Hot-pressing compounding device for gauze
By using a hot-pressing composite device for gauze, and utilizing a gauze unwinding assembly, a correction assembly, and an adhesive coating assembly, efficient adhesion between the gauze and the protective film is achieved, solving the problem of insufficient adhesion between the gauze and the protective film, and improving the overall strength and service life of the product.
Patent Information
- Application Number
- CN202520029378.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-03
AI Technical Summary
Existing technologies cannot effectively enhance the adhesion between the gauze and the protective film, resulting in a reduction in the overall strength and service life of the final product.
A hot-pressing composite device for gauze is used. The gauze unwinding assembly and the protective film unwinding assembly ensure continuous material supply. The material orientation is adjusted by the correction assembly, the adhesive application assembly applies adhesive to the protective film, and the hot-pressing process is carried out under the hot-pressing take-up roller to form a high-performance composite material.
This improves the adhesion between the gauze and the protective film, thereby enhancing the overall strength and lifespan of the final product.
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Figure CN223671880U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of gauze processing, especially to a hot-pressing composite device for gauze. BACKGROUND
[0002] Medical gauze is a textile widely used in medical and nursing fields, usually made of cotton, synthetic fiber or other materials. It is mainly used to cover and protect wounds, absorb secretions, fix dressings, and provide support during surgery and first aid.
[0003] Currently, the packaging process of medical gauze involves fixing the gauze on a protective film with adhesive and fully packaging it. The related technology can refer to the Chinese patent with the authorization announcement number CN202540429U, which discloses a cloth pressing device of a hot press that can fully utilize the efficiency of the hot press. It includes a rack, a fixed hot plate on the rack, a lower top plate driven by an oil cylinder, and a hot plate installed between the lower top plate and the fixed hot plate. The feature is that the hot plate is divided into two or more groups, each group is connected with independent feeding and discharging mechanisms. The above-mentioned scheme is simple in structure and easy to use and operate. By increasing the number of hot plates and using independent feeding and discharging mechanisms, the production efficiency of the equipment is greatly improved, the cost is saved, and the market competitiveness of the product is improved.
[0004] However, the current hot-pressing composite process cannot effectively enhance the adhesion between the gauze and the protective film, which reduces the overall strength and service life of the final product. SUMMARY
[0005] The present application provides a hot-pressing composite device for gauze, which can effectively improve the adhesion between the gauze and the protective film, thereby enhancing the overall strength and service life of the final product.
[0006] The hot-pressing composite device for gauze provided by the present application adopts the following technical scheme:
[0007] A hot-pressing composite device for gauze, comprising a support frame leg, a processing platform is provided on the support frame leg, a hot-pressing platform is provided on the processing platform, a support side frame is provided on the hot-pressing platform, a hot-pressing winding wheel for winding gauze and protective film is provided on the support side frame, a gauze unwinding assembly for unwinding gauze is provided on one end of the processing platform, a protective film unwinding assembly for unwinding protective film is provided on the other end of the processing platform, a first deviation correction assembly for correcting the deviation of gauze is provided between the hot-pressing winding wheel and the gauze unwinding assembly, a second deviation correction assembly for correcting the deviation of protective film is provided between the hot-pressing winding wheel and the protective film unwinding assembly, and a gluing assembly for gluing protective film is provided between the second deviation correction assembly and the hot-pressing winding wheel.
[0008] The protective film and the gauze are unwound through the protective film unwinding assembly and the gauze unwinding assembly respectively, the gauze passes through the first deviation rectifying assembly and is wound on the hot-pressing winding wheel, and the protective film passes through the second deviation rectifying assembly, the gluing assembly and covers on the gauze on the hot-pressing winding wheel.
[0009] By adopting the above technical scheme, the gauze unwinding assembly and the protective film unwinding assembly are used to smoothly unwind the gauze and the protective film respectively, so as to ensure the continuous supply of the materials; the first deviation rectifying assembly between the gauze unwinding and the hot-pressing winding wheel is mainly used to adjust the running direction of the gauze, so as to prevent the material deviation caused by the irregular arrangement of the winding material; at the same time, the second deviation rectifying assembly is arranged between the protective film unwinding and the gluing assembly, so as to ensure that the running direction and the position of the protective film are accurately controlled, so that the protective film can uniformly cover on the gauze; the gluing assembly is responsible for applying the adhesive to the protective film, so as to ensure that the protective film can form good adhesion with the gauze during the hot-pressing process; finally, the hot-pressing winding wheel is used to perform the hot-pressing treatment on the composite gauze and the protective film; under the appropriate temperature and pressure conditions, the protective film and the gauze are combined to form a high-performance composite material; the hot-pressing composite process can effectively improve the adhesion between the gauze and the protective film, so as to enhance the overall strength and service life of the final product.
[0010] Preferably, the support side frame is provided with a square recessed groove, a driving shaft is arranged at the inner center position of the hot-pressing winding wheel, the driving shaft is movably arranged in the square recessed groove, and an insertion rod is arranged in the square recessed groove of the support side frame, the insertion rod spans the opening of the square recessed groove, and a fixed space is formed in the square recessed groove.
[0011] By adopting the above technical scheme, the fixed space formed in the square recessed groove ensures that the driving shaft of the hot-pressing winding wheel can be accurately positioned therein, so as to ensure its stability and positioning accuracy; when the insertion rod is pulled out, the restriction of the hot-pressing winding wheel is released, so that it is convenient to lift or replace; on the contrary, when the insertion rod is inserted back, the hot-pressing winding wheel is effectively fixed, so as to prevent it from being displaced during the working process; the design of the insertion rod makes the installation and disassembly process of the hot-pressing winding wheel more convenient, without the need for complex tools or additional steps.
[0012] Preferably, the gauze unwinding assembly comprises a mounting frame, the mounting frame is provided with a first unwinding wheel, a first limiting wheel and a second limiting wheel, the gauze is unwound through the first unwinding wheel and alternately passes through the first limiting wheel and the second limiting wheel in sequence.
[0013] By adopting the above technical scheme, the gauze is unwound through the first unwinding wheel and alternately passes through the first limiting wheel and the second limiting wheel in sequence, so as to realize the unwinding function.
[0014] Preferably, the second deviation rectifying assembly and the first deviation rectifying assembly are of the same structure.
[0015] By adopting the above technical scheme, the precision guiding of the protective film and the gauze during the processing is ensured.
[0016] Preferably, the first deviation rectifying assembly comprises a support column, a first deviation rectifying shaft and a second deviation rectifying shaft are respectively arranged on the inside of the support column in a vertical manner, a support top rod is arranged on the top of the support column, an electric push rod and two limiting sliding grooves are arranged on the support top rod, a guide block is arranged in the limiting sliding groove of the support top rod, a connecting block is connected to the bottom output end of the electric push rod, the connecting block and the guide block are hingedly connected through a connecting rod, a deviation rectifying block is arranged on the bottom of the guide block, a deviation rectifying sleeve is arranged on the bottom of the deviation rectifying block, and the deviation rectifying sleeve is arranged in a relative sliding manner along the axial direction of the first deviation rectifying shaft.
[0017] By adopting the above technical scheme, the connecting block is displaced up and down by the electric push rod, and the guide block is slid in the limiting sliding groove under the action of the connecting rod, and the deviation rectifying block below the guide block is slid up and down in the limiting sliding groove of the support column; the deviation rectifying sleeve is arranged on the bottom of the deviation rectifying block and can be slid in a relative manner along the axial direction of the first deviation rectifying shaft, so that the position of the protective film on the deviation rectifying shaft is adjusted, and the correct direction and tension of the protective film are ensured.
[0018] Preferably, the glue applying assembly comprises a fixed support and a glue storage tank, an upper rotating rod, a lower rotating rod and a glue applying block are sequentially arranged on the fixed support in a vertical manner from top to bottom, an arc-shaped glue lubricating groove for accommodating glue is arranged on the upper surface of the glue applying block, a driving motor is arranged on the fixed support, the output end of the driving motor is connected with the lower rotating rod, and the lower rotating rod is rotatable in the arc-shaped glue lubricating groove.
[0019] By adopting the above technical scheme, the lower rotating rod is rotated by the driving motor after the driving motor is started; the lower rotating rod is rotated in the arc-shaped glue lubricating groove of the glue applying block, so that relative movement is formed between the surface of the lower rotating rod and the glue applying block; the lower rotating rod is attached to the inner wall of the glue applying block when rotating, so that the glue in the glue applying block is adhered to the surface of the lower rotating rod, thereby realizing uniform application of the glue; when the protective film passes between the upper rotating rod and the lower rotating rod, the glue is applied to the protective film.
[0020] Preferably, an overflow hole is arranged on the bottom of the arc-shaped glue lubricating groove of the glue applying block, and the overflow hole of the glue applying block and the output end of the glue storage tank are connected through a negative pressure pump.
[0021] By adopting the above technical scheme, the negative pressure pump is used to continuously supply the glue in the glue storage tank to the inside of the arc-shaped glue lubricating groove of the glue applying block.
[0022] In summary, the present application has the following beneficial effects:
[0023] 1. The yarn unwinding assembly and protective film unwinding assembly are used to smoothly unwind the yarn and protective film respectively, ensuring continuous supply of materials; the first deviation correction assembly between the yarn unwinding and the hot-pressing winding wheel is mainly used to adjust the direction of the yarn, preventing material deviation caused by irregular arrangement of the winding material; at the same time, the second deviation correction assembly is arranged between the protective film unwinding and the gluing assembly, ensuring accurate control of the direction and position of the protective film, so that it can uniformly cover on the yarn; the gluing assembly is responsible for applying adhesive to the protective film, ensuring that the protective film can form good adhesion with the yarn during hot pressing; finally, the hot-pressing winding wheel is used to hot-press the composite yarn and protective film; under appropriate temperature and pressure conditions, the protective film and the yarn are combined to form a high-performance composite material; this hot-pressing composite process can effectively improve the adhesion between the yarn and the protective film, thereby enhancing the overall strength and service life of the final product.
[0024] 2. The connecting block is displaced up and down by the electric push rod, and under the action of the connecting rod, the guide block slides back and forth inside the limiting sliding groove, and the deviation correction block below the guide block can slide up and down inside the limiting sliding groove of the supporting column; the bottom of the deviation correction block is provided with a deviation correction sleeve, which can slide relatively along the axial direction of the first deviation correction shaft, so as to adjust the position of the protective film on the deviation correction shaft and ensure that it maintains the correct direction and tension. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 is the overall structure schematic diagram of the hot-pressing composite device in this embodiment;
[0026] Figure 2 is the internal structure schematic diagram of the yarn unwinding assembly in this embodiment;
[0027] Figure 3 is the internal structure schematic diagram of the first deviation correction assembly in this embodiment;
[0028] Figure 4 is the internal structure schematic diagram of the gluing assembly in this embodiment;
[0029] Explanation of reference numerals in the attached drawings: 1. Support leg; 2. Processing platform; 3. Hot pressing platform; 4. Support side frame; 5. Hot pressing take-up roller; 6. Gauze unwinding assembly; 601. Mounting frame; 602. First unwinding roller; 603. First limiting roller; 604. Second limiting roller; 7. Protective film unwinding assembly; 8. First correction assembly; 801. Support column; 802. First correction shaft; 803. Second correction shaft; 804. Support top rod; 805. Electric push rod; 8 06. Limiting slide; 807. Guide block; 808. Connecting block; 809. Connecting rod; 8010. Correction block; 8011. Correction sleeve; 9. Second correction assembly; 10. Glue application assembly; 1001. Fixed bracket; 1002. Glue storage tank; 1003. Upper rotating rod; 1004. Lower rotating rod; 1005. Glue application block; 1006. Arc-shaped glue-lubricating groove; 1007. Negative pressure pump; 11. Square recessed groove; 12. Drive shaft; 13. Insert rod. Detailed Implementation
[0030] The present application will now be described in further detail with reference to the accompanying drawings. It should be noted that the following specific embodiments are only used to further illustrate the present application and should not be construed as limiting the scope of protection of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application based on the above application content. Example
[0031] This utility model discloses a hot-pressing composite device for gauze, such as... Figure 1 As shown, the system includes a support leg 1, a processing platform 2 on the support leg 1, a hot pressing platform 3 in the middle of the processing platform 2, a support side frame 4 on the hot pressing platform 3, a hot pressing winding wheel 5 for winding yarn and protective film on the support side frame 4, a yarn unwinding assembly 6 for unwinding yarn at one end of the processing platform 2, a protective film unwinding assembly 7 for unwinding protective film at the other end of the processing platform 2, a first correction assembly 8 for correcting yarn deviation between the hot pressing winding wheel 5 and the yarn unwinding assembly 6, a second correction assembly 9 for correcting protective film deviation between the hot pressing winding wheel 5 and the protective film unwinding assembly 7, and an adhesive application assembly 10 for applying adhesive to the protective film between the second correction assembly 9 and the hot pressing winding wheel 5.
[0032] like Figure 1 As shown, the protective film and gauze are unwound by the protective film unwinding assembly 7 and the gauze unwinding assembly 6, respectively. The gauze passes through the first web guiding assembly 8 and is wound onto the hot-press take-up roller 5, while the protective film passes through the second web guiding assembly 9 and the adhesive coating assembly 10, and covers the gauze on the hot-press take-up roller 5.
[0033] like Figure 1As shown, the gauze unwinding assembly 6 and the protective film unwinding assembly 7 respectively release the gauze and the protective film to ensure smooth supply of the materials; the first deviation correction assembly 8 is arranged between the gauze unwinding and the hot-pressing winding wheel 5, used to adjust the running direction of the gauze to prevent material deviation caused by irregular winding; the second deviation correction assembly 9 is arranged between the protective film unwinding and the gluing assembly 10, used to ensure the running direction and position of the protective film to ensure that it can uniformly cover on the gauze; the gluing assembly 10 is responsible for gluing to the protective film to ensure that the protective film can form good adhesion with the gauze during hot pressing; finally, the composite gauze and protective film are subjected to hot-pressing treatment by the hot-pressing winding wheel 5; under appropriate temperature and pressure, the protective film and the gauze are combined to form a composite material; through hot-pressing compounding, good adhesion between the gauze and the protective film can be ensured, thereby improving the overall strength and service life of the product.
[0034] As shown in Figure 2 , specifically, the top of the support side frame 4 is provided with a square recessed groove 11, and the inner center position of the hot-pressing winding wheel 5 is provided with a driving shaft 12, which is movably arranged in the square recessed groove 11. The square recessed groove 11 provides a fixed space for the driving shaft 12 to be placed at the center position of the square recessed groove 11, allowing it to move within a certain range. This mobility is usually to facilitate position adjustment or necessary maintenance and replacement of the hot-pressing winding wheel 5; and the inside of the square recessed groove 11 of the support side frame 4 is provided with a plug rod 13, which spans the opening of the square recessed groove 11 and forms a fixed space inside the square recessed groove 11, so that the driving shaft 12 of the hot-pressing winding wheel 5 can be accurately placed in the square recessed groove 11, ensuring its stability and positioning accuracy; when the plug rod 13 is pulled out, it will release the restriction of the hot-pressing winding wheel 5, so that the hot-pressing winding wheel 5 can be lifted or replaced; conversely, when the plug rod 13 is inserted back, the hot-pressing winding wheel 5 can be effectively fixed to ensure that it does not shift during work.
[0035] As shown in Figure 2 , the plug rod 13 is designed to make the installation and disassembly of the hot-pressing winding wheel 5 more convenient, without the need for complex tools or steps; this is very beneficial for daily maintenance and replacement of parts of the equipment; through the limiting area and the plug rod 13, the hot-pressing winding wheel 5 can be ensured to remain stable during operation, reducing the risk of accidental falling or shifting, thereby improving the operation safety.
[0036] As shown in Figure 2As shown, the hot pressure winding wheel 5 includes a wheel body and an electric heating wire arranged in the wheel body. The electric heating wire generates heat after being electrified, and the heat is transferred to the surface of the wheel body through heat conduction, forming a heating effect on the wheel body. When the hot pressure winding wheel 5 contacts the protective film and the gauze to be processed, the wheel body transfers the generated heat to the protective film and the gauze. Under the action of heat, the protective film and the gauze undergo specific physical or chemical changes, such as softening, bonding or compression, etc. The hot pressure winding wheel 5 continuously provides heat during rotation, which helps to achieve uniform heating of the material and accelerate the processing speed of the material.
[0037] As shown in Figure 2 , the electric heating wire is arranged in the wheel body, which can ensure uniform distribution of heat on the surface of the wheel body, avoid local overheating or insufficient heating, and help improve the quality of the processed material. The electric heating wire can quickly heat up, allowing real-time control of the heating temperature, adapting to different production needs and improving production efficiency.
[0038] As shown in Figure 2 , the gauze unwinding assembly 6 includes a mounting frame 601, and the mounting frame 601 is provided with a first unwinding wheel 602, a first limiting wheel 603 and a second limiting wheel 604. The gauze is unwound through the first unwinding wheel 602 and alternately passes through the first limiting wheel 603 and the second limiting wheel 604, thereby realizing the unwinding function.
[0039] As shown in Figure 2 , the protective film unwinding assembly 7 includes a mounting rod and a second unwinding wheel rotatably arranged on the mounting rod. The protective film passes through the second unwinding wheel and then passes through the second deviation correcting assembly 9.
[0040] As shown in Figure 3 , specifically, the second deviation correcting assembly 9 has the same structure as the first deviation correcting assembly 8. The first deviation correcting assembly 8 includes a support column 801, and a first deviation correcting shaft 802 and a second deviation correcting shaft 803 are rotatably arranged inside the support column 801. The protective film passes between the first deviation correcting shaft 802 and the second deviation correcting shaft 803. A support top rod 804 is arranged at the top of the support column 801, and an electric push rod 805 and two limiting sliding grooves 806 are arranged on the support top rod 804. A guide block 807 is arranged inside the limiting sliding groove 806 of the support top rod 804. The bottom output end of the electric push rod 805 is connected with a connecting block 808, and the connecting block 808 and the guide block 807 are hingedly connected through a connecting rod 809. A deviation correcting block 8010 is arranged at the bottom of the guide block 807, and a deviation correcting sleeve 8011 is arranged at the bottom of the deviation correcting block 8010. The deviation correcting sleeve 8011 is relatively slidably arranged along the axial direction of the first deviation correcting shaft 802.
[0041] As shown in Figure 3As shown, the support column 801 is internally provided with a first deviation correction shaft 802 and a second deviation correction shaft 803, and the protective film passes between the two shafts; this design ensures that the protective film can be well guided during the deviation correction process; through the electric push rod 805, the connecting block 808 is displaced up and down, and under the linkage action of the connecting rod 809, the guide block 807 slides back and forth inside the limiting sliding groove 806, and the deviation correction block 8010 below the guide block 807 can slide up and down inside the limiting sliding groove 806 of the support column 801; the bottom of the deviation correction block 8010 is provided with a deviation correction sleeve 8011, which can slide relatively along the axial direction of the first deviation correction shaft 802, so as to adjust the position of the protective film on the deviation correction shaft and ensure that it maintains the correct direction and tension; the application of the electric push rod 805 can realize automatic adjustment of the system, reduce the need for manual intervention, and improve the convenience and efficiency of operation; through the adjustable guide block 807 and deviation correction block 8010, the direction and tension of the protective film can be accurately adjusted, thereby ensuring stability during the production process and reducing the defect rate.
[0042] As shown in Figure 4 The glue coating assembly 10 includes a fixed support 1001 and a glue storage tank 1002, the fixed support 1001 is sequentially provided with an upper rotating rod 1003, a lower rotating rod 1004 and a glue coating block 1005 from top to bottom, the upper surface of the glue coating block 1005 is provided with an arc-shaped glue lubricating groove 1006 for accommodating the lower rotating rod 1004, the bottom of the arc-shaped glue lubricating groove 1006 of the glue coating block 1005 is provided with a glue overflow hole, the glue overflow hole of the glue coating block 1005 and the output end of the glue storage tank 1002 are connected through a negative pressure pump 1007, the fixed support 1001 is provided with a drive motor, the output end of the drive motor is connected with the lower rotating rod 1004, the drive motor drives the lower rotating rod 1004 to rotate, the lower rotating rod 1004 is rotatably arranged in the arc-shaped glue lubricating groove 1006 of the glue coating block 1005, so that the surface of the lower rotating rod 1004 is full of glue, and at this time the protective film passes between the upper rotating rod 1003 and the lower rotating rod 1004.
[0043] As shown in Figure 4 After the drive motor is started, the lower rotating rod 1004 is driven to rotate through the transmission device; the lower rotating rod 1004 rotates in the arc-shaped glue lubricating groove 1006 of the glue coating block 1005, causing relative movement between the surface of the lower rotating rod 1004 and the glue coating block 1005; when the lower rotating rod 1004 rotates, it is attached to the inner wall of the glue coating block 1005, and the glue in the glue coating block 1005 is adhered to the surface of the lower rotating rod 1004, thereby achieving uniform coating of the glue; when the protective film passes between the upper rotating rod 1003 and the lower rotating rod 1004, the glue is coated onto the protective film.
[0044] As shown in Figure 4As shown, the rotation of the lower rotating rod 1004 enables uniform glue application, avoiding unevenness that may occur during manual application. The system can achieve automated operation, improving the efficiency of glue application and reducing labor costs.
[0045] Working principle: The gauze unwinding assembly 6 and the protective film unwinding assembly 7 are responsible for smoothly unwinding the gauze and protective film. These two assemblies ensure the stability of the material source and provide necessary raw materials support for subsequent processes.
[0046] A first deviation correction assembly 8 is set between the gauze and the hot pressure winding wheel 5. Its main function is to detect and adjust the direction of the gauze. The presence of this assembly can effectively prevent material deviation caused by irregular winding, ensuring the consistency of the gauze in subsequent processing.
[0047] The second deviation correction assembly 9 is installed between the protective film unwinding and the glue application assembly 10, responsible for monitoring and adjusting the direction and position of the protective film. This assembly ensures that the protective film can uniformly cover the gauze, avoiding performance problems caused by uneven coverage.
[0048] The glue application assembly 10 is responsible for uniformly applying glue to the protective film, ensuring that the protective film can form a good bond with the gauze during the subsequent hot pressing process. This step is crucial to ensuring the subsequent compounding effect.
[0049] Finally, the compounded gauze and protective film are subjected to hot pressing treatment by the hot pressure winding wheel 5. Under appropriate temperature and pressure, the protective film and gauze are firmly combined in this process, forming a high-strength composite material. Hot pressing not only improves the overall strength of the product, but also prolongs its service life, ensuring that the final product meets the expected performance standards.
[0050] The above are preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made in terms of structure, shape, and principle based on the present application should be covered within the scope of protection of the present application.
Claims
1. A hot press composite device for gauze, comprising a support frame leg (1), characterized in that: The support frame leg (1) is provided with a processing platform (2), the processing platform (2) is provided with a hot pressing platform (3), the hot pressing platform (3) is provided with a support side frame (4), the support side frame (4) is provided with a hot pressing winding wheel (5) for winding gauze and protective film, one end of the processing platform (2) is provided with a gauze unwinding assembly (6) for unwinding gauze, the other end of the processing platform (2) is provided with a protective film unwinding assembly (7) for unwinding protective film, a first deviation correcting assembly (8) for correcting gauze is arranged between the hot pressing winding wheel (5) and the gauze unwinding assembly (6), a second deviation correcting assembly (9) for correcting protective film is arranged between the hot pressing winding wheel (5) and the protective film unwinding assembly (7), a gluing assembly (10) for gluing protective film is arranged between the second deviation correcting assembly (9) and the hot pressing winding wheel (5). The protective film and the gauze are unwound through the protective film unwinding assembly (7) and the gauze unwinding assembly (6) respectively, the gauze is wound on the hot pressing winding wheel (5) through the first deviation correcting assembly (8), and the protective film passes through the second deviation correcting assembly (9) and the gluing assembly (10) and covers the gauze on the hot pressing winding wheel (5).
2. The hot press complex device for gauze according to claim 1, characterized in that: The support side frame (4) is provided with a square recessed groove (11), a driving shaft (12) is arranged at the inner center position of the hot pressing winding wheel (5), the driving shaft (12) is movably arranged in the square recessed groove (11), and the square recessed groove (11) of the support side frame (4) is provided with a plug rod (13), the plug rod (13) spans the opening of the square recessed groove (11) and forms a fixed space in the square recessed groove (11).
3. The hot press complex device for gauze according to claim 1, characterized in that: The gauze unwinding assembly (6) comprises a mounting frame (601), the mounting frame (601) is provided with a first unwinding wheel (602), a first limiting wheel (603) and a second limiting wheel (604), the gauze is unwound through the first unwinding wheel (602) and alternately passes through the first limiting wheel (603) and the second limiting wheel (604) in sequence.
4. The hot press complex device for gauze according to claim 1, wherein: The second deviation correcting assembly (9) and the first deviation correcting assembly (8) have the same structure.
5. The hot press complex device for gauze according to claim 4, wherein: The first deviation rectifying assembly (8) comprises a support column (801), first and second deviation rectifying shafts (802, 803) are respectively arranged in the upper and lower parts of the inside of the support column (801), a support top rod (804) is arranged at the top of the support column (801), an electric push rod (805) and two limiting sliding grooves (806) are arranged on the support top rod (804), a guide block (807) is arranged in the limiting sliding groove (806) of the support top rod (804), a connecting block (808) is connected to the bottom output end of the electric push rod (805), the connecting block (808) and the guide block (807) are hingedly arranged through a connecting rod (809), a deviation rectifying block (8010) is arranged at the bottom of the guide block (807), a deviation rectifying sleeve (8011) is arranged at the bottom of the deviation rectifying block (8010), and the deviation rectifying sleeve (8011) is relatively slidably arranged along the axial direction of the first deviation rectifying shaft (802).
6. The hot press complex device for gauze according to claim 1, wherein: The gluing assembly (10) comprises a fixing support (1001) and a glue storage box (1002), the fixing support (1001) is sequentially provided with an upper rotating rod (1003), a lower rotating rod (1004) and a gluing block (1005) from top to bottom, the upper surface of the gluing block (1005) is provided with an arc-shaped glue moistening groove (1006) for accommodating glue, a driving motor is arranged on the fixing support (1001), and the output end of the driving motor is connected with the lower rotating rod (1004).
7. The hot press complex device for gauze according to claim 6, wherein: The bottom of the arc-shaped glue moistening groove (1006) of the gluing block (1005) is provided with a glue overflow hole, and the glue overflow hole of the gluing block (1005) is connected with the output end of the glue storage box (1002) through a negative pressure pump (1007).
Citation Information
Patent Citations
Cloth pressing device of hot press
CN202540429U