Steam heated setting machine

By using a combination of drive plate and push rod, and with a single motor to drive the position adjustment of directional casters and self-locking casters, the problem of machine tilting caused by inconsistent screw rotation amplitude in steam-heated setting machines is solved, thus achieving machine stability and smooth movement.

CN224494621UActive Publication Date: 2026-07-14NANYANG ZHIYAN TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202521655518.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-05
Publication Date
2026-07-14
Estimated Expiration
2035-08-05

AI Technical Summary

Technical Problem

In existing steam-heated setting machines, the rotation amplitude of the two screws is difficult to be uniform when the drive device rotates the screw, resulting in inconsistent height of the casters. The machine body is prone to tilting during movement, resulting in poor stability.

Method used

By using a combination of a drive plate and push rods, a single motor drives the position adjustment of the directional casters and self-locking swivel wheels, achieving synchronous movement, optimizing the drive method, and ensuring the stability of the machine body during movement.

Benefits of technology

It achieves synchronization between directional casters and self-locking swivel wheels, preventing the machine from tilting and improving the stability and smoothness of movement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a steam heating setting machine, including the body, the air inlet and the exhaust port of the upper side of the outer arc surface of body are provided with air inlet pipe and exhaust pipe respectively, and the middle part of body bottom wall is provided with guide rail and heat conduction plate respectively, and the guide rail is spaced apart with the heat conduction plate of longitudinal adjacent respectively, and the right -hand member of body is hinged with the sealed door, still includes moving mechanism, moving mechanism: it includes support seat, directional caster, self -lock universal wheel, adjusting assembly, support seat setting in the outer arc surface of body downside, and the inside left and right sides of support seat are equipped with directional caster and self -lock universal wheel respectively, and the inside of support seat is provided with adjusting assembly, and directional caster and self -lock universal wheel are driven by adjusting assembly, and this steam heating setting machine guarantees the synchronism of directional caster and self -lock universal wheel when moving, and the position of body can not incline in the process of moving subsequently, and the stability of body is further improved.
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Description

Technical Field

[0001] This utility model relates to the field of shaping equipment technology, specifically a steam-heated shaping machine. Background Technology

[0002] Steam-heated shaping machines are widely used in the curtain manufacturing industry, primarily for heating and shaping curtains. This equipment uses the thermal energy of steam to heat the curtains, achieving the desired shape and dimensional stability. Existing technology includes a patent (CN 220433225 U) that discloses a steam-heated shaping machine, comprising a support frame with a shaping machine housing fixedly mounted on top. A threaded rod is rotatably connected inside the support frame, and a drive mechanism is connected to the threaded rod. In this invention, after moving the shaping machine housing to a suitable position, the operator can control the movement of a lifting plate via the drive mechanism. The lifting plate can drive the casters, which can then enter the support frame. Although this device can move the casters via screws, the rotation amplitude of the two screws is difficult to be completely uniform during the rotation process. This uneven rotation amplitude leads to inconsistent heights of the casters, causing the machine to tilt during subsequent movement. Therefore, we propose a steam-heated shaping machine. Utility Model Content

[0003] The technical problem this invention aims to solve is to overcome existing defects and provide a steam-heated shaping machine. Through the coordinated arrangement of the drive plate and push rod, the positions of the directional casters and self-locking casters can be adjusted, optimizing the drive method. The entire process can be completed with only one motor, ensuring the synchronicity of the directional casters and self-locking casters during movement. Subsequently, the position of the machine body will not tilt during movement, further improving the stability of the machine body and effectively solving the problems in the background art.

[0004] To achieve the above objectives, the present invention provides the following technical solution: a steam heating and shaping machine, comprising a machine body, an air inlet and an air outlet respectively provided in the air inlet and air outlet on the upper side of the outer arc surface of the machine body, a guide rail and a heat conduction plate respectively provided in the middle part of the bottom wall of the machine body, the guide rails being spaced apart from the longitudinally adjacent heat conduction plates, a sealing door hinged to the right end of the machine body, and a moving mechanism.

[0005] The moving mechanism includes a support base, directional casters, self-locking casters, and an adjustment component. The support base is located on the lower side of the outer arc surface of the machine body. The left and right sides inside the support base are respectively equipped with directional casters and self-locking casters. The adjustment component is installed inside the support base. The directional casters and self-locking casters are driven by the adjustment component. Through the cooperation of the drive plate and push rod, the position of the directional casters and self-locking casters can be adjusted, optimizing the driving method. The entire process can be completed by only one motor, ensuring the synchronicity of the directional casters and self-locking casters during movement. During subsequent movement, the position of the machine body will not tilt, further improving the stability of the machine body.

[0006] Furthermore, a control switch is provided at the front end of the machine body. The input end of the control switch is electrically connected to an external power source, which can regulate the electrical components inside the equipment.

[0007] Furthermore, the moving mechanism also includes guide slides and a connecting plate. The guide slides are respectively disposed on the left and right sides of the bottom wall of the support base. The two guide slides are slidably connected to the corresponding sliding holes at the lower end of the connecting plate. The left and right sides of the lower end of the connecting plate are respectively provided with directional casters and self-locking swivel wheels. The left and right sides of the bottom wall of the support base are respectively provided with four clearance grooves. The two directional casters and the two self-locking swivel wheels correspond to the vertically adjacent clearance grooves in the upper and lower positions. The connecting plate is installed in conjunction with the adjusting component, which can drive the directional casters and self-locking swivel wheels to move.

[0008] Furthermore, the adjustment assembly includes mounting rods, drive plates, adjustment plates, and push rods. The mounting rods are rotatably connected to the upper sides of the front and rear walls of the support base. A drive plate is provided in the middle of the outer arc surface of each mounting rod. A drive groove is provided on the lower side of the front end of each drive plate. The lower ends of the four drive plates are in contact with the upper ends of the connecting plates. The two adjustment plates are slidably connected to the bottom wall of the support base. Push rods are provided on the upper sides of the front and rear ends of the adjustment plates. The ends of the four push rods away from the center of the support base are located inside the longitudinally adjacent drive grooves, which can drive the connecting plates to move.

[0009] Furthermore, fixed plates are respectively provided on the left and right sides of the bottom wall of the support base. A bidirectional screw is rotatably connected between the opposite inner surfaces of the two fixed plates. The adjusting plate is threaded to the left and right sides of the outer arc surface of the bidirectional screw through a threaded hole on its lower right end. Corrugated pipes are provided between the end of the adjusting plate away from the inner center of the support base and the end of the fixed plate near the inner center of the support base, as well as between the opposite inner surfaces of the two adjusting plates. The corrugated pipes are all sleeved on the left and right sides and the outside of the middle of the outer arc surface of the bidirectional screw. A motor is provided at the right end of the right fixed plate. The left end of the motor output shaft is fixedly connected to the right end of the bidirectional screw. The input end of the motor is electrically connected to the output end of the control switch, which can drive the adjusting plate to move.

[0010] Furthermore, springs are respectively installed between the lower end of the connecting plate and the bottom wall of the support base. The springs are all sleeved on the outside of the lower side of the guide slide column. The inspection ports opened on the lower sides of the left and right walls of the support base are hinged with inspection doors. The springs correspond to the left and right positions of the vertically adjacent inspection doors. The thrust generated by the extension of the springs can drive the directional casters and self-locking casters to move upward and reset through the connecting plate.

[0011] Furthermore, the lower ends of the air intake pipe and the exhaust pipe are respectively connected to the mounting grooves opened on the upper side of the outer arc surface of the vertically adjacent mounting pipe. Connecting pipes are provided in the connecting grooves opened on the left and right sides of the top wall of the five heat-conducting plates. The upper ends of the five left connecting pipes are connected to the air supply port opened on the lower side of the outer arc surface of the left mounting pipe. The upper ends of the five right connecting pipes are connected to the return port opened on the lower side of the outer arc surface of the right mounting pipe. The lower ends of two horizontally adjacent connecting pipes are connected by a conveying pipe, which can transfer heat to the heat-conducting plate.

[0012] Furthermore, exhaust ports are provided on the upper side of the inner arc surface of the machine body. The exhaust ports are located between the right end of the intake pipe and the left end of the exhaust pipe. The exhaust ports can help regulate the pressure inside the machine body and prevent the pressure from being too high.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: This steam-heated setting machine has the following advantages:

[0014] By coordinating the drive plate and push rod, the positions of the directional casters and self-locking casters can be adjusted, optimizing the drive method. The entire process can be completed with only one motor, ensuring the synchronicity of the directional casters and self-locking casters during movement. Subsequently, the position of the machine body will not tilt during movement, further improving the stability of the machine body. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the front sectional structure of the present invention;

[0017] Figure 3 This is a schematic diagram of the upper sectional structure of this utility model;

[0018] Figure 4 This is a schematic diagram of the structure of the moving mechanism of this utility model;

[0019] Figure 5 This is an enlarged structural diagram of point A in this utility model.

[0020] In the diagram: 1. Body, 2. Control switch, 3. Moving mechanism, 31. Support base, 32. Guide slide column, 33. Connecting plate, 34. Fixed caster, 35. Self-locking caster, 36. Adjustment assembly, 361. Mounting rod, 362. Drive plate, 363. Adjustment plate, 364. Push rod, 4. Inlet pipe, 5. Exhaust pipe, 6. Mounting pipe, 7. Guide rail, 8. Heat conduction plate, 9. Connecting pipe, 10. Conveying pipe, 11. Sealing door, 12. Fixing plate, 13. Bidirectional screw, 14. Corrugated pipe, 15. Motor, 16. Spring, 17. Inspection door, 18. Exhaust hole. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figure 1-5 This embodiment provides a technical solution: a steam heating and shaping machine, including a machine body 1, an air inlet 4 and an exhaust pipe 5 respectively provided in the air inlet and exhaust outlet opened on the upper side of the outer arc surface of the machine body 1, a guide rail 7 and a heat conduction plate 8 respectively provided in the middle part of the bottom wall of the machine body 1, the guide rail 7 is spaced apart from the longitudinally adjacent heat conduction plate 8, a sealing door 11 is hinged to the right end of the machine body 1, and a moving mechanism 3 is also included.

[0023] The moving mechanism 3 includes a support base 31, directional casters 34, self-locking casters 35, and an adjustment component 36. The support base 31 is located on the lower side of the outer arc surface of the body 1. Directional casters 34 and self-locking casters 35 are respectively provided on the left and right sides inside the support base 31. The adjustment component 36 is located inside the support base 31, and the directional casters 34 and self-locking casters 35 are driven by the adjustment component 36. The moving mechanism 3 also includes guide pins 32 and a connecting plate 33. The guide pins 32 are respectively located on the left and right sides of the bottom wall of the support base 31. The two guide pins 32 are slidably connected to the corresponding sliding holes at the lower end of the connecting plate 33. The lower end of the connecting plate 33 has corresponding sliding holes on the left and right sides. The support base 31 has four clearance slots on the left and right sides of its bottom wall, with two directional casters 34 and two self-locking casters 35 corresponding to the vertically adjacent clearance slots. A connecting plate 33 is installed in conjunction with an adjusting assembly 36. The adjusting assembly 36 includes a mounting rod 361, a drive plate 362, an adjusting plate 363, and a push rod 364. The mounting rod 361 is rotatably connected to the upper sides of the front and rear walls of the support base 31. A drive plate 362 is located in the middle of the outer arc surface of each mounting rod 361. A drive groove is located on the lower side of the front end of each drive plate 362. The lower ends of all four drive plates 362 contact the upper end of the connecting plate 33. The adjusting plates 363 are all slidably connected to the bottom wall of the support base 31. Push rods 364 are provided on the upper sides of both the front and rear ends of the adjusting plates 363. The ends of the four push rods 364 furthest from the center of the support base 31 are located inside the longitudinally adjacent drive slots. During the movement of the adjusting plates 363, the push rods 364 move, sliding and rotating relative to the adjusting slots within the drive slots. This causes the push rods 364 to rotate the drive plate 362 downwards around the mounting rod 361. During this downward rotation, the drive plate 362 exerts a downward thrust on the connecting plate 33, causing the connecting plate 33 to move with the directional foot... The caster 34 and the self-locking caster 35 move together. The lower sides of the outer arc surfaces of the caster 34 and the self-locking caster 35 are on the same horizontal plane. When the caster 34 and the self-locking caster 35 extend from the inside of the support base 31, they will lift the machine body 1. Then, the foot brake of the self-locking caster 35 will be released. After that, the machine body 1 will be moved by the external traction device. The drive method has been optimized. The whole process can be completed by only one motor 15, which ensures the synchronicity of the caster 34 and the self-locking caster 35 during movement. During the subsequent movement, the position of the machine body will not tilt, which further improves the stability of the machine body 1.

[0024] Among them, the front end of the machine body 1 is equipped with a control switch 2, the input end of the control switch 2 is electrically connected to an external power supply, and can regulate the electrical components inside the equipment.

[0025] The support base 31 has fixed plates 12 on its left and right sides, respectively. A double-acting screw 13 is rotatably connected between the inner surfaces of the two fixed plates 12. An adjusting plate 363 is threaded to the left and right sides of the outer arc surface of the double-acting screw 13 through a threaded hole on its lower right end. A bellows 14 is provided between the end of the adjusting plate 363 away from the center of the support base 31, the end of the fixed plate 12 near the center of the support base 31, and the inner surfaces of the two adjusting plates 363. The bellows 14 are sleeved on the left and right sides and the middle of the outer arc surface of the double-acting screw 13. A motor 15 is installed at the right end of the fixed plate 12. The left end of the output shaft of the motor 15 is fixedly connected to the right end of the bidirectional screw 13. The input end of the motor 15 is electrically connected to the output end of the control switch 2. The output shaft of the motor 15 drives the bidirectional screw 13 to rotate. During the rotation, the bidirectional screw 13 will drive the adjusting plate 363 to move through the threaded connection. At this time, the bellows 14 in the middle extends and the bellows 14 on the left and right sides retract. The bellows 14 can prevent the bidirectional screw 13 from directly contacting the external environment. During the movement of the adjusting plate 363, the push rod 364 will move.

[0026] Springs 16 are installed between the lower end of the connecting plate 33 and the bottom wall of the support base 31. The springs 16 are all sleeved on the outside of the lower side of the guide slide column 32. The inspection ports on the lower sides of the left and right walls of the support base 31 are hinged with inspection doors 17. The springs 16 correspond to the left and right positions of the vertically adjacent inspection doors 17. The thrust generated by the extension of the springs 16 can drive the directional casters 34 and the self-locking swivel wheels 35 to move upward through the connecting plate 33. When the directional casters 34 and the self-locking swivel wheels 35 are retracted into the support base 31, the lower end of the support base 31 is in contact with the ground again. The operator can periodically open the inspection doors 17 to clean and lubricate the springs 16, which can further improve the service life of the springs 16.

[0027] Specifically: the lower ends of the intake pipe 4 and exhaust pipe 5 are connected to the mounting grooves opened on the upper side of the outer arc surface of the vertically adjacent mounting pipe 6; connecting pipes 9 are installed in the connecting grooves opened on the left and right sides of the top wall of the five heat-conducting plates 8; the upper ends of the five left connecting pipes 9 are connected to the air inlets opened on the lower side of the outer arc surface of the left mounting pipe 6; the upper ends of the five right connecting pipes 9 are connected to the return outlets opened on the lower side of the outer arc surface of the right mounting pipe 6; the lower ends of two horizontally adjacent connecting pipes 9 are connected by a conveying pipe 10; water vapor enters the interior of the left mounting pipe 6 through the intake pipe 4; the interior of the left mounting pipe 6... Water vapor enters the interior of the conveying pipe 10 through the connecting pipe 9 on the left. As the water vapor flows inside the conveying pipe 10, its heat is transferred to the heat-conducting plate 8 (the heat-conducting plate 8 is made of stainless steel, which has good thermal conductivity and can quickly transfer the heat energy of the steam to the curtain). After the temperature of the heat-conducting plate 8 rises, its surface emits infrared radiation. This radiation can be absorbed by the curtain, thereby heating the curtain and drying and shaping it. After use, the water vapor enters the interior of the mounting pipe 6 on the right through the connecting pipe 9 on the right, and is finally discharged through the exhaust pipe 5.

[0028] Among them, exhaust holes 18 are respectively provided on the upper side of the inner arc surface of the body 1. The exhaust holes 18 are located between the right end of the air intake pipe 4 and the left end of the exhaust pipe 5. The exhaust holes 18 can help regulate the pressure inside the body 1 and prevent the pressure from being too high.

[0029] The working principle of the steam heating and setting machine provided by this utility model is as follows: Before use, the motor 15 starts running by adjusting the control switch 2. The output shaft of the motor 15 drives the bidirectional screw 13 to rotate. During the rotation, the bidirectional screw 13 drives the adjusting plate 363 to move through the threaded connection. At this time, the corrugated pipe 14 in the middle contracts, and the corrugated pipes 14 on the left and right sides extend. The corrugated pipes 14 can prevent the bidirectional screw 13 from directly contacting the external environment. During the movement of the adjusting plate 363, the push rod 364 will move. During the movement, the push rod 364 will slide inside the drive groove and rotate relative to the adjusting groove, so that the push rod 364 carries the drive plate 362 to rotate downward around the mounting rod 361. 2. During downward rotation, the drive plate 362 exerts a downward thrust on the connecting plate 33, causing the spring 16 to contract. This allows the connecting plate 33 to move along with the directional caster 34 and the self-locking swivel wheel 35. The lower sides of the outer arc surfaces of the directional caster 34 and the self-locking swivel wheel 35 are on the same horizontal plane. When the directional caster 34 and the self-locking swivel wheel 35 extend from the inside of the support base 31, they lift the machine body 1. Then, the foot brake of the self-locking swivel wheel 35 is released, and the machine body 1 is moved by an external traction device. During the movement of the machine body 1, the directional caster 34 and the self-locking swivel wheel 35 reduce the friction between the machine body 1 and the ground by rolling, thus allowing the machine body 1 to move more easily. The movable bracket allows the wheels to rotate in multiple directions, providing flexible mobility. After the machine body 1 moves to the designated work location, the foot brake of the self-locking caster 35 is closed again, thereby locking the caster 35. Then, through the control switch 2, the motor 15 starts to run. The output shaft of the motor 15 drives the bidirectional screw 13 to rotate. During the rotation of the bidirectional screw 13, it drives the adjusting plate 363 to move through the threaded connection. At this time, the bellows 14 in the middle extends, and the bellows 14 on the left and right sides retract. During the movement of the adjusting plate 363, it drives the push rod 364 to move. During the movement, the push rod 364 slides inside the drive groove and rotates relative to the adjusting groove, thereby causing the push rod 364 to carry the drive plate 363. 2. Rotate upwards with mounting rod 361 as the center. During the upward rotation of drive plate 362, the thrust generated by the extension of spring 16 can drive the directional caster 34 and self-locking swivel wheel 35 to move upwards through connecting plate 33. When the directional caster 34 and self-locking swivel wheel 35 retract into the support base 31, the lower end of the support base 31 re-contacts the ground, thereby achieving the support and fixation of the machine body 1 and internal equipment. The operator can periodically open the maintenance door 17 to clean and lubricate spring 16, which can further improve the service life of spring 16. Then connect the air inlet pipe 4 and exhaust pipe 5 to the external pipe (the flange one at the upper end of air inlet pipe 4 and exhaust pipe 5 is connected to the flange two of the external pipe by screws).After opening the sealing door 11, the operator sends the curtain mounting bracket along the guide rail 7 into the body 1. After the curtain is loaded, the operator can insert a sealing plug at the right end of the guide rail 7 to prevent the mounting bracket from separating from the guide rail. Then, the sealing door 11 is closed again (the locking method of the sealing door 11 when closed adopts the common technology of connecting door locks to the body in the existing technology). Then, water vapor enters the interior of the left mounting pipe 6 through the air inlet pipe 4. The water vapor inside the left mounting pipe 6 will enter the interior of the delivery pipe 10 through the left connecting pipe 9. The water vapor flows through the delivery pipe 10. During the process, the heat from the steam is transferred to the heat-conducting plate 8 (made of stainless steel, which has excellent thermal conductivity and can quickly transfer the heat energy of the steam to the curtains) through the conveying pipe 10. As the temperature of the heat-conducting plate 8 rises, its surface emits infrared radiation, which is absorbed by the curtains, thus heating them and drying them. After use, the steam enters the right-side mounting pipe 6 through the connecting pipe 9 on the right side and is finally discharged through the exhaust pipe 5. The exhaust port 18 helps regulate the pressure inside the machine body 1, preventing excessive pressure.

[0030] It is worth noting that the motor 15 disclosed in the above embodiments can be 5IK200A-AF, and the control switch 2 is provided with a control button corresponding to the motor 15 for controlling its switching.

[0031] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A steam-heated setting machine, comprising a body (1), wherein an air inlet (4) and an exhaust pipe (5) are respectively provided in the air inlet and exhaust outlet on the upper side of the outer arc surface of the body (1), and guide rails (7) and heat-conducting plates (8) are respectively provided in the middle part of the bottom wall of the body (1), the guide rails (7) are respectively spaced apart from the longitudinally adjacent heat-conducting plates (8), and a sealing door (11) is hinged to the right end of the body (1), characterized in that: It also includes mobile mechanisms (3); The moving mechanism (3) includes a support base (31), directional casters (34), self-locking casters (35), and an adjustment component (36). The support base (31) is located on the lower side of the outer arc surface of the body (1). The left and right sides inside the support base (31) are respectively provided with directional casters (34) and self-locking casters (35). The adjustment component (36) is provided inside the support base (31). The directional casters (34) and self-locking casters (35) are driven by the adjustment component (36).

2. The steam-heated setting machine according to claim 1, characterized in that: The front end of the body (1) is provided with a control switch (2), and the input end of the control switch (2) is electrically connected to an external power source.

3. The steam-heated setting machine according to claim 2, characterized in that: The moving mechanism (3) also includes guide slides (32) and connecting plates (33). The guide slides (32) are respectively set on the left and right sides of the bottom wall of the support base (31). The two guide slides (32) are slidably connected to the corresponding sliding holes at the lower end of the connecting plate (33). The left and right sides of the lower end of the connecting plate (33) are respectively provided with directional casters (34) and self-locking universal wheels (35). The left and right sides of the bottom wall of the support base (31) are respectively provided with four clearance grooves. The two directional casters (34) and the two self-locking universal wheels (35) correspond to the vertically adjacent clearance grooves. The connecting plate (33) is installed in conjunction with the adjusting component (36).

4. The steam-heated setting machine according to claim 3, characterized in that: The adjustment assembly (36) includes a mounting rod (361), a drive plate (362), an adjustment plate (363), and a push rod (364). The mounting rod (361) is rotatably connected to the upper side of the front and rear walls of the support base (31). The middle part of the outer arc surface of the mounting rod (361) is provided with a drive plate (362). The lower side of the front end of the drive plate (362) is provided with a drive groove. The lower ends of the four drive plates (362) are in contact with the upper end of the connecting plate (33). The two adjustment plates (363) are slidably connected to the bottom wall of the support base (31). The upper side of the front and rear ends of the adjustment plate (363) is provided with a push rod (364). The end of the four push rods (364) away from the center of the support base (31) is located inside the longitudinally adjacent drive groove.

5. The steam-heated setting machine according to claim 4, characterized in that: Fixed plates (12) are respectively provided on the left and right sides of the bottom wall of the support base (31). A bidirectional screw (13) is rotatably connected between the relative inner surfaces of the two fixed plates (12). The adjusting plate (363) is threaded to the left and right sides of the outer arc surface of the bidirectional screw (13) through the threaded hole opened on the lower side of its right end. A bellows (14) is provided between the end of the adjusting plate (363) away from the inner center of the support base (31) and the end of the fixed plate (12) close to the inner center of the support base (31) and the relative inner surfaces of the two adjusting plates (363). The bellows (14) are all sleeved on the left and right sides and the outside of the middle of the outer arc surface of the bidirectional screw (13). A motor (15) is provided at the right end of the right fixed plate (12). The left end of the output shaft of the motor (15) is fixedly connected to the right end of the bidirectional screw (13). The input end of the motor (15) is electrically connected to the output end of the control switch (2).

6. The steam-heated setting machine according to claim 3, characterized in that: Springs (16) are respectively provided between the lower end of the connecting plate (33) and the bottom wall of the support base (31). The springs (16) are all sleeved on the outside of the lower side of the guide slide column (32). The inspection ports opened on the lower side of the left and right walls of the support base (31) are hinged with inspection doors (17). The springs (16) correspond to the left and right positions of the vertically adjacent inspection doors (17).

7. The steam-heated setting machine according to claim 1, characterized in that: The lower ends of the air inlet pipe (4) and the exhaust pipe (5) are respectively connected to the mounting groove opened on the upper side of the outer arc surface of the vertically adjacent mounting pipe (6). The connecting grooves opened on the left and right sides of the top wall of the five heat conduction plates (8) are all equipped with connecting pipes (9). The upper ends of the five left connecting pipes (9) are connected to the air supply port opened on the lower side of the outer arc surface of the left mounting pipe (6). The upper ends of the five right connecting pipes (9) are connected to the return port opened on the lower side of the outer arc surface of the right mounting pipe (6). The lower ends of two horizontally adjacent connecting pipes (9) are connected by a conveying pipe (10).

8. The steam-heated setting machine according to claim 1, characterized in that: Exhaust holes (18) are provided on the upper side of the inner arc surface of the body (1). The exhaust holes (18) are located between the right end of the intake pipe (4) and the left end of the exhaust pipe (5).

Citation Information

Patent Citations

  • Steam setting machine

    CN220433225U