Woolen sweater shrink-proof finishing device
By designing a wool sweater anti-shrinkage finishing device with box rack and cavity structure, using components such as servo motors and filter racks, the problem of difficult to recycle and utilize anti-shrinkage liquid in the wool sweater is solved, and efficient recycling of anti-shrinkage liquid and effective utilization of resources are achieved, reducing environmental pollution.
Patent Information
- Application Number
- CN202422457023.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-11
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-10-11
AI Technical Summary
When the existing anti-shrinkage finishing device of the wool sweater is used, the anti-shrinkage liquid remaining on the wool sweater is difficult to recycle, resulting in waste of resources and environmental pollution.
A wool sweater anti-shrinkage finishing device including box rack, cavity A and cavity B is designed. The servo motor, electric telescopic rod, cylinder, rubber block and filter rack are used to realize the recycling and filtration of anti-shrinkage liquid. Through the soaking and filter structure of multiple cavitys, the liquid utilization rate is improved and waste wires are prevented from entering the cavity.
It realizes efficient recycling and utilization of anti-shrinkage liquid in wool sweaters, improves the utilization rate of anti-shrinkage liquid, and reduces resource waste and environmental pollution.
Smart Images

Figure CN223163620U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of woolen sweater processing, and particularly relates to a woolen sweater shrink-proof finishing device. Background Art
[0002] A woolen sweater is a knitted sweater made of wool, and is usually regarded as a synonym for knitted woolen sweaters or wool knitted products. A woolen sweater not only refers to a knitted sweater made of wool, but also generally refers to all fabrics woven from yarns spun mainly from animal hair fibers such as wool, cashmere, and rabbit hair. For example, rabbit hair sweaters, Corriedale sweaters, acrylic sweaters, etc. all belong to the category of woolen sweaters. Woolen sweaters are soft, comfortable, warm, etc., and are suitable for wearing in autumn and winter.
[0003] However, when the existing woolen sweater shrink-proof finishing device is in use, it usually soaks the woolen sweater with a shrink-proof liquid so that the woolen sweater can be shrink-proof finished. However, after the woolen sweater is soaked in the shrink-proof liquid and finished, the staff directly takes out the woolen sweater, and the shrink-proof liquid remaining on the woolen sweater will drip outside, causing waste of resources and environmental pollution at the same time. Therefore, a woolen sweater shrink-proof finishing device is provided. Summary of the Utility Model
[0004] The main purpose of the utility model is to provide a woolen sweater shrink-proof finishing device. By setting a driving frame, a cylinder, a lead screw, a servo motor, an electric telescopic rod, a fixed frame, a rubber block, a filter screen frame A and a filter screen frame B, the utility model solves the problem that the existing woolen sweater shrink-proof finishing device is inconvenient to recycle the shrink-proof liquid remaining on the woolen sweater when in use.
[0005] The technical solution adopted by the utility model to solve its technical problems is a woolen sweater shrink-proof finishing device, which includes a box frame. Inside the box frame, there are a cavity A and a cavity B for shrink-proof finishing of the woolen sweater, and the cavity A is located on the left side of the cavity B. The outside of the box frame is bolted with a machine frame, and the outside of the machine frame is bolted with a servo motor for providing power. The power output end of the servo motor is key-connected with a threaded rod. The outside of the threaded rod is threadedly connected with a driving sleeve, and the outside of the driving sleeve is screwed and fixed with a fixed frame. The lower part of the fixed frame is screwed and fixed with an electric telescopic rod for providing power, and the end of the electric telescopic rod far away from the fixed frame is screwed and fixed with a connecting frame. The bottom of the connecting frame is screwed and fixed with a hook for fixing the woolen sweater. Inside the fixed frame, there is a cylinder for providing power bolted, and the power output end of the cylinder is screwed and fixed with a driving frame. Inside the driving frame, there is a rubber block for removing the liquid on the woolen sweater screwed and fixed. Inside the cavity A, there is a filter screen frame A for filtering the liquid entering the cavity A screwed and fixed. Inside the cavity B, there is a filter screen frame B for filtering and processing the liquid entering the cavity B screwed and fixed.
[0006] By adopting the above technical solution, when anti-shrinking finishing is to be carried out on a woolen sweater, first hang the woolen sweater on the hook inside the connecting frame, and then the external controller makes the electric telescopic rod inside the fixing frame drive the connecting frame to move. Then the connecting frame drives the woolen sweater into chamber A in the box frame. The hydrogen peroxide with a concentration of ml / L and a temperature of ℃ in chamber A soaks the woolen sweater for minutes, enabling the woolen sweater to obtain good felting resistance. Then the electric telescopic rod is driven by the external controller to drive the woolen sweater in the connecting frame out of chamber A. Then the servo motor outside the machine frame is driven by the external controller to drive the threaded rod to rotate, and the driving sleeve outside the threaded rod is driven by the external limiting structure to drive the fixing frame to move, so that the connecting frame at the bottom of the fixing frame drives the woolen sweater to move above chamber B. Subsequently, the electric telescopic rod drives the woolen sweater on the connecting frame into chamber B. Then the enzyme HAP dosage of.%, and the liquid with a temperature of ℃ in chamber B soaks the woolen sweater, reducing the strong force damage suffered by the woolen sweater and making the woolen sweater more durable, thus facilitating the anti-shrinking finishing operation of the woolen sweater;
[0007] When the soaking of the woolen sweater in chamber A ends, the electric telescopic rod is driven by the external controller to drive the woolen sweater in the connecting frame out of chamber A. Then the servo motor outside the machine frame is driven by the external controller to drive the threaded rod to rotate, and the driving sleeve outside the threaded rod is driven by the external limiting structure to drive the fixing frame to move, so that the connecting frame at the bottom of the fixing frame drives the woolen sweater to move above filter screen frame A. Then the air cylinder inside the fixing frame is driven by the external controller to drive the driving frame to move, and then the rubber block on the driving frame presses the surface of the woolen sweater, enabling the excess liquid on the woolen sweater to be removed. At the same time, when the soaking of the woolen sweater in chamber B ends, the electric telescopic rod drives the woolen sweater on the connecting frame out of chamber B. Then the driving sleeve outside the threaded rod drives the fixing frame to move, so that the electric telescopic rod below the fixing frame drives the woolen sweater on the connecting frame to move above filter screen frame B. Subsequently, the air cylinder inside the fixing frame drives the driving frame to move, so that the rubber block on the driving frame presses the surface of the woolen sweater, enabling the excess liquid on the woolen sweater to be removed, enabling the anti-shrinking liquid on the woolen sweater to enter the interiors of chamber A and chamber B in sequence, improving the utilization rate of the anti-shrinking liquid in chamber A and chamber B;
[0008] When the liquid on the woolen sweater enters filter screen frame A and filter screen frame B in sequence, filter screen frame A and filter screen frame B filter the liquid, preventing the waste silk on the woolen sweater from entering the interiors of chamber A and chamber B, thereby improving the quality of the anti-shrinking liquid in chamber A and chamber B.
[0009] Specifically, connecting sleeves are symmetrically clamped inside the fixing frame, and a support rod for stabilizing the movement of the fixing frame is slidably connected inside the connecting sleeve.
[0010] By adopting the above technical solution, when the fixing frame moves inside the machine frame, the connecting sleeve on the fixing frame slides outside the support rod, improving the stability of the movement of the fixing frame inside the machine frame.
[0011] Specifically, a fixed pipe A for discharging the liquid in chamber A is inserted at the bottom end outside the box frame.
[0012] By adopting the above technical solution, when replacing the liquid in chamber A, open the fixed pipe A outside the box frame to discharge the liquid in chamber A, thereby facilitating the replacement of the liquid in chamber A.
[0013] Specifically, a fixed pipe B for discharging the liquid in chamber B is inserted at the bottom end outside the box frame.
[0014] By adopting the above technical solution, when replacing the liquid in chamber B, open the fixed pipe B outside the box frame to discharge the liquid in chamber B, thereby facilitating the replacement of the liquid in chamber B.
[0015] Specifically, the input ends of the cylinder, the electric telescopic rod and the servo motor are all electrically connected to the power supply end of an external power supply.
[0016] By adopting the above technical solution, by connecting to an external power supply, the electrical equipment works normally.
[0017] Advantages of the utility model:
[0018] (1) For the wool sweater shrinkage prevention and finishing device of the utility model, after the wool sweater is soaked in chamber A, the electric telescopic rod drives the wool sweater in the connecting frame to move out of chamber A under the action of an external controller. Then, the servo motor outside the frame drives the threaded rod to rotate under the action of the external controller. The driving sleeve outside the threaded rod drives the fixed frame to move under the action of an external limiting structure, so that the connecting frame at the bottom of the fixed frame drives the wool sweater to move above the filter screen frame A. Then, the cylinder in the fixed frame drives the driving frame to move under the action of the external controller. Then, the rubber block on the driving frame presses the surface of the wool sweater to remove the excess liquid on the wool sweater. At the same time, after the wool sweater is soaked in chamber B, the electric telescopic rod drives the wool sweater on the connecting frame to move out of chamber B. Then, the driving sleeve outside the threaded rod drives the fixed frame to move, so that the electric telescopic rod below the fixed frame drives the wool sweater on the connecting frame to move above the filter screen frame B. Subsequently, the cylinder in the fixed frame drives the driving frame to move, so that the rubber block on the driving frame presses the surface of the wool sweater to remove the excess liquid on the wool sweater, enabling the shrinkage prevention liquid on the wool sweater to enter chambers A and B in sequence, improving the utilization rate of the shrinkage prevention liquid in chambers A and B.
[0019] (2) For the wool sweater shrinkage prevention and finishing device of the utility model, when the liquid on the wool sweater enters the filter screen frames A and B in sequence, the filter screen frames A and B filter the liquid, preventing the waste silk on the wool sweater from entering chambers A and B, thereby improving the quality of the shrinkage prevention liquid in chambers A and B. Description of the drawings
[0020] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.
[0021] Figure 1 It is a schematic diagram of the overall structure of an anti-shrinkage finishing device for a woolen sweater of the present utility model;
[0022] Figure 2 It is a schematic diagram of the internal structure of the fixing frame of an anti-shrinkage finishing device for a woolen sweater of the present utility model;
[0023] Figure 3 It is a schematic diagram of the connecting frame structure of an anti-shrinkage finishing device for a woolen sweater of the present utility model;
[0024] In the figure: 1, fixing frame; 2, support rod; 3, servo motor; 4, driving frame; 5, connecting frame; 6, filter screen frame A; 7, cavity A; 8, box frame; 9, connecting sleeve; 10, cylinder; 11, frame; 12, threaded rod; 13, driving sleeve; 14, electric telescopic rod; 15, filter screen frame B; 16, cavity B; 17, fixing pipe A; 18, fixing pipe B; 19, hook; 20, rubber block. Specific embodiments
[0025] In order to make the technical means, creative features, achieved purposes and effects realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0026] In order to perform anti-shrinkage finishing operations on woolen sweaters, as an embodiment of the present utility model, such as Figure 1 , Figure 2 and Figure 3As shown in the figure, a woolen sweater shrink-proof finishing device of the present utility model includes a box frame 8. Inside the box frame 8, there are a cavity A 7 and a cavity B 16 for shrink-proof finishing of the woolen sweater, and the cavity A 7 is located on the left side of the cavity B 16. The outside of the box frame 8 is bolted with a machine frame 11, and the outside of the machine frame 11 is bolted with a servo motor 3 that provides power. The power output end of the servo motor 3 is key-connected with a threaded rod 12. The outside of the threaded rod 12 is threadedly connected with a driving sleeve 13, and a fixing frame 1 is screwed and fixed to the outside of the driving sleeve 13. A power-providing electric telescopic rod 14 is screwed and fixed below the fixing frame 1, and one end of the electric telescopic rod 14 away from the fixing frame 1 is screwed and fixed with a connecting frame 5. A hook 19 for fixing the woolen sweater is screwed and fixed to the bottom of the connecting frame 5. A power-providing air cylinder 10 is bolted inside the fixing frame 1, and a driving frame 4 is screwed and fixed to the power output end of the air cylinder 10. A rubber block 20 for removing the liquid on the woolen sweater is screwed and fixed to the inner side of the driving frame 4. A filter screen frame A 6 for filtering the liquid entering the cavity A 7 is screwed and fixed to the inner side of the cavity A 7. A filter screen frame B 15 for filtering and treating the liquid entering the cavity B 16 is screwed and fixed to the inner side of the cavity B 16.
[0027] When in use, when shrink-proof finishing the woolen sweater, first hang the woolen sweater on the hook 19 inside the connecting frame 5, and then the external controller makes the electric telescopic rod 14 inside the fixing frame 1 drive the connecting frame 5 to move. Then the connecting frame 5 drives the woolen sweater into the cavity A 7 inside the box frame 8. The hydrogen peroxide with a concentration of 60 ml / L and a temperature of 60 °C in the cavity A 7 soaks the woolen sweater for 45 minutes to make the woolen sweater obtain good felting resistance. Then the electric telescopic rod 14 drives the woolen sweater inside the connecting frame 5 to move out of the cavity A 7 under the action of the external controller. Then the servo motor 3 outside the machine frame 11 drives the threaded rod 12 to rotate under the action of the external controller. The driving sleeve 13 outside the threaded rod 12 drives the fixing frame 1 to move under the action of the external limiting structure, so that the connecting frame 5 at the bottom of the fixing frame 1 drives the woolen sweater to move above the cavity B 16. Subsequently, the electric telescopic rod 14 drives the woolen sweater on the connecting frame 5 to enter the cavity B 16. Then the liquid with an enzyme HAP dosage of 3.0% and a temperature of 50 °C in the cavity B 16 soaks the woolen sweater to reduce the strong damage suffered by the woolen sweater and make the woolen sweater more durable, thus facilitating the shrink-proof finishing operation of the woolen sweater;
[0028] When the woolen sweater finishes soaking in the cavity A7, the electric telescopic rod 14 drives the woolen sweater in the connecting frame 5 out of the cavity A7 under the action of an external controller. Then, the servo motor 3 outside the frame 11 drives the threaded rod 12 to rotate under the action of the external controller. The drive sleeve 13 outside the threaded rod 12 drives the fixed frame 1 to move under the action of an external limiting structure, so that the connecting frame 5 at the bottom of the fixed frame 1 drives the woolen sweater to move above the filter screen frame A6. Then, the cylinder 10 in the fixed frame 1 drives the drive frame 4 to move under the action of the external controller. Then, the rubber block 20 on the drive frame 4 presses the surface of the woolen sweater, so as to remove the excess liquid on the woolen sweater. At the same time, when the woolen sweater finishes soaking in the cavity B16, the electric telescopic rod 14 drives the woolen sweater on the connecting frame 5 out of the cavity B16. Then, the drive sleeve 13 outside the threaded rod 12 drives the fixed frame 1 to move, so that the electric telescopic rod 14 below the fixed frame 1 drives the woolen sweater on the connecting frame 5 to move above the filter screen frame B15. Subsequently, the cylinder 10 in the fixed frame 1 drives the drive frame 4 to move, so that the rubber block 20 on the drive frame 4 presses the surface of the woolen sweater, so as to remove the excess liquid on the woolen sweater, and the shrink-proof liquid on the woolen sweater enters the cavities A7 and B16 in sequence, improving the utilization rate of the shrink-proof liquid in the cavities A7 and B16;
[0029] When the liquid on the woolen sweater enters the filter screen frames A6 and B15 in sequence, the filter screen frames A6 and B15 filter the liquid, preventing the waste filaments on the woolen sweater from entering the cavities A7 and B16, thereby improving the quality of the shrink-proof liquid in the cavities A7 and B16.
[0030] To improve the stability of the movement of the fixed frame 1 in the frame 11, exemplarily, as Figure 1 、 Figure 2 shown, the present invention further includes that the inside of the fixed frame 1 is symmetrically clamped with connecting sleeves 9, and a support rod 2 for stabilizing the movement of the fixed frame 1 is slidably connected to the inside of the connecting sleeve 9.
[0031] During use, when the fixed frame 1 moves in the frame 11, the connecting sleeve 9 on the fixed frame 1 slides outside the support rod 2, improving the stability of the movement of the fixed frame 1 in the frame 11.
[0032] To replace the liquid in the cavity A7, exemplarily, as Figure 1 shown, the present invention further includes that a fixed pipe A17 for discharging the liquid in the cavity A7 is inserted at the bottom end of the outer part of the box frame 8.
[0033] During use, when the liquid in the cavity A7 needs to be replaced, the fixed pipe A17 outside the box frame 8 is opened, so that the liquid in the cavity A7 is discharged, thereby facilitating the replacement of the liquid in the cavity A7.
[0034] In order to replace the liquid in the cavity B16, for example, Figure 1 As shown, the present invention further includes that a fixed pipe B18 is inserted into the bottom end of the outer side of the box frame 8 to discharge the liquid in the cavity B16.
[0035] During use, when the liquid in the cavity B16 needs to be replaced, the fixed tube B18 outside the box frame 8 is opened to discharge the liquid in the cavity B16, thereby facilitating the replacement of the liquid in the cavity B16.
[0036] In order to use the electrical equipment to work properly, for example, Figure 1 、 Figure 2 As shown, the present invention further includes that the input ends of the cylinder 10, the electric telescopic rod 14 and the servo motor 3 are all electrically connected to the power supply end of the external power supply.
[0037] When in use, connect the external power supply to make the electrical equipment work normally.
[0038] When the utility model is in use, when the wool sweater is to be shrink-proofed, the wool sweater is first hung on the hook 19 in the connecting frame 5, and then the external controller causes the electric telescopic rod 14 in the fixed frame 1 to drive the connecting frame 5 to move, and then the connecting frame 5 drives the wool sweater into the cavity A7 in the box frame 8. The hydrogen peroxide in the cavity A7 is 60ml / L and the temperature is 60℃, and the wool sweater is soaked for 45 minutes to obtain good anti-felting properties of the wool sweater. Then the electric telescopic rod 14 is driven by the external controller to drive the wool sweater in the connecting frame 5 to move out of the cavity A7, and then the frame 1 is The servo motor 3 outside 1 is driven by an external controller to rotate the threaded rod 12. The driving sleeve 13 outside the threaded rod 12 is driven by an external limiting structure to move the fixed frame 1, so that the connecting frame 5 at the bottom of the fixed frame 1 drives the sweater to move above the cavity B16. Then, the electric telescopic rod 14 drives the sweater on the connecting frame 5 into the cavity B16. The enzyme HAP liquid in the cavity B16 is then soaked in the sweater with a 3.0% dosage and a temperature of 50°C, reducing the strong damage to the sweater and making the sweater more durable, thereby facilitating the shrinkage-proof finishing operation on the sweater.
[0039] When the woolen sweater finishes soaking in the cavity A7, the electric telescopic rod 14 drives the woolen sweater in the connecting frame 5 to move out of the cavity A7 under the action of an external controller. Then, the servo motor 3 outside the frame 11 drives the threaded rod 12 to rotate under the action of the external controller. The drive sleeve 13 outside the threaded rod 12 drives the fixed frame 1 to move under the action of an external limiting structure, so that the connecting frame 5 at the bottom of the fixed frame 1 drives the woolen sweater to move above the filter screen frame A6. Then, the air cylinder 10 in the fixed frame 1 drives the drive frame 4 to move under the action of the external controller. Then, the rubber block 20 on the drive frame 4 presses the surface of the woolen sweater, so as to remove the excess liquid on the woolen sweater. At the same time, when the woolen sweater finishes soaking in the cavity B16, the electric telescopic rod 14 drives the woolen sweater on the connecting frame 5 to move out of the cavity B16. Then, the drive sleeve 13 outside the threaded rod 12 drives the fixed frame 1 to move, so that the electric telescopic rod 14 below the fixed frame 1 drives the woolen sweater on the connecting frame 5 to move above the filter screen frame B15. Subsequently, the air cylinder 10 in the fixed frame 1 drives the drive frame 4 to move, so that the rubber block 20 on the drive frame 4 presses the surface of the woolen sweater, so as to remove the excess liquid on the woolen sweater, so that the shrink-proof liquid on the woolen sweater enters the cavities A7 and B16 in sequence, improving the utilization rate of the shrink-proof liquid in the cavities A7 and B16;
[0040] When the liquid on the woolen sweater enters the filter screen frames A6 and B15 in sequence, the filter screen frames A6 and B15 filter the liquid, preventing the waste filaments on the woolen sweater from entering the cavities A7 and B16, thereby improving the quality of the shrink-proof liquid in the cavities A7 and B16;
[0041] When the fixed frame 1 moves in the frame 11, the connecting sleeve 9 on the fixed frame 1 slides on the support rod 2, improving the stability of the fixed frame 1 moving in the frame 11;
[0042] When the liquid in the cavity A7 needs to be replaced, the fixed pipe A17 outside the box frame 8 is opened, so that the liquid in the cavity A7 is discharged, facilitating the replacement of the liquid in the cavity A7. When the liquid in the cavity B16 needs to be replaced, the fixed pipe B18 outside the box frame 8 is opened, so that the liquid in the cavity B16 is discharged, facilitating the replacement of the liquid in the cavity B16.
[0043] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of protection required by the present invention. The scope of protection required by the present invention is defined by the appended claims and their equivalents.
Claims
1. A woolen sweater shrink-proof finishing device, characterized in that It includes a box frame (8). Inside the box frame (8), there are a cavity A (7) and a cavity B (16) for the anti-shrink finishing of wool sweaters. The cavity A (7) is located on the left side of the cavity B (16). The outside of the box frame (8) is bolted with a frame (11), and the outside of the frame (11) is bolted with a servo motor (3) that provides power. The power output end of the servo motor (3) is key-connected with a threaded rod (12). The outside of the threaded rod (12) is threadedly connected with a driving sleeve (13), and a fixing frame (1) is screwed and fixed on the outside of the driving sleeve (13). An electric telescopic rod (14) that provides power is screwed and fixed below the fixing frame (1), and one end of the electric telescopic rod (14) away from the fixing frame (1) is screwed and fixed with a connecting frame (5). A hook (19) for fixing the wool sweater is screwed and fixed at the bottom of the connecting frame (5). Inside the fixing frame (1), a cylinder (10) that provides power is bolted, and a driving frame (4) is screwed and fixed at the power output end of the cylinder (10). A rubber block (20) for removing the liquid on the wool sweater is screwed and fixed on the inner side of the driving frame (4). A filter screen frame A (6) for filtering the liquid entering the cavity A (7) is screwed and fixed on the inner side of the cavity A (7). A filter screen frame B (15) for filtering and processing the liquid entering the cavity B (16) is screwed and fixed on the inner side of the cavity B (16).
2. The anti-shrinkage finishing device for a woolen sweater according to claim 1, characterized in that, Connecting sleeves (9) are symmetrically clamped inside the fixing frame (1), and a support rod (2) for stabilizing the movement of the fixing frame (1) is slidably connected to the inner side of the connecting sleeve (9).
3. The anti-shrinkage finishing device for a woolen sweater according to claim 1, characterized in that, A fixed pipe A (17) for discharging the liquid in the cavity A (7) is inserted at the bottom end of the outside of the box frame (8).
4. A woolen sweater shrinkage-proof finishing device according to claim 1, characterized in that, A fixed pipe B (18) for discharging the liquid in the cavity B (16) is inserted at the bottom end of the outside of the box frame (8).
5. A woolen sweater shrink-proof finishing device according to claim 1, characterized in that, The input ends of the cylinder (10), the electric telescopic rod (14), and the servo motor (3) are all electrically connected to the power supply end of an external power source.