Forestry tree infusion auxiliary device
Through multi-node clamping and elastic structure U-shaped top plate connected to the trunk, the problem of easy sliding of existing devices is solved, and the stable installation of forestry tree infusion devices and the fixation of nutrition bags is realized.
Patent Information
- Application Number
- CN202422479928.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-14
AI Technical Summary
The fixing ring connection of the existing forestry tree infusion device is a fixed connection, which cannot guarantee the fit with the tree trunk and is prone to slide off the tree trunk, resulting in unstable position of the nutrition bag.
Multiple U-shaped top plates are clamped with the tree trunk, combined with the spring and guide slide bar structure, through the plug-in connection between the U-shaped fixing rod and the L-shaped fixing rod, the main fixing ring and the secondary rotating ring are rotatable and movable, and the stability of the device is improved by elastic deformation.
Ensure that the position of the nutrient bag on the trunk is more stable, prevent the device from sliding down under gravity, avoid damage to the trunk, and improve the installation firmness of the device.
Smart Images

Figure CN223168760U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of forestry tree infusion, in particular to a forestry tree infusion auxiliary device. Background Art
[0002] An existing patent (publication number: CN215011856U) proposes a tree infusion auxiliary device for forestry, including a box body, a compression spring fixed between the inner wall of the circular groove and the inner wall of the box body, a box cover provided above the box body, two sliders symmetrically fixed to the inner walls on both sides of the box cover, a slide groove provided on the outer wall of the box body relative to the position of the slider, and a guide groove provided on the upper end of the inner side wall of the splint. However, the connection of the fixing ring of this device is a fixed connection, which cannot ensure the fit between the inside of the fixing ring and the tree trunk, and the device is easy to slip off the tree trunk. Summary of the Invention
[0003] In response to the above-mentioned deficiencies in the prior art, the present invention provides a forestry tree infusion auxiliary device which is clamped by multiple U-shaped top plates and multi-nodes on the tree trunk, thereby making the installation of the device on the tree trunk more secure, preventing the device from falling from the tree trunk under the action of gravity of the entire device during forestry tree infusion, and thereby ensuring the position of the nutrient bag on the tree trunk.
[0004] The purpose of this utility model is achieved through the following technical solutions:
[0005] A forestry tree infusion auxiliary device includes a main fixed ring, a side containing bucket, a secondary rotating ring, a U-shaped fixing rod, an L-shaped fixing rod, a U-shaped top plate, an anti-drop fixing block, a U-shaped fixing plate, a guide slide rod, and a spring. The side of the main fixed ring has a side containing bucket, the bottom of the side containing bucket has a dropper clearance hole, the nutrient solution bag is placed in the side containing bucket, the dropper passes through the dropper clearance hole, the right side of the secondary rotating ring has a secondary rotating ring right sleeve, the secondary rotating ring right sleeve has a right sleeve inner hole, the U-shaped fixing rod and the right sleeve are connected. The inner hole is adapted to each other, the U-shaped fixing rod is inserted into the inner hole of the right sleeve, the U-shaped fixing rod slides in the inner hole of the right sleeve, the right sleeve of the secondary rotating ring rotates on the outside of the U-shaped fixing rod, the U-shaped fixing rod is connected to the main fixing ring, the inner side of the main fixing ring fits with the trunk, the L-shaped fixing rod is connected to the main fixing ring, the side of the secondary rotating ring has a secondary rotating ring left sleeve, the secondary rotating ring left sleeve has a left sleeve inner hole, the L-shaped fixing rod is adapted to the left sleeve inner hole, the L-shaped fixing rod is inserted into the left sleeve inner hole, and the L-shaped fixing rod slides in the left sleeve inner hole.
[0006] The secondary rotating ring has multiple positioning sliding holes, the U-shaped top plate is adapted to the positioning sliding holes, the U-shaped top plate is inserted into the positioning sliding holes, the U-shaped top plate slides in the positioning sliding holes, the side of the U-shaped top plate is provided with a top plate convex plate, the side of the U-shaped top plate is connected to the anti-slip fixing block, and a group of anti-slip fixing blocks are symmetrically arranged on the side of the U-shaped top plate.
[0007] The outer side of the auxiliary rotating ring is provided with a plurality of U-shaped fixing plates. The U-shaped fixing plates are provided with slide rod insertion holes. The guiding slide rod is connected to the convex plate of the top plate. The guiding slide rod is adapted to the slide rod insertion holes. The guiding slide rod is inserted into the slide rod insertion holes and slides in the slide rod insertion holes. The spring is sleeved on the guiding slide rod. One end of the spring abuts against the convex plate of the top plate, and the other end of the spring abuts against the U-shaped fixing plate.
[0008] The inner side surface of the convex plate of the top plate fits against the tree trunk. A plurality of U-shaped top plates are evenly distributed on the auxiliary rotating ring. The side surface of the U-shaped fixing plate fits against the anti-detachment fixing block. The anti-detachment fixing blocks are symmetrically arranged on both sides of the U-shaped fixing plate. Beneficial effects
[0009] 1. The right sleeve of the auxiliary rotating ring of the present utility model is sleeved on the U-shaped fixing rod. The U-shaped fixing rod is bent and fixedly connected to the main fixing ring. The U-shaped fixing rod positions the right sleeve of the auxiliary rotating ring, so that the side surface of the auxiliary rotating ring is axially connected to the main fixing ring, enabling the auxiliary rotating ring to rotate. At the same time, the length of the U-shaped fixing rod is relatively long, enabling the auxiliary rotating ring to move up and down. The L-shaped fixing rod is installed and fixed at the other end of the main fixing ring. The L-shaped fixing rod is inserted into the inner hole of the left sleeve, so that both ends of the auxiliary rotating ring are fixed at both ends of the main fixing ring. At the same time, this plug-in connection structure between the L-shaped fixing rod and the left sleeve of the auxiliary rotating ring enables the auxiliary rotating ring to move downward and slide the L-shaped fixing rod out of the inner hole of the left sleeve. At this time, the main fixing ring and the auxiliary rotating ring can be opened, and the device can be removed from the tree trunk. Both the main fixing ring and the auxiliary rotating ring are made of plastic material, and there is elastic deformation during use, making the position of the device on the tree trunk more stable.
[0010] 2. The present utility model places the nutrient bag in the side storage hopper for use. Compared with directly nailing the nutrient bag to the tree trunk with a pin, this placement method prevents damage to the tree trunk during forest tree infusion. At the same time, under the gravity of the nutrient solution connecting the main fixing ring, the main fixing ring and the auxiliary rotating ring are in a slightly inclined state when clamping on the tree trunk, with the auxiliary rotating ring placed above the inclined side. During forest tree infusion, when the auxiliary rotating ring slides downward, it prevents the L-shaped fixing rod from sliding out of the inner hole of the left sleeve, ensuring the connection state of the main fixing ring and the auxiliary rotating ring. The U-shaped top plate is inserted into the positioning slide hole, and the convex plate of the top plate and the anti-detachment fixing block cooperate to limit the U-shaped top plate. During forest tree infusion, it prevents the U-shaped top plate from sliding out of the positioning slide hole. The spring takes the guiding slide rod as the guide and the U-shaped fixing plate as the support to apply an elastic thrust to the convex plate of the top plate, making the side surface of the convex plate of the top plate closely adhere to the tree trunk. Through the multi-node clamping of the tree trunk by multiple U-shaped top plates, the installation of the device on the tree trunk is more firm. During forest tree infusion, it prevents the device from falling off the tree trunk under the gravity of the entire device, thereby ensuring the position of the nutrient bag on the tree trunk. Description of the drawings
[0011] Figure 1 It is a top view axonometric drawing of a forest tree infusion auxiliary device described in the present utility model.
[0012] Figure 2 A top view cross-sectional view of an auxiliary device for infusing forestry trees according to the present utility model.
[0013] Figure 3 An axonometric view from the bottom of an auxiliary device for infusing forestry trees according to the present utility model.
[0014] Figure 4 A front view cross-sectional view of an auxiliary device for infusing forestry trees according to the present utility model.
[0015] Figure 5 A top view of an auxiliary device for infusing forestry trees according to the present utility model. Specific implementation manners
[0016] The present utility model will be further described in detail below with reference to the accompanying drawings and embodiments:
[0017] Embodiment 1:
[0018] An auxiliary device for forestry tree infusion, comprising a main fixing ring 01, a side storage hopper 02, a secondary rotating ring 04, a U-shaped fixing rod 05, an L-shaped fixing rod 06, a U-shaped top plate 08, an anti-detachment fixing block 10, a U-shaped fixing plate 11, a guiding slide rod 12, and a spring 13. The side of the main fixing ring 01 is provided with a side storage hopper 02. The bottom of the side storage hopper 02 has a dropper passing hole 03. The nutrient solution bag is placed in the side storage hopper 02, and the dropper passes through the dropper passing hole 03. The right side of the secondary rotating ring 04 has a right sleeve 17 of the secondary rotating ring. The right sleeve 17 of the secondary rotating ring has a right inner hole 14. The U-shaped fixing rod 05 is adapted to the right inner hole 14. The U-shaped fixing rod 05 is inserted into the right inner hole 14. The U-shaped fixing rod 05 slides in the right inner hole 14. The right sleeve 17 of the secondary rotating ring rotates outside the U-shaped fixing rod 05. The U-shaped fixing rod 05 is connected to the main fixing ring 01. The right sleeve 17 of the secondary rotating ring is sleeved on the U-shaped fixing rod 05. The U-shaped fixing rod 05 is bent and fixedly connected to the main fixing ring 01. The U-shaped fixing rod 05 positions the right sleeve 17 of the secondary rotating ring, so that the side of the secondary rotating ring 04 is axially connected to the main fixing ring 01, making the secondary rotating ring 04 rotatable. At the same time, the length of the U-shaped fixing rod 05 is relatively long, so that the secondary rotating ring 04 can move up and down. The inner side of the main fixing ring 01 fits against the tree trunk. The L-shaped fixing rod 06 is connected to the main fixing ring 01. The L-shaped fixing rod 06 is installed and fixed at the other end of the main fixing ring 01. The side of the secondary rotating ring 04 has a left sleeve 07 of the secondary rotating ring. The left sleeve 07 of the secondary rotating ring has a left inner hole 15. The L-shaped fixing rod 06 is adapted to the left inner hole 15. The L-shaped fixing rod 06 is inserted into the left inner hole 15. The L-shaped fixing rod 06 slides in the left inner hole 15, so that both ends of the secondary rotating ring 04 are fixed at both ends of the main fixing ring 01. At the same time, this plug-in connection structure between the L-shaped fixing rod 06 and the left sleeve 07 of the secondary rotating ring enables the secondary rotating ring 04 to move downward and slide the L-shaped fixing rod 06 out of the left inner hole 15. At this time, the main fixing ring 01 and the secondary rotating ring 04 can be opened, and the device can be removed from the tree trunk. Both the main fixing ring 01 and the secondary rotating ring 04 are made of plastic material and have elastic deformation during use, making the position of the device on the tree trunk more stable. The nutrient bag is placed in the side storage hopper 02 for use. Compared with directly nailing the nutrient bag to the tree trunk with a pin, this placement method prevents damage to the tree trunk during forestry tree infusion. At the same time, under the gravity of the nutrient solution connecting to the main fixing ring 01, the main fixing ring 01 and the secondary rotating ring 04 are in a slightly inclined state when clamping on the tree trunk, with the secondary rotating ring 04 placed above the inclined plane, preventing the L-shaped fixing rod 06 from sliding out of the left inner hole 15 when the secondary rotating ring 04 slides downward during forestry tree infusion, and ensuring the connection state of the main fixing ring 01 and the secondary rotating ring 04.
[0019] Embodiment 2:
[0020] The auxiliary rotating ring 04 of the present utility model has a plurality of positioning sliding holes 18. The U-shaped top plate 08 is adapted to the positioning sliding holes 18. The U-shaped top plate 08 is inserted into the positioning sliding holes 18. The top plate convex plate 09 cooperates with the anti-slip fixing block 10 to limit the U-shaped top plate 08, preventing the U-shaped top plate 08 from sliding out of the positioning sliding holes 18 during the infusion of forest trees. The U-shaped top plate 08 slides in the positioning sliding holes 18. The side of the U-shaped top plate 08 has a top plate convex plate 09. The side of the U-shaped top plate 08 is connected with the anti-slip fixing block 10. A group of anti-slip fixing blocks 10 are symmetrically arranged on the side of the U-shaped top plate 08.
[0021] Embodiment 3:
[0022] The outer side of the auxiliary rotating ring 04 of the present utility model has a plurality of U-shaped fixing plates 11. The U-shaped fixing plates 11 have slide rod insertion holes 16. The guiding slide rod 12 is connected to the top plate convex plate 09. The guiding slide rod 12 is adapted to the slide rod insertion holes 16. The guiding slide rod 12 is inserted into the slide rod insertion holes 16. The guiding slide rod 12 slides in the slide rod insertion holes 16. The spring 13 is sleeved on the guiding slide rod 12. One end of the spring 13 abuts against the top plate convex plate 09, and the other end of the spring 13 abuts against the U-shaped fixing plate 11.
[0023] Embodiment 4:
[0024] The inner side of the top plate convex plate 09 of the present utility model is in contact with the tree trunk. A plurality of U-shaped top plates 08 are evenly distributed on the auxiliary rotating ring 04. The side of the U-shaped fixing plate 11 is in contact with the anti-slip fixing block 10. The anti-slip fixing blocks 10 are symmetrically arranged on both sides of the U-shaped fixing plate 11. The spring 13 exerts an elastic thrust on the top plate convex plate 09 with the guiding slide rod 12 as the guide and the U-shaped fixing plate 11 as the support, so that the side of the top plate convex plate 09 is in close contact with the tree trunk. Through the multi-node clamping of the tree trunk by a plurality of U-shaped top plates 08, the installation of the device on the tree trunk is more firm, preventing the device from falling off the tree trunk under the action of the gravity of the entire device during the infusion of forest trees, thereby ensuring the position of the nutrient bag on the tree trunk.
[0025] Embodiment 5:
[0026] Installation steps of the present utility model: First, connect the guiding slide rod 12 to the top plate convex plate 09, sleeve the spring 13 on the guiding slide rod 12, insert the U-shaped top plate 08 into the positioning sliding holes 18, insert the guiding slide rod 12 into the slide rod insertion holes 16, insert the U-shaped fixing rod 05 into the inner hole 14 of the right sleeve, bend the U-shaped fixing rod 05 and connect it to the main fixing ring 01, connect the L-shaped fixing rod 06 to the main fixing ring 01, insert the L-shaped fixing rod 06 into the inner hole 15 of the left sleeve, make the inner side of the top plate convex plate 09 in contact with the tree trunk, make the inner side of the main fixing ring 01 in contact with the tree trunk, place the nutrient bag in the side storage hopper 02, and make the dropper pass through the dropper relief hole 03.
[0027] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. An auxiliary device for tree infusion in forestry, characterized in that : It includes a main fixing ring (01), a side storage hopper (02), a secondary rotating ring (04), a U-shaped fixing rod (05), an L-shaped fixing rod (06), a U-shaped top plate (08), an anti-disengagement fixing block (10), a U-shaped fixing plate (11), a guiding slide rod (12), and a spring (13). The side of the main fixing ring (01) is provided with a side storage hopper (02). The bottom of the side storage hopper (02) has a dropper through-hole (03). The nutrient solution bag is placed in the side storage hopper (02). The dropper passes through the dropper through-hole (03). The right side of the secondary rotating ring (04) has a right sleeve of the secondary rotating ring (17). The right sleeve of the secondary rotating ring (17) has a right inner hole (14). The U-shaped fixing rod (05) is adapted to the right inner hole (14). The U-shaped fixing rod (05) is inserted into the right inner hole (14). The U-shaped fixing rod (05) slides in the right inner hole (14). The right sleeve of the secondary rotating ring (17) rotates outside the U-shaped fixing rod (05). The U-shaped fixing rod (05) is connected to the main fixing ring (01). The inner side of the main fixing ring (01) is in contact with the tree trunk. The L-shaped fixing rod (06) is connected to the main fixing ring (01). The side of the secondary rotating ring (04) has a left sleeve of the secondary rotating ring (07). The left sleeve of the secondary rotating ring (07) has a left inner hole (15). The L-shaped fixing rod (06) is adapted to the left inner hole (15). The L-shaped fixing rod (06) is inserted into the left inner hole (15). The L-shaped fixing rod (06) slides in the left inner hole (15).
2. The a kind of forestry tree infusion auxiliary device according to claim 1, characterized in that : The secondary rotating ring (04) has a plurality of positioning slide holes (18). The U-shaped top plate (08) is adapted to the positioning slide holes (18). The U-shaped top plate (08) is inserted into the positioning slide holes (18). The U-shaped top plate (08) slides in the positioning slide holes (18). The side of the U-shaped top plate (08) has a top plate convex plate (09). The side of the U-shaped top plate (08) is connected to the anti-disengagement fixing block (10). A group of anti-disengagement fixing blocks (10) are symmetrically arranged on the side of the U-shaped top plate (08).
3. The aforenamed auxiliary device for infusing forestry trees according to Claim 2 is characterized in that : The outside of the secondary rotating ring (04) has a plurality of U-shaped fixing plates (11). The U-shaped fixing plates (11) have slide rod insertion holes (16). The guiding slide rod (12) is connected to the top plate convex plate (09). The guiding slide rod (12) is adapted to the slide rod insertion holes (16). The guiding slide rod (12) is inserted into the slide rod insertion holes (16). The guiding slide rod (12) slides in the slide rod insertion holes (16).
4. The auxiliary device for infusing forestry trees according to claim 1 is characterized in that [[ID=?]]: The spring (13) is sleeved on the guiding slide rod (12). One end of the spring (13) abuts against the top plate convex plate (09). The other end of the spring (13) abuts against the U-shaped fixing plate (11). The inner side of the top plate convex plate (09) is in contact with the tree trunk. A plurality of U-shaped top plates (08) are evenly distributed on the secondary rotating ring (04). The side of the U-shaped fixing plate (11) is in contact with the anti-disengagement fixing block (10). The anti-disengagement fixing blocks (10) are symmetrically arranged on both sides of the U-shaped fixing plate (11). It should be noted that there seems to be a mistake in the ID in the last line. It should be instead of [[ID=?]].
Citation Information
Patent Citations
Tree infusion auxiliary device for forestry
CN215011856U