Glue mixing and extruding equipment

Through the design of horizontally extended extrusion cylinder liner and shared drive components, the existing glue mixing equipment has solved the problem of complex structure and difficulty in discharge of bubbles, and achieved simple and low-cost high-precision glue mixing.

CN223184388UActive Publication Date: 2025-08-05ZHEJIANG PANGOOD POWER TECH CO LTD
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Patent Information

Application Number
CN202422469688.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-08-05
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

The existing glue mixing extrusion equipment has complex structure and high cost, and it is difficult to discharge trace bubbles in the glue, which affects the accuracy of the mixing ratio.

Method used

The horizontally extending extrusion cylinder liner and a common driving assembly are designed, and multiple extrusion cylinder liners are driven simultaneously through one driving assembly, combining the horizontal extrusion method to facilitate bubble discharge.

Benefits of technology

It achieves simple structure, low cost, and ensures the accuracy of the glue mixing ratio and the quality of the extrusion, and is simultaneously controlled within ±2%.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glue mixing, in particular to glue mixing and extruding equipment. The glue mixing and extruding equipment comprises a glue extruding assembly, a glue mixing pipe assembly and a driving assembly, the glue extruding assembly comprises glue extruding rod pieces and at least two glue extruding cylinder sleeves, each glue extruding cylinder sleeve extends in the horizontal direction, and one glue extruding rod piece is arranged in each glue extruding cylinder sleeve in a sliding and penetrating mode in the horizontal direction; a glue outlet of each glue extruding cylinder sleeve communicates with the glue mixing pipe assembly, and the driving assembly synchronously drives the glue extruding rod piece in each glue extruding cylinder sleeve to slide in the horizontal direction so as to extrude glue in each glue extruding cylinder sleeve into the glue mixing pipe assembly. According to the glue mixing and extruding equipment, extruding and mixing of multiple kinds of glue are achieved, the glue in the multiple glue extruding cylinder sleeves can be extruded out at the same time through one driving assembly, the structure is simple, and cost is reduced. In addition, each glue extruding cylinder sleeve extends along the horizontal direction, so that trace bubbles in the glue can be conveniently discharged, and the glue extruding quality is ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of glue mixing, in particular to glue mixing and extruding equipment. Background Art

[0002] In the prior art, when multi-component glue is extruded and mixed through glue mixing and extrusion equipment, each metering container is driven by a separate drive assembly, so that the glue extruded from each metering container is discharged into the mixing pipeline for mixing. This arrangement significantly increases the number of drive assemblies used, making the structure complex and increasing costs.

[0003] In addition, in existing glue mixing and extrusion equipment, each metering container is usually placed in a vertical position, resulting in greater pressure on the glue at the bottom, making it difficult for the trace bubbles in the glue at the bottom of the metering container to be discharged. The presence of trace bubbles in the glue reduces the accuracy of the mixing ratio of each glue, thereby reducing the quality of glue extrusion.

[0004] Therefore, a glue mixing and extruding device is urgently needed to solve the above problems. Utility Model Content

[0005] The purpose of the utility model is to provide a glue mixing and extruding device to realize the extrusion and mixing of multiple glues, and the device has a simple structure and low cost, and is also convenient for discharging micro bubbles in the glue, thereby improving the glue extrusion quality.

[0006] To achieve this purpose, the present invention adopts the following technical solutions:

[0007] A glue mixing and extrusion device, comprising:

[0008] A rubber extrusion assembly, comprising a rubber extrusion rod and at least two rubber extrusion cylinder sleeves, each of the rubber extrusion cylinder sleeves extending in a horizontal direction, and each of the rubber extrusion cylinder sleeves having a rubber extrusion rod slidingly inserted therein along the horizontal direction;

[0009] A rubber mixing pipe assembly, wherein the rubber outlet of each of the rubber squeezing cylinder sleeves is connected to the rubber mixing pipe assembly; and

[0010] A driving assembly is configured to synchronously drive the glue extrusion rod in each of the glue extrusion cylinder sleeves to slide along the horizontal direction, so as to extrude the glue in each of the glue extrusion cylinder sleeves into the glue mixing pipe assembly.

[0011] As an optional solution, the glue extrusion component further includes:

[0012] The rubber extrusion mounting piece is configured such that each of the rubber extrusion cylinder sleeves can be detachably mounted in the rubber extrusion mounting piece.

[0013] As an optional solution, the glue mixing and extrusion equipment further includes:

[0014] A heating plate assembly is provided on which the glue extrusion mounting piece is installed.

[0015] As an optional solution, the heating plate assembly includes:

[0016] A heat conducting plate, on which the rubber extrusion mounting piece is mounted;

[0017] a heating element, the heating element being disposed on the heat conducting plate and configured to heat the heat conducting plate; and

[0018] A temperature measuring component is communicatively connected to the driving assembly, the temperature measuring component is arranged on the heat conducting plate, and the temperature measuring component is configured to detect the temperature of the heat conducting plate.

[0019] As an optional solution, the drive assembly includes:

[0020] Rotating drive member;

[0021] a ball screw extending in the horizontal direction and in transmission connection with the rotary drive member; and

[0022] The pushing block is threadedly connected to the ball screw, and the side of the pushing block facing the rubber extrusion rod can simultaneously abut against the end of each rubber extrusion rod extending out of the corresponding rubber extrusion cylinder sleeve.

[0023] As an optional solution, the glue mixing and extrusion equipment further includes a mounting assembly, wherein the relative position of the mounting assembly and the glue extrusion cylinder sleeve is fixed;

[0024] The driving assembly further comprises a guide rail and a slider which are slidably connected, wherein the guide rail extends along the horizontal direction, one of the guide rail and the slider is arranged on the pushing block, and the other of the guide rail and the slider is arranged on the mounting assembly.

[0025] As an optional solution, the glue extrusion component further includes:

[0026] A glue outlet valve, wherein the glue outlet of each of the glue extrusion cylinder sleeves is connected to the glue mixing pipe assembly through a glue outlet valve; and

[0027] Glue inlet valve, the glue inlet of each of the glue squeezing cylinder sleeves is connected to the glue feeding equipment through a glue inlet valve.

[0028] As an optional solution, the glue extrusion component further includes:

[0029] A guide sleeve is installed in the rubber extrusion mounting member, each of the rubber extrusion rods corresponds to a guide sleeve, and one end of the rubber extrusion rod slides through the guide sleeve and extends into the corresponding rubber extrusion cylinder sleeve.

[0030] As an optional solution, the glue extrusion component further includes:

[0031] A first sealing member is sleeved on the outer periphery of each of the extruding rods, and the first sealing member is sandwiched between the outer peripheral wall of the corresponding extruding rod and the inner peripheral wall of the extruding cylinder sleeve.

[0032] As an optional solution, the rubber mixing pipe assembly includes a rubber outlet connection block and a rubber mixing pipe connected in sequence, the rubber outlet of each rubber extrusion cylinder sleeve is connected to the rubber outlet connection block, and the rubber outlet connection block and the rubber mixing pipe both extend in the vertical direction.

[0033] Beneficial effects of the utility model:

[0034] The utility model provides a glue mixing and extruding device, which includes a glue extrusion assembly, a glue mixing tube assembly, and a drive assembly. The glue extrusion assembly includes a glue extruding rod and at least two glue extruding cylinder sleeves, each of which extends horizontally, and a glue extruding rod is inserted into each of the glue extruding cylinder sleeves so as to slide horizontally. The glue outlet of each glue extruding cylinder sleeve is connected to the glue mixing tube assembly. The drive assembly is used to synchronously drive the glue extruding rod in each glue extruding cylinder sleeve to slide horizontally to extrude the glue in each glue extruding cylinder sleeve into the glue mixing tube assembly. The glue mixing and extruding device realizes the extrusion and mixing of multiple glues, and can simultaneously extrude glue from multiple glue extruding cylinder sleeves through a single drive assembly, thereby simplifying the structure and reducing costs. In addition, since each glue extruding cylinder sleeve extends horizontally, each glue extruding cylinder sleeve is placed horizontally, ensuring that the pressure of the glue at each position in the glue extruding cylinder sleeve is the same, facilitating the discharge of micro-bubbles in the glue in the glue extruding cylinder sleeve, thereby ensuring the accuracy of the mixing ratio of each glue and improving the glue extrusion quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] Figure 1 This is a schematic structural diagram of a glue mixing and extrusion device provided by an embodiment of the present utility model;

[0036] Figure 2 This is a structural cross-sectional view of a glue mixing and extrusion device provided by an embodiment of the present utility model;

[0037] Figure 3 yes Figure 2 A magnified view of the structure at point A in the middle.

[0038] In the picture:

[0039] 1. Glue extrusion assembly; 11. Glue extrusion rod; 12. Glue extrusion cylinder sleeve; 13. Glue extrusion mounting member; 131. Cylinder sleeve mounting plate; 132. Glue rod mounting plate; 1321. Oil window; 133. Glue valve mounting plate; 14. Glue outlet valve; 15. Glue inlet valve; 16. Guide sleeve; 17. First seal; 18. Second seal.

[0040] 2. Rubber mixing hose assembly; 21. Glue outlet connection block; 22. Rubber mixing hose;

[0041] 3. Drive assembly; 31. Rotating drive member; 311. Servo motor; 312. Reducer; 32. Ball screw; 33. Push block; 34. Guide rail; 35. Slider;

[0042] 4. Heating plate assembly; 41. Heat conducting plate; 42. Heating element; 43. Temperature measuring element;

[0043] 5. Installation components; 6. Displacement detection components. DETAILED DESCRIPTION

[0044] In order to make the technical problems solved by the present invention, the technical solutions adopted and the technical effects achieved more clear, the technical solutions of the present invention are further explained below with reference to the accompanying drawings and through specific implementation methods.

[0045] In the description of this utility model, unless otherwise specified or limited, the terms "connected," "connect," and "fixed" should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0046] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0047] In the description of this embodiment, terms such as "upper," "lower," "left," and "right" are used to refer to positions or locations based on the positions or locations shown in the accompanying drawings. These terms are intended solely to facilitate description and simplify operation, and are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this invention. Furthermore, the terms "first" and "second" are used solely for descriptive purposes and have no special meaning.

[0048] In the prior art, when multi-component glue is extruded and mixed through glue mixing and extrusion equipment, each metering container is driven and extruded by a separate drive assembly, thereby discharging the glue extruded from each metering container into a mixing pipeline for mixing. The above arrangement greatly increases the number of drive assemblies used, making the structure complex and increasing costs. In addition, in existing glue mixing and extrusion equipment, each metering container is usually placed in a vertical position, resulting in greater pressure on the glue at the bottom, making it difficult for trace bubbles in the glue at the bottom of the metering container to be discharged. The presence of trace bubbles in the glue reduces the accuracy of the mixing ratio of each glue, thereby reducing the quality of glue extrusion.

[0049] In order to solve the above problems, Figure 1 and Figure 2 As shown, the present embodiment provides a glue mixing and extrusion device, which includes a glue extrusion component 1, a glue mixing tube component 2, and a drive component 3, wherein the glue extrusion component 1 includes a glue extrusion rod 11 and at least two glue extrusion cylinder sleeves 12, each glue extrusion cylinder sleeve 12 extends in the horizontal direction (left and right direction in the figure), and each glue extrusion cylinder sleeve 12 is provided with a glue extrusion rod 11 slidingly penetrated in the horizontal direction, and the glue outlet of each glue extrusion cylinder sleeve 12 is connected to the glue mixing tube component 2, and the drive component 3 is used to synchronously drive the glue extrusion rod 11 in each glue extrusion cylinder sleeve 12 to slide in the horizontal direction to extrude the glue in each glue extrusion cylinder sleeve 12 into the glue mixing tube component 2. The glue mixing and extrusion device provided in the present embodiment realizes the extrusion and mixing of multiple glues because the glue in each glue extrusion cylinder sleeve 12 can be extruded into the glue mixing tube component 2, and the glue in multiple glue extrusion cylinder sleeves 12 can be extruded at the same time by one drive component 3, which makes the structure simple and reduces the cost. In addition, since each glue extrusion cylinder sleeve 12 extends in the horizontal direction, each glue extrusion cylinder sleeve 12 is placed horizontally, ensuring that the pressure of the glue at each position in the glue extrusion cylinder sleeve 12 is the same, making it easy to discharge the trace bubbles in the glue in the glue extrusion cylinder sleeve 12, thereby ensuring the accuracy of the mixing ratio of each glue and ensuring the quality of glue extrusion.

[0050] It should be noted that since the multiple extruding rods 11 share a common drive assembly 3 for driving, the precision of the synchronous displacement of the multiple extruding rods 11 is improved, so that the precision of the synchronous displacement of the multiple extruding rods 11 can be controlled within ±2%, thereby controlling the precision of each component glue in the mixed glue extruded by the mixing tube assembly 2 to within ±2%. This embodiment is described using the glue mixing and extrusion equipment to achieve the extrusion and mixing of two-component glue as an example. The glue mixing and extrusion equipment provided in this embodiment can achieve a mass ratio of two-component glue of 1:1 to 20:1, which can meet the requirements of large-scale glue mixing.

[0051] In addition, it should be noted that, in this embodiment, as shown in the following formula:

[0052]

[0053] Where M is the mass of the glue, ρ is the density of the glue, d is the diameter of the glue extrusion cylinder sleeve 12, and L is the displacement distance of the glue extrusion rod 11. Therefore, based on the mass ratio of the various glue components in the mixed glue, the diameter ratio of each glue extrusion cylinder sleeve 12 can be calculated to meet the proportion of each glue component in the mixed glue. Furthermore, by adjusting the displacement speed of the glue extrusion rod 11, the glue delivery speed of the mixing tube assembly 2 can be adjusted.

[0054] Optionally, in this embodiment, the glue extrusion cylinder liner 12 can be made of zirconium oxide, which effectively improves the structural strength of the glue extrusion cylinder liner 12 and prevents friction damage to the glue extrusion cylinder liner 12 caused by the sliding of the glue extrusion rod 11 relative to the glue extrusion cylinder liner 12 during the glue extrusion process, thereby affecting the glue output. In addition, by making the glue extrusion cylinder liner 12 of zirconium oxide, it can also meet the extrusion operation requirements of highly filled glue.

[0055] Optionally, in this embodiment, if Figure 1 and Figure 2 As shown, the glue extrusion assembly 1 also includes a glue extrusion mounting member 13, and each glue extrusion cylinder sleeve 12 can be detachably mounted in the glue extrusion mounting member 13. The above arrangement satisfies the requirements of mixed extrusion of glues of different proportions by replacing glue extrusion cylinder sleeves 12 of different diameters on the glue extrusion mounting member 13, thereby expanding the application range of the glue mixing and extrusion equipment and facilitating operation.

[0056] In this embodiment, if Figure 1 and Figure 2As shown, the glue squeezing assembly 1 also includes a glue outlet valve 14 and a glue inlet valve 15, wherein the glue outlet of each glue squeezing cylinder sleeve 12 is connected to the glue mixing pipe assembly 2 through a glue outlet valve 14, and the glue inlet of each glue squeezing cylinder sleeve 12 is connected to the glue feeding device through a glue inlet valve 15. Specifically, when the driving assembly 3 drives each glue squeezing rod 11 to slide in the horizontal direction to squeeze glue, the glue outlet valve 14 is opened and the glue inlet valve 15 is closed, so that the glue in each glue squeezing cylinder sleeve 12 is pushed by the corresponding glue squeezing rod 11 to enter the glue mixing pipe assembly 2 through the corresponding glue outlet valve 14. When the glue in each glue squeezing cylinder sleeve 12 is squeezed out and the glue feeding device needs to replenish the glue in the glue squeezing cylinder sleeve 12, the glue outlet valve 14 is closed and the glue inlet valve 15 is opened to ensure that the glue feeding device can smoothly feed the glue into the corresponding glue squeezing cylinder sleeve 12 through the glue inlet valve 15.

[0057] In this embodiment, if Figure 1 and Figure 2 As shown, when each glue outlet valve 14 is opened, each glue inlet valve 15 is closed, and the driving component 3 drives each glue extrusion rod 11 to slide from right to left, the glue in each glue extrusion cylinder sleeve 12 is squeezed into the glue mixing pipe assembly 2; when each glue inlet valve 15 is opened, each glue outlet valve 14 is closed, and the glue feeding equipment is replenishing glue into each glue extrusion cylinder sleeve 12, each glue extrusion rod 11 slides from left to right to ensure that the glue enters the glue extrusion cylinder sleeve 12.

[0058] Optionally, in this embodiment, if Figure 1 and Figure 2 As shown, the glue extrusion mounting member 13 includes a glue rod mounting plate 132, a cylinder liner mounting plate 131 and a glue valve mounting plate 133 connected in sequence, wherein each glue extrusion rod 11 is slidably mounted in the glue rod mounting plate 132, each glue extrusion cylinder liner 12 is detachably mounted in the cylinder liner mounting plate 131, and the glue outlet valve 14 and the glue inlet valve 15 are both mounted on the glue valve mounting plate 133.

[0059] In this embodiment, if Figure 2 and Figure 3 As shown, the rubber extrusion assembly 1 further includes a guide sleeve 16, which is mounted inside the rubber rod mounting plate 132. Each rubber extrusion rod 11 corresponds to a guide sleeve 16, and the first end of the rubber extrusion rod 11 slides through the guide sleeve 16 and extends into the corresponding rubber extrusion cylinder sleeve 12, while the second end of the rubber extrusion rod 11 extends out of the rubber rod mounting plate 132. The provision of the guide sleeve 16 provides guidance for the left-right sliding of the rubber extrusion rod 11, thereby improving the stability and reliability of the sliding movement of the rubber extrusion rod 11 relative to the rubber extrusion cylinder sleeve 12 and the rubber rod mounting plate 132.

[0060] Optionally, in this embodiment, if Figure 1As shown, an oil window 1321 is provided on the rubber rod mounting plate 132, and each guide sleeve 16 is provided with an oil window 1321. By providing the oil window 1321, it is convenient to fill lubricating oil into the interior of the rubber rod mounting plate 132 through the oil window 1321 to ensure the smoothness of the sliding movement of the rubber squeezing rod 11.

[0061] Optionally, in this embodiment, the glue extrusion assembly 1 further includes a first seal 17. The outer periphery of each glue extrusion rod 11 is sleeved with the first seal 17, and the first seal 17 is sandwiched between the outer peripheral wall of the corresponding glue extrusion rod 11 and the inner peripheral wall of the glue extrusion cylinder sleeve 12. By providing the first seal 17, the sealing effect between the glue extrusion rod 11 and the glue extrusion cylinder sleeve 12 is improved, and the glue extrusion effect of the glue extrusion rod 11 on the glue in the glue extrusion cylinder sleeve 12 is ensured. Optionally, the first seal 17 can be a sealing rubber ring or an oil seal. This embodiment does not limit the specific form of the first seal 17. Optionally, two first seals 17 can be provided at intervals along the axial direction of the glue extrusion rod 11 to further improve the sealing effect between the glue extrusion rod 11 and the glue extrusion cylinder sleeve 12. It should be noted that the setting of the first sealing member 17 can prevent glue and lubricating oil from leaking out between the glue extrusion rod 11 and the glue extrusion cylinder sleeve 12, but the trace bubbles in the glue in the glue extrusion cylinder sleeve 12 can be discharged in sequence from between the glue extrusion rod 11 and the glue extrusion cylinder sleeve 12, and between the glue extrusion rod 11 and the glue rod mounting plate 132.

[0062] Optionally, in this embodiment, if Figure 2 and Figure 3 As shown, the glue extrusion assembly 1 also includes a second seal 18, which is located on the side of the glue rod mounting plate 132 away from the glue extrusion cylinder sleeve 12. The second seal 18 is sandwiched between the glue rod mounting plate 132 and the outer peripheral wall of the glue extrusion rod 11. This arrangement prevents lubricating oil from leaking between the glue rod mounting plate 132 and the glue extrusion rod 11, allowing the lubricating oil filling the glue rod mounting plate 132 to flow only between the first seal 17 and the second seal 18, thereby improving the sealing effect of the lubricating oil. Specifically, the second seal 18 can be a sealing rubber ring or an oil seal.

[0063] Optionally, in this embodiment, if Figure 1 As shown, the glue mixing and extruding device further includes a heating plate assembly 4, on which is mounted a glue extrusion mounting member 13. By mounting the glue extrusion mounting member 13 on the heating plate assembly 4, the glue in the glue extrusion cylinder sleeve 12 is heated and kept warm, thereby preventing the glue from being solidified due to excessively low temperature, and allowing the glue extrusion rod 11 to more smoothly extrude the glue in the glue extrusion cylinder sleeve 12.

[0064] Specifically, if Figure 1As shown, the heating plate assembly 4 provided in this embodiment includes a heat conducting plate 41, a heating element 42 and a temperature measuring element 43, wherein a glue extrusion mounting member 13 is installed on the heat conducting plate 41, the heating element 42 is arranged on the heat conducting plate 41, and the heating element 42 is used to heat the heat conducting plate 41, and the temperature measuring element 43 is connected to the driving assembly 3 in communication, and the temperature measuring element 43 is arranged on the heat conducting plate 41, and the temperature measuring element 43 is used to detect the temperature of the heat conducting plate 41. The above arrangement allows the heat generated by the heating element 42 to be transferred to the glue extrusion mounting member 13 through the heat conducting plate 41. In addition, when the temperature measuring element 43 detects that the temperature of the heat conducting plate 41 reaches a preset temperature, the driving assembly 3 drives the glue extrusion rod 11 to slide according to the detection value of the temperature measuring element 43 to complete the glue extrusion operation. Optionally, in this embodiment, the heat conducting plate 41 can be made of metal material, which has good thermal conductivity. Optionally, the heating element 42 can be a heating wire or a heating resistor. Optionally, the temperature measuring element 43 can be a temperature sensor. It should be noted that, in this embodiment, the glue rod mounting plate 132 , the cylinder sleeve mounting plate 131 and the glue valve mounting plate 133 are all mounted on the heat conducting plate 41 , thereby improving the heating and heat preservation effect of the glue in the glue mixing and extruding device.

[0065] In addition, if Figure 1 As shown, the glue mixing and extrusion equipment provided in this embodiment further includes a mounting assembly 5, on which a heat conducting plate 41 is mounted. The mounting assembly 5 supports the glue extrusion assembly 1, the glue mixing hose assembly 2, and the drive assembly 3. Optionally, in this embodiment, the mounting assembly 5 can be in the form of a mounting plate.

[0066] In this embodiment, if Figure 1 and Figure 2As shown, the drive assembly 3 includes a rotary drive member 31, a ball screw 32, and a push block 33. The rotary drive member 31 is mounted on the mounting assembly 5. The ball screw 32 extends horizontally and is in driving connection with the rotary drive member 31. The push block 33 is threadedly connected to the ball screw 32. The push block 33 is capable of simultaneously abutting against the second end of each of the extrusion rods 11 on the side facing the extrusion rods 11. When the drive assembly 3 is required to drive the extrusion of glue, the rotary drive member 31 drives the ball screw 32 to rotate, causing the push block 33 to move from right to left along the ball screw 32. The push block 33 then pushes each of the extrusion rods 11 to slide from right to left along the corresponding extrusion cylinder sleeve 12, thereby squeezing the glue in each extrusion cylinder sleeve 12 into the mixing hose assembly 2. When the glue feeding device is needed to replenish the glue in the glue extrusion cylinder 12, the rotating driving member 31 drives the ball screw 32 to rotate in the opposite direction, so that the push block 33 moves from left to right along the ball screw 32 to the initial position, and then closes the glue outlet valve 14 and opens the glue inlet valve 15, so that the glue feeding device can smoothly feed the glue into the corresponding glue extrusion cylinder 12 through the glue inlet valve 15. At this time, the glue extrusion rod 11 in the glue extrusion cylinder 12 slides toward the right under the push of the glue fed by the glue feeding device, so that the glue extrusion rod 11 slides to the right to the initial position. The structural design of the above-mentioned drive component 3 ensures the driving accuracy of the drive component 3.

[0067] Optionally, in this embodiment, a detection member (not shown) is provided on the push block 33, and each extruding rod 11 corresponds to a detection member for detecting whether the corresponding extruding rod 11 has slid to the initial position. Optionally, the detection member can be a sensor.

[0068] In this embodiment, the rotary drive member 31 includes a servo motor 311 and a reducer 312 in transmission connection, and the reducer 312 is in transmission connection with the ball screw 32. The structural design of the rotary drive member 31 ensures the reliability and accuracy of the rotary drive member 31.

[0069] In this embodiment, if Figure 1 As shown, the drive assembly 3 further includes a guide rail 34 and a slider 35 that are slidably connected. The guide rail 34 extends horizontally and is mounted on the mounting assembly 5, while the slider 35 is mounted on the push block 33. The guide rail 34 and slider 35 provide guidance for the horizontal reciprocating movement of the push block 33, ensuring the reliability of the push block 33 in pushing the respective extrusion rods 11. Alternatively, in other embodiments, the guide rail 34 may be mounted on the push block 33, while the slider 35 may be mounted on the mounting assembly 5.

[0070] Optionally, in this embodiment, the glue mixing and extrusion device further includes a displacement detection component 6, which is disposed on the mounting component 5. The displacement detection component 6 is used to detect the moving position of the push block 33, thereby better detecting the moving speed of the push block 33. Optionally, the displacement detection component 6 can be a sensor.

[0071] In this embodiment, if Figure 1 As shown, the mixing hose assembly 2 includes a glue outlet connection block 21 and a mixing hose 22, which are connected in sequence. The glue outlet of each glue extrusion cylinder sleeve 12 is connected to the glue outlet connection block 21 through a glue outlet valve 14. The glue outlet connection block 21 and the mixing hose 22 both extend vertically. By making the glue outlet connection block 21 and the mixing hose 22 extend vertically, smooth glue discharge from the mixing hose assembly 2 is ensured.

[0072] In order to facilitate the understanding of the glue mixing and extrusion equipment disclosed in this embodiment, Figures 1 to 3 Explain the specific working process of glue mixing extrusion equipment:

[0073] First, the heating element 42 starts heating. When the temperature measuring element 43 detects that the temperature of the heat conducting plate 41 reaches a preset temperature, the rotary driving element 31 drives the pushing block 33 to move from left to right to the initial position.

[0074] Next, the glue inlet valve 15 is opened, and the glue outlet valve 14 is ensured to be closed, so that the glue feeding device can smoothly feed the glue into each corresponding glue extrusion cylinder sleeve 12 through the glue inlet valve 15. The glue extrusion rod 11 in the glue extrusion cylinder sleeve 12 is pushed to slide toward the right by the glue fed in. When the detection component detects that the glue extrusion rod 11 has slid to the right to the initial position, the glue inlet valve 15 is closed and the glue outlet valve 14 is opened;

[0075] Finally, the rotating driving member 31 drives the pushing block 33 to move from right to left, so that the glue extruding rod 11 squeezes the glue in the corresponding glue extruding cylinder sleeve 12 into the mixing hose assembly 2, and the various components of the glue in the mixing hose assembly 2 are mixed and the evenly mixed glue is discharged.

[0076] Obviously, the above embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention, and are not intended to limit the implementation methods of the present invention. Those skilled in the art will appreciate that other variations or modifications can be made based on the above description. It is not necessary and impossible to enumerate all implementation methods here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the claims of the present invention.

Claims

1. A glue mixing and extrusion device, characterized in that: include: A glue extrusion assembly (1), the glue extrusion assembly (1) comprising a glue extrusion rod (11) and at least two glue extrusion cylinder sleeves (12), each of the glue extrusion cylinder sleeves (12) extending in a horizontal direction, and each of the glue extrusion cylinder sleeves (12) having one of the glue extrusion rods (11) slidingly penetrated in the horizontal direction; A rubber mixing pipe assembly (2), wherein the rubber outlet of each of the rubber squeezing cylinder sleeves (12) is connected to the rubber mixing pipe assembly (2); and A drive assembly (3) is configured to synchronously drive the glue extrusion rod (11) in each of the glue extrusion cylinder sleeves (12) to slide along the horizontal direction, so as to extrude the glue in each of the glue extrusion cylinder sleeves (12) into the glue mixing hose assembly (2).

2. The glue mixing and extrusion equipment according to claim 1, characterized in that: The glue extrusion component (1) further comprises: A glue extrusion mounting piece (13), each of the glue extrusion cylinder sleeves (12) can be detachably mounted in the glue extrusion mounting piece (13).

3. The glue mixing and extrusion equipment according to claim 2, characterized in that: The glue mixing and extrusion equipment also includes: A heating plate assembly (4) is provided, wherein the glue extrusion mounting member (13) is mounted on the heating plate assembly (4).

4. The glue mixing and extrusion equipment according to claim 3, characterized in that: The heating plate assembly (4) comprises: A heat conducting plate (41), the heat conducting plate (41) being provided with the rubber extrusion mounting member (13); a heating element (42), the heating element (42) being disposed on the heat conducting plate (41), the heating element (42) being configured to heat the heat conducting plate (41); and A temperature measuring component (43) is communicatively connected to the driving assembly (3), and the temperature measuring component (43) is disposed on the heat conducting plate (41). The temperature measuring component (43) is configured to detect the temperature of the heat conducting plate (41).

5. The glue mixing and extrusion equipment according to any one of claims 1 to 4, characterized in that: The driving assembly (3) comprises: Rotating driving member (31); a ball screw (32) extending in the horizontal direction, and the ball screw (32) is transmission-connected to the rotary drive member (31); and The pushing block (33) is threadedly connected to the ball screw (32), and the side of the pushing block (33) facing the rubber extrusion rod (11) can simultaneously abut against the end of each rubber extrusion rod (11) extending out of the corresponding rubber extrusion cylinder sleeve (12).

6. The glue mixing and extrusion equipment according to claim 5, characterized in that: The glue mixing and extruding device further comprises a mounting assembly (5), wherein the relative position of the mounting assembly (5) and the glue extruding cylinder sleeve (12) is fixed; The driving assembly (3) further comprises a guide rail (34) and a slider (35) which are slidably connected, wherein the guide rail (34) extends along the horizontal direction, and one of the guide rail (34) and the slider (35) is arranged on the pushing block (33), and the other of the two is arranged on the mounting assembly (5).

7. The glue mixing and extrusion equipment according to any one of claims 1 to 4, characterized in that: The glue extrusion component (1) further comprises: A glue outlet valve (14), wherein the glue outlet of each of the glue squeezing cylinder sleeves (12) is connected to the glue mixing pipe assembly (2) via a glue outlet valve (14); and Glue inlet valve (15), the glue inlet of each of the glue squeezing cylinder sleeves (12) is connected to the glue feeding equipment through a glue inlet valve (15).

8. The glue mixing and extrusion equipment according to any one of claims 2 to 4, characterized in that: The glue extrusion component (1) further comprises: A guide sleeve (16) is installed in the glue extrusion mounting member (13), each of the glue extrusion rods (11) corresponds to one guide sleeve (16), and one end of the glue extrusion rod (11) slides through the guide sleeve (16) and extends into the corresponding glue extrusion cylinder sleeve (12).

9. The glue mixing and extrusion equipment according to any one of claims 1 to 4, characterized in that: The glue extrusion component (1) further comprises: A first sealing member (17) is provided on the outer periphery of each of the extruding rod members (11), and the first sealing member (17) is sandwiched between the outer peripheral wall of the corresponding extruding rod member (11) and the inner peripheral wall of the extruding cylinder sleeve (12).

10. The glue mixing and extruding equipment according to any one of claims 1 to 4, characterized in that: The rubber mixing pipe assembly (2) comprises a rubber outlet connection block (21) and a rubber mixing pipe (22) which are connected in sequence. The rubber outlet of each rubber extrusion cylinder sleeve (12) is connected to the rubber outlet connection block (21), and the rubber outlet connection block (21) and the rubber mixing pipe (22) both extend in a vertical direction.