Rope heating and shaping device
By designing a rope heating and setting device including a cabinet body, a heating body, a guide roller and a driving roller, the problem of deformation of the rope during heating and cooling is solved, and efficient heating and setting and production efficiency are improved.
Patent Information
- Application Number
- CN202510396236.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2025-06-13
AI Technical Summary
During the heating and setting process of existing ropes, there is no traction tool after cooling, which causes the rope to easily deform during the heating and cooling stages.
A rope heating and setting device is designed, including a cabinet body, a heating body, a guide roller and a driving roller, through which the rope is continuously pulled and guided during the heating and cooling process to ensure that it remains stable throughout the setting process.
The device can efficiently heat and shape the rope, ensuring that it does not deform during heating and cooling, improving production efficiency and physical properties of the rope.
Smart Images

Figure CN120138863A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of rope shaping, and particularly to a rope heating and shaping device. Background Art
[0002] The main reason for the heating and shaping of safety ropes is to improve their physical properties and service life. In the production process of safety ropes, heating and shaping is an important process. Through heating and cooling treatments, the organizational structure of safety ropes can be optimized, thereby improving their strength, corrosion resistance, and toughness. Specifically, 1. Optimize the organizational structure: After processes such as wire drawing and strand twisting, the molecular organizational structure of safety ropes may be relatively loose, resulting in insufficient strength. Through heating and shaping, the organizational structure can be changed to make it more compact, thereby improving strength and toughness; 2. Improve corrosion resistance: During the heating and shaping process, the organizational structure of safety ropes is optimized, enabling better resistance to corrosion and extending service life; 3. Ensure dimensional stability: Heating and shaping can make the size and shape of safety ropes more stable, reducing deformation and damage during use.
[0003] The heating and shaping process of safety ropes can be divided into the following key stages: 1. The safety rope is fed into the heat setting machine, and its surface is gradually heated to the temperature required for shaping. The heat energy penetrates into the fiber interior, making the temperature of the fiber surface and interior reach equilibrium; 2. Maintain for a period of time in a high-temperature environment to reorient and arrange the fiber molecular chains; 3. Cool to fix the new arrangement state of the fibers, thus completing the shaping. And after the rope has cooled, the rope needs to be collected, and before collection, the rope needs to be pulled, so that the rope is continuously pulled during the heating and cooling stages, enabling the rope to move smoothly. However, there is no tool for pulling the rope after the existing ropes are cooled and shaped, resulting in the rope being prone to deformation during the heating and cooling stages. For this reason, we propose a rope heating and shaping device. Summary of the Invention
[0004] The present invention provides a rope heating and shaping device, which has the advantages of high production efficiency and the ability to shape the rope in one go, and solves the problems raised in the above background art.
[0005] The technical solution of the present invention is implemented as follows: A rope heating and shaping device is designed, which includes a cabinet body. There is an inlet on one side of the cabinet body and an outlet on the other side. Inside the cabinet body, there are several heating elements for heating the inside of the cabinet body to a preset temperature. There are two layers of third guide rollers corresponding to the inlet and the outlet inside the cabinet body. The number of third guide rollers in each layer is multiple, and both ends of each third guide roller are rotatably connected to the cabinet body. On the side of the cabinet body close to the inlet, there is a fourth frame. A third driving roller is rotatably installed on the top of the fourth frame. The surface of the third driving roller is provided with multiple grooves for placing ropes. One end of the third driving roller is connected to a second driving device. A pressing wheel is placed in each groove. The pressing wheel is rotatably installed on a pressing rod. One end of the pressing rod is respectively rotatably installed on a U-shaped bracket, and the U-shaped bracket is connected to the fourth frame.
[0006] Preferably, a top cover is provided on the top of the cabinet body. At least one observation door is provided on the side surface of the cabinet body. A third guide shaft is provided at the inlet, and a fourth guide shaft is provided at the outlet. Both ends of the fourth guide shaft and the third guide shaft are rotatably connected to the cabinet body. A circulation fan is provided on one side of the cabinet body. Both ends of the circulation fan are respectively communicated with the inside of the cabinet body through circulation pipelines.
[0007] Preferably, a second driving roller is provided on the side of the third driving roller close to the cabinet body. Both ends of the second driving roller are rotatably connected to the fourth frame.
[0008] Preferably, a strip-shaped frame body is provided on the side of the fourth frame away from the cabinet body. Multiple support legs are provided at the bottom of the strip-shaped frame body. Multiple mounting shafts are provided on the top of the fourth frame. Both ends of each mounting shaft are respectively rotatably connected to the fourth frame. A fourth driving device is provided at one end of the fourth frame. Sprockets are provided on the output shaft of the fourth driving device and at the ends of each mounting shaft. The sprockets are connected by a transmission chain. Both ends of each mounting shaft are coaxially provided with mounting disks. The edges of the mounting disks are connected by multiple connecting rods. And a limiting frame is provided above each mounting shaft on the side close to the cabinet body. Both ends of the limiting frame are connected to the strip-shaped frame body through a frame.
[0009] Preferably, a fifth frame is provided between the fourth frame and the cabinet body. Two fourth driving rollers are installed on the top of the fifth frame. Both ends of the fourth driving rollers are rotatably connected to the fifth frame. One of the fourth driving rollers is connected to a third driving device.
[0010] Preferably, a third frame is provided between the fifth frame and the fourth frame. Two layers of fifth guide rollers are provided inside the third frame. Each layer of fifth guide rollers is respectively rotatably connected to the third frame. Fourth guide rollers are respectively provided at the tops of both sides of the third frame. Both ends of the fourth guide rollers are respectively rotatably connected to the third frame. A bearing rack is provided inside the third frame below. A hair dryer that blows air towards the fifth guide rollers is installed on the bearing rack.
[0011] Preferably, a second frame is provided on one side of the cabinet body close to the inlet. Two first driving rollers are provided on the top of the second frame. The two ends of each first driving roller are respectively rotatably connected to the second frame. One end of one of the first driving rollers is connected to the first driving device.
[0012] Preferably, a first frame is provided on the side of the second frame away from the cabinet body. A plurality of second guiding rollers are provided inside the top of the first frame. The two ends of each second guiding roller are respectively rotatably connected to the first frame. A support frame is movably provided at the inner bottom of the first frame. At least one first guiding roller is provided on the top of the support frame. The two ends of each first guiding roller are respectively rotatably connected to the support frame. The four corners of the support frame are respectively connected to the guide rails through sliders. The guide rails are arranged inside the first frame. A horizontal frame is provided on the side of the first frame away from the cabinet body. A driving shaft and a fifth driving device are sequentially provided on the top of the horizontal frame. The two ends of the driving shaft are respectively rotatably connected to the horizontal frame. Sprockets are respectively provided on one end of the driving shaft and the output shaft of the fifth driving device. The two sprockets are connected by a transmission chain. Support disks are coaxially installed at the two ends of the driving shaft respectively. The edges of the support disks are connected by a plurality of support rods. A second guiding shaft is provided on the top of the side of the first frame close to the horizontal frame. The two ends of the second guiding shaft are rotatably connected to the first frame.
[0013] Preferably, a placement table is provided on the side of the first frame away from the cabinet body. A U-shaped frame with a downward opening is provided at one end of the placement table close to the cabinet body. A first guiding shaft is provided on the top of the U-shaped frame. The two ends of the first guiding shaft are rotatably connected to the supports. The supports are connected to the U-shaped frame.
[0014] Compared with the prior art, when the present invention is in use, the rope coil with heating is placed on the placement table, and then the free end of the rope is drawn out. The free end of the rope sequentially passes through the first guiding shaft, the horizontal frame, the first frame, the second frame, and the third guiding shaft and enters the cabinet body. The rope can be heated and shaped in the cabinet body, and then the heated rope sequentially passes through the fourth guiding shaft, the fifth frame, the third frame, the fourth frame, and the strip-shaped frame body, and finally the rope is recycled from the strip-shaped frame body. This process is a complete rope heating production line, which can heat multiple ropes simultaneously and can shape the ropes by heating at one time, and is suitable for heating and shaping a large number of ropes. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0016] Figure 1 Structural schematic diagram of the front of the present invention Figure 1 。
[0017] Figure 2 Structural schematic diagram of the rear side of the present invention Figure 1 .
[0018] Figure 3 Structural schematic diagram of the front part of the present invention Figure 2 .
[0019] Figure 4 Structural schematic diagram of the rear side of the present invention Figure 2 .
[0020] Figure 5 Structural schematic diagram between the second frame and the cabinet body of the present invention.
[0021] Figure 6 Structural schematic diagram of the second frame of the present invention
[0022] Figure 7 Structural schematic diagram of the third frame, the fourth frame and the strip-shaped frame body of the present invention
[0023] Figure 8 Structural schematic diagram of the strip-shaped frame body and the fourth frame of the present invention
[0024] Figure 9 Structural schematic diagram of the fourth frame of the present invention
[0025] Figure 10 Front view of the present invention
[0026] In the figure: 1. Placing table; 2. U-shaped frame; 3. First guiding shaft; 4. Support disk; 5. Horizontal frame; 6. First guiding roller; 7. Support frame; 8. Second frame; 9. Circulation fan; 10. First driving device; 11. First driving roller; 12. Circulation pipeline; 13. Cabinet body; 14. Second guiding roller; 15. First frame; 16. Second guiding shaft; 17. Third guiding shaft; 18. Top cover; 19. Carrying frame; 20. Hair dryer; 21. Fourth frame; 22. Strip-shaped frame body; 23. Second driving roller; 24. Fourth guiding roller; 25. Third frame; 26. Fifth guiding roller; 27. Second driving device; 28. Third driving roller; 29. Limiting frame; 30. Mounting disk; 31. Third guiding roller; 32. Inlet; 33. Outlet; 34. Observation door; 35. Support rod; 36. Guide rail; 37. Fourth guiding shaft; 38. Driving shaft; 39. Fifth driving device; 40. Connecting rod; 41. Mounting shaft; 42. Pressing rod; 43. Pressing wheel; 44. U-shaped support; 45. Heating element; 46. Fourth driving roller; 47. Third driving device; 48. Fifth frame; 49. Fourth driving device; 50. Support. Detailed implementation manners
[0027] The technical solution of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative work shall fall within the protection scope of the present invention.
[0028] Referring to Figures 1 to 10 , the present invention provides a technical solution: a rope heating and shaping device, including a cabinet body 13. There is an inlet 32 on one side of the cabinet body 13, and an outlet 33 on the other side of the cabinet body 13. In the actual application process, the inlet 32 is located above the cabinet body 13, and the outlet 33 is located below the cabinet body 13. A number of heating elements 45 are provided in the cabinet body 13. The heating elements 45 are heating rods installed on the inner wall of the cabinet body 13, and the heating rods heat the inside of the cabinet body 13 to a preset temperature, and the rope can be effectively heated in the environment of this temperature;
[0029] Two layers of third guide rollers 31 are provided in the cabinet body 13. The two layers of third guide rollers 31 correspond to the inlet 32 and the outlet 33 respectively, that is, the inlet 32 and the outlet 33 are respectively arranged at the positions of the third guide rollers 31. The number of third guide rollers 31 in each layer is multiple and both ends thereof are rotatably connected to the cabinet body 13. In the actual operation process, the number of third guide rollers 31 in each layer is six. When in use, the rope to be baked enters the cabinet body 13 from the inlet 32. As Figure 10 shown, the rope is bent in an S shape around each third guide roller 31. While the third guide roller 31 supports the rope, it can also enable the rope to have a sufficient movement distance in the cabinet body 13. Finally, the rope exits from the outlet 33;
[0030] In order to enable the rope to move smoothly from the inlet and the outlet, a third guide shaft 17 is provided at the inlet 32, and a fourth guide shaft 37 is provided at the outlet 33. Both ends of the fourth guide shaft 37 and the third guide shaft 17 are rotatably connected to the cabinet body 13. Therefore, the provided fourth guide shaft 37 and third guide shaft 17 play a role in guiding and supporting the rope, avoiding the connection of the rope with the inlet and the outlet. As Figure 1 and Figure 5 shown, in order to facilitate threading the rope in the cabinet body and to facilitate observing the situation inside the cabinet body, a top cover 18 is provided on the top of the cabinet body 13. One side of the top cover 18 is rotatably connected to the top of the cabinet body 13, and the other side of the top cover is fastened to the cabinet body 13 through a lock. At the same time, at least one observation door 34 is provided on the side of the cabinet body 13. The observation door 34 is the same as the top cover. One side of it is rotatably connected to the cabinet body 13, and the other side is fastened to the cabinet body 13 through a lock;
[0031] The interior of the cabinet body 13 requires air circulation, which can enable the hot air inside it to circulate, so that the heat distribution inside the cabinet body is uniform. Therefore, a circulation fan 9 is provided on one side of the cabinet body 13. Both ends of the circulation fan 9 are respectively connected to the interior of the cabinet body 13 through a circulation pipeline 12. In this way, when the circulation fan 9 is started, the circulation fan 9 can drive the hot air inside the cabinet body 13 to circulate through the circulation pipeline 12.
[0032] Furthermore, as Figure 1 shown, a fourth frame 21 is provided on the side of the cabinet body 13 close to the inlet 32. A third driving roller 28 is rotatably installed at the top of the fourth frame 21. Multiple grooves for placing ropes (not labeled in the figure) are provided on the surface of the third driving roller 28. One end of the third driving roller 28 is connected to a second driving device 27, and the second driving device 27 is arranged on the fourth frame 21. A pressing wheel 43 is placed in each groove. The pressing wheel 43 is rotatably installed on a pressing rod 42. One end of the pressing rod 42 is respectively rotatably installed on a U-shaped bracket 44, and the U-shaped bracket 44 is connected to the fourth frame 21. It should be noted that after the ropes heated inside the cabinet body 13 come out from the outlet 33, they need to be collected. At this time, the ropes can be placed in the grooves on the surface of the third driving roller 28, and then the pressing wheel 43 is placed in the groove and on the ropes;
[0033] As Figure 8 and Figure 9 shown, the pressing wheel 43 and the pressing rod 42 press tightly in the groove by their own gravity to apply a certain pressure to the ropes. Since the third driving roller 28 rotates continuously driven by the second driving device 27, the rotating third driving roller 28 drives the ropes to be continuously conveyed outwards. At this time, the pressing wheel 43 will rotate along with the movement of the ropes, which can prevent the ropes from slipping in the groove. Moreover, in the actual application process, in order to increase the pressure of the pressing wheel 43, the length of the pressing rod 42 can be increased, or a counterweight block can be provided on the pressing rod 42. As Figure 8 shown, a second driving roller 23 is also provided on the side of the third driving roller 28 close to the cabinet body 13. Both ends of the second driving roller 23 are rotatably connected to the fourth frame 21. The ropes passing through the third driving roller 28 can pass through the second driving roller 23, and the ropes pass through the second driving roller 23 and the third driving roller 28 in an "8" shape.
[0034] Immediately afterwards, the ropes coming out from the third driving roller 28 need to be collected. As Figure 1 and Figure 7As shown, a strip frame 22 is provided on the side of the fourth frame 21 away from the cabinet 13, and a plurality of supporting legs are provided at the bottom of the strip frame 22. A plurality of mounting shafts 41 are provided on the top of the fourth frame 21, and both ends of the mounting shafts 41 are respectively connected to the fourth frame 21 for rotation. A fourth driving device 49 is provided at one end of the fourth frame 21, and the fourth driving device 49 is arranged below the strip frame 22. Sprockets are provided on the output shaft of the fourth driving device 49 and at the end of each mounting shaft 41, and the sprockets are connected by a transmission chain, so that the fourth driving device 49 can drive each mounting shaft 41 to rotate simultaneously;
[0035] like Figure 8 As shown, mounting plates 30 are coaxially provided at both ends of each mounting shaft 41, the edges of the mounting plates 30 are connected by a plurality of connecting rods 40, and a limit frame 29 is provided above the side of each mounting shaft 41 close to the cabinet 13, and both ends of the limit frame 29 are connected to the strip frame body 22 through a frame body. The limit frame 29 here is used to limit the rope, that is, the rope coming out of the third driving roller 28 is placed in the limit frame 29 for limiting, and then the rope is placed on the connecting rod 40. Since the connecting rods 40 are arranged at intervals, when a plurality of connecting rods 40 rotate at the same time, each connecting rod 40 intermittently contacts the rope, allowing the rope to be slightly shaken, so that the rope can be prevented from being knotted and the stress of the rope can be released. The specific process is as follows Figure 10 As shown, a container for taking the rope is placed under the corresponding installation shaft 41, and the rope is allowed to fall into the container.
[0036] Further, such as Figure 1 As shown, a fifth frame 48 is provided between the fourth frame 21 and the cabinet 13, and two fourth drive rollers 46 are installed on the top of the fifth frame 48. Both ends of the fourth drive rollers 46 are rotatably connected to the fifth frame 48, and one of the fourth drive rollers 46 is connected to the third drive device 47, and the third drive device 47 is provided on the fifth frame 48. It should be noted here that the fourth drive roller 46 is provided to pull the rope coming out of the outlet 33, and the rope is wound around the fourth drive roller 46 in an "8" shape, so that the third drive device 47 can drive the rope to be continuously transported outward;
[0037] Next, a third frame 25 is provided between the fifth frame 48 and the fourth frame 21. The height of the third frame 25 is higher than that of the fourth frame 21 and the fifth frame 48. Two layers of fifth guide rollers 26 are provided in the third frame 25. Each layer of fifth guide rollers 26 is rotatably connected to the third frame 25.
[0038] On the top of both sides of the third frame 25, fourth guide rollers 24 are respectively provided. Both ends of the fourth guide rollers 24 are rotatably connected to the third frame 25. The positions where the fourth guide rollers 24 are provided correspond to the fifth guide rollers 26 of two layers respectively. The rope coming out of the fourth drive roller 46 passes through the fourth guide rollers 24 and enters the third frame 25, and then the rope is wound around each fifth guide roller 26 in an "S" shape. Then, after the rope exits from the fourth guide rollers 24 on the other side, it is wound around the second drive roller 23 and the third drive roller 28;
[0039] The temperature of the rope coming out of the fourth drive roller 46 is relatively high. Therefore, in order to allow the rope to be sufficiently cooled, as Figure 1 and Figure 10 shown, a carrier 19 is provided inside the lower part of the third frame 25. A hair dryer 20 that blows air towards the fifth guide roller 26 is installed on the carrier 19. The air blown out by the hair dryer 20 can blow on the rope. Since the rope is wound around the fifth guide roller 26, the running route of the rope is long, so that the rope can have enough time to cool down when passing under the hair dryer 20.
[0040] Based on the above embodiments, the above content describes the process of the rope coming out of the interior of the cabinet 13 after being heated, and then passing through traction, cooling, and recycling in sequence. Next, how the rope to be heated enters the interior of the cabinet 13 will be described in detail. As Figure 1 shown, on one side of the cabinet 13 close to the inlet 32, a second frame 8 is provided. Two first drive rollers 11 are provided on the top of the second frame 8. Both ends of the first drive rollers 11 are rotatably connected to the second frame 8. One end of one of the first drive rollers 11 is connected to the first drive device 10, and the first drive device 10 is provided on the second frame 8. The function of the first drive roller 11 here is the same as that of the fourth drive roller 46, which is to play a role in pulling the rope. However, the fourth drive roller 46 pulls the rope outwards, while the first drive roller 11 pulls the rope into the interior of the cabinet 13. The rope is also wound around the two first drive rollers 11 in an "8" shape, which can increase the friction between the rope and the first drive rollers 11;
[0041] Immediately afterwards, on the side of the second frame 8 away from the cabinet 13, a first frame 15 is provided. Inside the top of the first frame 15, multiple second guide rollers 14 are provided. Both ends of the second guide rollers 14 are rotatably connected to the first frame 15. And a support frame 7 is movably provided at the bottom inside the first frame 15. At least one first guide roller 6 is provided on the top of the support frame 7. Both ends of the first guide roller 6 are rotatably connected to the support frame 7. The four corners of the support frame 7 are respectively connected to the guide rails 36 through sliders, and the guide rails 36 are provided inside the first frame 15. In this way, the support frame 7 can move up and down freely along the guide rails 36, which enables the first guide roller 6 to have the possibility of moving up and down;
[0042] The specific process is as follows. The rope wound around the first driving roller 11 needs to pass through the first frame 15 first. The rope is bent in an S shape and wound around the second guiding roller 14 and the first guiding roller 6. Since the rope is continuously driven forward by the first driving roller 11, due to the rope releasing in the first frame 15, there are certain differences in the tension of the rope at various places. When the rope is pulled too tightly, the rope will drive the first guiding roller 6 to lift, causing the support frame 7 to move upward along the guide rail 36. When the rope becomes slack, at this time, the first guiding roller 6 will move downward along the guide rail 36. Therefore, the first guiding roller 6 can move up and down along the guide rail 36, which can play a role in adjusting the tension of the rope;
[0043] The present application further improves the first frame 15. For example, Figure 6 as shown in the figure, a horizontal frame 5 is provided on the side of the first frame 15 away from the cabinet body 13. A driving shaft 38 and a fifth driving device 39 are sequentially arranged on the top of the horizontal frame 5. The fifth driving device 3 is arranged on the horizontal frame 5. Both ends of the driving shaft 38 are rotatably connected to the horizontal frame 5. Sprockets are respectively arranged at one end of the driving shaft 38 and on the output shaft of the fifth driving device 39. The two sprockets are connected by a transmission chain. When the fifth driving device 39 rotates, it can drive the driving shaft 38 to rotate;
[0044] Support disks 4 are coaxially installed at both ends of the driving shaft 38 respectively. The edges of the support disks 4 are connected by a plurality of support rods 35. The function of the support rods 35 here is the same as that of the connecting rod 40, which is to shake the rope to prevent the rope from knotting. That is, when the support rods 35 rotate, like the connecting rod 40, they can intermittently beat on the rope to make the rope slack. In order to enable the rope to smoothly enter the first frame 15, a second guiding shaft 16 is further provided at the top of the first frame 15 close to the horizontal frame 5. Both ends of the second guiding shaft 16 are rotatably connected to the first frame 15, so that the rope passes through the support rods 35 and then enters the first frame 15 from the second guiding shaft 16.
[0045] Based on the above embodiments, as Figures 1 to 4 shown in the figure, a placement table 1 is provided on the side of the first frame 15 away from the cabinet body 13. Support legs can be arranged at the bottom of the placement table 1. One end of the placement table 1 close to the cabinet body 13 is provided with a U-shaped frame 2 with an opening facing downward. Both ends of the bottom of the U-shaped frame 2 can be arranged on the ground or on the placement table 1. A first guiding shaft 3 is arranged at the top of the U-shaped frame 2. Stop disks can also be arranged at both ends of the first guiding shaft 3 to play a role in limiting the rope. Both ends of the first guiding shaft 3 are rotatably connected to a support 50, and the support 50 is connected to the U-shaped frame 2;
[0046] In the actual application process, there may be more than one rope to be heated. However, it should be emphasized that no matter how many ropes there are, just place the rope coil on the placement table 1, then draw out the free end of the rope, and pass the free end of the rope through the first guide shaft 3, the horizontal frame 5, the first frame 15, the second frame 8, the third guide shaft 17, the cabinet body 13, the fourth guide shaft 37, the fifth frame 48, the third frame 25, the fourth frame 21 and the strip-shaped frame body 22 in sequence, and finally recycle the rope from within the strip-shaped frame body 22. This process is a complete rope heating production line, which can heat multiple ropes simultaneously and can shape the ropes in one go.
[0047] Moreover, grooves for placing ropes are provided on the surfaces of the first guide roller 6, the second guide roller 14, the first driving roller 11, the third guide shaft 17, the third guide roller 31, the fourth guide shaft 37, the fourth guide roller 24, the fifth guide roller 26, the second driving roller 23, and the third driving roller 28, so that the ropes can be correspondingly placed in the grooves.
[0048] Based on the above embodiments, it can be further optimized. Anti-collision columns are provided at the four corners of the top of the support frame 7, and the height of the anti-collision columns is higher than that of the first guide roller 6, so as to prevent collision when the first guide roller 6 moves to the top of the first frame 15; moreover, a buffer pad is provided at the bottom of the support frame 7, which can play a buffering role when the support frame 7 falls and contacts the bottom of the first frame 15.
[0049] Based on the above embodiments, it should be further noted that as Figure 8 shown, the mounting shaft 41 can not only be connected to the fourth driving device 49 through a transmission chain. In actual use, a sprocket is provided at one end of the third driving roller 28 away from the second driving device 27, and the mounting shaft 41 can be connected to the third driving roller 28 through a transmission chain (as shown by the dotted line in Figure 8 ), so that the third driving roller 28 drives the mounting shaft 41 to rotate.
[0050] Among them, the first driving device 10, the second driving device 27, the third driving device 47, the fourth driving device 49, and the fifth driving device 39 are motors or combinations of motors and speed reducers.
[0051] Based on the above embodiments, it should be further noted that the circulation fan 9, the first driving device 10, the hair dryer 20, the second driving device 27, the fifth driving device 39, the third driving device 47, and the fourth driving device 49 are respectively connected to the control cabinet through wires, and the circulation fan 9 can be arranged within the second frame 8;
[0052] Furthermore, a temperature controller is also provided on the cabinet body. The detection end of the temperature controller is located inside the cabinet body and is used to detect and control the temperature inside the cabinet body 13, so that the temperature inside the cabinet body is always kept constant.
[0053] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A rope heating and shaping device, comprising a cabinet (13), characterized in that: An inlet (32) is provided on one side of the cabinet (13), and an outlet (33) is provided on the other side. A plurality of heating bodies (45) are provided in the cabinet (13) for heating the cabinet (13) to a preset temperature. Two layers of third guide rollers (31) corresponding to the inlet (32) and the outlet (33) are provided in the cabinet (13), and the number of third guide rollers (31) in each layer is multiple and the two ends of the third guide rollers (31) are rotatably connected to the cabinet (13); A fourth frame (21) is provided on one side of the cabinet (13) near the entrance (32), a third driving roller (28) is rotatably mounted on the top of the fourth frame (21), a surface of the third driving roller (28) is provided with a plurality of grooves for placing ropes, and one end of the third driving roller (28) is connected to the second driving device (27); A pressing wheel (43) is placed in each groove. The pressing wheel (43) is rotatably mounted on a pressing rod (42). One end of the pressing rod (42) is rotatably mounted on a U-shaped bracket (44). The U-shaped bracket (44) is connected to the fourth frame (21).
2. The rope heating and shaping device according to claim 1, characterized in that: A top cover (18) is provided on the top of the cabinet (13), and at least one observation door (34) is provided on the side of the cabinet (13); A third guide shaft (17) is provided at the inlet (32), and a fourth guide shaft (37) is provided at the outlet (33); both ends of the fourth guide shaft (37) and the third guide shaft (17) are respectively rotatably connected to the cabinet body (13); A circulation fan (9) is provided on one side of the cabinet (13), and two ends of the circulation fan (9) are respectively connected to the interior of the cabinet (13) through a circulation pipe (12).
3. The rope heating and shaping device according to claim 1, characterized in that: A second driving roller (23) is provided on a side of the third driving roller (28) close to the cabinet (13), and both ends of the second driving roller (23) are rotatably connected to the fourth frame (21).
4. The rope heating and shaping device according to claim 3, characterized in that: A strip frame body (22) is provided on a side of the fourth frame (21) away from the cabinet body (13), and a plurality of supporting legs are provided at the bottom of the strip frame body (22); A plurality of mounting shafts (41) are provided at the top of the fourth frame (21), and both ends of the mounting shafts (41) are respectively rotatably connected to the fourth frame (21). A fourth driving device (49) is provided at one end of the fourth frame (21), and a sprocket is provided on the output shaft of the fourth driving device (49) and at the end of each mounting shaft (41), and the sprockets are connected via a transmission chain. Both ends of each installation shaft (41) are coaxially provided with installation plates (30), the edges of the installation plates (30) are connected via a plurality of connecting rods (40), and a limit frame (29) is provided above a side of each installation shaft (41) close to the cabinet body (13), and both ends of the limit frame (29) are connected to the strip frame body (22) via a frame body.
5. The rope heating and shaping device according to claim 4, characterized in that: A fifth frame (48) is provided between the fourth frame (21) and the cabinet body (13). Two fourth driving rollers (46) are installed on the top of the fifth frame (48). Both ends of the fourth driving rollers (46) are rotatably connected to the fifth frame (48), and one of the fourth driving rollers (46) is connected to the third driving device (47).
6. The rope heating and shaping device according to claim 5, characterized in that: A third frame (25) is provided between the fifth frame (48) and the fourth frame (21), and two layers of fifth guide rollers (26) are provided in the third frame (25), and each layer of the fifth guide rollers (26) is rotatably connected to the third frame (25); Fourth guide rollers (24) are respectively provided at the tops of both sides of the third frame (25), and both ends of the fourth guide rollers (24) are respectively rotatably connected to the third frame (25); A bearing frame (19) is provided below the third frame (25), and a blower (20) is mounted on the bearing frame (19) for blowing air in the direction of the fifth guide roller (26).
7. The rope heating and shaping device according to any one of claims 1 to 6, characterized in that: A second frame (8) is provided on one side of the cabinet (13) close to the entrance (32), and two first drive rollers (11) are provided on the top of the second frame (8). Both ends of the first drive rollers (11) are rotatably connected to the second frame (8), and one end of one of the first drive rollers (11) is connected to the first drive device (10).
8. The rope heating and shaping device according to claim 7, characterized in that: A first frame (15) is provided on a side of the second frame (8) away from the cabinet body (13); a plurality of second guide rollers (14) are provided on the top of the first frame (15); and both ends of the second guide rollers (14) are rotatably connected to the first frame (15); A support frame (7) is movably provided at the bottom of the first frame (15); at least one first guide roller (6) is provided at the top of the support frame (7); both ends of the first guide roller (6) are rotatably connected to the support frame (7); four corners of the support frame (7) are connected to guide rails (36) via sliders; and the guide rails (36) are provided inside the first frame (15); A horizontal frame (5) is provided on a side of the first frame (15) away from the cabinet body (13), a driving shaft (38) and a fifth driving device (39) are sequentially provided on the top of the horizontal frame (5), both ends of the driving shaft (38) are respectively rotatably connected to the horizontal frame (5), one end of the driving shaft (38) and an output shaft of the fifth driving device (39) are respectively provided with sprockets, and the two sprockets are connected via a transmission chain; Support plates (4) are coaxially mounted at both ends of the driving shaft (38), the edges of the support plates (4) are connected via a plurality of support rods (35), a second guide shaft (16) is provided at the top of the first frame (15) on a side close to the horizontal frame (5), and both ends of the second guide shaft (16) are rotatably connected to the first frame (15).
9. The rope heating and shaping device according to claim 8, characterized in that: A placement platform (1) is provided on a side of the first frame (15) away from the cabinet body (13); a U-shaped frame (2) with an opening facing downward is provided on an end of the placement platform (1) close to the cabinet body (13); a first guide shaft (3) is provided on the top of the U-shaped frame (2); both ends of the first guide shaft (3) are rotatably connected to a support (50); and the support (50) is connected to the U-shaped frame (2).