Double-end silica gel dispensing device

By integrating the positioning components of the hoist positioning cylinder, block and slide cylinder, and combining the double-head dispensing device with linear motor and CCD image sensor, the problem of insufficient adaptability of traditional dispensing equipment to product shape and material is solved, high-precision and flexible dispensing operations are achieved, and production efficiency and product quality are improved.

CN223097200UActive Publication Date: 2025-07-15SHENZHEN DINGTAIWEI TECH CO LTD
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Patent Information

Application Number
CN202422189019.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-07-15
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

Traditional dispensing equipment lacks adaptability to the differences in product shape and material, resulting in unsolid locking, which may cause product displacement, shaking, damage or deformation, reducing the stability and reliability of dispensing operations, and increasing production risks and costs.

Method used

The positioning components that combine the lift positioning cylinder with the barrier block are used to achieve accurate positioning and locking of the product, combined with the linear motor-driven transverse assembly and CCD image sensor to achieve high-precision and flexible dispensing operations.

Benefits of technology

It improves the accuracy and consistency of the dispensing operation, reduces errors caused by product displacement or shaking, improves production efficiency and scope of application, and ensures the stability and reliability of product quality.

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Abstract

The utility model relates to a double-end silica gel dispensing device which comprises a conveying line body, a machine table arranged beside the conveying line body, a positioning assembly arranged on the machine table, a first transverse moving assembly, a first dispensing device driven by the first transverse moving assembly to move, a second transverse moving assembly and a second dispensing device driven by the second transverse moving assembly to move. The conveying line body comprises a line body flow channel, a stopping block arranged on the line body flow channel and a jacking positioning air cylinder used for jacking up products in the line body flow channel. According to the double-end silica gel dispensing device conveying line body, the jacking positioning air cylinder and the stopping block are integrated, the jacking positioning air cylinder is matched with the stopping block to achieve positioning of products, the positioning assembly comprises the first sliding table air cylinder and the second sliding table air cylinder, the products are pushed from the same side of the products jacked by the jacking positioning air cylinder in the lateral direction, and the products are positioned. The secondary positioning of the product is realized, the dispensing error possibly caused by the displacement or shaking of the product can be effectively reduced, and the precision and the consistency of the dispensing operation are improved.
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Description

Technical Field

[0001] The utility model relates to the field of silicone dispensing equipment, in particular to a double-head silicone dispensing device. Background Art

[0002] The locking mechanism of traditional dispensing equipment often adopts a simple clamping or pressing method, lacking adaptability and intelligent adjustment capabilities to differences in product shape and material. This limitation may not only cause the product to shift or shake during the dispensing operation, but may also cause product damage or deformation due to too little or too much locking force, increasing the risk and cost of the production process. The loose locking mechanism not only reduces the stability and reliability of the dispensing operation, but may also cause a series of production problems, such as increased product scrap rate and reduced production efficiency, which seriously restricts the modern manufacturing industry's pursuit of high-precision and high-efficiency production goals. Utility Model Content

[0003] In view of this, the utility model provides a double-head silicone gel dotting device, which integrates a lifting and positioning cylinder and a blocking block, thereby realizing precise positioning of the product. The lifting and positioning cylinder cooperates with the blocking block to lift the product when needed to realize product positioning. The positioning assembly includes a first slide cylinder and a second slide cylinder, which push the product laterally from the same side of the product lifted by the lifting and positioning cylinder, thereby realizing a second positioning of the product and locking the product to facilitate subsequent processing operations. It can effectively reduce the dispensing errors that may be caused by product displacement or shaking, and improve the accuracy and consistency of the dispensing operation.

[0004] The purpose of the utility model is achieved through the following technical solutions:

[0005] A double-headed silicone dispensing device includes a conveyor line, a machine platform arranged beside the conveyor line, a positioning assembly arranged on the machine platform, a first transverse movement assembly, a first glue dispenser driven to move by the first transverse movement assembly, a second transverse movement assembly, and a second glue dispenser driven to move by the second transverse movement assembly. The conveyor line includes a line flow channel, a blocking block arranged in the line flow channel, and a lifting and positioning cylinder for lifting the product in the line flow channel. The positioning assembly includes a first slide cylinder and a second slide cylinder for performing secondary positioning on the product lifted by the lifting and positioning cylinder. The first slide cylinder and the second slide cylinder push the product laterally from the same side of the product lifted by the lifting and positioning cylinder.

[0006] The conveyor line integrates a lifting and positioning cylinder and a stopper, achieving precise positioning of the product. The lifting and positioning cylinder cooperates with the stopper to lift the product when needed for positioning. The positioning assembly includes a first slide cylinder and a second slide cylinder, which laterally push the product from the same side of the product lifted by the lifting and positioning cylinder, achieving a second positioning of the product and locking and fixing the product for subsequent processing operations. The combined use of the lifting and positioning cylinder and the slide cylinder can not only ensure the accurate position of the product before dispensing operation, but also effectively reduce the dispensing error that may be caused by product displacement or shaking, improving the accuracy and consistency of the dispensing operation.

[0007] The first transverse movement assembly and the second transverse movement assembly drive the first dispenser and the second dispenser to move respectively, which not only achieves the efficiency and flexibility of the dispensing operation, but also can perform the dispensing operation on different positions or different products according to production requirements. This design not only improves the efficiency of the dispensing operation, but also can effectively reduce the dispensing error that may be caused by the movement of the dispenser, improving the accuracy and consistency of the dispensing operation. In addition, the independent design of the first transverse movement assembly and the second transverse movement assembly can also flexibly adjust the position and movement path of the dispenser according to production requirements, meet the dispensing needs of different products, and improve the application range and production efficiency of the dispensing device.

[0008] Preferably, the first transverse movement assembly and the second transverse movement assembly are pushed by linear motors and move along the direction of the conveyor line.

[0009] The first transverse movement assembly and the second transverse movement assembly are pushed by linear motors and move along the direction of the conveyor line. As a high-precision and high-efficiency linear driving device, the linear motor can not only achieve the smooth movement of the dispenser, but also ensure the stability and accuracy of the dispenser during the dispensing operation through precise control.

[0010] Preferably, the first transverse movement assembly includes a first transverse movement frame connected to the linear motor, a first transverse movement cylinder arranged on the first transverse movement frame, and a first vertical cylinder driven by the first transverse movement cylinder. The output end of the first vertical cylinder is connected with a first mounting plate, and the first dispenser is arranged on the first mounting plate.

[0011] The first transverse movement assembly includes a first transverse movement frame connected to the linear motor, a first transverse movement cylinder arranged on the first transverse movement frame, and a first vertical cylinder driven by the first transverse movement cylinder. This design not only optimizes the layout and control of the dispenser, but also significantly improves the flexibility and accuracy of the dispensing operation. The combined use of the first transverse movement frame and the first transverse movement cylinder can not only ensure the accurate movement of the dispenser in the horizontal direction, but also achieve the flexible positioning and control of the dispenser in the vertical direction through the drive of the first vertical cylinder.

[0012] Preferably, a first CCD is also provided on the first mounting plate, and the first CCD operates in conjunction with the first glue dispenser.

[0013] The first mounting plate is also provided with a first CCD, which works in conjunction with the first glue dispenser. This design not only optimizes the control of the glue dispensing operation, but also significantly improves the accuracy and intelligence level of the glue dispensing operation. As a high-precision image sensor, the first CCD can not only capture the position and status of the product in real time, but also achieve precise positioning and control of the glue dispensing position through intelligent visual algorithms. In addition, the first CCD can also detect the glue dispensing effect. The linkage operation of the first CCD and the first glue dispenser can also achieve real-time monitoring and quality control of the glue dispensing operation through real-time image feedback, which improves the accuracy and consistency of the glue dispensing operation and ensures the stability and reliability of product quality.

[0014] Preferably, the second transverse movement assembly includes a second transverse movement frame connected to the linear motor, a second transverse movement cylinder arranged on the second transverse movement frame, and a second vertical cylinder driven to move by the second transverse movement cylinder, the output end of the second vertical cylinder is connected to a second mounting plate, and the second dispenser is arranged on the second mounting plate.

[0015] The second transverse moving assembly includes a second transverse moving frame connected to the linear motor, a second transverse moving cylinder arranged on the second transverse moving frame, and a second vertical cylinder driven by the second transverse moving cylinder. This design not only optimizes the layout and control of the second glue dispenser, but also significantly improves the flexibility and accuracy of the glue dispensing operation. Similar to the first transverse moving assembly, the precision design of the second transverse moving assembly can not only ensure the accurate movement of the second glue dispenser in the lateral direction, but also can realize the flexible positioning and control of the glue dispenser in the vertical direction through the drive of the second vertical cylinder. The independent design of the second transverse moving assembly and the first transverse moving assembly can not only meet the flexible adjustment of the glue dispensing requirements of different products, but also can significantly improve the production efficiency through the double-head glue dispensing operation, providing users with a more efficient and flexible glue dispensing operation solution.

[0016] Preferably, a second CCD is also provided on the second mounting plate, and the second CCD operates in conjunction with the second glue dispenser.

[0017] A second CCD is also provided on the second mounting plate, which works in conjunction with the second glue dispenser. This design not only optimizes the control of the glue dispensing operation, but also significantly improves the precision and intelligence level of the glue dispensing operation. Like the first CCD, the second CCD, as a high-precision image sensor, can not only capture the position and status of the product in real time, but also achieve precise positioning and control of the glue dispensing position through intelligent visual algorithms. The second CCD can also detect the glue dispensing effect. The linkage operation of the second CCD and the second glue dispenser can not only realize the high-precision glue dispensing operation of the second glue dispenser, but also realize real-time monitoring and quality control of the glue dispensing operation through real-time image feedback, further improving the precision and consistency of the glue dispensing operation, and ensuring the stability and reliability of product quality.

[0018] Preferably, the conveyor line is also provided with a product detection sensor.

[0019] The conveyor line is also equipped with product detection sensors that can monitor products in real time. This design optimizes the quality control of the production process and realizes the full automation of the production process.

[0020] Preferably, an ion wind rod is also provided on the machine platform.

[0021] The machine is also equipped with an ion wind rod. As a highly efficient static electricity elimination device, the ion wind rod can not only neutralize the static electricity that may be generated during the production process by generating positive and negative ions, but also remove dust and impurities on the surface of the product by blowing ion wind, ensuring the cleanliness of the product before the dispensing operation and the consistency of the dispensing effect. In addition, the use of the ion wind rod can also effectively prevent production accidents caused by static electricity, improve the safety and stability of the production process, and provide users with a safer and more stable production environment.

[0022] Preferably, an electronic scale is also provided on the machine platform.

[0023] The machine is also equipped with an electronic scale, which not only optimizes the management of raw materials, but also significantly improves cost control and production efficiency. As a high-precision measuring device, the electronic scale can not only achieve accurate measurement of raw materials, but also accurately control the amount of raw materials used through real-time data feedback, avoiding waste and cost increase caused by excessive use of raw materials. In addition, the integration of the electronic scale can also achieve real-time monitoring of production progress and raw material consumption through linkage with the production process, providing users with more efficient and accurate production data and cost control solutions.

[0024] Preferably, the machine is also provided with a glue removal needle aligner and a needle nozzle cleaner.

[0025] The machine is also equipped with a glue removal needle alignment device. This design not only optimizes the treatment of waste, but also significantly improves the environmental friendliness and resource utilization of the production process. As an efficient waste treatment device, the glue removal needle alignment device can not only realize the rapid collection and treatment of waste after the dispensing operation, but also can realize real-time monitoring and management of the amount of waste generated through linkage with the production process, avoiding environmental pollution and resource waste that may be caused by improper waste treatment. In addition, the integration of the glue removal needle alignment device can also realize the recycling of resources through the classification and recycling of waste, improve the environmental friendliness and resource utilization of the production process, and provide users with a more environmentally friendly and sustainable production solution. The needle nozzle cleaner can clean the needle nozzle of the glue dispenser to ensure that the dispensing operation is carried out in a stable order.

[0026] Compared with the prior art, the utility model has the following beneficial effects:

[0027] The double-headed silicone dispensing device of the utility model integrates a lifting and positioning cylinder and a blocking block in the conveying line body, which realizes the precise positioning of the product. The lifting and positioning cylinder cooperates with the blocking block to lift the product when needed to realize the positioning of the product. The positioning assembly includes a first slide cylinder and a second slide cylinder, which push the product laterally from the same side of the product lifted by the lifting and positioning cylinder, realize the second positioning of the product, and lock and fix the product to facilitate subsequent processing operations. The coordinated use of the lifting and positioning cylinder and the slide cylinder can not only ensure the accurate position of the product before the dispensing operation, but also effectively reduce the dispensing error that may be caused by product displacement or shaking, and improve the accuracy and consistency of the dispensing operation.

[0028] The first lateral movement assembly and the second lateral movement assembly respectively drive the first dispenser and the second dispenser to move, which not only realizes the efficiency and flexibility of the dispensing operation, but also can realize the dispensing operation of different positions or different products according to production requirements. This design not only improves the efficiency of the dispensing operation, but also can effectively reduce the dispensing error that may be caused by the movement of the dispenser, and improves the accuracy and consistency of the dispensing operation. In addition, the independent design of the first lateral movement assembly and the second lateral movement assembly can also flexibly adjust the position and movement path of the dispenser according to production requirements, meet the dispensing requirements of different products, and improve the scope of application and production efficiency of the dispensing device. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the embodiments will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other related drawings can be obtained based on these drawings without paying creative work.

[0030] Figure 1The structural diagram of a double - headed silicone - dotting device according to an embodiment of the present utility model.

[0031] Figure 2 The structural diagram of another angle of a double - headed silicone - dotting device according to an embodiment of the present utility model.

[0032] Figure 3 The partial structural diagram of a double - headed silicone - dotting device according to an embodiment of the present utility model. Detailed implementation manners

[0033] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. Usually, the components of the embodiments of the present application described and illustrated in the accompanying drawings here can be arranged and designed in various different configurations.

[0034] Therefore, the following detailed description of the embodiments of the present application provided in the accompanying drawings is not intended to limit the scope of the present application claimed, but merely represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative efforts belong to the scope of protection of the present application.

[0035] It should be noted that: Similar reference numerals and letters denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. In the description of the embodiments of the present application, it should be understood that the terms "upper", "lower", "left", "right", "vertical", "horizontal", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship when the product of this application is in its usual placement, or the orientation or positional relationship commonly understood by those skilled in the art. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present application.

[0036] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other.

[0037] The technical solutions in the present application will be described below with reference to the accompanying drawings.

[0038] The present embodiment provides a double-headed silicone dispensing device, including a conveyor line 100, a machine platform arranged beside the conveyor line 100, a positioning assembly 200 arranged on the machine platform, a first transverse movement assembly 300, a first glue dispenser 400 driven to move by the first transverse movement assembly 300, a second transverse movement assembly 500, and a second glue dispenser 600 driven to move by the second transverse movement assembly 500. The conveyor line 100 includes a line flow channel 110, a blocking block 120 arranged in the line flow channel 110, and a lifting and positioning cylinder 130 for lifting the product in the line flow channel 110. The positioning assembly 200 includes a first slide cylinder 210 and a second slide cylinder 220 for performing secondary positioning on the product lifted by the lifting and positioning cylinder 130. The first slide cylinder 210 and the second slide cylinder 220 push the product laterally from the same side of the product lifted by the lifting and positioning cylinder 130.

[0039] The conveyor line body 100 integrates the lifting and positioning cylinder 130 and the blocking block 120 to achieve accurate positioning of the product. The lifting and positioning cylinder 130 cooperates with the blocking block 120 to lift the product when needed to achieve product positioning. The positioning component 200 includes a first slide cylinder 210 and a second slide cylinder 220, which push the product laterally from the same side of the product lifted by the lifting and positioning cylinder 130 to achieve a second positioning of the product and lock the product to facilitate subsequent processing operations. The use of the lifting and positioning cylinder 130 and the slide cylinder can not only ensure the accurate position of the product before the dispensing operation, but also effectively reduce the dispensing error that may be caused by product displacement or shaking, thereby improving the accuracy and consistency of the dispensing operation.

[0040] The first transverse moving assembly 300 and the second transverse moving assembly 500 respectively drive the first glue dispenser 400 and the second glue dispenser 600 to move, which not only realizes the high efficiency and flexibility of the glue dispensing operation, but also can realize the glue dispensing operation for different positions or different products according to production requirements. This design not only improves the efficiency of the glue dispensing operation, but also can effectively reduce the glue dispensing error that may be caused by the movement of the glue dispenser, and improves the accuracy and consistency of the glue dispensing operation. In addition, the independent design of the first transverse moving assembly 300 and the second transverse moving assembly 500 can also flexibly adjust the position and movement path of the glue dispenser according to production requirements, meet the glue dispensing requirements of different products, and improve the scope of application and production efficiency of the glue dispensing device.

[0041] In this embodiment, the first transverse movement assembly 300 and the second transverse movement assembly 500 are driven by a linear motor 700 and move along the direction of the conveyor line 100 .

[0042] The first transverse movement component 300 and the second transverse movement component 500 are pushed by the linear motor 700 and move along the direction of the conveyor line body 100. As a high-precision and high-efficiency linear driving device, the linear motor 700 can not only achieve the stable movement of the dispenser, but also ensure the stability and accuracy of the dispenser during the dispensing operation through precise control.

[0043] In this embodiment, the first transverse movement component 300 includes a first transverse movement frame 310 connected to the linear motor 700, a first transverse movement cylinder 320 arranged on the first transverse movement frame 310, and a first vertical cylinder 330 driven by the first transverse movement cylinder 320 to move. The output end of the first vertical cylinder 330 is connected with a first mounting plate 340, and the first dispenser 400 is arranged on the first mounting plate 340.

[0044] The first transverse movement component 300 includes a first transverse movement frame 310 connected to the linear motor 700, a first transverse movement cylinder 320 arranged on the first transverse movement frame 310, and a first vertical cylinder 330 driven by the first transverse movement cylinder 320 to move. This design not only optimizes the layout and control of the dispenser, but also significantly improves the flexibility and precision of the dispensing operation. The cooperation of the first transverse movement frame 310 and the first transverse movement cylinder 320 can not only ensure the accurate movement of the dispenser in the transverse direction, but also realize the flexible positioning and control of the dispenser in the vertical direction through the drive of the first vertical cylinder 330.

[0045] In this embodiment, a first CCD 341 is also arranged on the first mounting plate 340, and the first CCD 341 operates in linkage with the first dispenser 400.

[0046] A first CCD 341 is also arranged on the first mounting plate 340 and operates in linkage with the first dispenser 400. This design not only optimizes the control of the dispensing operation, but also significantly improves the precision and intelligent level of the dispensing operation. As a high-precision image sensor, the first CCD 341 can not only capture the position and state of the product in real time, but also achieve the precise positioning and control of the dispensing position through intelligent vision algorithms. In addition, the first CCD can also detect the dispensing effect. The linkage operation of the first CCD 341 and the first dispenser 400 can also realize the real-time monitoring and quality control of the dispensing operation through real-time image feedback, improve the precision and consistency of the dispensing operation, and ensure the stability and reliability of the product quality.

[0047] In this embodiment, the second transverse movement component 500 includes a second transverse movement frame 510 connected to the linear motor 700, a second transverse movement cylinder 520 arranged on the second transverse movement frame 510, and a second vertical cylinder 530 driven by the second transverse movement cylinder 520 to move. The output end of the second vertical cylinder 530 is connected with a second mounting plate 540, and the second dispenser 600 is arranged on the second mounting plate 540.

[0048] The second transverse movement assembly 500 includes a second transverse movement frame 510 connected to a linear motor 700, a second transverse movement cylinder 520 disposed on the second transverse movement frame 510, and a second vertical cylinder 530 driven by the second transverse movement cylinder 520 to move. This design not only optimizes the layout and control of the second dispenser 600, but also significantly improves the flexibility and precision of the dispensing operation. Similar to the first transverse movement assembly 300, the precise design of the second transverse movement assembly 500 can not only ensure the accurate movement of the second dispenser 600 in the transverse direction, but also, through the drive of the second vertical cylinder 530, achieve flexible positioning and control of the dispenser in the vertical direction. The independent design of the second transverse movement assembly 500 and the first transverse movement assembly 300 can not only meet the flexible adjustment of the dispensing requirements for different products, but also, through double-head dispensing operation, significantly improve the production efficiency and provide a more efficient and flexible dispensing operation solution for users.

[0049] In this embodiment, a second CCD 541 is further disposed on the second mounting plate 540, and the second CCD 541 operates in linkage with the second dispenser 600.

[0050] A second CCD 541 is further disposed on the second mounting plate 540 and operates in linkage with the second dispenser 600. This design not only optimizes the control of the dispensing operation, but also significantly improves the precision and intelligent level of the dispensing operation. Similar to the first CCD 341, the second CCD 541, as a high-precision image sensor, can not only capture the position and state of the product in real time, but also, through intelligent vision algorithms, achieve precise positioning and control of the dispensing position. The second CCD can also detect the dispensing effect. The linkage operation of the second CCD 541 and the second dispenser 600 can not only achieve high-precision dispensing operation of the second dispenser 600, but also, through real-time image feedback, achieve real-time monitoring and quality control of the dispensing operation, further improving the precision and consistency of the dispensing operation and ensuring the stability and reliability of the product quality.

[0051] In this embodiment, the conveyor line 100 is further provided with a product detection sensor 140.

[0052] The conveyor line 100 is further provided with a product detection sensor 140, which can monitor the product in real time. This design optimizes the quality control of the production process and realizes the full automation of the production process.

[0053] In this embodiment, an ion air bar is further disposed on the machine table.

[0054] An ion blower is also provided on the machine table. As an efficient electrostatic elimination device, the ion blower can not only generate positive and negative ions to neutralize the static electricity that may be generated during the production process, but also blow away the dust and impurities on the product surface through the ion wind, ensuring the cleanliness of the product before the dispensing operation and the consistency of the dispensing effect. In addition, the use of the ion blower can also effectively prevent production accidents caused by static electricity, improve the safety and stability of the production process, and provide a safer and more stable production environment for users.

[0055] In this embodiment, an electronic scale 720 is also provided on the machine table.

[0056] An electronic scale 720 is also provided on the machine table. This design not only optimizes the management of raw materials, but also significantly improves cost control and production efficiency. As a high-precision measuring device, the electronic scale 720 can not only achieve accurate measurement of raw materials, but also precisely control the usage amount of raw materials through real-time data feedback, avoiding waste and cost increase caused by excessive use of raw materials. In addition, the integration of the electronic scale 720 can also realize real-time monitoring of the production progress and raw material consumption through linkage with the production process, providing users with a more efficient and accurate production data and cost control solution.

[0057] In this embodiment, a glue discharging alignment device 730 and a nozzle cleaner 740 are also provided on the machine table.

[0058] A glue discharging alignment device 730 is also provided on the machine table. This design not only optimizes the treatment of waste, but also significantly improves the environmental protection and resource utilization rate of the production process. As an efficient waste treatment device, the glue discharging alignment device 730 can not only quickly collect and treat the waste after the dispensing operation, but also realize real-time monitoring and management of the waste generation amount through linkage with the production process, avoiding environmental pollution and resource waste caused by improper waste treatment. In addition, the integration of the glue discharging alignment device 730 can also realize the recycling of resources through the classification and recycling of waste, improving the environmental protection and resource utilization rate of the production process, and providing a more environmentally friendly and sustainable production solution for users. The nozzle cleaner can clean the nozzle of the dispenser to ensure the stable progress of the dispensing operation.

[0059] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made in these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A double-headed dot silicone device, characterized in that, It includes a conveyor line body, a machine platform arranged beside the conveyor line body, a positioning component arranged on the machine platform, a first transverse movement component, a first dispenser driven to move by the first transverse movement component, a second transverse movement component, and a second dispenser driven to move by the second transverse movement component. The conveyor line body includes a line flow channel, a blocking block arranged in the line flow channel, and a lifting and positioning cylinder for lifting the product in the line flow channel. The positioning component includes a first slide cylinder and a second slide cylinder for performing secondary positioning on the product lifted by the lifting and positioning cylinder. The first slide cylinder and the second slide cylinder push the product laterally from the same side of the product lifted by the lifting and positioning cylinder.

2. The double-headed dot silica gel device according to claim 1, characterized in that The first transverse moving assembly and the second transverse moving assembly are driven by a linear motor and move along the direction of the conveyor line.

3. The double-headed dot silicone device according to claim 2, wherein The first transverse movement assembly includes a first transverse movement frame connected to the linear motor, a first transverse movement cylinder arranged on the first transverse movement frame, and a first vertical cylinder driven to move by the first transverse movement cylinder. The output end of the first vertical cylinder is connected to the first mounting plate, and the first dispenser is arranged on the first mounting plate.

4. The double-headed dot silica gel device according to claim 3, characterized in that, The first mounting plate is also provided with a first CCD, and the first CCD operates in conjunction with the first glue dispenser.

5. The double-headed dot silica gel device according to claim 2, wherein, The second transverse movement assembly includes a second transverse movement frame connected to the linear motor, a second transverse movement cylinder arranged on the second transverse movement frame, and a second vertical cylinder driven to move by the second transverse movement cylinder. The output end of the second vertical cylinder is connected to a second mounting plate, and the second dispenser is arranged on the second mounting plate.

6. The double-headed dot silicone device according to claim 5, wherein, The second mounting plate is also provided with a second CCD, and the second CCD operates in conjunction with the second glue dispenser.

7. The double-headed dot silica gel device according to claim 1, characterized in that, The conveyor line body is also provided with a product detection sensor.

8. The double-headed dot silicone device according to claim 1, wherein The machine platform is also provided with an ion wind rod.

9. The double-headed dot silicone device according to claim 1, characterized in that, An electronic scale is also provided on the machine platform.

10. The double-headed dot silica gel device according to claim 1, characterized in that, The machine is also provided with a glue removal needle alignment device and a needle nozzle cleaner.

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