A PPH tape winding conical head forming machine

By using laser detectors and electric push rods to adjust the spacing between the rotating roller and the PPH belt in the PPH belt winding conical head molding machine, applying appropriate extrusion pressure, the problem of offset or twisting of the PPH belt in the production of conical head is solved, and the production quality and shaping speed are improved.

CN118991009BActive Publication Date: 2025-05-16ZHANGJIAGANG KIWEX MASCH CO LTD
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Patent Information

Application Number
CN202411487057.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-05-16
Estimated Expiration
2044-10-24

AI Technical Summary

Technical Problem

During the production process of conical sealing heads, when the PPH belt is wrapped around the mold, after the extrusion wheel extrudes the PPH belt, the surface PPH belt is extruded and flat, but the PPH belt located under the surface will be offset or twisted, affecting the production quality.

Method used

A PPH belt winding conical head molding machine is designed, and the PPH belt is detected by a laser detector. The rotating roller is driven by an electric push rod to move, the spacing between the rotating roller and the PPH belt is adjusted, and the adaptive force is applied to avoid excessive or too small extrusion. The viscosity of the PPH belt is ensured through multiple extrusion processes, while reducing the deviation or twisting.

Benefits of technology

Through this technical method, the PPH belt is effectively avoided during the extrusion process, and the production quality of the conical head is improved, so that the PPH belt is fastened and the sagging and separation caused by gravity is reduced.

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Abstract

The present invention relates to the field of head forming, and in particular to a PPH tape winding conical head forming machine, comprising a forming device, a pressing frame, a heater, a carrying and moving frame, and a conical mold, etc.; a pressing frame for winding the PPH tape is installed on the forming device; a heater is connected to the forming device; a carrying and moving frame is provided on the left side of the forming device; a conical mold is provided on the carrying and moving frame; and a driving device is provided on the carrying and moving frame. The present invention detects the PPH tape by a laser detector I, obtains the initial data of the PPH tape just wound on the conical mold by the pressing frame, drives the mounting plate II, the laser detector I, the connecting rod I, the laser detector II and the rotating roller on the connecting rod I to move by pushing out or contracting the electric push rod, so that the rotating roller on the connecting rod I adjusts the distance between the rotating roller and the PPH tape, so that the rotating roller on the connecting rod I applies an adaptive force to the PPH tape, avoids excessive or insufficient force, and thus effectively facilitates the production of the PPH conical head.
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Description

Technical Field

[0001] The invention relates to the field of head forming, in particular to a PPH tape-wound conical head forming machine. Background Art

[0002] During the production process of conical heads, the PPH tape needs to be overlapped and wound on the mold. When the PPH tape is overlapped and wound on the mold, the PPH tape is extruded by an extrusion wheel to ensure the adhesion strength of the PPH tape overlapped and wound on the mold, thereby ensuring the production quality. In order to ensure the adhesion strength of the PPH tape, the PPH tape needs to be extruded with great intensity. However, because the PPH tape is in an overlapping state, after the extrusion wheel extrudes the PPH tape, although the PPH tape on the surface is squeezed flat, the PPH tape under the surface PPH tape will be offset or twisted, affecting the production quality of the conical head.

[0003] During the production of conical heads, the existing overlapping PPH belts are naturally cooled and shaped. During the natural cooling process of the PPH belts, the PPH belts are affected by gravity and sag, causing the overlapping PPH belts on the mold to separate, resulting in defects in the conical head formed by the PPH belts, affecting the production of the conical head. Summary of the invention

[0004] In order to overcome the disadvantage that after the extrusion wheel extrude the PPH tape, the surface PPH tape is extruded flat, but the PPH tape below the surface PPH tape will be offset or twisted, affecting the production quality of the conical head, the present invention provides a PPH tape winding conical head forming machine.

[0005] The technical implementation scheme of the present invention is as follows: a PPH tape winding conical head forming machine includes a forming device, a pressing frame, a heater, a carrying and moving frame and a conical mold; a pressing frame for winding the PPH tape is installed on the forming device; a heater is connected to the forming device; a carrying and moving frame is provided on the left side of the forming device; a conical mold is provided on the carrying and moving frame; a driving device is provided on the carrying and moving frame; an electric push rod, a mounting plate II, a laser detector I, a connecting rod I, a laser detector II, a mounting rod, a mounting block I, a connecting rod II and an electric moving block I are also provided; an electric push rod is installed on the forming device; the telescopic part of the electric push rod is fixed It is connected to a mounting plate II, on which a slide groove I is opened; a laser detector I is fixedly connected to the mounting plate II; a connecting rod I is installed on the mounting plate II, and a rotating roller for extruding the PPH belt is rotatably connected to the connecting rod I; a laser detector II is fixedly connected to the bottom of the mounting plate II; a mounting rod is installed on the mounting plate II; a number of mounting blocks I are installed on the mounting rod; all the mounting blocks I are slidably connected to electric moving blocks I; all the electric moving blocks I are fixedly connected to connecting rods II; all the connecting rods II are rotatably connected to another rotating roller; an electric moving block II is slidably connected in the slide groove I, and the connecting rod I is fixedly connected to the electric moving block II.

[0006] More preferably, the forming device and the heater are arranged to be rotatably connected, and a driving motor is provided at the connection between the heater and the forming device.

[0007] More preferably, the interiors of connecting rod I and connecting rod II on the upper side of the mounting rod are hollow, and the interiors of the rotating roller connected to connecting rod I and the rotating roller connected to connecting rod II on the upper side of the mounting rod are also hollow, connecting rod I is connected to the rotating roller connected to it, and connecting rod II on the upper side of the mounting rod is connected to the rotating roller connected to it; the mounting rod is hollow, and connecting rod I and connecting rod II located on the upper side of the mounting rod are both connected to the mounting rod.

[0008] More preferably, the mounting rod is rotatably connected to the mounting block I on its lower side, and an electric drive component is provided at the rotatable connection between the mounting rod and the mounting block I on its lower side, the electric drive component is used to drive the mounting block I on the lower side of the mounting rod to rotate, and a cleaning layer is provided on the rotating roller located on the connecting rod II on the lower side of the mounting rod, and the cleaning layer is set to a rubber pad with a large friction coefficient.

[0009] More preferably, the rotating roller connected to the connecting rod I and the connecting rod II on the upper side of the mounting rod is made of a metal material with a high heat transfer coefficient.

[0010] More preferably, a rubber convex strip is provided on the cleaning layer on the connecting rod II located at the lower side of the mounting rod.

[0011] More preferably, it further includes an air blowing plate; the laser detector I and the laser detector II are fixedly connected to the air blowing plate.

[0012] More preferably, it also includes a movable strip, an adsorption plate and a connecting pipe; a slide groove II is opened at the bottom of the mounting plate II; the movable strip is slidably connected in the slide groove II; the adsorption plate is fixedly connected to the bottom of the movable strip; and a connecting pipe is connected to the bottom of the adsorption plate.

[0013] More preferably, the adsorption port of the adsorption disk is provided with a chamfer.

[0014] More preferably, the adsorption port of the adsorption plate is inclined downward from left to right.

[0015] The beneficial effects of the present invention are as follows: the present invention detects the PPH belt through the laser detector I to obtain the initial data of the PPH belt just wound on the conical mold by the pressing frame, and drives the mounting plate II, the laser detector I, the connecting rod I, the laser detector II and the rotating roller on the connecting rod I to move by pushing out or contracting the electric push rod, so that the rotating roller on the connecting rod I adjusts the distance between itself and the PPH belt, and the rotating roller on the connecting rod I applies an adaptive force to the PPH belt to avoid excessive or insufficient force, thereby effectively facilitating the production of PPH conical heads.

[0016] The present invention controls the electric moving block II to slide in the slide groove I, so that the distance between the rotating roller on the connecting rod I and the PPH belt overlapped and wound on the conical mold is adaptively expanded, so that the rotating roller on the connecting rod I performs an initial small-amplitude extrusion on the overlapped and wound PPH belt, so that the overlapped and wound PPH belt is pre-tightened.

[0017] The present invention changes the extrusion of the PPH belt by the rotating roller on the connecting rod I into the extrusion of the PPH belt by the rotating roller on the connecting rod I and the rotating roller on the upper connecting rod II, so that the degree of extrusion of the PPH belt by all the rotating rollers gradually increases from top to bottom, and the extrusion amount originally completed at one time is changed to be completed multiple times, so that the extrusion process of the PPH belt is smoother. By completing the extrusion of the PPH belt multiple times, the adhesion strength of the PPH belt is guaranteed, and the deviation or torsion of the PPH belt is reduced, so that the production of the conical head is smoother.

[0018] The present invention connects an external cold air conveying device with a mounting rod, connects the mounting rod with a rotating roller on a connecting rod I and a space inside a rotating roller on an upper connecting rod II, starts to convey cold air from the external cold air conveying device to the space corresponding to the rotating roller, reduces the temperature of the rotating roller itself, and when the rotating roller extrude the PPH belt, the cooled rotating roller cools the PPH belt wound on a conical die, accelerates the cooling of the PPH belt, and makes the PPH belt wound on the conical die set faster, thereby preventing the overlapped PPH belts from being affected by gravity, causing the PPH belts to sag and separate, thereby affecting the production of the conical head.

[0019] The cleaning layer of the rotating roller on the mounting block I of the present invention is attached to the area of ​​the conical mold not wrapped with the PPH tape. During the rotation of the conical mold, the cleaning layer on the rotating roller cleans the conical mold without subsequent cleaning.

[0020] The present invention allows the adsorption disk to contact the cleaning layer on the rotating roller carrying the stains, and the adsorption disk adsorbs and collects the stains on the cleaning layer on the rotating roller, thereby ensuring the cleaning effect of the cleaning layer on the rotating roller. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a schematic diagram of the overall structure disclosed by the PPH tape winding conical head forming machine of the present invention;

[0022] Figure 2 It is a schematic diagram of the combined structure of the electric push rod and the mounting plate II disclosed in the PPH tape winding conical head forming machine of the present invention;

[0023] Figure 3 It is a schematic diagram of the combined structure of the mounting plate II, the laser detector I and the connecting rod I disclosed in the PPH tape winding conical head forming machine of the present invention;

[0024] Figure 4 It is a cross-sectional view of the combined structure of the mounting rod, mounting block I, connecting rod II, electric moving block I and blowing plate disclosed in the PPH tape winding conical head forming machine of the present invention;

[0025] Figure 5 The present invention is a schematic diagram of the combined structure of the movable strip, the adsorption plate and the connecting pipe disclosed in the PPH tape winding conical head forming machine.

[0026] The markings of the components in the accompanying drawings are as follows: 1-forming device, 2-pressing frame, 3-heater, 4-carrying movable frame, 5-conical mold, 101-electric push rod, 102-mounting plate II, 103-laser detector I, 104-connecting rod I, 105-laser detector II, 110-mounting rod, 111-mounting block I, 112-connecting rod II, 113-electric movable block I, 114-blowing plate, 120-moving strip, 121-adsorption plate, 122-connecting pipe, 31-driving motor, 1021-slide trough I, 1022-electric movable block II, 1023-slide trough II. DETAILED DESCRIPTION

[0027] The present invention will now be described more fully below with reference to the accompanying drawings, in which currently preferred embodiments of the present invention are shown. However, the present invention may be implemented in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided for thoroughness and completeness, and these embodiments fully convey the scope of the present invention to the skilled person.

[0028] Example 1

[0029] A PPH tape winding conical head forming machine, such as Figure 1-Figure 5 As shown, it includes a forming device 1, a pressing frame 2, a heater 3, a carrying and moving frame 4 and a conical mold 5; the pressing frame 2 is installed on the forming device 1; the heater 3 is connected to the forming device 1; the carrying and moving frame 4 is provided on the left side of the forming device 1; the conical mold 5 is provided on the carrying and moving frame 4; the carrying and moving frame 4 is provided with a driving device, and the driving device is used to drive the conical mold 5 to rotate;

[0030] It also includes an electric push rod 101, a mounting plate II 102, a laser detector I 103, a connecting rod I 104, a laser detector II 105, a mounting rod 110, a mounting block I 111, a connecting rod II 112 and an electric moving block I 113; the forming device 1 is equipped with an electric push rod 101; the telescopic part of the electric push rod 101 is fixedly connected to the mounting plate II 102, and the mounting plate II 102 is provided with a slide groove I 1021; the mounting plate II 102 is fixedly connected to the laser detector I 103; the mounting plate II 102 is equipped with a connecting rod I 104, and the connecting rod I 104 is provided with a rotating connecting rod. It is connected to a rotating roller; a laser detector Ⅱ105 is fixedly connected to the bottom of the mounting plate Ⅱ102; a mounting rod 110 is installed on the mounting plate Ⅱ102; two mounting blocks Ⅰ111 are installed on the mounting rod 110; all the mounting blocks Ⅰ111 are slidably connected to an electric moving block Ⅰ113; all the electric moving blocks Ⅰ113 are fixedly connected to a connecting rod Ⅱ112; all the connecting rods Ⅱ112 are rotatably connected to another rotating roller; an electric moving block Ⅱ1022 is slidably connected in the slide groove Ⅰ1021, and the connecting rod Ⅰ104 is fixedly connected to the electric moving block Ⅱ1022.

[0031] The forming device 1 and the heater 3 are arranged to be rotatably connected, and a driving motor 31 is arranged at the connection between the heater 3 and the forming device 1 to facilitate adjustment of the irradiation angle of the heater 3 .

[0032] The interiors of the connecting rod Ⅰ104 and the connecting rod Ⅱ112 on the upper side of the mounting rod 110 are hollow, and the interiors of the rotating roller connected to the connecting rod Ⅰ104 and the rotating roller connected to the connecting rod Ⅱ112 on the upper side of the mounting rod 110 are also hollow. The connecting rod Ⅰ104 is connected to the rotating roller connected to it, and the connecting rod Ⅱ112 on the upper side of the mounting rod 110 is connected to the rotating roller connected to it; the mounting rod 110 is hollow, and the connecting rod Ⅰ104 and the connecting rod Ⅱ112 located on the upper side of the mounting rod 110 are both connected to the mounting rod 110.

[0033] The mounting rod 110 is rotatably connected to the mounting block Ⅰ111 at the lower side thereof. An electric drive component is provided at the rotatable connection between the mounting rod 110 and the mounting block Ⅰ111 at the lower side thereof. The electric drive component may be an electric shaft or a DD motor, etc. The electric drive component is used to drive the mounting block Ⅰ111 at the lower side of the mounting rod 110 to rotate. A cleaning layer is provided on the rotating roller on the connecting rod Ⅱ112 at the lower side of the mounting rod 110. The cleaning layer is configured as a rubber pad with a large friction coefficient, which is beneficial for the lower connecting rod Ⅱ112 to clean stains on the conical mold 5.

[0034] The rotating roller connected to the connecting rod I 104 and the connecting rod II 112 on the upper side of the mounting rod 110 is set to a metal material with a high heat transfer coefficient, so as to facilitate the transfer of cold air to cool the PPH belt.

[0035] The cleaning layer on the connecting rod II 112 located at the lower side of the mounting rod 110 is provided with rubber convex strips for improving the cleaning effect of stains on the conical mold 5 of the cleaning layer.

[0036] It also includes an air blowing plate 114; the laser detector I 103 and the laser detector II 105 are fixedly connected to the air blowing plate 114.

[0037] Before the production of the conical head, the load-bearing movable frame 4 and the conical mold 5 are manually pushed toward the forming device 1. When the pressing frame 2 is about to contact the conical mold 5, the positions of the load-bearing movable frame 4 and the conical mold 5 are manually adjusted to make the waistline of the conical mold 5 parallel to the rotating shaft of the pressing frame 2. Then the conical mold 5 is manually pushed again to make the conical mold 5 contact the pressing frame 2. At the same time, the PPH belt formed in the forming device 1 is manually pulled out using a tool, and the PPH belt head is placed between the pressing frame 2 and the conical mold 5. The PPH belt is pressed on all the rollers of the pressing frame 2. The heater 3 is started, and the heater 3 irradiates and heats the conical mold 5. , the temperature of the conical mold 5 begins to rise, and at the same time, the driving motor 31 is controlled to drive the heater 3 to rotate, so that the irradiation angle of the heater 3 can be adjusted, which is beneficial to irradiate and heat the conical molds 5 of different specifications. Then, the driving device of the carrying movable frame 4 is started to drive the conical mold 5 to rotate slowly, and the forming device 1 is controlled to move backward to make the PPH belt overlap and wrap around the conical mold 5. At the same time, the electric push rod 101 is controlled to be pushed out, so that the mounting plate Ⅱ102, the connecting rod Ⅰ104 and the rotating roller on the connecting rod Ⅰ104 move toward the conical mold 5, so that the rotating roller extrude the PPH belt wrapped around the conical mold 5, and the production of the conical head begins.

[0038] When the production of the conical head begins, as the conical mold 5 rotates, the PPH belt is gradually wound on it. During the rotation of the conical mold 5, the rotating roller on the connecting rod Ⅰ104 will press on the PPH belt, and at this time, by adding laser detector Ⅰ103 and laser detector Ⅱ105 on the mounting plate Ⅱ102, the laser detector Ⅰ103 is close to the contact position between the pressing frame 2 and the conical mold 5, so that the initial data of the PPH belt just wound on the conical mold 5 by the pressing frame 2 is monitored by the laser detector Ⅰ103, that is, the distance between the position where the PPH belt is just wound on the conical mold 5 and the laser detector Ⅰ103. It should be noted that the PPH belt just wound on the conical mold 5 by the pressing frame 2 is relatively flat, and the monitoring range of the laser detector Ⅰ103 is the width of the PPH belt. After 103 obtains the initial data of the PPH belt just wound on the conical mold 5 by the pressing frame 2, the electric push rod 101 is pushed out or retracted to drive the mounting plate II 102, the laser detector I 103, the connecting rod I 104, the laser detector II 105 and the rotating roller on the connecting rod I 104 to move, so that the rotating roller on the connecting rod I 104 adjusts the distance between itself and the PPH belt, and the rotating roller on the connecting rod I 104 applies an adaptive force to the PPH belt to avoid excessive or insufficient force, thereby effectively facilitating the production of the PPH conical head. It should be noted that as the PPH belt gradually overlaps and is wound on the conical mold 5, the laser detector I 103 continuously monitors the data of the PPH belt after overlap, which is beneficial for the electric push rod 101 to drive the rotating roller on the connecting rod I 104 to move and extrude the PPH belt.

[0039] Considering that when the PPH tape is squeezed by the rotating roller on the connecting rod Ⅰ104, in order to ensure the adhesion strength of the PPH tape overlapped and wound on the mold and to ensure the production quality, the PPH tape needs to be squeezed with great strength. However, since the PPH tape is in an overlapping state, after the rotating roller squeezes the PPH tape, although the PPH tape on the surface is squeezed flat, the PPH tape under the surface PPH tape will be offset or twisted, affecting the production quality of the conical head. Therefore, when the overlapping PPH tape is squeezed After the data of the PPH belts overlapped and wound on the conical mold 5 by the pressing frame 2 is obtained through the laser detector Ⅰ103, the electric moving block Ⅱ1022 is first controlled to slide in the slide groove Ⅰ1021, so that the distance between the rotating roller on the connecting rod Ⅰ104 and the PPH belts overlapped and wound on the conical mold 5 is adaptively expanded, so that the rotating roller on the connecting rod Ⅰ104 performs an initial small-amplitude extrusion on the overlapped and wound PPH belts, so that the overlapped and wound PPH belts are pre-tightened, and then the rotating roller on the connecting rod Ⅰ104 is used to press the rotating roller on the connecting rod Ⅰ104. The PPH belt is inspected after roller extrusion to obtain data of the PPH belt after extrusion, and then, the upper electric moving block Ⅰ113 is controlled to move on the corresponding mounting block Ⅰ111 according to the data obtained by the laser detector Ⅱ105, and the upper electric moving block Ⅰ113 drives the rotating roller on the upper connecting rod Ⅱ112 to move, and adjusts the extrusion degree of the PPH belt by the rotating roller on the upper connecting rod Ⅱ112. Then, the rotating roller on the upper connecting rod Ⅱ112 performs secondary extrusion on the PPH belt, so that the original extrusion of the PPH belt by the rotating roller on the connecting rod Ⅰ104 is changed to the extrusion of the PPH belt by the rotating roller on the connecting rod Ⅰ104 and the rotating roller on the upper connecting rod Ⅱ112, so that the extrusion degree of the PPH belt by all the rotating rollers from top to bottom is gradually increased, and the extrusion amount originally completed at one time is changed to multiple completions, so that the extrusion process of the PPH belt is smoother, and the extrusion of the PPH belt is completed multiple times to ensure the adhesion strength of the PPH belt, while reducing the deviation or twisting of the PPH belt, so that the production of conical heads is smoother.

[0040] During the production of conical heads, the existing overlapping PPH belts are naturally cooled and shaped. During the natural cooling process of the PPH belts, the PPH belts are affected by gravity and sag, causing the partially overlapping PPH belts on the mold to separate, resulting in defects in the conical head formed by the PPH belts, affecting the production of the conical head. By connecting the external cold air conveying equipment with the mounting rod 110, the mounting rod 110 is connected with the rotating roller on the connecting rod Ⅰ104 and the space inside the rotating roller on the upper connecting rod Ⅱ112, the external cold air conveying equipment is started to convey cold air to the space corresponding to the rotating roller, so that the temperature of the rotating roller itself is reduced. When the rotating roller squeezes the PPH belt, the cooled rotating roller cools the PPH belt wrapped around the conical mold 5, accelerates the cooling of the PPH belt, and makes the PPH belt wrapped around the conical mold 5 shape faster, avoiding the overlapping PPH belts from being affected by gravity, causing the PPH belts to sag and separate, affecting the production of the conical head.

[0041] By adding a blowing plate 114 to the laser detector I 103 and the laser detector II 105, the blowing plate 114 is connected to an external gas source. When producing a conical head, the external gas source is started to transport gas to the blowing plate 114, and the gas is sprayed from the blowing plate 114 onto the PPH belt to accelerate the cooling of the PPH belt.

[0042] Considering that the prior art heats the conical mold 5 by jetting flame, after the flame is jetted onto the conical mold 5, stains are produced on the conical mold 5 due to flame roasting. In the process of the PPH tape being wound around the conical mold 5, the stains on the conical mold 5 adhere to the conical head and need to be cleaned later. By setting the lower mounting block Ⅰ111 to be rotatably connected to the mounting rod 110, and the mounting rod 110 and the mounting block Ⅰ111 are both provided with an electric drive component at the rotation connection. The electric drive component is used for the rotation of the mounting block Ⅰ111. When the PPH tape is wound around the conical mold 5, the electric drive component is controlled to drive the lower mounting block Ⅰ111 to rotate one hundred and eighty degrees counterclockwise when viewed from top to bottom, so that the cleaning layer of the rotating roller on the mounting block Ⅰ111 is attached to the area of ​​the conical mold 5 where the PPH tape is not wound. In the process of the rotation of the conical mold 5, the cleaning layer on the rotating roller cleans the conical mold 5, and no subsequent cleaning is required.

[0043] Example 2

[0044] On the basis of Example 1, Figure 4 and Figure 5 As shown, it also includes a movable strip 120, a suction plate 121 and a connecting pipe 122; a slide groove II 1023 is opened at the bottom of the mounting plate II 102; the movable strip 120 is slidably connected in the slide groove II 1023; the suction plate 121 is fixedly connected to the bottom of the movable strip 120; and the connecting pipe 122 is connected to the bottom of the suction plate 121.

[0045] The suction port of the suction plate 121 is provided with a chamfer to facilitate cleaning of the cleaning layer on the connecting rod II 112 located at the lower side of the installation rod 110 .

[0046] The suction port of the suction plate 121 is tilted downward from left to right to facilitate the transfer of the cleaned stains.

[0047] By adding a moving strip 120, a suction plate 121 and a connecting tube 122 to the mounting plate Ⅱ102, connecting the connecting tube 122 to an external vacuum generator, starting the external vacuum generator to provide suction force for the suction plate 121, after the cleaning layer on the rotating roller of the lower connecting rod Ⅱ112 completes cleaning of the stains on the conical mold 5, the stains are transferred to the cleaning layer on the rotating roller, and the electric drive component is controlled to drive the lower mounting block Ⅰ111 to reverse 180 degrees, and the rotating roller carrying the stains returns to its initial position, and the moving strip 120 is controlled to slide to the left in the slide groove Ⅱ1023, and the suction plate 121 and the connecting tube 122 follow the movement, and when the suction plate 121 contacts the cleaning layer on the rotating roller carrying the stains, the suction plate 121 absorbs and collects the stains on the cleaning layer on the rotating roller to ensure the cleaning effect of the cleaning layer on the rotating roller.

[0048] Although the present disclosure has been shown and described with reference to specific exemplary embodiments of the present disclosure, it should be understood by those skilled in the art that various changes in form and details may be made to the present disclosure without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above-mentioned embodiments, but should be determined not only by the appended claims, but also by the equivalents of the appended claims.

Claims

1. A PPH tape winding conical head forming machine, comprising a forming device (1), a pressing frame (2), a heater (3), a carrying frame (4) and a conical mold (5); the forming device (1) is provided with a pressing frame (2) for winding the PPH tape; the forming device (1) is connected with a heater (3); a carrying frame (4) is provided on the left side of the forming device (1); the conical mold (5) is provided on the carrying frame (4); a driving device is provided on the carrying frame (4); the characteristic is that: The molding device (1) also includes an electric push rod (101), a mounting plate II (102), a laser detector I (103), a connecting rod I (104), a laser detector II (105), a mounting rod (110), a mounting block I (111), a connecting rod II (112) and an electric moving block I (113); the molding device (1) is provided with an electric push rod (101); the telescopic portion of the electric push rod (101) is fixedly connected to the mounting plate II (102), and a slide groove I (1021) is provided on the mounting plate II (102); the laser detector I (103) is fixedly connected to the mounting plate II (102); the connecting rod I (104) is installed on the mounting plate II (102), and a rotating connecting rod I (104) is provided on the connecting rod I (104). A rotating roller for squeezing a PPH belt is connected; a laser detector II (105) is fixedly connected to the bottom of the mounting plate II (102); a mounting rod (110) is installed on the mounting plate II (102); a plurality of mounting blocks I (111) are installed on the mounting rod (110); all the mounting blocks I (111) are slidably connected to an electric moving block I (113); all the electric moving blocks I (113) are fixedly connected to a connecting rod II (112); all the connecting rods II (112) are rotatably connected to another rotating roller; an electric moving block II (1022) is slidably connected in a slide groove I (1021), and a connecting rod I (104) is fixedly connected to the electric moving block II (1022).

2. A PPH tape winding conical head forming machine according to claim 1, characterized in that the forming The device (1) and the heater (3) are arranged to be rotationally connected, and a driving motor (31) is provided at the connection between the heater (3) and the forming device (1).

3. A PPH tape winding conical head forming machine according to claim 1, characterized in that the connecting rod The interiors of the connecting rod I (104) and the connecting rod II (112) on the upper side of the mounting rod (110) are hollow, and the interiors of the rotating roller connected to the connecting rod I (104) and the rotating roller connected to the connecting rod II (112) on the upper side of the mounting rod (110) are also hollow. The connecting rod I (104) is connected to the rotating roller connected thereto, and the connecting rod II (112) on the upper side of the mounting rod (110) is connected to the rotating roller connected thereto. The mounting rod (110) is hollow, and the connecting rod I (104) and the connecting rod II (112) on the upper side of the mounting rod (110) are both connected to the mounting rod (110).

4. A PPH tape winding conical head forming machine according to claim 3, characterized in that: The mounting rod (110) is rotatably connected to the mounting block I (111) at its lower side. An electric drive component is provided at the rotatable connection between the mounting rod (110) and the mounting block I (111) at its lower side. The electric drive component is used to drive the mounting block I (111) at the lower side of the mounting rod (110) to rotate. A cleaning layer is provided on the rotating roller on the connecting rod II (112) at the lower side of the mounting rod (110). The cleaning layer is set as a rubber pad with a large friction coefficient.

5. A PPH tape winding conical head forming machine according to claim 3, characterized in that: The rotating roller connected to the connecting rod I (104) and the connecting rod II (112) on the upper side of the mounting rod (110) is made of a metal material with a high heat transfer coefficient.

6. A PPH tape winding conical head forming machine according to claim 4, characterized in that: A rubber convex strip is provided on the cleaning layer on the connecting rod II (112) located at the lower side of the mounting rod (110).

7. A PPH tape winding conical head forming machine according to claim 1, characterized in that: It also includes an air blowing plate (114); the laser detector I (103) and the laser detector II (105) are fixedly connected to the air blowing plate (114).

8. A PPH tape winding conical head forming machine according to claim 7, characterized in that: It also includes a movable strip (120), a suction plate (121) and a connecting pipe (122); a slide groove II (1023) is provided at the bottom of the mounting plate II (102); the movable strip (120) is slidably connected in the slide groove II (1023); the suction plate (121) is fixedly connected to the bottom of the movable strip (120); and the connecting pipe (122) is connected to the bottom of the suction plate (121).

9. A PPH tape winding conical head forming machine according to claim 8, characterized in that: The adsorption opening of the adsorption plate (121) is provided with a chamfer.

10. A PPH tape winding conical head forming machine according to claim 8, characterized in that: The adsorption opening of the adsorption plate (121) is inclined downward from left to right.

Citation Information

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