The bottoms of the planting troughs A1031, B1041, C1051 and D1061 are all provided with water holes, and gaps are left between them and the bottom planes of the water receiving trays A103, B104, C105 and D106, respectively. The planting troughs A1031, B1041, C1051 and D1061 are fixedly installed above the water receiving tray A103, B104 The grooves D1061 are all arranged in a circular shape, and the planting grooves A1031, planting grooves B1041, planting grooves C1051 and planting grooves D1061 are arranged in a stepped manner. The water receiving trays B104, C105 and D106 are symmetrically and integrally provided with guide grooves 107 on both sides of the bottom. The outlet of the guide groove 107 at the bottom of the water receiving tray B104 corresponds to the top of the planting groove A1031, the outlet of the guide groove 107 at the bottom of the water receiving tray C105 corresponds to the top of the planting groove B1041, and the outlet of the guide groove 107 at the bottom of the water receiving tray D106 corresponds to the top of the planting groove C1051. A filter screen is embedded in the bottom of the water receiving tray A103 through a through groove, and an annular opening communicating with the cavity in the support seat 1 is embedded in the upper surface of the support seat 1 corresponding to the through groove at the bottom of the water receiving tray A103;
[0029] The water receiving tray A103, water receiving tray B104, water receiving tray C105 and water receiving tray D106 respectively collect the water flowing out from the water holes at the bottom of the planting trough A1031, planting trough B1041, planting trough C1051 and planting trough D1061. The guide groove 107 guides the water inside the water receiving tray B104, water receiving tray C105 and water receiving tray D106 to the corresponding planting trough below. The water inside the water receiving tray A103 flows into the support seat. 1, the planting grooves A1031, the planting grooves B1041, the planting grooves C1051 and the planting grooves D1061 are arranged in a stepped manner, so that the planting grooves A1031, the planting grooves B1041, the planting grooves C1051 and the planting grooves D1061 do not interfere with each other, so that the peppers on the planting grooves A1031, the planting grooves B1041, the planting grooves C1051 and the planting grooves D1061 arranged in a stepped manner can all be exposed to sunlight.
[0030] Reference Figure 3 In this embodiment, the motor 1012 and the water pump 102 are both electrically connected to the external power supply through the switch panel.
[0031] Working principle: First, unzip the zipper and disconnect the connection between the two sides of the connecting net 202 and the insect-proof net 201, so that the insect-proof net 201 is exposed. The motor 1012 drives the planting troughs A1031, B1041, C1051 and D1061 to rotate slowly. The user plants peppers in the planting troughs A1031, B1041, C1051 and D1061 respectively. The planting troughs A1031, B1041, C1051 and D1061 are arranged in a stepped manner, so that the planting troughs A1031, B1041, C1051 and D1061 do not interfere with each other. Then the zipper is closed, and the insect-proof net 201 and the connecting net 202 form a closed net cover on the outside of the pepper planting rack to protect the pepper planting rack and prevent the flying insects that breed in the soil where the peppers are planted from flying to other places in the room and causing pollution. Then the water pump 102 works to spray the water in the cavity of the support seat 1 through the spray rack 1021 on one side. The nozzle sprays inside the planting trough A1031, planting trough B1041, planting trough C1051 and planting trough D1061. The motor 1012 drives the support column 101 to rotate. The planting trough A1031, planting trough B1041, planting trough C1051 and planting trough D1061 rotate simultaneously with the support column 101, so that the water sprayed by the spray rack 1021 is evenly sprayed inside the planting trough A1031, planting trough B1041, planting trough C1051 and planting trough D1061, replenishing the pepper seedlings. Moisture promotes the growth of peppers. Finally, the water receiving tray A103, water receiving tray B104, water receiving tray C105 and water receiving tray D106 respectively collect the water flowing out from the water holes at the bottom of the planting trough A1031, planting trough B1041, planting trough C1051 and planting trough D1061. The guide groove 107 guides the water inside the water receiving tray B104, water receiving tray C105 and water receiving tray D106 to the corresponding planting troughs below, and the water inside the water receiving tray A103 flows into the cavity of the support base 1.
[0032] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A flying insect prevention mechanism for a pepper planting rack, comprising a support base (1), characterized in that: A cavity is provided inside the support seat (1), and clean water is filled in the cavity. A support column (101) is connected to the center of the upper portion of the support seat (1) via a rotating disk. An anti-flying insect mechanism is provided above the support base (1) to prevent flying insects that are bred in the soil where peppers are grown from from flying into the room; The flying insect prevention mechanism comprises a bracket (2), an insect prevention net (201) and a connecting net (202); A bracket (2) is fixedly mounted above the support seat (1), an insect-proof net (201) is bonded between the brackets (2), and an opening is provided on the surface of the insect-proof net (201), and the opening of the insect-proof net (201) is connected to a connecting net (202) via a zipper.
2. The flying insect prevention mechanism for pepper planting racks according to claim 1, characterized in that: The bracket (2) is arranged in a truncated cone shape.
3. The flying insect prevention mechanism for pepper planting racks according to claim 1, characterized in that: A water pump (102) is embedded and installed inside the support base (1), and the inlet of the water pump (102) is connected to the cavity pipe inside the support base (1); a motor (1012) is embedded and installed above the support base (1), and the output shaft of the motor (1012) is transmission-connected to the support column (101) through a chain, and sprockets that engage with the chain are embedded and installed outside the support column (101) and outside the output shaft of the motor (1012).
4. The flying insect prevention mechanism for pepper planting racks according to claim 1, characterized in that: At least a water receiving tray A (103), a water receiving tray B (104), a water receiving tray C (105) and a water receiving tray D (106) are nested on the outer side of the support column (101) in sequence from the bottom. A planting trough A (1031), a planting trough B (1041), a planting trough C (1051) and a planting trough D (1061) are fixedly installed above the water receiving tray A (103), above the water receiving tray B (104), above the water receiving tray C (105) and above the water receiving tray D (106), respectively. The bottoms of the planting troughs A (1031), the planting troughs B (1041), the planting troughs C (1051) and the planting troughs D (1061) are all provided with water holes, and gaps are left between the bottom planes of the water receiving tray A (103), the water receiving tray B (104), the water receiving tray C (105) and the water receiving tray D (106).
5. The flying insect prevention mechanism for pepper planting racks according to claim 4, characterized in that: The planting troughs A (1031), B (1041), C (1051) and D (1061) are all arranged in a circular shape, and the planting troughs A (1031), B (1041), C (1051) and D (1061) are arranged in a stepped manner.
6. The flying insect prevention mechanism for pepper planting racks according to claim 4, characterized in that: The water receiving tray B (104), the water receiving tray C (105) and the water receiving tray D (106) are all symmetrically and integrally provided with guide grooves (107) on both sides of the bottom, and the outlet of the guide groove (107) at the bottom of the water receiving tray B (104) corresponds to the top of the planting groove A (1031), the outlet of the guide groove (107) at the bottom of the water receiving tray C (105) corresponds to the top of the planting groove B (1041), and the outlet of the guide groove (107) at the bottom of the water receiving tray D (106) corresponds to the top of the planting groove C (1051), and the bottom of the water receiving tray A (103) is embedded with a filter screen through a through groove, and an annular opening communicating with the inner cavity of the support seat (1) is embedded in the upper surface of the support seat (1) corresponding to the through groove at the bottom of the water receiving tray A (103).
7. The flying insect prevention mechanism for pepper planting racks according to claim 1, characterized in that: A spray rack (1021) is installed on one side of the support base (1), and the spray rack (1021) is connected to the outlet pipe of the water pump (102). Four nozzles are provided on one side of the spray rack (1021), and the four nozzles correspond to the tops of the planting trough A (1031), the planting trough B (1041), the planting trough C (1051), and the planting trough D (1061), respectively.
Citation Information
Patent Citations
Indoor cultivation frame for pepper cultivation
CN216492356U