Manual seedling clamping device for kelp culture
By designing a manual seedling clamping device for kelp breeding, the ring seat, bobbin and insertion rod structures are used to achieve accurate seams of seedling ropes, which solves the problem of difficult manual seedling clamping operation and hand damage, and improves the efficiency and quality of seedling clamping.
Patent Information
- Application Number
- CN202421885984.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-08-06
AI Technical Summary
During the process of sewing of existing kelp seedlings, manual operation is difficult to complete independently, requiring high proficiency, and it is easy to cause hand friction damage, affecting operation efficiency and quality.
A manual seedling clamping device for kelp breeding is designed. By setting up structures such as ring seats, bobbins, insertion rods and slides on the seedling clamping platform, the reverse twist of the insertion rod is controlled by using the grip, and the size of the seedling rope is controlled with the positioning rods and positioning holes to control the size of the seedling ropes, so as to achieve accurate seedling clamping operation without artificial twisting ropes.
It achieves more accurate seaming of seedling ropes, reduces manpower consumption and hand abrasions, and improves the quality and efficiency of seedlings.
Smart Images

Figure CN223219685U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of kelp cultivation, in particular to an artificial seedling clamping device for kelp cultivation. Background Art
[0002] Kelp cultivation generally involves allowing spores to attach and grow on seedling curtains first. When the kelp seedlings have grown to a certain standard, they are transplanted into natural seawater. The commonly used transplantation method is to clamp the roots of the kelp seedlings in the seams of the seedling rope, which is called clamping the seedlings. The seedling rope is then laid in seawater for cultivation. There are two ways to cultivate kelp: vertical cultivation and horizontal cultivation. Vertical cultivation is mostly used in northern sea areas. The clamping step from the seedlings to the seedling rope is now mostly done manually. First, the seedling rope is manually loosened in reverse to create gaps in the rope strands, and then the kelp seedling roots are inserted. Then release the hand to clamp the rope strands, completing a cycle of seedling clamping action, and repeat the above operation until a number of heidi seedlings are evenly clamped on the entire seedling rope before the subsequent seawater release and breeding process. However, in the process of manual seedling clamping, the steps of loosening the seedling rope to leave a gap and then picking up the kelp seedlings to insert the gap need to be performed simultaneously, which is difficult for one person to complete independently, and the operation requires more proficiency and experience. Novices cannot grasp the strength of the seedling rope twisting, and maintaining the twisting will cause certain friction damage to the palm, which is not conducive to long-term manual operation. Utility Model Content
[0003] The purpose of the utility model is to provide an artificial seedling clamping device for kelp cultivation, which does not require manual twisting of ropes, makes slits more precise, reduces manpower consumption and hand abrasions, and improves the quality and efficiency of artificial seedling clamping.
[0004] The cam is fixed on the left side of the support frame, and the cam is fixed on the right side of the support frame with an axial direction of the support frame, and the cam is fixed on the left side of the support frame with an axial direction of the support frame. A screw sleeve is fixed, and a positioning rod is threadedly connected to the screw sleeve. The bottom end of the positioning rod passes through the slide seat and slides with it. A plurality of positioning holes are provided in a circular array on the opposite side of the annular groove. The positioning holes are located on the outside of the ring seat and cooperate with the positioning rod to insert and position. The ring seat is symmetrically set up on the left and right sides of the seedling clamping platform and the seedling rope is passed through the inner side thereof. The insertion rod set in the barrel is inserted into the segmented isolation, and then the slide seat is reversely controlled by the handle to perform clockwise and counterclockwise circular motion along the annular groove, thereby driving the insertion rod to reversely twist and loosen the seedling rope to open a slit. During this period, the movement amplitude of the slide seat is controlled by the positioning rod and a plurality of positioning holes, thereby controlling the slit size of the seedling rope and keeping the slit open for a period of time, which is convenient for manual seedling planting operations on this section of seedling rope. There is no need to twist the rope manually, the slit is more accurate, reducing manpower consumption and hand abrasions, and improving the quality and efficiency of manual seedling clamping.
[0005] According to the artificial seedling clamping device for kelp cultivation, a knob is fixedly connected to the outer side of the top of the positioning rod, and a shifting rod is fixedly connected to the outer center of the slide, which assists the positioning rod or the slide in performing easier displacement operations.
[0006] According to the artificial seedling clamping device for kelp cultivation, a rubber sleeve is fixedly connected to the outer side of the handle, and the outer side of the rubber sleeve is provided with anti-slip grooves to prevent slipping during twisting. In addition, it is flexible and fits the hand, relaxes the hand surface, and protects the handle from seawater erosion.
[0007] According to the artificial seedling clamping device for kelp cultivation, guide rings are provided at the left and right outer edges of the annular groove, and the guide rings are fixedly engaged with the annular seat, and the guide rings pass through the slide seat and slide with the slide seat to help limit the movement trajectory of the slide seat.
[0008] According to the artificial seedling clamping device for kelp cultivation, the top inner side of the seedling clamping platform is filled with a sponge pad, and the sponge pad absorbs seawater. After the kelp seedlings are inserted into the seams, they are placed in a flexible and cushioned manner while maintaining a certain degree of activity.
[0009] According to the artificial seedling clamping device for kelp cultivation, the front side of the seedling clamping platform is fixedly connected to a placement slot frame, and the placement slot frame contains culture medium. The kelp seedlings are temporarily placed close to the seedling rope, which is convenient for quick insertion and clamping.
[0010] According to the artificial seedling clamping device for kelp cultivation, the tops of the opposite sides of the ring frame are both embedded with shaft frames, and the shaft frames are rotatably engaged with rollers to assist in the segmented transfer of the seedling rope and reduce the wear of the seedling rope caused by the device during the pulling process.
[0011] According to the artificial seedling clamping device for kelp cultivation, a limiting rod is erected just above the seedling clamping platform, and both left and right ends of the limiting rod are fixedly connected to the ring seat to maintain the vertical stability of the ring seat.
[0012] Compared with the prior art, the beneficial effects of the present invention are:
[0013] In the utility model, annular seats are symmetrically set up on the left and right sides of the seedling clamping platform, and the seedling rope is passed through the inner side thereof and then inserted into the segmented isolation by the insertion rod set in the barrel. Then, the slide is reversely controlled by the handle to perform clockwise and counterclockwise circular motion along the annular groove, thereby driving the insertion rod to reversely twist and loosen the seedling rope to open a slit. During this process, the movement amplitude of the slide is controlled by the positioning rod and a number of positioning holes, thereby controlling the size of the slit of the seedling rope and keeping the slit open for a period of time, which is convenient for manual work to quickly transplant seedlings on this section of seedling rope. There is no need to twist the rope manually, the slit is more accurate, the manpower consumption and hand abrasions are reduced, and the quality and efficiency of manual seedling clamping are improved.
[0014] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments;
[0016] Figure 1 This is a schematic diagram of the connection structure of the seedling clamping platform and the ring frame in the artificial seedling clamping device for kelp cultivation in the utility model;
[0017] Figure 2 This is a schematic diagram of the connection structure between the ring seat and the barrel in an artificial seedling clamping device for kelp cultivation in the utility model;
[0018] Figure 3 This is a schematic diagram of the connection structure of the inserting rod and the positioning rod in the artificial seedling clamping device for kelp cultivation in the utility model;
[0019] Figure 4The utility model is an overall schematic diagram of an artificial seedling clamping device for kelp cultivation.
[0020] In the figure: 1. Seedling clamping platform; 2. Ring frame; 3. Base; 4. Pad; 5. Ring seat; 6. Ring groove; 7. Slide seat; 8. Bobbin; 9. Handle; 10. Slide groove; 11. Slot; 12. Slide plate; 13. Insert rod; 14. Screw sleeve; 15. Positioning rod; 16. Positioning hole; 17. Knob; 18. Push rod; 19. Rubber sleeve; 20. Guide ring; 21. Sponge pad; 22. Placement slot frame; 23. Roller; 24. Limiting frame rod. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the utility model.
[0022] See also Figure 1-4 The utility model provides a technical solution: an artificial seedling clamping device for kelp cultivation, comprising a seedling clamping platform 1, characterized in that ring frames 2 are symmetrically fixed on the left and right sides of the seedling clamping platform 1, a base 3 is cross-symmetrically fixed on the bottom of the opposite side of the ring frame 2, pads 4 are symmetrically fixed at the centers of the left and right sides of the seedling clamping platform 1, the tops of the pads 4 are fixedly connected to ring seats 5, the middle and upper parts of the ring seats 5 are provided with ring grooves 6, a slide seat 7 is slidably fitted on the ring grooves 6, a bobbin 8 is fixedly connected to the center of the top of the slide seat 7, a handle 9 is fixedly connected to the top of the bobbin 8, an insertion rod 13 is slidably fitted on the inner side of the bobbin 8, and the bobbin 8 is relatively stable. A slide groove 10 is provided in the upper and lower directions on one side of the opposite side, and a card groove 11 is provided on the front sides of the upper and lower ends of the slide groove 10. A slide plate 12 is slidably fitted in the slide groove 10, and the slide plate 12 extends into the barrel 8 and is fixedly connected to the insertion rod 13. The insertion rod 13 penetrates the slide seat 7 downward and slides with it up and down. A screw sleeve 14 is embedded and fixed on the opposite side of the top of the slide seat 7, and a positioning rod 15 is threadedly connected in the screw sleeve 14. The bottom end of the positioning rod 15 penetrates the slide seat 7 and slides with it. A number of positioning holes 16 are provided in a circular array on the opposite side of the annular groove 6. The positioning holes 16 are all located on the outside of the ring seat 5 and are inserted and positioned in cooperation with the positioning rod 15.
[0023] A knob 17 is fixedly connected to the outer side of the top of the positioning rod 15, a lever 18 is fixedly connected to the outer center of the slide plate 12, and a rubber sleeve 19 is fixedly connected to the outer side of the handle 9. The outer side of the rubber sleeve 19 is provided with anti-slip grooves to facilitate manual operation.
[0024] Guide rings 20 are provided at the outer edges of the left and right sides of the annular groove 6, and the guide rings 20 are fixed with the ring seat 5. The guide rings 20 pass through the slide 7 and slide with it. A limit rod 24 is set just above the seedling clamping platform 1, and the left and right ends of the limit rod 24 are fixedly connected to the ring seat 5. An axis frame is fitted on the top of the opposite side of the ring frame 2, and a roller 23 is rotatably fitted on the axis frame to provide certain limiting protection and assistance to the device and the seedling rope.
[0025] The top inner side of the seedling clamping platform 1 is filled with a sponge pad 21, and seawater is adsorbed in the sponge pad 21. The front side of the seedling clamping platform 1 is fixedly connected with a placement slot frame 22, and culture solution is placed in the placement slot frame 22 to maintain the activity of the seedlings and improve the survival rate.
[0026] Working principle: In the utility model, the ring seats 5 are symmetrically set up on the left and right sides of the seedling clamping platform 1, and the seedling rope is passed through the inner side thereof and then inserted into the segmented isolation by the insertion rod 13 set in the bobbin 8. Then the handle 9 is used to reversely control the slide 7 to perform clockwise and counterclockwise circular motion along the ring groove 6, thereby driving the insertion rod 13 to reversely twist and loosen the seedling rope to open a slit. During this period, the positioning rod 15 and a number of positioning holes 16 are used to control the movement amplitude of the slide 7, thereby controlling the size of the slit of the seedling rope and keeping the slit open for a period of time, which is convenient for manual operation to quickly transplant seedlings on this section of seedling rope. There is no need to twist the rope manually, the slit is more accurate, reducing manpower consumption and hand abrasions, and improving the quality and efficiency of manual seedling clamping.
[0027] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by ordinary technicians in the relevant technical field without departing from the purpose of the present invention.
Claims
1. An artificial seedling clamping device for kelp cultivation, comprising a seedling clamping platform (1), characterized in that: The left and right sides of the seedling clamping platform (1) are symmetrically fixed with ring frames (2), and the bottom of the opposite side of the ring frame (2) is cross-symmetrically fixed with a base (3), and the left and right centers of the seedling clamping platform (1) are symmetrically fixed with pads (4), and the tops of the pads (4) are fixedly connected with ring seats (5), and the middle and upper parts of the ring seats (5) are provided with ring grooves (6), and the ring grooves (6) are slidably matched with a slide seat (7), and the top center of the slide seat (7) is fixedly connected with a barrel (8), and the top of the barrel (8) is fixedly connected with a handle (9), and the inner side of the barrel (8) is slidably matched with an insertion rod (13), and the opposite side of the barrel (8) is provided with a slide groove (10) in the up and down directions, and the slide groove (10) is fixedly connected with the top of the barrel (7). ) are provided with a card groove (11) on the front side of the upper and lower ends, and a slide plate (12) is slidably fitted in the slide groove (10), and the slide plate (12) extends into the barrel (8) and is fixedly connected to the insertion rod (13), and the insertion rod (13) passes through the slide seat (7) downward and slides with it up and down, and a screw sleeve (14) is embedded and fixed on the opposite side of the top of the slide seat (7), and a positioning rod (15) is threadedly connected in the screw sleeve (14), and the bottom end of the positioning rod (15) passes through the slide seat (7) and slides with it, and a plurality of positioning holes (16) are provided in a ring array on the opposite side of the annular groove (6), and the positioning holes (16) are all located on the outside of the annular seat (5) and are inserted and positioned in cooperation with the positioning rod (15).
2. The artificial seedling clamping device for kelp cultivation according to claim 1, characterized in that: A knob (17) is fixedly connected to the outer side of the top of the positioning rod (15), and a shifting rod (18) is fixedly connected to the outer center of the slide plate (12).
3. The artificial seedling clamping device for kelp cultivation according to claim 1, characterized in that: The outer side of the handle (9) is fixedly connected to a rubber sleeve (19), and the outer side surface of the rubber sleeve (19) is provided with anti-slip grooves.
4. The artificial seedling clamping device for kelp cultivation according to claim 2, characterized in that: Guide rings (20) are provided at the outer edges of the left and right sides of the annular groove (6). The guide rings (20) are fixedly engaged with the annular seat (5). The guide rings (20) pass through the sliding seat (7) and are slidably matched with it.
5. The artificial seedling clamping device for kelp cultivation according to claim 1, characterized in that: The inner side of the top of the seedling clamping platform (1) is filled with a sponge pad (21), and seawater is absorbed in the sponge pad (21).
6. The artificial seedling clamping device for kelp cultivation according to claim 1, characterized in that: The front side of the seedling clamping platform (1) is fixedly connected to a placement trough frame (22), and culture fluid is placed in the placement trough frame (22).
7. The artificial seedling clamping device for kelp cultivation according to claim 1, characterized in that: Axle frames are embedded and mounted on the top of the opposite side of the ring frame (2), and rollers (23) are rotatably fitted on the axle frames.
8. The artificial seedling clamping device for kelp cultivation according to claim 1, characterized in that: A limiting rod (24) is arranged directly above the seedling clamping platform (1), and both left and right ends of the limiting rod (24) are fixedly connected to the ring seat (5).