CN216982566U - Forestry is planted and is put with nutrition liquid droplet irrigation - Google Patents

Forestry is planted and is put with nutrition liquid droplet irrigation Download PDF

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Publication number
CN216982566U
CN216982566U CN202220795898.6U CN202220795898U CN216982566U CN 216982566 U CN216982566 U CN 216982566U CN 202220795898 U CN202220795898 U CN 202220795898U CN 216982566 U CN216982566 U CN 216982566U
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CN
China
Prior art keywords
drip irrigation
sleeve
infusion
protective
infusion tube
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Expired - Fee Related
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CN202220795898.6U
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Chinese (zh)
Inventor
王宗伟
吕森
忻富宁
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Individual
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Individual
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Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a nutrient droplet irrigation device for forestry planting, and relates to the technical field of forestry planting equipment. It comprises an infusion tube and a protective sleeve; the side wall of the protective sleeve is provided with a mounting opening; a flow regulator is fixedly arranged in the mounting port; the outer wall of the protective sleeve is in interference insertion connection with a connecting sleeve; the bottom of the connecting sleeve is fixedly connected with a conical propelling head; drip irrigation holes are uniformly formed in the outer wall of the drip irrigation sleeve; drip irrigation sponge is filled between the connecting sleeve and the drip irrigation sleeve; one end of the infusion tube is communicated with a connecting cap; the infusion tube passes through the flow regulator in the protective sleeve. The utility model has the beneficial effects that: after the infusion tube is connected with the drip irrigation sleeve, the connection sleeve is inserted into soil to start drip irrigation operation, the support net and the drip irrigation sponge are inserted into the process to prevent the soil from blocking the drip irrigation sleeve, so that the drip irrigation operation is smooth and reliable, the drip irrigation amount is adjusted through the flow regulator, and the drip irrigation device is flexible and convenient to use.

Description

Forestry is planted and is put with nutrition liquid droplet irrigation
Technical Field
The utility model relates to the technical field of forestry planting equipment.
Background
When carrying out forestry planting, the plant needs various nourishments, and can cause the influence to the growth of plant when lacking the nourishment in soil, consequently need carry out the replenishment of nutrient solution to soil, and nutrient solution concentration is higher consequently need drip irrigation to it, and when tradition inserts the syringe needle and drips irrigation in soil, causes the jam and influence the use to the syringe needle easily, uses and has the limitation.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem and provides a nutrient drip irrigation device for forestry planting aiming at the technical defects. After the infusion tube is connected with the drip irrigation sleeve, the connection sleeve is inserted into soil to start drip irrigation operation, the support net and the drip irrigation sponge are inserted into the process to prevent the soil from blocking the drip irrigation sleeve, so that the drip irrigation operation is smooth and reliable, the drip irrigation amount is adjusted through the flow regulator, and the drip irrigation device is flexible and convenient to use.
The technical scheme adopted by the utility model is as follows: the nutrient solution drip irrigation device for forestry planting comprises a liquid conveying pipe and a protective sleeve; the side wall of the protective casing is provided with a mounting opening; a flow regulator is fixedly arranged in the mounting port; the outer wall of the protective sleeve is in interference insertion connection with a connecting sleeve; the outer side wall of the connecting sleeve is uniformly provided with mounting windows along the circumferential direction; supporting nets are fixedly arranged in the mounting windows; the bottom of the connecting sleeve is fixedly connected with a conical propelling head; a drip irrigation sleeve is coaxially arranged in the connecting sleeve and is fixedly connected and matched with the propelling head; drip irrigation holes are uniformly formed in the outer wall of the drip irrigation sleeve; drip irrigation sponge is filled between the connecting sleeve and the drip irrigation sleeve;
one end of the infusion tube is communicated with a connecting cap; the other end of the infusion tube passes through the protective sleeve and is communicated and matched with the drip irrigation sleeve; the infusion tube passes through the flow regulator in the protective sleeve.
Further optimizing the technical scheme, the infusion tube of the nutrient solution drop irrigation device for forestry planting comprises a first infusion hose and a second infusion hose; the first infusion hose and the second infusion hose are connected and matched through a pipe joint; the connecting cap is communicated and matched with the first infusion hose; the second infusion hose passes through the protective sleeve and is communicated with the drip irrigation sleeve, and the second infusion hose passes through the flow regulator in the protective sleeve.
Further optimizing the technical scheme, the pipe joint of the nutrient drip irrigation device for forestry planting is a multi-way joint; the first transfusion hose is connected with a plurality of second transfusion hoses through a multi-way connector.
Further optimizes the technical proposal that a protective spring is sleeved on the outer wall of the infusion tube of the nutrient solution drip irrigation device for forestry planting.
Further optimizes the technical scheme, and a handle ring is fixedly sleeved at the top of the side wall of the connecting sleeve of the nutrient liquid droplet irrigation device for forestry planting.
The utility model has the beneficial effects that:
1. when the device is used for carrying out nutrient solution drip irrigation, the infusion tube is communicated with the nutrient solution through the connecting cap, then the infusion tube penetrates into the protective sleeve, penetrates through the flow regulator and then penetrates out of the protective sleeve to be spliced with the drip irrigation sleeve, and after the connecting sleeve is spliced and connected with the protective sleeve, the connecting sleeve is inserted into soil to carry out drip irrigation operation on plants, so that the operation is convenient and fast;
2. when the connecting sleeve is inserted into soil through the handle ring, the conical structure of the pushing head at the bottom of the connecting sleeve is small in resistance, so that the process of driving the connecting sleeve to be inserted into the soil is smoother and labor-saving, the supporting net on the outer wall of the connecting sleeve and the drip irrigation sponge filled between the connecting sleeve and the drip irrigation sleeve are prevented from blocking the drip irrigation sleeve by the soil in the inserting process, and the use reliability is improved;
after the connecting sleeve is inserted to a proper position, nutrient solution is conveyed into the drip irrigation sleeve along the infusion tube, is absorbed by the drip irrigation sponge through the drip irrigation holes and is diffused into soil through the supporting net to carry out drip irrigation operation on plants, and the drip irrigation amount is controlled through the flow regulator during drip irrigation, so that the operation is convenient and fast, and the use flexibility is improved;
in the drip irrigation process, the protection spring sleeved on the outer wall of the infusion tube prevents the infusion tube from being damaged due to exposure to the external environment, and the protection spring does not influence bending and the like of the infusion tube, so that the use safety and reliability are improved;
3. when drip irrigation operation is carried out on a plurality of positions of a plant, a first infusion hose is taken to be communicated with nutrient solution through a connecting cap, a second infusion hose is communicated with the first infusion hose through multi-way communication, protective sleeves with corresponding quantity are taken according to the quantity of the second infusion hoses and are made to penetrate into the protective sleeves respectively, the protective sleeves penetrate through a flow regulator and then penetrate out of the protective sleeves to be communicated with drip irrigation sleeves respectively, and then the connecting sleeves are inserted into proper positions in soil respectively to carry out drip irrigation operation, so that the use is more flexible and diversified;
4. after the operation of driping irrigation, take connecting sleeve out in following soil to split protective sleeve and connecting sleeve afterwards in order to retrieve it and used repeatedly, improve the utilization ratio, and change the sponge of driping irrigation that it was filled in when carrying out used repeatedly to connecting sleeve, use cost is low, and the guarantee is used smoothly and the reliability.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the multiple location drip irrigation configuration of the present invention;
FIG. 3 is a schematic view of the protective sleeve and connecting sleeve construction of the present invention;
fig. 4 is a schematic cross-sectional structure of the connecting sleeve of the present invention.
In the figure, 1, an infusion tube; 2. a protective sleeve; 3. an installation port; 4. a flow regulator; 5. connecting a sleeve; 6. installing a window; 7. a support net; 8. a pusher head; 9. a drip irrigation sleeve; 10. drip irrigation holes; 11. drip irrigation sponge; 12. a connecting cap; 13. a first infusion hose; 14. a second infusion hose; 15. a pipe joint; 16. a guard spring; 17. a handle ring.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1-4, a nutrient solution drip irrigation device for forestry planting comprises a transfusion tube 1 and a protective sleeve 2; the side wall of the protective sleeve 2 is provided with a mounting opening 3; a flow regulator 4 is fixedly arranged in the mounting port 3; the outer wall of the protective sleeve 2 is in interference insertion connection with a connecting sleeve 5; the outer side wall of the connecting sleeve 5 is uniformly provided with mounting windows 6 along the circumferential direction; the mounting windows 6 are all fixedly provided with a supporting net 7; the bottom of the connecting sleeve 5 is fixedly connected with a conical propelling head 8; a drip irrigation sleeve 9 is coaxially arranged in the connecting sleeve 5, and the drip irrigation sleeve 9 is fixedly connected and matched with the propelling head 8; drip irrigation holes 10 are uniformly formed in the outer wall of the drip irrigation sleeve 9; drip irrigation sponge 11 is filled between the connecting sleeve 5 and the drip irrigation sleeve 9; one end of the infusion tube 1 is communicated with a connecting cap 12; the other end of the infusion tube 1 passes through the protective sleeve 2 and is communicated and matched with the drip irrigation sleeve 9; the infusion tube 1 passes through the flow regulator 4 in the protective sleeve 2; the infusion tube 1 comprises a first infusion hose 13 and a second infusion hose 14; the first infusion hose 13 is connected and matched with the second infusion hose 14 through a pipe joint 15; the connecting cap 12 is communicated and matched with the first infusion hose 13; the second infusion hose 14 passes through the protective sleeve 2 to be communicated with the drip irrigation sleeve 9, and the second infusion hose 14 passes through the flow regulator 4 in the protective sleeve 2; the pipe joint 15 is a multi-way joint; the first transfusion hose 13 is connected with a plurality of second transfusion hoses 14 through multi-way joints; the outer wall of the infusion tube 1 is sleeved with a protective spring 16; the top of the side wall of the connecting sleeve 5 is fixedly sleeved with a handle ring 17.
When the device is used for carrying out nutrient solution drip irrigation, the infusion tube 1 is taken to penetrate into the protective sleeve 2 and penetrate out of the protective sleeve 2 after penetrating through the flow regulator 4 arranged in the protective sleeve 2, then the penetrated infusion tube 1 is spliced with the drip irrigation sleeve 9 in the connecting sleeve 5, then the connecting sleeve 5 is spliced with the protective sleeve 2 in an interference manner, and then the infusion tube 1 is connected with a bag or a bottle storing nutrient solution through the connecting cap 12 to start drip irrigation operation;
after the liquid conveying pipe 1 is communicated with the nutrient solution, the connecting sleeve 5 is inserted into soil of a plant root system to be drip-irrigated through the handle ring 17, the conical structure of the propelling head 8 arranged at the bottom of the connecting sleeve 5 is small in resistance, so that the process that the connecting sleeve 5 is inserted into the soil is driven to be smoother and more labor-saving, the supporting net 7 on the outer wall of the connecting sleeve 5 and the drip irrigation sponge 11 filled between the connecting sleeve 5 and the drip irrigation sleeve 9 prevent the soil from blocking the drip irrigation sleeve 9 in the inserting process, therefore, after the connecting sleeve 5 is inserted to a proper position, the nutrient solution flows into the drip irrigation sleeve 9 along the liquid conveying pipe 1, is absorbed by the drip irrigation sponge 11 through the drip irrigation holes 10 and is diffused into the soil through the supporting net 7, so as to carry out drip irrigation operation on the plant, and in the drip irrigation amount is controlled through the flow regulator 4 in the drip irrigation process, the operation is convenient and fast, the use flexibility is improved, and in the drip irrigation process, the protective spring 16 sleeved on the outer wall of the infusion tube 1 prevents the infusion tube 1 from being exposed in the external environment to cause damage, so that the use safety and reliability are improved;
when drip irrigation operation is required to be carried out on a plurality of positions of plants, a first infusion hose 13 is connected with a bag or a bottle storing nutrient solution through a connecting cap 12, then a second infusion hose 14 is respectively communicated with the first infusion hose 13 through a multi-way connector, and protective sleeves 2 with corresponding quantity are taken according to the quantity of the second infusion hoses 14, so that the second infusion hoses 14 penetrate into the protective sleeves 2, respectively penetrate through a flow regulator 4 and then penetrate out of the protective sleeves 2 to be respectively communicated with drip irrigation sleeves 9 in connecting sleeves 5, then the connecting sleeves 5 are respectively connected with the protective sleeves 2, and then the connecting sleeves 5 are respectively inserted to proper positions to carry out drip irrigation operation;
and after the operation of driping irrigation, take connecting sleeve 5 out in the soil to with protecting sleeve 2 and connecting sleeve 5 split and retrieve it respectively in order to its used repeatedly, improve the device utilization ratio, and change the sponge 11 of driping irrigation that fills in when carrying out used repeatedly to connecting sleeve 5, use cost is low, and improves and use smoothness nature and reliability.

Claims (5)

1. The utility model provides a forestry is planted and is used nutrition liquid drip irrigation device which characterized in that: comprises an infusion tube (1) and a protective sleeve (2); the side wall of the protective sleeve (2) is provided with a mounting opening (3); a flow regulator (4) is fixedly arranged in the mounting port (3); the outer wall of the protective sleeve (2) is inserted with a connecting sleeve (5) in an interference manner; the outer side wall of the connecting sleeve (5) is uniformly provided with mounting windows (6) along the circumferential direction; supporting nets (7) are fixedly arranged in the mounting windows (6); the bottom of the connecting sleeve (5) is fixedly connected with a conical propelling head (8); a drip irrigation sleeve (9) is coaxially arranged in the connecting sleeve (5), and the drip irrigation sleeve (9) is fixedly connected and matched with the propelling head (8); drip irrigation holes (10) are uniformly formed in the outer wall of the drip irrigation sleeve (9); drip irrigation sponge (11) is filled between the connecting sleeve (5) and the drip irrigation sleeve (9);
one end of the infusion tube (1) is communicated with a connecting cap (12); the other end of the transfusion tube (1) passes through the protective sleeve (2) and is communicated and matched with the drip irrigation sleeve (9); the infusion tube (1) passes through the flow regulator (4) in the protective sleeve (2).
2. The nutrient drip irrigation device for forestry planting according to claim 1, wherein: the infusion tube (1) comprises a first infusion hose (13) and a second infusion hose (14); the first infusion hose (13) and the second infusion hose (14) are connected and matched through a pipe joint (15); the connecting cap (12) is communicated and matched with the first infusion hose (13); the second infusion hose (14) passes through the protective sleeve (2) and is connected with the drip irrigation sleeve (9), and the second infusion hose (14) passes through the flow regulator (4) in the protective sleeve (2).
3. The nutrient drip irrigation device for forestry planting according to claim 2, wherein: the pipe joint (15) is a multi-way joint; the first infusion hose (13) is connected with a plurality of second infusion hoses (14) through multi-way joints.
4. The nutrient drip irrigation device for forestry planting according to claim 1, wherein: the outer wall of the infusion tube (1) is sleeved with a protective spring (16).
5. The nutrient drip irrigation device for forestry planting according to claim 2, wherein: a handle ring (17) is fixedly sleeved at the top of the side wall of the connecting sleeve (5).
CN202220795898.6U 2022-04-07 2022-04-07 Forestry is planted and is put with nutrition liquid droplet irrigation Expired - Fee Related CN216982566U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220795898.6U CN216982566U (en) 2022-04-07 2022-04-07 Forestry is planted and is put with nutrition liquid droplet irrigation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220795898.6U CN216982566U (en) 2022-04-07 2022-04-07 Forestry is planted and is put with nutrition liquid droplet irrigation

Publications (1)

Publication Number Publication Date
CN216982566U true CN216982566U (en) 2022-07-19

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220795898.6U Expired - Fee Related CN216982566U (en) 2022-04-07 2022-04-07 Forestry is planted and is put with nutrition liquid droplet irrigation

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116349467A (en) * 2023-03-02 2023-06-30 沂源县林业保护发展中心(沂源县野生动植物资源保护中心、沂源县绿化委员会保障中心) Forestry engineering is grown seedlings and is used automatic humidification device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116349467A (en) * 2023-03-02 2023-06-30 沂源县林业保护发展中心(沂源县野生动植物资源保护中心、沂源县绿化委员会保障中心) Forestry engineering is grown seedlings and is used automatic humidification device
CN116349467B (en) * 2023-03-02 2023-08-04 沂源县林业保护发展中心(沂源县野生动植物资源保护中心、沂源县绿化委员会保障中心) Forestry engineering is grown seedlings and is used automatic humidification device

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20220719

CF01 Termination of patent right due to non-payment of annual fee