Winding forming mechanism for stainless steel profiled part
By combining liquid spray pipe spraying and air-cooled cooling technology in the stainless steel press-shaped part winding forming mechanism, the problem of heat generation during the metal belt winding process is solved, effective cooling and cleaning is achieved, product quality is improved and resources are saved.
Patent Information
- Application Number
- CN202510382043.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2025-05-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the winding of metal belts, due to the heat generated by friction, the metal belt may deform or crack, and the prior art is difficult to effectively reduce cooling and clean.
A stainless steel press-shaped part winding forming mechanism is designed, and a combination of cleaning and cooling mechanism and air-cooling cooling mechanism is adopted. The cleaning and cooling mechanism cools down the metal belt through the spray pipe, and the air-cooled cooling mechanism further reduces the temperature of the metal belt through the fan.
It effectively reduces the temperature of the metal belt, avoids deformation and crack problems, and improves the smoothness and quality of the surface of the metal belt, and realizes circulating water, avoiding waste of resources.
Smart Images

Figure CN119951888A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of metal processing, and in particular to a winding and forming mechanism for stainless steel profiled parts. Background Art
[0002] In actual production, coilers are often equipped with cooling systems. For example, when metal is coiled, friction generates heat, and the metal strip may be deformed or cracked by the heat. In order to reduce the temperature of the metal strip and avoid deformation, cracks and other problems, the metal strip needs to be cooled when the winding forming mechanism is used. Metal strip cooling can effectively slow down the temperature rise of the metal strip, allowing it to gradually cool down and solidify into a rigid state, thereby avoiding deformation, cracks and other problems of the metal strip. Summary of the invention
[0003] In order to avoid the heat generated when the metal strip is wound and to make the cooling and cleaning process more thorough, the present application provides a stainless steel profile winding forming mechanism.
[0004] In the first aspect, the present application provides a stainless steel profiled part winding and forming mechanism, which adopts the following technical solution:
[0005] A stainless steel profile winding forming mechanism comprises a metal strip and a forming die, a cleaning and cooling mechanism is arranged on one side of the forming die, the cleaning and cooling mechanism comprises a collecting tank and a liquid spraying pipe, the collecting tank and the liquid spraying pipe are arranged on the upper and lower sides of the metal strip respectively, the cleaning and cooling mechanism also comprises a guide wheel for guiding the metal strip, an air cooling and cooling mechanism is also arranged on one side of the cleaning and cooling mechanism, the air cooling and cooling mechanism comprises an air cooling pipe, an air guide pipe and a fan, the fan is connected to the air guide pipe, the other end of the air guide pipe is connected to the air cooling pipe, the metal strip passes through the air cooling pipe, a non-contact metal thermometer is also arranged on one side of the air cooling pipe, and the non-contact metal thermometer is electrically connected to the fan;
[0006] A mounting frame is provided on one side of the air-cooling mechanism, a receiving roller is provided in the mounting frame, a receiving groove for accommodating the metal strip is provided on the receiving roller, a winding mechanism is provided on one side of the mounting frame, the winding mechanism includes a winding roller and a winding motor, the winding motor is connected to the winding roller, and after the metal wire passes through the air-cooling mechanism, it is connected to the winding roller through the receiving groove.
[0007] Furthermore, the cleaning and cooling mechanism also includes a top frame, a liquid return pipe, a filter, a water pump and a water distribution pipe. The top frame is fixedly installed on the top of the collecting tank. A rectangular mounting hole along the direction of the metal belt is opened on the top frame. A liquid spray pipe is installed in the mounting hole. A filter and a water pump are also installed on the top frame. The filter and the water pump are connected, and a liquid return pipe is connected between the filter and the collecting tank. One end of the water outlet of the water pump is connected to the water distribution pipe, and the other end of the water distribution pipe is connected to the liquid spray pipe.
[0008] Furthermore, the guide wheels are provided in two groups, the number of guide wheels in each group corresponds to the number of metal belts, the guide wheels are rotatably connected to a wheel axle, and both ends of the wheel axle are fixedly connected to the inner wall of the collecting tank.
[0009] Furthermore, a cleaning mechanism is fixedly installed on the inner wall of one side of the collecting tank close to the air cooling mechanism, and the cleaning mechanism includes a water-absorbing sponge and a mounting plate. The mounting plate is fixedly installed on the side wall of the collecting tank. A through hole is opened in the middle of the mounting frame, and two water-absorbing sponges are arranged in the through hole. A metal belt passes through the middle of the two water-absorbing sponges, and the water-absorbing sponge is in contact with the metal belt.
[0010] Furthermore, the air-cooling mechanism also includes a retaining frame and a support column. The retaining frame is fixedly sleeved on the outside of the air-cooling tube. At the same time, the retaining frame and the support column are fixedly connected. The lower end of the support column is fixedly connected to the mounting frame.
[0011] Furthermore, a non-contact metal thermometer is fixedly installed on one side of the retaining frame close to the cleaning and cooling mechanism. The non-contact metal thermometer corresponds to the position of the metal belt. The non-contact metal thermometer can use an infrared temperature measuring gun to detect the temperature of the metal belt.
[0012] Furthermore, the winding mechanism also includes a base, a wire taking-up frame and a guide shaft, the base is provided with a stepped recess, wherein the wire taking-up frame and the guide shaft are located in the stepped recess, the wire taking-up motor is installed on the wire taking-up frame, the rotating shaft of the wire taking-up motor is connected to the wire taking-up roller, two wire taking-up frames are provided, and guide holes are provided at the bottom of the two wire taking-up frames, the guide shaft as a whole passes through the guide holes, and both ends of the guide shaft are fixedly connected to the base.
[0013] Furthermore, a bidirectional cam is rotatably arranged in the stepped recess on the base and located between the two wire take-up frames. The bidirectional cam is connected to a drive motor which is mounted on the base. A spring is sleeved on the outer portion of the guide shaft between the wire take-up frames and the side walls of the base.
[0014] In summary, the present application includes at least one of the following beneficial technical effects:
[0015] 1. After the metal strip of the present invention is drawn, the metal strip is flushed and cooled by spraying with a liquid spray pipe, thereby reducing the temperature of the metal strip and avoiding deformation, cracks and other problems of the metal strip. At the same time, the surface of the metal strip can be made smoother and more delicate. While flushing and cooling, metal debris that may exist on the metal strip can also be flushed away to improve the surface quality of the product. In addition, in conjunction with components such as a water pump and a filter, water can be recycled to avoid waste.
[0016] 2. The present invention determines whether to turn on the air-cooling cooling mechanism through the detection result of the non-contact metal thermometer. When the air-cooling cooling mechanism is turned on, the temperature of the metal strip is further lowered by blowing air to ensure that the metal strip is lowered to an appropriate temperature and the moisture on its surface can be dried at the same time. If the cooling effect can be achieved by cleaning the cooling mechanism alone, the air-cooling cooling mechanism will not be turned on to avoid waste. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the overall structure of the present invention from a first viewing angle;
[0018] Figure 2 is a schematic diagram of the overall structure of the present invention from a second viewing angle;
[0019] Figure 3 It is a schematic diagram of the first viewing angle of the structural connection relationship of the cleaning and cooling mechanism of the present invention;
[0020] Figure 4 It is a schematic diagram of the second viewing angle of the structural connection relationship of the cleaning and cooling mechanism of the present invention;
[0021] Figure 5 This is a schematic diagram of the connection relationship of the air cooling mechanism of the present invention;
[0022] Figure 6 It is the connection relationship between the air cooling mechanism and the winding mechanism of the present invention;
[0023] Figure 7 It is a partial structural sectional view of the air cooling mechanism and the winding mechanism of the present invention.
[0024] Explanation of the reference numerals: 1. Metal belt; 2. Forming die; 3. Cleaning and cooling mechanism; 31. Collecting tank; 32. Top frame; 33. Guide wheel; 34. Wheel axle; 35. Liquid return pipe; 36. Filter; 37. Water pump; 38. Water distribution pipe; 39. Liquid spray pipe; 4. Cleaning mechanism; 41. Mounting plate; 42. Water-absorbing sponge; 5. Air-cooling and cooling mechanism; 51. Fan; 52. Air guide pipe; 53. Air cooling pipe; 54. Retaining frame; 55. Support column; 6. Non-contact metal thermometer; 7. Mounting frame; 71. Receiver roller; 72. Receiver tank; 8. Winding mechanism; 81. Base; 82. Take-up frame; 83. Take-up roller; 84. Guide shaft; 85. Bidirectional cam; 86. Spring. DETAILED DESCRIPTION
[0025] The following is combined with Figure 1-7 This application is described in further detail.
[0026] The present application embodiment discloses a stainless steel profiled part winding and forming mechanism:
[0027] Reference Figure 1 and Figure 2 A stainless steel profile winding and forming mechanism, comprising a metal strip 1, a forming die 2 and a winding mechanism 8. The stainless steel profile winding and forming mechanism is a machine for manufacturing a metal strip 1. The wire drawing method is to pre-process the metal material by heating, forging, etc., and then perform multiple stretching operations to finally draw the metal material into a metal strip 1.
[0028] After the metal strip 1 passes through the forming die 2, it is wound on the winding mechanism 8. When the winding mechanism 8 is running, the winding mechanism 8 provides a tensile force for the metal strip 1, driving the metal strip 1 through the forming die 2, so that the metal strip 1 continuously changes from thick to thin, thereby obtaining metal strips 1 with different wire gauges.
[0029] Metal wire drawing can generally be divided into pre-stretching, rough drawing, medium drawing, fine drawing and straight drawing processes, that is, the forming mold 2 is generally provided with multiple groups, and the process of the metal strip 1 passing through the forming mold 2 is generally carried out multiple times. In the process of the metal strip 1 passing through the forming mold 2, firstly, the deformation process of the metal strip 1 will generate heat. In order to avoid deformation, cracks and other problems of the metal strip 1 due to excessive heat, the metal strip 1 needs to be cooled; on the other hand, some metal debris and dust may be generated during the deformation of the metal strip 1, especially when there are impurities such as oxide layer, oil stains, dust and the like on the metal surface, the metal debris and dust will be more;
[0030] Reference Figure 3 and Figure 4 In summary, in order to reduce the temperature of the metal strip 1 and remove the debris and dust that may appear on the surface of the metal strip 1, a cleaning and cooling mechanism 3 is provided on one side of the forming mold 2. Specifically:
[0031] The cleaning and cooling mechanism 3 includes a collecting tank 31 and a liquid spraying pipe 39, which are respectively arranged on the upper and lower sides of the metal strip 1, wherein the liquid spraying pipe 39 sprays liquid such as water to flush the surface of the metal strip 1, thereby achieving the purpose of cooling and removing debris;
[0032] The cleaning and cooling mechanism 3 also includes a top frame 32, a liquid return pipe 35, a filter 36, a water pump 37 and a water distribution pipe 38, wherein two support plates (not marked in the figure) are welded and fixed on both sides of the bottom of the top frame 32, and the lower ends of the two support plates are welded and fixed on both sides of the collecting tank 31, and a rectangular mounting hole along the direction of the metal belt 1 is opened on the top frame 32, and a liquid spraying pipe 39 is installed in the mounting hole, that is, the liquid spraying pipe 39 is rectangular and arranged and distributed along the direction of the metal belt 1;
[0033] In order to recycle the cooling and cleaning water, a filter 36 and a water pump 37 are also installed on the top frame 32. The filter 36 and the water pump 37 are connected to each other. The filter 36 is convenient for filtering metal debris and dust that may exist in the water. A return liquid pipe 35 is connected between the filter 36 and the collection tank 31. One end of the water outlet of the water pump 37 is connected to a water distribution pipe 38, and the other end of the water distribution pipe 38 is connected to a liquid spray pipe 39.
[0034] Therefore, when the water pump 37 is working, after the water in the collecting tank 31 passes through the return pipe 35 and the filter 36, the filter 36 can first filter out the metal debris and dust that may exist in the water, and then the water will pass through the water pump 37 and the water distribution pipe 38 in turn, and finally be sprayed out from the spray pipe 39. The water outlet of the spray pipe 39 is facing the metal belt 1 below, which can flush the surface of the metal belt 1, take away the heat on the metal belt 1, and cool the metal belt 1, thereby avoiding deformation, cracks and other problems of the metal belt 1. Appropriate cooling can also make the surface of the stretched metal belt 1 smoother and more delicate, improve the surface quality of the product, and at the same time, it can also flush the dust and debris on the surface of the metal belt 1, so that the metal debris is deposited in the collecting tank 31, so as to avoid the metal debris from polluting the on-site environment, and the cooling and cleaning water can be recycled to avoid waste, and it is only necessary to clean the filter 36 regularly.
[0035] Continue to refer to Figure 4 In order to make the metal strip 1 pass through the cleaning and cooling mechanism 3 smoothly, a guide wheel 33 is provided on the side wall of the collecting tank 31 to guide the direction of the metal strip 1.
[0036] Two groups of guide wheels 33 are provided, and the number of guide wheels 33 in each group corresponds to the number of metal belts 1. The guide wheels 33 are rotatably connected to the axle 34, that is, the rotating shaft is rotatably connected to the guide wheels 33 whose number corresponds to the number of wire strands of the metal belt 1, and both ends of the axle 34 are fixedly connected to the inner wall of the collecting tank 31.
[0037] In the above process, the metal strip 1 is cooled by spraying water through the cleaning and cooling mechanism 3. That is, water droplets may be attached to the surface of the metal strip 1. In order to prevent water droplets from dripping during the subsequent winding process of the metal strip 1 and polluting the working environment, a cleaning mechanism 4 is fixedly installed on the side wall of the collecting tank 31 to clean the water droplets attached to the metal strip 1.
[0038] Specifically, the cleaning mechanism 4 includes a water-absorbing sponge 42 and a mounting plate 41. The mounting plate 41 is fixed on the side wall of the collecting tank 31 by screws. A through hole is opened in the middle of the mounting frame 7. Two water-absorbing sponges 42 are arranged in the through hole. The metal belt 1 passes through the two water-absorbing sponges 42. The water-absorbing sponge 42 contacts the metal belt 1, that is, the water droplets on the metal belt 1 are cleaned by the water-absorbing sponge 42, and the entire cleaning device is still located above the collecting tank 31. Even if the water-absorbing sponge 42 is saturated, the dripping water droplets are still in the collecting tank 31, so as to avoid polluting the working environment and affecting the subsequent winding work.
[0039] Reference Figure 5 In order to ensure that the metal strip 1 is completely cooled down, an air-cooling cooling mechanism 5 is also provided on one side of the cleaning and cooling mechanism 3. The air-cooling cooling mechanism 5 includes an air-cooling pipe 53, an air duct 52 and a fan 51. The fan 51 is connected to the air duct 52. The other end of the air duct 52 is connected to the air-cooling pipe 53. The number of air-cooling pipes 53 corresponds to the number of wire strands of the metal strip 1, and it is necessary to ensure that the metal strip 1 passes through the air-cooling pipe 53. When the fan 51 is started, the wind generated by the fan 51 will flow into the air-cooling pipe 53 through the air duct 52. Since the metal strip 1 passes through the air-cooling pipe 53, the wind generated by the fan 51 blows on the metal strip 1, thereby achieving the effect of cooling the metal strip 1, and at the same time, it can also accelerate the drying of the moisture on the surface of the metal strip 1.
[0040] In order to fix the air-cooling pipe 53, the air-cooling mechanism 5 also includes a retaining frame 54 and a support column 55. The retaining frame 54 is fixedly sleeved on the outside of the air-cooling pipe 53, that is, multiple air-cooling pipes 53 are fixed together. At the same time, the retaining frame 54 and the support column 55 are fixedly connected, and the lower end of the support column 55 is fixedly connected to the mounting frame 7. At the same time, the fan 51 and the air guide duct 52 in the air-cooling mechanism 5 are also installed on the mounting frame 7 by screws.
[0041] The heat generated by metals of different materials during stretching is different, and the heat required for different metals to produce cracks is also different. In the above process, because the metal strip 1 has been cooled by the cleaning and cooling mechanism 3 before passing through the air cooling mechanism 5, the temperature of the metal strip 1 has dropped. Therefore, the air cooling mechanism 5 only ensures that the temperature of the metal strip 1 is further reduced to reduce the possibility of cracks and facilitate subsequent winding. If the temperature of the metal strip 1 is already very low and does not need to be cooled by air again, the air cooling mechanism 5 does not need to be started.
[0042] In order to realize that the air-cooling and cooling mechanism 5 can be controlled to open and close according to the temperature of the metal belt 1, a non-contact metal thermometer 6 is also provided on one side of the air-cooling pipe 53, and a non-contact metal thermometer 6 is fixedly installed on one side of the retaining frame 54 close to the cleaning and cooling mechanism 3. The non-contact metal thermometer 6 corresponds to the position of the metal belt 1. The non-contact metal thermometer 6 can adopt an infrared temperature measuring gun to detect the temperature of the metal belt 1. The non-contact metal thermometer 6 is electrically connected to the fan 51, that is, when the infrared temperature measuring gun detects that the temperature of the metal belt 1 is still too high and needs to be cooled, the fan 51 is controlled to start, and the wind generated by the fan 51 enters the air-cooling pipe 53 through the air duct 52 and blows towards the metal belt 1 to further cool the metal belt 1. Otherwise, the fan 51 does not need to be started and the metal belt 1 can pass through the air-cooling pipe 53 smoothly.
[0043] Reference Figure 6 After the metal strip 1 is cooled and cleaned, it needs to be reeled up, and a reeling mechanism 8 is arranged on one side of the air-cooling mechanism 5. Firstly, in order to facilitate the transition connection of the metal strip 1 between the air-cooling mechanism 5 and the reeling mechanism 8, a receiving roller 71 is installed on the inner side of the above-mentioned mounting frame 7, that is, the roller shaft of the receiving roller 71 is fixedly connected to the inner wall of the mounting frame 7, and a receiving groove 72 is opened on the receiving roller 71. After the metal strip 1 passes through the air-cooling mechanism 5, it is connected to the reeling mechanism 8 through the receiving groove 72.
[0044] Reference Figure 7 Specifically, the winding mechanism 8 includes a wire taking-up roller 83 and a wire taking-up motor (not marked in the figure), and the wire taking-up motor drives the wire taking-up roller 83 to rotate. After the metal wire passes through the air cooling mechanism, it is connected to the wire taking-up roller 83 through the receiving groove 72. Because the number of wire strands of the above-mentioned metal strip 1 can be set to a certain number, that is, the number of wire taking-up rollers 83 needs to correspond to the number of wire strands of the metal strip 1.
[0045] In order to facilitate the installation and distribution of multiple take-up rollers 83, the winding mechanism 8 is also provided with a base 81, a take-up frame 82 and a guide shaft 84. First, the base 81 is arranged on one side of the mounting frame 7, and a stepped downward depression is provided on the base 81, wherein the take-up frame 82 and the guide shaft 84 are located in the depression, and the take-up motor is installed on the take-up frame 82. There are two take-up frames 82 symmetrically arranged, and guide holes are provided at the bottom of the two take-up frames 82. The guide shaft 84 passes through the guide hole as a whole, and both ends of the guide shaft 84 are fixedly connected to the base 81.
[0046] In order to make the metal strip 1 be evenly wound around the take-up roller 83, a bidirectional cam 85 is rotatably arranged in the depression of the base 81 and located between the two take-up frames 82. The bidirectional cam 85 is connected to a driving motor (not shown in the figure) which is mounted on the base 81. The driving motor is used to drive the bidirectional cam 85 to rotate. At the same time, a spring 86 is sleeved on the outer part of the guide shaft 84 located between the take-up frame 82 and the side wall of the base 81.
[0047] In the initial state, the distance between the two take-up frames 82 is the shortest. When the driving motor rotates slowly, the bidirectional cam 85 can push the take-up frames 82 on both sides to move along the guide shaft 84, that is, the take-up roller 83 will also move. At this time, the spring 86 is compressed until the bidirectional cam 85 rotates through ninety degrees. When it continues to rotate, the take-up frame 82 is reset under the action of the restoring force of the spring 86. In this process, the take-up roller 83 will also complete a reciprocating movement, so that the metal strip 1 can be evenly wound around the surface of the take-up roller 83 layer by layer.
[0048] The implementation principle of this embodiment is:
[0049] (Step 1): After the wire-reeling metal strip 1 passes through the forming die 2, it will be thinner from coarse to fine. This is the prior art. When drawing metal wire, heat will be generated, and metal debris and dust may also be generated. In order to cool the metal strip 1 and avoid deformation and cracking of the metal strip 1 due to excessive heat, and at the same time, in order to clean the surface of the metal strip 1, after the metal strip 1 passes through the forming die 2, it is guided by the guide wheel 33 so that the metal strip 1 enters the cleaning and cooling mechanism 3;
[0050] First, under the action of the water pump 37, each water distribution pipe 38 cooperates with the liquid spraying pipe 39 to spray and flush the metal strip 1, and the flowing water takes away the heat on the metal strip 1 and flushes the metal strip 1, and uses the high heat capacity and thermal conductivity of water to absorb the heat of the metal strip 1, thereby cooling it, and at the same time flushing away the possible metal debris and dust, thereby avoiding deformation, cracks and other problems of the metal strip 1. At the same time, proper cooling can also make the surface of the stretched metal strip 1 smoother and more delicate, thereby improving the surface quality of the product;
[0051] Moreover, through the cooperation of the return liquid pipe 35 and the filter 36, the cooling water in the collection tank 31 can be recycled. The filter 36 can filter out debris and impurities that may exist in the water. After the metal strip 1 is sprayed and cooled and cleaned, it will also pass through the cleaning mechanism 4 when leaving the cleaning and cooling mechanism 3. The sponge in the cleaning mechanism 4 will clean the moisture on the surface of the metal strip 1.
[0052] (Step 2): After the metal strip 1 passes through the cleaning and cooling mechanism 3, its temperature is measured by the non-contact metal thermometer 6. If the temperature is still too high, the air-cooling cooling mechanism 5 is started, and the fan 51 blows the air to accelerate the air flow to generate wind. The generated wind will enter the air-cooling pipe 53 through the air guide pipe 52 and blow toward each metal strip 1, thereby performing secondary cooling on the metal strip 1. If the temperature of the metal strip 1 does not require secondary cooling, the air-cooling cooling mechanism 5 will not be started, and the metal strip 1 can directly pass through the air-cooling pipe 53.
[0053] (Step 3): After the metal strip 1 passes through the air cooling tube 53, it is wound on the take-up roller 83 under the guidance of the receiving roller 71. When the take-up motor drives the take-up roller 83 to rotate, the metal strip 1 can be wound up. Because the number of wire strands of the metal strip 1 is large, that is, multiple take-up rollers 83 are also provided. In order to facilitate the installation of multiple take-up rollers 83 and avoid mutual interference between the metal strips 1, a take-up rack 82 is provided. At the same time, when the bidirectional cam 85 rotates, the spring 86 can drive the take-up machine and the several take-up rollers 83 on the take-up rack 82 to move back and forth, so that the metal strip 1 can be evenly wound on the take-up roller 83 layer by layer.
[0054] The embodiments of this specific implementation method are all preferred embodiments of the present invention, and are not intended to limit the protection scope of the present invention. Therefore, any equivalent changes made based on the structure, shape, and principle of the present invention should be included in the protection scope of the present invention.
Claims
1. A stainless steel profiled part winding and forming mechanism, comprising a metal strip (1) and a forming die (2), characterized in that: A cleaning and cooling mechanism (3) is provided on one side of the molding die (2), the cleaning and cooling mechanism (3) comprising a collecting tank (31) and a liquid spraying pipe (39), the collecting tank (31) and the liquid spraying pipe (39) being respectively arranged on the upper and lower sides of the metal strip (1), the cleaning and cooling mechanism (3) also comprising a guide wheel (33) for guiding the metal strip (1), and an air cooling mechanism (5) is also provided on one side of the cleaning and cooling mechanism (3), the air cooling mechanism (5) comprising an air cooling pipe (53), an air guide pipe (52) and a fan (51), the fan (51) being connected to the air guide pipe (52), the other end of the air guide pipe (52) being connected to the air cooling pipe (53), the metal strip (1) passing through the air cooling pipe (53), a non-contact metal thermometer (6) being also provided on one side of the air cooling pipe (53), the non-contact metal thermometer (6) being electrically connected to the fan (51); A mounting frame (7) is provided on one side of the air-cooling mechanism (5), a receiving roller (71) is provided inside the mounting frame (7), a receiving groove (72) for accommodating the metal strip (1) is provided on the receiving roller (71), a winding mechanism (8) is provided on one side of the mounting frame (7), the winding mechanism (8) comprises a wire-receiving roller (83) and a wire-receiving motor, and after the metal wire passes through the air-cooling mechanism, it is connected to the wire-receiving roller (83) through the receiving groove (72).
2. A stainless steel profile winding and forming mechanism according to claim 1, characterized in that: The cleaning and cooling mechanism (3) further comprises a top frame (32), a liquid return pipe (35), a filter (36), a water pump (37) and a water distribution pipe (38); the top frame (32) is fixedly mounted on the top of the collecting tank (31); a rectangular mounting hole is provided on the top frame (32) along the direction of the metal belt (1); a liquid spray pipe (39) is installed in the mounting hole; a filter (36) and a water pump (37) are also installed on the top frame (32); the filter (36) and the water pump (37) are connected; a liquid return pipe (35) is connected between the filter (36) and the collecting tank (31); one end of the water outlet of the water pump (37) is connected to the water distribution pipe (38); the other end of the water distribution pipe (38) is connected to the liquid spray pipe (39).
3. A stainless steel profiled part winding and forming mechanism according to claim 1, characterized in that: The guide wheels (33) are provided in two groups, the number of guide wheels (33) in each group corresponds to the number of metal strips (1), the guide wheels (33) are rotatably connected to a wheel axle (34), and the two ends of the wheel axle (34) are fixedly connected to the inner wall of the collecting tank (31).
4. A stainless steel profiled part winding and forming mechanism according to claim 3, characterized in that: A cleaning mechanism (4) is also fixedly mounted on the inner wall of one side of the collecting tank (31) close to the air cooling mechanism (5). The cleaning mechanism (4) comprises a water-absorbing sponge (42) and a mounting plate (41). The mounting plate (41) is fixedly mounted on the side wall of the collecting tank (31). A through hole is opened in the middle of the mounting frame (7). Two water-absorbing sponges (42) are arranged in the through hole. The metal belt (1) passes through the middle of the two water-absorbing sponges (42). The water-absorbing sponge (42) is in contact with the metal belt (1).
5. A stainless steel profiled part winding and forming mechanism according to claim 1, characterized in that: The air-cooling mechanism (5) further comprises a retaining frame (54) and a support column (55); the retaining frame (54) is fixedly sleeved on the outside of the air-cooling tube (53); the retaining frame (54) and the support column (55) are fixedly connected; and the lower end of the support column (55) is fixedly connected to the mounting frame (7).
6. A stainless steel profiled part winding and forming mechanism according to claim 5, characterized in that: A non-contact metal thermometer (6) is fixedly mounted on one side of the retaining frame (54) close to the cleaning and cooling mechanism (3); the non-contact metal thermometer (6) corresponds to the position of the metal strip (1); the non-contact metal thermometer (6) can be an infrared temperature measuring gun for detecting the temperature of the metal strip (1).
7. A stainless steel profile winding and forming mechanism according to claim 1, characterized in that: The winding mechanism (8) further comprises a base (81), a wire take-up frame (82) and a guide shaft (84); a stepped recess is provided on the base (81), wherein the wire take-up frame (82) and the guide shaft (84) are located in the stepped recess; the wire take-up motor is mounted on the wire take-up frame (82); the rotating shaft of the wire take-up motor is connected to the wire take-up roller (83); two wire take-up frames (82) are provided, and guide holes are provided at the bottoms of the two wire take-up frames (82); the guide shaft (84) integrally passes through the guide holes, and both ends of the guide shaft (84) are fixedly connected to the base (81).
8. A stainless steel profiled part winding and forming mechanism according to claim 7, characterized in that: A bidirectional cam (85) and a driving motor are rotatably arranged in the stepped recess on the base (81) and located between the two wire take-up frames (82); the bidirectional cam (85) is connected to the driving motor; the driving motor is mounted on the base (81); and a spring (86) is sleeved on the outer portion of the guide shaft (84) located between the wire take-up frame (82) and the side wall of the base (81).