A V-shaped wrinkle fabric printing detection machine

Through the design of flexible smoothing components and hot air dust removal components, the problems of fabric damage and poor detection accuracy of V-shaped pleated fabric detection equipment during the deployment process are solved, and efficient and lossless printing detection effect is achieved.

CN119804488BActive Publication Date: 2025-08-22ZHEJIANG BITAO FABRIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510025973.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2025-08-22
Estimated Expiration
2045-01-08

AI Technical Summary

Technical Problem

Existing V-shaped pleated fabric printing and testing equipment is prone to damage the fabric when unfolding the pleated fabric, resulting in low detection efficiency and poor accuracy, especially due to the hardening of the pleated fabric and the presence of printed particulate matter layers, which affects the detection quality.

Method used

Flexible smoothing components are adopted, including dials, elastic conical heads, ring panels, curved plates and hot air dust removal components. The fabric is softened by flexible tumbling and hot air to avoid damage and improve flattening effect. At the same time, curved plates and anti-slip strips are used to fix the fabric to ensure stable collection of printed patterns.

Benefits of technology

Improves inspection quality and efficiency, reduces fabric damage, ensures complete collection of printed patterns and dust removal, and enhances detection accuracy and yield.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of special fabric detection, specifically a V-shaped wrinkle fabric printing detection machine, including a cabinet body, a discharge table, a discharge table is arranged on the end surface of the cabinet body, a light-transmitting plate is arranged on the end surface of the discharge table, a fixed plate is arranged in the cabinet body below the light-transmitting plate, a plurality of fill-light seats are arranged on the end surface of the fixed plate, a lifting platform is slidingly arranged above the light-transmitting plate, a detector is arranged on the bottom end surface of the lifting platform, and a flexible smoothing component is arranged below the lifting platform; the present invention uses the setting of the hot air dust removal component with the roller and elastic cone head, the ring panel and the arc pressure plate and other parts in the flexible smoothing component, so that when the V-shaped wrinkle fabric is subjected to printing detection, the fabric can be quickly moved to loosen it before unfolding and softened by the principle of hot air, which can not only ensure the flattening effect but also avoid damage to the fabric and the printing particle layer on the surface, thereby improving the detection quality and efficiency.
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Description

Technical Field

[0001] The invention belongs to the technical field of special fabric detection, and in particular relates to a V-shaped wrinkle fabric printing detection machine. Background Art

[0002] Pleated fabric is a type of fabric with a pleated texture, which can be achieved through a specific weaving process or post-processing process. During the weaving process, various pleated patterns can be formed on the surface of the fabric by changing the interweaving method of the warp and weft yarns, adjusting the tension of the loom, or using special weaving techniques. V-shaped pleated fabric is a fabric with pleats arranged in an inverted V shape. In this shape, the pleats are not easily deformed, and the three-dimensional effect is strong. At the same time, a printing layer can be set on the surface of the pleats, which can protect the fabric while increasing its diversity. However, during the forming process of the printing layer, due to the characteristics of the pleated fabric, some prints will overlap, so manual inspection is required. However, manual inspection is time-consuming and labor-intensive. With the development of productivity, equipment that can detect prints on pleated fabrics has gradually emerged.

[0003] For example, patent application number CN202311591970.9 discloses a V-shaped wrinkle fabric printing inspection machine, which includes a workbench, a turning mechanism, a wrinkle cloth, an ejection mechanism, a camera analyzer, a plurality of supporting telescopic rods, a plurality of driving worm gears and a mounting seat. The top of the workbench is provided with two slots along the length direction of the workbench, and a strip-shaped slot is provided horizontally on the top of the workbench. A plurality of supporting telescopic rods are vertically arranged at equal intervals in the workbench. The V-shaped wrinkle fabric printing inspection machine cooperates with each other through the workbench, the turning mechanism, the wrinkle cloth, the ejection mechanism, the camera analyzer, the plurality of supporting telescopic rods, the plurality of driving worm gears and the mounting seat. This enables the present invention to detect the surface of the fabric by automatically stretching out the overlapping part of the fabric, and can also use the power source mechanism originally used to hook the fabric to assist the fabric transmission function, thereby achieving the purpose of multiple uses of one mechanism.

[0004] The existing technology uses a flipping mechanism in conjunction with an ejection mechanism to automatically transfer the fabric while unfolding the overlapping parts of the folds and completing the pattern detection effect, thereby improving the detection efficiency and quality. However, there are still certain shortcomings in the overall use process:

[0005] First, during the formation and production of V-shaped pleated fabrics, in order to maintain three-dimensional strength, a certain degree of hardening occurs between the pleats. Existing technology directly uses an ejection mechanism to eject a large area of ​​the pleated fabric on one side and uses a flipping mechanism to flip it with high intensity, which can easily cause damage to the fabric.

[0006] Secondly, the printed surface of the V-shaped pleated fabric has an uneven particle layer. Although the flipping mechanism can move the fabric, it will also cause the particle layer to fall off, making the quality inspection efficiency low and damaging the yield of the pleated fabric.

[0007] Finally, although the existing mechanism can complete the automatic feeding processing of the fabric, the printing forming detection requires the fabric to stop and stand still to complete the effective detection of the pattern. However, when the existing mechanism stops running, the ejection mechanism that ejects outward will also slide to one side due to the tension force, resulting in the inability to effectively collect the pattern, affecting the accuracy and efficiency of the detection. Summary of the Invention

[0008] In order to overcome the deficiencies of the prior art, the present invention provides a V-shaped wrinkle fabric printing detection machine.

[0009] The present invention uses the setting of the hot air dust removal component in conjunction with the roller and elastic cone head in the flexible smoothing component, the ring panel and the curved pressure plate, etc., so that when V-shaped wrinkled fabrics are subjected to printing inspection, the fabrics can be quickly moved to loosen them before unfolding and softened by utilizing the principle of hot air. This can not only ensure the flattening effect but also avoid damage to the fabric and the printed particle layer on the surface, thereby improving the inspection quality and efficiency.

[0010] In order to achieve the above-mentioned object, the present invention provides the following technical solution: a V-shaped wrinkle fabric printing detection machine, comprising a cabinet body, a material discharge table, a material discharge table provided on the end surface of the cabinet body, a light-transmitting plate provided on the end surface of the material discharge table, a fixed plate provided in the cabinet body below the light-transmitting plate, a plurality of fill light seats provided on the end surface of the fixed plate, a lifting platform provided for sliding above the light-transmitting plate, a detector provided on the bottom end surface of the lifting platform, and a flexible smoothing component provided below the lifting platform;

[0011] The flexible smoothing component includes two flattening bins symmetrically and slidably arranged under the lifting platform, and the bottom of each flattening bin is open. A pressure roller is rotatably arranged in the opening of the flattening bin, and a guide arc surface is provided on one side of the pressure roller at one end away from each other of the two flattening bins. A push roller is rotatably arranged between the guide arc surface and the pressure roller in the flattening bin, and a plurality of extension platforms are provided on the outer circular surface of the push roller in the circumferential direction, and each extension platform is provided with a plurality of detachable elastic cone heads, and a hot air dust removal component is provided on the end surface of the flattening bin.

[0012] By setting up the fixed plate, light can be projected on the bottom of the wrinkled fabric, making the printed pattern on the fabric more three-dimensional and improving the inspection quality; by setting up the plucking roller and multiple elastic cone heads, the wrinkled fabric can be plucking and hitting multiple times before being pushed outward and flattened by the pressing roller, so that the fibers in the wrinkles of the fabric vibrate rapidly, loosening the wrinkles and preventing the wrinkled fabric from being damaged during the outward expansion process. At the same time, the rapid vibration can also shake off dust and dirt stuck in the wrinkles, and also play a cleaning role.

[0013] According to the above-mentioned V-shaped wrinkle fabric printing inspection machine, the hot air dust removal component includes a wind tube fixedly arranged on the end surface of the flattening bin, a rotating fan wheel is rotatably arranged in the wind tube, and a plurality of heating plates are arranged in the wind tube below the rotating fan wheel.

[0014] By rotating the fan wheel and the heating plate, hot air can flow quickly in the fabric fibers during the unfolding process of the pleated fabric, so that the pleated fabric can be effectively softened and the temporary flattening quality is improved.

[0015] According to the above-mentioned V-shaped wrinkle fabric printing detection machine, the flexible smoothing component also includes a plurality of mounting holes arranged along a straight line on the end surface of the extension platform, and a mounting rod is installed in each of the mounting holes, and the outer end surface of the mounting rod is fixedly connected to the elastic cone head.

[0016] Through the settings of mounting holes and mounting rods, workers can replace elastic cone heads of different shapes and sizes according to actual needs, effectively improving the applicability of the equipment.

[0017] According to the above-mentioned V-shaped wrinkle fabric printing detection machine, the flexible smoothing component also includes a ring panel arranged around the outside of the pressure roller, and an elastic arc plate is provided on one end of the bottom of the ring panel. The elastic arc plate is arc-shaped as a whole and bends outward. An arc pressure plate is connected to the outward-bent end of the elastic arc plate, and the arc pressure plate is bent upward at the end away from the elastic arc plate, and the middle part of the end of the arc pressure plate close to the elastic arc plate is flattened.

[0018] Through the setting of the arc pressure plate and the elastic arc plate, the flattening bin can elastically press and fix the two ends of the wrinkled fabric after moving outward to the end of the stroke, so that the printed pattern can be stably sampled. During the flattening process, while reducing the scratching of the printed particle layer on the fabric surface, it can also scrape off dust and dirt, thereby improving the detection quality.

[0019] According to the above-mentioned V-shaped wrinkle fabric printing detection machine, the flexible smoothing component also includes a fixing groove arranged on the flat surface of the arc pressure plate, and an anti-slip strip is removably arranged in the fixing groove, and anti-slip grooves are arranged on the bottom end surface of the anti-slip strip.

[0020] By arranging the fixing groove and the anti-slip strip, the fixing effect of the wrinkled fabric is improved, and the cleaning effect of the wrinkled fabric is also improved.

[0021] According to the above-mentioned V-shaped wrinkle fabric printing detection machine, a plurality of sliding openings are provided on the end surface of the light-transmitting plate, a second wheel frame is slidably provided in the sliding opening, and a movable roller is rotatably provided in the second wheel frame.

[0022] By setting up the movable roller and the second wheel frame, the equipment can automatically complete the movement processing of the fabric pattern after the detection of the wrinkled fabric part position is completed.

[0023] According to the above-mentioned V-shaped wrinkle fabric printing detection machine, a plurality of rectangular openings are arranged on the arc surface of the guide arc surface above the light-transmitting plate, a first wheel frame is slidingly arranged in the flattening bin above the rectangular opening, a pushing wheel is rotatably arranged in the first wheel frame, and a rubber surface layer is arranged on the outer circular surface of the pushing wheel.

[0024] By setting the pushing wheel and the rubber surface layer, the wrinkled fabric can be automatically moved in a slightly clamped state, thereby improving the movement stability of the printed pattern.

[0025] According to the above-mentioned V-shaped wrinkle fabric printing inspection machine, the hot air dust removal component also includes a diverter plate arranged below the air duct in the flattening bin, and a plurality of ventilation holes are arranged on the curved surface of the diverter plate.

[0026] Through the setting of the diverter plate and the vent holes, the hot air can flow evenly to all parts of the surface of the wrinkled fabric, improving the softening effect.

[0027] According to the above-mentioned V-shaped wrinkle fabric printing detection machine, the flexible smoothing component also includes an arc scraper block arranged on the annular panel close to the arc surface of the pressure roller, and the inner arc surface of the arc scraper block contacts the outer circular surface of the pressure roller.

[0028] By arranging the arc-surface scraper and the annular panel, the pressure roller can clean the dust and dirt adhering to the surface of the pressure roller while flattening the wrinkled fabric.

[0029] According to the above-mentioned V-shaped wrinkle fabric printing detection machine, an electric heating layer is provided in the light-transmitting plate. Through the provision of the electric heating layer, the light-transmitting plate can also heat the wrinkle fabric.

[0030] In summary, compared with the prior art, the beneficial effects of this solution are:

[0031] The present invention utilizes the design of the roller, the extension platform, and the elastic cone head to enable the wrinkles of the wrinkled fabric to be quickly moved during the process of being flattened outward, so that the fibers in the wrinkles can be quickly loosened and softened to a certain extent, so that the wrinkled fabric can be smoothly flattened while reducing damage, thereby improving the quality of printing inspection.

[0032] The present invention adopts the design of the ring panel, the arc scraper, the elastic arc plate and the anti-slip strip, so that when the wrinkled fabric is flattened outward by the pressing roller, the arc pressing plate and the anti-slip strip can not only elastically flatten the fabric again, so that the fabric can be further flattened without damaging the printed particle layer, but also fix the fabric so that the printed pattern can be stably collected and tested. At the same time, during the flattening process, dust and dirt stuck to the fabric and the outside of the pressing roller can be scraped off, thereby improving the detection quality.

[0033] The present invention uses the design of the air duct, the diverter plate, the vent holes and the electric heating layer to allow hot air to circulate inside and outside the wrinkled fabric during the flattening process, so that the fabric can be further softened and flattened, and dust and dirt on the surface of the fabric can also be effectively blown off and removed;

[0034] The present invention uses the design of the movable roller, the second wheel frame, the pushing wheel and the rubber surface layer, so that after the printing at a certain place on the surface of the wrinkled fabric is detected, the detection machine can automatically complete the movement and adjustment of the fabric pattern, thereby reducing the workload of the processing personnel and improving the detection efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] Figure 1 A perspective view of the present invention;

[0036] Figure 2 It is the front view of the present invention;

[0037] Figure 3 is a side view of the present invention;

[0038] Figure 4 for Figure 2 Stereoscopic cross-sectional view at AA in the middle;

[0039] Figure 5 for Figure 3 A three-dimensional cross-sectional view of the middle BB;

[0040] Figure 6 It is a three-dimensional diagram of the flexible smoothing component and the lifting platform;

[0041] Figure 7 A perspective view of a flexible smoothing component;

[0042] Figure 8 for Figure 5A partial enlarged view of point C in the middle;

[0043] Figure 9 for Figure 5 A partial enlarged view of point D in the middle;

[0044] Figure 10 for Figure 6 A partial enlarged view of point E in the middle;

[0045] Figure 11 for Figure 4 A partial enlarged view of point F in the middle;

[0046] Figure 12 for Figure 4 A partial enlarged view of point G in the middle;

[0047] Figure 13 for Figure 2 Stereoscopic cross-sectional view at GG in the middle;

[0048] Figure 14 for Figure 13 A partial enlarged view of the middle J;

[0049] In the figure: cabinet 10, first support plate 11, second support plate 12, first push cylinder 13, control panel 14, lifting platform 15, push-flattening bin 16, unloading platform 17, light-transmitting plate 18, screw drive seat 19, optical axis seat 20, detector 21, power drive unit 22, sliding port 23, fixing plate 24, pressure roller 25, guide arc surface 26, rectangular opening 27, arc pressure plate 28, anti-slip strip 29, push roller 30, extension platform 31, push wheel 32, first wheel frame 33, air duct 34, Driving seat 35, diverter plate 36, vent hole 37, elastic cone head 38, mounting hole 39, mounting rod 40, first rotating shaft 41, second rotating shaft 42, annular panel 43, elastic arc plate 44, fixing groove 45, arc scraper 46, rubber surface layer 47, first driving motor 48, rotating fan wheel 49, heating plate 50, second pushing cylinder 51, second driving motor 52, moving roller 53, second wheel frame 54, fill light seat 55, electric heating layer 56, third pushing cylinder 57, annular groove 58. DETAILED DESCRIPTION

[0050] In order to enable those skilled in the art to better understand the solutions of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Example

[0051] Reference Attachment Figure 1 , Attachment Figure 2 , Attachment Figure 3 , Attachment Figure 4 , Attachment Figure 5 and attached Figure 6A V-shaped wrinkle fabric printing inspection machine includes a cabinet 10 and a discharge table 17. The discharge table 17 is fixedly provided at the upper end surface of the cabinet 10. The entire end surface of the discharge table 17 is smoothed. A light-transmitting plate 18 is provided in the middle of the discharge table 17. The light-transmitting plate 18 is made of a light-transmitting material such as glass. This is a prior art and will not be elaborated in detail in this solution. The upper end surface of the light-transmitting plate 18 is used to place V-shaped wrinkle fabrics and complete the inspection process through the detection component.

[0052] A first supporting plate 11 is fixedly provided on the end surface of the cabinet 10 on one side of the light-transmitting plate 18, a second supporting plate 12 is fixedly provided on the end surface of the first supporting plate 11 close to the light-transmitting plate 18, and two first pushing cylinders 13 are symmetrically fixedly provided on the end surface of the second supporting plate 12, the bottom output ends of the two first pushing cylinders 13 both extend out of the end surface of the second supporting plate 12, and one end of the two first pushing cylinders 13 extending out of the end surface of the second supporting plate 12 is connected to a lifting platform 15, and a detector 21 is provided on the bottom end surface of the lifting platform 15. The detector 21 can detect the printed pattern on the wrinkled fabric, so as to determine whether the printed pattern is effectively formed and improve the printing quality. Flexible smoothing components for flattening the wrinkled fabric are provided on both sides of the detector 21 and the bottom end surface of the lifting platform 15. Under the action of the output end of the first pushing cylinder 13, the lifting platform 15, the detector 21 and the flexible smoothing component can freely adjust the height above the wrinkled fabric, so that the wrinkled fabric can be smoothly flattened and effectively detected at the same time;

[0053] A control panel 14 is fixedly provided on one side of the bottom of the second support plate 12. The staff can control and process the various movements of the detection machine through the control panel 14. A power supply drive unit 22 is provided inside the cabinet 10. The power supply drive unit 22 includes a single-chip microcomputer, a battery, a wiring port, etc. It is an existing technology and is used to control the power supply of the equipment. This solution will not elaborate on it in detail.

[0054] For further information, see the attached Figure 6 , Attachment Figure 8 and attached Figure 10 The flexible smoothing component includes two flattening bins 16 symmetrically slidably arranged below the lifting platform 15. The bottom end surfaces of the two flattening bins 16 are both open. A guide arc surface 26 is provided on the bottom end surfaces of the two flattening bins 16 that are away from each other. The entire arc surface of the guide arc surface 26 extends to the bottom opening of the flattening bin 16. A second rotating shaft 42 is rotatably provided on one side of the guide arc surface 26 in the opening of the flattening bin 16. A pressure roller 25 is provided on the outer circumferential surface of the second rotating shaft 42. A plurality of annular grooves 58 are evenly provided on the outer circumferential surface of the pressure roller 25 along the straight line direction.

[0055] Specifically, when wrinkled fabrics need to be flattened for testing, staff can refer to the attached Figure 1As shown in the figure, the wrinkled fabric is placed on the end surface of the light-transmitting plate 18. At this time, the two flattening bins 16 are still in a state of close contact with each other. Then the lifting platform 15 will drive the two flattening bins 16 to press on the surface of the wrinkled fabric. Then the two flattening bins 16 will move outward synchronously, thereby driving the pressure roller 25 and the guide arc surface 26 to move outward. During the movement, the wrinkled fabric in the moving path of the flattening bin 16 will be continuously guided to the bottom of the flattening bin 16 by the arc-shaped guide arc surface 26 and pressed by the outer surface of the pressure roller 25. The pressure roller 25 will also rotate continuously in this process, thereby driving the multiple annular grooves 58 to rotate and push the wrinkled fabric to expand outward, until the flattening bin 16 pushes the wrinkled fabric to the end of the stroke of the light-transmitting plate 18, and then stops moving, so that the wrinkled fabric completes the flattening process, which is convenient for the detector 21 to observe and detect in time. In this solution, the setting of multiple annular grooves 58 enables the pressure roller 25 to have more space to stretch during the pressing process and the wrinkled fabric to have more space to stretch during the flattening process, thereby improving the flattening efficiency.

[0056] For further information, see the attached Figure 6 and attached Figure 9 An arc-shaped ring panel 43 is fixedly provided on the outside of the pressure roller 25 in the pushing bin 16, and an elastic arc plate 44 is connected to the downward end of the ring panel 43, which is bent downward and toward the other side. The elastic arc plate 44 is made of elastic material, and a plurality of grooves for bending and deformation are provided on the curved surface. An arc pressure plate 28 is connected to the other end of the elastic arc plate 44. The end of the arc pressure plate 28 away from the ring panel 43 is bent upward, and the end of the arc pressure plate 28 close to the ring panel 43 is flattened. A fixing groove 45 is provided on the flat end of the arc pressure plate 28, and an anti-slip strip 29 is fixedly installed in the fixing groove 45. The bottom end surface of the anti-slip strip 29 is provided with a plurality of anti-slip patterns.

[0057] Specifically, the ring panel 43, the elastic arc plate 44 and the arc pressure plate 28 are all on one side of the moving stroke of the pressure roller 25, that is, when the two flattening chambers 16 carry the pressure roller 25 to push the wrinkled fabric outward to flatten it, the arc pressure plate 28 will also drive the anti-slip strip 29 to press on the flattened fabric surface and drag it outward, so as to further pull the flattened wrinkled fabric outward and flatten it, and at the same time, it can also scrape out the dust and dirt on the surface of the wrinkled fabric to ensure the quality of inspection; in the pulling process, since the elastic arc plate 44 is bent downward as a whole, a trumpet-shaped convergence angle is formed between it and the fabric, so that the arc pressure plate 28 can be pressed smoothly onto the surface of the wrinkled fabric. At the same time, when there are concave and convex points on the surface of the wrinkled fabric on the elastic arc plate 44 made of elastic material, the anti-slip strip 29 can bend and jump up and down adaptively, thereby preventing the wrinkled fabric from being scratched while improving the flattening effect. The setting of the fixing groove 45 allows the staff to replace the anti-slip strip 29 with different anti-slip patterns for flattening according to actual needs;

[0058] After the flattening bin 16 completely unfolds the wrinkled fabric, the flattening bin 16 will stay at both ends of the wrinkled fabric and press the two ends of the fabric through the arc pressure plate 28 and the anti-slip strip 29 to prevent the wrinkled fabric from shrinking, so that the detector 21 can successfully complete the detection process.

[0059] For further information, see the attached Figure 6 , Attachment Figure 7 , Attachment Figure 8 and attached Figure 10 A first rotating shaft 41 is rotatably provided between the pressure roller 25 and the guide arc surface 26 in the push-flattening chamber 16. A shifting roller 30 is provided outside the first rotating shaft 41. A plurality of extension platforms 31 are evenly provided on the outer circumferential surface of the shifting roller 30 along the circumferential direction. A plurality of mounting holes 39 are provided on the end surface of each extension platform 31 along the linear direction. A mounting rod 40 is installed in each mounting hole 39. An elastic cone head 38 made of elastic rubber material is fixedly provided on the outer end surface of each mounting rod 40. The elastic cone head 38 is tapered as a whole and has a dome-shaped top.

[0060] Specifically, before the guide arc surface 26 guides the fabric to the pressing roller 25, the wrinkled fabric is in a wrinkled state for a long time, and the overall wrinkles and prints are hard. Direct pushing can easily damage the fabric and prints. Therefore, before the pressing roller 25 pushes the wrinkled fabric, the roller 30 will rotate rapidly under the drive of the first rotating shaft 41, thereby driving the multiple extension platforms 31 on the outer circular surface to rotate, thereby driving the multiple elastic cone heads 38 to rotate. The elastic cone heads 38 in the rotating state will continuously contact with the surface of the wrinkled fabric, causing the wrinkled fabric in contact to be in a rapid shaking and vibrating state, thereby the hard fiberized wrinkled fabric and the printed prints can be shaken. The wrinkled fabric is loosened by vibration, so that the pressing roller 25 can smoothly flatten the wrinkled fabric; in this solution, the setting of the extension platform 31 can basically extend the contact stroke distance of the elastic cone head 38, and the setting of the mounting rod 40 and the mounting hole 39 allows the elastic cone head 38 to select different shapes and sizes according to actual needs, thereby completing the efficient moving processing of the fabric. The elastic rubber material and conical design of the elastic cone head 38 enable the elastic cone head 38 to generate a certain elastic vibration when moving the fabric, which can not only improve the loosening efficiency of the fabric, but also the design of the top dome can prevent the wrinkled fabric from being scratched, thereby ensuring the finished product rate of the wrinkled fabric.

[0061] Two second drive motors 52 are provided on the end surface of the pushing and leveling bin 16 on one side of the first rotating shaft 41 and the second rotating shaft 42. The output ends of the two second drive motors 52 are respectively connected to one end of the first rotating shaft 41 and the second rotating shaft 42. When the push roller 30 and the pressure roller 25 need to rotate, the second drive motor 52 can provide rotational power.

[0062] For further information, see the attached Figure 6 Two screw drive seats 19 are symmetrically fixed on one side of the bottom end surface of the lifting platform 15. The screw drive seat 19 is a prior art, including a screw and a driving motor. This scheme will not be elaborated in detail. An optical axis seat 20 is also provided on one side of each screw drive seat 19 on the bottom end surface of the lifting platform 15. A driving seat 35 is driven and connected on the optical axis seat 20 and the screw drive seat 19. The bottom end surface of the driving seat 35 is connected and fixed to the top end surface of the push-flattening warehouse 16. When the push-flattening warehouse 16 needs to move, the screw drive seat 19 will be started, and the motor on the screw drive seat 19 will drive the screw to rotate, thereby driving the driving seat 35 to slide in the optical axis seat 20, thereby driving the push-flattening warehouse 16 at the bottom of the driving seat 35 to complete the movement process.

[0063] For further information, see the attached Figure 12 In order to ensure that the prints can be effectively detected, a fixing plate 24 is fixedly installed in the cabinet 10 below the light-transmitting plate 18, and a plurality of fill-light seats 55 are provided on the end surface of the fixing plate 24. When the detector 21 is detecting, the fill-light seats 55 will be opened, so that light can be projected onto the wrinkled fabric through the light-transmitting plate 18, making the fabric as a whole translucent, so that the detector 21 can better detect and process the print pattern on the fabric.

[0064] In the above scheme, when the printed pattern is detected, the lifting platform 15 will move upward under the action of the output end of the first push cylinder 13, so that the anti-slip strip 29 and the pressure roller 25 originally pressed on the surface of the wrinkled fabric will be separated from the pressure on the wrinkled fabric. At this time, the two ends of the wrinkled fabric lose their clamping, and the fabric will gradually shrink inward under the influence of its own wrinkles and re-form wrinkles. Example

[0065] Reference Attachment Figure 10 , Attachment Figure 12 , Attachment Figure 13 and attached Figure 14 , a V-shaped wrinkle fabric printing detection machine, based on the first embodiment, a further embodiment is made. The wrinkle fabrics are of different sizes, so the detection position will often change, and the staff also needs to adjust the position many times. Therefore, two sliding openings 23 are provided on the end face of the light-transmitting plate 18, and multiple third pushing cylinders 57 are provided on the end face of the fixed plate 24 below the two sliding openings 23. A second wheel frame 54 is connected to the top output end of the third pushing cylinder 57 and the sliding opening 23. A moving roller 53 is rotatably provided in the second wheel frame 54, and a motor for driving is provided on one side of the moving roller 53 on the end face of the second wheel frame 54. The motor is a prior art, and the specific driving and connection methods are not elaborated and represented in detail.

[0066] When the wrinkled fabric needs to be moved to both sides of the light-transmitting plate 18 to adjust its position, the third pushing cylinder 57 can push the second wheel frame 54 to move upward, thereby pushing the moving roller 53 in the second wheel frame 54 to move upward. During the movement, the outer cylindrical surface of the moving roller 53 will contact the bottom of the wrinkled fabric and push it upward. At this time, the bottom of the wrinkled fabric will not contact the light-transmitting plate 18. At this time, the motor on one side of the moving roller 53 will drive the moving roller 53 to rotate. The rotating moving roller 53 can drive the wrinkled fabric to move in the set direction, thereby completing the position adjustment of the printed pattern. When the position adjustment is completed, the moving roller 53 and the second wheel frame 54 will move downward under the action of the third pushing cylinder 57, so that the wrinkled fabric can be placed back on the light-transmitting plate 18 to complete the detection process.

[0067] Furthermore, a plurality of rectangular openings 27 are provided on the arc surface of the guide arc surface 26, and a second pushing cylinder 51 is fixedly provided on the end surface of the flattening bin 16 above the rectangular opening 27, and the output end of the second pushing cylinder 51 extends into the flattening bin 16, and a first wheel frame 33 is connected to one end of the second pushing cylinder 51 extending into the flattening bin 16, and a pushing wheel 32 is connected to the first wheel frame 33 through a motor drive, and the outer cylindrical surface of the pushing wheel 32 can extend to the bottom of the flattening bin 16 through the rectangular opening 27, and the rotation direction of the pushing wheel 32 is consistent with that of the moving roller 53, and a rubber surface layer 47 is provided on the outer cylindrical surface of the pushing wheel 32.

[0068] When the moving roller 53 is used to support the pleated fabric to move, the flattening bin 16 will also move to the top of the pleated fabric. At this time, the output end of the second pushing cylinder 51 will also push the first wheel frame 33 to move downward, so that the outer cylindrical surface of the pushing wheel 32 in the first wheel frame 33 and the rubber surface layer 47 move to the top of the pleated fabric through the rectangular opening 27 until the pleated fabric is slightly pressed and stops moving. Subsequently, during the rotation of the moving roller 53, the pushing wheel 32 will also rotate under the action of the motor, and the pushing wheel 32 will also drive the rubber surface layer 47 to rotate, so that the pleated fabric can be clamped between multiple pushing wheels 32 and the moving roller 53 and moved in multiple directions, thereby improving the stability of the movement of the pleated fabric. In this solution, the rubber surface layer 47 is made of elastic rubber material, which can not only ensure the contact friction with the pleated fabric, but also avoid damage to the pleated fabric and improve the yield rate. In the above solution, the motor and specific connection method used to drive the pushing wheel 32 are existing technologies, and this solution will not be elaborated in detail. Example

[0069] Reference Attachment Figure 8 , Attachment Figure 10 and attached Figure 11, a V-shaped wrinkle fabric printing inspection machine, based on the first or second embodiment, is further implemented. In the process of wrinkle fabric wrinkling for a long time, in addition to the wrinkles hardening, there will also be a certain amount of dust and dirt in the wrinkles, which affects the inspection quality. Therefore, the overall design of the flattening bin 16 is shell-shaped, with only an opening at the bottom. When the roller 30 drives the elastic cone head 38 to stir the fabric, the dirt on the surface of the fabric will also be knocked off. The shell-shaped flattening bin 16 can prevent dust and dirt from floating outward over a large area, and the anti-slip strip 29 and the arc pressure plate 28 can also scrape the dust and dirt off and drive it to one side in time, thereby improving the inspection quality. On this basis, an air duct 34 is further provided at the upper end surface of the flattening bin 16. The top of the air duct 34 is an air inlet mesh port, and the bottom is an exhaust mesh port. Both are provided with filter plates to avoid To prevent dust from entering, a first drive motor 48 is fixedly installed in the air duct 34, and a rotating fan wheel 49 is connected to the output end of the first drive motor 48. A diverter plate 36 is provided at the top of the flattening bin 16 below the air duct 34, and a plurality of ventilation holes 37 are provided on the diverter plate 36. When the flattening bin 16 moves above the wrinkled fabric, the first drive motor 48 will start and drive the rotating fan wheel 49 to rotate at high speed, thereby driving the external gas to be discharged into the cavity above the diverter plate 36 through the air duct 34. The diverter plate 36 will evenly distribute the gas to various positions between the pushing roller 30 and the pressing roller 25 through the plurality of ventilation holes 37, so that gas pressure can be applied in the process of the extension platform 31 and the elastic cone head 38 pushing the stolen goods outward, so that the dust can be better cleaned.

[0070] Furthermore, in order to ensure that the wrinkled fabric can be further softened, a plurality of heating plates 50 are fixedly installed in the air duct 34 below the rotating fan wheel 49, and a plurality of mesh holes are provided on the end face of the heating plate 50. A plurality of electric heating layers 56 are arranged in the light-transmitting plate 18 below the air duct 34. The electric heating layer 56 is arranged in the light-transmitting plate 18 similar to the heating wire. Without affecting the light transmission of the fill light seat 55, the light-transmitting plate 18 can be heated as a whole. When the wrinkled fabric is placed on the light-transmitting plate 18, the electric heating layer 56 can be started and heat the light-transmitting plate 18, thereby heating the wrinkled fabric, making the wrinkled fabric softened by heat, and facilitating subsequent flattening processing. During the dust removal process of the air duct 34 and the diverter plate 36, the heating plate 50 can also quickly heat the ejected gas, so that the hot air can flow in each fold on the wrinkled fabric, thereby improving the softening efficiency of the wrinkled fabric. Example

[0071] Reference Attachment Figure 9A V-shaped wrinkle fabric printing inspection machine is further implemented on the basis of embodiments one to three. A curved scraper 46 made of elastic material is provided on the curved surface of the ring panel 43 near the pressure roller 25. The inner curved surface of the curved scraper 46 is roughened and is in slight contact with the outer circumferential surface of the pressure roller 25. When the pressure roller 25 pushes the wrinkle fabric, the roller 30 and the elastic cone head 38 will loosen the wrinkle fabric, causing dust and dirt to fall off. At this time, some dust and dirt will adhere to the pressure roller 25, and the curved scraper 46 can scrape off the dust and dirt adhered to the outer circumferential surface of the pressure roller 25 during the rotation of the pressure roller 25, so that the pressure roller 25 always remains clean, thereby improving the flattening efficiency.

[0072] For example, certain words are used in the specification and claims to refer to specific components. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. This specification and claims do not use differences in names as a way to distinguish components, but use differences in the functions of the components as the criteria for distinction. For example, "including" mentioned throughout the specification and claims is an open term, so it should be interpreted as "including but not limited to". "Approximately" means that within an acceptable error range, those skilled in the art can solve the technical problem within a certain error range and basically achieve the technical effect.

[0073] It should be noted that the terms "include," "comprises," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a product or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such product or system. In the absence of further limitations, an element defined by the phrase "comprising a..." does not exclude the presence of other identical elements in the product or system comprising the element.

[0074] The above description shows and describes several preferred embodiments of the present application. However, as previously mentioned, it should be understood that the present application is not limited to the form disclosed herein and should not be construed as excluding other embodiments. Instead, the present application can be used in various other combinations, modifications, and environments and can be modified within the scope of the application concept described herein through the above teachings or technology or knowledge in the relevant field. Modifications and changes made by those skilled in the art that do not depart from the spirit and scope of the present application should be protected by the claims appended hereto.

Claims

1. A V-shaped wrinkle fabric printing inspection machine, comprising a cabinet (10), a material discharge platform (17), wherein the end surface of the cabinet (10) is provided with a material discharge platform (17), and the end surface of the material discharge platform (17) is provided with a light-transmitting plate (18), characterized in that: A fixed plate (24) is provided in the cabinet (10) below the light-transmitting plate (18), a plurality of fill-light seats (55) are provided on the end surface of the fixed plate (24), a lifting platform (15) is slidably provided above the light-transmitting plate (18), a detector (21) is provided on the bottom end surface of the lifting platform (15), and a flexible smoothing component is provided below the lifting platform (15); The flexible smoothing component includes two flattening bins (16) symmetrically slidably arranged below the lifting platform (15), the bottom of each flattening bin (16) is open, a pressure roller (25) is rotatably arranged in the opening of the flattening bin (16), a guide arc surface (26) is arranged on one side of the pressure roller (25) at one end away from each other of the two flattening bins (16), a push roller (30) is rotatably arranged in the flattening bin (16) between the guide arc surface (26) and the pressure roller (25), a plurality of extension platforms (31) are arranged on the outer circumferential surface of the push roller (30), and a plurality of detachable elastic cone heads (38) are arranged on each extension platform (31), and a hot air dust removal component is arranged on the end face of the flattening bin (16); The flexible smoothing component also includes an annular panel (43) arranged outside the pressure roller (25), an elastic arc plate (44) is provided on one end of the bottom of the annular panel (43), the elastic arc plate (44) is in an arc shape as a whole and is bent outward, an arc pressure plate (28) is connected to the outward bent end of the elastic arc plate (44), the arc pressure plate (28) is bent upward at one end away from the elastic arc plate (44), and the middle part of the end of the arc pressure plate (28) close to the elastic arc plate (44) is smoothed; The flexible smoothing component further comprises a fixing groove (45) provided on the flat surface of the arc pressure plate (28), an anti-slip strip (29) is provided in the fixing groove (45), and an anti-slip pattern is provided on the bottom end surface of the anti-slip strip (29); A plurality of sliding openings (23) are provided on the end surface of the light-transmitting plate (18), a second wheel frame (54) is slidably provided in the sliding opening (23), and a moving roller (53) is rotatably provided in the second wheel frame (54); A plurality of rectangular openings (27) are provided on the arc surface of the guide arc surface (26) above the light-transmitting plate (18); a first wheel frame (33) is slidably provided in the push-flattening bin (16) above the rectangular opening (27); a driving wheel (32) is rotatably provided in the first wheel frame (33); and a rubber surface layer (47) is provided on the outer circumferential surface of the driving wheel (32).

2. A V-shaped wrinkle fabric printing detection machine according to claim 1, characterized in that: The hot air dust removal assembly comprises a wind tube (34) fixedly arranged on the end surface of the push-flattening bin (16), a rotating fan wheel (49) is rotatably arranged in the wind tube (34), and a plurality of heating plates (50) are arranged in the wind tube (34) below the rotating fan wheel (49).

3. A V-shaped wrinkle fabric printing detection machine according to claim 1, characterized in that: The flexible smoothing component also includes a plurality of mounting holes (39) arranged on the end surface of the extension platform (31) along a straight line direction, and a mounting rod (40) is installed in each mounting hole (39), and the outer end surface of the mounting rod (40) is fixedly connected to the elastic cone head (38).

4. A V-shaped wrinkle fabric printing detection machine according to claim 2, characterized in that: The hot air dust removal assembly further comprises a diverter plate (36) arranged below the air cylinder (34) in the push-flattening bin (16), and a plurality of vent holes (37) are arranged on the arc surface of the diverter plate (36).

5. A V-shaped wrinkle fabric printing detection machine according to claim 3, characterized in that: The flexible smoothing component also includes an arc scraper (46) arranged on the arc surface of the ring panel (43) close to the pressure roller (25), and the inner arc surface of the arc scraper (46) contacts the outer circular surface of the pressure roller (25).

6. A V-shaped wrinkle fabric printing detection machine according to claim 1, characterized in that: An electric heating layer (56) is provided in the light-transmitting plate (18).

Citation Information

Patent Citations

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