Winter heat preservation device for fruit tree planting

Through the combined structure of rubber and plastic insulation board and transparent illumination board, the problem of fruit tree insulation device being wet and frozen in rainy and snowy weather is solved, and effective insulation and economic protection of fruit trees are achieved.

CN223067635UActive Publication Date: 2025-07-08LUOYANG ZHONGSEN AGRI CO LTD
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Patent Information

Application Number
CN202422103453.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-07-08
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

Existing fruit tree insulation devices are prone to wet and freeze in rainy and snowy weather, resulting in a decrease in insulation effect, resulting in frozen fruit trees and economic losses.

Method used

A winter insulation device for fruit tree planting is designed, using a combined structure of rubber and plastic insulation board and transparent illumination board. The rubber and plastic insulation board is close to the outer surface of the trunk. The transparent illumination board absorbs heat and heats up by sunlight. The rubber seal block prevents rain and snow from entering, ensuring that the device is not wet.

Benefits of technology

Effectively prevent rain and snow from entering, maintaining insulation effect, avoiding fruit trees from freezing, improving the overall insulation performance of the insulation device, and reducing economic losses.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223067635U_ABST
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Abstract

The utility model relates to a protective covering for plants. The utility model relates to the technical field of devices for laying coverings, and discloses a winter heat preservation device for fruit tree planting, which comprises two heat preservation clamping blocks, a connecting rotating shaft is rotatably connected between the two heat preservation clamping blocks, the two heat preservation clamping blocks are rotatably connected through the connecting rotating shaft, and the front sides of the two heat preservation clamping blocks are fixedly connected with fixing blocks. Inserting grooves are formed in the upper sides of the two fixing blocks, inserting rods are arranged in the two inserting grooves, the upper ends of the two inserting rods extend out of the upper sides of the fixing blocks, connecting blocks are fixedly connected to the upper ends of the two inserting rods, taking and placing grooves are formed in the left sides of the connecting blocks, and heat preservation mechanisms are arranged in the two heat preservation clamping blocks. The heat preservation device can be prevented from being wetted by rain and snow to be frozen while heat preservation is conducted on the fruit trees, then the heat preservation effect of the heat preservation device is guaranteed, the situation that the fruit trees are frozen to be damaged is avoided, and economic losses are avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of protective covers for plants and devices for laying covers, and particularly relates to a winter heat preservation device for fruit tree planting. Background Technique

[0002] When fruit trees survive the severe winter weather, it is necessary to do a good job in heat preservation for the fruit trees. Therefore, in order to avoid the fruit trees from being frostbitten or frozen to death in the severe cold weather and affecting the fruit bearing of the fruit trees in the coming year, measures should be taken to protect them to survive safely. According to the investigation of relevant departments, every winter, due to ineffective anti-freezing measures in some orchards, many fruit trees are damaged by freezing, accounting for about 20% of the total number of fruit trees, causing great economic losses to fruit farmers. Therefore, in winter, it is necessary to use heat preservation devices to protect fruit trees.

[0003] At present, most heat preservation devices wrap the trunks of fruit trees. By winding the main trunks of fruit trees with wheat straw, straw ropes or cloth bags, the effect of heat preservation can be achieved. However, there will be rain and snow weather in winter, and the rain or snow generated will fall on these heat preservation devices, and then the heat preservation devices such as wheat straw, straw ropes or cloth bags will be wetted. Then, these wetted heat preservation devices will freeze due to low temperature, which will reduce the heat preservation effect of the frozen heat preservation devices, and then cause the fruit trees to be frozen and damaged, resulting in greater economic losses. Content of the Utility Model

[0004] (1) Technical Problems to be Solved

[0005] In view of the deficiencies of the prior art, the utility model provides a winter heat preservation device for fruit tree planting, which has the function of heat preservation for fruit trees and can also avoid the heat preservation device from being wetted by rain and snow and then frozen, thus ensuring the heat preservation effect of the heat preservation device, avoiding the situation of fruit trees being frozen and damaged, and avoiding economic losses.

[0006] (2) Technical Solutions

[0007] To achieve the above purpose, the utility model provides the following technical solution: a winter heat preservation device for fruit tree planting, including heat preservation clamping blocks, a connecting rotating shaft is rotatably connected between the two heat preservation clamping blocks, and the two heat preservation clamping blocks are rotatably connected through the connecting rotating shaft;

[0008] Fixed blocks are fixedly connected to the front sides of the two heat preservation clamping blocks, and inserting grooves are opened on the upper sides of the two fixed blocks;

[0009] Inserting rods are arranged inside the two inserting grooves, and the upper ends of the two inserting rods extend out of the upper sides of the fixed blocks;

[0010] The upper ends of the two plug-in rods are fixedly connected with a connecting block, and a pick-up and release groove is provided on the left side of the connecting block. The two heat-insulating clamping blocks are provided with heat-insulating mechanisms inside, and the clamped fruit trees can be heat-insulated and protected by the two heat-insulating mechanisms. The connection structures of the two heat-insulating mechanisms are the same and symmetrically arranged;

[0011] The heat preservation mechanism comprises a connecting groove, a heat preservation groove, a rubber-plastic heat preservation plate, a rubber sealing block, a clamping groove and a transparent irradiation plate.

[0012] Preferably, the connecting groove is provided on the upper side of the heat-insulating clamping block, the bottom wall of the connecting groove extends out of the lower side of the heat-insulating clamping block, and the heat-insulating groove is provided on the inner wall of the connecting groove.

[0013] Preferably, the rubber-plastic insulation board is arranged inside the insulation tank, and the inner diameter of the rubber-plastic insulation board is smaller than the inner diameter of the insulation tank.

[0014] Preferably, the rubber sealing block is fixedly connected to the upper side of the heat-insulating clamping block, and the shape of the rubber sealing block is an inclined frustum;

[0015] The clamping groove is arranged inside the rubber sealing block, and the top wall of the clamping groove extends out of the upper side of the rubber sealing block.

[0016] Preferably, the bottom wall of the clamping groove extends out of the lower side of the rubber sealing block, and the inner diameter of the clamping groove is also smaller than the inner diameter of the connecting groove.

[0017] Preferably, the transparent irradiation plate is fixedly connected to the outer surface of the heat-insulating clamping block, and the inner surface of the transparent irradiation plate extends into the interior of the heat-insulating tank.

[0018] (III) Beneficial effects

[0019] Compared with the prior art, the utility model provides a winter heat preservation device for fruit tree planting, which has the following beneficial effects:

[0020] (1) The winter heat preservation device for fruit tree planting has two heat preservation clamping blocks wrapped around the outer surface of the tree trunk, and then two rubber-plastic heat preservation boards will wrap around the outer surface of the tree trunk. After the two heat preservation clamping blocks are closed, the staff will insert two plug-in rods into the two plug-in grooves for limit fixing. Because the inner diameter of the rubber-plastic heat preservation board is smaller than the inner diameter of the heat preservation groove, and the inner diameter of the clamping groove is also smaller than the inner diameter of the connecting groove, the inner surfaces of the two rubber-plastic heat preservation boards and the two rubber sealing blocks will all exceed the inner surface of the connecting groove, and then the two rubber-plastic heat preservation boards and the two rubber sealing blocks will be tightly attached to the outer surface of the tree trunk. At the same time, the inclined truncated cone-shaped rubber sealing block will make the rain and snow falling on its upper side slide off, thereby preventing the rain and snow water from flowing into the interior of the heat preservation device. In this way, while the fruit trees are kept warm, the heat preservation device can also be prevented from being wetted by rain and snow and then frozen, thereby ensuring the heat preservation effect of the heat preservation device, preventing the fruit trees from being frozen, and avoiding economic losses.

[0021] (2) The winter heat preservation device for fruit tree planting. The transparent irradiation plate made of transparent material allows sunlight to shine through it onto the rubber and plastic heat preservation plate during the day. As a result, the rubber and plastic heat preservation plate absorbs heat and warms up due to the sunlight irradiation, thereby improving the heat preservation effect of the heat preservation device. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a schematic structural diagram of a winter heat preservation device for fruit tree planting according to the present utility model;

[0023] Figure 2 is a schematic connection structure diagram of the heat preservation device in the open state according to the present utility model;

[0024] Figure 3 is Figure 2 an enlarged schematic view of part A of

[0025] In the figure: 1, heat preservation clamping block; 2, connecting rotating shaft; 3, connecting groove; 4, fixing block; 5, inserting groove; 6, inserting rod; 7, connecting block; 8, taking and placing groove; 9, heat preservation groove; 10, rubber and plastic heat preservation plate; 11, rubber sealing block; 12, clamping groove; 13, transparent irradiation plate. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0026] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0027] Please refer to Figures 1 to 3 , the present utility model provides a new technical solution: a winter heat preservation device for fruit tree planting, including two heat preservation clamping blocks 1. A connecting rotating shaft 2 is rotatably connected between the two heat preservation clamping blocks 1. The two heat preservation clamping blocks 1 are rotatably connected through the connecting rotating shaft 2. Fixed blocks 4 are fixedly connected to the front sides of the two heat preservation clamping blocks 1. Inserting grooves 5 are opened on the upper sides of the two fixed blocks 4. Inserting rods 6 are arranged inside the two inserting grooves 5. The upper ends of the two inserting rods 6 extend out of the upper sides of the fixed blocks 4. The upper ends of the two inserting rods 6 are fixedly connected to a connecting block 7. A taking and placing groove 8 is opened on the left side of the connecting block 7. Heat preservation mechanisms are arranged inside the two heat preservation clamping blocks 1. The two heat preservation mechanisms can provide heat preservation protection for the clamped fruit trees. The connection structures of the two heat preservation mechanisms are the same and are symmetrically arranged. Taking one of the heat preservation mechanisms on the lower side as the main body for description, the heat preservation mechanism includes a connecting groove 3, a heat preservation groove 9, a rubber and plastic heat preservation plate 10, a rubber sealing block 11, a clamping groove 12 and a transparent irradiation plate 13.

[0028] Furthermore, the connecting groove 3 is opened on the upper side of the heat preservation clamping block 1, and the bottom wall of the connecting groove 3 extends out of the lower side of the heat preservation clamping block 1. The heat preservation groove 9 is opened on the inner wall of the connecting groove 3. The rubber and plastic heat preservation board 10 is arranged inside the heat preservation groove 9. The inner diameter of the rubber and plastic heat preservation board 10 is smaller than the inner diameter of the heat preservation groove 9. The rubber sealing block 11 is fixedly connected to the upper side of the heat preservation clamping block 1. The shape of the rubber sealing block 11 is an inclined frustum. The clamping groove 12 is opened inside the rubber sealing block 11. The top wall of the clamping groove 12 extends out of the upper side of the rubber sealing block 11, and the bottom wall of the clamping groove 12 extends out of the lower side of the rubber sealing block 11. The inner diameter of the clamping groove 12 is also smaller than the inner diameter of the connecting groove 3. The transparent irradiation plate 13 is fixedly connected to the outer surface of the heat preservation clamping block 1. The inner surface of the transparent irradiation plate 13 extends into the inside of the heat preservation groove 9. The transparent irradiation plate 13 is made of transparent material.

[0029] Furthermore, when starting to work, the staff opens the two heat preservation clamping blocks 1. The two heat preservation clamping blocks 1 rotate around the connecting rotating shaft 2 as the center, and then the two heat preservation clamping blocks 1 will drive the two rubber sealing blocks 11 to rotate synchronously. Subsequently, the two rubber and plastic heat preservation boards 10 are placed inside the two heat preservation grooves 9. Then, the heat preservation clamping blocks 1 are placed on the trunk of the fruit tree. Subsequently, the two heat preservation clamping blocks 1 are closed, and then the two heat preservation clamping blocks 1 will wrap around the outer surface of the trunk. After that, the two rubber and plastic heat preservation boards 10 will wrap around the outer surface of the trunk. After the two heat preservation clamping blocks 1 are closed, the staff drives the two inserting rods 6 to move through the connecting block 7, and then inserts the two inserting rods 6 into the two inserting grooves 5. Because the upper ends of the two inserting rods 6 are fixedly connected to the connecting block 7, the two inserting rods 6 will limit and fix the two fixing blocks 4, and then the two fixing blocks 4 will respectively limit and fix the two heat preservation clamping blocks 1.

[0030] Furthermore, because the inner diameter of the rubber and plastic heat preservation board 10 is smaller than the inner diameter of the heat preservation groove 9, and the inner diameter of the clamping groove 12 is also smaller than the inner diameter of the connecting groove 3, the inner surfaces of the two rubber and plastic heat preservation boards 10 and the two rubber sealing blocks 11 will exceed the inner surface of the connecting groove 3. Then, the two rubber and plastic heat preservation boards 10 and the two rubber sealing blocks 11 will be tightly attached to the outer surface of the trunk. At the same time, the inclined frustum-shaped rubber sealing block 11 will make the rain and snow falling on its upper side slide off, preventing the rain and snow from flowing into the inside of the heat preservation device. At the same time, the transparent irradiation plate 13 made of transparent material will make the sunlight shine through the transparent irradiation plate 13 onto the rubber and plastic heat preservation board 10 during the day. Then, the rubber and plastic heat preservation board 10 will absorb heat and increase in temperature due to the sunlight irradiation, thereby improving the heat preservation effect of the heat preservation device. In this way, while insulating the fruit tree, it can also prevent the heat preservation device from being wetted by rain and snow and then freezing, thereby ensuring the heat preservation effect of the heat preservation device and avoiding the situation of the fruit tree being frozen and damaged and avoiding economic losses.

[0031] Working principle: When starting to work, the staff opens the two heat-insulating clamping blocks 1. The two heat-insulating clamping blocks 1 rotate around the connecting rotating shaft 2 as the center. Then, the two heat-insulating clamping blocks 1 drive the two rubber sealing blocks 11 to rotate synchronously. Subsequently, the two rubber and plastic heat-insulating boards 10 are placed inside the two heat-insulating grooves 9. Then, the heat-insulating clamping blocks 1 are placed on the trunk of the fruit tree. Subsequently, the two heat-insulating clamping blocks 1 are closed. Then, the two heat-insulating clamping blocks 1 will wrap around the outer surface of the trunk. After that, the two rubber and plastic heat-insulating boards 10 will wrap around the outer surface of the trunk. After the two heat-insulating clamping blocks 1 are closed, the staff drives the two plugging rods 6 to move through the connecting block 7. Then, the two plugging rods 6 are inserted into the two plugging slots 5. Since the upper ends of the two plugging rods 6 are fixedly connected to the connecting block 7, the two plugging rods 6 will limit and fix the two fixing blocks 4. Then, the two fixing blocks 4 will respectively limit and fix the two heat-insulating clamping blocks 1.

[0032] Furthermore, since the inner diameter of the rubber and plastic heat-insulating board 10 is smaller than the inner diameter of the heat-insulating groove 9, and the inner diameter of the clamping groove 12 is also smaller than the inner diameter of the connecting groove 3, the inner surfaces of the two rubber and plastic heat-insulating boards 10 and the two rubber sealing blocks 11 will all extend beyond the inner surface of the connecting groove 3. Then, the two rubber and plastic heat-insulating boards 10 and the two rubber sealing blocks 11 will closely adhere to the outer surface of the trunk. At the same time, the inclined frustum-shaped rubber sealing block 11 will make the rain and snow falling on its upper side slide off, preventing the rain and snow from flowing into the interior of the heat-insulating device. At the same time, the transparent irradiation plate 13 made of transparent material will enable sunlight to shine through the transparent irradiation plate 13 onto the rubber and plastic heat-insulating board 10 during the day. Then, the rubber and plastic heat-insulating board 10 will absorb heat and increase in temperature due to the sunlight irradiation, thereby improving the heat-insulating effect of the heat-insulating device.

[0033] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A winter heat preservation device for fruit tree planting, comprising two heat preservation clamping blocks (1), a connecting rotating shaft (2) is rotatably connected between the two heat preservation clamping blocks (1), and the two heat preservation clamping blocks (1) are rotatably connected through the connecting rotating shaft (2); Fixed blocks (4) are fixedly connected to the front sides of the two heat preservation clamping blocks (1), and inserting grooves (5) are formed in the upper sides of the two fixed blocks (4); Inserting rods (6) are arranged inside the two inserting grooves (5), and the upper ends of the two inserting rods (6) extend out of the upper sides of the fixed blocks (4); The upper ends of two plugging rods (6) are fixedly connected with a connecting block (7), and a placing and taking groove (8) is formed on the left side of the connecting block (7), and the features are that: Heat preservation mechanisms are arranged inside the two heat preservation clamping blocks (1). Through the two heat preservation mechanisms, heat preservation protection can be carried out on the clamped fruit trees. The connection structures of the two heat preservation mechanisms are the same and are symmetrically arranged; The heat preservation mechanism comprises a connection groove (3), a heat preservation groove (9), a rubber and plastic heat preservation board (10), a rubber sealing block (11), a clamping groove (12) and a transparent irradiation board (13).

2. The winter heat preservation device for fruit tree planting according to claim 1, characterized in that: The connection groove (3) is opened on the upper side of the heat preservation clamping block (1), and the bottom wall of the connection groove (3) extends out of the lower side of the heat preservation clamping block (1), and the heat preservation groove (9) is opened on the inner wall of the connection groove (3).

3. The winter heat preservation device for fruit tree planting according to claim 1, wherein: The rubber and plastic heat preservation board (10) is arranged inside the heat preservation groove (9), and the inner diameter of the rubber and plastic heat preservation board (10) is smaller than the inner diameter of the heat preservation groove (9).

4. The winter heat preservation device for fruit tree planting according to claim 1, wherein: The rubber sealing block (11) is fixedly connected to the upper side of the heat preservation clamping block (1), and the shape of the rubber sealing block (11) is an inclined frustum of a cone; The clamping groove (12) is opened inside the rubber sealing block (11), and the top wall of the clamping groove (12) extends out of the upper side of the rubber sealing block (11).

5. The winter heat preservation device for fruit tree planting according to claim 4, characterized in that: The bottom wall of the clamping groove (12) extends out of the lower side of the rubber sealing block (11), and the inner diameter of the clamping groove (12) is also smaller than the inner diameter of the connection groove (3).

6. The winter heat preservation device for fruit tree planting according to claim 1, characterized in that: The transparent irradiation board (13) is fixedly connected to the outer surface of the heat preservation clamping block (1), and the inner surface of the transparent irradiation board (13) extends into the inside of the heat preservation groove (9).