Multifunctional glue point transfer compound machine

The electric cylinder and flow divider design of the multi-functional glue dot transfer laminating machine solves the problems of material misalignment and uneven cooling after dispensing, achieving rapid solidification and efficient production.

CN223628924UActive Publication Date: 2025-12-05JIANGSU KUNTAI MACHINERY
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Patent Information

Application Number
CN202422916436.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-12-05
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

Traditional adhesive dot transfer lamination equipment lacks effective fixation after dispensing, leading to material misalignment and slow, uneven cooling, which affects product accuracy and production efficiency.

Method used

The multi-functional adhesive dot transfer laminating machine uses an electric cylinder to drive the upper flat shell to move down and press the material, and achieves uniform cooling through the distribution cylinder and cooling body distribution pipe. Combined with the liquid circulation between the interlocking flat shell and the upper flat shell, the adhesive is quickly solidified.

Benefits of technology

It effectively prevents material misalignment, improves cooling efficiency and effectiveness, ensures accurate dispensing position, shortens production cycle, and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of compound machines, in particular to a multifunctional glue point transfer compound machine which comprises a machine tool, a conveying roller set is fixedly connected to the machine tool, a recycling roller set is installed and connected to the other end of the machine tool, a glue point main cavity is formed in the machine tool, and a beam frame is fixedly connected to the machine tool. A water tank is fixedly connected to the side wall of the machine tool, and a pump body is mounted and connected to the outer wall of the water tank; and the rapid cooling mechanism comprises a shunting cylinder. According to the utility model, the telescopic end of the electric cylinder drives the upper flat shell to move downwards and is matched with the embedded flat shell to press a material, so that stable constraint is provided for the material, and meanwhile, the fully cooled liquid conveyed to the position between the upper flat shell and the embedded flat shell can accelerate the rapid cooling and solidification of a glue body which just finishes dispensing; and the problem of deviation of the material due to non-solidification of the colloid is effectively prevented, the accuracy of the dispensing position is guaranteed, the stability and quality of the material after dispensing are greatly improved, and smooth proceeding of subsequent processing procedures is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a compound machine technical field especially relates to a multifunctional glue point transfer compound machine. BACKGROUND

[0002] In the field of glue point transfer compounding process, material handling after dispensing operation is crucial for the quality and production efficiency of the final product. Traditional glue point transfer compounding equipment and process have some problems after dispensing is completed. On the one hand, there is a lack of effective fixing and limiting for materials after dispensing. Since the glue needs a certain amount of time to completely solidify after dispensing, the material is prone to shift due to various external factors (such as slight vibration of the equipment, gravity of the material itself, or interference of subsequent operations, etc.) during this process. This shift will result in inaccurate glue point position, seriously affecting the precision and quality of the product, and even possibly making the entire product a defective product, increasing production cost and material waste.

[0003] On the other hand, in the cooling link after dispensing, most equipment adopts natural cooling or simple air cooling method, which is slow and uneven in cooling. Natural cooling requires a long time, greatly reducing production efficiency and increasing production cycle. Simple air cooling method may not be able to achieve ideal cooling effect inside and on the surface of the glue, resulting in incomplete solidification or unstable quality of the glue, and further affecting the compounding effect between materials, which cannot meet the production requirements of high-quality products.

[0004] Therefore, it is necessary to provide a new multifunctional glue point transfer compound machine to solve the above technical problems. SUMMARY

[0005] The utility model aims at solving the shortcomings of the prior art and provides an automatic winding device for hot melt adhesive coating machine.

[0006] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0007] The utility model provides a multifunctional glue point transfer compound machine, which comprises a machine tool, a conveying roller group fixedly connected to the machine tool, a recovery roller group installed and connected to the other end of the machine tool, a glue dispensing main cavity arranged on the machine tool, a beam frame fixedly connected to the machine tool, a water tank fixedly connected to the side wall of the machine tool, and a pump body installed and connected to the outer wall of the water tank.

[0008] To better achieve the above-mentioned purpose, the utility model adopts further technical scheme: the lower end of the shunt shell is installed and connected with a double inlet joint.

[0009] To better achieve the above-mentioned purpose, the utility model adopts further technical scheme: the machine tool is provided with an embedded groove, the embedded groove is arranged below the beam frame, an embedded flat shell is installed and connected in the embedded groove, an upper flat shell is arranged at the upper position of the embedded flat shell, limit blocks are symmetrically arranged at the two ends of the upper flat shell, limit grooves are arranged at the two ends of the two beam frames, the two limit blocks are slidably connected with the two limit grooves respectively, an electric cylinder is installed and connected to the beam frame, the telescopic end of the electric cylinder is fixedly connected with the middle position of the upper flat shell, cavities are arranged in the embedded flat shell and the upper flat shell, liquid inlets are arranged at one end of the embedded flat shell and the upper flat shell, liquid outlets are arranged at the other end of the embedded flat shell and the upper flat shell, the two liquid inlets are connected with the double inlet joint through first connecting pipes, and the two liquid outlets are connected with the upper end tank wall of the water tank through second connecting pipes.

[0010] The utility model has the advantages of:

[0011] The upper flat shell is driven to move downward by the telescopic end of the electric cylinder, and cooperates with the embedded flat shell to press the material, thereby providing stable constraint for the material. Meanwhile, the liquid fully cooled between the upper flat shell and the embedded flat shell can accelerate the rapid cooling and solidification of the glue body just after glue dispensing, effectively prevents the deviation of the material due to the non-solidification of the glue body, ensures the accuracy of the glue dispensing position, greatly improves the stability and quality of the material after glue dispensing, and helps the smooth progress of subsequent processing procedures.

[0012] The water flow is further differentiated through the plurality of shunt pipes in the shunt cylinder, so that the cooling liquid can be more uniformly and widely distributed in the area needing cooling, greatly improving the cooling efficiency and effect, enabling the cooling liquid to reach the ideal cooling temperature in a shorter time, thereby promoting the colloid to reach the ideal solidification state, and since the cooling time is shortened, the waiting time in the production process is reduced, thereby improving the production efficiency of the whole multifunctional glue point transfer composite machine and reducing the production cost. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 A structure schematic view of a preferred embodiment of the utility model is provided.

[0014] Figure 2 A structure schematic view of the shunt cylinder is shown. Figure 1 A structure schematic view of the shunt cylinder is shown.

[0015] Figure 3 A structure schematic view of the cooling assembly is shown. Figure 1 A structure schematic view of the cooling assembly is shown.

[0016] In the drawing, 1 is a machine tool, 11 is a conveying roller group, 12 is a recovery roller group, 2 is a glue dispensing main cavity, 3 is a beam frame, 4 is a water tank, 41 is a pump body, 5 is a shunt cylinder, 51 is a converging shell, 52 is a shunt shell, 53 is a shunt pipe, 54 is a cooling body, 6 is a double-inlet connector, 7 is an embedded flat shell, 71 is an upper flat shell, 72 is a limiting block, 73 is a liquid inlet, 74 is a liquid outlet, and 8 is an electric cylinder. DETAILED DESCRIPTION

[0017] The utility model will be further described below in combination with the drawings and embodiments.

[0018] Referring to Figures 1 to 3 A multifunctional glue point transfer composite machine comprises a machine tool 1, the conveying roller group 11 is fixedly connected on the machine tool 1, the recovery roller group 12 is installed and connected on the other end of the machine tool 1, the glue dispensing main cavity 2 is arranged on the machine tool 1, the beam frame 3 is fixedly connected on the machine tool 1, the water tank 4 is fixedly connected on the side wall of the machine tool 1, and the pump body 41 is installed and connected on the outer wall of the water tank 4; the rapid cooling mechanism comprises the shunt cylinder 5, the converging shell 51 is arranged at the upper end of the shunt cylinder 5, the converging shell 51 is connected with the water outlet end of the pump body 41 through the water inlet pipe, the shunt shell 52 is arranged at the lower end of the shunt cylinder 5, the cooling body 54 is arranged in the shunt cylinder 5, a plurality of shunt pipes 53 are fixedly connected in the shunt cylinder 5, the plurality of shunt pipes 53 are arranged in equidistant annular shape, the plurality of shunt pipes 53 are all in abutment with the cooling body 54, the plurality of shunt pipes 53 in the shunt cylinder 5 further differentiate the water flow, so that the cooling liquid can be more uniformly and widely distributed in the area needing cooling, greatly improving the cooling efficiency and effect, enabling the cooling liquid to reach the ideal cooling temperature in a shorter time, and Figure 1 andFigure 2 As shown, the inside of the confluence shell 51 is provided with a plurality of main interfaces, and the plurality of main interfaces are respectively connected with the upper ends of the plurality of shunt pipes 53. The inside of the shunt shell 52 is provided with a plurality of secondary interfaces, and the plurality of secondary interfaces are respectively fixedly connected with the lower ends of the plurality of shunt pipes 53. The cooperation of the confluence shell 51 and the shunt shell 52 realizes the shunting and gathering of water flow, and ensures that the cooling water can be well cooled.

[0019] Reference Figure 2 As shown, the lower end of the shunt shell 52 is provided with a double inlet joint 6. The double inlet joint 6 is arranged to enable the water flow to be simultaneously delivered to the embedded flat shell 7 and the upper flat shell 71.

[0020] Reference Figure 1 And Figure 3 As shown, the machine tool 1 is provided with an embedded groove, which is arranged below the beam frame 3. The embedded groove is provided with the embedded flat shell 7. The upper position of the embedded flat shell 7 is provided with the upper flat shell 71. The two ends of the upper flat shell 71 are symmetrically provided with limiting blocks 72. The two ends of the two beam frames 3 are provided with limiting grooves. The two limiting blocks 72 are respectively connected with the two limiting grooves in a sliding manner. The beam frame 3 is provided with the electric cylinder 8. The telescopic end of the electric cylinder 8 is fixedly connected with the middle position of the upper flat shell 71. The telescopic end of the electric cylinder 8 drives the upper flat shell 71 to move downward, so as to press the material by the upper flat shell 71 and the embedded flat shell 7, and provide a stable physical constraint for the material. The liquid delivered to the upper flat shell 71 and the embedded flat shell 7 can accelerate the rapid cooling and solidification of the glue just after dispensing. The inside of the embedded flat shell 7 and the upper flat shell 71 is provided with a cavity. One end of the embedded flat shell 7 and the upper flat shell 71 is provided with a liquid inlet 73. The other end of the embedded flat shell 7 and the upper flat shell 71 is provided with a liquid outlet 74. The two liquid inlets 73 are connected with the double inlet joint 6 through the first connecting pipe. The two liquid outlets 74 are connected with the upper end of the tank wall of the water tank 4 through the second connecting pipe. The cooperation of the two liquid inlets 73 and the two liquid outlets 74 realizes the circulating flow of the water flow.

[0021] After the dispensing is completed, the telescopic end of the electric cylinder 8 drives the upper flat shell 71 to move downward. The material is pressed by the upper flat shell 71 and the embedded flat shell 7. The pump body 41 is started to make the stored water in the water tank 4 shunt to the inside of the plurality of shunt pipes 53 through the confluence shell 51, and then gather in the shunt shell 52 to be discharged. The water flow is delivered to the upper flat shell 71 and the embedded flat shell 7 through the double inlet joint 6. The liquid after sufficient cooling accelerates the rapid cooling and solidification of the glue just after dispensing, so as to effectively prevent the material just after dispensing from deviating. The plurality of shunt pipes 53 enables the water flow to be further differentiated and cooled, so as to ensure good cooling effect.

Claims

1. A multifunctional glue dot transfer compound machine, characterized in that, Include: Machine tool (1), the machine tool (1) is fixedly connected with conveying roller group (11), the other end of the machine tool (1) is installed and is connected with recovery roller group (12), the machine tool (1) is equipped with point gluing main cavity (2), the machine tool (1) is fixedly connected with beam frame (3), the side wall of the machine tool (1) is fixedly connected with water tank (4), the outer wall of the water tank (4) is installed and is connected with pump body (41);Quick cooling mechanism, the quick cooling mechanism includes flow dividing cylinder (5), the upper end of the flow dividing cylinder (5) is equipped with flow collecting shell (51), the flow collecting shell (51) is connected with the water outlet end of pump body (41) through water inlet pipe, the lower end of the flow dividing cylinder (5) is equipped with flow dividing shell (52), the inside of the flow dividing cylinder (5) is equipped with cooling body (54), the flow dividing cylinder (5) is fixedly connected with a plurality of flow dividing pipes (53), a plurality of the flow dividing pipes (53) are equidistant annularly arranged, a plurality of the flow dividing pipes (53) are all in abutment with cooling body (54), the inside of the flow collecting shell (51) is equipped with a plurality of main docking interfaces, a plurality of the main docking interfaces are respectively connected with the upper end of a plurality of flow dividing pipes (53), the inside of the flow dividing shell (52) is equipped with a plurality of vice docking interfaces, a plurality of the vice docking interfaces are respectively fixedly connected with the lower end of a plurality of flow dividing pipes (53).

2. The multifunctional glue dot transfer compound machine according to claim 1, characterized in that, The lower end of the flow dividing shell (52) is installed and is connected with double inlet joint (6).

3. The multi-functional glue dot transfer compound machine according to claim 1, wherein, The machine tool (1) is equipped with an embedded groove, the embedded groove is below the beam frame (3), the embedded groove is installed and is connected with the embedded flat shell (7), the upper position of the embedded flat shell (7) is equipped with the upper flat shell (71), the both ends of the upper flat shell (71) are symmetrically equipped with limit block (72), the both ends of two beam frames (3) are equipped with limit slot, two limit blocks (72) are respectively connected with two limit slots, the beam frame (3) is installed and is connected with electric cylinder (8), the telescopic end of the electric cylinder (8) is fixedly connected with the middle position of the upper flat shell (71), the inside of the embedded flat shell (7) and the upper flat shell (71) is equipped with cavity, one end of the embedded flat shell (7) and the upper flat shell (71) is equipped with liquid inlet (73), the other end of the embedded flat shell (7) and the upper flat shell (71) is equipped with liquid outlet (74), two liquid inlets (73) are connected with double inlet joint (6) through first connecting pipe, two liquid outlets (74) are connected with the upper end tank wall of water tank (4) through second connecting pipe.