Flat continuous fabric flocking machine
By designing a flat-weather continuous cloth frying machine, using rapid rotation and atomizing dyes, the problem that the existing frying machine cannot process different effects according to customer requirements is solved, which improves the efficiency and effect of frying, and reduces cost and labor intensity.
Patent Information
- Application Number
- CN202410210534.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-27
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2044-02-27
AI Technical Summary
The existing flower stir-frying machine cannot choose different processing effects according to customer requirements, resulting in slow processing speed and low efficiency. The cost of replacing different sets of flower stir-frying materials is high and the labor intensity is high.
A flat-weather continuous cloth frying machine is designed, including the machine frame, front and back frying and frying tank, rotary rod, dye absorption components, fan-shaped atomizer, etc. By quickly rotating and atomizing the dye, the dye can be fully contacted and dried on the surface of the fabric, supporting diversified frying and frying operations, and reducing labor intensity.
It improves the efficiency and effect of frying flowers, reduces the cost of dye use, ensures the flatness and transmission continuity of the fabric, and reduces labor intensity.
Smart Images

Figure CN117885442B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of textile equipment, and particularly to a flat continuous fabric popcorn machine. Background Art
[0002] For traditional popcorn machines, the products they usually process are finished clothes. After the finished clothes are put into the popcorn machine and processed by the internal popcorn and sand frying mechanisms, a second group can be added only after a group of finished clothes is processed. As a result, there is a long interval in the popcorn and sand frying time of the finished clothes, the overall processing efficiency of the popcorn machine is slow, and at the same time, if the popcorn of the finished clothes fails or there are defects, the processing cost of the finished clothes is relatively large.
[0003] In the patent document with the publication number CN107974786B that has been published, a printing and dyeing device is disclosed, which includes a dyeing tank, a dehydration and drying mechanism, and a printing machine arranged in sequence from left to right. The dehydration and drying mechanism includes a dehydration mechanism, a water absorption mechanism, an ironing mechanism, and a dryer arranged in sequence from left to right. The dehydration mechanism includes a guide rail frame, and a water pressing roller is movably installed in the groove of the guide rail frame through rollers; the setting of the dehydration and drying mechanism of the present invention enables the textiles not to be centrifugally dehydrated after dyeing, ensuring the flatness of the textiles and eliminating the need for flattening on a spreading machine. The present invention combines the printing and dyeing device, the dehydration and drying device, and the printing device together, reducing the time for replacing equipment during work, and completing the printing and dyeing work on one device, improving work efficiency.
[0004] When the above device is in use, the following problems exist:
[0005] Although the above device completes multiple operations together, due to the many requirements for popcorn on existing fabrics, such as processing shapes like circles and triangles on the fabric, the above device and the prior art cannot select different processing effects according to customer requirements. If the above operations are to be completed, it will result in slow processing speed, low efficiency, high processing cost for replacing different sets of popcorn materials, and relatively high labor intensity.
[0006] Therefore, this application document proposes a flat continuous fabric popcorn machine according to the above related problems. Summary of the Invention
[0007] The object of the present invention is to address the problems in the background art that different processing effects cannot be selected according to customer requirements. If the above operations are to be completed, it will result in slow processing speed, low efficiency, high processing cost for replacing different sets of popcorn materials, and relatively high labor intensity, and proposes a flat continuous fabric popcorn machine.
[0008] The technical solution of the present invention: A flat continuous fabric popcorn machine includes a machine table frame and a side popcorn frame fixedly connected inside the machine table frame, and further includes:
[0009] The front popcorn frying and sand frying tank, the front popcorn frying and sand frying tank is fixedly installed at one end of the machine frame, and a group of corresponding rotating rods are rotatably connected inside the front popcorn frying and sand frying tank;
[0010] The rear popcorn frying and sand frying tank, the rear popcorn frying and sand frying tank is fixedly installed at the other end of the machine frame, the number of the corresponding rotating rods is two groups, and the other group of the corresponding rotating rods is rotatably connected inside the rear popcorn frying and sand frying tank;
[0011] A plurality of auxiliary engaging blocks are fixedly connected to the outer surface of the corresponding rotating rod through a positioning ring, one end of the auxiliary engaging block is hinged with an inserting pressing block, one end of the inserting pressing block is fixedly connected with an arc spring, the arc spring is fixedly installed on the outer surface of the auxiliary engaging block, one end of the inserting pressing block is inserted with a popcorn frying plate, and a dye absorption component is fixedly connected to the end of the popcorn frying plate away from the inserting pressing block;
[0012] The rotating rod, the rotating rod is rotatably connected inside the side popcorn frying frame, one end of the rotating rod passing through the side popcorn frying frame is fixedly connected with a motor component, the motor component is fixedly installed on the outer surface of the side popcorn frying frame, a plurality of hollow snap frames are sleeved on the outer surface of the side popcorn frying frame, and a plurality of fitting frames are fixedly connected to the outer surface of the hollow snap frame through a plurality of placement strips.
[0013] Optionally, a plurality of fabric placement nets are fixedly connected between the plurality of fitting frames, a rear sector atomizer is fixedly connected to one end of the machine frame, and a front sector atomizer is fixedly connected to the other end of the machine frame.
[0014] Optionally, a front spray assembly is fixedly connected to one end of the front popcorn frying and sand frying tank, and a rear spray assembly is fixedly connected to one end of the rear popcorn frying and sand frying tank.
[0015] Optionally, a semi-circular blocking block is fixedly connected to one end of the popcorn frying plate, two telescopic components are fixedly connected to the end of the inserting pressing block located inside the popcorn frying plate, an elastic sliding sleeve with a spring fixedly connected inside is slidably connected to the outer surface of the telescopic component, and a rubber pulling ring is fixedly connected to the outer surface of the elastic sliding sleeve.
[0016] Optionally, a storage cavity tube is fixedly connected to one end of the popcorn frying plate, a conical spray tube with a plurality of flow holes opened on the surface is fixedly connected to one end of the storage cavity tube, an auxiliary adsorption cotton is slidably connected to the inside of the conical spray tube through a clamping cavity opened, and the conical spray tube is fixedly installed inside the dye absorption component.
[0017] Optionally, one end of the storage cavity tube located inside the popcorn plate is fixedly connected to a spring rubber hollow tube. A plurality of pull ropes are fixedly connected to the end of the spring rubber hollow tube away from the storage cavity tube. One end of the popcorn plate away from the conical spraying tube is fixedly connected to a fan-shaped opening frame, and a fan-shaped adsorption cotton is fixedly connected to the outer surface of the fan-shaped opening frame.
[0018] Optionally, one end of the fan-shaped opening frame is fixedly connected to an annular blocking frame. The fan-shaped adsorption cotton is located between the annular blocking frame and the fan-shaped adsorption cotton. One end of the pull rope passing through the annular blocking frame is fixedly installed on the outer surface of the fan-shaped adsorption cotton.
[0019] Optionally, one end of the machine frame is fixedly connected to a control component. A conduction long rod is rotatably connected inside the machine frame. An S-shaped transmission roller is rotatably connected inside the machine frame. The bottom end of the machine frame is fixedly connected to an outer frame of the popcorn rack. A second tension roller is rotatably connected at a position below the S-shaped transmission roller of the machine frame.
[0020] Optionally, a first wire splitting roller is rotatably connected inside the machine frame. An auxiliary roller is rotatably connected inside the machine frame. A rear auxiliary cloth outlet roller is rotatably connected inside the machine frame. A swing arm assembly is hinged to the bottom end of the machine frame.
[0021] Optionally, an output frame is rotatably connected to the bottom end of the machine frame at the first wire splitting roller. A limiting frame is fixedly connected to one end of the output frame. A second wire splitting roller is rotatably connected to the machine frame below the limiting frame. A first tension roller is rotatably connected to the machine frame on one side of the side popcorn frame.
[0022] Compared with the prior art, the present invention has the following beneficial technical effects:
[0023] 1. As the dry cloth on the surface of the machine frame contacts the dye absorption component, and the rotation speed of the dye absorption component is relatively fast, the irregular dye absorption component pats the cloth. At the same time, under the limitation of the arc spring, the popcorn plate and the auxiliary engaging block deflect due to the pressure of the cloth. During the deflection process, the dye absorption component can fully contact and pat the cloth, so that the dye can be fully printed on the surface of the cloth. The atomized dye can accelerate drying, thereby improving the popcorn efficiency and effect and accelerating the drying efficiency of the cloth after popcorn;
[0024] 2. The staff manually pulls the rubber pull ring. The rubber pull ring drives the elastic sliding sleeve to squeeze the telescopic component under the limitation of the internal spring, so that the elastic sliding sleeve is not blocked by the semi-circular blocking block, and the insertion pressing blocks are separated from the popcorn plate, so that the staff can easily directly replace the popcorn plate to meet the diverse requirements of customers;
[0025] 3. As the upper set of frying plates rotate to a position parallel to the ground, the dye of the sector-shaped adsorption cotton flows through the gravity-flow receiving cavity tube and is absorbed by the auxiliary adsorption cotton. At the same time, the spring rubber hollow tube stretches due to gravity and inertia, so that more dye on the surface of the sector-shaped adsorption cotton is stretched and squeezed, accelerating the flow into the auxiliary adsorption cotton, thus saving the use cost of the dye and achieving the environmental protection use of the dye;
[0026] 4. Through the wire splitting step of the first wire splitting roller, the material flows into the S-shaped driving roller and the second tension roller in a parallel and straight state and is conducted to the inside of the side frying frame for processing. After the fabric processed by the machine frame passes through the first tension roller, the wire splitting step is carried out under the guidance of the second wire splitting roller, thereby ensuring the flatness of the fabric. At the same time, it is conducted from the output rack to the receiving tank to complete the complete transmission of the fabric, and at the same time complete the transmission steps of transporting the fabric in and out, thus reducing the labor intensity, keeping the fabric always inside the machine frame for transmission, and avoiding problems such as fabric wrinkles and being far away from the transmission rod;
[0027] 5. After the cloth is transported to the side frying frame by the input components such as the auxiliary roller and the S-shaped driving roller for processing, it is directly transported to the next processing area through the output components such as the second wire splitting roller without interruption. The transmission of the fabric is uninterrupted, so that the frying machine can continuously carry out the frying work on the material, thereby improving the overall working efficiency of the frying machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 is a schematic structural diagram of the flat continuous cloth frying machine of the present invention;
[0029] Figure 2 is a schematic structural diagram of the S-shaped driving roller of the present invention;
[0030] Figure 3 is a schematic structural diagram of the auxiliary roller of the present invention;
[0031] Figure 4 is a schematic structural diagram of the swing arm assembly of the present invention;
[0032] Figure 5 is the present invention Figure 4 Partial enlarged view of part A in;
[0033] Figure 6 is a schematic structural diagram of the second tension roller of the present invention;
[0034] Figure 7 is a schematic structural diagram of the placement strip of the present invention;
[0035] Figure 8 is the present invention Figure 7 Partial enlarged view of part B in;
[0036] Figure 9It is a schematic structural diagram of the rotating rod of the present invention;
[0037] Figure 10 It is a schematic structural diagram of the fitting frame of the present invention;
[0038] Figure 11 It is a schematic structural diagram of the conical spraying material of the present invention;
[0039] Figure 12 It is a schematic structural diagram of the popcorn plate of the present invention;
[0040] Figure 13 It is a schematic structural diagram of the rubber pull ring of the present invention;
[0041] Figure 14 It is a schematic structural diagram of the spring rubber hollow tube of the present invention.
[0042] Reference numerals: 1, outer frame of the popcorn rack; 2, machine table frame; 3, swing arm assembly; 4, first wire splitting roller; 5, auxiliary roller; 6, S-shaped driving roller; 7, side popcorn frame; 8, second wire splitting roller; 9, control assembly; 10, front popcorn and sand frying tank; 11, rear auxiliary cloth output roller; 12, first tension roller; 13, rear spray assembly; 14, rear fan-shaped atomizer; 15, second tension roller; 16, motor assembly; 17, rear popcorn and sand frying tank; 18, front spray assembly; 19, front fan-shaped atomizer; 20, limit frame; 21, output frame; 22, cloth placement net; 23, fitting frame; 24, rotating rod; 25, hollow buckle frame; 26, placement strip; 27, corresponding rotating rod; 28, popcorn plate; 29, dye absorption assembly; 30, auxiliary clamping block; 31, positioning ring; 32, arc spring; 33, insertion pressing block; 34, rubber pull ring; 35, semi-circular blocking block; 36, telescopic assembly; 37, elastic sliding sleeve; 38, conical spraying pipe; 39, auxiliary adsorption cotton; 40, clamping cavity; 41, storage cavity pipe; 42, spring rubber hollow tube; 43, fan-shaped opening frame; 44, fan-shaped adsorption cotton; 45, pull rope; 46, annular blocking frame. Detailed implementation manners
[0043] The technical solutions of the present invention will be further described below with reference to the accompanying drawings and specific embodiments. Embodiment 1
[0044] As Figures 1-12 shown, the flat continuous fabric popcorn machine proposed by the present invention includes a machine table frame 2 and a side popcorn frame 7 fixedly connected inside the machine table frame 2. Compared with the traditional popcorn frame, the diameter of the machine table frame 2 is larger, and the machine table frame 2 can store more cloth, thereby quickly solving the problem of slow product drying. It also includes:
[0045] The front popcorn and sand frying trough 10 is fixedly installed at one end of the machine frame 2. A set of corresponding rotating rods 27 are rotatably connected inside the front popcorn and sand frying trough 10;
[0046] The rear popcorn and sand frying trough 17 is fixedly installed at the other end of the machine frame 2. The number of the corresponding rotating rods 27 is two sets. The other set of corresponding rotating rods 27 are rotatably connected inside the rear popcorn and sand frying trough 17. The inside of the front popcorn and sand frying trough 10 and the rear popcorn and sand frying trough 17 always wraps the two sets of corresponding rotating rod 27 assemblies for popcorn frying, so that the two sets of corresponding rotating rods 27 work in a relatively sealed environment, avoiding heat loss and dye leakage;
[0047] A plurality of auxiliary engaging blocks 30 are fixedly connected to the outer surface of the corresponding rotating rod 27 through a positioning ring 31. One end of the auxiliary engaging block 30 is hinged with an inserting pressing block 33. One end of the inserting pressing block 33 is fixedly connected with an arc spring 32. The arc spring 32 is fixedly installed on the outer surface of the auxiliary engaging block 30. One end of the inserting pressing block 33 is inserted with a popcorn plate 28. The auxiliary engaging block 30 and the popcorn plate 28 are arranged obliquely on the outer surface of the corresponding rotating rod 27. One end of the popcorn plate 28 away from the inserting pressing block 33 is fixedly connected with a dye absorption component 29. According to the fabric processing requirements, if popcorn frying is needed, the dye absorption component 29 is an absorption cotton block, and if sand frying is needed, the dye absorption component 29 is quartz sand;
[0048] In this embodiment, the rotating rod 24 is rotatably connected inside the side popcorn frying frame 7. One end of the rotating rod 24 passing through the side popcorn frying frame 7 is fixedly connected with a motor assembly 16. The motor assembly 16 is fixedly installed on the outer surface of the side popcorn frying frame 7. A plurality of hollow snap frames 25 are sleeved on the outer surface of the side popcorn frying frame 7. A plurality of fitting frames 23 are fixedly connected to the outer surface of the hollow snap frame 25 through a plurality of placement strips 26. The motor assembly 16 drives the rotating rod 24 to rotate. The rotating rod 24 drives the fitting frame 23 to rotate through the hollow snap frame 25 and the placement strips 26. As the fabric is transmitted to the fitting frame 23, the fabric is preferentially transmitted from the position of the rear popcorn and sand frying trough 17 to the position of the front popcorn and sand frying trough 10. The dye absorption component 29 on the surface of the popcorn plate 28 adheres to the printing dye under the atomized environment inside the rear popcorn and sand frying trough 17 or the front popcorn and sand frying trough 10. As the dry fabric on the surface of the machine frame 2 contacts the dye absorption component 29, and the rotation speed of the dye absorption component 29 is relatively fast, the dye absorption component 29 pats the fabric. At the same time, under the limit of the arc spring 32, the popcorn plate 28 and the auxiliary engaging block 30 deflect due to the pressure of the fabric. During the deflection process, the dye absorption component 29 can fully contact and pat the fabric, so that the dye is fully printed on the fabric surface. The atomized dye can accelerate drying, thereby improving the popcorn frying efficiency and effect and accelerating the drying efficiency of the fabric after popcorn frying. Example 2
[0049] As shown Figures 8-14 in the figure, based on Example 1, a plurality of fabric placement nets 22 are fixedly connected between a plurality of fitting frames 23. One end of the machine frame 2 is fixedly connected with a rear sector atomizer 14, and the other end of the machine frame 2 is fixedly connected with a front sector atomizer 19. One end of the front popcorn and sand frying tank 10 is fixedly connected with a front spray assembly 18, and one end of the rear popcorn and sand frying tank 17 is fixedly connected with a rear spray assembly 13. The fabric can be fully spread on the outer surfaces of the fitting frames 23 and the fabric placement nets 22, so that the fabric can be fully dried and popcorned;
[0050] At the same time, when some irregular-shaped patterns need to be copied on the fabric inside the front popcorn and sand frying tank 10 and the rear popcorn and sand frying tank 17, the popcorn-making step can be carried out inside the front popcorn and sand frying tank 10 and the rear popcorn and sand frying tank 17. If some fabrics require particle imprints on the surface, the sand-frying step can be carried out inside the front popcorn and sand frying tank and the rear popcorn and sand frying tank 17. At the same time, for the requirement of large-scale dye spraying, the front spray assembly 18 and the rear spray assembly 13 can be suspended to carry out the popcorn-making step, and the rear sector atomizer 14 and the front sector atomizer 19 above can be directly used to achieve a large-scale dye spraying effect to meet different requirements for the fabric.
[0051] In this embodiment, in Figure 1 and Figure 10 while the fitting frame 23 guides the fabric to be transmitted clockwise, the corresponding rotating rod 27 in the rear popcorn and sand frying tank 17 rotates counterclockwise to transmit the atomized dye through the rear spray assembly 13, and the corresponding rotating rod 27 in the front popcorn and sand frying tank 10 rotates clockwise to transmit the atomized dye in the front spray assembly 18. When the dye absorption assembly 29 on the two corresponding rotating rods 27 absorbs the atomized dye and collides with the fabric, the dye absorption assembly 29 pats the dye on the dry fabric, and the atomized dye is easily dried quickly to complete the popcorn-making operation. Example 3
[0052] As Figure 1 and Figure 13As shown in the figure, based on the above-mentioned Embodiment 1 or 2, one end of the popcorn plate 28 is fixedly connected with a semi-circular blocking block 35. One end of the insertion pressing block 33 located inside the popcorn plate 28 is fixedly connected with two sets of telescopic components 36. The outer surface of the telescopic component 36 is slidably connected with an elastic sliding sleeve 37 with a spring fixedly connected inside. The outer surface of the elastic sliding sleeve 37 is fixedly connected with a rubber pull ring 34. Due to different requirements for popcorn making, when different absorbent cotton needs to be replaced, the staff only needs to manually pull the rubber pull ring 34. The rubber pull ring 34 drives the elastic sliding sleeve 37 to squeeze the telescopic component 36 under the limit of the internal spring, so that the elastic sliding sleeve 37 is not blocked by the semi-circular blocking block 35, and the insertion pressing blocks 33 are separated from the inside of the popcorn plate 28, so that the staff can easily directly replace the popcorn plate 28 to meet the diverse requirements of customers.
[0053] In this embodiment, one end of the popcorn plate 28 is fixedly connected with a storage cavity tube 41. One end of the storage cavity tube 41 is fixedly connected with a conical spraying tube 38 with a plurality of flow holes formed on its surface. The inside of the conical spraying tube 38 is slidably connected with an auxiliary absorbent cotton 39 through a clamping cavity 40 formed. The conical spraying tube 38 is fixedly installed inside the dye absorption component 29. During the popcorn making process, when the dye absorption component 29 pats the fabric, since the sharp part of the conical spraying tube 38 is in the direction of patting with the dye absorption component 29, the storage cavity tube 41 is squeezed and expands outward towards the surface of the popcorn plate 28, thereby expanding the contact area between the holes and the dye absorption component 29. At the same time, the auxiliary absorbent cotton 39 is fully squeezed in the clamping cavity 40, so that the dye collected in the auxiliary absorbent cotton 39 can fully penetrate into the specific shapes on the surface of the dye absorption component 29, thereby improving the dye storage inside the flower shape and making the popcorn making effect better. Embodiment 4
[0054] As Figure 1 and Figure 14 As shown in the figure, based on the above-mentioned Embodiment 1 or 3, one end of the storage cavity tube 41 located inside the popcorn plate 28 is fixedly connected with a spring rubber hollow tube 42. One end of the spring rubber hollow tube 42 far away from the storage cavity tube 41 is fixedly connected with a plurality of pull ropes 45. One end of the popcorn plate 28 far away from the conical spraying tube 38 is fixedly connected with a fan-shaped spreading frame 43. The outer surface of the fan-shaped spreading frame 43 is fixedly connected with a fan-shaped absorbent cotton 44.
[0055] In this embodiment, one end of the fan-shaped opening frame 43 is fixedly connected to an annular blocking frame 46. The fan-shaped adsorption cotton 44 is located between the annular blocking frame 46 and the fan-shaped adsorption cotton 44. The pull rope 45 passes through one end of the annular blocking frame 46 and is fixedly installed on the outer surface of the fan-shaped adsorption cotton 44. When the previous group leaves the popcorn environment of the fabric, if too much printing dye drips from the fabric, the fan-shaped adsorption cotton 44 on the back of the popcorn plate 28. The dripping dye penetrates into the fan-shaped adsorption cotton 44 along the inclined surface of the fan-shaped adsorption cotton 44. As the previous group of popcorn plates 28 rotates to a position parallel to the ground, the dye on the fan-shaped adsorption cotton 44 flows into the receiving cavity tube 41 by gravity and is absorbed by the auxiliary adsorption cotton 39. At the same time, the spring rubber hollow tube 42 is stretched due to gravity and inertia, so that more dye on the surface of the fan-shaped adsorption cotton 44 is stretched and squeezed to accelerate the passage into the auxiliary adsorption cotton 39, thereby saving the use cost of the dye and realizing the environmental protection use of the dye. Embodiment 5
[0056] As Figures 1-10 shown, based on the above-mentioned Embodiment 1 or 4, one end of the machine frame 2 is fixedly connected to a control component 9. A conduction long rod is rotatably connected inside the machine frame 2. An S-shaped transmission roller 6 is rotatably connected inside the machine frame 2. The bottom end of the machine frame 2 is fixedly connected to an outer popcorn frame 1. A second tension roller 15 is rotatably connected to the position of the machine frame 2 below the S-shaped transmission roller 6. A first wire dividing roller 4 is rotatably connected inside the machine frame 2. During the production process of the fabric, multi-head spinning is mostly used. Multiple wire grooves are provided on the wire dividing roller to effectively separate the multi-head spun silk bundles, and loosen, comb, and remove impurities from them, so that the continuous fabric is separated into a parallel and straight state, making preparations for the subsequent popcorn process. When processing inside the machine frame 2, the fabric can perform popcorn operations at the specified position, and will not cause incorrect pattern printing due to bending or other situations. An auxiliary roller 5 is rotatably connected inside the machine frame 2. A rear auxiliary fabric output roller 11 is rotatably connected inside the machine frame 2. The bottom end of the machine frame 2 is hinged with a swing arm assembly 3. The swing arm assembly 3 is deflected by a motor assembly to guide the fabric in the input barrel along the swing arm assembly 3 to the rear auxiliary fabric output roller 11, and then through the wire dividing step of the first wire dividing roller 4, it flows into the S-shaped transmission roller 6 and the second tension roller 15 in a parallel and straight state and is conducted to the inside of the side popcorn frame 7 for processing.
[0057] In this embodiment, an output frame 21 is rotatably connected to the bottom end of the machine frame 2 at the first wire splitting roller 4. One end of the output frame 21 is fixedly connected to a limit frame 20. A second wire splitting roller 8 is rotatably connected to the machine frame 2 below the limit frame 20. A first tension roller 12 is rotatably connected to the machine frame 2 on one side of the side popcorn frame 7. The flat continuous fabric popcorn machine can continuously process products. After the fabric processed by the machine frame 2 passes through the first tension roller 12, it undergoes a wire splitting step under the guidance of the second wire splitting roller 8. Under the limitation of the limit frame 20, it is conducted from the output frame 21 to the receiving tank, completing the complete transmission of the fabric, and at the same time completing the steps of transporting the fabric in and out, thereby reducing the labor intensity, keeping the fabric always inside the machine frame 2 for transmission, and avoiding problems such as fabric wrinkles and deviation from the transmission rod.
[0058] Compared with the traditional popcorn machine for processing finished clothes, the flat continuous fabric popcorn machine in this solution directly processes the fabric. After the fabric is transported to the side popcorn frame 7 by input components such as the auxiliary roller 5 and the S-shaped drive roller 6 and processed, it is continuously transported to the next processing area directly through output components such as the second wire splitting roller 8 without interruption. The transmission of the fabric is uninterrupted, enabling the popcorn machine to continuously perform popcorn work on the material, thereby improving the overall working efficiency of the popcorn machine.
[0059] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "including",
[0060] "comprising" or any other variation thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0061] The above specific embodiments are only several alternative embodiments of the present invention. Based on the technical solution of the present invention and the relevant revelations of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.
Claims
1. Flat continuous fabric embossing machine, including a machine frame (2) and a side embossing frame (7) fixedly connected inside the machine frame (2), characterized in that, Further included are: A front popcorn and sand frying trough (10), the front popcorn and sand frying trough (10) is fixedly installed at one end of the machine frame (2), and a group of corresponding rotating rods (27) are rotatably connected inside the front popcorn and sand frying trough (10); A rear popcorn and sand frying trough (17), the rear popcorn and sand frying trough (17) is fixedly installed at the other end of the machine frame (2), the number of the corresponding rotating rods (27) is two groups, and the other group of the corresponding rotating rods (27) is rotatably connected inside the rear popcorn and sand frying trough (17), and the front popcorn and sand frying trough (10) and the rear popcorn and sand frying trough (17) are arranged at the front and rear ends of the machine frame (2); A plurality of auxiliary engaging blocks (30) are fixedly connected to the outer surface of the corresponding rotating rod (27) through a positioning ring (31), one end of the auxiliary engaging block (30) is hinged with an inserting pressing block (33), one end of the inserting pressing block (33) is fixedly connected with an arc spring (32), the arc spring (32) is fixedly installed on the outer surface of the auxiliary engaging block (30), one end of the inserting pressing block (33) is inserted with a popcorn plate (28), and a dye absorption component (29) is fixedly connected to the end of the popcorn plate (28) away from the inserting pressing block (33); A rotating rod (24), the rotating rod (24) is rotatably connected inside the side popcorn frame (7), one end of the rotating rod (24) passing through the side popcorn frame (7) is fixedly connected with a motor component (16), the motor component (16) is fixedly installed on the outer surface of the side popcorn frame (7), a plurality of hollow buckle frames (25) are sleeved on the outer surface of the side popcorn frame (7), and a plurality of fitting frames (23) are fixedly connected to the outer surface of the hollow buckle frame (25) through a plurality of placement strips (26); A plurality of fabric placement nets (22) are fixedly connected between the plurality of fitting frames (23), a rear sector atomizer (14) is fixedly connected to one end of the machine frame (2), and a front sector atomizer (19) is fixedly connected to the other end of the machine frame (2).
2. The flat continuous fabric popcorn machine according to claim 1, wherein One end of the front popcorn and sand frying trough (10) is fixedly connected with a front spray component (18), and one end of the rear popcorn and sand frying trough (17) is fixedly connected with a rear spray component (13).
3. The flat continuous fabric flocking machine according to claim 2, wherein One end of the popcorn plate (28) is fixedly connected with a semi-circular blocking block (35), two groups of telescopic components (36) are fixedly connected to the end of the inserting pressing block (33) located inside the popcorn plate (28), an elastic sliding sleeve (37) with a spring fixedly connected inside is slidably connected to the outer surface of the telescopic component (36), and a rubber pull ring (34) is fixedly connected to the outer surface of the elastic sliding sleeve (37).
4. The flat continuous fabric flocking machine according to claim 3, characterized in that, One end of the popcorn plate (28) is fixedly connected with a storage cavity tube (41), one end of the storage cavity tube (41) is fixedly connected with a conical spray pipe (38) with a plurality of flow holes formed on the surface, an auxiliary adsorption cotton (39) is slidably connected to the inside of the conical spray pipe (38) through a clamping cavity (40) formed, and the conical spray pipe (38) is fixedly installed inside the dye absorption component (29).
5. The flat continuous fabric flocking machine according to claim 4, characterized in that, One end of the storage cavity tube (41) located inside the popcorn plate (28) is fixedly connected to a spring rubber hollow tube (42). One end of the spring rubber hollow tube (42) away from the storage cavity tube (41) is fixedly connected to multiple groups of pull ropes (45). One end of the popcorn plate (28) away from the conical spray tube (38) is fixedly connected to a fan-shaped opening frame (43). The outer surface of the fan-shaped opening frame (43) is fixedly connected to a fan-shaped adsorption cotton (44).
6. The flat continuous fabric flocking machine according to claim 5, characterized in that, One end of the fan-shaped opening frame (43) is fixedly connected to an annular blocking frame (46). The fan-shaped adsorption cotton (44) is located between the annular blocking frame (46) and the fan-shaped adsorption cotton (44). One end of the pull rope (45) passing through the annular blocking frame (46) is fixedly installed on the outer surface of the fan-shaped adsorption cotton (44).
7. The flat continuous fabric flocking machine according to claim 1, characterized in that, One end of the machine frame (2) is fixedly connected to a control component (9). A conduction long rod is rotatably connected inside the machine frame (2). An S-shaped transmission roller (6) is rotatably connected inside the machine frame (2). The bottom end of the machine frame (2) is fixedly connected to a popcorn frame outer frame (1). A second tension roller (15) is rotatably connected at a position below the S-shaped transmission roller (6) of the machine frame (2).
8. The flat continuous fabric popcorn machine according to claim 7, characterized in that, A first wire splitting roller (4) is rotatably connected inside the machine frame (2). An auxiliary roller (5) is rotatably connected inside the machine frame (2). A rear auxiliary cloth output roller (11) is rotatably connected inside the machine frame (2). A swing arm assembly (3) is hinged to the bottom end of the machine frame (2).
9. The flat continuous fabric popcorn machine according to claim 8, characterized in that, An output frame (21) is rotatably connected to the bottom end of the machine frame (2) at the position of the first wire splitting roller (4). One end of the output frame (21) is fixedly connected to a limiting frame (20). A second wire splitting roller (8) is rotatably connected to the machine frame (2) below the limiting frame (20). A first tension roller (12) is rotatably connected to the machine frame (2) on one side of the side popcorn frame (7).
Citation Information
Patent Citations
A dyeing and printing equipment
CN107974786B
Fine sueding and grinding machine
CN103437107A