Cooling mechanism of cloth sponge composite machine

CN224796137UActive Publication Date: 2026-09-25QUANZHOU HUILI SHOES & CLOTHES CO LTD
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Patent Information

Application Number
CN202522130828.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-09
Publication Date
2026-09-25
Estimated Expiration
2035-10-09

AI Technical Summary

Technical Problem

[0003]现有技术上的布料海绵复合机在对于复合布料进行冷却后,较难防止复合布料在运输时产生褶皱,且复合布料上会带有静电容易粘附灰尘碎屑,进而对于复合布料的外表品质产生影响;且现有技术上的布料海绵复合机对于复合布料的冷却效果较为不足,不利于复合布料的后续加工,降低了设备的工作效率

Benefits of technology

[0013]本实用新型所述一种布料海绵复合机的冷却机构,通过设置了防皱除静电装置于工作台顶部左上方,通过步进马达利用螺杆带动两组横板和压板相向移动,这样方便通过两组压板对于复合布料进行碾平防皱,且设置的光电传感器可以检测压板与复合布料的间距,并且通过静电消除棒对于复合布料上的静电进行消除,保证加工后复合布料外表整体的整洁美观。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of cooling mechanism of cloth sponge compound machine, it is related to the relevant field of composite production equipment, including workbench, the workbench top right end bolt installation has cooling bin, the cooling bin rear end face middle bolt installation has controller, wrinkle prevention electrostatic removal device is set in workbench top left upper side, two groups of horizontal plate and pressing plate are moved towards by screw rod driven by stepping motor, it is convenient to flatten and wrinkle prevention for composite cloth by two groups of pressing plate, and the distance between pressing plate and composite cloth can be detected by the photoelectric sensor set, and static electricity on composite cloth is eliminated by static electricity elimination stick;Auxiliary cooling device is set in cooling bin top, outside air is extracted by bass fan, so it is convenient to cooperate equipment for auxiliary cooling of composite cloth, and the heat exchange effect of airflow and water storage can be accelerated by using the spiral path inside spiral water tank.
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Description

Technical Field

[0001] This utility model relates to the field of composite material production equipment, specifically a cooling mechanism for a fabric-sponge composite machine. Background Technology

[0002] A laminating machine is used to bond two or more layers of materials together with adhesives, giving the original materials new functions. It is often used for materials such as aluminum foil, film, paper, and non-woven fabric. It can also be used to laminate with films, sponges, and fabrics. In the process of laminating materials, an essential step is the cooling treatment of the materials.

[0003] Existing fabric-sponge laminating machines, after cooling the laminated fabric, have difficulty preventing wrinkles during transportation. Furthermore, the laminated fabric carries static electricity, making it prone to attracting dust and debris, which affects its appearance quality. In addition, the cooling effect of existing fabric-sponge laminating machines is insufficient, which is not conducive to subsequent processing of the laminated fabric and reduces the working efficiency of the equipment. Utility Model Content

[0004] Therefore, in order to overcome the above-mentioned shortcomings, this utility model provides a cooling mechanism for a fabric-sponge composite machine.

[0005] This utility model is implemented as follows: a cooling mechanism for a fabric-sponge composite machine is constructed. The device includes a worktable, a cooling chamber bolted to the top right end of the worktable, and a controller bolted to the middle of the rear end face of the cooling chamber; an anti-wrinkle and anti-static device, located on the upper left of the top of the worktable; and an auxiliary cooling device, located on the top of the cooling chamber. The anti-wrinkle and anti-static device includes: a limiting rod, welded to the bottom of the limiting rod at the left end of the rear end face of the worktable via a fixed block; a horizontal plate, with the limiting rod slidably connected to the through hole at the bottom rear end of the horizontal plate; a stepper motor bolted to the left end of the front end face of the worktable; a screw, with a screw inserted into the top drive shaft of the stepper motor and threadedly connected to the through hole at the bottom front end of the horizontal plate; pressure plates, each fixed to the facing surfaces of the two sets of horizontal plates by screws; static elimination rods, each mounted on the right side of the horizontal plates by screws; and a photoelectric sensor, with an opening at the bottom of the pressure plate.

[0006] Preferably, the auxiliary cooling device includes: an installation chamber, the installation chamber being bolted to the top left end of the cooling chamber; and a connecting pipe, the connecting pipe being installed at the front end of the installation chamber.

[0007] Preferably, the auxiliary cooling device further includes: an air outlet pipe, wherein an air outlet pipe is bolted to the left end of the front end face of the installation chamber, and the front end of the air outlet pipe is connected to a connecting pipe via a conduit; and a filter screen, wherein a filter screen is fixed to the rear end of the top of the installation chamber by screws.

[0008] Preferably, the auxiliary cooling device includes: an activated carbon adsorption plate, the top of which is fixed to the top of the activated carbon adsorption plate by screws; and a drying box, which is provided at the rear end of the bottom of the installation chamber.

[0009] Preferably, the auxiliary cooling device includes: a bass fan, which is installed at the bottom front end of the installation chamber by screws; and a spiral water tank, which is bolted to the top middle end of the installation chamber.

[0010] Preferably, the two sets of pressure plates have stoppers welded to their opposite sides at the front and rear ends.

[0011] Preferably, a wind collector cover is snapped onto the rear end face of the bass fan, and the rear end of the wind collector cover abuts against the front end of the spiral water tank.

[0012] This utility model has the following advantages: This utility model provides an improved cooling mechanism for a fabric-sponge composite machine, which, compared to similar equipment, has the following improvements:

[0013] The cooling mechanism of the fabric-sponge composite machine described in this utility model features an anti-wrinkle and anti-static device located on the upper left of the worktable. A stepper motor drives two sets of horizontal plates and pressure plates to move in opposite directions via a screw. This facilitates the flattening and anti-wrinkle treatment of the composite fabric by the two sets of pressure plates. Furthermore, a photoelectric sensor detects the distance between the pressure plate and the composite fabric, and an anti-static rod eliminates static electricity on the composite fabric, ensuring a clean and aesthetically pleasing overall appearance of the processed composite fabric.

[0014] The cooling mechanism of the fabric-sponge composite machine described in this utility model is provided by setting an auxiliary cooling device at the top of the cooling chamber and drawing in outside air through a low-frequency fan. This facilitates auxiliary cooling of the composite fabric in conjunction with the equipment, improving the cooling effect of the equipment on the composite fabric. Furthermore, the spiral path inside the spiral water tank can accelerate the heat exchange effect between the airflow and the stored water, and the airflow is concentrated and extracted through the air collection hood. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model;

[0016] Figure 2 This is a three-dimensional structural diagram of the anti-wrinkle and anti-static device of this utility model;

[0017] Figure 3This is a three-dimensional structural diagram of the static elimination rod and photoelectric sensor of this utility model;

[0018] Figure 4 This is a three-dimensional structural diagram of the auxiliary cooling device of this utility model;

[0019] Figure 5 This is a schematic diagram of the left side of the installation compartment of this utility model.

[0020] The components include: workbench-1, cooling chamber-2, controller-3, anti-wrinkle and anti-static device-4, auxiliary cooling device-5, limit rod-41, horizontal plate-42, stepper motor-43, screw-44, pressure plate-45, static eliminator rod-46, photoelectric sensor-47, mounting chamber-51, connecting pipe-52, air outlet pipe-53, filter screen-54, activated carbon adsorption plate-55, drying box-56, bass fan-57, and spiral water tank-58. Detailed Implementation

[0021] The following is in conjunction with the appendix Figures 1-5 The principles and features of this utility model are described below. The examples given are for illustrative purposes only and are not intended to limit the scope of this utility model. The utility model is described more specifically in the following paragraphs by way of example with reference to the accompanying drawings. The advantages and features of this utility model will become clearer from the following description and claims. It should be noted that the drawings are in a very simplified form and use non-precise proportions, and are only used to facilitate and clarify the illustration of the embodiments of this utility model.

[0022] It should be noted that when a component is described as "fixed to" another component, it can be directly on the other component or may have a component in between. When a component is considered "connected to" another component, it can be directly connected to the other component or may have a component in between. When a component is considered "set on" another component, it can be directly set on the other component or may have a component in between. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.

[0023] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0024] Example 1:

[0025] Please see Figures 1-5The present invention relates to a cooling mechanism for a fabric-sponge composite machine, comprising a workbench 1, a cooling chamber 2 bolted to the top right end of the workbench 1, and a controller 3 bolted to the middle end of the rear end face of the cooling chamber 2.

[0026] A wrinkle-resistant and static-eliminating device 4 is installed on the upper left of the top of the workbench 1, and an auxiliary cooling device 5 is installed on the top of the cooling chamber 2. The wrinkle-resistant and static-eliminating device 4 includes a fixed block welded to the bottom of the limiting rod 41 at the left end of the rear end face of the workbench 1. The limiting rod 41 is slidably connected to the bottom rear end through hole of the horizontal plate 42. The limiting rod 41 provides a limiting effect for the movement of the horizontal plate 42. A stepper motor 43 is bolted to the left end of the front end face of the workbench 1. A screw 44 is inserted into the drive shaft at the top of the stepper motor 43. The screw 44 is threadedly connected to the screw groove of the bottom front end through hole of the horizontal plate 42. The stepper motor 43 uses the screw 44 to drive the two sets of horizontal plates 42 and pressure plates 45 to move towards each other.

[0027] Two sets of horizontal plates 42 are fixed with pressure plates 45 by screws on their opposite sides. Static eliminator rods 46 are installed on the right side of each horizontal plate 42 by screws. A photoelectric sensor 47 is installed at the bottom of the pressure plate 45. The photoelectric sensor 47 emits a beam of light to detect the distance between the pressure plate 45 and the composite fabric. The opposite sides of the front and rear ends of the two sets of pressure plates 45 are welded with blocks. The blocks can prevent the composite fabric from shifting to the front and rear ends of the pressure plate 45.

[0028] The working principle of the cooling mechanism of a fabric-sponge composite machine based on Embodiment 1 is as follows:

[0029] First, when using this device, place it in the work area, and then connect it to an external power source to provide the power required for its operation.

[0030] Second, when in use, the composite fabric is pulled out through the left port of the cooling chamber 2 and passed between the two sets of pressure plates 45. Then, the stepper motor 43 and the static elimination rod 46 are started by the controller 3. The stepper motor 43 uses the screw 44 to drive the two sets of horizontal plates 42 and pressure plates 45 to move towards each other.

[0031] Third, when the two sets of pressure plates 45 sandwich the composite fabric in the middle, the photoelectric sensor 47 emits a beam to detect the distance between the pressure plate 45 and the composite fabric. After reaching the preset value, the controller 3 controls the stepper motor 43 to turn off. At this time, the pressure plate 45 flattens and prevents wrinkles on the composite fabric, while the static elimination rod 46 blows airflow with positive and negative charges to both ends of the fabric, so that the positive and negative charges on the fabric are neutralized, thereby eliminating static electricity on the fabric.

[0032] Fourth, the stop blocks can prevent the composite fabric from shifting to the front and rear ends of the pressure plate 45, which makes it convenient to flatten and prevent wrinkles by using two sets of pressure plates 45. The photoelectric sensor 47 can detect the distance between the pressure plate 45 and the composite fabric, and the static electricity on the composite fabric can be eliminated by the static elimination rod 46, ensuring that the overall appearance of the composite fabric is clean and beautiful after processing.

[0033] Example 2:

[0034] Please see Figures 1-5 The present invention provides a cooling mechanism for a fabric-sponge composite machine. Compared with Embodiment 1, this embodiment further includes: an auxiliary cooling device 5, which includes a cooling chamber 2 with a mounting chamber 51 bolted to the top left end, a connecting pipe 52 installed at the front end of the mounting chamber 51, the mounting chamber 51 providing a platform for installing other components, an air outlet pipe 53 bolted to the front end of the mounting chamber 51, the front end of the air outlet pipe 53 being connected to the connecting pipe 52 via a conduit, and a filter screen 54 fixed to the top rear end of the mounting chamber 51 by screws, allowing outside air to filter out internal impurities through the filter screen 54 and activated carbon adsorption plate 55;

[0035] The top of the installation chamber 51 is fixed to the top of the activated carbon adsorption plate 55 with screws. A drying box 56 is set at the middle and rear end of the bottom of the installation chamber 51 to dry the incoming outside air. A bass fan 57 is installed at the front end of the bottom of the installation chamber 51 with screws. A spiral water tank 58 is bolted to the middle of the top of the installation chamber 51. An air collector hood is snapped onto the rear end of the bass fan 57, and the rear end of the air collector hood abuts against the front end of the spiral water tank 58, which facilitates the concentration of airflow through the air collector hood.

[0036] In this embodiment:

[0037] First, when cooling the composite fabric, the bass fan 57 is started by the controller 3. The bass fan 57 draws in outside air, and the outside air filters out the impurities inside through the filter screen 54 and the activated carbon adsorption plate 55.

[0038] Second, the incoming outside air is dried by the drying box 56. Then, when the airflow passes through the spiral path inside the spiral water tank 58, it will exchange heat with the water stored inside the spiral water tank 58 to reduce the temperature of the airflow. Then the airflow is concentrated by the air collector hood.

[0039] Third, the airflow then blows along the connecting pipe 52 and the air outlet pipe 53 to the upper and lower ends of the composite fabric, thereby providing auxiliary cooling for the composite fabric. This facilitates the auxiliary cooling of the composite fabric by the equipment, improves the cooling effect of the equipment on the composite fabric, and the spiral path inside the spiral water tank 58 can accelerate the heat exchange effect between the airflow and the stored water, and the airflow is concentrated and extracted by the air collector hood.

[0040] This invention provides an improved cooling mechanism for a fabric-sponge composite machine. An anti-wrinkle and anti-static device 4 is installed at the top left of the worktable 1. A stepper motor 43, using a screw 44, drives two sets of horizontal plates 42 and pressure plates 45 to move towards each other. This facilitates the flattening and anti-wrinkle treatment of the composite fabric by the two pressure plates 45. A photoelectric sensor 47 detects the distance between the pressure plates 45 and the composite fabric, and an anti-static rod 46 eliminates static electricity on the composite fabric, ensuring a clean and aesthetically pleasing overall appearance after processing. An auxiliary cooling device 5 is installed at the top of the cooling chamber 2. A low-frequency fan 57 draws in outside air, facilitating auxiliary cooling of the composite fabric and improving the cooling effect. The spiral path inside the spiral water tank 58 accelerates the heat exchange between the airflow and the stored water, and a fan hood concentrates the airflow.

[0041] The above describes the basic principles, main features, and advantages of this utility model. All standard parts used in this utility model can be purchased from the market, and irregularly shaped parts can be customized according to the description and drawings. The specific connection methods for each part all adopt conventional methods such as bolts, rivets, and welding, which are mature technologies in the prior art. The machinery, parts, and equipment all adopt conventional models in the prior art, and the circuit connections adopt conventional connection methods in the prior art, which will not be detailed here.

[0042] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A cooling mechanism for a fabric-sponge composite machine, comprising a workbench (1), wherein a cooling chamber (2) is bolted to the right end of the top of the workbench (1), and a controller (3) is bolted to the middle end of the rear end face of the cooling chamber (2). Its features are: It also includes an anti-wrinkle and anti-static device (4), which is installed on the upper left of the top of the workbench (1); and an auxiliary cooling device (5), which is installed on the top of the cooling chamber (2). The anti-wrinkle and anti-static device (4) includes: a limiting rod (41), the left end of the rear end face of the worktable (1) is welded to the bottom of the limiting rod (41) by a fixed block; a horizontal plate (42), the limiting rod (41) is slidably connected to the bottom rear end through hole of the horizontal plate (42); a stepper motor (43), the left end of the front end face of the worktable (1) is bolted with a stepper motor (43); a screw (44), the top drive shaft of the stepper motor (43) is plugged with a screw (44), the screw (44) is threadedly connected to the bottom front end through hole of the horizontal plate (42); a pressure plate (45), the two sets of horizontal plates (42) are respectively fixed with pressure plates (45) by screws on the facing surfaces; an anti-static rod (46), the right side of the horizontal plate (42) is fixed with an anti-static rod (46) by screws; and a photoelectric sensor (47), the bottom opening of the pressure plate (45) is provided with a photoelectric sensor (47).

2. The cooling mechanism of the fabric-sponge composite machine according to claim 1, characterized in that: The auxiliary cooling device (5) includes: an installation chamber (51), which is bolted to the left end of the top of the cooling chamber (2); and a connecting pipe (52), which is installed on the front end of the installation chamber (51).

3. The cooling mechanism of the fabric-sponge composite machine according to claim 2, characterized in that: The auxiliary cooling device (5) further includes: an air outlet pipe (53), which is bolted to the left end of the front end face of the installation chamber (51), and the front end of the air outlet pipe (53) is connected to the connecting pipe (52) via a conduit; and a filter screen (54), which is fixed to the rear end of the top of the installation chamber (51) by screws.

4. The cooling mechanism of the fabric-sponge composite machine according to claim 2, characterized in that: The auxiliary cooling device (5) includes: an activated carbon adsorption plate (55), the top of which is fixed to the top of the activated carbon adsorption plate (55) by screws; and a drying box (56), which is provided at the bottom and rear end of the installation chamber (51).

5. The cooling mechanism of the fabric-sponge composite machine according to claim 2, characterized in that: The auxiliary cooling device (5) includes: a bass fan (57), which is installed at the bottom front end of the installation chamber (51) by screws; and a spiral water tank (58), which is fixed at the top middle end of the installation chamber (51) by bolts.

6. The cooling mechanism of the fabric-sponge composite machine according to claim 1, characterized in that: The two sets of pressure plates (45) have blocks welded to their opposite sides at the front and rear ends respectively.

7. The cooling mechanism of the fabric-sponge composite machine according to claim 5, characterized in that: The rear end of the bass fan (57) is fitted with a wind collector cover, and the rear end of the wind collector cover abuts against the front end of the spiral water tank (58).