An insulation glue extrusion device based on cable processing
By introducing the scraping, condensing and collecting mechanisms into the cable insulation adhesive extrusion device, the problems of uneven coating and waste are solved, uniform coating coverage and efficient molding of the cable are achieved, and the aesthetics and processing efficiency of the cable are improved.
Patent Information
- Application Number
- CN202310961543.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-02
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2043-08-02
AI Technical Summary
Existing cable insulation glue extrusion devices have difficulty ensuring uniform coating distribution during the glue injection process, resulting in an uneven cable surface and the possibility of incompletely solidified material dripping and causing waste.
The scraping mechanism is used to scrape the insulating material on the cable, which is quickly solidified by the condensing mechanism. The scraped material is recovered by the collecting mechanism, and the trimming mechanism is used to remove burrs, thereby improving the coating uniformity and molding efficiency.
It achieves uniform coverage of cable insulation coating, reduces waste, improves cable aesthetics and processing efficiency, and ensures material quality.
Smart Images

Figure CN116844787B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cable processing, in particular to an insulation glue extrusion device based on cable processing. BACKGROUND
[0002] A cable is a conductor used for transmitting electric energy or signals, which is usually composed of a conductor, an insulation layer, a barrier layer and a protective sheath, etc. Based on one or more groups of conductor wires in the form of bundling or braiding, the conductor wires are covered in an insulation material and then covered in a protective sheath material.
[0003] Patent No. CN115312273B for cable processing insulation glue extruder and processing method, including processing table, the top of the processing table is fixedly connected with the work cover, the top of the inner wall of the work cover is fixedly connected with the storage box, the inner surface of the storage box is slidably connected with the sealing plate, the top of the sealing plate is communicated with the telescopic pipe, the top of the sealing plate is communicated with the air outlet pipe, the top end of the air outlet pipe penetrates the work cover, the bottom end of the storage box is communicated with the glue outlet pipe, the inside of the work cover is connected with the winding assembly for winding, the top of the work cover is connected with the moving assembly for driving the sealing plate to move; the device drives the cable to move in the work cover through the winding assembly, and then drives the sealing plate to move back and forth through the moving assembly, so as to extrude the insulation glue from the storage box into the glue outlet pipe, thereby injecting the glue on the surface of the cable, achieving the effect of improving the operation efficiency. However, during the process of injecting the glue coating, it is difficult to ensure that the insulation coating on the cable is evenly distributed, and after the processing is completed, the surface of the cable may be unevenly coated, affecting the final appearance of the cable. At the same time, the uncoagulated material may drop and cause waste.
[0004] Therefore, in view of the above problems, the present application provides an insulation glue extrusion device based on cable processing, which can scrape and smooth the coating after the cable insulation glue injection is completed, and recycle the scraped material. SUMMARY
[0005] In order to overcome the shortcomings of the prior art that it is difficult to ensure that the insulation coating on the cable is evenly distributed during the process of injecting the glue coating, and after the processing is completed, the surface of the cable may be unevenly coated, affecting the final appearance of the cable, and the uncoagulated material may drop and cause waste, the present application provides an insulation glue extrusion device based on cable processing, which can scrape and smooth the coating after the cable insulation glue injection is completed, and recycle the scraped material.
[0006] The technical scheme of the present application is as follows:
[0007] The utility model provides an insulating glue extruding device based on cable processing, including base, shell, melt barrel, discharge pipe, extruding component, heating component, drive component, winding component and scraping mechanism, the top of base is provided with shell, the left side of melt barrel is arranged in the top of shell, the bottom of melt barrel is provided with discharge pipe, melt barrel is provided with extruding component, melt barrel is provided with heating component, drive component is arranged between extruding component and shell, winding component is arranged in the right side of shell, scraping mechanism is equipped on the shell, scraping mechanism includes sliding piece, pivot, connecting frame, first belt pulley assembly, first gear, rack frame, scraper and discharging frame, the upper portion of shell is provided with sliding piece in sliding mode, the bottom of sliding piece is provided with pivot in rotary mode, the left side of sliding piece lower part is provided with connecting frame, connecting frame is rotatably connected with pivot, first belt pulley assembly is arranged between pivot and drive component, the pulley of first belt pulley assembly downside is slidably connected with pivot, the left part of pivot is provided with first gear, the rack frame that is intermeshed with first gear is slidably arranged on connecting frame, the bottom of rack frame is provided with scraper, the left side of rear side in shell is provided with discharging frame near melt barrel.
[0008] Further, it further includes a condensing mechanism, the condensing mechanism includes a support rod, a protective shell, a refrigerated water tank, a condenser pipe and a water pump, the bottom of the shell is provided with a support rod, the top of the support rod is provided with a protective shell, the bottom of the shell is provided with two refrigerated water tanks symmetrically, the top of the refrigerated water tanks is provided with a condenser pipe, and the bottom of the shell is provided with a water pump at the middle position, and the water pump is connected and communicated with the refrigerated water tanks through a water pipe.
[0009] Further, it further includes a collecting mechanism, the collecting mechanism includes a mounting frame, a storage tank, a sliding plate, a sliding frame, a sliding bracket and a closing plate, the bottom left side of the shell is provided with a mounting frame, the mounting frame is slidably provided with a storage tank, the top of the mounting frame is slidably provided with two sliding plates symmetrically, the left and right sides of the sliding plates are provided with sliding frames, the top of the sliding plates is provided with closing plates, and the sliding frames on the right side are slidably provided with sliding brackets, and the sliding brackets are connected with the right side of the scraper.
[0010] Further, it further includes a trimming mechanism, the trimming mechanism includes a second belt pulley assembly, a connecting plate, a second gear, a gear ring frame, a mounting bracket, a sliding rod, a blade and a spring, the right side of the shell is provided with two connecting plates symmetrically, the bottom of the connecting plates is rotatably provided with a second gear, the second belt pulley assembly is arranged between the left side of the second gear and the drive motor, the bottom right side of the shell is provided with a mounting bracket, the top of the mounting bracket is rotatably provided with a gear ring frame intermeshed with the second gear, four sliding rods are slidably arranged on the gear ring frame, the blades are arranged on the side close to each other of the sliding rods, and the blades are provided with springs between the gear ring frame.
[0011] Further, the guiding mechanism comprises a fixing frame, a wire wheel and a guide frame, the fixing frame is arranged on the left side of the shell, the guide frame is arranged on the left side of the shell, the guide frame is located on the upper side of the fixing frame, the wire wheel is rotatably arranged on the fixing frame, and the wire wheel is slidably and rotatably arranged on the guide frame.
[0012] Further, the stirring mechanism comprises a stirring frame and a spiral rod, and the stirring frame is arranged at the bottom of the extrusion assembly, and the spiral rod is arranged at the bottom of the stirring frame.
[0013] Further, the extrusion assembly comprises a lead screw and an extrusion plate, the lead screw is rotatably arranged on the melt barrel, the lead screw penetrates through the shell at the top, the extrusion plate is threadedly arranged on the lead screw, and the extrusion plate is slidably connected with the melt barrel.
[0014] Further, the heating assembly comprises a heating frame and a heating ring, the heating frame is arranged on the melt barrel, the heating ring is arranged between the heating frame and the melt barrel, and the heating ring surrounds the melt barrel.
[0015] Further, the driving assembly comprises a double-shaft motor and a bevel gear, the double-shaft motor is arranged on the upper side of the right part of the shell, the output shaft of the double-shaft motor is arranged in a left-right direction, the output shaft of the double-shaft motor on the left side is provided with a bevel gear, and the top of the extrusion assembly is provided with a bevel gear.
[0016] Further, the winding assembly comprises a servo motor, a fixing plate and a winding wheel, the servo motor is arranged on the right side in the shell, the fixing plate is arranged on the right side in the shell, the winding wheel is rotatably arranged on the top of the fixing plate, and the winding wheel is connected with the output shaft of the servo motor.
[0017] The beneficial effects of the present application are as follows:
[0018] 1、The insulating material on the upper and lower sides of the cable can be covered more evenly and uniformly through the cooperation of the scraping plate and the discharging frame, and the collected material can be collected through the discharging frame, so that the waste of material is avoided.
[0019] 2、The condensate water in the refrigeration water tank can be circulated in the condensing pipe through the continuous extraction and delivery of the water pump, so that the insulating material on the cable can be quickly condensed when the cable passes through the protective shell, and the forming efficiency of the insulating material is improved.
[0020] 3、The collected material is collected through the storage box, the sliding frame drives the sliding frame, the sliding plate drives the closing plate to close to the closing, the storage box is closed and protected, dustproof treatment is realized, and the quality of the recycled material is affected by dust.
[0021] 4、The application drives the second gear to rotate through the driving assembly, so that the gear ring frame drives the blade to rotate continuously, thereby removing and trimming the burrs on the surface of the cable, and improving the appearance after the cable processing is completed. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a schematic diagram of the three-dimensional structure of the application.
[0023] Figure 2 It is a partial three-dimensional structure sectional view of the application.
[0024] Figure 3 It is a schematic diagram of the three-dimensional structure of the scraping mechanism of the application.
[0025] Figure 4 It is a schematic diagram of the three-dimensional structure of the condensing mechanism of the application.
[0026] Figure 5 It is a schematic diagram of the three-dimensional structure of the collecting mechanism of the application.
[0027] Figure 6 It is a schematic diagram of the three-dimensional structure of the trimming mechanism of the application.
[0028] Figure 7 It is a schematic diagram of the structure of the trimming mechanism of the application.
[0029] Figure 8 It is a schematic diagram of the three-dimensional structure of the guiding mechanism of the application.
[0030] Figure 9 It is a schematic diagram of the three-dimensional structure of the stirring mechanism of the application.
[0031] Drawing reference: 1_base, 2_housing, 3_melt bucket, 31_discharge pipe, 32_extrusion assembly, 4_heating assembly, 5_driving assembly, 6_winding assembly, 7_scraping mechanism, 71_sliding piece, 72_rotation shaft, 73_connection frame, 74_first belt pulley assembly, 75_first gear, 76_rack frame, 77_scraper, 78_discharge frame, 8_condensing mechanism, 81_supporting rod, 82_protection shell, 83_refrigeration water tank, 84_condensing pipe, 85_water pump, 9_collecting mechanism, 91_mounting frame, 92_storage tank, 93_sliding plate, 94_sliding frame, 95_sliding frame, 96_closing plate, 10_trimming mechanism, 101_second belt pulley assembly, 102_connection plate, 103_second gear, 104_gear ring frame, 105_mounting frame, 106_sliding rod, 107_blade, 108_spring, 11_guiding mechanism, 111_fixing frame, 112_wire wheel, 113_guiding frame, 12_stirring mechanism, 121_stirring frame, 122_spiral rod. DETAILED DESCRIPTION
[0032] The application will be described in detail below with reference to the drawings.
[0033] An insulation glue extrusion device based on cable processing, as shown in Figure 1 and Figure 2 shown, comprising a base 1, a shell 2, a melting barrel 3, a discharge pipe 31, an extrusion assembly 32, a heating assembly 4, a driving assembly 5, a winding assembly 6 and a scraping mechanism 7, the top of the base 1 is connected with the shell 2, the left top inside of the shell 2 is connected with the melting barrel 3, the bottom of the melting barrel 3 is connected with the discharge pipe 31, the inside of the melting barrel 3 is connected with the extrusion assembly 32 for extruding the material, the extrusion assembly 32 comprises a lead screw and an extrusion plate, the melting barrel 3 is rotatably connected with the lead screw, the top of the lead screw penetrates through the shell 2, the extrusion plate is threadedly connected with the lead screw, the extrusion plate is slidably connected with the melting barrel 3, the melting barrel 3 is connected with the heating assembly 4 for heating treatment of the material, the heating assembly 4 comprises a heating frame and a heating ring, the melting barrel 3 is connected with the heating frame, the heating frame is connected with the heating ring between the melting barrel 3, the heating ring is wrapped around the melting barrel 3, the extrusion assembly 32 is connected with the driving assembly 5 between the shell 2, the driving assembly 5 comprises a double-shaft motor and a bevel gear, the right top of the shell 2 is boltedly connected with the double-shaft motor, the output shafts of the double-shaft motor are left-right oriented, the left output shaft of the double-shaft motor is connected with the top of the extrusion assembly 32 with a bevel gear, the right inside of the shell 2 is boltedly connected with the winding assembly 6 for winding the cable, the winding assembly 6 comprises a servo motor, a fixed plate and a winding wheel, the right inside of the shell 2 is boltedly connected with the servo motor, the right inside of the shell 2 is boltedly connected with the fixed plate, the top of the fixed plate is rotatably connected with the winding wheel, the winding wheel is connected with the output shaft of the servo motor, the shell 2 is provided with the scraping mechanism 7 for scraping the coating on the cable.
[0034] It should be noted that when the cable is processed and insulated, the device can be used to assist the operator to operate, first the cable is sent into the left side of the shell 2, so that the cable penetrates through the left side of the shell 2 and enters the discharge pipe 31, then the heating assembly 4 and the driving assembly 5 are started, the material in the melting barrel 3 is heated by the heating assembly 4 to avoid the material from condensing, at the same time the driving assembly 5 is driven to rotate to drive the extrusion assembly 32 to start moving in the melting barrel 3, so that the material in the melting barrel 3 is continuously extruded into the discharge pipe 31, so that the material can be attached to the cable, then the cable is continuously conveyed to the right to drive the cable into the scraping mechanism 7, the insulation material on the cable is scraped by the scraping mechanism 7 to make the material cover more evenly, finally the right end of the cable is connected to the winding assembly 6, and the winding assembly 6 is started to drive the cable to be continuously wound, so as to realize the effect of automatic coating and winding.
[0035] As Figure 1 and Figure 3As shown, the scraping mechanism 7 comprises a sliding piece 71, a rotating shaft 72, a connecting frame 73, a first belt pulley assembly 74, a first gear 75, a rack frame 76, a scraper 77 and a discharging frame 78. The sliding piece 71 is slidably connected to the upper portion of the shell 2. The rotating shaft 72 is rotatably connected to the bottom of the sliding piece 71. The connecting frame 73 is connected to the lower left portion of the sliding piece 71. The connecting frame 73 is rotatably connected to the rotating shaft 72. The first belt pulley assembly 74 is connected between the rotating shaft 72 and the driving assembly 5. The belt pulley at the lower side of the first belt pulley assembly 74 is slidably connected to the rotating shaft 72. The first gear 75 is connected to the left portion of the rotating shaft 72. The rack frame 76 is slidably connected to the connecting frame 73 and is in mesh with the first gear 75. The scraper 77 is connected to the bottom of the rack frame 76 and is used for scraping the insulating material on the upper side of the cable. The discharging frame 78 is bolted to the left side of the rear portion of the shell 2 and is close to the melting material barrel 3. The discharging frame 78 is used for scraping the insulating material on the lower side of the cable and guiding the scraped material.
[0036] It should be noted that when the material is attached to the cable through the discharging pipe 31, the coating may not be uniform. At this time, as the cable continues to move to the right through the discharging pipe 31, the operator needs to push the sliding piece 71 to the right, so that the sliding piece 71 drives the rotating shaft 72 to move to the right, so that the first gear 75 is disengaged from the rack frame 76. At this time, the driving assembly 5 drives the first belt pulley assembly 74 to rotate, so that the rotating shaft 72 drives the first gear 75 to rotate, and the first gear 75 is in an idle state. Then, as the cable moves between the scraper 77 and the discharging frame 78, the insulating material on the upper side of the cable is scraped by the scraper 77, and the insulating material on the lower side of the cable is scraped by the discharging frame 78, so that the insulating material on the cable can be covered more uniformly and smoothly. The scraped material is collected in the discharging frame 78 and discharged under the guidance of the discharging frame 78. The operator can collect the material to avoid waste of the material. When the cable coating is completed, first, the driving assembly 5 is turned off, and then the sliding piece 71 is pushed to the left to reset, so that the rotating shaft 72 drives the first gear 75 to move to the left to reset, and then the first gear 75 and the rack frame 76 are restored to the engaged state. Then, the driving assembly 5 is controlled to rotate in reverse, which drives the first belt pulley assembly 74 to rotate in reverse while driving the extrusion assembly 32 to reset, so that the rack frame 76 drives the scraper 77 to move upward along the connecting frame 73. At this time, the scraper 77 and the discharging frame 78 are away from each other. Then, the driving assembly 5 is turned off, and the operator can clean the scraper 77 and the discharging frame 78 at this time.
[0037] In summary, through the cooperation of the scraping plate and the discharging frame 78, the insulating material on the upper and lower sides of the cable is scraped and smoothed, so that the insulating material on the cable can be covered more uniformly and smoothly, and the scraped material is collected by the discharging frame 78 to avoid waste of the material.
[0038] As shown in Figure 1 And Figure 4 As shown in the figure, it also includes condensing mechanism 8, which includes support rod 81, protective shell 82, refrigeration water tank 83, condensing pipe 84 and water pump 85. The support rod 81 is connected to the middle of the inner bottom of the shell 2. The protective shell 82 is connected to the top of the support rod 81 for cable passing. The two refrigeration water tanks 83 are symmetrically connected to the left and right of the inner bottom of the shell 2. The refrigeration water tanks 83 are distributed near the left and right sides of the support rod 81. The condensing pipe 84 is connected between the top of the refrigeration water tanks 83 for condensing treatment of the cable. The condensing pipe 84 passes through the inside of the protective shell 82. The water pump 85 is connected to the middle of the inner bottom of the shell 2 by bolts. The water pump 85 is connected to the refrigeration water tank 83 by water pipes.
[0039] It should be noted that after the cable insulation coating is completed, the water pump 85 is started to make the condensing water in the refrigeration water tank 83 circulate in the condensing pipe 84. Then, as the cable passes through the protective shell 82, the condensing pipe 84 cools and condenses the insulation material on the cable, so that the material quickly condenses, improving the molding efficiency. After condensation, the water pump 85 is turned off. In summary, the water pump 85 continuously extracts and sends out condensing water, so that the condensing water in the refrigeration water tank 83 can circulate in the condensing pipe 84, thereby quickly condensing the insulation material on the cable when it passes through the protective shell 82, improving the molding efficiency of the insulation material.
[0040] As shown in Figure 1 And Figure 5 As shown in the figure, it also includes collecting mechanism 9, which includes mounting frame 91, storage tank 92, sliding plate 93, sliding frame 94, sliding bracket 95 and closing plate 96. The mounting frame 91 is connected to the left side of the inner bottom of the shell 2. The storage tank 92 is slidably connected to the mounting frame 91 for collecting the scraped material. The two sliding plates 93 are symmetrically connected to the top of the mounting frame 91 for dustproof closing. The sliding frames 94 are connected to the left and right sides of the sliding plates 93. The closing plates 96 are connected to the top of the sliding plates 93 for blocking the gap. The sliding brackets 95 are slidably connected to the sliding frames 94 on the right side. The sliding brackets 95 are connected to the right side of the scraper 77.
[0041] It should be noted that after the scraping plate 77 and the discharging frame 78 scrape the insulating material on the cable, the scraped material will be guided into the storage box 92 through the discharging frame 78. When the cable insulation processing is completed, the scraping plate 77 moves upward, driving the sliding frame 95 to move upward, so that the right sliding frame 94 drives the sliding plate 93 to slide to the side close to each other, and then the closing plates 96 close to each other, realizing the closing effect of the top of the storage box 92, avoiding dust falling into the storage box 92 and affecting the quality of the material. Finally, the operator can pull out the storage box 92 to recycle the material inside. In summary, the scraped material is collected by the storage box 92, and the sliding frame 95 drives the sliding frame 94 to make the sliding plate 93 drive the closing plate 96 to close, so as to close and protect the storage box 92, realize dustproof treatment, and avoid dust affecting the quality of the recycled material.
[0042] As Figure 1 , Figure 6 and Figure 7 It also includes a trimming mechanism 10, which includes a second pulley assembly 101, a connecting plate 102, a second gear 103, a gear ring holder 104, a mounting bracket 105, a sliding rod 106, a blade 107, and a spring 108. The right side of the housing 2 is connected with a left-right symmetrical connecting plate 102, and the lower part of the connecting plate 102 is rotatably connected with a second gear 103. The left side of the second gear 103 is connected with a second pulley assembly 101 for driving the second gear 103 to rotate automatically. The bottom right side of the housing 2 is connected with a mounting bracket 105 through a bolt, and the top of the mounting bracket 105 is rotatably connected with a gear ring holder 104 that is meshed with the second gear 103. Four sliding rods 106 are uniformly connected with the gear ring holder 104, and the sliding rods 106 are connected with blades 107 for trimming the burrs on the surface of the cable. The blades 107 are connected with springs 108 that are wound around adjacent sliding rods 106.
[0043] It should be noted that after the cable processing is completed, the cable surface may have burrs affecting the appearance, as the cable continuously moves to the right, the cable will move between the inner side of the blade 107, at this time, as the driving assembly 5 continuously operates, it will drive the second belt pulley assembly 101 to rotate, so that the second gear 103 drives the gear ring frame 104 to continuously rotate, and then the sliding rod 106 drives the blade 107 to rotate, and the burrs on the surface of the cable are removed and trimmed. It should be particularly noted that when the burrs on the cable are trimmed, the springs 108 will buffer the adjacent blades 107 to avoid hard contact between the blades 107 and the cable, which may damage the material on the surface of the cable. As described above, the driving assembly 5 drives the second gear 103 to rotate, so that the gear ring frame 104 drives the blade 107 to continuously rotate, and then the burrs on the surface of the cable are removed and trimmed to improve the appearance after the cable processing is completed.
[0044] As shown in Figure 1 and Figure 8 Further include a guide mechanism 11, the guide mechanism 11 includes a fixed frame 111, wire wheel 112 and guide frame 113, the left side of the shell 2 is connected with the fixed frame 111 by bolts, the left side of the shell 2 is connected with the guide frame 113 by bolts, the guide frame 113 is located on the upper side of the fixed frame 111, the fixed frame 111 is rotatably connected with the wire wheel 112, the guide frame 113 is rotatably connected with the wire wheel 112, and the wire wheel 112 can guide the cable entering the shell 2.
[0045] It should be noted that when the cable enters the shell 2 for processing, the wire wheel 112 clamps the cable to guide the cable during the cable conveying process, thereby improving the stability of the cable conveying process.
[0046] As shown in Figure 2 and Figure 9 Further include a stirring mechanism 12, the stirring mechanism 12 includes a stirring frame 121 and a screw rod 122, the extrusion assembly 32 is connected with the stirring frame 121 at the bottom for stirring the material, the stirring frame 121 is connected with the screw rod 122 at the bottom for conveying the material, and the screw rod 122 is located inside the discharge pipe 31.
[0047] It should be noted that when the material enters the discharge pipe 31 from the molten material bucket 3, as the extrusion assembly 32 is driven by the driving assembly 5 to rotate, the stirring frame 121 will continuously stir the material in the molten material bucket 3, further preventing the material from condensing, and at the same time, when the material enters the discharge pipe 31, the stirring frame 121 drives the screw rod 122 to rotate, so that the material can be discharged smoothly.
[0048] The embodiments of the present application are described in detail above with reference to the accompanying drawings, but the present application is not limited to the above-described embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the spirit of the present application.
Claims
1. An insulating adhesive extrusion device based on cable processing, comprising a base (1), a shell (2), a melt barrel (3), a discharge pipe (31), an extrusion assembly (32), a heating assembly (4), a drive assembly (5), a winding assembly (6) and a scraping mechanism (7), wherein the base (1) is provided with a shell (2) on the top, a melt barrel (3) is provided on the left side of the top inside the shell (2), a discharge pipe (31) is provided on the bottom of the melt barrel (3), an extrusion assembly (32) is provided in the melt barrel (3), a heating assembly (4) is provided on the melt barrel (3), a drive assembly (5) is provided between the extrusion assembly (32) and the shell (2), a winding assembly (6) is provided on the right side inside the shell (2), and a scraping mechanism (7) is provided on the shell (2), characterized in that: The scraping mechanism (7) includes a sliding member (71), a rotating shaft (72), a connecting frame (73), a first pulley assembly (74), a first gear (75), a rack frame (76), a scraper (77) and a blanking frame (78). The upper portion of the housing (2) is provided with a sliding member (71) in a sliding manner, the bottom of the sliding member (71) is provided with a rotating shaft (72) in a rotatable manner, and a connecting frame (73) is provided on the left side of the lower portion of the sliding member (71). The connecting frame (73) is rotatably connected to the rotating shaft (72). The rotating shaft (7 2) A first pulley assembly (74) is provided between the drive assembly (5), the pulley on the lower side of the first pulley assembly (74) is slidably connected to the rotating shaft (72), a first gear (75) is provided on the left side of the rotating shaft (72), a rack frame (76) meshing with the first gear (75) is slidably provided on the connecting frame (73), a scraper (77) is provided at the bottom of the rack frame (76), and a blanking frame (78) is provided on the left side of the rear side of the housing (2) near the molten material barrel (3); The collecting mechanism (9) further comprises a mounting frame (91), a storage box (92), a sliding plate (93), a sliding frame (94), a sliding rack (95) and a closing plate (96). The housing (2) is provided with a mounting frame (91) on the left side of the bottom, the mounting frame (91) is provided with a storage box (92) in a sliding manner, the mounting frame (91) is provided with two sliding plates (93) symmetrical in front and back in a sliding manner on the top, the sliding plates (93) are provided with sliding frames (94) on both left and right sides, the sliding plates (93) are provided with closing plates (96) on the top, the sliding frames (94) on the right side are provided with sliding racks (95), and the sliding racks (95) are connected to the upper right side of the scraper (77); The invention also includes a trimming mechanism (10), which includes a second pulley assembly (101), a connecting plate (102), a second gear (103), a gear ring frame (104), a mounting frame (105), a sliding rod (106), a blade (107) and a spring (108). A left-right symmetrical connecting plate (102) is provided on the upper right side of the housing (2), and a second gear (103) is rotatably provided between the lower parts of the connecting plate (102). The left side of the second gear (103) is connected to the drive shaft. A second pulley assembly (101) is provided between the motors, a mounting frame (105) is provided on the right side of the bottom of the housing (2), a gear ring frame (104) meshing with the second gear (103) is rotatably provided on the top of the mounting frame (105), four sliding rods (106) are evenly slidably provided on the gear ring frame (104), blades (107) are provided on the sides of the sliding rods (106) close to each other, and springs (108) are provided between the blades (107) and the gear ring frame (104).
2. The insulating adhesive extrusion device based on cable processing according to claim 1 is characterized in that: The invention also includes a condensing mechanism (8), which includes a support rod (81), a protective shell (82), a refrigeration water tank (83), a condensing pipe (84) and a water pump (85). The support rod (81) is provided at the middle of the bottom of the outer shell (2), and the protective shell (82) is provided on the top of the support rod (81). Two symmetrical refrigeration water tanks (83) are provided at the bottom of the outer shell (2). A condensing pipe (84) is provided between the tops of the refrigeration water tanks (83). A water pump (85) is provided at the middle position of the bottom of the outer shell (2), and the water pump (85) is connected and communicated with the refrigeration water tank (83) through a water pipe.
3. The insulating adhesive extrusion device based on cable processing according to claim 1 is characterized in that: The invention also includes a guide mechanism (11), the guide mechanism (11) including a fixed frame (111), a guide wheel (112) and a guide frame (113), the fixed frame (111) being provided on the left side of the housing (2), the guide frame (113) being provided on the left side of the housing (2), the guide frame (113) being located on the upper side of the fixed frame (111), the guide wheel (112) being rotatably provided on the fixed frame (111), and the guide wheel (112) being slidably and rotatably provided on the guide frame (113).
4. The insulating adhesive extrusion device based on cable processing according to claim 3 is characterized in that: The extrusion assembly (32) further comprises a stirring mechanism (12), wherein the stirring mechanism (12) comprises a stirring frame (121) and a spiral rod (122). The stirring frame (121) is provided at the bottom of the extrusion assembly (32), and the spiral rod (122) is provided at the bottom of the stirring frame (121).
5. The insulating adhesive extrusion device based on cable processing according to claim 1, characterized in that: The extrusion assembly (32) includes a screw and an extrusion plate. The screw is rotatably provided on the melt barrel (3). The top of the screw passes through the housing (2). The extrusion plate is threadedly provided on the screw. The extrusion plate is slidably connected to the melt barrel (3).
6. The insulating adhesive extrusion device based on cable processing according to claim 1, characterized in that: The heating assembly (4) comprises a heating frame and a heating ring. The heating frame is provided on the melt barrel (3). The heating ring is provided between the heating frame and the melt barrel (3). The heating ring surrounds the melt barrel (3).
7. The insulating adhesive extrusion device based on cable processing according to claim 1, characterized in that: The driving assembly (5) includes a dual-axis motor and a bevel gear. The dual-axis motor is provided on the upper right side of the housing (2). The output shafts of the dual-axis motor are arranged in a left-right direction. The left output shaft of the dual-axis motor and the top of the extrusion assembly (32) are both provided with mutually cored bevel gears.
8. The insulating adhesive extrusion device based on cable processing according to claim 1, characterized in that: The winding assembly (6) includes a servo motor, a fixed plate and a winding wheel. The servo motor is arranged on the right side of the housing (2). The fixed plate is arranged on the right side of the housing (2). The winding wheel is rotatably arranged on the top of the fixed plate. The winding wheel is connected to the output shaft of the servo motor.
Citation Information
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