Clothing pressing machine with replaceable upper die body and replaceable lower die body
By designing a garment press machine with interchangeable upper and lower molds, and employing a hollow structure and insert connection, the problems of cumbersome disassembly and assembly of the lower mold base and wet clothes are solved, achieving rapid drying and convenient replacement.
Patent Information
- Application Number
- CN202521996835.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2035-09-17
AI Technical Summary
Existing heat presses have cumbersome lower mold base assembly and disassembly, and the lower mold base can easily wet the clothes when it comes into contact with the upper mold base during heat pressing. It is also not convenient to replace lower mold bases of different sizes.
A garment pressing machine with interchangeable upper and lower molds was designed. It adopts a hollow lower mold base and upper mold base, and achieves uniform heating through a combination structure of steam pipe and heating column. The lower mold base can be easily replaced through a detachable plug connection method.
It enables quick drying of clothes and easy replacement of the lower mold base, avoiding the problem of clothes getting wet and improving operational efficiency.
Smart Images

Figure CN223496883U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ironing device technology, specifically to a garment ironing machine in which both upper and lower molds can be replaced. Background Technology
[0002] Garment heat presses, also known as ironing machines, are one of the core pieces of equipment in modern garment processing and finishing. They heat and press garment fabrics by precisely controlling temperature, pressure, and time to achieve purposes such as shaping, pleating, and bonding. Compared to traditional electric irons, heat presses offer a more stable, efficient, and consistent industrial solution, and are widely used in garment factories, printing plants, laundries, and personalized customization studios.
[0003] A steamer typically consists of a lower mold and an upper mold. During steaming, the garment is placed on the lower mold, the upper mold is heated, and then the upper mold is operated to press down on the garment. Some existing steamers only have a heated upper mold. When the upper and lower molds press on the garment, the hot steam from the upper mold comes into contact with the lower mold, producing water that wets the garment on the lower mold. Furthermore, the lower mold of existing steamers is cumbersome to assemble and disassemble, making it inconvenient to replace with a different size lower mold if needed. Utility Model Content
[0004] The purpose of this invention is to provide a garment pressing machine with interchangeable upper and lower molds to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a garment pressing machine with interchangeable upper and lower molds, comprising a machine body, a lower mold base located above the machine body, a rotating frame rotatably mounted on the machine body, and an upper mold base mounted on the rotating frame. The upper mold base is located above the lower mold base. Both the lower and upper mold bases are hollow, and each has several air holes communicating with the interior. The lower mold base is connected to the machine body via a mounting assembly, and the upper mold base is connected to the rotating frame via a connecting assembly. The mounting assembly includes a mounting plate fixedly mounted above the machine body, a steam pipe A fixedly mounted on the mounting plate, a heating column, a heating box fixedly mounted to the right of the heating column, an insertion post A fixedly mounted below the lower mold base, and a steam pipe fixedly mounted below the mounting plate. Pipe B and steam pipe C, the heating column and heating box are hollow and interconnected. The bottom of the heating column and heating box are fixedly connected to the mounting plate. A circular groove is opened on the top wall of the heating column. The steam pipe A is located in the circular groove and fixedly connected to the heating column. The outer side wall of the steam pipe A is separated from the inner side wall of the heating column. A partition is fixedly installed inside the heating column and heating box. Steam pipes B and C are both connected to the inside of the heating box and are located on the front and rear sides of the partition, respectively. Insertion column B is fixedly installed below insertion column A. The diameter of insertion column A is larger than the diameter of insertion column B. A through hole A is opened on the bottom wall of insertion column B, which passes through insertion column A and connects to the inside of the lower mold base. Insertion column B is inserted into the steam pipe A. The top of the steam pipe A and the heating column are both in contact with the bottom of insertion column A.
[0006] Preferably, the connecting assembly includes a top plate fixedly mounted on the rotating frame, a sliding plate mounted below the top plate, a steam pipe D fixedly mounted above the upper mold base, a connector A fixedly mounted on the steam pipe D, and a connector B fixedly mounted on the top plate. The sliding plate has a through hole B, and the connector A passes through the through hole B and connects to the connector B. The steam pipe D is fixedly connected to the sliding plate by screws and a cross plate.
[0007] Preferably, the connecting assembly further includes a sliding column fixedly disposed below the top plate, a slider fixedly disposed above the slide plate, and a fixing component. The top wall of the slider is provided with a sliding groove that matches the sliding column, and the sliding column is inserted into the sliding groove and slidably connected to the slider.
[0008] Preferably, the fixing assembly includes a stud, a convex ring fixedly disposed on the stud, a rotating post fixedly disposed on the rear side of the stud, and a rear plate fixedly disposed on the rear side of the slide plate. A screw hole is formed on the rear side wall of the rotating post, and a through hole is formed on the rear side wall of the rear plate. The stud is inserted into the through hole and screwed into the screw hole to be threadedly connected to the rotating post. The convex ring is in contact with the rear plate.
[0009] Preferably, the slide groove is provided with a ball bearing sleeve, the slide post is inserted into the slide groove and slidably connected with the ball bearing sleeve, and the connector A and connector B are quick-connect self-locking connectors.
[0010] Preferably, a limiting block is fixedly provided on the heating column, and a limiting groove is formed on the bottom wall of the insertion column A, and the limiting block is inserted into the limiting groove and abuts against the insertion column A.
[0011] Preferably, the rotating column is provided with several anti-slip grooves, and a sleeve is fixedly provided on the outside of the insertion column A and sleeved on the outside of the heating column.
[0012] The beneficial effects of this utility model are as follows:
[0013] 1. In use, the rotating frame is connected to an external drive device for rotating the frame. Steam pipe B and connector B are both connected to an external steam outlet device via pipes. Steam pipe A is connected to an external suction device via a pipe. When the ironing machine is pressing the garment, the external steam outlet device is activated to allow hot steam to enter steam pipe B. Through steam pipe B, hot steam enters the heating box and heating column, and then enters the gap between the outer wall of steam pipe A and the inner wall of the heating column. The hot steam heats steam pipe A, and through heat transfer, it heats inserts B and A, thereby heating the lower mold base. Steam pipe A, inserts A and B are all made of aluminum, giving them good thermal conductivity. Because steam pipes B and C are located on the front and rear sides of the partition, respectively, the heat... Hot air enters from the front of the partition, circulates around steam pipe A, enters the rear of the partition, and exits from steam pipe C. New hot air then continuously enters from steam pipe B, providing continuous heating. After the lower mold base is heated, the clothes are laid on it. The external suction device is activated to adhere the clothes to the lower mold base. The external steam outlet device is activated to allow hot steam to enter the upper mold base through connectors B and A and steam pipe D, heating the upper mold base and causing it to spray out from the air vents. The external drive device is activated to rotate the rotating frame, causing the upper mold base to press onto the clothes on the lower mold base for ironing. Because both the upper and lower mold bases are heated, the hot steam does not generate water when it comes into contact with the lower mold base during ironing, preventing the clothes from getting wet.
[0014] 2. When the lower mold base needs to be replaced, since the insert B is inserted into the steam pipe A, the top of the steam pipe A and the heating column are in contact with the bottom of the insert A. The insert B and the steam pipe A are in a detachable state. Pulling the lower mold base upwards can separate the insert B from the steam pipe. Then, a lower mold base of other sizes can be installed on top of the steam pipe A, which facilitates the replacement of the lower mold base.
[0015] In summary, this utility model has the beneficial effects of quickly drying clothes and facilitating the replacement of the lower mold base. It solves the problem that some existing ironing machines only have a heating function on the upper mold base, resulting in a slow drying speed when the clothes being ironed have a lot of moisture. Furthermore, the lower mold base of existing ironing machines is relatively cumbersome to disassemble and assemble, making it inconvenient for users to replace it when they need to use a lower mold base of other sizes. Attached Figure Description
[0016] Appendix Figure 1 This is a schematic diagram of the structure of this utility model;
[0017] Appendix Figure 2 This is a schematic diagram of the right side structure of this utility model;
[0018] Appendix Figure 3 This is a partial exploded view of the present invention;
[0019] Appendix Figure 4 This is a half-sectional view of the mounting components of this utility model;
[0020] Appendix Figure 5 This is a partial sectional view of the mounting components of this utility model;
[0021] Appendix Figure 6 This is a schematic diagram of the lower mold base replacement of this utility model.
[0022] In the diagram: 1. Body; 2. Lower mold base; 3. Upper mold base; 4. Rotating frame; 5. Mounting plate; 6. Steam pipe A; 7. Heating column; 8. Heating box; 9. Insert post A; 10. Circular groove; 11. Steam pipe B; 12. Steam pipe C; 13. Insert post B; 14. Through hole A; 15. Top plate; 16. Slide plate; 17. Steam pipe D; 18. Connector A; 19. Connector B; 20. Through hole B; 21. Sliding column; 22. Sliding block; 23. Sliding groove; 24. Stud; 25. Convex ring; 26. Rotating column; 27. Rear plate; 28. Limiting block; 29. Limiting groove; 30. Partition plate; 31. Sleeve. Detailed Implementation
[0023] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.
[0024] like Figure 1-5As shown, this utility model discloses a garment ironing machine with interchangeable upper and lower molds, including a body 1, a lower mold base 2 located above the body 1, a rotating frame 4 rotatably mounted on the body 1, and an upper mold base 3 mounted on the rotating frame 4. The upper mold base 3 is located above the lower mold base 2. Both the lower mold base 2 and the upper mold base 3 are hollow, and each has several air holes communicating with the interior. The lower mold base 2 is connected to the body 1 via a mounting assembly, and the upper mold base 3 is connected to the rotating frame 4 via a connecting assembly. The mounting assembly includes a mounting plate 5 fixedly mounted above the body 1, a steam pipe A6 fixedly mounted on the mounting plate 5, a heating column 7, a heating box 8 fixedly mounted to the right of the heating column 7, an insertion post A9 fixedly mounted below the lower mold base 2, and steam pipes B11 and C12 fixedly mounted below the mounting plate 5. Both the heating column 7 and the heating box 8 are hollow and interconnected. The bottoms of both the heating column 7 and the heating box 8 are fixedly connected to the mounting plate 5. A circular groove 10 is formed on the top wall of the heating column 7. The steam pipe A6 is located in the circular groove 10 and fixedly connected to the heating column 7. The outer side wall of the steam pipe A6 is separated from the inner side wall of the heating column 7. A partition 30 is fixedly set inside the heating column 7 and the heating box 8. The steam pipes B11 and C12 are both connected to the inside of the heating box 8 and are located on the front and rear sides of the partition 30, respectively. An insert post B13 is fixedly set below the insert post A9. The diameter of the insert post A9 is larger than the diameter of the insert post B13. A through hole A14 is formed on the bottom wall of the insert post B13, which passes through the insert post A9 and connects to the inside of the lower mold base 2. The insert post B13 is inserted into the steam pipe A6. The tops of the steam pipe A6 and the heating column 7 are both in contact with the bottom of the insert post A9.In use, the rotating frame 4 is connected to an external drive device for rotating the frame 4. Steam pipe B11 and connector B19 are both connected to an external steam outlet device via pipes. Steam pipe A6 is connected to an external suction device via a pipe. When the iron is pressing the garment, the external steam outlet device is activated to allow hot steam to enter steam pipe B11. Through steam pipe B11, hot steam enters the heating box 8 and heating column 7, and then enters the gap between the outer wall of steam pipe A6 and the inner wall of heating column 7. The hot steam heats steam pipe A6, and through heat transfer, it heats the insert B13 and the insert... A9 heats up, which in turn heats the lower mold base 2. The steam pipe A6, insert A9, and insert B13 are all made of aluminum, giving them excellent thermal conductivity. Since steam pipes B11 and C12 are located on the front and rear sides of the partition 30 respectively, hot air enters from the front of the partition 30, circulates around steam pipe A6, enters the rear of the partition 30, and then exits from steam pipe C12. New hot air then continuously enters from steam pipe B11, providing continuous heating. After the lower mold base 2 is heated, clothes are laid on it, and the external suction device is activated to adhere the clothes to the lower mold base 2. An external steam outlet allows hot steam to enter the upper mold base 3 through connectors B19 and A18 and steam pipe D17, heating the upper mold base 3 and causing it to spray out from the vents. Activating the external drive device rotates the rotating frame 4, causing the upper mold base 3 to press onto the clothing on the lower mold base 2 for ironing. Because both the upper and lower mold bases 3 and 2 are heated, the hot steam does not generate water when in contact with the lower mold base, preventing the clothing from getting wet. When the lower mold base 2 needs to be replaced, the insert B13 is inserted into the steam pipe A6, and the steam pipe A6 and heating column 7... The top of each part is connected to the bottom of the insertion post A9. The insertion post B13 and the steam pipe A6 are detachable. Pulling the lower mold base 2 upwards can separate the insertion post B13 from the steam pipe. Then, other sizes of lower mold base 2 can be installed above the steam pipe A6, which facilitates the replacement of the lower mold base 2. In summary, this utility model has the beneficial effects of quickly drying clothes and facilitating the replacement of the lower mold base 2. It solves the problem that some existing ironing machines only have the upper mold base 3 with heating function; the lower mold base 2 of existing ironing machines is relatively cumbersome to disassemble and assemble, and it is inconvenient to replace when users need to use other sizes of lower mold base 2.
[0025] Preferably, the connecting assembly includes a top plate 15 fixedly mounted on the rotating frame 4, a sliding plate 16 mounted below the top plate 15, a steam pipe D17 fixedly mounted above the upper mold base 3, a connector A18 fixedly mounted on the steam pipe D17, and a connector B19 fixedly mounted on the top plate 15. The sliding plate 16 has a through hole B20, through which the connector A18 passes and connects to the connector B19. The steam pipe D17 is fixedly connected to the sliding plate 16 by screws and a crossbar. Because the connector A18 passes through the through hole B20 and connects to the connector B19, and the steam pipe D17 is fixedly connected to the sliding plate 16 by screws and a crossbar, when the upper mold base 3 needs to be replaced, the screws can be loosened and the connector A18 pulled out of the connector B19 to remove the upper mold base 3, thus facilitating the disassembly and replacement of the upper mold base 3.
[0026] Preferably, the connecting assembly further includes a sliding post 21 fixedly disposed below the top plate 15, a slider 22 fixedly disposed above the slide plate 16, and a fixing component. The top wall of the slider 22 has a groove 23 that matches the sliding post 21, and the sliding post 21 is inserted into the groove 23 and slidably connected to the slider 22. Because the sliding post 21 is inserted into the groove 23 and slidably connected to the slider 22, it serves to connect the top plate 15 and the slide plate 16.
[0027] Preferably, the fixing assembly includes a stud 24, a convex ring 25 fixedly disposed on the stud 24, a rotating post 26 fixedly disposed on the rear side of the stud 24, and a rear plate 27 fixedly disposed on the rear side of the slide plate 16. The rear sidewall of the slide post 21 has a screw hole, and the rear sidewall of the rear plate 27 has a through hole. The stud 24 is inserted into the through hole and screwed into the screw hole to connect threadedly with the slide post 21. The convex ring 25 abuts against the rear plate 27. Since the stud 24 is inserted into the through hole and screwed into the screw hole to connect threadedly with the slide post 21, and the convex ring 25 abuts against the rear plate 27, rotating the rotating post 26 causes the stud 24 to rotate, clamping the rear plate 27 between the convex ring 25 and the slide post 21, thus fixing the slide plate 16. Rotating the rotating post 26 unscrews the stud 24 out of the screw hole and separates it from the slide post 21, allowing the slider 22 to slide out of the slide post 21, facilitating the assembly and disassembly of the slide plate 16.
[0028] Preferably, the slide groove 23 is provided with a ball bearing sleeve, the slide post 21 is inserted into the slide groove 23 and slidably connected with the ball bearing sleeve, and the connectors A18 and B19 are quick-connect self-locking connectors. Because connectors A18 and B19 are quick-connect self-locking connectors, they have the characteristic of quick insertion and removal.
[0029] Preferably, a limiting block 28 is fixedly provided on the heating column 7, and a limiting groove 29 is formed on the bottom wall of the insertion column A9. The limiting block 28 is inserted into the limiting groove 29 and abuts against the insertion column A9. Since the limiting block 28 is inserted into the limiting groove 29 and abuts against the insertion column A9, it limits the insertion column A9 and prevents it from rotating arbitrarily, thereby preventing the lower mold base 2 from rotating arbitrarily.
[0030] Preferably, the rotating column 26 is provided with several anti-slip grooves, and a sleeve 31 is fixedly provided on the outside of the insertion column A9 and fitted onto the outside of the heating column 7. The anti-slip grooves on the rotating column 26 prevent slippage.
[0031] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A garment pressing machine with interchangeable upper and lower molds, comprising a body (1), a lower mold base (2) located above the body (1), a rotating frame (4) rotatably mounted on the body (1), and an upper mold base (3) mounted on the rotating frame (4), wherein the upper mold base (3) is located above the lower mold base (2), both the lower mold base (2) and the upper mold base (3) are hollow, and both the lower mold base (2) and the upper mold base (3) have a plurality of air holes communicating with the interior, characterized in that: The lower mold base (2) is connected to the machine body (1) through an installation assembly, and the upper mold base (3) is connected to the rotating frame (4) through a connecting assembly. The installation assembly includes an installation plate (5) fixedly installed above the machine body (1), a steam pipe A (6) fixedly installed on the installation plate (5), a heating column (7), a heating box (8) fixedly installed on the right side of the heating column (7), an insertion post A (9) fixedly installed below the lower mold base (2), and steam pipes B (11) and C (12) fixedly installed below the installation plate (5). The heating column (7) and the heating box (8) are hollow and interconnected. The bottom of the heating column (7) and the heating box (8) are fixedly connected to the installation plate (5). A circular groove (10) is provided on the top wall of the heating column (7). The steam pipe A (6) is located at... The steam pipe A (6) is fixedly connected to the heating column (7) in the circular groove (10). The outer wall of the steam pipe A (6) is separated from the inner wall of the heating column (7). The heating column (7) and the heating box (8) are fixedly provided with partitions (30). The steam pipe B (11) and the steam pipe C (12) are both connected to the interior of the heating box (8) and are located on the front and rear sides of the partitions (30) respectively. The insertion post B (13) is fixedly provided below the insertion post A (9). The diameter of the insertion post A (9) is larger than the diameter of the insertion post B (13). The bottom wall of the insertion post B (13) is provided with a through hole A (14) that passes through the insertion post A (9) and connects to the interior of the lower mold base (2). The insertion post B (13) is inserted into the steam pipe A (6). The top of the steam pipe A (6) and the heating column (7) are both in contact with the bottom of the insertion post A (9).
2. A garment pressing machine with interchangeable upper and lower mold bodies according to claim 1, characterized in that: The connecting assembly includes a top plate (15) fixedly mounted on the rotating frame (4), a slide plate (16) mounted below the top plate (15), a steam pipe D (17) fixedly mounted above the upper mold base (3), a connector A (18) fixedly mounted on the steam pipe D (17), and a connector B (19) fixedly mounted on the top plate (15). The slide plate (16) has a through hole B (20). The connector A (18) passes through the through hole B (20) and connects to the connector B (19). The steam pipe D (17) is fixedly connected to the slide plate (16) by screws and a cross plate.
3. A garment pressing machine with interchangeable upper and lower mold bodies according to claim 2, characterized in that: The connecting assembly also includes a sliding column (21) fixedly disposed below the top plate (15), a slider (22) fixedly disposed above the slide plate (16), and a fixing assembly. The top wall of the slider (22) is provided with a sliding groove (23) that matches the sliding column (21). The sliding column (21) is inserted into the sliding groove (23) and slidably connected to the slider (22).
4. A garment pressing machine with interchangeable upper and lower mold bodies according to claim 3, characterized in that: The fixing assembly includes a stud (24), a convex ring (25) fixedly disposed on the stud (24), a rotating post (26) fixedly disposed on the rear side of the stud (24), and a rear plate (27) fixedly disposed on the rear side of the slide plate (16). The rear side wall of the sliding post (21) is provided with a screw hole, and the rear side wall of the rear plate (27) is provided with a through hole. After the stud (24) is inserted into the through hole, it is screwed into the screw hole and threadedly connected to the sliding post (21). The convex ring (25) abuts against the rear plate (27).
5. A garment pressing machine with interchangeable upper and lower mold bodies according to claim 3, characterized in that: The groove (23) is provided with a ball bearing sleeve, the slide post (21) is inserted into the groove (23) and slidably connected with the ball bearing sleeve, and the connector A (18) and connector B (19) are quick-connect self-locking connectors.
6. A garment pressing machine with interchangeable upper and lower mold bodies according to claim 1, characterized in that: A limiting block (28) is fixedly installed on the heating column (7), and a limiting groove (29) is opened on the bottom wall of the insertion column A (9). The limiting block (28) is inserted into the limiting groove (29) and abuts against the insertion column A (9).
7. A garment pressing machine with interchangeable upper and lower mold bodies according to claim 4, characterized in that: The rotating column (26) is provided with several anti-slip textures, and the insert column A (9) is fixedly provided with a sleeve (31) sleeved on the outside of the heating column (7).