Manual net rolling machine
By designing the winding and positioning mechanism of the manual wire mesh winding machine, the problem of fixed connection between the main shaft and the motor shaft was solved, and the pressing after the wire mesh was wound up was achieved, ensuring that the wire mesh was wound up neatly and improving the performance.
Patent Information
- Application Number
- CN202422870116.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-25
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-11-25
AI Technical Summary
Existing wire mesh winding machines suffer from inconvenient fixed connection between the main shaft and the motor shaft during use, and the wire mesh tends to loosen after winding, lacking an effective clamping device.
The design includes a manual wire mesh winding machine, comprising a base, a geared motor, a winding mechanism, a positioning mechanism, and a storage mechanism. The winding mechanism is connected to the rotating shaft via a first baffle and secured with bolts. The positioning mechanism uses a lead screw and a knob to press the woven mesh. The storage mechanism is used to store the positioning rod.
This achieves a stable connection between the main shaft and the rotating shaft, ensuring positioning and compression during the weaving and winding process, preventing the weaving from becoming loose, and improving the performance.
Smart Images

Figure CN223575738U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of net rolling machine, concretely is manual net rolling machine. BACKGROUND
[0002] After the weaving of the netting machine is completed, the netting is generally wound on the winding drum by the net rolling mechanism for convenient storage and subsequent transportation. The current net rolling mechanism is driven by a motor to rotate the main shaft to wind the net on the main shaft.
[0003] The inventor found that at least the following problems in the prior art have not been solved. The existing net rolling machine is inconvenient for the fixed connection of the main shaft and the motor shaft during use, and there is no corresponding pressing device after the net winding on the outer side of the main shaft is completed, which easily leads to loose netting and limited use effect. Therefore, a new technical solution is needed to solve the problem. UTILITY MODEL CONTENT
[0004] The utility model aims at overcoming the defects of the prior art, adapting to the actual needs, and providing a manual net rolling machine to solve the technical problems of the inconvenient fixed connection of the main shaft and the motor shaft and the loose netting after winding.
[0005] In order to achieve the purpose of the utility model, the technical scheme adopted by the utility model is as follows: a manual net rolling machine is designed, which comprises a base, a speed reducer motor fixedly connected to the upper side of the base, a winding mechanism, a positioning mechanism and a storage mechanism. The winding mechanism is used for winding the netting, and comprises a first baffle, a second baffle and a main shaft. One end of the main shaft close to the speed reducer motor is fixedly connected to the middle part of the first baffle through a bushing. The other end of the main shaft away from the first baffle is detachably installed with the second baffle. The convex end of the first baffle is inserted into the shaft of the speed reducer motor. The upper surface of the convex end of the first baffle is provided with a first fixing hole. The upper surface of the shaft is provided with a second fixing hole corresponding to the first fixing hole. The first baffle is fixedly connected with the shaft through the first fixing hole and the second fixing hole.
[0006] Preferably, the positioning mechanism is used for pressing the netting wound on the outer side of the main shaft. The positioning mechanism comprises a first lead screw. A sliding groove is vertically provided in the upper end of the first baffle. A sliding block is slidably connected to the inner side of the sliding groove. A positioning rod is horizontally arranged on the side of the sliding block close to the second baffle. A first connecting groove is vertically provided in one side of the upper surface of the sliding block. The first lead screw is threadedly connected with the first connecting groove. A first knob is fixedly installed on one end of the first lead screw outside the first baffle.
[0007] Preferably, the receiving mechanism: for positioning the rod receiving, the receiving mechanism comprises a second lead screw, the inside of the slide away from the first connecting groove side is horizontally provided with a receiving groove, the positioning rod is slidably connected with the inside of the receiving groove, the inside of the positioning rod is horizontally provided with a second connecting groove, the second lead screw is threadedly connected with the second connecting groove, and the second lead screw is fixedly installed with a second knob at the outside of the slide.
[0008] Preferably, the main shaft is integrally formed with a positioning block at one end fixedly connected with the first baffle, the rotating shaft is provided with a positioning groove at one end away from the speed reducer, and the positioning block at one end of the main shaft is inserted into the positioning groove at one end of the rotating shaft.
[0009] Preferably, the side, close to the second baffle, of the slide is vertically flush with the first baffle, and the size of the receiving groove is matched with that of the positioning rod.
[0010] Preferably, the first lead screw is rotatably connected with the sliding groove through a bearing, and the second lead screw is rotatably connected with the inner wall of the receiving groove through a bearing.
[0011] Compared with the prior art, the utility model has the beneficial effects that:
[0012] 1. The utility model discloses a first baffle and a second baffle are fixedly connected to the both ends of the main shaft, can carry out the positioning operation of the netting during the winding process, the convex end of the first baffle is inserted into the rotating shaft of the speed reducer, then is fixedly connected through the bolt and passes through the first fixed hole and the second fixed hole, the fixed connection of the rotating shaft and the main shaft is convenient, the further speed reducer works, and the netting winding operation can be carried out by the rotating shaft to drive the main shaft to rotate.
[0013] 2. The utility model rotates the second knob, and one end of the positioning rod is moved out of the receiving groove through the second lead screw, rotates the first knob, and the slide is moved downward in the sliding groove through the first lead screw, further pushes the positioning rod and tightly presses the surface of the netting outside the main shaft, so that the pressing operation after the netting winding is realized. ACCURACY OF DRAWINGS
[0014] Figure 1 It is the front view of the utility model;
[0015] Figure 2 It is the schematic view of A part of the utility model;
[0016] Figure 3 It is the front view of the first baffle of the utility model;
[0017] Figure 4 It is the side view of the first baffle of the utility model;
[0018] Figure 5The utility model discloses a positioning rod plan view for the utility model discloses a positioning rod plan view for
[0019] In the figure: 1, base; 11, speed reducer motor; 12, main shaft; 13, first baffle; 14, bush; 15, rotating shaft; 16, second baffle; 17, first fixed hole; 18, second fixed hole; 2, chute; 21, sliding block; 22, positioning rod; 23, first connecting groove; 24, first screw rod; 25, first knob; 3, storage groove; 31, second connecting groove; 32, second screw rod; 33, second knob; 34, positioning groove; 35, positioning block. DETAILED DESCRIPTION
[0020] The utility model is further explained in connection with the drawings and examples:
[0021] The artificial net winding machine, see Figures 1 to 5 The artificial net winding machine, see
[0022] The speed reducer motor 11 is fixed in the specified position of the base 1 through bolt, the rotating shaft 15 of the speed reducer motor 11 is inserted to the convex end of the first baffle 13, and at the same time, the positioning block 35 of one end of the main shaft 12 can be inserted into the positioning groove 34 of one end of the rotating shaft 15, then the first fixed hole 17 and the second fixed hole 18 are penetrated through bolt, the fixed connection of the first baffle 13 and the rotating shaft 15 is realized, the speed reducer motor 11 is controlled through the corresponding controller, the rotating shaft 15 can drive the main shaft 12 to rotate and carry out the winding operation of weaving net, the first baffle 13 and the second baffle 16 are fixedly connected through both ends of the main shaft 12, and the weaving net in the winding process can be positioned, so that the weaving net is neatly wound on the outside of the main shaft 12.
[0023] Specifically, see Figures 1 to 5The positioning mechanism is used for pressing after the mesh is wound on the outside of the main shaft 12, and comprises a first lead screw 24. The upper end of the first baffle 13 is vertically provided with a sliding groove 2. The inner side of the sliding groove 2 is slidably connected with a sliding block 21. The side of the sliding block 21 close to the second baffle 16 is horizontally provided with a positioning rod 22. The upper surface of the sliding block 21 is vertically provided with a first connecting groove 23. The first lead screw 24 is threadedly connected with the first connecting groove 23. The first lead screw 24 is rotatably connected with the sliding groove 2 through a bearing. One end of the first lead screw 24, which is located outside the first baffle 13, is fixedly provided with a first knob 25.
[0024] When the mesh is wound on the outside of the main shaft 12, the staff rotates the first knob 25, so as to drive the first lead screw 24 to rotate. The first lead screw 24 is threadedly connected with the first connecting groove 23 in the sliding block 21. During the rotation of the first lead screw 24, the sliding block 21 is driven to move downwards in the sliding groove 2, so as to further drive the positioning rod 22 to abut against the surface of the mesh on the outside of the main shaft 12, thereby realizing the pressing operation after the mesh is wound, and avoiding the looseness of the mesh after being wound.
[0025] Further, referring to Figures 1 to 5 The accommodation mechanism is used for accommodating the positioning rod 22, and comprises a second lead screw 32. The inner side of the side of the sliding block 21, which is away from the first connecting groove 23, is horizontally provided with an accommodation groove 3. One end of the positioning rod 22, which is located inside the accommodation groove 3, is slidably connected with the sliding groove 2. One end of the positioning rod 22, which is located inside the accommodation groove 3, is horizontally provided with a second connecting groove 31. The second lead screw 32 is threadedly connected with the second connecting groove 31. The second lead screw 32 is rotatably connected with the inner wall of the accommodation groove 3 through a bearing. One end of the second lead screw 32, which is located outside the sliding block 21, is fixedly provided with a second knob 33.
[0026] Before the main shaft 12 rotates to wind the mesh, the staff rotates the second knob 33, so as to drive the second lead screw 32 to rotate. The second lead screw 32 is threadedly connected with the second connecting groove 31 in the positioning rod 22. During the rotation of the second lead screw 32, the positioning rod 22 is driven to move away from the second baffle 16 and be accommodated in the accommodation groove 3, thereby avoiding the interference of the positioning rod 22 with the winding operation of the mesh on the outside of the main shaft 12. Conversely, the reverse rotation of the second knob 33 can drive one end of the positioning rod 22 to move out of the accommodation groove 3, thereby facilitating the pressing of the mesh on the outside of the main shaft 12.
[0027] It is worth noting that, referring to Figures 1 to 5 The side of the sliding block 21, which is close to the second baffle 16, is vertically flush with the first baffle 13. The size of the accommodation groove 3 matches that of the positioning rod 22.
[0028] The vertical flush of the side of the sliding block 21, which is close to the second baffle 16, with the first baffle 13 can avoid the interference of the sliding block 21 with the winding operation of the mesh on the outside of the main shaft 12 due to the excessively large size of the sliding block 21.
[0029] In addition, the components designed in the utility model are all general standard components or components known by the person skilled in the art, the structure and principle of which can be known by the person skilled in the art through a technical manual or through a conventional experimental method, and the person skilled in the art can completely realize it without redundancy, and the content protected by the utility model does not involve improvement of the internal structure and method.
[0030] The utility model discloses the preferable embodiment, but is not limited to this, and the person skilled in the art, the person skilled in the art, very easily according to the above-mentioned embodiment, the spirit of the utility model is appreciated, and different is drawn and changes, but as long as not departing from the spirit of the utility model, all are within the protection scope of the utility model.
Claims
1. An artificial net rolling machine, comprising a base (1), a speed reducer motor (11) fixedly connected above the base (1), characterized in that, It also includes winding mechanism, positioning mechanism and storage mechanism; The winding mechanism is used for winding the mesh, and comprises a first baffle (13), a second baffle (16) and a main shaft (12), one end of the main shaft (12) near the speed reducer motor (11) is fixedly connected with the middle part of the first baffle (13) through a bushing (14), the other end of the main shaft (12) away from the first baffle (13) is detachably provided with the second baffle (16), the convex end of the first baffle (13) is inserted with the rotating shaft (15) of the speed reducer motor (11), the upper surface of the convex end of the first baffle (13) is provided with a first fixed hole (17), the upper surface of the rotating shaft (15) is provided with a second fixed hole (18) corresponding to the first fixed hole (17), and the first baffle (13) is fixedly connected with the rotating shaft (15) through bolts penetrating the first fixed hole (17) and the second fixed hole (18).
2. The artificial net machine according to claim 1, wherein, The positioning mechanism is used for pressing the mesh after winding on the outer side of the main shaft (12), and comprises a first lead screw (24), the upper end of the first baffle (13) is vertically provided with a sliding groove (2), the inner side of the sliding groove (2) is slidably connected with a sliding block (21), the side of the sliding block (21) near the second baffle (16) is horizontally provided with a positioning rod (22), the side of the upper surface of the sliding block (21) is vertically provided with a first connecting groove (23), and the first lead screw (24) is threadedly connected with the first connecting groove (23).
3. The artificial net machine according to claim 2, wherein, The storage mechanism is used for storing the positioning rod (22), and comprises a second lead screw (32), the inner side of the side of the sliding block (21) away from the first connecting groove (23) is horizontally provided with a storage groove (3), the end of the positioning rod (22) inside the storage groove (3) is slidably connected with the sliding groove (2), the end of the positioning rod (22) inside the storage groove (3) is horizontally provided with a second connecting groove (31), and the second lead screw (32) is threadedly connected with the second connecting groove (31).
4. The artificial net machine according to claim 1, wherein, The end of the main shaft (12) fixedly connected with the first baffle (13) is integrally formed with a positioning block (35), the end of the rotating shaft (15) away from the speed reducer motor (11) is provided with a positioning groove (34), and the positioning block (35) of the end of the main shaft (12) is inserted with the positioning groove (34) of the end of the rotating shaft (15).
5. The artificial net machine according to claim 3, wherein The side of the sliding block (21) near the second baffle (16) is vertically flush with the first baffle (13), and the size of the storage groove (3) matches that of the positioning rod (22).
6. The artificial net machine according to claim 3, wherein The first lead screw (24) is rotatably connected with the sliding groove (2) through a bearing, and the second lead screw (32) is rotatably connected with the inner wall of the storage groove (3) through a bearing.