Setting machine with discharged material flattening structure
By designing an automatic flattening structure in the setting machine and using components such as lifting plates and extrusion wheels, the problem of wrinkling or folding of the fabric before setting is solved, and the automatic flattening and shaping effect of the fabric is improved.
Patent Information
- Application Number
- CN202421661708.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-15
AI Technical Summary
Before shaping the fabric, the existing shaping machines may wrinkle or fold, resulting in poor setting effect. The operator needs to manually flatten it, which increases the difficulty of operation.
A shaping machine with a discharge flattening structure is designed. By setting up a lifting plate, an extrusion wheel, a driving motor and a gear, the function of automatically flattening the fabric before entering the drying box is realized.
Automatic flattening of fabrics is achieved, which improves the shaping effect, reduces the operation difficulty of operators, and improves production efficiency.
Smart Images

Figure CN222923440U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of setting machines, and more specifically, the utility model relates to a setting machine with a discharging and flattening structure. Background Art
[0002] A setting machine is a machine used for setting textile products. The setting workshop is a main part of a printing and dyeing factory. The quality of its processing level directly affects the cleanliness of the cloth surface, the width, the stability of the width, and is the main channel for improving the value of the fabric through post-finishing processing.
[0003] When operating personnel process the printed and dyed cloth, they often use a setting machine. Most of the setting machines on the market at present use a drying method to set the cloth, so as to improve the hand feeling, color, width, etc. of the cloth for subsequent processing and selling of the cloth. However, in the actual use process of the existing setting machine, although it has a basic setting function for the cloth, before setting the cloth, since the cloth is driven by rollers, the cloth may be wrinkled or even folded. If it is directly set, it will surely affect the setting effect. At this time, the operating personnel need to manually flatten it, which brings inconvenience to the operation and use of the operating personnel. Therefore, it needs to be improved. Content of the Utility Model
[0004] In order to overcome the deficiencies of the prior art, the utility model provides a setting machine with a discharging and flattening structure, which has the advantage of automatically flattening the cloth before entering the drying box.
[0005] To achieve the above purpose, the utility model provides the following technical solution: A setting machine with a discharging and flattening structure, comprising:
[0006] A feeding box, a vertical groove is opened on the front surface of the feeding box, a fixed plate is fixedly installed inside the feeding box, inclined grooves are opened on both the front and rear sides of the top of the fixed plate, a setting box is fixedly installed on the right side of the feeding box, the left side of the setting box is fixedly connected to the right side of the fixed plate, a feeding port is opened on the left side of the setting box, a discharging port is opened on the right side of the setting box, and a discharging box is fixedly installed on the right side of the setting box;
[0007] A driving mechanism, which is arranged on the front surface of the feeding box;
[0008] A flattening mechanism, which is arranged inside the vertical groove;
[0009] Among them, the flattening mechanism includes a toothed plate. The back of the toothed plate is movably connected to the front of the feeding box. The top of the toothed plate is fixedly installed with a lifting block. The other end of the lifting block extends into the feeding box through a vertical groove. The other end of the lifting block is fixedly installed with a lifting plate. The outer surfaces of the front and rear ends of the lifting plate are both movably connected to the inside of the feeding box. Vertical blocks are movably sleeved inside the front and rear ends of the lifting plate. The bottom end of the vertical block is fixedly installed with a fixed block. An extrusion wheel is movably sleeved inside the bottom end of the fixed block. The top of the fixed block is fixedly installed with a spring. The top of the spring is fixedly connected to the bottom end of the lifting plate. The inside of the spring is movably sleeved with the outer surface of the vertical block.
[0010] As a preferred technical solution of the present invention, the driving mechanism includes:
[0011] A square plate. The back of the square plate is fixedly connected to the front of the feeding box. A driving motor is fixedly installed on the right side of the square plate. The other end of the output shaft of the driving motor is fixedly sleeved with a rotating shaft. The other end of the rotating shaft penetrates the right side of the square plate and extends to the left side of the square plate;
[0012] A gear. The inside of the gear is fixedly sleeved with the other end of the rotating shaft. The outer surface of the gear is meshed with the front of the toothed plate.
[0013] As a preferred technical solution of the present invention, a first round rod is fixedly installed inside the feeding box. A first roller is movably sleeved on the outer surface of the first round rod.
[0014] As a preferred technical solution of the present invention, a first power motor is fixedly installed at the top of the front of the discharging box. The other end of the output shaft of the first power motor is fixedly sleeved with a long shaft. The other end of the long shaft penetrates the front of the discharging box and extends into the discharging box. The other end of the long shaft is movably connected to the inside of the discharging box. Rotating wheels are fixedly sleeved on the front and rear ends of the outer surface of the long shaft.
[0015] As a preferred technical solution of the present invention, a second round rod is fixedly installed inside the discharging box. A second roller is movably sleeved on the outer surface of the second round rod. A third round rod is fixedly installed on the right side inside the discharging box. A third roller is movably sleeved on the outer surface of the third round rod.
[0016] As a preferred technical solution of the present invention, a vertical plate is fixedly installed at the top of the front of the shaping box. A second power motor is fixedly installed on the front of the vertical plate. The other end of the output shaft of the second power motor is fixedly sleeved with a rotating shaft. The other end of the rotating shaft penetrates the front of the vertical plate and extends to the back of the vertical plate.
[0017] As a preferred technical solution of the present utility model, a lead screw is fixedly installed at the other end of the rotating shaft. The other end of the lead screw is movably connected to a baffle. The bottom end of the baffle is fixedly connected to the top end of the shaping box. A moving block is threadedly sleeved on the outer surface of the lead screw. The back surface of the moving block is movably connected to the front surface of the baffle. The bottom end of the moving block is movably connected to the top end of the shaping box.
[0018] As a preferred technical solution of the present utility model, a circular shaft is fixedly installed on the right side of the moving block. A moving rod is movably sleeved on the outer surface of the other end of the circular shaft. A short shaft is movably sleeved inside the top end of the moving rod.
[0019] As a preferred technical solution of the present utility model, the other end of the short shaft is movably sleeved with a vertical rod. The left side of the vertical rod is movably connected to the right side of the moving rod. The bottom end of the vertical rod penetrates through the top end of the shaping box and extends into the interior of the shaping box.
[0020] As a preferred technical solution of the present utility model, a movable block is fixedly installed at the bottom end of the vertical rod. A heating wire is fixedly sleeved inside the movable block. The heating wire is movably connected to the interior of the shaping box.
[0021] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0022] 1. By setting the lifting plate, pressing wheels, driving motor and gear in the present utility model, when the driving motor operates, the rotating shaft will drive the gear to rotate at this time. Then the gear will drive the lifting block downward through the toothed plate during rotation. Subsequently, the lifting block will drive the two vertical blocks to move downward through the lifting plate. Immediately afterwards, the two vertical blocks will drive the two pressing wheels to move downward through the two fixing blocks. When the two pressing wheels move downward into the interior of the two inclined grooves, they will press the fabric located at the top end of the fixing plate. When the fabric moves to the right, it will cause the two pressing wheels to rotate. At this time, the two pressing wheels will flatten the fabric, thus realizing the function of automatically flattening the fabric.
[0023] 2. By setting the second power motor, lead screw, moving rod and vertical rod in the present utility model, when the second power motor operates, the rotating shaft will drive the lead screw to rotate at this time. Since the bottom end of the moving block is movably connected to the top end of the shaping box, the lead screw will drive the moving block to move forward during rotation at this time. Then the moving block will drive the circular shaft to move forward. Immediately afterwards, the circular shaft will drive the moving rod to move. At the same time, the top end of the moving rod will drive the vertical rod to move through the short shaft. Since the vertical rod can only move up and down, the vertical rod will drive the heating wire to move downward through the movable block at this time, thus realizing the function of adjusting the drying height of the heating wire according to fabrics with different water contents. Description of the Drawings
[0024] Figure 1 Structural schematic diagram of the present utility model;
[0025] Figure 2 Rear view structural schematic diagram of the present utility model;
[0026] Figure 3 Cross-sectional structural schematic diagram of the present utility model;
[0027] Figure 4 Cross-sectional structural schematic diagram of the drive motor of the present utility model;
[0028] Figure 5 Cross-sectional structural schematic diagram of the first round rod of the present utility model;
[0029] Figure 6 Cross-sectional structural schematic diagram of the shaping box of the present utility model;
[0030] Figure 7 Cross-sectional structural schematic diagram of the first power motor of the present utility model;
[0031] Figure 8 Cross-sectional structural schematic diagram of the third round rod of the present utility model.
[0032] In the figure: 1, feeding box; 2, vertical groove; 3, fixed plate; 4, inclined groove; 5, shaping box; 6, feeding port; 7, discharging port; 8, discharging box; 9, toothed plate; 10, lifting block; 11, lifting plate; 12, vertical block; 13, fixed block; 14, extrusion wheel; 15, spring; 16, square plate; 17, drive motor; 18, rotating shaft; 19, gear; 20, first round rod; 21, first roller; 22, second round rod; 23, second roller; 24, first power motor; 25, long shaft; 26, rotating wheel; 27, third round rod; 28, third roller; 29, vertical plate; 30, second power motor; 31, rotating shaft; 32, lead screw; 33, baffle; 34, moving block; 35, round shaft; 36, moving rod; 37, short shaft; 38, vertical rod; 39, movable block; 40, heating wire. Specific embodiments
[0033] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0034] As Figures 1 to 8 shown, the present utility model provides a shaping machine with a discharging and flattening structure, including:
[0035] The feeding box 1 has a vertical groove 2 opened on its front surface. Inside the feeding box 1, a fixed plate 3 is fixedly installed. On the front and back sides of the top end of the fixed plate 3, inclined grooves 4 are opened. On the right side of the feeding box 1, a shaping box 5 is fixedly installed. The left side of the shaping box 5 is fixedly connected to the right side of the fixed plate 3. An inlet 6 is opened on the left side of the shaping box 5, and an outlet 7 is opened on the right side of the shaping box 5. On the right side of the shaping box 5, a discharge box 8 is fixedly installed;
[0036] The driving mechanism is arranged on the front surface of the feeding box 1;
[0037] The flattening mechanism is arranged inside the vertical groove 2;
[0038] Among them, the flattening mechanism includes a toothed plate 9. The back surface of the toothed plate 9 is movably connected to the front surface of the feeding box 1. At the top end of the toothed plate 9, a lifting block 10 is fixedly installed. The other end of the lifting block 10 extends into the feeding box 1 through the vertical groove 2. The other end of the lifting block 10 is fixedly installed with a lifting plate 11. The outer surfaces of the front and rear ends of the lifting plate 11 are movably connected to the inside of the feeding box 1. Inside the front and rear ends of the lifting plate 11, vertical blocks 12 are movably sleeved. At the bottom end of the vertical block 12, a fixed block 13 is fixedly installed. Inside the bottom end of the fixed block 13, a pressing wheel 14 is movably sleeved. At the top end of the fixed block 13, a spring 15 is fixedly installed. The top end of the spring 15 is fixedly connected to the bottom end of the lifting plate 11. The inside of the spring 15 is movably sleeved with the outer surface of the vertical block 12.
[0039] Due to the limiting effect of the vertical groove 2, the lifting block 10 can only move up and down. When the toothed plate 9 drives the lifting plate 11 to move downward through the lifting block 10, at this time, the lifting plate 11 will drive the two vertical blocks 12 to move downward at the same time. Subsequently, the two vertical blocks 12 will drive the two fixed blocks 13 and the two pressing wheels 14 to move downward respectively. When the outer surfaces of the two pressing wheels 14 are in contact with the inside of the two inclined grooves 4 during the downward movement, at this time, the two pressing wheels 14 will squeeze the fabric located at the top end of the fixed plate 3. When the fabric moves to the right, the two pressing wheels 14 will rotate. During this process, the wrinkled or folded fabric will be flattened by the two pressing wheels 14. At the same time, the two springs 15 will be in a compressed state. Due to the elastic force of the two springs 15, the two pressing wheels 14 can squeeze the fabric without damaging the fabric.
[0040] Among them, the driving mechanism includes:
[0041] A square plate 16. The back surface of the square plate 16 is fixedly connected to the front surface of the feeding box 1. On the right side of the square plate 16, a driving motor 17 is fixedly installed. The other end of the output shaft of the driving motor 17 is fixedly sleeved with a rotating shaft 18. The other end of the rotating shaft 18 penetrates through the right side of the square plate 16 and extends to the left side of the square plate 16;
[0042] Gear 19 has its interior fixedly sleeved on the other end of the rotating shaft 18, and the outer surface of gear 19 is meshed and connected to the front surface of the toothed plate 9.
[0043] When the driving motor 17 operates, the rotating shaft 18 will drive gear 19 to rotate at this time. Since gear 19 is meshed with the toothed plate 9, gear 19 will drive the toothed plate 9 to move downward during rotation at this time.
[0044] Among them, a first round bar 20 is fixedly installed inside the feeding box 1, and a first roller 21 is movably sleeved on the outer surface of the first round bar 20.
[0045] Due to the design of the first round bar 20, when the fabric moves to the right, it will drive the first roller 21 to rotate along the outer surface of the first round bar 20.
[0046] Among them, a first power motor 24 is fixedly installed at the top of the front surface of the discharging box 8. The other end of the output shaft of the first power motor 24 is fixedly sleeved with a long shaft 25. The other end of the long shaft 25 penetrates the front surface of the discharging box 8 and extends into the interior of the discharging box 8. The other end of the long shaft 25 is movably connected to the interior of the discharging box 8, and rotating wheels 26 are fixedly sleeved on both the front and rear ends of the outer surface of the long shaft 25.
[0047] When the first power motor 24 operates, the long shaft 25 will drive the two rotating wheels 26 to rotate simultaneously at this time.
[0048] Among them, a second round bar 22 is fixedly installed inside the discharging box 8, a second roller 23 is movably sleeved on the outer surface of the second round bar 22, a third round bar 27 is fixedly installed on the right side inside the discharging box 8, and a third roller 28 is movably sleeved on the outer surface of the third round bar 27.
[0049] Due to the design of the shapes of the two rotating wheels 26 and the second roller 23, when the two rotating wheels 26 rotate, they will cooperate with the second roller 23 to drive the fabric to move to the right. Due to the design of the third round bar 27, the third roller 28 can rotate along the outer surface of the third round bar 27.
[0050] Among them, a vertical plate 29 is fixedly installed at the top of the front surface of the shaping box 5, a second power motor 30 is fixedly installed on the front surface of the vertical plate 29, the other end of the output shaft of the second power motor 30 is fixedly sleeved with a rotating shaft 31, and the other end of the rotating shaft 31 penetrates the front surface of the vertical plate 29 and extends to the back surface of the vertical plate 29.
[0051] When the second power motor 30 operates, the rotating shaft 31 will rotate at this time.
[0052] Among them, the other end of the rotating shaft 31 is fixedly installed with a lead screw 32. The other end of the lead screw 32 is movably connected with a baffle 33. The bottom end of the baffle 33 is fixedly connected with the top end of the shaping box 5. The outer surface of the lead screw 32 is threadedly sleeved with a moving block 34. The back surface of the moving block 34 is movably connected with the front surface of the baffle 33. The bottom end of the moving block 34 is movably connected with the top end of the shaping box 5.
[0053] When the rotating shaft 31 drives the lead screw 32 to rotate, at this time, the moving block 34 will move under the drive of the lead screw 32. Since the bottom end of the moving block 34 is movably connected with the top end of the shaping box 5, at this time, the moving block 34 will move forward.
[0054] Among them, a round shaft 35 is fixedly installed on the right side of the moving block 34. The outer surface of the other end of the round shaft 35 is movably sleeved with a moving rod 36. The inside of the top end of the moving rod 36 is movably sleeved with a short shaft 37.
[0055] When the moving block 34 drives the round shaft 35 to move forward, at this time, the round shaft 35 will drive the moving rod 36 to move. At the same time, the other end of the moving rod 36 will drive the short shaft 37 to move.
[0056] Among them, the other end of the short shaft 37 is movably sleeved with a vertical rod 38. The left side of the vertical rod 38 is movably connected with the right side of the moving rod 36. The bottom end of the vertical rod 38 penetrates the top end of the shaping box 5 and extends into the inside of the shaping box 5.
[0057] Since the bottom end of the vertical rod 38 penetrates the top end of the shaping box 5 and extends into the inside of the shaping box 5, it will make the vertical rod 38 only able to move up and down. When the short shaft 37 moves, at this time, the vertical rod 38 will move downward under the drive of the short shaft 37.
[0058] Among them, a movable block 39 is fixedly installed at the bottom end of the vertical rod 38. A heating wire 40 is fixedly sleeved inside the movable block 39. The heating wire 40 is movably connected with the inside of the shaping box 5.
[0059] When the vertical rod 38 moves downward, at this time, the vertical rod 38 will drive the heating wire 40 to move downward through the movable block 39.
[0060] The working principle and usage process of the present utility model:
[0061] First, the operator passes the fabric through the feeding port 6 and the discharging port 7 and through the shaping box 5. At this time, the fabric will be located between the two rotating wheels 26 and the second roller 23, and at this time the fabric will be movably connected to the outer surfaces of the fixed plate 3, the first roller 21 and the third roller 28 respectively. At this time, the operator starts the first power motor 24, and at this time the long shaft 25 will drive the two rotating wheels 26 to rotate. Due to the design of the outer shapes of the two rotating wheels 26, when the two rotating wheels 26 rotate, they will cooperate with the second roller 23 to make the fabric move to the right. Subsequently, the operator starts the driving motor 17. At this time, the rotating shaft 18 will rotate, and then the gear 19 will rotate driven by the rotating shaft 18. Since the outer surface of the gear 19 is meshed with the front surface of the toothed plate 9, at this time the gear 19 will drive the toothed plate 9 to move during rotation. At this time, the top end of the toothed plate 9 will drive the lifting block 10 to move. Due to the limiting effect inside the vertical groove 2, the lifting block 10 can only move up and down. At this time, the toothed plate 9 will drive the lifting plate 11 to move downward through the lifting block 10. At the same time, the lifting plate 11 will drive the two vertical blocks 12 to move downward. Then the two vertical blocks 12 will drive the two pressing wheels 14 to move downward through the two fixing blocks 13. At this time, the two springs 15 will be in a compressed state. When the outer surfaces of the two pressing wheels 14 come into contact with the inside of the two inclined grooves 4 during downward movement, at this time the two pressing wheels 14 will press the fabric located at the top of the fixed plate 3. Since the inside of the two pressing wheels 14 is movably sleeved with the inside of the bottom ends of the two fixing blocks 13 respectively, when the fabric moves to the right, at this time the two pressing wheels 14 will rotate driven by the fabric. During this process, the two pressing wheels 14 will flatten the folded fabric, thus realizing the function of automatically flattening the fabric before entering the shaping box 5.
[0062] Subsequently, the operator starts the second power motor 30. At this time, the rotating shaft 31 will rotate, and then the lead screw 32 will rotate driven by the rotating shaft 31. Since the outer surface of the lead screw 32 is threadedly sleeved with the inside of the moving block 34, at this time the lead screw 32 will drive the moving block 34 to move during rotation. Also, since the bottom end of the moving block 34 is movably connected to the top of the shaping box 5, at this time the moving block 34 will move forward driven by the lead screw 32. Subsequently, the moving block 34 will drive the moving rod 36 to move through the round shaft 35. At the same time, the top end of the moving rod 36 will drive the vertical rod 38 to move through the short shaft 37. Since the bottom end of the vertical rod 38 penetrates the top of the shaping box 5 and extends into the shaping box 5, the vertical rod 38 can only move up and down. At this time, the vertical rod 38 will drive the heating wire 40 to move downward through the movable block 39, thus realizing the function of adjusting the drying height of the heating wire 40 according to the fabric with different water contents.
[0063] It should be noted that, in this document, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variation thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.
[0064] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A shaping machine with a discharging and flattening structure, characterized in that: Included are: A feed box (1), wherein a vertical slot (2) is provided on the front of the feed box (1), a fixed plate (3) is fixedly installed inside the feed box (1), and inclined slots (4) are provided on both the front and rear sides of the top of the fixed plate (3), a shaping box (5) is fixedly installed on the right side of the feed box (1), the left side of the shaping box (5) is fixedly connected to the right side of the fixed plate (3), a feed port (6) is provided on the left side of the shaping box (5), a discharge port (7) is provided on the right side of the shaping box (5), and a discharge box (8) is fixedly installed on the right side of the shaping box (5); A driving mechanism, the driving mechanism being arranged on the front side of the feed box (1); A flattening mechanism, the flattening mechanism being arranged inside the vertical groove (2); The flattening mechanism comprises a tooth plate (9), the back side of the tooth plate (9) is movably connected to the front side of the feed box (1), a lifting block (10) is fixedly mounted on the top of the tooth plate (9), the other end of the lifting block (10) extends to the inside of the feed box (1) through the vertical slot (2), a lifting plate (11) is fixedly mounted on the other end of the lifting block (10), the outer surfaces of the front and rear ends of the lifting plate (11) are both movably connected to the inside of the feed box (1), the interior of the front and rear ends of the lifting plate (11) are both movably sleeved with vertical blocks (12), the bottom end of the vertical block (12) is fixedly mounted with a fixed block (13), the bottom end of the fixed block (13) is movably sleeved with an extrusion wheel (14), the top end of the fixed block (13) is fixedly mounted with a spring (15), the top end of the spring (15) is fixedly connected to the bottom end of the lifting plate (11), and the interior of the spring (15) is movably sleeved with the outer surface of the vertical block (12).
2. A shaping machine with a discharging and flattening structure according to claim 1, characterized in that: The driving mechanism comprises: A square plate (16), the back side of the square plate (16) being fixedly connected to the front side of the feed box (1), a drive motor (17) being fixedly mounted on the right side of the square plate (16), a rotating shaft (18) being fixedly sleeved on the other end of the output shaft of the drive motor (17), and the other end of the rotating shaft (18) passing through the right side of the square plate (16) and extending to the left side of the square plate (16); A gear (19), wherein the interior of the gear (19) is fixedly sleeved with the other end of the rotating shaft (18), and the outer surface of the gear (19) is meshingly connected with the front surface of the toothed plate (9).
3. A shaping machine with a material discharging and flattening structure according to claim 1, characterized in that: A first round rod (20) is fixedly mounted inside the feed box (1), and a first roller (21) is movably sleeved on the outer surface of the first round rod (20).
4. A shaping machine with a material discharging and flattening structure according to claim 1, characterized in that: A first power motor (24) is fixedly mounted on the top of the front face of the discharge box (8); a long shaft (25) is fixedly sleeved on the other end of the output shaft of the first power motor (24); the other end of the long shaft (25) passes through the front face of the discharge box (8) and extends into the interior of the discharge box (8); the other end of the long shaft (25) is movably connected to the interior of the discharge box (8); and rotating wheels (26) are fixedly sleeved on both the front and rear ends of the outer surface of the long shaft (25).
5. The forming machine with a material discharging and flattening structure according to claim 1, characterized in that: A second round rod (22) is fixedly installed inside the discharge box (8), and a second roller (23) is movably sleeved on the outer surface of the second round rod (22). A third round rod (27) is fixedly installed on the right side inside the discharge box (8), and a third roller (28) is movably sleeved on the outer surface of the third round rod (27).
6. A shaping machine with a material discharging and flattening structure according to claim 1, characterized in that: A vertical plate (29) is fixedly mounted on the top of the front side of the shaping box (5), a second power motor (30) is fixedly mounted on the front side of the vertical plate (29), a rotating shaft (31) is fixedly sleeved on the other end of the output shaft of the second power motor (30), and the other end of the rotating shaft (31) passes through the front side of the vertical plate (29) and extends to the back side of the vertical plate (29).
7. A shaping machine with a discharging and flattening structure according to claim 6, characterized in that: A lead screw (32) is fixedly mounted on the other end of the rotating shaft (31); a baffle (33) is movably connected to the other end of the lead screw (32); a bottom end of the baffle (33) is fixedly connected to the top end of the shaping box (5); a moving block (34) is threadedly sleeved on the outer surface of the lead screw (32); a back side of the moving block (34) is movably connected to the front side of the baffle (33); and a bottom end of the moving block (34) is movably connected to the top end of the shaping box (5).
8. A shaping machine with a material discharging and flattening structure according to claim 7, characterized in that: A round shaft (35) is fixedly mounted on the right side of the moving block (34); a moving rod (36) is movably sleeved on the outer surface of the other end of the round shaft (35); and a short shaft (37) is movably sleeved on the top end of the moving rod (36).
9. A shaping machine with a material discharging and flattening structure according to claim 8, characterized in that: The other end of the short shaft (37) is movably sleeved with a vertical rod (38), the left side of the vertical rod (38) is movably connected to the right side of the motion rod (36), and the bottom end of the vertical rod (38) passes through the top of the shaping box (5) and extends into the interior of the shaping box (5).
10. A shaping machine with a material discharging and flattening structure according to claim 9, characterized in that: A movable block (39) is fixedly mounted on the bottom end of the vertical rod (38), a heating wire (40) is fixedly sleeved inside the movable block (39), and the heating wire (40) is movably connected to the inside of the shaping box (5).