A clothing design pattern printing and dyeing device and its usage method
By using a three-station structure and overhead components driven by a turntable in the clothing printing and dyeing equipment, the friction problem between the clothes and the printing and dyeing pallet is solved, and the printing and dyeing effect and operation convenience are improved.
Patent Information
- Application Number
- CN202310285067.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-22
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2043-03-22
AI Technical Summary
Existing clothing printing and dyeing equipment can easily cause friction between the inner layer of the clothing and the printing and dyeing pallet during printing and dyeing, causing dye stains and friction marks in the printing and dyeing patterns, affecting the printing and dyeing effect.
A clothing design pattern printing and dyeing equipment is designed, using a three-station structure of the rotary table-driven printing and dyeing pallet assembly, combining the stroke adjustment parts and the overhead assembly to realize the overhead between the clothes and the printing and dyeing pallet, and prevent the clothes from fitting on the pallet.
Through the design of the overhead components, friction between the clothes and the printing and dyeing pallets when removed is avoided, dye staining and pattern damage is prevented, printing and dyeing effect is significantly improved, and the operation process is simplified.
Smart Images

Figure CN116278354B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of clothing pattern printing and dyeing processing, and specifically to a clothing design pattern printing and dyeing device and a using method thereof. Background Technique
[0002] As is well known, printing and dyeing technology can print various colored pattern designs on fabric clothing to achieve an aesthetic effect. The printing processes mainly include direct printing, transfer printing, and screen printing. This clothing design pattern printing and dyeing device is a processing device for printing patterns on clothing.
[0003] For example, in the invention patent with the application publication number: CN114645391A, the application publication date: June 21, 2022, and the name: "A Short-sleeved Printing and Dyeing Device for Clothing Processing", its specific structure includes a main frame, an electric push rod, a sliding support block, a descending and pressing component, a short-sleeved flattening component, a moving component, and a downward pressing and ironing component; an electric push rod, an electric push rod is fixedly installed on the upper part of the main frame, and two L-shaped sliding grooves and two linear sliding grooves are opened inside the main frame; a sliding support block, a sliding support block is slidably connected to the linear sliding groove inside the main frame; a descending and pressing component, a descending and pressing component is connected to the sliding support block and is connected to the main frame; a short-sleeved flattening component, a short-sleeved flattening component is provided on the descending and pressing component, and is used to flatten the surface of the short-sleeved under the cooperation of the descending and pressing component and the short-sleeved flattening component; a moving component, a moving component is provided on the electric push rod; a downward pressing and ironing component, a downward pressing and ironing component is provided on the main frame, and the downward pressing and ironing component is used to print patterns on the short-sleeved.
[0004] Another example is the invention patent with the application publication number: CN115352181A, the application publication date: November 18, 2022, and the name: "A Short-sleeved Printing and Dyeing System and Printing and Dyeing Process for Clothing Processing", its specific structure includes a base and a vertical plate fixedly installed on the base; a cross plate is movably arranged on the base, the cross plate is connected to a transverse movement mechanism installed on the base, and multiple groups of elastic support members for fixing short-sleeved are arranged on both sides of the cross plate; a lifting plate is slidably arranged on the vertical plate through a cylinder, the lifting plate is arranged in an "L" shape, and a printing head is movably arranged between the lifting plate and the cross plate, and the printing head is connected to a printing and dyeing device; the cylinder is used to drive the printing head to rise or fall, so that the printing head performs a printing action on the short-sleeved on the cross plate, and the printing head is connected to the lifting plate through an elastic telescopic mechanism; a frame body is also fixedly installed on the base, a drying device is movably arranged on one side of the frame body, and the drying device is connected to the frame body through a reciprocating driving mechanism, and the reciprocating driving mechanism is triggered during the rising process of the printing head and drives the drying device to perform a linear movement once to dry the printed part on the short-sleeved.
[0005] As recorded in the above application, when printing and dyeing clothing (such as short sleeves), since the short sleeves have two layers of fabric, when only one layer of the fabric of the short sleeves needs to be printed and dyed, direct printing and dyeing will cause the pattern to be printed on the other layer of fabric that does not need to be printed and dyed, resulting in printing and dyeing failure. The above application uses a short-sleeved overlay or a horizontal board to perform overlay printing and dyeing on the short sleeves that need to be printed and dyed. Although it avoids the occurrence of cross-printing on the double-layer fabric of the short sleeves, it is obvious that there will be dye on the short-sleeved overlay or the horizontal board during printing and dyeing. After the printing and dyeing is completed, when the staff removes the short sleeves from the horizontal board, it is easy to cause the inner layer of the clothing to rub against the horizontal board, causing the inner layer of the clothing to be stained with dye. At the same time, it is also easy to cause friction marks on the pattern printed on the clothing, affecting the printing and dyeing effect. Summary of the invention
[0006] The purpose of the present invention is to provide a clothing design pattern printing and dyeing device and a method of use to solve the above-mentioned deficiencies in the prior art.
[0007] In order to achieve the above-mentioned purpose, the present invention provides the following technical solutions: a clothing design pattern printing and dyeing equipment and a method of use, comprising a base, a turntable is arranged on the base, a printing and dyeing pallet assembly for putting clothes on is fixed on the circumference of the turntable, a printing and dyeing mechanism is fixed on one side of the base, and the turntable drives the printing and dyeing pallet assembly to rotate on a path with three stations: a loading station, a printing and dyeing station and an unloading station; an overhead assembly and a stroke adjustment member are arranged on the printing and dyeing pallet assembly, and the stroke adjustment member is transmission-connected with the overhead assembly, and when the turntable drives the printing and dyeing pallet assembly to move from the printing and dyeing station to the unloading station, the stroke adjustment member passively drives the overhead assembly to suspend the clothes put on the printing and dyeing pallet assembly and the printing and dyeing pallet assembly.
[0008] As a further description of the above technical solution: a total of three printing and dyeing support plate assemblies are provided, and the three printing and dyeing support plate assemblies are fixed on the peripheral side of the turntable in a ring-shaped manner with equal angles.
[0009] As a further description of the above technical solution: the printing and dyeing support plate assembly includes a base plate, the tail end of the base plate is fixed to the peripheral side of the turntable through a connecting box, and rectangular grooves are symmetrically opened on both sides of the base plate.
[0010] As a further description of the above technical solution: the overhead component includes a rotating shaft, which is rotatably arranged in a rectangular groove, and a rectangular side plate is fixed on the rotating shaft, and an adjusting gear is fixedly sleeved on the end of the rotating shaft.
[0011] As a further description of the above technical solution: The stroke adjusting member includes two connecting socket seats and a U-shaped adjusting frame. The two connecting socket seats are symmetrically fixed on the connecting box. The U-shaped adjusting frame is slidably embedded on the connecting socket seats, and adjusting convex teeth are provided on the side frames of the U-shaped adjusting frame. The adjusting convex teeth are engaged with the adjusting gear. A contact rod is vertically fixed at the bottom of the U-shaped adjusting frame. An arc-shaped stroke groove for cooperating with the contact rod is formed on the base along the movement path from the printing station to the blanking station.
[0012] As a further description of the above technical solution: A support spring is arranged between the outer side of the connecting socket seat and the U-shaped adjusting frame, and the elastic force of the support spring is used to drive the U-shaped adjusting frame to move towards the base.
[0013] As a further description of the above technical solution: The printing mechanism includes an L-shaped frame. An electric control telescopic rod is fixed on the L-shaped frame, and a printing head for printing clothes is connected to the bottom end of the electric control telescopic rod.
[0014] As a further description of the above technical solution: A strip-shaped opening is formed at the front end of the substrate. A film covering assembly is arranged inside the connecting box, and a diaphragm is connected to the film covering assembly. The diaphragm passes through the strip-shaped opening to be sleeved on the substrate.
[0015] As a further description of the above technical solution: A stroke driving member is fixed at the end of the connecting box. The stroke driving member is in transmission connection with the film covering assembly. When the printing and supporting plate assembly moves from the blanking station to the feeding station, the stroke driving member passively drives the film covering assembly to switch the diaphragm sleeved on the surface of the substrate.
[0016] A using method of a clothing design pattern printing device, the printing device is the above-mentioned clothing design pattern printing device, and the using method includes the following steps:
[0017] Put the clothes to be printed with patterns on the printing and supporting plate assembly, and then drive the printing and supporting plate assembly to rotate to the working position of the printing mechanism through the turntable, and perform printing processing on the clothes sleeved on the printing and supporting plate assembly through the printing mechanism;
[0018] After printing is completed, drive the printing and supporting plate assembly to rotate to the blanking station for blanking through the turntable. When the printing and supporting plate assembly rotates, the stroke adjusting member passively drives the overhead assembly to space between the clothes sleeved on the printing and supporting plate assembly and the printing and supporting plate assembly.
[0019] In the above technical solution, a clothing design pattern printing device and a using method provided by the present invention have the following beneficial effects:
[0020] The clothing design pattern printing and dyeing equipment realizes that when the turntable drives the printing and dyeing pallet assembly to move from the printing and dyeing station to the blanking station by setting a stroke adjusting part and an overhead component, the stroke adjusting part passively drives the overhead component to lift the clothing sleeved on the printing and dyeing pallet assembly from the surface of the printing and dyeing pallet assembly, so that the clothing is not attached to the surface of the printing and dyeing pallet assembly, avoiding the adhesion of dyes to the inner side of the clothing when the clothing is taken off, and at the same time avoiding friction with the printing and dyeing pallet assembly when the clothing is taken off, so as to prevent traces from appearing on the printed pattern, significantly improving the printing and dyeing effect, and making it more convenient for the staff to take off the printed clothing. Description of the Drawings
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present invention, and those of ordinary skill in the art can also obtain other drawings based on these drawings.
[0022] Figure 1 Schematic diagram of the overall structure of a clothing design pattern printing and dyeing equipment provided by an embodiment of the present invention;
[0023] Figure 2 Schematic diagram of the state when the clothing on the printing and dyeing pallet assembly provided by the embodiment of the present invention is lifted from the printing and dyeing pallet assembly;
[0024] Figure 3 Normal state schematic diagram of the printing and dyeing pallet assembly provided by the embodiment of the present invention;
[0025] Figure 4 Schematic diagram of the structure of the stroke adjusting part provided by the embodiment of the present invention;
[0026] Figure 5 Schematic diagram of the structure of the substrate provided by the embodiment of the present invention;
[0027] Figure 6 Schematic diagram of the structure of the film covering assembly provided by the embodiment of the present invention;
[0028] Figure 7 Schematic diagram of the structure of the stroke driving part provided by the embodiment of the present invention.
[0029] Explanation of the reference numerals:
[0030] 1. Base; 2. Turntable; 3. Printing and dyeing carrier plate assembly; 31. Substrate; 32. Connection box; 33. Strip-shaped opening; 4. Printing and dyeing mechanism; 41. L-shaped frame; 42. Electric control telescopic rod; 43. Printing and dyeing head; 5. Overhead assembly; 51. Rectangular groove; 52. Rectangular side plate; 53. Rotating shaft; 54. Adjusting gear; 6. Stroke adjusting part; 61. Connecting sleeve seat; 62. U-shaped adjusting frame; 621. Adjusting convex teeth; 63. Abutting rod; 64. Supporting spring; 65. Arc-shaped stroke groove; 7. Film covering assembly; 71. Winding roller; 72. Unwinding roller; 73. Outlet; 74. Diaphragm; 8. Stroke driving part; 81. Gear box; 82. Driving bevel gear; 83. Adjusting shaft; 84. Driven bevel gear; 85. Tooth sleeve; 86. Arc-shaped gear ring. Detailed implementation mode
[0031] In order to enable those skilled in the art to better understand the technical solutions of the present invention, the present invention will be further introduced in detail below in conjunction with the accompanying drawings.
[0032] Please refer to Figures 1-7The embodiment of the present invention provides a technical solution: a clothing design pattern printing and dyeing device, comprising a base 1, a turntable 2 is arranged on the base 1, the turntable 2 is a truncated cone structure, which is rotatably arranged on the base 1, a printing and dyeing support plate assembly 3 for setting clothes is fixed on the peripheral side of the turntable 2, a printing and dyeing mechanism 4 is fixed on one side of the base 1, the printing and dyeing mechanism 4 is used to print and dye patterns on the clothes set on the printing and dyeing support plate assembly 3, and the turntable 2 drives the printing and dyeing support plate assembly 3 to rotate. There are three stations: a loading station, the loading station is used for the staff to set the clothes on the printing and dyeing support plate assembly 3, a printing and dyeing station, when the turntable 2 drives the printing and dyeing support plate assembly 3 to rotate, the printing and dyeing mechanism 4 can be used to print and dye patterns on the clothes set on the printing and dyeing support plate assembly 3, and a unloading station, the unloading station is used for the staff to The operator takes the clothes with completed printing and dyeing patterns off the printing and dyeing pallet assembly 3, a servo motor is embedded in the bottom of the base 1, and the servo motor is connected to the turntable 2 through a coupling, the servo motor is used to intermittently drive the turntable 2 to rotate, wherein the servo unit drives the turntable 2 to rotate 120° at a time, so as to realize intermittent switching of the printing and dyeing pallet assembly 3 between the loading station, the printing and dyeing station and the unloading station through the turntable 2; an overhead assembly 5 and a stroke adjustment member 6 are provided on the printing and dyeing pallet assembly 3, the stroke adjustment member 6 is connected to the overhead assembly 5, when the turntable 2 drives the printing and dyeing pallet assembly 3 to move from the printing and dyeing station to the unloading station, the stroke adjustment member 6 passively drives the overhead assembly 5 to suspend the clothes mounted on the printing and dyeing pallet assembly 3 and the printing and dyeing pallet assembly 3. That is, when the printing and dyeing of the clothes on the printing and dyeing pallet assembly 3 is completed, the printing and dyeing pallet assembly 3 is driven by the turntable 2 to rotate from the printing and dyeing station to the unloading station. At this time, the stroke adjustment member 6 passively drives the overhead assembly 5 to suspend the clothes on the printing and dyeing pallet assembly 3 and the printing and dyeing pallet assembly 3, so that the clothes are no longer attached to the surface of the printing and dyeing pallet assembly 3, avoiding the adhesion of dye to the surface of the printing and dyeing pallet assembly 3 during printing and dyeing, causing the dye to adhere to the inside of the clothes when the staff takes off the clothes again, and at the same time avoiding friction between the printing and dyeing pallet assembly 3 and the printing and dyeing pattern when the clothes are taken off.
[0033] The present embodiment provides a clothing design pattern printing and dyeing equipment, by setting a stroke adjustment member 6 and an overhead component 5, when the turntable 2 drives the printing and dyeing support plate component 3 to move from the printing and dyeing station to the unloading station, the stroke adjustment member 6 passively drives the overhead component 5 to suspend the clothes mounted on the printing and dyeing support plate component 3 and the printing and dyeing support plate component 3, so that the clothes are no longer attached to the surface of the printing and dyeing support plate component 3, avoiding dye adhesion to the inside of the clothes when taking off the clothes, and avoiding friction with the printing and dyeing support plate component 3 when taking off the clothes, thereby causing traces of the printed and dyed pattern, thereby significantly improving the printing and dyeing effect, and at the same time, it is more convenient for the staff to operate when taking off the printed and dyed clothes.
[0034] In another embodiment provided by the present invention, preferably, there are three printing pallet assemblies 3 in total, and the three printing pallet assemblies 3 are fixedly arranged at equal angles in a ring on the periphery of the turntable 2. That is, the angle between any two adjacent ones of the three printing pallet assemblies 3 is 120°. The turntable 2 drives the printing pallet assemblies 3 to perform intermittent switching between the loading station, the printing station and the unloading station, so that the three printing pallet assemblies 3 are respectively in the loading station, the printing station and the unloading station, that is, it is realized that loading, unloading and printing processing can be carried out synchronously at one stop, significantly improving the working efficiency.
[0035] In another embodiment provided by the present invention, the printing pallet assembly 3 includes a substrate 31. The tail end of the substrate 31 is fixed on the periphery of the turntable 2 through a connection box 32. Rectangular grooves 51 are symmetrically formed on both sides of the substrate 31. Among them, there are two sets of overhead assemblies 5, and the two sets of overhead assemblies 5 are correspondingly rotatably arranged in the rectangular grooves 51. The overhead assembly 5 includes a rotating shaft 53, the rotating shaft 53 is rotatably arranged in the rectangular groove 51, and a rectangular side plate 52 is fixed on the rotating shaft 53. An adjusting gear 54 is fixedly sleeved on the end of the rotating shaft 53. Among them, the overhead assembly 5 spaces the clothes sleeved on the printing pallet assembly 3 from the printing pallet assembly 3. That is, when the clothes are not attached to the surface of the printing pallet assembly 3, the rectangular side plates 52 on both sides of the substrate 31 are rotated from the horizontal state to the vertical state by driving the rotating shaft 53, so as to support the clothes through the two rectangular side plates 52, so that the clothes on the upper surface of the substrate 31 are in an overhead state and separated from the upper surface of the substrate 31. At the same time, it realizes synchronous support and lifting of the clothes on the surface of the substrate 31, that is, improves the stability of overhead, and at the same time reduces or even avoids friction between the clothes and the substrate 31 during support and overhead, resulting in traces on the printed patterns on the clothes due to friction.
[0036] In yet another embodiment provided by the present invention, the stroke adjustment member 6 includes two connecting socket seats 61 and a U-shaped adjustment frame 62. The two connecting socket seats 61 are symmetrically fixed on the connecting box 32. The U-shaped adjustment frame 62 is slidably embedded in the connecting socket seats 61, that is, the two side frames of the U-shaped adjustment frame 62 are respectively slidably embedded in the two connecting socket seats 61. And adjustment convex teeth 621 are provided on the side frames of the U-shaped adjustment frame 62. The adjustment convex teeth 621 are engaged with the adjustment gears 54. The adjustment convex teeth 621 on the two side frames of the U-shaped adjustment frame are respectively engaged with the adjustment gears 54 in the overhead assemblies 5 on both sides of the substrate 31. A contact rod 63 is vertically fixed to the bottom of the U-shaped adjustment frame 62. The bottom end of the contact rod 63 is in contact with the base 1. An arc-shaped stroke groove 65 for cooperating with the contact rod 63 is formed on the base 1 along the movement path from the printing station to the blanking station. The arc-shaped stroke groove 65 is located on the movement path of the contact rod 63. A support spring 64 is provided between the outer side of the connecting socket seat 61 and the U-shaped adjustment frame 62. And the elastic force of the support spring 64 is used to drive the U-shaped adjustment frame 62 to move towards the base 1. When the turntable 2 drives the printing pallet assembly 3 to rotate from the printing station to the blanking station, the contact rod 63 at the bottom end of the U-shaped adjustment frame 62 will move from the base 1 into the arc-shaped stroke groove 65. Under the action of the support spring 64, the U-shaped adjustment frame 62 will vertically move downwards towards the base 1 for a certain stroke. At this time, the adjustment convex teeth 621 on the two side frames of the U-shaped adjustment frame 62 cooperate with the adjustment gears 54 to drive the rotating shaft 53 to rotate. Finally, the rectangular side plates 52 are driven to rotate by the rotating shaft 53, so that the rectangular side plates 52 located on both sides of the substrate 31 rotate from the horizontal state to the vertical state, thereby supporting the clothes by the two rectangular side plates 52. That is, through the setting of the stroke adjustment member 6, it is realized that during the process of the turntable 2 driving the printing pallet assembly 3 to rotate from the printing station to the blanking station, the overhead assembly 5 is passively driven to lift the clothes sleeved on the printing pallet assembly 3 from the printing pallet assembly 3 without the need to set an external drive for cooperation and control, which is more convenient to operate, reduces costs, and improves the stability of the equipment operation.
[0037] Further, between the blanking station and the section of the arc-shaped stroke groove 65, when the turntable 2 drives the printing pallet assembly 3 to rotate away from the section of the arc-shaped stroke groove 65, the contact rod 63 at the bottom end of the U-shaped adjustment frame 62 will move from the arc-shaped stroke groove 65 to the base 1, thereby driving the U-shaped adjustment frame 62 to reset, so that the clothes sleeved on the printing pallet assembly 3 again can fit on its surface for subsequent printing operations.
[0038] In another embodiment provided by the present invention, the printing mechanism 4 includes an L-shaped frame 41. An electric control telescopic rod 42 is fixed on the L-shaped frame 41, and the bottom end of the electric control telescopic rod 42 is connected with a printing head 43 for printing clothes. When the printing mechanism 4 processes the printing pattern on the clothes sleeved on the printing pallet assembly 3, that is, the turntable 2 drives the printing pallet assembly 3 to rotate to the printing station. At this time, the positions of the printing head 43 and the printing pallet assembly 3 are corresponding up and down. The printing head 43 is driven by the electric control telescopic rod 42 to move downwards to realize the printing process on the clothes sleeved on the printing pallet assembly 3.
[0039] In another embodiment provided by the present invention, preferably, a strip-shaped opening 33 is formed at the front end of the substrate 31. A film covering assembly 7 is arranged inside the connection box 32, and a diaphragm 74 is connected to the film covering assembly 7. The diaphragm 74 passes through the strip-shaped opening 33 and is sleeved on the substrate 31. That is, the connection box 32 is of a rectangular box structure. The diaphragm 74 is wound around the middle of the film covering assembly 7 located in the connection box 32. The diaphragm 74 is laid on the surface of the substrate 31, passes through the strip-shaped opening 33, and then is wound back into the connection box 32, so as to cover the surface of the substrate 31 through the diaphragm 74. When printing and processing the clothes sleeved on the substrate 31, the dye adheres to the surface of the diaphragm 74. A stroke driving member 8 is fixed at the end of the connection box 32, and the stroke driving member 8 is in transmission connection with the film covering assembly 7. When the printing pallet assembly 3 moves from the blanking station to the loading station, the stroke driving member 8 passively drives the film covering assembly 7 to switch the diaphragm 74 sleeved on the surface of the substrate 31. Here, it should be noted that when printing a pattern on the clothes sleeved on the substrate 31, obviously the dye is likely to stain the substrate 31. Therefore, when taking off the clothes each time, it is also necessary to clean the dye stained on the substrate 31, which is troublesome to operate and affects the efficiency. By arranging the film covering assembly 7 in the connection box 32 to connect the diaphragm 74 to cover the surface of the substrate 31, and cooperating with the arrangement of the stroke driving member 8 in transmission connection with the film covering assembly 7, when the printing pallet assembly 3 moves from the blanking station to the loading station, the stroke driving member 8 passively drives the film covering assembly 7 to switch the diaphragm 74 sleeved on the surface of the substrate 31, so as to automatically passively switch the diaphragm 74 covering the surface of the substrate 31, so as to realize passively switching a new diaphragm 74 to cover the surface of the substrate 31, so that when loading, the staff can directly sleeve the clothes on the substrate 31 without cleaning the substrate 31, which is more convenient to use and further improves the working efficiency.
[0040] Preferably, the film covering assembly 7 includes a winding roller 71 and an unwinding roller 72. The winding roller 71 and the unwinding roller 72 are rotatably arranged on the connection box 32. An outlet 73 is formed on the surface of the connection box 32 located at the substrate 31. The diaphragm 74 is wound around the unwinding roller 72. The diaphragm 74 passes through the outlet 73 and is laid on the surface of the substrate 31, and the diaphragm 74 passes through the strip-shaped opening 33 and turns back to the inside of the connection box 32 and is connected with the winding roller 71.
[0041] The stroke driving member 8 includes a gear box 81 and an arc-shaped gear ring 86. The gear box 81 is fixed at one end of the connection box 32. A driving bevel gear 82 is rotatably arranged in the gear box 81. The driving bevel gear 82 is connected to the winding roller 71. A regulating shaft 83 is vertically and rotatably connected to the gear box 81. A transmission bevel gear 84 is fixedly sleeved on the regulating shaft 83. The transmission bevel gear 84 meshes with the driving bevel gear 82. A tooth sleeve 85 is fixedly sleeved at the bottom end of the regulating shaft 83. The arc-shaped gear ring 86 is fixed on the base 1 and is located on the movement path from the blanking station to the loading station. When the regulating shaft 83 moves to the section of the arc-shaped gear ring 86, the tooth sleeve 85 at the bottom end of the regulating shaft 83 meshes with the arc-shaped gear ring 86.
[0042] That is, when the turntable 2 drives the printing and dyeing pallet assembly 3 to rotate at the blanking station and move at the loading station, the arc-shaped gear ring 86 cooperates with the tooth sleeve 85 to drive the regulating shaft 83 to rotate. The regulating shaft 83 cooperates with the transmission bevel gear 84 to drive the driving bevel gear 82 to rotate. Then, the driving bevel gear 82 drives the winding roller 71 to rotate. Furthermore, the winding roller 71 rotates to traction the diaphragm 74 to move, and finally cooperates with the unwinding roller 72 to unwind to realize the passive switching of the diaphragm 74 on the surface of the substrate 31, so as to realize the passive switching of the new diaphragm 74 to cover the surface of the substrate 31, so that the staff can directly set the clothes on the substrate 31 during loading without cleaning the substrate 31.
[0043] Further, preferably, a rectangular channel is opened inside the substrate 31. The rectangular channel is communicated with the inside of the connection box 32. That is, the diaphragm 74 passes through the strip-shaped opening 33 and then returns to the connection box 32 through the rectangular channel and is connected to the winding roller 71. By opening a rectangular channel inside the substrate 31, the switched and wound film can be built inside the surface of the substrate 31 instead of being attached to the back of the substrate, thus significantly shortening the length of the diaphragm 74 adjusted during switching and reducing the loss of the diaphragm 74.
[0044] Another technical solution is provided in an embodiment of the present invention: a use method of a clothing design pattern printing and dyeing device. The printing and dyeing device is the above-mentioned clothing design pattern printing and dyeing device. The use method includes the following steps:
[0045] Set the clothing to be printed with patterns on the printing and dyeing pallet assembly 3, and then drive the printing and dyeing pallet assembly 3 to rotate to the working position of the printing and dyeing mechanism 4 through the turntable 2. That is, at this time, the printing and dyeing pallet assembly 3 is at the printing and dyeing station, and the clothing set on the printing and dyeing pallet assembly 3 is printed and dyed through the printing and dyeing mechanism 4; that is, the electric control telescopic rod 42 in the printing and dyeing mechanism 4 drives the printing head 43 to move down to realize the printing and dyeing process of the clothing set on the printing and dyeing pallet assembly 3.
[0046] After dyeing is completed, the turntable 2 drives the dyeing pallet assembly 3 to rotate to the blanking station for blanking. During the movement stroke of the dyeing pallet assembly 3 rotating to the blanking station, the stroke adjusting member 6 passively drives the overhead assembly 5 to lift the clothes sleeved on the dyeing pallet assembly 3 and the dyeing pallet assembly 3, so as to facilitate the operator to perform the feeding operation;
[0047] Furthermore, after blanking is completed, when the turntable 2 drives the dyeing pallet assembly 3 to rotate to the feeding station, the stroke driving member 8 passively drives the film covering assembly 7 to switch the diaphragm 74 sleeved on the surface of the substrate 31, and automatically passively switches the diaphragm 74 covering the surface of the substrate 31, so as to passively switch a new diaphragm 74 to cover the surface of the substrate 31. At this time, the operator can directly sleeve the clothes on the substrate 31.
[0048] Only some exemplary embodiments of the present invention have been described by way of illustration above. Undoubtedly, for those of ordinary skill in the art, the described embodiments can be modified in various different ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A clothing design pattern printing and dyeing device, comprising a base (1). A turntable (2) is arranged on the base (1). A printing and dyeing pallet assembly (3) for sleeving clothes is fixed on the circumferential side of the turntable (2). A printing and dyeing mechanism (4) is fixed on one side of the base (1), characterized in that: There are three stations on the rotation path of the turntable (2) driving the printing and dyeing pallet assembly (3): a loading station, a printing and dyeing station, and an unloading station; An overhead component (5) and a stroke adjusting component (6) are arranged on the printing and dyeing pallet assembly (3). The stroke adjusting component (6) is in transmission connection with the overhead component (5). When the turntable (2) drives the printing and dyeing pallet assembly (3) to move from the printing and dyeing station to the unloading station, the stroke adjusting component (6) passively drives the overhead component (5) to lift the clothes sleeved on the printing and dyeing pallet assembly (3) and the printing and dyeing pallet assembly (3); The printing and dyeing pallet assembly (3) includes a base plate (31). The tail end of the base plate (31) is fixed on the circumference side of the turntable (2) through a connection box (32). Rectangular grooves (51) are symmetrically arranged on both sides of the base plate (31); The overhead component (5) includes a rotating shaft (53). The rotating shaft (53) is rotatably arranged in the rectangular groove (51), and a rectangular side plate (52) is fixed on the rotating shaft (53). An adjusting gear (54) is fixedly sleeved on the end of the rotating shaft (53); The stroke adjusting component (6) includes two connecting socket seats (61) and a U-shaped adjusting frame (62). The two connecting socket seats (61) are symmetrically fixed on the connection box (32). The U-shaped adjusting frame (62) is slidably embedded on the connecting socket seats (61), and adjusting convex teeth (621) are arranged on the side frames of the U-shaped adjusting frame (62). The adjusting convex teeth (621) are meshed with the adjusting gear (54). A butting rod (63) is vertically fixed at the bottom of the U-shaped adjusting frame (62). An arc-shaped stroke groove (65) for cooperating with the butting rod (63) is arranged on the base (1) on the movement path from the printing and dyeing station to the unloading station; 2. The clothing design pattern printing and dyeing device according to claim 1, characterized in that There are three printing and dyeing pallet assemblies (3) in total, and the three printing and dyeing pallet assemblies (3) are fixed on the circumference side of the turntable (2) at equal angles in a ring shape; 3. The clothing design pattern printing and dyeing device according to claim 1, characterized in that A support spring (64) is arranged between the outer side of the connecting socket seat (61) and the U-shaped adjusting frame (62), and the elastic force of the support spring (64) is used to drive the U-shaped adjusting frame (62) to move towards the base (1); 4. The clothing design pattern printing and dyeing device according to claim 1, characterized in that The printing and dyeing mechanism (4) includes an L-shaped frame (41). An electric control telescopic rod (42) is fixed on the L-shaped frame (41), and a printing and dyeing head (43) for printing and dyeing clothes is connected to the bottom end of the electric control telescopic rod (42); 5. The clothing design pattern printing and dyeing device according to claim 1, characterized in that A strip-shaped opening (33) is arranged at the front end of the base plate (31). A film covering component (7) is arranged inside the connection box (32), and a diaphragm (74) is connected to the film covering component (7). The diaphragm (74) penetrates through the strip-shaped opening (33) to be sleeved on the base plate (31); 6. The clothing design pattern printing and dyeing device according to claim 5, characterized in that A stroke driving component (8) is fixed at the end of the connection box (32). The stroke driving component (8) is in transmission connection with the film covering component (7). When the printing and dyeing pallet assembly (3) moves from the unloading station to the loading station, the stroke driving component (8) passively drives the film covering component (7) to switch the diaphragm (74) sleeved on the surface of the base plate (31); 7. A method for using a clothing design pattern printing and dyeing device, the printing and dyeing device being the clothing design pattern printing and dyeing device according to any one of claims 1-6 above, characterized in that The usage method includes the following steps: Set the clothing to be printed with patterns on the printing pallet assembly (3), and then drive the printing pallet assembly (3) to rotate to the working position of the printing mechanism (4) through the turntable (2), and perform printing processing on the clothing set on the printing pallet assembly (3) through the printing mechanism (4); After printing is completed, drive the printing pallet assembly (3) to rotate to the blanking station for blanking through the turntable (2). When the printing pallet assembly (3) rotates, the stroke adjusting member (6) passively drives the overhead assembly (5) to space between the clothing set on the printing pallet assembly (3) and the printing pallet assembly (3).
Citation Information
Patent Citations
Short sleeve printing and dyeing device for garment processing
CN114645391A
Clothing processing short sleeve printing and dyeing system and printing and dyeing process
CN115352181A
Printing method based on circular machine
CN106894250A
Garment processing equipment and method
CN112848660A