Fixture for glue filling
By designing the drive mechanism and sealing plug in the fixture, the problem of potting compound leakage was solved, automatic sealing was achieved, product quality and manufacturing efficiency were improved, and labor intensity was reduced.
Patent Information
- Application Number
- CN202520053576.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-01-09
AI Technical Summary
During the potting process, the communication interface of the product casing is prone to leakage, which leads to a decline in product quality. Existing technology relies on manual application of solder resist, which is not a thorough sealant.
Design a fixture comprising a base, a drive mechanism, and a sealing plug. The drive mechanism drives the sealing plug to close or move away from the openings in the product, replacing manual application of solder resist, ensuring sealing performance and reducing labor intensity.
It effectively prevents potting compound leakage, improves product manufacturing efficiency, reduces labor intensity, and ensures product quality.
Smart Images

Figure CN223800854U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of electrical manufacturing equipment, and particularly relates to a clamp for glue filling. BACKGROUND
[0002] At present, some products containing circuit boards need to be surrounded in a container without gaps on the four sides and the bottom in the process of filling and pouring glue. In addition, the side of the product shell is provided with a communication interface, which causes the filled pouring glue to be prone to leakage.
[0003] In order to prevent the pouring glue from leaking, the current process mainly arranges personnel to manually block the gap of the communication interface with solder resist before filling and pouring glue, and removes the solder resist after the pouring glue is solidified. However, when the personnel apply the solder resist, it is difficult to seal the gap, which causes the filled pouring glue to flow out and affect the product quality. CONTENT OF THE UTILITY MODEL
[0004] The purpose of the embodiment of the application is to provide a clamp for glue filling, which can solve the problem that manual blocking of the communication interface of the product causes the pouring glue to be prone to leakage.
[0005] In order to solve the above technical problems, the application is implemented as follows:
[0006] The embodiment of the application provides a clamp for glue filling, which is used for filling glue in the inside of a product shell, and the product shell has an opening communicating the inside and the outside;
[0007] The clamp comprises a base, a driving mechanism and a sealing plug, the base is used for arranging the product, the driving mechanism is arranged on the base, and the sealing plug is connected with the driving mechanism and driven by the driving mechanism to close the opening or move away from the opening.
[0008] The embodiment of the application provides a clamp for glue filling, which can drive the sealing plug to move and close the opening of the product through the driving mechanism, so as to effectively prevent the glue in the inside of the product from leaking from the opening. The sealing method replaces the manual application of solder resist in the related art, which can not only ensure the sealing property, but also reduce the labor intensity of personnel and is beneficial to improving the product manufacturing efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0009] Figure 1 The structure of the clamp disclosed in the embodiment of the application is shown in the schematic view;
[0010] Figure 2 The schematic view of the base, the driving mechanism, the sealing plug, the positioning mechanism, the blocking mechanism and other structures disclosed in the embodiment of the application is shown in the schematic view;
[0011] Figure 3Schematic view of the drive assembly, sliding seat, elastic member, sealing plug, blocking mechanism and other structures disclosed in the embodiments of the present application.
[0012] Figure 4 Schematic view of the drive assembly, sliding seat, elastic member, sealing plug and other structures disclosed in the embodiments of the present application.
[0013] Figure 5 Schematic view of the drive assembly, sliding seat, elastic member, sealing plug and other structures disclosed in the embodiments of the present application.
[0014] Figure 6 Schematic view of the drive assembly, sliding seat, elastic member, sealing plug and other structures disclosed in the embodiments of the present application.
[0015] Explanation of reference signs:
[0016] 10 - base; 11 - bearing member; 111 - bearing body; 112 - mounting frame; 1121 - sliding rail; 1122 - guide hole; 12 - transmission assembly;
[0017] 20 - drive mechanism;
[0018] 21 - drive assembly; 211 - first lifting module; 212 - first translation module; 213 - first poking member; 214 - second lifting module; 215 - second translation module; 216 - second poking member;
[0019] 22 - sliding seat; 221 - sliding block; 222 - guide shaft; 223 - locking hole;
[0020] 23 - elastic member;
[0021] 30 - sealing plug;
[0022] 40 - locking mechanism; 41 - third lifting module; 42 - locking member; 43 - jacking member;
[0023] 50 - positioning mechanism; 51 - fourth lifting module; 52 - positioning member;
[0024] 60 - blocking mechanism; 61 - fifth lifting module; 62 - blocking member. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.
[0026] The terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are generally of a kind and do not limit the number of objects, for example, the first object can be one or more. In addition, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / " generally indicates that the objects before and after are in an "or" relationship.
[0027] The embodiments of the present application will be described in detail below with reference to specific examples and their application scenarios.
[0028] Reference Figures 1 to 6 The embodiments of the present application disclose a clamp for glue pouring, which is used for setting products to perform glue pouring operation on the inside of the shell of the products. Optionally, the products can be electronic products, and the inside of the shell of the electronic products is provided with a circuit board, and the circuit board can be wrapped by pouring glue into the inside of the shell to play a sealing role. In addition, the shell of the product can have an opening communicating the inside and the outside of the shell to realize the connection between the internal device and the external device through the opening. However, due to the existence of the opening, when the inside of the shell is poured with glue, the sealant will flow to the outside of the shell through the opening, resulting in leakage of the sealant.
[0029] Based on the above situation, the embodiments of the present application design a clamp for glue pouring to solve the problem of sealant leakage. The disclosed clamp includes a base 10, a driving mechanism 20 and a sealing plug 30.
[0030] The base 10 is a basic component, which can provide a bearing and mounting basis for the driving mechanism 20, the sealing plug 30 and the like, and the base 10 can also be provided with products to ensure the stability of the products during the process of sealing the opening. In some embodiments, the driving mechanism 20 is arranged on the base 10 to realize the bearing and mounting of the driving mechanism 20 through the base 10, and to ensure the stability of the driving mechanism 20. Optionally, the base 10 can include a base platform, and the driving mechanism 20 can be mounted on the base platform.
[0031] The sealing plug 30 is used to block the opening of the shell to prevent the sealant in the shell from leaking from the opening. Of course, the sealing plug 30 can also be separated from the opening after the glue pouring process is completed, so as to facilitate the blocking of the opening of the next product. Optionally, the shape of the sealing plug 30 can be matched with the opening, that is, the sealing plug 30 can be a profiled plug to ensure the sealing of the opening. Exemplarily, the sealing plug 30 can adopt a profiled silica gel plug, and the Shore hardness thereof can be 10 degrees, so that it can be completely matched with the opening to play a good sealing role.
[0032] To realize the movement of the sealing plug 30 relative to the opening, the sealing plug 30 can be connected with the driving mechanism 20 and driven by the driving mechanism 20 to close or move away from the opening. Alternatively, the driving mechanism 20 can drive the sealing plug 30 to move or rotate, and of course, other forms are also possible, as long as the sealing plug 30 can be moved close to or away from the opening, and the specific movement form is not limited.
[0033] Based on the above arrangement, the sealing plug 30 can be driven to move by the driving mechanism 20 to close the opening of the product, so that the leakage of the glue inside the product from the opening can be effectively prevented; this sealing method replaces the manual application of the solder resist glue in the related art, which can not only ensure the sealing performance, but also reduce the labor intensity of personnel and is conducive to improving the product manufacturing efficiency.
[0034] Reference Figure 3 and Figure 4 In some embodiments, the driving mechanism 20 can include a driving assembly 21 and a sliding seat 22. The sliding seat 22 is slidably connected to the base 10 in the first direction, and the sealing plug 30 is arranged on the sliding seat 22. The driving assembly 21 is connected with the sliding seat 22 and is used to drive the sliding seat 22 and the sealing plug 30 carried thereby to move in the first direction, so that the sealing plug 30 can close or move away from the opening.
[0035] Alternatively, the driving assembly 21 can have at least a driving end moving in the first direction, which is connected with the sliding seat 22 to drive the sliding seat 22 to move in the first direction.
[0036] In addition, the base 10 can have a guide structure, such as a guide rail, arranged in the first direction, so as to guide the sliding seat 22 through the guide structure, thereby ensuring the movement accuracy and smoothness of the sliding seat 22.
[0037] Alternatively, the sealing plug 30 and the sliding seat 22 can be fixedly connected to ensure the installation stability of the sealing plug 30; of course, the sealing plug 30 and the sliding seat 22 can also be detachably connected to facilitate replacement of the sealing plug 30.
[0038] Considering that the sliding seat 22 and the driving assembly 21 can move relative to each other in the first direction in some cases, to prevent the sliding seat 22 from colliding with the driving end of the driving assembly 21 during the relative movement and interfering with the relative movement or causing damage to the parts, the driving end of the driving assembly 21 in the embodiments of the present application can be away from the sliding seat 22 to prevent the driving end from colliding with the sliding seat 22.
[0039] As Figure 4As shown, the driving assembly 21 can include a first lifting module 211, a first translation module 212, and a first poking member 213. The first poking member 213 can be in contact with the sliding seat 22. The first translation module 212 is connected with the first poking member 213, and is configured to drive the first poking member 213 to move in the first direction, so as to drive the sliding seat 22 to move in the first direction by the first poking member 213, so that the sliding seat 22 drives the sealing plug 30 to close the opening.
[0040] Optionally, the first poking member 213 can be a poking block, and the first translation module 212 can be a linear module, such as a pneumatic cylinder, a hydraulic cylinder, an electric cylinder, or the like.
[0041] The first lifting module 211 is arranged on the base 10, and is configured to be supported and installed by the base 10, so as to ensure the stability of the first lifting module 211. The first lifting module 211 is connected with the first translation module 212, and is configured to drive the first translation module 212 to move in the second direction perpendicular to the first direction, and synchronously drive the first poking member 213 connected with the first translation module 212 to move in the second direction. Based on this, the sliding seat 22 can be driven to move towards the opening by the first poking member 213 through the cooperation of the first translation module 212 and the first lifting module 211, so as to close the opening by the sealing plug 30.
[0042] Optionally, the first lifting module 211 can be a linear module, such as a pneumatic cylinder, a hydraulic cylinder, an electric cylinder, or the like.
[0043] Exemplarily, the first direction can be a horizontal direction, and the second direction can be a vertical direction, and of course, can also be other directions respectively, which are not limited here.
[0044] In other embodiments, the first translation module 212 can be arranged on the base 10. The first translation module 212 is connected with the first lifting module 211, and is configured to drive the first lifting module 211 to move in the first direction. The first lifting module 211 is connected with the first poking member 213, and is configured to drive the first poking member 213 to move in the second direction perpendicular to the first direction. Based on this, the sliding seat 22 can be driven to move towards the opening by the first poking member 213 through the cooperation of the first translation module 212 and the first lifting module 211, so as to close the opening by the sealing plug 30.
[0045] It should be noted that the first lifting module 211, the first translation module 212 and the first poking member 213 can be used to drive the sliding seat 22 and the sealing plug 30 to move towards the opening to close the opening. Of course, the first lifting module 211, the first translation module 212 and the first poking member 213 can also be used to drive the sliding seat 22 and the sealing plug 30 to move away from the opening to pull out the sealing plug 30 from the opening. In this case, the plug-in station and the plug-out station can be located at the same station, which is beneficial to save the occupied space of the clamp. However, in this case, the next product can be filled with glue only after the plug-in, glue-filling, solidification, plug-out and other steps of the previous product are all completed, thereby increasing the time of the entire glue-filling process and reducing the glue-filling efficiency.
[0046] To improve the glue-filling efficiency, in some other embodiments, the plug-in station and the plug-out station can also be located at different stations. In this case, the product can be moved from the plug-in station to the plug-out station only after the plug-in and glue-filling steps of the previous product are completed, so that the next product can be moved to the plug-in station. Thus, the continuity of the entire process can be improved, the waiting time can be reduced, and the glue-filling efficiency can be improved.
[0047] Based on the above, the driving mechanism 20 in the embodiments of the present application can also have a plug-out structure. As shown in Figure 4 The driving assembly 21 can include a second lifting module 214, a second translation module 215 and a second poking member 216. The second poking member 216 can be in contact with the sliding seat 22. The second translation module 215 is connected with the second poking member 216 and is used to drive the second poking member 216 to move in the first direction, so that the sliding seat 22 is poked by the second poking member 216 to move in the first direction, so that the sliding seat 22 drives the sealing plug 30 to move away from the opening.
[0048] Optionally, the second poking member 216 can be a poking block, and the second translation module 215 can be a linear module, such as a pneumatic cylinder, a hydraulic cylinder or an electric cylinder.
[0049] The second lifting module 214 is arranged on the base 10 to be supported and installed by the base 10, so as to ensure the stability of the second lifting module 214. The second lifting module 214 is connected with the second translation module 215 and is used to drive the second translation module 215 to move in the second direction perpendicular to the first direction, and synchronously drive the second poking member 216 connected with the second translation module 215 to move in the second direction. Based on this, the sliding seat 22 can be driven by the second poking member 216 to move away from the opening by the cooperation of the second translation module 215 and the second lifting module 214, so as to pull out the sealing plug 30 from the opening.
[0050] Optionally, the second lifting module 214 can be a linear module, for example, a pneumatic cylinder, a hydraulic cylinder, an electric cylinder or the like.
[0051] Exemplarily, the first direction can be a horizontal direction, and the second direction can be a vertical direction, and of course, can also be other directions respectively, which are not limited here.
[0052] In other embodiments, the second translation module 215 can be arranged on the base 10, and the second translation module 215 is connected with the second lifting module 214, for driving the second lifting module 214 to move in the first direction; the second lifting module 214 is connected with the second poking member 216, for driving the second poking member 216 to move in the second direction perpendicular to the first direction. Based on this, through the cooperation of the second translation module 215 and the second lifting module 214, the slide 22 can be driven by the second poking member 216 to move away from the hole, so as to pull out the sealing plug 30 from the opening.
[0053] In order to realize the bearing and transmission of the product, the base 10 can include a bearing member 11 and a transmission assembly 12, as shown in Figure 2 , wherein the bearing member 11 can be provided with the product and the sealing plug 30, the transmission assembly 12 extends along the first direction, and the bearing member 11 is arranged on the transmission assembly 12 and can move with the transmission assembly 12 in the first direction. Based on this arrangement, under the action of the transmission assembly 12, the bearing member 11 can bear the product and the sealing plug 30 to move in the first direction, so that the product and the sealing plug 30 can be moved to the plug-in station for plug-in operation, or to the plug-out station for plug-out operation.
[0054] Optionally, the bearing member 11 can be a plate structure, a block structure, a frame structure or the like, and of course, can also be other forms, which are not limited here. The transmission assembly 12 can be a belt type transmission assembly, a chain type transmission assembly, a roller type transmission assembly or the like, and of course, can also be other forms, which are not limited here.
[0055] Referring to Figure 6 , in some embodiments, the bearing member 11 can include a bearing body 111 and a mounting frame 112, the mounting frame 112 is arranged on the bearing body 111, and the slide 22 can be slidably connected with the mounting frame 112 in the first direction, so that under the driving action of the driving assembly 21, the sealing plug 30 carried by the slide 22 can move in the first direction. Optionally, one of the slide 22 and the mounting frame 112 can be provided with a sliding rail 1121, and the other can be provided with a sliding groove, the sliding rail 1121 and the sliding groove are slidably matched, so that the slide 22 can slide smoothly relative to the mounting frame 112.
[0056] Optionally, the mounting bracket 112 can be connected to the carrier body 111, such as by welding, bonding, riveting, screwing, snapping, etc. In this case, the drive assembly 21 can directly drive the slide 22 to move, so that the slide 22 and the sealing plug 30 it carries move in the first direction.
[0057] To prevent the sealing plug 30 from being pulled out of the opening during the movement of the sliding block 22 along the first direction, in this embodiment, the driving mechanism 20 may further include an elastic element 23. For example... Figures 3 to 6 As shown, the elastic element 23 elastically connects the slide 22 and the carrier 11, and is used to drive the slide 22 to move the sealing plug 30 toward the opening. Based on the above configuration, under the elastic force of the elastic element 23, the slide 22 can apply an elastic force to the sealing plug 30, so that the sealing plug 30 can seal the opening, thereby ensuring the sealing of the opening and preventing sealant leakage. Exemplarily, the elastic element 23 can be a spring, an elastic band, etc., and of course, it can also be in other forms, which are not specifically limited here.
[0058] In some embodiments, the elastic element 23 elastically connects the slide 22 and the mounting bracket 112. Under the driving action of the driving component 21, the slide 22 and the sealing plug 30 it carries can move synchronously toward the opening to a preset position. Furthermore, when the driving component 21 does not apply a driving force to the slide 22, under the elastic force of the elastic element 23, the slide 22 and the sealing plug 30 it carries can move relative to the mounting bracket 112 in a first direction so that the sealing plug 30 tightly seals the opening and prevents the sealing plug 30 from being pulled out of the opening.
[0059] To lock the slide 22 and prevent it from moving freely under the elastic force of the elastic element 23, the clamp may also include a locking mechanism 40, such as... Figure 3 As shown, when the slide 22 does not need to move relative to the carrier 11, the slide 22 can be locked by the locking mechanism 40 to prevent the slide 22 from moving relative to the carrier 11 in the first direction; when the slide 22 needs to move relative to the carrier 11, the locking mechanism 40 can be unlocked so that the slide 22 can move under the elastic force of the elastic member 23.
[0060] In the embodiments of this application, such as Figures 4 to 6As shown, the clamp can further include a third lifting module 41, a jacking member 43 and a locking member 42. The locking member 42 is slidingly connected to the carrier 11 in a second direction perpendicular to the first direction, so that the locking member 42 can extend or retract relative to the carrier 11. When the locking member 42 extends relative to the carrier 11, the locking member 42 can limit the sliding seat 22, so as to lock the sliding seat 22 in the first direction and prevent the sliding seat 22 from moving relative to the carrier 11 in the first direction; when the locking member 42 retracts relative to the carrier 11, the locking member 42 can release the limitation on the sliding seat 22, so that the sliding seat 22 can move relative to the carrier 11 in the first direction under the elastic force of the elastic member 23 and block the opening.
[0061] Optionally, the mounting rack 112 can be provided with a sliding hole extending in the second direction, and the locking member 42 is slidingly connected to the sliding hole. In addition, in order to automatically extend the locking member 42, an elastic member can be arranged between the locking member 42 and the mounting rack 112, so as to automatically extend the locking member 42 relative to the mounting rack 112 by applying an elastic force to the locking member 42, thereby locking the sliding seat 22 by the locking member 42. Exemplarily, the elastic member can be a spring, an elastic band or the like.
[0062] In order to release the locking of the sliding seat 22 by the locking member 42, the third lifting module 41 is connected with the jacking member 43, for driving the jacking member 43 to separate from the sliding seat 22, so that the locking of the sliding seat 22 by the locking member 42 is released, and the sliding seat 22 can move relative to the mounting rack 112 under the elastic force of the elastic member 23, so that the sealing plug 30 can block the opening.
[0063] Optionally, the third lifting module 41 can be a linear module, such as a pneumatic cylinder, a hydraulic cylinder, an electric cylinder or the like; the jacking member 43 can be a jacking post, a jacking rod, a jacking block or the like; and the locking member 42 can be a locking post, a locking block or the like.
[0064] In addition, the sliding seat 22 can be provided with a locking hole 223, which can cooperate with the locking member 42, i.e., at least part of the locking member 42 is moved into the locking hole 223 to achieve the locking of the sliding seat 22. Of course, the sliding seat 22 can also be provided with a locking groove, which can cooperate with the locking member 42, i.e., at least part of the locking member 42 is moved into the locking groove to achieve the locking of the sliding seat 22.
[0065] As shown in FIG. 1, the clamp can further include a sealing plug 30, which is arranged in the opening and is used to block the opening. Figure 4 and Figure 5As shown, to ensure smooth movement of the sliding seat 22, one of the sliding seat 22 and the carrier 11 can be provided with a guide shaft 222 extending along the first direction, and the other one can be provided with a guide hole 1122, and the guide shaft 222 and the guide hole 1122 are in sliding fit. Based on this arrangement, the movement accuracy of the sliding seat 22 relative to the carrier 11 can be ensured, and the movement accuracy of the sealing plug 30 is further ensured, and the misalignment of the sealing plug 30 and the opening can be prevented.
[0066] Alternatively, the mounting rack 112 can be provided with the guide shaft 222, and the sliding seat 22 can be provided with the guide hole 1122; or the mounting rack 112 can be provided with the guide hole 1122, and the sliding seat 22 can be provided with the guide shaft 222.
[0067] In some more specific embodiments, the guide shaft 222 can be arranged on the sliding seat 22, and the guide hole 1122 can be arranged on the mounting rack 112; in addition, an end of the guide shaft 222 away from the sliding seat 22 can be provided with a blocking end, the elastic member 23 is sleeved on the outside of the guide shaft 222, and one end of the elastic member 23 abuts against the blocking end, and the other end abuts against the mounting rack 112, so as to drive the sliding seat 22 to move relative to the mounting rack 112 in the first direction by the elastic member 23.
[0068] In addition, one of the sliding seat 22 and the carrier 11 can be provided with a sliding rail 1121 extending along the first direction, and the other one can be provided with a sliding block 221, and the sliding rail 1121 and the sliding block 221 are in sliding fit. Based on this arrangement, the smooth and smooth sliding of the sliding seat 22 can be ensured.
[0069] Alternatively, the sliding rail 1121 can be arranged on the sliding seat 22, and the sliding block 221 can be arranged on the mounting rack 112; or the sliding rail 1121 can be arranged on the mounting rack 112, and the sliding block 221 can be arranged on the sliding seat 22.
[0070] It is considered that the transmission assembly 12 can transmit the carrier 11 and the product and the sealing plug 30 carried thereby, so that the product and the sealing plug 30 can be moved to the plug-in station or the plug-out station. To ensure the position accuracy of the product and the sealing plug 30 at each station, the clamp can further include a positioning mechanism 50, and the positioning of the carrier 11 can be realized by the positioning mechanism 50, so as to ensure the position accuracy of the carrier 11 at the plug-in station or the plug-out station.
[0071] In the embodiments of the present application, as shown in Figure 1 and Figure 2As shown, the clamp can further include a fourth lifting module 51 and a positioning member 52, which together constitute a positioning mechanism 50. The fourth lifting module 51 is connected with the positioning member 52 and is configured to drive the positioning member 52 to move in a second direction perpendicular to the first direction, so as to position the carrier 11 by the positioning member 52, thereby ensuring the position accuracy of the carrier 11 at the plug-in station or the plug-out station, and further ensuring the position accuracy of the product and the sealing plug 30.
[0072] Based on the above arrangement, when the carrier 11 carrying the product and the sealing plug 30 moves to the specified position of the plug-in station or the plug-out station, the fourth lifting module 51 can drive the positioning member 52 to rise or fall, so that the positioning member 52 cooperates with the positioning structure provided on the carrier 11, thereby realizing the positioning of the carrier 11 and ensuring the position accuracy of the product and the sealing plug 30.
[0073] Optionally, the fourth lifting module 51 can be a linear module, such as a pneumatic cylinder, a hydraulic cylinder, an electric cylinder, etc. The positioning member 52 can be a positioning column, a positioning block, a positioning rod, etc.
[0074] In addition, the carrier 11 can be provided with a positioning hole, a positioning groove, etc. to facilitate cooperation with the positioning member 52.
[0075] Reference Figure 1 and Figure 2 In some embodiments, the clamp can further include a blocking mechanism 60, by which the carrier 11 can be blocked to prevent the carrier 11 from being excessively transported. The clamp can further include a fifth lifting module 61 and a blocking member 62, which can constitute the blocking mechanism 60.
[0076] The fifth lifting module 61 is connected with the blocking member 62 and is configured to drive the blocking member 62 to move in a second direction perpendicular to the first direction, so as to block the carrier 11 by the blocking member 62.
[0077] Based on the above arrangement, when the carrier 11 carrying the product and the sealing plug 30 moves to the specified position of the plug-in station or the plug-out station, the fifth lifting module 61 can drive the blocking member 62 to rise or fall, so that the blocking member 62 contacts the carrier 11, thereby realizing the blocking of the carrier 11 and preventing the carrier 11 from moving excessively.
[0078] Optionally, the fifth lifting module 61 can be a linear module, such as a pneumatic cylinder, a hydraulic cylinder, an electric cylinder, etc. The blocking member 62 can be a blocking block, etc.
[0079] In the embodiments of the present application, when the plug-in station and the plug-out station are at different positions, the plug-in station and the plug-out station can be respectively provided with locking mechanisms 40, positioning mechanisms 50 and blocking mechanisms 60, etc. to respectively achieve locking and unlocking, positioning and blocking of the carrier 11 in the two stations.
[0080] In summary, the clamp for glue filling in the embodiments of the present application can not only ensure the sealing of the shell opening, but also reduce the labor intensity of personnel and is conducive to improving the product manufacturing efficiency.
[0081] The embodiments of the present application are described above in combination with the drawings, but the present application is not limited to the specific embodiments described above, and the specific embodiments described above are only illustrative but not restrictive. Those skilled in the art can make many forms under the inspiration of the present application without departing from the scope of the present application and the scope protected by the claims.
Claims
1. A fixture for dispensing adhesive, characterized in that, The application relates to a product shell with an opening communicating the inside and the outside, and a glue filling device for filling glue into the inside of the product shell. The clamp comprises a base (10) for arranging the product, a driving mechanism (20) arranged on the base (10), and a sealing plug (30) connected with the driving mechanism (20) and driven by the driving mechanism (20) to close or move away from the opening.
2. The jig for encapsulation according to claim 1, wherein The driving mechanism (20) comprises a driving assembly (21) and a sliding base (22). The sliding base (22) is slidably connected with the base (10) in a first direction, and the sealing plug (30) is arranged on the sliding base (22). The driving assembly (21) is connected with the sliding base (22) and used for driving the sliding base (22) and the sealing plug (30) to move in the first direction.
3. The jig for encapsulation according to claim 2, wherein The driving assembly (21) comprises a first lifting module (211), a first translation module (212) and a first shifting piece (213). The first lifting module (211) is arranged on the base (10), and the first lifting module (211) is connected with the first translation module (212) and used for driving the first translation module (212) to move in a second direction perpendicular to the first direction. The first translation module (212) is connected with the first shifting piece (213) and used for driving the first shifting piece (213) to shift the sliding base (22) to move in the first direction, so that the sliding base (22) drives the sealing plug (30) to close the opening.
4. The jig for encapsulation according to claim 2, wherein The driving assembly (21) comprises a second lifting module (214), a second translation module (215) and a second shifting piece (216). The second lifting module (214) is arranged on the base (10), and the second lifting module (214) is connected with the second translation module (215) and used for driving the second translation module (215) to move in the second direction perpendicular to the first direction. The second translation module (215) is connected with the second shifting piece (216) and used for driving the second shifting piece (216) to shift the sliding base (22) to move in the first direction, so that the sliding base (22) drives the sealing plug (30) to move away from the opening.
5. The jig for encapsulation according to any one of claims 2 to 4, wherein The base (10) comprises a bearing member (11) and a transmission assembly (12). The bearing member (11) is used for arranging the product and the sealing plug (30). The transmission assembly (12) extends in the first direction, the bearing member (11) is arranged on the transmission assembly (12) and can move with the transmission assembly (12) in the first direction.
6. The jig for encapsulation according to claim 5, wherein The driving mechanism (20) further comprises an elastic member (23). The elastic member (23) elastically connects the sliding base (22) and the bearing member (11) and is used for driving the sliding base (22) to drive the sealing plug (30) to move towards the opening.
7. The jig for encapsulation according to claim 6, wherein The clamp further comprises a third lifting module (41), a jacking member (43) and a locking member (42). The locking piece (42) is in sliding connection with the carrier (11) in a second direction perpendicular to the first direction; The third lifting module (41) is connected with the jacking piece (43) and is used for driving the jacking piece (43) to move in the second direction, so as to drive the locking piece (42) to separate from the sliding seat (22) through the jacking piece (43).
8. The jig for encapsulation according to claim 5, wherein One of the sliding seat (22) and the carrier (11) is provided with a guide shaft (222) extending along the first direction, and the other is provided with a guide hole (1122), and the guide shaft (222) and the guide hole (1122) are in sliding fit; And / or, one of the sliding seat (22) and the carrier (11) is provided with a sliding rail (1121), and the other is provided with a sliding block (221), and the sliding rail (1121) and the sliding block (221) are in sliding fit.
9. The jig for encapsulation according to claim 5, wherein The clamp further comprises a fourth lifting module (51) and a positioning piece (52); The fourth lifting module (51) is connected with the positioning piece (52) and is used for driving the positioning piece (52) to move in a second direction perpendicular to the first direction, so as to position the carrier (11) through the positioning piece (52).
10. The jig for encapsulation according to claim 5, wherein The clamp further comprises a fifth lifting module (61) and a blocking piece (62); The fifth lifting module (61) is connected with the blocking piece (62) and is used for driving the blocking piece (62) to move in a second direction perpendicular to the first direction, so as to block the carrier (11) through the blocking piece (62).