A dyeing device for garment production
By introducing multi-stage tanks and stirring motors into the garment dyeing equipment, automatic quantitative input and uniform mixing of dyes are achieved, solving the problem of resource waste caused by cotton impurities and improving dyeing efficiency and uniformity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- QUANZHOU VOCATIONAL & TECH COLLEGE OF ECONOMY & TRADE
- Filing Date
- 2026-02-11
- Publication Date
- 2026-07-21
AI Technical Summary
In existing garment dyeing equipment, impurities such as cotton fibers settle in the dyeing liquid, preventing water from being recycled and causing a waste of resources.
The dyeing device adopts a structure including stairs, gantry frame, dyeing parts, stirring motor and multi-stage tank. The stirring motor drives the transmission rod to rotate, which, together with the rotation of the secondary tank and the central tank, realizes the automatic quantitative addition and mixing of dye, preventing impurity contamination. The automatic quantitative addition and mixing of dye is also achieved through buoyancy tank and pigment parts.
It achieves uniform mixing and separation of dyes, prevents resource waste, avoids the recycling of water resources, improves dyeing efficiency and uniformity, and reduces resource waste.
Smart Images

Figure CN121719040B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of garment dyeing technology, and in particular to a dyeing apparatus for garment production. Background Technology
[0002] In garment production, in order to meet market demand, garments need to be dyed. This usually involves soaking and dyeing the garments, printing them, and creating a dyeing or printing process that produces garments with regional dyeing characteristics.
[0003] Existing garment dyeing equipment involves immersing garments in a dyeing tank, waiting for the garments to fully absorb the dyeing liquid, and then removing them for dehydration and drying. However, existing garment dyeing equipment suffers from several drawbacks. The dyeing liquid is absorbed and carried out by the garments, and cotton fibers from the garments settle in the dyeing liquid, preventing the recycling of water resources and causing resource waste. Summary of the Invention
[0004] In view of the problems existing in the above or prior art, and the fact that cotton lint and other materials in clothing precipitate in the dyeing liquid, resulting in the inability to recycle water resources and causing resource waste, the present invention is proposed.
[0005] Therefore, the object of the present invention is to provide a dyeing apparatus for garment production.
[0006] As a preferred embodiment of the dyeing apparatus for garment production of the present invention, it includes: a staircase, a gantry frame disposed on the side wall of the staircase, and a dyeing component disposed at the lower part of the gantry frame;
[0007] The dyeing part includes a support frame disposed at the lower part of the gantry frame, a main tank disposed at the upper part of the support frame, a transmission rod disposed on the inner wall of the main tank, a limit strip disposed on the outer wall of the transmission rod, and a mating part disposed inside the main tank;
[0008] The mating component includes a secondary tank disposed inside the main tank, the secondary tank having a main water inlet, a limiting circular plate disposed on the upper part of the secondary tank, a linkage groove disposed on the limiting circular plate, and an active component disposed inside the secondary tank.
[0009] The active component includes a central tank with a secondary water inlet. A second annular plate is provided on the upper part of the central tank, and a linkage block is provided on the outer wall of the second annular plate.
[0010] In a preferred embodiment of the dyeing apparatus for garment production of the present invention, a workbench is provided at the upper part of the staircase, a second filter screen is provided on the inner wall of the secondary water inlet, and a garment support is provided inside the active component.
[0011] As a preferred embodiment of the dyeing device for garment production of the present invention, the dyeing part further includes a stirring motor disposed at the lower part of the transmission rod and a water inlet disposed at the upper part of the main tank. A water outlet is disposed at the lower part of the water inlet, a dehydration zone is disposed at the end of the water inlet, and a dyeing zone is disposed at the lower part of the dehydration zone.
[0012] As a preferred embodiment of the dyeing apparatus for garment production of the present invention, the mating components further include stirring blades disposed on the outer wall of the secondary tank, a first filter screen disposed on the inner wall of the main inlet, and a first annular plate disposed on the outer wall of the linkage tank. A fixing block is disposed on the outer wall of the first annular plate, and a connecting rod is disposed inside the fixing block.
[0013] In a preferred embodiment of the dyeing apparatus for garment production of the present invention, the garment support includes a sleeve rod disposed inside the central tank, the end face of the sleeve rod having an insertion groove, the lower part of the sleeve rod having an impurity collection plate, and the outer wall of the sleeve rod having multiple garment hanging parts.
[0014] In a preferred embodiment of the dyeing apparatus for garment production of the present invention, the garment hanging component includes an installation plate disposed on the outer wall of the sleeve rod, a main support plate disposed on the installation plate, a secondary support plate disposed at the lower part of the main support plate, a sliding groove provided on the side wall of the secondary support plate, a sliding plate disposed inside the sliding groove, an insertion head installed on the side wall of the sliding plate, a connecting rod disposed on the side wall of the sliding plate, a connecting post disposed at the end of the connecting rod, and a swinging component disposed at the end of the connecting post.
[0015] In a preferred embodiment of the dyeing device for garment production of the present invention, the swinging component includes a swinging rod disposed at the end of the connecting column, a rotating rod disposed at the upper part of the swinging rod, a counterweight disposed at the lower part of the swinging rod, and a limiting component disposed at the upper part of the slide groove.
[0016] In a preferred embodiment of the dyeing apparatus for garment production of the present invention, the limiting member includes an adjusting groove formed on the upper part of the slide groove, a groove plate is provided inside the adjusting groove, a fixing nut is provided on the side wall of the groove plate, and a pull-up member is provided on the upper part of the fixing nut.
[0017] In a preferred embodiment of the dyeing device for garment production of the present invention, the pulling member includes a first guide rail disposed on the upper part of the sleeve rod and a second guide rail disposed on the upper part of the connecting rod. The inner wall of the first guide rail is provided with a first guide block, and the side wall of the first guide block is provided with a first connecting block. The inner wall of the second guide rail is provided with a second guide block, and the side wall of the second guide block is provided with a second connecting block.
[0018] In a preferred embodiment of the dyeing apparatus for garment production of the present invention, the outer wall of the main tank is provided with a power component and a pigment component. The power component includes a buoyancy chamber disposed on the outer wall of the main tank, a float disposed inside the buoyancy chamber, a sealing plate and an adjusting plate disposed on the upper part of the float, and a main outlet opened on the adjusting plate. The pigment component includes a pigment chamber disposed on the upper part of the power component, an isolation plate disposed inside the pigment chamber, a secondary outlet opened on the isolation plate, multiple material holding plates disposed inside the pigment chamber, a discharge port disposed at the lower part of the pigment chamber, a discharge pipe disposed on the side wall of the discharge port, and a discharge pipe disposed on the side wall of the pigment chamber.
[0019] The beneficial effects of the dyeing device for garment production of the present invention are as follows: by utilizing the clockwise and counterclockwise rotation of the stirring motor in conjunction with the cooperation between the mating parts and the active parts, the device achieves the advantages of dehydrating the garment and isolating the dyeing liquid from dyeing impurities. Subsequently, by cooperating with the secondary tank and the central tank, the liquid level is raised by the device sinking to the inner wall of the main tank, thereby driving the parts inside the buoyancy chamber to move upward and cooperate with the pigment components to automatically and quantitatively add dye to the main tank. Then, the secondary tank moves downward and rotates, driving the stirring blades on the outer wall to fully mix the dyeing liquid. Attached Figure Description
[0020] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0021] Figure 1 This is a schematic diagram of the overall structure of a dyeing apparatus for garment production according to the present invention.
[0022] Figure 2 This is a schematic diagram of the workbench and gantry structure of a dyeing apparatus for garment production according to the present invention.
[0023] Figure 3 This is a schematic diagram of the structure of a dyeing part in a dyeing apparatus for garment production according to the present invention.
[0024] Figure 4 This is a schematic diagram of the stirring motor and transmission rod structure of a dyeing device for garment production according to the present invention.
[0025] Figure 5 This is a schematic diagram of the internal structure of the main tank of a dyeing apparatus for garment production according to the present invention.
[0026] Figure 6 This is a schematic diagram of the components of a dyeing apparatus for garment production according to the present invention.
[0027] Figure 7 This invention relates to a dyeing apparatus for garment production. Figure 6 A magnified structural diagram of region A in the middle.
[0028] Figure 8 This is a schematic diagram of the linkage tank structure of a dyeing device for garment production according to the present invention.
[0029] Figure 9 This is a schematic diagram of the internal structure of the secondary tank of a dyeing apparatus for garment production according to the present invention.
[0030] Figure 10 This invention relates to a dyeing apparatus for garment production. Figure 9 A magnified structural diagram of region B in the middle.
[0031] Figure 11 This is a schematic diagram of the sleeve connection structure of a dyeing device for garment production according to the present invention.
[0032] Figure 12 This is a cross-sectional view of the sleeve rod of a dyeing device for garment production according to the present invention.
[0033] Figure 13 This is a schematic diagram of the hanging component structure of a dyeing device for garment production according to the present invention.
[0034] Figure 14 This is a schematic diagram of the limiting component structure of a dyeing device for garment production according to the present invention.
[0035] Figure 15 This is a schematic diagram of the lifting component structure of a dyeing device for garment production according to the present invention.
[0036] Figure 16 This is a schematic diagram of the buoyancy chamber and pigment chamber of a dyeing device for garment production according to the present invention.
[0037] Figure 17 This is a schematic diagram of the internal structure of the buoyancy chamber and pigment chamber of a dyeing device for garment production according to the present invention.
[0038] The labels in the diagram represent: 1. Staircase; 11. Workbench; 12. Gantry; 2. Dyeing piece; 21. Support frame; 22. Main tank; 23. Stirring motor; 24. Transmission rod; 25. Limiting strip; 26. Water inlet; 27. Water outlet; 28. Dehydration zone; 29. Dyeing zone; 3. Fitting parts; 31. Secondary tank; 32. Stirring blades; 33. Main water inlet; 34. First filter screen; 35. Limiting circular plate; 36. Linkage groove; 37. First annular plate; 38. Fixing block; 39. Connecting rod; 4. Driving component; 41. Central tank; 42. Secondary water inlet; 43. Secondary filter screen; 44. Second annular plate; 45. Linkage block; 5. Garment support component; 51. Sleeve rod; 52. Insertion groove; 53. Impurity collection plate; 6. Garment hanging component; 61. Mounting plate; 62. Main support plate 63. Secondary support plate; 64. Slide groove; 65. Slide plate; 66. Insert head; 67. Connecting rod; 68. Connecting column; 7. Swinging component; 71. Swinging rod; 72. Rotating rod; 73. Counterweight; 8. Limiting component; 81. Adjusting groove; 82. Groove plate; 83. Fixing nut; 9. Pulling component; 91. First guide rail; 92. First guide block; 93. First connecting block; 94. Second guide rail; 95. Second guide block; 96. Second connecting block; 10. Power component; 101. Buoyancy chamber; 102. Float; 103. Sealing plate; 104. Adjusting plate; 105. Main outlet; 110. Pigment component; 1101. Pigment chamber; 1102. Isolation plate; 1103. Secondary outlet; 1104. Material holding plate; 1105. Discharge port; 1106. Injection pipe; 1107. Discharge pipe. Detailed Implementation
[0039] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0040] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.
[0041] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that is mutually exclusive with other embodiments.
[0042] Example 1, referring to Figures 1 to 17This is the first embodiment of the present invention. This embodiment provides a dyeing device for garment production, which can isolate cotton lint and impurities that occur during garment dyeing to prevent contamination of the dyeing liquid in the dyeing tank, avoid excessive waste of resources, and has the effect of automatically and quantitatively adding dye.
[0043] Specifically, it includes a staircase 1, a gantry frame 12 installed on the side wall of the staircase 1, and a dyeing piece 2 installed at the lower part of the gantry frame 12;
[0044] The dyeing part 2 includes a support frame 21 located at the lower part of the gantry frame 12, a main tank 22 located at the upper part of the support frame 21, a transmission rod 24 located on the inner wall of the main tank 22, a limit strip 25 located on the outer wall of the transmission rod 24, and a mating part 3 located inside the main tank 22.
[0045] The mating component 3 includes a secondary tank 31 disposed inside the main tank 22. The secondary tank 31 has a main water inlet 33. The main water inlet 33 has a first filter screen 34 disposed inside. The upper part of the secondary tank 31 is provided with a limiting circular plate 35. The limiting circular plate 35 has a linkage groove 36 disposed on it. The secondary tank 31 has an active component 4 disposed inside.
[0046] The active component 4 includes a central tank 41, a secondary water inlet 42 is provided on the central tank 41, a second annular plate 44 is provided on the upper part of the central tank 41, and a linkage block 45 is provided on the outer wall of the second annular plate 44.
[0047] Specifically, the dyeing component 2 also includes a stirring motor 23 located at the lower part of the transmission rod 24 and a water inlet 26 located at the upper part of the main tank 22. A water outlet 27 is located at the lower part of the water inlet 26, a dehydration zone 28 is located at the end of the water inlet 26, and a dyeing zone 29 is located at the lower part of the dehydration zone 28.
[0048] Specifically, the mating component 3 also includes a stirring blade 32 disposed on the outer wall of the secondary tank 31, a first filter screen 34 disposed on the inner wall of the main inlet 33, and a first annular plate 37 disposed on the outer wall of the linkage groove 36. A fixing block 38 is disposed on the outer wall of the first annular plate 37, and a connecting rod 39 is disposed inside the fixing block 38.
[0049] Specifically, the active component 4 also includes a second filter screen 43 disposed on the inner wall of the secondary inlet 42, and a clothing support component 5 is disposed inside the active component 4.
[0050] Specifically, the garment support component 5 includes a sleeve rod 51 disposed inside the central tank 41, an insertion groove 52 is provided on the end face of the sleeve rod 51, an impurity collection plate 53 is provided at the lower part of the sleeve rod 51, and multiple garment hanging parts 6 are provided on the outer wall of the sleeve rod 51.
[0051] Furthermore, the insertion groove 52 extends upward along the bottom surface of the sleeve rod 51, and the insertion groove 52 is slidably connected to the outer wall of the transmission rod 24, and is limited by the limiting strip 25 to rotate with the transmission rod 24. The impurity collection plate 53 is rotatably connected to the lower outer wall of the sleeve rod 51.
[0052] Specifically, the outer wall of the main tank 22 is provided with a power unit 10 and a pigment unit 110. The power unit 10 includes a buoyancy chamber 101 disposed on the outer wall of the main tank 22. A float 102 is disposed inside the buoyancy chamber 101. A sealing plate 103 and an adjusting plate 104 are disposed on the upper part of the float 102. A main outlet 105 is opened on the adjusting plate 104. The pigment unit 110 includes a pigment chamber 1101 disposed on the upper part of the power unit 10. An isolation plate 1102 is disposed inside the pigment chamber 1101. A secondary outlet 1103 is opened on the isolation plate 1102. Multiple material holding plates 1104 are disposed inside the pigment chamber 1101. A discharge port 1105 is disposed at the lower part of the pigment chamber 1101. A discharge pipe 1107 is disposed on the side wall of the discharge port 1105. A discharge pipe 1107 is disposed on the side wall of the pigment chamber 1101.
[0053] Furthermore, the side wall of staircase 1 is fixedly connected to the side wall of gantry frame 12, and the upper part of gantry frame 12 is higher than the upper part of staircase 1.
[0054] The support frame 21 is located below the middle of the gantry frame 12 and is vertically aligned. The lower outer wall of the main tank 22 is fixedly connected to the upper inner wall of the support frame 21. The stirring motor 23 is fixedly connected to the bottom surface of the main tank 22. The output end of the stirring motor 23 is fixedly connected to the bottom end of the transmission rod 24. The transmission rod 24 is located in the middle of the main tank 22 and is rotatably connected to the inner wall of the main tank 22. Two limiting strips 25 are fixedly connected to the outer wall of the transmission rod 24. The limiting strips 25 extend upward to the middle of the dehydration zone 28. The water inlet 26 is located in the upper part of the main tank 22 and is connected to the main tank 22. The water outlet 27 is located in the lower part of the main tank 22 and is connected to the water inlet 26. The dehydration zone 28 is located in the upper area of the inner wall of the main tank 22. The dyeing zone 29 is located in the lower area of the inner wall of the main tank 22 and is connected to the dyeing zone 29.
[0055] The lower inner wall of the secondary tank 31 is slidably connected to the transmission rod 24, and moves linearly along the inner wall of the main tank 22 by the limiting strip 25. Multiple rows of stirring blades 32 are fixedly installed at equal intervals on the outer wall of the secondary tank 31. A main water inlet 33 penetrating to the inner wall of the secondary tank 31 is opened between each two rows of stirring blades 32. The top surface of the secondary tank 31 is fixedly connected to the bottom surface of the limiting circular plate 35. Two linkage grooves 36 are opened on the top surface of the limiting circular plate 35. The first annular plate 37 is rotatably connected to the outer wall of the limiting circular plate 35. The fixing blocks 38 are symmetrically fixedly installed on the outer wall of the first annular plate 37. A connecting rod 39 is fixedly installed on the inner wall of each fixing block 38. The connecting rod 39 extends vertically upward.
[0056] The central tank 41 is rotatably connected to the inner wall of the secondary tank 31, and the bottom surface of the secondary tank 31 is in contact with the bottom surface of the inner wall of the central tank 41. The central tank 41 is provided with multiple secondary inlets 42 corresponding to the main inlet 33. Each main inlet 33 and secondary inlet 42 is provided with a first filter screen 34 and a second filter screen 43 respectively. The bottom surface of the second annular plate 44 is fixedly connected to the top surface of the central tank 41. The linkage block 45 is symmetrically fixedly connected to the outer wall of the second annular plate 44, and each linkage block 45 corresponds to a linkage groove 36. The linkage block 45 is slidably connected to the inner wall of the linkage groove 36.
[0057] The side wall of the buoyancy chamber 101 is fixedly connected to the outer wall of the main tank 22. The float 102 is slidably connected to the inner wall of the buoyancy chamber 101. The top surface of the float 102 is fixedly connected to the bottom surface of the sealing plate 103 and the adjusting plate 104. The top surfaces of the sealing plate 103 and the adjusting plate 104 are slidably connected to the inner wall of the buoyancy chamber 101. Both the sealing plate 103 and the adjusting plate 104 pass through the top plate of the buoyancy chamber 101 and the bottom plate of the pigment tank 1101 and are connected to the buoyancy chamber 101. The upper end of the adjusting plate 104 passes through the top plate of the pigment tank 1101 and is slidably connected to the pigment tank 1101. The initial position of the sealing plate 103 is the lower part of the side wall of the isolation plate 1102. The side wall of the adjusting plate 104 is provided with a main opening 105 that extends to the other side. The side wall of the main opening 105 is close to the side wall of the other isolation plate 1102, and the main opening 105 communicates with the secondary opening 1103 on the isolation plate 1102.
[0058] The bottom surface of the pigment tank 1101 is fixedly connected to the top surface of the buoyancy tank 101. A partition plate 1102 is symmetrically fixedly installed on the inner wall of the pigment tank 1101. Multiple secondary openings 1103 extending to the other side are provided on the side walls of both partition plates 1102. A material-holding plate 1104 is provided between every two adjacent secondary openings 1103 on the same partition plate 1102. The material-holding plate 1104, the side walls of the partition plate 1102, and the inner wall of the pigment tank 1101 are all connected. The components are fixedly connected to each other. The top surface of each material holding plate 1104 is provided with an inclined surface for the rapid flow of clothing dye. The lower part of the pigment tank 1101 is connected to the discharge port 1105. The side wall of the discharge port 1105 is connected to the injection pipe 1106. The other end of the injection pipe 1106 is connected to the interior of the main tank 22. The discharge pipe 1107 is connected to the upper side wall of the pigment tank 1101 and is used to inject clothing dye into the end near the sealing plate 103.
[0059] When using
[0060] Initial position: The mating part 3 and the active part 4 are located in the dehydration zone 28. After the garment is fed and the inner wall of the dyeing zone 29 is filled with water, the lower part of the garment support 5 is slidably connected to the upper part of the transmission rod 24.
[0061] The stirring motor 23 is activated, which drives the transmission rod 24 to rotate. The rotation of the transmission rod 24 causes the secondary tank 31, which is connected to its outer wall, to rotate counterclockwise. When the secondary tank 31 rotates counterclockwise, it causes the stirring blades 32, which are fixedly connected to its outer wall, to rotate, stirring and mixing the water and pigment inside the main tank 22, thus improving the mixing accuracy of the dyeing material and water. The rotation of the secondary tank 31 also drives the main water inlet 33 and the first filter screen 34 inside the main water inlet 33 to rotate. 1. The limiting circular plate 35 is rotated. The rotation of the limiting circular plate 35 causes the linkage groove 36 on its top surface to rotate. After the linkage groove 36 rotates to the diameter distance of the main water inlet 33, its other inner wall contacts the linkage block 45. Then, the linkage groove 36 drives the central tank 41 to rotate through the contact with the linkage block 45 and the rotation power. At this time, the secondary water inlet 42 on the central tank 41 and the main water inlet 33 on the secondary tank 31 are misaligned, forming the inner wall of the central tank 41 and the inner wall of the secondary tank 31 closed.
[0062] It should be noted that when the stirring motor 23 is rotating counterclockwise, the upper part of the central tank 41 moves indirectly through the linkage 45 to the upper limit circular plate 35 of the secondary tank within the linkage groove 36. The groove of the linkage groove 36 is arc-shaped and symmetrically opened on 35, and the linkage block 45 is completely fitted with the inner wall of the linkage groove 36. Therefore, when the linkage block 45 rotates counterclockwise within the linkage groove 36 according to the axis of the transmission shaft of 23, the linkage block 45 completely adheres to the inner wall of the linkage groove 36 due to rotational inertia, and drives the central tank 41 to rotate. This causes the secondary water inlet 42 on the central tank 41 to be misaligned with the main water inlet 33 on the secondary tank 31, thus sealing the inner wall of the central tank 41 and the inner wall of the secondary tank 31.
[0063] When the stirring motor 23 rotates clockwise, the linkage block 45, due to rotational inertia, completely adheres to the inner wall of the other side of the linkage groove 36, and drives the central tank 41 to rotate. As a result, the secondary water inlet 42 on the central tank 41 coincides with the main water inlet 33 on the secondary tank 31, forming a connection between the inner wall of the central tank 41 and the inner wall of the secondary tank 31.
[0064] Since the first annular plate 37 is rotatably connected to the outer wall of the limiting circular plate 35, the first annular plate 37 does not rotate when the limiting strip 25 rotates.
[0065] As the secondary tank 31 and the central tank 41 rotate and descend along the inner wall of the main tank 22, the water level inside the main tank 22 continues to rise due to the pressure exerted by the secondary tank 31 and the central tank 41.
[0066] At this time, since the inside of the buoyancy chamber 101 is connected to the inside of the main tank 22, the float 102 is always level with the water surface inside the main tank 22.
[0067] When the water level inside the main tank 22 rises, the buoyancy chamber 101 is connected to the inside of the main tank 22, so the water level inside the buoyancy chamber 101 rises synchronously due to the principle of communicating vessels. This causes the water level inside the buoyancy chamber 101 to drive the float 102 to move upward along the inner wall. The rising float 102 drives the sealing plate 103 and the adjusting plate 104 on its top surface to rise. When the sealing plate 103 rises, the side ends of the two bottom material holding plates 1104 are sealed, and the secondary opening 1103 of the isolation plate 1102 at the other end is connected to the main opening 105. This allows the pigment between the two material holding plates 1104 to flow into the inner wall of the discharge port 1105 along the connected secondary opening 1103 and the main opening 105. It then flows into the inner wall of the injection pipe 1106 and into the inside of the main tank 22 to mix with the water. At the same time, the rotation of the stirring blade 32 mixes the clothing dye with the water.
[0068] It should be noted that as the secondary tank 31 and the central tank 41 continuously penetrate the water in the main tank 22, the water level on the inner wall of the main tank 22 continuously rises. At this time, the sealing plate 103 continuously rises and rises along the side wall of the isolation plate 1102 to seal the garment dye between the two material holding plates 1104 to prevent the dye from continuously flowing in. At the same time, the main opening 105 on the side wall of the adjusting plate 104 on the opposite side rises and opens the outlet between the material holding plates 1104 in turn, allowing the dye to flow into the inner wall of the outlet 1105. This ensures that each time the inner wall of the main tank 22 rises, dye can be automatically and quantitatively added to the inside of the main tank 22 to come into contact with the water. At the same time, the liquid surface is continuously stirred, so that the dye is evenly mixed.
[0069] After the secondary tank 31 and the central tank 41 are completely submerged in the water inside the main tank 22, the stirring motor 23 is started. The stirring motor 23 drives the secondary tank 31 to rotate clockwise. At this time, due to inertia and water surface resistance, the central tank 41 and the linkage block 45 will not completely follow the rotation of the secondary tank 31, thus causing the secondary tank 31 and the central tank 41 to undergo relative displacement. When the linkage block 45 rotates to the inner wall of the other side of the linkage groove 36, the secondary water inlet 42 on the central tank 41 coincides with the main water inlet 33 on the secondary tank 31. At this time, the interior of the central tank 41 is connected to the interior of the main tank 22, so that the dyeing liquid that has been thoroughly stirred and mixed inside the main tank 22 enters the interior of the central tank 41 and dyes the clothing.
[0070] Because the dyeing solution is stirred evenly before being sent into the central tank 41 to come into contact with the garment, uneven dyeing of the garment is avoided due to the dyeing solution not being stirred evenly before coming into contact with the garment.
[0071] As the garment support 5 moves downward, it rotates along with the mating part 3 and the driving part 4, and the sleeve rod 51 continues to move downward until the bottom surface of the impurity collection plate 53 contacts the top surface of the inner wall of the central tank 41.
[0072] Example 2, refer to Figure 1 , Figures 13 to 15 This is the second embodiment of the present invention, which provides the advantage of preventing garments from wrinkling in the dyeing tank, thus affecting dyeing accuracy and efficiency.
[0073] Specifically, a workbench 11 is provided at the top of staircase 1.
[0074] Furthermore, the bottom surface of the workbench 11 is fixedly connected to the top surface of the staircase 1, and corresponds to the middle of the dehydration zone 28.
[0075] Specifically, the garment hanging component 6 includes a mounting plate 61 disposed on the outer wall of the sleeve rod 51. A main support plate 62 is disposed on the mounting plate 61. A secondary support plate 63 is disposed at the lower part of the main support plate 62. A groove 64 is provided on the side wall of the secondary support plate 63. A sliding plate 65 is disposed inside the groove 64. An insertion head 66 is installed on the side wall of the sliding plate 65. A connecting rod 67 is disposed on the side wall of the sliding plate 65. A connecting post 68 is disposed at the end of the connecting rod 67. A swinging component 7 is disposed at the end of the connecting post 68.
[0076] Specifically, the swinging component 7 includes a swinging rod 71 disposed at the end of the connecting column 68, a rotating rod 72 disposed at the upper part of the swinging rod 71, a counterweight block 73 disposed at the lower part of the swinging rod 71, and a limiter 8 disposed at the upper part of the slide groove 64.
[0077] Specifically, the limiting member 8 includes an adjusting groove 81 opened on the upper part of the slide 64, a groove plate 82 is provided inside the adjusting groove 81, a fixing nut 83 is provided on the side wall of the groove plate 82, and a pull-up member 9 is provided on the upper part of the fixing nut 83.
[0078] Furthermore, the side wall of the mounting plate 61 is fixedly connected to the outer wall of the sleeve rod 51. A main support plate 62 is connected to the bottom surface of each mounting plate 61. The bottom surface of the main support plate 62 is fixedly connected to the top surface of the secondary support plate 63. A sliding groove 64 is symmetrically opened on the side wall of each secondary support plate 63. A sliding plate 65 is slidably connected to the inner wall of each sliding groove 64. The side wall of each sliding plate 65 is fixedly connected to an insertion head 66. The side wall of each sliding plate 65 is fixedly connected to one end of a connecting rod 67. The other end of each connecting rod 67 is rotatably connected to one end of a connecting post 68.
[0079] Each secondary support plate 63 has a swing rod 71 embedded in its side wall. The top of each swing rod 71 is fixedly connected to a rotating rod 72. The rotating rod 72 is rotatably connected to the inner wall of the swing rod 71. The bottom surface of each swing rod 71 is fixedly connected to the top surface of a counterweight 73.
[0080] When using
[0081] Clothing loading: At this point, put a garment on each secondary support plate 63, and then ensure that the garment does not fall off;
[0082] When the stirring motor 23 drives the mating parts 3, the driving parts 4 and the garment support parts 5 to rotate, the garment hanging parts 6 will rotate along with it. As the garment hanging parts 6 rotates, the garments on them will also rotate. This rotation will make the dyeing of the garments more even and avoid wrinkles caused by stirring, which will affect the dyeing efficiency.
[0083] It should be noted that when the swinging component 7 revolves around the garment support component 5, the lower rotating rod 72 is displaced due to centrifugal force, which causes the swinging rod 71 to deflect at an angle along the side wall of the secondary support plate 63 with the rotating rod 72 as the center, and simultaneously increases the support area of the secondary support plate 63, thus stretching the garment to prevent wrinkles.
[0084] To adjust the elasticity and wrinkle resistance of the garment, the slot plate 82 is rotated to release the fixation of the slot plate 82. Then, the position of the slot plate 82 and the adjustment groove 81 is adjusted so that the side wall of the slot plate 82 corresponds to the insertion head 66. After the position of the slot plate 82 on the inner wall of the adjustment groove 81 is adjusted, the position of the slot plate 82 on the inner wall of the adjustment groove 81 is fixed by the fixing nut 83. Then, when the swing rod 71 rotates, it drives 69 to rotate. The other end of the connecting post 68 is slidably connected to the inner wall of the swing rod 71, and the sliding groove is provided with a limit to ensure that it does not detach from the connection of the swing rod 71. Then, the position change of the connecting post 68 drives the connecting rod 67 and the sliding plate 65 connected to the connecting rod 67 to slide along the inner wall of the sliding groove 64. When the insertion head 66 slides and contacts the slot plate 82, the sliding stops and the angle change of the swing rod 71 is limited.
[0085] Example 3, referring to Figures 1 to 16 This is the second embodiment of the present invention. Unlike the previous embodiment, this embodiment provides a method for preliminary dehydration of clothing after dyeing is completed by using a drive source to rotate clockwise and counterclockwise, which further reduces resource waste.
[0086] Specifically, the lifting component 9 includes a first guide rail 91 disposed on the upper part of the sleeve rod 51 and a second guide rail 94 disposed on the upper part of the connecting rod 39. The inner wall of the first guide rail 91 is provided with a first guide block 92, and the side wall of the first guide block 92 is provided with a first connecting block 93. The inner wall of the second guide rail 94 is provided with a second guide block 95, and the side wall of the second guide block 95 is provided with a second connecting block 96.
[0087] Furthermore, the top of the first guide rail 91 is fixedly connected to the bottom surface of the gantry frame 12, the first guide block 92 is slidably connected to the side wall of the first guide rail 91, the side wall of the first guide block 92 is fixedly connected to the side wall of the first connecting block 93, and the upper end of the sleeve rod 51 is rotatably connected to the inner wall of the first connecting block 93. Each connecting rod 39 is provided with a second guide rail 94 at its upper part. The top surface of the second guide rail 94 is fixedly connected to the bottom surface of the gantry frame 12, the second guide block 95 is slidably connected to the side wall of the second guide rail 94, the side wall of the second guide rail 94 is fixedly connected to the side wall of the second guide block 95, and the bottom surface of the second guide block 95 is fixedly connected to the top surface of the connecting rod 39.
[0088] When using
[0089] Lifting and lowering: The first guide rail 91 and the second guide rail 94, the first guide block 92 and the second guide block 95 respectively drive the first connecting block 93 and the second connecting block 96, whose side walls are fixedly connected to each other, to lift and lower.
[0090] When it is necessary to lower the secondary tank 31 and the sleeve rod 51, the first guide rail 91 and the second guide rail 94 are used to run the lowering procedure.
[0091] When it is necessary to lift and unload the dyed garments:
[0092] At this time, the first guide rail 91 and the second guide rail 94 are running. Then, the mating parts 3, the active parts 4, the clothing support parts 5, the hanging parts 6, the swing parts 7 and the limiting parts 8 move upward. When they rise to the position of the dehydration zone 28, the stirring motor 23 rotates clockwise. The operation of the stirring motor 23 drives the transmission rod 24 to rotate. The rotation of the secondary tank 31 drives the main water inlet 33 and the first filter screen 34 inside the main water inlet 33 to rotate. The secondary tank 31 drives the limiting circular plate 35 to rotate. The rotation of the limiting circular plate 35 drives the linkage groove 36 on its top surface to rotate. After the linkage groove 36 rotates the diameter distance of the main water inlet 33, it returns to the initial position of being in contact with the linkage block 45. Then, the linkage groove 36 drives the central tank 41 to rotate through the contact with the linkage block 45 and the power of rotation. At this time, the secondary water inlet 42 on the central tank 41 is connected to the main water inlet 33 on the secondary tank 31, forming a connection between the inner wall of the central tank 41 and the inner wall of the secondary tank 31.
[0093] At this time, the liquid inside the secondary tank 31 and the central tank 41 flows along the secondary inlet 42 to the inner wall of the main inlet 33 and then to the inner wall of the main tank 22. Impurities and lint are intercepted by the second filter screen 43 and fall to the top surface of the impurity collection plate 53 along with the liquid inside. During the continuous rotation, the liquid in the garment is thrown out and flows into the inner wall of the main tank 22 together.
[0094] At this time, the stirring motor 23 stops running, and then the first guide rail 91 is run again, only moving the garment support 5 upward. The upward movement of the garment support 5 causes the hanging part 6, the swinging part 7 and the limiting part 8 to move upward. At this time, the garment can be removed and replaced with the garment that needs to be dyed. At the same time, the lint left on the top surface of the impurity collection plate 53 can be cleaned.
[0095] Since impurities are filtered and collected, there is no need to frequently change the dyeing solution in the main tank 22; only the dyeing agent needs to be added.
[0096] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.
Claims
1. A dyeing apparatus for garment production, characterized in that: Includes a staircase (1), a gantry frame (12) installed on the side wall of the staircase (1), and a dyed piece (2) installed at the bottom of the gantry frame (12); wherein, The dyeing part (2) includes a support frame (21) located at the lower part of the gantry frame (12), a main tank (22) is located on the upper part of the support frame (21), a transmission rod (24) is located on the inner wall of the main tank (22), a stirring motor (23) is located on the bottom surface of the main tank (22), the output end of the stirring motor (23) is fixedly connected to the bottom end of the transmission rod (24), a limit strip (25) is located on the outer wall of the transmission rod (24), and a mating part (3) is located inside the main tank (22); wherein, The mating component (3) includes a secondary tank (31) disposed inside the main tank (22). The lower inner wall of the secondary tank (31) is slidably connected to the transmission rod (24). Multiple rows of stirring blades (32) are fixedly installed at equal intervals on the outer wall of the secondary tank (31). A main water inlet (33) is provided on the secondary tank (31). A first filter screen (34) is disposed inside the main water inlet (33). A limiting circular plate (35) is provided on the upper part of the secondary tank (31). Two linkage grooves (36) are provided on the limiting circular plate (35). An active component (4) is disposed inside the secondary tank (31). The active component (4) includes a central tank (41), which is rotatably connected to the inner wall of the secondary tank (31). The central tank (41) is provided with a secondary water inlet (42). A second annular plate (44) is provided on the upper part of the central tank (41). A linkage block (45) is provided on the outer wall of the second annular plate (44). Each linkage block (45) corresponds to a linkage groove (36). The linkage block (45) is slidably connected to the inner wall of the linkage groove (36). The bottom surface of the secondary tank (31) is in contact with the bottom surface of the inner wall of the central tank (41), and multiple secondary inlets (42) are opened on the central tank (41) in correspondence with the main inlet (33). The outer wall of the main tank (22) is provided with a power component (10) and a pigment component (110). The power component (10) includes a buoyancy chamber (101) disposed on the outer wall of the main tank (22). A float (102) is disposed inside the buoyancy chamber (101). A sealing plate (103) and an adjusting plate (104) are disposed on the upper part of the float (102). A main opening (105) is provided on the adjusting plate (104). The pigment component (110) includes a pigment component disposed on the upper part of the power component (10). The pigment bin (1101) has an internal partition plate (1102) and a secondary opening (1103) on the partition plate (1102). The pigment bin (1101) also has multiple material holding plates (1104) inside. The pigment bin (1101) has a discharge port (1105) at the bottom and a discharge pipe (1107) on the side wall of the discharge port (1105). The pigment bin (1101) also has a discharge pipe (1107) on the side wall.
2. The dyeing apparatus for garment production according to claim 1, characterized in that: The upper part of the staircase (1) is provided with a workbench (11), the inner wall of the secondary water inlet (42) is provided with a second filter screen (43), and the inside of the active component (4) is provided with a clothing support component (5).
3. The dyeing apparatus for garment production according to claim 2, characterized in that: The dyed part (2) also includes a water inlet (26) located on the upper part of the main tank (22), a water outlet (27) located at the lower part of the water inlet (26), a dehydration zone (28) located at the end of the water inlet (26), and a dyeing zone (29) located at the lower part of the dehydration zone (28).
4. The dyeing apparatus for garment production according to claim 3, characterized in that: The mating component (3) also includes a stirring blade (32) disposed on the outer wall of the secondary tank (31), a first filter screen (34) disposed on the inner wall of the main inlet (33), and a first annular plate (37) disposed on the outer wall of the linkage groove (36). A fixing block (38) is disposed on the outer wall of the first annular plate (37), and a connecting rod (39) is disposed inside the fixing block (38).
5. The dyeing apparatus for garment production according to claim 4, characterized in that: The garment support (5) includes a sleeve (51) disposed inside the central tank (41), the end face of the sleeve (51) is provided with an insertion groove (52), the lower part of the sleeve (51) is provided with an impurity collection plate (53), and the outer wall of the sleeve (51) is provided with multiple garment hanging pieces (6).
6. The dyeing apparatus for garment production according to claim 5, characterized in that: The garment hanging component (6) includes an installation plate (61) disposed on the outer wall of the sleeve rod (51). A main support plate (62) is disposed on the installation plate (61). A secondary support plate (63) is disposed at the lower part of the main support plate (62). A sliding groove (64) is provided on the side wall of the secondary support plate (63). A sliding plate (65) is disposed inside the sliding groove (64). An insertion head (66) is installed on the side wall of the sliding plate (65). A connecting rod (67) is disposed on the side wall of the sliding plate (65). A connecting post (68) is disposed at the end of the connecting rod (67). A swinging component (7) is disposed at the end of the connecting post (68).
7. The dyeing apparatus for garment production according to claim 6, characterized in that: The swinging component (7) includes a swinging rod (71) disposed at the end of the connecting column (68), a rotating rod (72) is disposed on the upper part of the swinging rod (71), a counterweight (73) is disposed on the lower part of the swinging rod (71), and a limiting component (8) is disposed on the upper part of the slide groove (64).
8. The dyeing apparatus for garment production according to claim 7, characterized in that: The limiting member (8) includes an adjustment groove (81) opened on the upper part of the slide groove (64), a slot plate (82) is provided inside the adjustment groove (81), a fixing nut (83) is provided on the side wall of the slot plate (82), and a pull-up member (9) is provided on the upper part of the fixing nut (83).
9. The dyeing apparatus for garment production according to claim 8, characterized in that: The lifting member (9) includes a first guide rail (91) disposed on the upper part of the sleeve rod (51) and a second guide rail (94) disposed on the upper part of the connecting rod (39). The inner wall of the first guide rail (91) is provided with a first guide block (92), the side wall of the first guide block (92) is provided with a first connecting block (93), the inner wall of the second guide rail (94) is provided with a second guide block (95), and the side wall of the second guide block (95) is provided with a second connecting block (96).