Magnet feeding and dispensing device
By designing an automated magnet feeding and dispensing device, the problem of low efficiency of manual feeding in the existing technology has been solved, realizing automated magnet feeding and dispensing, and improving dispensing efficiency.
Patent Information
- Application Number
- CN202422923125.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-11-28
AI Technical Summary
The existing process of applying adhesive to the magnets of aromatherapy clothes hangers relies on manual feeding, resulting in low efficiency.
A magnet feeding and dispensing device was designed, including a support mechanism, a fixture conveying mechanism, a magnet feeding mechanism, a magnet pressing mechanism, and a dispensing mechanism. The device enables automatic magnet feeding and dispensing through an automated production line.
It has enabled automated feeding and dispensing of magnets, significantly improving dispensing efficiency and reducing manual intervention.
Smart Images

Figure CN223628912U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to clothes rack magnet point glue device technical field, concretely relates to a magnet feeding point glue device. BACKGROUND
[0002] The existing aromatherapy clothes rack usually adopts manual mode to carry out point gluing, specifically, the magnet is placed on the workbench of the point glue machine through manual mode, then the magnet is point glued through the point glue machine, the efficiency is low through manual mode to carry out point gluing on the magnet. UTILITY MODEL CONTENTS
[0003] The utility model discloses a magnet feeding point glue device to solve the above technical problems in the prior art, and the preferred technical scheme in the plurality of technical schemes provided by the utility model can produce a plurality of technical effects, which are described in detail below.
[0004] To achieve the above object, the utility model provides the following technical scheme:
[0005] The utility model discloses a magnet feeding point glue device, which comprises a supporting mechanism, a jig conveying mechanism, a magnet feeding mechanism, a magnet pressing mechanism and a point glue mechanism, the jig conveying mechanism, the magnet feeding mechanism, the magnet pressing mechanism and the point glue mechanism are all arranged on the supporting mechanism, wherein: the jig conveying mechanism is used for conveying the point glue jig, the magnet feeding mechanism is used for pushing the magnet to be glued to the lower side of the magnet pressing mechanism, the magnet pressing mechanism comprises a pressing telescopic component and a pressing part, the pressing part is connected with the telescopic end of the pressing telescopic component, and under the driving of the pressing telescopic component, the magnet to be glued can be pressed and sent to the point glue jig, and the point glue mechanism is used for gluing the magnet to be glued.
[0006] Preferably, the jig conveying mechanism comprises a longitudinal conveying component and a sliding seat component, the longitudinal conveying component is arranged on the supporting mechanism, and the sliding seat component can be driven to move reciprocatingly along the longitudinal direction, and the sliding seat component is used for conveying the point glue jig.
[0007] Preferably, the point glue mechanism comprises a point glue component and a point glue conveying component, the point glue conveying component is arranged on the supporting mechanism, the magnet feeding mechanism, the magnet pressing mechanism and the point glue component are all arranged on the point glue conveying component, and the point glue conveying component is used for the transverse conveying and vertical conveying of the magnet feeding mechanism, the magnet pressing mechanism and the point glue component.
[0008] Preferably, the dispensing conveying assembly comprises a horizontal conveying assembly and a vertical conveying assembly, wherein the horizontal conveying assembly is fixedly arranged on the supporting mechanism and above the jig conveying mechanism; the vertical conveying assembly is arranged on the horizontal conveying assembly and can reciprocate along the horizontal direction under the driving of the horizontal conveying assembly; the magnet feeding mechanism, the magnet pressing mechanism and the dispensing assembly are arranged on the vertical conveying assembly and can reciprocate along the vertical direction under the driving of the vertical conveying assembly.
[0009] Preferably, the dispensing assembly comprises a dispensing needle cylinder assembly, a dispensing guide assembly and a dispensing telescopic assembly, wherein the dispensing guide assembly comprises a dispensing guide and a dispensing moving part, the dispensing moving part is movably arranged on the dispensing guide, the dispensing needle cylinder assembly is connected with the dispensing moving part, the dispensing telescopic assembly is connected with the dispensing moving part, and the telescopic end of the dispensing telescopic assembly can drive the dispensing needle cylinder assembly to dispense through the dispensing moving part.
[0010] Preferably, the magnet feeding mechanism comprises a feeding pipe, a magnet pushing assembly and a guide plate assembly, wherein the feeding pipe is vertically arranged, the feeding pipe is provided with a feeding groove for stacking the magnets to be dispensed along the axial direction, the magnet pushing assembly comprises a pushing telescopic assembly and a feeding plate, the telescopic end of the pushing telescopic assembly is connected with the feeding plate, the feeding plate is provided with a placing through slot for accommodating the magnets to be dispensed, the guide plate assembly is provided with a guide channel matched with the feeding plate, the feeding plate is slidingly inserted into the guide channel, the guide channel of the guide plate assembly is provided with an inlet communicated with the guide channel, the inlet corresponds to the outlet end of the feeding groove, the guide channel of the guide plate assembly is provided with a discharge pipe communicated with the guide channel, the discharge pipe corresponds to the magnet pressing mechanism, and the magnet pressing mechanism can press the magnets to be dispensed in the placing through slot to the dispensing jig through the discharge pipe.
[0011] Preferably, the magnet pressing mechanism comprises a quick positioning assembly, the quick positioning assembly comprises a positioning guide, a positioning moving part and a locking assembly, wherein the positioning guide is vertically arranged, the positioning moving part is movably arranged on the positioning guide, the pressing telescopic assembly is fixedly connected with the positioning moving part and moves synchronously, and the locking assembly can lock the position of the positioning moving part relative to the positioning guide.
[0012] Preferably, the locking assembly comprises a resisting piece, a pressing assembly, a pressing handle and a fixing base, wherein: the resisting piece is fixedly arranged, the positioning moving piece is located between the resisting piece and the pressing assembly; the pressing handle is rotatably arranged on the fixing base, the pressing handle is connected with the pressing assembly through a hinge, a vertical guide part is arranged on the fixing base, and the pressing assembly is movably arranged on the vertical guide part; pressing the pressing handle can drive the pressing assembly to move along the vertical guide part, so as to press and lock the positioning moving piece between the resisting piece and the pressing assembly.
[0013] Preferably, the pressing assembly comprises a fixing sleeve and a pressing shaft, wherein: the fixing sleeve is movably arranged on the vertical guide part and connected with the pressing handle through a hinge, and a threaded hole is axially arranged at the bottom end of the fixing sleeve; the pressing shaft is screw-connected in the threaded hole, and the pressing shaft is used for pressing the positioning moving piece.
[0014] Preferably, the supporting mechanism comprises a rack, and the jig conveying mechanism, the magnet feeding mechanism, the magnet pressing mechanism and the dispensing mechanism are arranged on the rack.
[0015] The magnet feeding and dispensing device has at least the following beneficial effects:
[0016] The magnet feeding device comprises a supporting mechanism, a jig conveying mechanism, a magnet feeding mechanism, a magnet pressing mechanism and a dispensing mechanism, and the supporting mechanism is used for supporting the jig conveying mechanism, the magnet feeding mechanism, the magnet pressing mechanism and the dispensing mechanism.
[0017] The magnet pressing mechanism comprises a pressing telescopic assembly and a pressing piece, the pressing piece is connected with the telescopic end of the pressing telescopic assembly, during dispensing, the jig conveying mechanism conveys the dispensing jig to the magnet feeding mechanism, the magnet feeding mechanism pushes the magnet to be dispensed to the lower side of the magnet pressing mechanism, at this time, the pressing telescopic assembly is actuated to drive the pressing piece to move, so that the magnet is pushed and pressed on the dispensing jig, and then the dispensing mechanism dispenses the magnet, and in the foregoing process, manual participation is not required, and the feeding and dispensing are automatically completed.
[0018] The jig conveying mechanism, the magnet feeding mechanism, the magnet pressing mechanism and the dispensing mechanism are cooperated with each other, the automatic feeding and dispensing of the magnet can be realized, the dispensing effect is remarkable, and the dispensing efficiency is high. BRIEF DESCRIPTION OF DRAWINGS
[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0020] Figure 1 is a structural schematic diagram of the present application;
[0021] Figure 2 is a structural schematic diagram of the rack of the present application;
[0022] Figure 3 is a structural schematic diagram of the jig conveying mechanism and the glue dispensing conveying assembly of the present application;
[0023] Figure 4 is a structural schematic diagram of the magnet feeding mechanism, the magnet pressing mechanism and the glue dispensing mechanism of the present application from one perspective;
[0024] Figure 5 is a structural schematic diagram of the magnet feeding mechanism, the magnet pressing mechanism and the glue dispensing mechanism of the present application from another perspective;
[0025] Figure 6 is a structural schematic diagram of the magnet pushing assembly of the present application;
[0026] Figure 7 is a structural schematic diagram of the rapid positioning assembly of the present application.
[0027] Reference signs
[0028] 1, support mechanism; 11, rack; 12, machine leg; 13, moving wheel; 2, jig conveying mechanism; 21, longitudinal conveying assembly; 22, sliding seat assembly; 3, magnet feeding mechanism; 31, feeding pipe; 32, magnet pushing assembly; 321, pushing telescopic assembly; 322, feeding plate; 33, guide plate assembly; 331, guide channel; 332, feeding port; 333, discharging pipe; 4, magnet pressing mechanism; 41, pressing telescopic assembly; 42, pressing part; 43, rapid positioning assembly; 431, positioning guide part; 432, positioning moving part; 433, resisting part; 434, pressing assembly; 4341, fixed sleeve; 4342, pressing shaft; 435, pressing handle; 436, fixed seat; 437, hinge; 5, glue dispensing mechanism; 51, glue dispensing assembly; 511, glue dispensing needle cylinder assembly; 512, glue dispensing guide assembly; 5121, glue dispensing guide part; 5122, glue dispensing moving part; 513, glue dispensing telescopic assembly; 52, glue dispensing conveying assembly; 521, transverse conveying assembly; 522, vertical conveying assembly. DETAILED DESCRIPTION
[0029] In order to make the purpose, technical scheme and advantages of the utility model clearer, the technical scheme of the utility model will be described in detail below. Obviously, the described embodiments are only part of the embodiments of the utility model, not all. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope protected by the utility model.
[0030] Embodiment 1:
[0031] The utility model provides a magnet feeding and dispensing device, reference Figures 1 to 6 As shown, the magnet feeding and dispensing device comprises a supporting mechanism 1, a jig conveying mechanism 2, a magnet feeding mechanism 3, a magnet pressing mechanism 4 and a dispensing mechanism 5, the jig conveying mechanism 2, the magnet feeding mechanism 3, the magnet pressing mechanism 4 and the dispensing mechanism 5 are all arranged on the supporting mechanism 1.
[0032] The jig conveying mechanism 2 is used for conveying the dispensing jig, a plurality of grooves for placing magnets are arranged on the dispensing jig; the magnet feeding mechanism 3 is used for pushing the magnet to be dispensed to the lower side of the magnet pressing mechanism 4; the magnet pressing mechanism 4 comprises a pressing telescopic assembly 41 and a pressing piece 42, the pressing piece 42 is connected with the telescopic end of the pressing telescopic assembly 41 and can be driven by the pressing telescopic assembly 41 to press and send the magnet to be dispensed to the dispensing jig; the dispensing mechanism 5 is used for coating glue on the magnet to be dispensed.
[0033] When dispensing, the dispensing jig is fixed on the jig conveying mechanism 2, the jig conveying mechanism 2 conveys the dispensing jig to the lower side of the magnet feeding mechanism 3, the magnet pressing mechanism 4 and the dispensing mechanism 5, then the magnet feeding mechanism 3 pushes the magnet to be dispensed to the lower side of the magnet pressing mechanism 4, at this time, the telescopic end of the pressing telescopic assembly 41 is extended to drive the pressing piece 42 to move downward, so as to press and send the magnet to be dispensed to the dispensing jig, then the dispensing mechanism 5 coats glue on the magnet, and the dispensing is completed.
[0034] In the above process, the jig conveying mechanism 2, the magnet feeding mechanism 3, the magnet pressing mechanism 4 and the dispensing mechanism 5 cooperate with each other to automatically complete the feeding and dispensing of the magnet, not only the dispensing effect is remarkable, but also the dispensing efficiency is high.
[0035] Embodiment 2:
[0036] Embodiment 2 is established on the basis of embodiment 1:
[0037] As shown, the jig conveying mechanism 2 comprises a longitudinal conveying assembly 21 and a sliding seat assembly 22. Figures 1 to 6
[0038] The longitudinal conveying assembly 21 is arranged on the support mechanism 1 and can drive the slide assembly 22 to move reciprocally along the longitudinal direction, and the slide assembly 22 is used for conveying the dispensing jig.
[0039] During the dispensing process, the longitudinal conveying assembly 21 drives the dispensing jig to move along the longitudinal direction through the slide assembly 22, thereby providing the dispensing displacement of the magnet in the longitudinal direction.
[0040] Optionally, the jig conveying mechanism 2 is arranged in two, and the double-station structure can save the dispensing jig replacement time, avoid waiting for the machine, and further improve the production efficiency.
[0041] As an optional embodiment, the dispensing mechanism 5 comprises a dispensing assembly 51 and a dispensing conveying assembly 52.
[0042] The dispensing conveying assembly 52 is arranged on the support mechanism 1, and the magnet feeding mechanism 3, the magnet pressing mechanism 4 and the dispensing assembly 51 are arranged on the dispensing conveying assembly 52, and the dispensing conveying assembly 52 is used for the horizontal conveying and vertical conveying of the magnet feeding mechanism 3, the magnet pressing mechanism 4 and the dispensing assembly 51.
[0043] The dispensing conveying assembly 52 and the jig conveying mechanism 2 cooperate with each other to provide the dispensing displacement in the horizontal direction, the longitudinal direction and the vertical direction, and can effectively ensure the dispensing effect.
[0044] As an optional embodiment, the dispensing conveying assembly 52 comprises a horizontal conveying assembly 521 and a vertical conveying assembly 522, the horizontal conveying assembly 521 is horizontally arranged on the support mechanism 1 and located above the jig conveying mechanism 2, and the vertical conveying assembly 522 is arranged on the horizontal conveying assembly 521 and can move reciprocally along the horizontal direction under the driving of the horizontal conveying assembly 521.
[0045] The vertical conveying assembly 522 is connected with a vertical support plate, and the magnet feeding mechanism 3, the magnet pressing mechanism 4 and the dispensing assembly 51 are arranged on the vertical support plate, the vertical conveying assembly 522 can drive the vertical support plate to ascend and descend, and the magnet feeding mechanism 3, the magnet pressing mechanism 4 and the dispensing assembly 51 ascend and descend synchronously.
[0046] The horizontal conveying assembly 521, the vertical conveying assembly 522 and the longitudinal conveying assembly 21 can adopt an electric conveying assembly, a pneumatic conveying assembly or a hydraulic conveying assembly, and preferably an electric conveying assembly, and can adopt an existing screw linear module or a belt linear module.
[0047] As an optional embodiment, the dispensing assembly 51 comprises a dispensing needle cylinder assembly 511, a dispensing guide assembly 512 and a dispensing telescopic assembly 513.
[0048] The dispensing guiding assembly 512 comprises a dispensing guide 5121 and a dispensing moving piece 5122. The dispensing guide 5121 is fixedly arranged on the vertical supporting plate. The dispensing moving piece 5122 is movably arranged on the dispensing guide 5121. The dispensing guide 5121 is arranged as a guide rail. The dispensing moving piece 5122 is arranged as a moving seat. The dispensing syringe assembly 511 is connected with the dispensing moving piece 5122. The dispensing moving piece 5122 is connected with the dispensing syringe assembly 511. The dispensing telescopic assembly 513 adopts a cylinder. The telescopic end of the cylinder is telescopic in action, thereby providing dispensing power for the dispensing syringe assembly 511.
[0049] As an optional embodiment, the magnet feeding mechanism 3 comprises a feeding pipe 31, a magnet pushing assembly 32 and a guide plate assembly 33.
[0050] The feeding pipe 31 is vertically arranged on the vertical supporting plate. The feeding pipe 31 is provided with a feeding groove for stacking the magnets to be dispensed along the axial direction. The cross-sectional shape of the feeding groove is matched with the shape of the magnet.
[0051] The magnet pushing assembly 32 comprises a pushing telescopic assembly 321 and a feeding plate 322. The pushing telescopic assembly 321 is arranged as a cylinder. The telescopic end of the pushing telescopic assembly 321 is connected with the feeding plate 322. The feeding plate 322 is provided with a placing through slot for accommodating the magnet to be dispensed. The placing through slot is matched with the shape of the magnet.
[0052] The guide plate assembly 33 is provided with a guide channel 331 matched with the feeding plate 322. The feeding plate 322 is slidingly inserted into the guide channel 331. The guide plate assembly 33 is provided with an inlet 332 in communication with the guide channel 331. The inlet 332 corresponds to the outlet end of the feeding groove. The guide plate assembly 33 is provided with an outlet pipe 333 in communication with the guide channel 331. The outlet pipe 333 corresponds to the magnet pressing mechanism 4. The top of the guide plate assembly 33 is provided with a clearance slot corresponding to the position of the outlet pipe 333. The pressing end of the pressing piece 42 can pass through the clearance slot and be inserted into the outlet pipe 333.
[0053] When the magnet is fed, the pushing telescopic assembly 321 drives the feeding plate 322 to move, so that the placing through slot is aligned with the inlet 332. The lowermost magnet stacked in the feeding groove falls into the placing through slot under the action of its own gravity. The pushing telescopic assembly 321 drives the feeding plate 322 to move, so that the magnet in the placing through slot is pushed to the position of the outlet pipe 333. In this process, the feeding plate 322 blocks the inlet 332. Thereafter, the pressing telescopic assembly 41 is telescopic in action, thereby driving the pressing piece 42 to move downward, so that the magnet is pressed and sent to the dispensing jig through the outlet pipe 333. The feeding of the magnet is completed.
[0054] The feeding pipe 31, the magnet pushing assembly 32 and the guide plate assembly 33 cooperate with each other, and the magnet feeding effect is remarkable.
[0055] As an optional embodiment, the magnet pressing mechanism 4 comprises a quick positioning assembly 43, the quick positioning assembly 43 comprising a positioning guide 431, a positioning moving part 432 and a locking assembly.
[0056] The positioning guide 431 is vertically arranged on the vertical support plate, the positioning moving part 432 is movably arranged on the positioning guide 431, the pressing telescopic assembly 41 is fixedly connected with the positioning moving part 432 and moves synchronously, the positioning guide 431 is arranged as a guide rail, the positioning moving part 432 is arranged as a moving seat, and the two are in sliding fit.
[0057] The locking assembly is arranged on the vertical support plate and can lock the position of the positioning moving part 432 relative to the positioning guide 431, thereby locking the relative position of the pressing telescopic assembly 41.
[0058] The arrangement of the quick positioning assembly 43 can realize the locking of the position of the pressing telescopic assembly 41.
[0059] As an optional embodiment, the locking assembly comprises a resisting piece 433, a pressing assembly 434, a pressing handle 435 and a fixed seat 436.
[0060] The resisting piece 433 is arranged as a resisting block and is fixedly arranged on the vertical support plate through a threaded fastener, the positioning moving part 432 is located between the resisting piece 433 and the pressing assembly 434; the pressing handle 435 is rotatably arranged on the fixed seat 436, the pressing handle 435 is connected with the pressing assembly 434 through a hinge 437, the fixed seat 436 is provided with a vertical guide part, and the pressing assembly 434 is movably arranged on the vertical guide part.
[0061] When the positioning moving part 432 and the positioning guide 431 are locked, the pressing handle 435 is pressed, the pressing handle 435 drives the pressing assembly 434 to move along the vertical guide part through the hinge 437, so as to press and lock the positioning moving part 432 between the resisting piece 433 and the pressing assembly 434.
[0062] The pressing and locking mode can realize the quick locking of the relative position of the pressing telescopic assembly 41, and the operation is extremely convenient.
[0063] As an optional embodiment, the pressing assembly 434 comprises a fixed sleeve 4341 and a pressing shaft 4342.
[0064] The vertical guide part is a vertical guide hole matched in size with the fixing sleeve 4341, the top end of the fixing sleeve 4341 is connected with the pressing handle 435 through the hinge 437, the bottom end of the fixing sleeve 4341 passes through the vertical guide hole and is in sliding fit with the vertical guide hole, and the bottom end of the fixing sleeve 4341 is provided with a threaded hole in the axial direction; the pressing shaft 4342 is threadedly connected in the threaded hole, and the pressing shaft 4342 is used for positioning the pressing of the moving part 432.
[0065] In actual application, the adjustment of the overall axial length of the pressing assembly 434 can be realized by rotating the pressing shaft 4342, so that the pressing effect of the magnet can be effectively ensured.
[0066] As an optional embodiment, the supporting mechanism 1 comprises a rack 11, and the jig conveying mechanism 2, the magnet feeding mechanism 3, the magnet pressing mechanism 4 and the glue dispensing mechanism 5 are all arranged on the rack 11.
[0067] The bottom of the rack 11 is provided with a supporting leg 12, the top of the supporting leg 12 is provided with a stud which is threadedly connected to the rack 11, and the height can be adjusted by rotating operation.
[0068] The bottom of the rack 11 is provided with a moving wheel 13, so that the rack 11 forms a movable rack, and the overall movement of the magnet feeding and glue dispensing device is facilitated, and the use is more convenient.
[0069] In the description of the present application, it should be understood that the terms "upper", "lower", "inner", "outer", "top", "bottom" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0070] In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "multiple", "several" is at least two, for example, two, three, etc., unless otherwise specifically limited.
[0071] In this application, unless otherwise clearly specified and limited, the terms "mounting", "connection", "connecting", "fixing" and the like should be understood in a broad sense, for example, can be fixed connection, can also be detachable connection, or integral; can be directly connected, or indirectly connected through an intermediate medium; can be the internal communication of two elements or the interaction relationship of two elements, unless otherwise clearly limited. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.
[0072] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A magnet loading dispensing device, characterized in that, The application relates to a magnet dispensing device, which comprises a supporting mechanism, a jig conveying mechanism, a magnet feeding mechanism, a magnet pressing mechanism and a dispensing mechanism, wherein the jig conveying mechanism, the magnet feeding mechanism, the magnet pressing mechanism and the dispensing mechanism are arranged on the supporting mechanism. The jig conveying mechanism is used for conveying the dispensing jig. The magnet feeding mechanism is used for pushing the magnet to be dispensed to the lower side of the magnet pressing mechanism. The magnet pressing mechanism comprises a pressing telescopic component and a pressing part, the pressing part is connected with the telescopic end of the pressing telescopic component, and the magnet to be dispensed can be pressed to the dispensing jig under the driving of the pressing telescopic component. The dispensing mechanism is used for dispensing glue on the magnet to be dispensed.
2. The magnet loading point dispensing device of claim 1, wherein, The jig conveying mechanism comprises a longitudinal conveying component and a sliding seat component, wherein The longitudinal conveying component is arranged on the supporting mechanism and drives the sliding seat component to move reciprocally along the longitudinal direction. The sliding seat component is used for conveying the dispensing jig.
3. The magnet loading point dispensing device of claim 1, wherein, The dispensing mechanism comprises a dispensing component and a dispensing conveying component, wherein: The dispensing conveying component is arranged on the supporting mechanism, the magnet feeding mechanism, the magnet pressing mechanism and the dispensing component are arranged on the dispensing conveying component, and the dispensing conveying component is used for transversely conveying and vertically conveying the magnet feeding mechanism, the magnet pressing mechanism and the dispensing component.
4. The magnet loading point dispensing device of claim 3, wherein, The dispensing conveying component comprises a transverse conveying component and a vertical conveying component, wherein The transverse conveying component is fixedly arranged on the supporting mechanism and located above the jig conveying mechanism. The vertical conveying component is arranged on the transverse conveying component and can reciprocally move along the transverse direction under the driving of the transverse conveying component. The magnet feeding mechanism, the magnet pressing mechanism and the dispensing component are arranged on the vertical conveying component and can reciprocally move along the vertical direction under the driving of the vertical conveying component.
5. The magnet loading point dispensing device of claim 3, wherein, The dispensing component comprises a dispensing needle cylinder component, a dispensing guide component and a dispensing telescopic component, wherein: The dispensing guide component comprises a dispensing guide part and a dispensing moving part, the dispensing moving part is movably arranged on the dispensing guide part, the dispensing needle cylinder component is connected with the dispensing moving part, the dispensing telescopic component is connected with the dispensing moving part, and the telescopic end of the dispensing telescopic component can drive the dispensing needle cylinder component to dispense glue through the dispensing moving part.
6. The magnet loading point dispensing device of claim 1, wherein, The magnet feeding mechanism comprises a feeding pipe, a magnet pushing component and a guide plate component, wherein: The feeding pipe is vertically arranged, the feeding pipe is provided with a feeding groove for stacking the magnet to be dispensed along the axial direction; The magnet pushing component comprises a pushing telescopic component and a feeding plate, the telescopic end of the pushing telescopic component is connected with the feeding plate, and the feeding plate is provided with a placing through slot for accommodating the magnet to be dispensed. The material guiding plate assembly is provided with a material guiding channel matched with the feeding plate, the feeding plate is slidingly inserted into the material guiding channel, a feeding opening is arranged on the material guiding plate assembly and communicated with the material guiding channel, the feeding opening corresponds to the outlet end of the feeding groove, a discharging pipe is arranged on the material guiding plate assembly and communicated with the material guiding channel, the discharging pipe corresponds to the magnet pressing mechanism, and the magnet pressing mechanism can press and send the magnet to be glued in the placing groove to the glue dispensing jig through the discharging pipe.
7. The magnet loading point dispensing device of claim 1, wherein, The magnet pressing mechanism comprises a quick positioning assembly, the quick positioning assembly comprises a positioning guide, a positioning moving part and a locking assembly, wherein: The positioning guide is vertically arranged; The positioning moving part is movably arranged on the positioning guide, the pressing telescopic assembly is fixedly connected with the positioning moving part and moves synchronously; The locking assembly can lock the position of the positioning moving part relative to the positioning guide.
8. The magnet loading point dispensing device of claim 7, wherein, The locking assembly comprises a resisting piece, a pressing assembly, a pressing handle and a fixing seat, wherein: The resisting piece is fixedly arranged, the positioning moving part is located between the resisting piece and the pressing assembly, the pressing handle is rotatably arranged on the fixing seat, the pressing handle is connected with the pressing assembly through a hinge, the fixing seat is provided with a vertical guide part, and the pressing assembly is movably arranged on the vertical guide part; Pressing the pressing handle can drive the pressing assembly to move along the vertical guide part to press and lock the positioning moving part between the resisting piece and the pressing assembly.
9. The magnet loading point dispensing device of claim 8, wherein, The pressing assembly comprises a fixing sleeve and a pressing shaft, wherein: The fixing sleeve is movably arranged on the vertical guide part and connected with the pressing handle through a hinge, and a threaded hole is formed in the bottom end of the fixing sleeve in the axial direction; The pressing shaft is threadedly connected in the threaded hole, and the pressing shaft is used for pressing the positioning moving part.
10. The magnet loading point dispensing device of claim 1, wherein, The supporting mechanism comprises a rack, and the jig conveying mechanism, the magnet feeding mechanism, the magnet pressing mechanism and the glue dispensing mechanism are arranged on the rack.