Double-motor needling glue taking device

Through the dual-motor needle-piercing rubber extraction device, the cooperation of the guide rail, the mounting part and the needle-piercing part is utilized to reduce the damage to the rubber tree bark, reduce the mortality rate of rubber trees, and improve the efficiency and safety of rubber extraction.

CN223349248UActive Publication Date: 2025-09-19NINGBO CIHEVEA TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422776630.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-09-19
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

In the prior art, traditional rubber tapping equipment is difficult to operate on rubber trees, consumes a large amount of bark, and easily causes damage to the bark, leading to the death of the rubber trees.

Method used

A dual-motor needle-piercing rubber extraction device is used, which includes a guide rail, a mounting part, an energy storage part and a needle-piercing part. The mounting part is supported and guided by the guide rail. The mounting part is used to protect and support the energy storage part and the needle-piercing part. The needle-piercing part pierces the rubber tree trunk after storing energy in the energy storage part, leaving a small hole-like wound on the surface of the trunk. The moving part is used to drive the needle-piercing part to move, change the punching position, and reduce damage to the bark.

Benefits of technology

It reduces the damage to rubber trees caused by tapping, reduces the mortality rate of rubber trees, and improves the efficiency and safety of rubber extraction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a dual-motor needling glue taking device, which comprises a guide rail, a needle head and a needle head, the mounting part is matched with the guide rail in a nested mode, and the mounting part is provided with a first mounting position, a second mounting position and a third mounting position; the energy storage part is matched with the first mounting position; the needling part is matched with the second mounting position and is movably connected with the energy storage part; and the moving part is matched with the third mounting position. The rubber taking machine solves the problem that rubber trees die easily due to long-time rubber taking when a rubber taking machine is used for girdling barks in the prior art.
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Description

Technical Field

[0001] The utility model relates to the technical field of rubber tapping, in particular to a dual-motor needle-piercing rubber tapping device. Background Art

[0002] Traditionally, natural rubber is harvested by cutting a spiral line through the rubber tree. The latex flows along the spiral line and is harvested. This method of tapping is difficult, consumes a lot of bark, and can easily kill the rubber tree. Utility Model Content

[0003] The utility model solves the problem in the prior art that rubber tapping machines ring-cut the bark and long-term rubber tapping easily leads to the death of rubber trees.

[0004] To address the aforementioned issues, the present invention provides a dual-motor needle-puncture adhesive extraction device comprising a guide rail, a mounting portion, an energy storage portion, and a needle-puncture portion. The guide rail comprises an engaging portion; the mounting portion nests with the guide rail and is provided with a first mounting position, a second mounting position, and a third mounting position; the energy storage portion engages with the first mounting position; the needle-puncture portion engages with the second mounting position and is movably connected to the energy storage portion; and the movable portion engages with the third mounting position.

[0005] Compared with the existing technology, the technical effect achieved by this technical solution is: the guide rail is used to support the installation part and guide the installation part, the installation part is used to protect and support the energy storage part and the puncture part, the puncture part is used to pierce the rubber tree trunk after storing energy through the energy storage part, leaving a small hole-like wound on the surface of the trunk, and the moving part is used to drive the puncture part to move and change the punching position. The rubber extraction equipment provided by this technical solution can reduce the damage to the bark caused by tapping and reduce the death of rubber trees.

[0006] Furthermore, the puncture part includes a puncture shell, a contact piece and a puncture piece. The contact piece is provided on the puncture shell and contacts the energy storage part; the puncture piece is provided on the puncture shell.

[0007] Compared with the existing technology, the technical effect achieved by this technical solution is: the needling shell cooperates with the second mounting position to carry the contact piece and the needling piece, the contact piece contacts the energy storage part, so that the energy storage part drives the needling shell to move and store energy, and the needling piece is used to pierce the bark and bring out wood residues, so that the holes in the trunk are clean and convenient for glue discharge.

[0008] Furthermore, the energy storage unit includes a base and an energy storage body. The energy storage body is movably connected to the base, and the energy storage body is provided with a rotary slope structure.

[0009] Compared with the existing technology, the technical effect achieved by this technical solution is: the base supports the energy storage body, the spiral slope structure contacts the contact piece, and when the energy storage body rotates, the contact piece moves along the spiral slope structure, driving the puncture part to rise and store energy.

[0010] Furthermore, the needling part further includes a roller structure, and the roller structure is movably connected to the contact piece.

[0011] Compared with the existing technology, the technical effect achieved by this technical solution is: the roller structure makes the movement between the contact piece and the rotating slope structure smoother, thereby improving the energy storage efficiency.

[0012] Furthermore, the needling part further includes a slag pusher, which is fixedly connected to the mounting part; a guide position is further provided on the needling housing, which is connected to the needling part; the slag pusher is arranged in the guide position and nested with the needling part.

[0013] Compared with the existing technology, the technical effect achieved by this technical solution is: the slag pushing piece is used to push out the tree slag remaining in the hollow structure of the needling piece after punching, to prevent the accumulation of tree slag in the needling piece from affecting the punching, and the slag pushing piece is fixed on the mounting part. When the needling shell rises to store energy, the needling piece moves upward at the same time, and the tree slag in the needling piece is pushed out by the slag pushing piece, thereby realizing the slag pushing of the slag pushing piece.

[0014] Furthermore, the dual-motor needle-piercing glue extraction device provided by the present invention further includes an elastic member. A first convex portion is provided on the mounting portion; a second convex portion is provided on the needle-piercing housing; and the first convex portion and the second convex portion are connected by the elastic member.

[0015] Compared to existing technologies, this solution achieves the following technical benefits: the elastic member enables the puncture unit, which has accumulated energy after rising, to quickly descend and release it, resulting in more efficient perforation. As the puncture housing rises, the elastic member is stretched, accumulating elastic potential energy. When the puncture housing descends, the elastic member quickly recovers, increasing the puncture force of the puncture unit.

[0016] Furthermore, the energy storage unit also includes a first motor, and the first motor is connected to the energy storage body.

[0017] Compared with the existing technology, the technical effect achieved by this technical solution is: the motor drives the energy storage body to rotate, so that the energy storage part can regularly store energy for the acupuncture part.

[0018] Furthermore, the moving part includes a second motor, an engaging member and a control chip; the second motor and the first motor are both communicatively connected to the control chip; the engaging member is connected to the second motor, and the engaging member is in meshing contact with the engaging part.

[0019] Compared with the existing technology, the technical effect achieved by this technical solution is as follows: a moving part is provided, which can drive the puncture part to move a set distance unit along the guide rail after the puncture part completes a punching operation, so as to puncture a new glue extraction hole. The second motor drives the engagement member 62 to rotate. When the first motor completes a round of rotation, that is, after a punching operation is completed, the relevant rotation information of the first motor is transmitted to the control chip. The control chip controls the rotation of the second motor based on this information, and the engagement member 62 moves along the meshing part of the guide rail, driving the puncture part to the next puncture point. At the same time, after completing the puncture work along the entire guide rail, the control chip can release the joint control between the first and second motors, and independently control the second motor to drive the puncture part back to the other end of the guide rail, thereby resetting the device.

[0020] Furthermore, the dual-motor needle-piercing glue extracting device provided by the present invention further includes a fixing portion, wherein the fixing portion is provided with a guide rail mounting position; the guide rail and the guide rail mounting position are nested and matched.

[0021] Compared with the existing technology, the technical effect achieved by this technical solution is: the fixing part is used to support the guide rail, which is easy to install and provides assistance for the guide rail, so that the guide rail can be more easily fixed on the tree trunk.

[0022] Furthermore, the fixing portion is further provided with a binding position, which is specifically provided at an end of the fixing portion away from the guide rail installation position.

[0023] Compared with the existing technology, the technical effect achieved by this technical solution is that it is convenient for binding parts such as ropes or cable ties to pass through, so that the guide rail can be stably fixed on the tree trunk. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 This is one of the overall diagrams of the dual-motor needle puncture glue extraction device provided in this application;

[0025] Figure 2 This is the second overall diagram of the dual-motor needle puncture glue extraction device provided by this application;

[0026] Figure 3 This is the overall diagram of the installation part;

[0027] Figure 4 This is the overall picture of the acupuncture area;

[0028] Figure 5 This is the overall picture of the slag pusher;

[0029] Figure 6 This is the overall diagram of the fixed part.

[0030] Description of reference numerals:

[0031] 1-guide rail; 11-engaging part; 2-mounting part; 21-first mounting position; 22-second mounting position; 23-third mounting position; 24-first convex part; 3-energy storage part; 31-base; 32-energy storage body; 33-first motor; 4-puncture part; 41-puncture shell; 42-contact piece; 43-puncture piece; 44-roller structure; 45-slag pushing piece; 411-guide position; 412-second convex part; 5-elastic piece; 6-moving part; 61-second motor; 62-engaging part; 63-control chip; 7-fixing part; 71-guide rail mounting position; 72-binding position. DETAILED DESCRIPTION

[0032] The purpose of the utility model is to provide a dual-motor needle-piercing rubber tapping device, which is used to prevent the rubber tree from dying due to excessive bark ring cutting during the rubber tapping process.

[0033] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0034] like Figure 1 、 Figure 2 and Figure 3 As shown, the present invention provides a dual-motor needle-puncture glue extraction device, comprising a guide rail 1, a mounting portion 2, an energy storage portion 3, and a needle-puncture portion 4. The guide rail 1 is provided with an engaging portion 11; the mounting portion 2 is nested with the guide rail 1 and is provided with a first mounting position 21, a second mounting position 22, and a third mounting position 23; the energy storage portion 3 is engaged with the first mounting position 21; the needle-puncture portion 4 is engaged with the second mounting position 22 and is movably connected to the energy storage portion 3; and the movable portion 6 is engaged with the third mounting position 23.

[0035] The meshing portion 11 is a sawtooth long rail.

[0036] The mounting portion 2 is provided with a special-shaped through hole having a shape consistent with that of the guide rail 1 , so as to facilitate the passage of the guide rail 1 .

[0037] The guide rail 1 is used to support the mounting part 2 and guide the mounting part 2. The mounting part 2 is used to protect and support the energy storage part 3 and the puncture part 4. The puncture part 4 pierces the rubber tree trunk after storing energy through the energy storage part 3, leaving a small hole-like wound on the surface of the trunk. The moving part 6 is used to drive the puncture part 4 to move and change the punching position. The rubber extraction equipment provided by this technical solution can reduce the damage to the bark caused by tapping and reduce the death of rubber trees.

[0038] like Figure 4 As shown, the puncture part 4 includes a puncture shell 41, a contact member 42 and a puncture member 43. The contact member 42 is provided on the puncture shell 41 and contacts the energy storage part 3; the puncture member 43 is provided on the puncture shell 41 and has a hollow structure.

[0039] The puncture shell 41 cooperates with the second mounting position 22 to carry the contact member 42 and the puncture member 43. The contact member 42 contacts the energy storage part 3, so that the energy storage part 3 drives the puncture shell 41 to move and store energy. The puncture member 43 is used to pierce the bark, and the hollow structure is used to remove tree debris, so that the holes in the trunk are clean and convenient for glue discharge.

[0040] Refer again Figure 2 The energy storage unit 3 includes a base 31 and an energy storage body 32. The energy storage body 32 is movably connected to the base 31, and the energy storage body 32 is provided with a rotary slope structure.

[0041] Specifically, there is a step surface between the highest point and the lowest point of the spiral slope structure. When the contact member 42 moves from the lowest point to the highest point, it falls back to the lowest point from the step surface. By utilizing the height difference between the highest point and the lowest point, the puncture part 4 is released and the puncture member 43 is reset.

[0042] The base 31 supports the energy storage body 32 , and the rotary slope structure contacts the contact piece 42 . When the energy storage body 32 rotates, the contact piece 42 moves along the rotary slope structure, driving the acupuncture part 4 to rise and store energy.

[0043] Refer again Figure 4 The needling part 4 further includes a roller structure 44 , which is movably connected to the contact member 42 .

[0044] The roller structure 44 makes the movement between the contact member 42 and the rotary slope structure smoother, thereby improving energy storage efficiency.

[0045] like Figure 4 and Figure 5 As shown, the needling part 4 further includes a slag pusher 45. The slag pusher 45 is fixedly connected to the mounting part 2; the needling housing 41 is further provided with a guide position 411, which is connected to the needling member 43; the slag pusher 45 is arranged in the guide position 411 and nested with the needling member 43.

[0046] The slag pusher 45 is used to push out the wood slag remaining in the hollow structure of the needling piece 43 after punching, to prevent the accumulation of wood slag in the needling piece 43 from affecting the punching. The slag pusher 45 is fixed on the mounting portion 2. When the needling shell 41 rises to store energy, the needling piece 43 moves upward at the same time, and the wood slag in the needling piece 43 is pushed out by the slag pusher 45, thereby realizing the slag pushing of the slag pusher 45.

[0047] Refer again Figure 1 The dual-motor needle-piercing glue extraction device provided by the present invention further includes an elastic member 5. The mounting portion 2 is provided with a first protrusion 24; the needle-piercing housing 41 is provided with a second protrusion 412; the first protrusion 24 and the second protrusion 412 are connected by the elastic member 5.

[0048] The elastic member 5 is specifically a spring.

[0049] The elastic member 5 is used to allow the puncture section 4, which has risen and accumulated energy, to quickly fall and release it, making the perforation more efficient. When the puncture housing 41 rises, the elastic member 5 is stretched, accumulating elastic potential energy. When the puncture housing 41 falls, the elastic member 5 quickly recovers, increasing the puncture force of the puncture member 43.

[0050] The energy storage unit 3 further includes a first motor 33 , which is connected to the energy storage body 32 .

[0051] The motor drives the energy storage body 32 to rotate, so that the energy storage part 3 can regularly store energy for the acupuncture part 4.

[0052] Refer again Figure 2 The moving part 6 includes a second motor 61, a meshing member 62 and a control chip 63; the second motor 61 and the first motor 33 are both communicatively connected to the control chip 63; the meshing member 62 is connected to the second motor 61, and the meshing member 62 is in meshing contact with the meshing portion 11.

[0053] The third mounting position 23 is connected to the special-shaped through hole through which the guide rail 1 passes, so that the engaging member 62 can contact the engaging portion 11 .

[0054] A moving portion 6 is provided. After the puncture portion 4 completes a punching operation, it can move the puncture portion 4 along the guide rail 1 a set distance unit to puncture a new glue extraction hole. A second motor 61 drives the engagement member to rotate. When the first motor 33 completes a rotation, that is, after a punching operation is completed, the relevant rotation information of the first motor 33 is transmitted to the control chip 63. The control chip 63 controls the rotation of the second motor 61 based on this information, and the engagement member moves along the engagement portion 11 of the guide rail 1, driving the puncture portion 4 to the next puncture point. At the same time, after completing the puncture operation along the entire guide rail 1, the control chip 63 can release the joint control between the first motor 33 and the second motor 61, and independently control the second motor 61 to drive the puncture portion back to the other end of the guide rail 1, thereby resetting the device.

[0055] like Figure 6 As shown, the dual-motor needle-piercing glue extraction device provided by the present invention further includes a fixing portion 7. The fixing portion 7 is provided with a guide rail mounting position 71; the guide rail 1 is nested with the guide rail mounting position 71.

[0056] The fixing portion 7 is used to support the guide rail 1 and is easy to install. At the same time, it provides assistance for the guide rail 1 so that the guide rail 1 can be more easily fixed on the tree trunk.

[0057] The fixing portion 7 is further provided with a binding position 72 , which is specifically provided at an end of the fixing portion 7 away from the installation position of the guide rail 1 .

[0058] It is convenient for binding members such as ropes or cable ties to pass through, so that the guide rail 1 can be stably fixed on the tree trunk.

[0059] Although the present invention is disclosed as above, it is not limited thereto. Any person skilled in the art may make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention shall be subject to the scope defined by the claims.

Claims

1. A dual-motor needle puncture glue extraction device, characterized in that: include: A guide rail having an engaging portion; A mounting portion, nested with the guide rail, the mounting portion being provided with a first mounting position, a second mounting position and a third mounting position; an energy storage portion, cooperating with the first mounting position; a needling portion, cooperating with the second mounting position and movably connected to the energy storage portion; The moving part cooperates with the third installation position.

2. The dual-motor needle puncture glue extraction device according to claim 1, characterized in that: The acupuncture part comprises: Needle piercing shell; a contact member, provided on the acupuncture housing and in contact with the energy storage portion; The acupuncture element is arranged on the acupuncture shell.

3. The dual-motor needle puncture glue extraction device according to claim 2, characterized in that: The energy storage unit includes: base; The energy storage body is movably connected to the base, and the energy storage body is provided with a rotary slope structure.

4. The dual-motor needle puncture glue extraction device according to claim 3, characterized in that: The puncture part further includes a roller structure, and the roller structure is movably connected to the contact member.

5. The dual-motor needle puncture glue extraction device according to claim 4, characterized in that: The acupuncture part further includes: a slag pushing member, fixedly connected to the mounting portion; The acupuncture housing is further provided with a guide position, which is in communication with the acupuncture member; The slag pushing member is arranged in the guiding position and is nested with the needling member.

6. The dual-motor needle puncture glue extraction device according to claim 5, characterized in that: Also included is an elastic member; The mounting portion is provided with a first protrusion; The acupuncture housing is provided with a second convex portion; The first convex portion and the second convex portion are connected by the elastic member.

7. The dual-motor needle-piercing glue extraction device according to claim 6, characterized in that: The energy storage unit further includes a first motor connected to the energy storage body.

8. The dual-motor needle puncture glue extraction device according to claim 7, characterized in that: The moving part includes: a second motor, a gearing member, and a control chip; The second motor and the first motor are both communicatively connected to the control chip; The engaging member is connected to the second motor, and the engaging member is in meshing contact with the engaging portion.

9. The dual-motor needle puncture glue extraction device according to any one of claims 1 to 8, characterized in that: Also includes a fixing portion; The fixing portion is provided with a guide rail mounting position; The guide rail is nested with the guide rail mounting position.

10. The dual-motor needle puncture glue extraction device according to claim 9, characterized in that: The fixing portion is further provided with a binding position, which is specifically arranged at an end of the fixing portion away from the guide rail installation position.