New energy silica gel full-automatic dispensing machine
By using a hose connection method with right-angle valve connection in the automatic dispenser, the problem of pipe wrapping of traditional automatic dispenser is solved, and the stability of glue flow and the accuracy of dispensing is improved.
Patent Information
- Application Number
- CN202421835493.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-31
AI Technical Summary
Traditional automatic dispensers can easily lead to winding on pipe connections, affecting the accuracy and efficiency of glue flow, which may cause equipment damage and increase maintenance costs.
New energy silicone fully automatic dispensing machine is adopted to ensure good sealing of the pipe connection and prevent wrapping by connecting the hose between the automatic loading structure and the automatic dispensing structure.
It effectively prevents pipe wrapping, ensures the normal flow of glue and the accuracy of dispensing, reduces equipment damage and maintenance costs, and improves production efficiency.
Smart Images

Figure CN223027686U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of dispensing machines, in particular to a new energy silicone full-automatic dispensing machine. Background Technique
[0002] With the rapid development of modern manufacturing, automatic dispensing machines have become one of the important devices on the production line. By precisely controlling the dotting, coating, and injection of glue, it provides high-quality gluing effects for products, thereby improving the overall performance of products. However, during the use of automatic dispensing machines, especially during the feeding and dispensing operations, problems often occur due to improper pipeline connections.
[0003] Traditional automatic dispensing machines usually adopt a straight connection method for pipeline connections. This method is prone to entanglement of the feeding and return pipelines during the operation of the equipment, especially in high-speed and high-precision dispensing operations, and the pipeline entanglement phenomenon is more serious. This not only hinders the normal flow of glue, affects the accuracy and efficiency of dispensing, but also may damage the equipment and increase the maintenance cost. Content of the Utility Model
[0004] In order to overcome the deficiencies of the existing technology, the utility model provides a new energy silicone full-automatic dispensing machine.
[0005] The technical solution of the utility model is as follows:
[0006] A new energy silicone full-automatic dispensing machine is used for the full-automatic dispensing production of silicone on a mold. The mold to be dispensed is placed on a transfer platform and rotates and translates along with the transfer platform to a set position; it is characterized in that it includes,
[0007] A gantry, the gantry covers the transfer platform;
[0008] An automatic feeding structure, the automatic feeding structure is arranged on one side of the gantry. The feeding structure includes a pair of storage barrels, which are respectively used to contain A glue and B glue of silicone. Each storage barrel is respectively provided with a feeding pipe and a return pipe;
[0009] An automatic dispensing structure, the automatic dispensing structure is arranged on the top of the gantry. The automatic dispensing structure includes an automatic dispensing arm. The automatic dispensing arm can translate back and forth along the conveying direction of the transfer platform. Two feeding guide pipes and two return guide pipes are connected and fixed on the automatic dispensing arm. The feeding guide pipe and the return guide pipe both move back and forth along with the automatic dispensing arm;
[0010] The two feeding pipes are respectively connected to the two feeding guide pipes in a corresponding manner through right-angle valves, and the two return pipes are respectively connected to the two return guide pipes in a corresponding manner through right-angle valves. Both the feeding pipes and the return pipes are flexible hoses; the storage barrels, the feeding pipes, the feeding guide pipes, the return guide pipes, and the return pipes form a circulating feeding system, and glue A and glue B circulate in their respective corresponding feeding pipes and return pipes.
[0011] Further, in one embodiment, the maximum distance from the connection port of the feeding pipe and the feeding guide pipe to the corresponding connection port of the feeding pipe in the automatic feeding structure is less than the length of the feeding pipe, and the maximum distance from the connection port of the return pipe and the corresponding return guide pipe to the corresponding connection port of the return pipe in the automatic feeding structure is less than the length of the return pipe. When the automatic dispensing arm moves in the front-rear direction, one end of the feeding pipe and the return pipe can move along with the automatic dispensing arm to achieve continuous feeding.
[0012] Further, in one embodiment, the feeding pipes and the return pipes converge in the automatic feeding structure and are arranged in a row to be connected to the automatic dispensing structure.
[0013] Further, in one embodiment, the position where the feeding pipes and the return pipes converge is lower than the connection position of the feeding pipes and the return pipes to the automatic dispensing structure.
[0014] Further, in one embodiment, the automatic feeding structure is provided with a fixing frame, and the two storage barrels are fixed on the fixing frame, and the fixing frame is placed parallel to the gantry.
[0015] Further, in one embodiment, it further includes a distribution box and an industrial computer. The industrial computer is fixedly connected to the gantry, and the industrial computer, the fully automatic dispensing structure, and the automatic feeding structure are all electrically connected to the distribution box.
[0016] Further, in one embodiment, the screen of the industrial computer is a touch screen display, and the industrial computer is used for controlling automatic production dispensing.
[0017] Further, in one embodiment, the right-angle valve is made of copper.
[0018] According to the present utility model of the above solution, its beneficial effects are as follows: The automatic feeding structure and the automatic dispensing structure are connected by pipes through a feeding pipe and a return pipe. Both the feeding pipe and the return pipe are flexible hoses. The feeding pipe and the return pipe are respectively connected to the corresponding feeding diversion pipe and return diversion pipe on the automatic dispensing structure through right-angle valves. The right-angle valve connection ensures good sealing and firm connection between the feeding pipe and the feeding diversion pipe, and between the return pipe and the return diversion pipe. When one end of the feeding pipe and the return pipe moves back and forth on the gantry with the automatic dispensing arm, the feeding pipe and the return pipe are not prone to entanglement, preventing the rotation between multiple hoses from hindering the movement of the automatic dispensing arm and ensuring the continuous and normal progress of the feeding cycle. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0020] Figure 1 is a schematic structural diagram of the present utility model;
[0021] Figure 2 is Figure 1 an enlarged view of part A in
[0022] Figure 3 is a top view of the present utility model.
[0023] In the figure, 100, automatic feeding structure; 110, storage bucket; 120, feeding pipe; 130, return pipe; 140, fixing frame; 200, gantry; 300, automatic dispensing structure; 310, feeding diversion pipe; 320, return diversion pipe; 400, industrial computer; 500, conveying platform; 600, mold to be dispensed; 700, distribution box. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0024] The following further describes the present utility model in combination with the drawings and the embodiments. All the technical and scientific terms used in this specification have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in the specification of the present utility model are only for the purpose of describing specific embodiments and are not intended to limit the present utility model. The term "and / or" used in this specification includes any and all combinations of one or more of the related listed items.
[0025] In addition, the technical features involved in different embodiments of the present utility model described below can be combined with each other as long as they do not conflict with each other.
[0026] As Figures 1 - 3 shown, this application provides an embodiment of a new energy silicone full-automatic dispensing machine for the full-automatic dispensing production of silicone on a mold. The mold 600 to be dispensed is placed on the transfer platform 500 and rotates and translates with the transfer platform 500 to a set position; the new energy silicone full-automatic dispensing machine includes a gantry 200, an automatic feeding structure 100, and an automatic dispensing structure 300. The gantry 200 covers the transfer platform 500; the automatic feeding structure 100 is arranged on one side of the gantry 200. The feeding structure includes a pair of storage barrels 110 which are respectively used to contain A glue and B glue of silicone. Each storage barrel 110 is respectively provided with a feeding pipe 120 and a return pipe 130. The automatic dispensing structure 300 is arranged on the top of the gantry 200. The automatic dispensing structure 300 includes an automatic dispensing arm. The automatic dispensing arm is located above the transfer platform 500, which is convenient for the automatic dispensing arm to perform on-line mixing of A glue and B glue according to the setting, and the dispensing of the mixed liquid, that is, the new energy silicone, on the mold on the transfer platform 500. The automatic dispensing arm can horizontally translate back and forth along the transfer direction of the transfer platform 500. Two feeding diversion pipes and two return diversion pipes 320 are connected and fixed to the automatic dispensing arm. The feeding diversion pipes and the return diversion pipes 320 move back and forth with the automatic dispensing arm; the automatic dispensing arm can also translate left and right and up and down along the direction perpendicular to the production line, so as to realize the dispensing of silicone at any position on the three-dimensional structure of the mold. The two feeding pipes 120 and the two feeding diversion pipes 310 are respectively connected in a right-angle valve correspondence, and the two return pipes 130 and the two return diversion pipes 320 are respectively connected in a right-angle valve correspondence. The feeding pipes 120 and the return pipes 130 are both flexible hoses; one storage barrel 110 respectively forms a circulating feeding of the flowing raw material liquid with the corresponding feeding pipe 120, feeding diversion pipe 310, return diversion pipe 320, and return pipe 130. In the automatic feeding structure 100, one storage barrel 110 is used to contain A glue, and the other is used to contain B glue. The A glue and the B glue respectively circulate in their corresponding feeding pipes 120 and return pipes 130.
[0027] The automatic feeding structure 100 and the automatic dispensing structure 300 are connected by pipelines through the feeding pipe 120 and the return pipe 130. Both the feeding pipe 120 and the return pipe 130 are flexible hoses. The feeding pipe 120 and the return pipe 130 are respectively connected to the corresponding feeding diversion pipe 310 and the return diversion pipe 320 on the automatic dispensing structure 300 through right-angle valves. The right-angle valve connection ensures good sealing and firm connection between the feeding pipe 120 and the feeding diversion pipe 310, and between the return pipe 130 and the return diversion pipe 320. Compared with the traditional straight connection, the right-angle valve connection is more compact in terms of space occupation and can be applied to occasions with limited space. When one end of the feeding pipe 120 and the return pipe 130 moves back and forth with the automatic dispensing arm on the gantry 200, the design of the right-angle valve separates the feeding and return pipes 130 in the vertical direction, effectively avoiding the problem of pipeline entanglement, preventing the feeding pipe 120 and the return pipe 130 from hindering the movement of the automatic dispensing arm, and ensuring the continuous and normal progress of the feeding cycle. At the same time, the straight right-angle valve can effectively reduce the height of the dispensing machine, which helps to reduce the space occupied by the dispensing machine. In this application, the raw material in the automatic feeding structure 100 is in a flowing state, and the dispensing arm will be more smooth when extracting the raw material, which can ensure stable and continuous feeding, reduce the occurrence of problems such as blockage, and ensure the accuracy and consistency of the dispensing process; if the raw material is directly stored in a non-flowing state, there may be situations such as raw material agglomeration, unevenness, and difficulty in extraction, which will affect the efficiency and quality of dispensing, and may even cause failures or damage to the dispensing arm.
[0028] In this embodiment, the maximum distance from the connection port of the feeding pipe 120 and the feeding diversion pipe 310 to the corresponding connection port of the feeding pipe 120 in the automatic feeding structure 100 is less than the length of the feeding pipe 120, and the maximum distance from the connection port of the return pipe 130 and the corresponding return diversion pipe 320 to the corresponding connection port of the return pipe 130 in the automatic feeding structure 100 is less than the length of the return pipe 130. When the automatic dispensing arm moves back and forth, one end of the feeding pipe 120 and the return pipe 130 can move with the automatic dispensing arm, and the feeding pipe 120 and the return pipe 130 will not pull and hinder the movement of the automatic dispensing arm.
[0029] As Figure 3 shown, in one embodiment, the feeding pipe 120 and the return pipe 130 converge in the automatic feeding structure 100 and are arranged in rows for connection to the automatic dispensing structure 300. The position where the feeding pipe 120 and the return pipe 130 converge is lower than the connection position of the feeding pipe 120 and the return pipe 130 to the automatic dispensing structure 300. Converging the feeding pipe 120 and the return pipe 130 together can make the arrangement and connection of multiple pipelines more regular, thereby reducing the pipeline impact caused by the movement inertia when the dispensing arm moves, preventing multiple pipelines from being intertwined, and ensuring the normal feeding of the raw material liquid. At the same time, the regular pipeline layout is convenient for identifying each pipeline and convenient for the installation and maintenance of the equipment.
[0030] As Figure 3 shown, in one embodiment, the automatic feeding structure 100 is provided with a fixing frame 140. Two storage barrels 110 are fixed on the fixing frame 140, and the fixing frame 140 is placed parallel to the gantry 200. The fixing frame 140 provides a stable fixing structure for the storage barrels 110 of the automatic feeding structure 100, so that the automatic feeding structure 100 is stably placed on the side of the automatic dispensing structure 300, maintaining the stability of feeding.
[0031] As Figure 1 shown, in one embodiment, it further includes a distribution box 700 and an industrial computer 400. The industrial computer 400 is fixedly connected to the gantry 200. The industrial computer 400, the full-automatic dispensing structure 300, and the automatic feeding structure 100 are all electrically connected to the distribution box 700. The screen of the industrial computer 400 is a touch screen display, and the industrial computer 400 is used for the control of full-automatic production dispensing. The industrial computer 400 is fixed on the gantry 200 for convenient operation and setting of dispensing. Generally, a rocker arm is used to connect the industrial computer 400 to the gantry 200. The rocker arm is convenient for changing the orientation of the screen of the industrial computer 400, facilitating the operator to operate the computer screen in different position directions. The industrial computer 400 uses a touch screen display, saving the external structure of the industrial computer 400. The operator can directly set commands on the screen, simplifying the device structure and reducing the floor area of the device.
[0032] In one embodiment, the right-angle valve is made of copper, that is, the right-angle valve is prepared from copper. The right-angle valve made of copper has good wear resistance and corrosion resistance, and the inside is smooth, facilitating the flow of the material liquid and the cleaning of the device.
[0033] New energy batteries refer to various batteries that can meet the requirements of the new energy field for electric energy storage and release, including lithium-ion batteries, nickel-metal hydride batteries, fuel cells, solid-state batteries, etc. Generally, they are made of new technologies and new materials, and have characteristics such as high energy density, long cycle life, and good safety performance. To ensure the safe and reliable operation of new energy batteries, protect the environment, and comply with relevant regulations, it is necessary to perform sealing and fire prevention on new energy batteries. Generally, new energy silicone is used for sealing to prevent the chemical reaction inside the battery from getting out of control and causing a fire, and to avoid damage and loss to personnel and equipment caused by battery combustion. At the same time, the new energy silicone seal can limit the spread of fire within a single battery or battery pack, reducing the risk of overall loss; prevent the high temperature, smoke, and harmful substances generated by the fire from spreading to the surrounding environment, protecting the safety of surrounding equipment and personnel; and can also reduce the erosion of the battery by external factors (such as moisture, dust, etc.), maintaining the stable performance of the battery and extending the service life of the battery. When performing the dispensing operation of fireproof silicone for new energy batteries, the new new energy silicone full-automatic dispenser of the present application can be used as an automatic dispensing production device for new energy silicone in the dispensing production of new energy battery fire prevention.
[0034] It should be understood that those of ordinary skill in the art can make improvements or transformations according to the above description, and all such improvements and transformations shall fall within the protection scope of the appended claims of this utility model.
[0035] The above has made an exemplary description of this utility model patent in conjunction with the accompanying drawings. Obviously, the implementation of this utility model patent is not limited by the above-mentioned manner. As long as various improvements are made by adopting the method concept and technical solution of this utility model patent, or the concept and technical solution of this utility model patent are directly applied to other occasions without improvement, they are all within the protection scope of this utility model.
Claims
1. A new energy silicone fully automatic glue dispensing machine, used for the fully automatic glue dispensing production of silicone on molds, the mold to be dispensed is placed on a conveying platform and rotates and translates to a set position with the conveying platform; it is characterized in that: include, A gantry, wherein the gantry cover is arranged on the conveying platform; An automatic feeding structure, which is arranged on one side of the gantry, and includes a pair of storage barrels, which are used to hold silica gel A and silica gel B respectively, and each storage barrel is provided with a feeding pipe and a return pipe; An automatic dispensing structure, the automatic dispensing structure is arranged on the top of the gantry, the automatic dispensing structure includes an automatic dispensing arm, the automatic dispensing arm can translate forward and backward along the conveying direction of the conveying platform, two feed guide pipes and two return guide pipes are connected and fixed to the automatic dispensing arm, and the feed guide pipe and the return guide pipe both move forward and backward with the automatic dispensing arm; The two feeding pipes are connected to the two feeding guide pipes with right angle valves respectively, and the two return pipes are connected to the two return guide pipes with right angle valves respectively, and both the feeding pipes and the return pipes are hoses; the storage barrel, the feeding pipe, the feeding guide pipe, the return guide pipe and the return pipe form a circulating flow feeding, and glue A and glue B circulate in their corresponding feeding pipes and return pipes respectively.
2. The new energy silicone fully automatic dispensing machine according to claim 1 is characterized in that: The maximum distance between the connecting port of the feeding tube and the feeding guide tube and the corresponding connecting port of the feeding tube in the automatic feeding structure is less than the length of the feeding tube, and the maximum distance between the connecting port of the return tube and the corresponding connecting port of the return guide tube and the corresponding connecting port of the return tube in the automatic feeding structure is less than the length of the return tube. When the automatic dispensing arm moves in the front-to-back direction, one end of the feeding tube and the return tube can move with the automatic dispensing arm to realize uninterrupted feeding.
3. The new energy silicone fully automatic dispensing machine according to claim 2 is characterized in that: The feeding tube and the return tube are converged in the automatic feeding structure, and are arranged in a row and connected to the automatic dispensing structure.
4. The new energy silicone fully automatic dispensing machine according to claim 3 is characterized in that: The position where the feeding tube and the return tube converge is lower than the connection position between the feeding tube and the return tube and the automatic dispensing structure.
5. The new energy silicone fully automatic dispensing machine according to claim 1 is characterized in that: The automatic feeding structure is provided with a fixing frame, the two material storage barrels are fixed on the fixing frame, and the fixing frame is placed parallel to the gantry frame.
6. The new energy silicone fully automatic dispensing machine according to claim 1 is characterized in that: It also includes a distribution box and an industrial computer. The industrial computer is fixedly connected to the gantry. The industrial computer, the full-automatic dispensing structure and the automatic feeding structure are all electrically connected to the distribution box.
7. The new energy silicone fully automatic dispensing machine according to claim 6 is characterized in that: The screen of the industrial computer is a touch screen display, and the industrial computer is used for controlling automatic production of dispensing.
8. The new energy silicone fully automatic dispensing machine according to claim 6 is characterized in that: The industrial computer is connected to the gantry rocker arm.
9. The new energy silicone fully automatic dispensing machine according to claim 1 is characterized in that: The material of the right-angle valve is copper.