Moisturizing and root-promoting device for areca-nut planting

The areca nut planting moisture-retaining and root-promoting device, with its split-type water guide cover, moisture-retaining arm and condensation plate, solves the problems of difficult installation and inconvenient water management of existing devices, and achieves efficient moisture retention and root growth for areca nut seedlings.

CN223553976UActive Publication Date: 2025-11-18HAINAN AOHAI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423192012.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-11-18
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing moisture-retaining and root-promoting devices for areca nut cultivation present difficulties in installation and use, especially in adapting to changes in root and stem size after the areca nut tree grows, and inconvenient water management, which leads to limited survival rate and root growth of areca nut seedlings.

Method used

A split-type moisture-retaining and root-promoting device was designed, including a water guide cover, a moisture-retaining arm and a condensation plate. It can be easily installed through snap-fit ​​components and magnetic snap-fit ​​slots. The device automatically collects water by utilizing the temperature difference effect of the condensation plate and moisturizes the roots and stems with absorbent cotton. The absorbent cotton adapts to the growth of the roots and stems.

Benefits of technology

It enables convenient installation and disassembly of areca nut seedlings, automated water management, improved seedling survival rate and root growth, adaptability to changes in root and stem size, and reduced installation difficulty and water management complexity.

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Abstract

The utility model provides a moisturizing and root-promoting device for areca-nut planting, which relates to the technical field of areca-nut planting and comprises two water guide covers, two moisturizing protective arms and two condensing discs, the two moisturizing protective arms are respectively arranged below the two water guide covers, and the condensing discs are respectively arranged below the two water guide covers. Through the split type structural design of the two groups of water guide covers, the moisturizing protection arms and the condensation disc, the structure has the advantages that during later installation, the ground insertion protection covers are inserted into soil on the two sides of the areca tree rhizome, and after insertion is completed, the two water guide covers and the moisturizing protection arms are attached to each other; the inserting holes in the two first mounting pieces and the inserting holes in the second mounting pieces are aligned, after alignment is completed, the clamping plate on one side is pulled to be separated from the limiting bolts, at the moment, after the limiting bolts are inserted into the first mounting pieces and the second mounting pieces, the clamping plates are loosened, and at the moment, the clamping plates are driven to be withdrawn and clamped with the limiting bolts again under the action of the springs.
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Description

TECHNICAL FIELD

[0001] The utility model relates to betel planting technical field especially, betel is planted with the device of moisturizing and promoting root. BACKGROUND

[0002] Betel is an important tropical economic crop, betel nut contains rich nutrient components, is widely used in traditional chewable food and medicinal, betel tree is suitable for growing in warm and humid climate, and the requirement to soil is higher, usually needs the soil that is loose, fertile and well drained.

[0003] The growth environment of betel requires high water, especially in the seedling stage, and the root system development is particularly sensitive to water acquisition, in order to improve the survival rate of betel seedling and the growth of root system, design a kind of moisturizing and promoting root device has important practical significance.

[0004] However, the existing moisturizing and promoting root planting device for betel planting mostly adopts the way of drip irrigation to carry out moisturizing treatment to betel root stem, but in the actual practical process, the flow rate of drip water needs to be adjusted according to the actual use, so as to prevent the death of betel seedling caused by too much or too little water near the betel root stem.

[0005] But when betel tree is planted, its bottom root stem is connected with the ground, and the top of betel tree is blocked by branches, so the moisturizing and promoting root device cannot be installed and fixed by sleeving, therefore, a split type moisturizing and promoting root device needs to be designed to facilitate the installation and disassembly in later period.

[0006] Therefore, the utility model provides a kind of moisturizing and promoting root device for betel planting. INVENTION CONTENTS

[0007] The utility model aims at solving the shortcomings in the prior art, and provides a kind of moisturizing and promoting root device for betel planting.

[0008] In order to achieve the above purpose, the utility model adopts the following technical scheme: a kind of moisturizing and promoting root device for betel planting, including water guide cover, moisturizing arm and condensing disc, the water guide cover, moisturizing arm and condensing disc are all provided with two, and two the moisturizing arm is respectively arranged below two the water guide cover, two the condensing disc is respectively arranged above two the water guide cover, the two sides of the water guide cover are all provided with first installation piece, the two sides of the moisturizing arm are all provided with second installation piece, the first installation piece and second installation piece are all provided with clamping assembly;

[0009] The clamping assembly comprises clamping plates and elastic plates, two clamping plates are arranged, elastic plates are arranged at one end of the two clamping plates, one of the clamping plates is provided with a limiting pin, the other end of the limiting pin is connected with the other clamping plate in sliding mode, and springs are arranged between the two clamping plates.

[0010] As a preferred embodiment, the bottom of the moisturizing arm is provided with an insertion protection cover, the bottom of the insertion protection cover is provided with an arc-shaped slot, the arc-shaped slot is arranged in an arc shape, and the included angle between adjacent two arc-shaped slots is equal.

[0011] The beneficial effect of the above further scheme is that the insertion protection cover protects the rhizome at the bottom of the areca nut, and when the device is installed, the arc-shaped slot can reduce the friction between the insertion protection cover and the ground, so that the insertion protection cover is more smooth when inserted into the ground.

[0012] As a preferred embodiment, the inner surface wall of the moisturizing arm is provided with water-absorbing cotton, the side away from the moisturizing arm of the water-absorbing cotton is provided with a fault-tolerant slot, the water-absorbing cotton is provided with a fault-tolerant hole, the fault-tolerant slot and the fault-tolerant hole are arranged in an arc shape, and the spacing between adjacent two fault-tolerant slots and fault-tolerant holes is equal.

[0013] The beneficial effect of the above further scheme is that the water-absorbing cotton can be attached to the rhizome of the areca seedling, and as the rhizome of the seedling grows, it needs to absorb the water absorbed in the water-absorbing cotton, so that the water-absorbing cotton can moisturize the rhizome of the areca seedling, and further, under the action of the fault-tolerant slot and the fault-tolerant hole, as the areca tree grows, the size of its rhizome also increases, at this time, the fault-tolerant slot and the fault-tolerant hole are deformed after being extruded, so as to reserve space for the growth of the rhizome of the areca tree.

[0014] As a preferred embodiment, the inner surface wall of the water guide cover is provided with a water guide groove, the top of the water guide cover is provided with a magnetic attraction clamping groove, the magnetic attraction clamping groove and the water guide groove are arranged in an arc shape, and the included angle between adjacent two magnetic attraction clamping grooves and water guide grooves is equal.

[0015] The beneficial effect of the above further scheme is that the condensed water falling into the water guide cover after being condensed by the condensing disc is guided into the water-absorbing cotton for absorption and storage under the action of the water guide groove, and the setting of the water guide groove reduces the situation that the condensed water sticks to the wall when entering the water guide cover, so that the water-absorbing cotton cannot be absorbed by the water-absorbing cotton.

[0016] As a preferred embodiment, the condensing disc is provided with a condensing groove, the bottom of the condensing disc is provided with a condensing hole in communication with the condensing groove, the condensing groove and the condensing hole are arranged in an arc shape, and the included angle between adjacent two condensing grooves and condensing holes is equal.

[0017] The beneficial effect of the further scheme is that: due to the black heat-absorbing coating on the surface of the condensing disc and the metal material of the condensing disc, the condensing disc absorbs heat during the day, and condensation occurs at night due to the temperature difference, so that the condensed liquid falls into the condensing groove and is stored in the water guide cover through the condensing hole, thereby achieving the effect of automatically collecting water.

[0018] As a preferred embodiment, the bottom of the condensing disc is provided with a magnetic clamping block, and the magnetic clamping block and the magnetic clamping groove are magnetically attracted to each other.

[0019] The beneficial effect of the further scheme is that: through the magnetic clamping block and the magnetic clamping groove, the water guide cover and the condensing disc are detachable, which is more convenient to replace or maintain.

[0020] Compared with the prior art, the advantages and positive effects of the utility model are:

[0021] 1. In the utility model, the two groups of water guide covers, the moisture retaining arms and the condensing disc are designed in a split structure, which has the advantage that during the later installation, the ground insertion cover is inserted into the soil on both sides of the areca tree root, after insertion, the two water guide covers and the moisture retaining arms are attached to each other, the insertion holes on the two first mounting pieces and the second mounting piece are aligned, after alignment, the side clamping plate is pulled to separate it from the limiting bolt, then the limiting bolt is inserted into the first mounting piece and the second mounting piece, the clamping plate is released, under the action of the spring, the clamping plate is retracted and re-clamped with the limiting bolt, under the action of the clamping assembly, the two water guide covers and the moisture retaining arms are limited, which is more convenient and fast than bolt installation.

[0022] 2. In the utility model, the condensing disc is provided, so that the device can absorb heat during the day, and condensation occurs when the temperature decreases at night, so that the condensed liquid falls into the condensing groove and is stored in the water guide cover through the condensing hole, and the water-absorbing cotton is provided, which can be attached to the areca tree seedling root and absorb water from the water-absorbing cotton as the tree seedling root grows, so that the water-absorbing cotton can moisturize the areca tree seedling root, and under the action of the error tolerance groove and the error tolerance hole, as the areca tree grows, the root size also increases, at this time, the error tolerance groove and the error tolerance hole are deformed under the pressure, leaving a growth space for the areca tree root. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is a front view of the moisture-retaining and root-promoting device for areca planting.

[0024] Figure 2 Figure 1 is a split view of the moistening and root promoting device for betel nut planting of the utility model;

[0025] Figure 3 Figure 2 is a sectional view of the moistening and root promoting device for betel nut planting of the utility model;

[0026] Figure 4 Figure 3 is a structure view of the moistening and root promoting device for betel nut planting of the utility model.

[0027] Reference signs

[0028] 1, water guide cover; 11, first mounting piece; 12, magnetic suction clamping groove; 13, water guide groove;

[0029] 2, moistening and root protecting arm; 21, ground insertion protection cover; 22, arc-shaped groove; 23, second mounting piece; 24, water absorption cotton; 25, fault tolerance groove; 26, fault tolerance hole;

[0030] 3, clamping assembly; 31, clamping plate; 32, elastic plate; 33, spring; 34, limiting bolt;

[0031] 4, condensing disc; 41, condensing groove; 42, condensing hole; 43, magnetic suction clamping block. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all the other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0033] As Figures 1-4The utility model provides a kind of technical scheme shown in the utility model provides a kind of moistening and root promoting device for betel planting, including water guide cover 1, moisturizing arm 2 and condensing disc 4, water guide cover 1, moisturizing arm 2 and condensing disc 4 are provided with two, and two moisturizing arms 2 are respectively arranged below two water guide covers 1, two condensing discs 4 are respectively arranged above two water guide covers 1, the two sides of water guide cover 1 are provided with first mounting piece 11, the two sides of moisturizing arm 2 are provided with second mounting piece 23, first mounting piece 11 and second mounting piece 23 are provided with clamping assembly 3 on;Clamping assembly 3 includes clamping plate 31 and elastic plate 32, clamping plate 31 is provided with two, elastic plate 32 is provided with one end in two clamping plates 31, one of clamping plate 31 is provided with limit bolt 34, the other end of limit bolt 34 and another clamping plate 31 are slidably connected, spring 33 is arranged between two clamping plates 31, by the structure design of two groups of water guide cover 1, moisturizing arm 2 and condensing disc 4 between split type, the advantage of this structure is that, when installing later, by inserting ground shield 21 into the soil of both sides of betel root stem, after insertion, two water guide covers 1 and moisturizing arm 2 are mutually adhered between, make the insertion hole on its two first mounting pieces 11 and second mounting pieces 23 alignment, after alignment, pull one side clamping plate 31 to make it separate from limit bolt 34, at this time, limit bolt 34 is inserted into first mounting piece 11 and second mounting piece 23, loosen clamping plate 31, at this time, under the action of spring 33, drive clamping plate 31 to retract and reengage between limit bolt 34, at this time, under the action of clamping assembly 3, limit between two water guide covers 1 and moisturizing arm 2, instead of bolt installation is more convenient and fast, solve the technical problem of device installation difficulty.

[0034] Further, as Figures 2-4As shown: the inner surface wall of the moisturizing arm 2 is provided with water absorbing cotton 24, the side of the water absorbing cotton 24 away from the moisturizing arm 2 is provided with a fault tolerance slot 25, the water absorbing cotton 24 is provided with a fault tolerance hole 26, the fault tolerance slot 25 and the fault tolerance hole 26 are arc-shaped, and the spacing between adjacent two fault tolerance slots 25 and fault tolerance holes 26 is equal, the inner surface wall of the water guide cover 1 is provided with a water guide slot 13, the top of the water guide cover 1 is provided with a magnetic attraction clamping slot 12, the magnetic attraction clamping slot 12 and the water guide slot 13 are arc-shaped, and the included angle between adjacent two magnetic attraction clamping slots 12 and water guide slots 13 is equal. After the water condensed by the condensing disc 4 falls into the water guide cover 1, it is guided into the water absorbing cotton 24 under the action of the water guide slot 13 and is absorbed and stored. The setting of the water guide slot 13 reduces the wall hanging phenomenon when the condensed water enters the water guide cover 1, so that the water absorbing cotton 24 cannot be adsorbed by the water absorbing cotton 24. Through the setting of the water absorbing cotton 24, the water absorbing cotton 24 can be attached to the areca seedling rhizome, and the water absorbing cotton 24 can be adsorbed as the tree seedling rhizome grows. The water absorbing cotton 24 can moisturize the areca seedling rhizome, and further under the action of the fault tolerance slot 25 and the fault tolerance hole 26, as the areca tree grows, the size of the rhizome also increases. At this time, the fault tolerance slot 25 and the fault tolerance hole 26 are deformed after being extruded, which reserves space for the growth of the areca tree rhizome, solving the technical problem that the size of the areca tree after growth does not match the device.

[0035] The above scheme also has the problem that the ground insertion shield 21 is inconvenient to insert into the soil, such as Figure 4 As shown: in this scheme, the bottom of the moisturizing arm 2 is provided with a ground insertion shield 21, the bottom of the ground insertion shield 21 is provided with an arc-shaped slot 22, the arc-shaped slot 22 is arc-shaped, and the included angle between adjacent two arc-shaped slots 22 is equal. The ground insertion shield 21 protects the areca bottom rhizome during installation of the device. The arc-shaped slot 22 reduces the friction between the ground insertion shield 21 and the ground, making it easier for the ground insertion shield 21 to insert into the ground.

[0036] The above scheme also has the problem that the condensed liquid on the condensing disc 4 cannot enter the inside of the water guide cover 1, such as Figure 3 As shown: in this scheme, the condensing disc 4 is provided with a condensing slot 41, and the bottom of the condensing disc 4 is provided with a condensing hole 42 communicating with the condensing slot 41. The condensing slot 41 and the condensing hole 42 are arc-shaped, and the included angle between adjacent two condensing slots 41 and condensing holes 42 is equal. Because the surface of the condensing disc 4 is coated with black heat-absorbing paint and the condensing disc 4 is made of metal, the condensing disc 4 absorbs heat during the day and produces a temperature difference at night, resulting in condensation. The condensed liquid falls into the condensing slot 41 and is stored in the water guide cover 1 through the condensing hole 42, thereby achieving the effect of automatically collecting water.

[0037] The above scheme also has the problem of fixing between the water guide cover 1 and the condensing disc 4, such as Figure 2 As shown in the figure: In this scheme, the bottom of the condensing disc 4 is provided with a magnetic suction block 43, and the magnetic suction block 43 and the magnetic suction slot 12 are magnetically attracted to each other. The distribution positions of the magnetic suction block 43 and the magnetic suction slot 12 are matched. Through the setting of the magnetic suction block 43 and the magnetic suction slot 12, the water guide cover 1 and the condensing disc 4 are in a detachable structure. The detachable structure is more convenient to replace or maintain.

[0038] Working principle:

[0039] As shown in the figure: Figures 1-4 When the areca seedlings are planted in the designated position, the ground shield 21 is inserted into the soil on both sides of the areca seedling rhizome. After insertion, the two water guide covers 1 and the moisture protection arms 2 are mutually attached, and the insertion holes on the two first mounting plates 11 and the second mounting plate 23 are aligned. After alignment, pull one side of the clamping plate 31 to separate it from the limiting bolt 34. At this time, insert the limiting bolt 34 into the first mounting plate 11 and the second mounting plate 23, then loosen it. At this time, under the action of the spring 33, the clamping plate 31 is retracted and re-clamped with the limiting bolt 34. At this time, under the action of the clamping assembly 3, the two water guide covers 1 and the moisture protection arms 2 are limited. After installation is completed, the condensing disc 4 is clamped between the magnetic suction slot 12 and the magnetic suction block 43 to be fixed above the water guide cover 1. At this time, under the action of the condensing disc 4, the device can absorb heat energy during the day, and when the temperature decreases at night, a temperature difference occurs, resulting in condensation. The condensed liquid falls into the condensing groove 41 for storage and flows into the water guide cover 1 through the condensing hole 42 and falls into the water absorbing cotton 24 for storage. Through the setting of the water absorbing cotton 24, the water absorbing cotton 24 can be attached to the areca seedling rhizome and can absorb water from the water absorbing cotton 24 as the seedling rhizome grows, so that the water absorbing cotton 24 can moisturize the areca seedling rhizome. Further, under the action of the error tolerance groove 25 and the error tolerance hole 26, as the areca tree grows, the size of the rhizome also increases. At this time, the error tolerance groove 25 and the error tolerance hole 26 are deformed after being extruded, so as to reserve space for the growth of the areca tree rhizome.

[0040] The above is only a preferred embodiment of the present application, and is not intended to limit the present application in other forms. Any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification of the above embodiments made in accordance with the technical essence of the present application shall fall within the protection scope of the present application.

Claims

1. A moisture-retaining and root-promoting device for areca nut cultivation, characterized in that, The device includes a water guide cover (1), a moisturizing arm (2), and a condensation plate (4). Two water guide covers (1), two moisturizing arms (2), and two condensation plates (4) are provided. The two moisturizing arms (2) are respectively located below the two water guide covers (1), and the two condensation plates (4) are respectively located above the two water guide covers (1). A first mounting plate (11) is provided on both sides of the water guide cover (1), and a second mounting plate (23) is provided on both sides of the moisturizing arm (2). A snap-fit ​​component (3) is provided on both the first mounting plate (11) and the second mounting plate (23). The snap-fit ​​assembly (3) includes a snap-fit ​​plate (31) and an elastic plate (32). There are two snap-fit ​​plates (31). The elastic plate (32) is disposed on one end of the two snap-fit ​​plates (31). One of the snap-fit ​​plates (31) is provided with a limit bolt (34). The other end of the limit bolt (34) is slidably connected to the other snap-fit ​​plate (31). A spring (33) is provided between the two snap-fit ​​plates (31).

2. The moisture-retaining and root-promoting device for areca nut cultivation according to claim 1, characterized in that: The bottom of the moisturizing arm (2) is provided with a ground-inserting cover (21), and the bottom of the ground-inserting cover (21) is provided with an arc-shaped groove (22). The arc-shaped groove (22) is distributed in an arc shape, and the included angle between two adjacent arc-shaped grooves (22) is equal.

3. The moisture-retaining and root-promoting device for areca nut cultivation according to claim 1, characterized in that: The inner surface of the moisturizing arm (2) is provided with absorbent cotton (24). The absorbent cotton (24) has a tolerance groove (25) on the side away from the moisturizing arm (2). The absorbent cotton (24) has a tolerance hole (26). The tolerance groove (25) and the tolerance hole (26) are both arc-shaped, and the distance between two adjacent tolerance grooves (25) and tolerance holes (26) is equal.

4. The moisture-retaining and root-promoting device for areca nut cultivation according to claim 1, characterized in that: The inner surface of the water guide cover (1) is provided with a water guide groove (13), and the top of the water guide cover (1) is provided with a magnetic card slot (12). The magnetic card slot (12) and the water guide groove (13) are both arc-shaped, and the included angle between two adjacent magnetic card slots (12) and water guide grooves (13) is equal.

5. The moisture-retaining and root-promoting device for areca nut cultivation according to claim 1, characterized in that: The condensing plate (4) is provided with a condensing groove (41), and the bottom of the condensing plate (4) is provided with a condensing hole (42) communicating with the condensing groove (41). The condensing groove (41) and the condensing hole (42) are arranged in an arc shape, and the included angle between two adjacent condensing grooves (41) and condensing holes (42) is equal.

6. The moisture-retaining and root-promoting device for areca nut cultivation according to claim 1, characterized in that: The bottom of the condenser plate (4) is provided with a magnetic card block (43), and the magnetic card block (43) and the magnetic card slot (12) are magnetically attracted to each other. The distribution positions of the magnetic card block (43) and the magnetic card slot (12) are adapted to each other.