A soft-coating production line

By setting up a soft-coating production line with rolling, lubrication, and cooling components, the problem of short lifespan due to high roll load was solved, and automatic conveying and rolling of aluminum rods were achieved, ensuring the smooth progress of the aluminum foil coating process.

CN120094972BActive Publication Date: 2025-12-05CHANGZHOU AIBANG MASCH TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202510255128.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2025-12-05
Estimated Expiration
2045-03-05

AI Technical Summary

Technical Problem

In the existing technology, when aluminum rods are directly rolled into aluminum foil using two rolls, the load on the rolls is relatively large, which affects their service life.

Method used

The soft-packing production line, which includes rolling and lubrication components, rolls aluminum bars through a rolling space that gradually decreases through several sets of rolling rolls. Lubrication is carried out during the rolling process. The rolling rolls are rotated by a drive motor and the lubrication components provide automatic lubrication. The aluminum foil is cooled by a cooling component.

Benefits of technology

It effectively extends the service life of the rolls, realizes automatic feeding and rolling of aluminum rods, and ensures the smooth progress of the aluminum foil coating process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120094972B_ABST
    Figure CN120094972B_ABST
Patent Text Reader

Abstract

The application relates to the technical field of soft coating, and discloses a soft coating production line, which comprises a coating assembly, the coating assembly comprises a coating platform, the upper surface of the coating platform is sequentially fixed with a first mounting frame, a second mounting frame, a guide block and a coating seat from left to right, a rolling assembly is arranged and used for rolling an aluminum bar into an aluminum foil, the rolling assembly comprises a rolling platform, the end of the rolling platform is fixedly connected with the end of the coating platform, and the rolling assembly comprises a rolling frame fixedly arranged on the upper surface of the rolling platform. Through the arrangement of the rolling assembly, the aluminum bar passes through the inside of the rolling frame before coating, and gradually rolls under the action of gradually smaller rolling spaces formed by a plurality of groups of rollers, so that the aluminum bar is gradually rolled into an aluminum foil, thereby facilitating the rolling of the aluminum bar in the coating production line, effectively guaranteeing the service life of the roller, and achieving the purpose of automatically conveying and rolling the aluminum bar.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of flexible coating technology, and in particular to a flexible coating production line. Background Technology

[0002] Aluminum sheathing of a cable refers to adding an aluminum protective layer to the outer layer of the cable. Its main function is to prevent damage to the cable from the external environment, including protection against water and moisture erosion, chemical corrosion, mechanical damage, and external electromagnetic interference.

[0003] When covering the cable core with an aluminum sheath, the material of the cable aluminum sheath is usually pure aluminum or aluminum alloy. In the manufacturing process, the aluminum wire is first heated to an appropriate temperature, and then rolled into aluminum foil of the required thickness through a rolling process. Then, the aluminum foil is wrapped onto the surface of the cable core by a wrapping machine. In the rolling process, the aluminum wire is rolled into aluminum foil of the specified thickness by two rolls. However, directly rolling the aluminum rod into aluminum foil by just two rolls puts a large load on the rolls, which affects the service life of the rolls.

[0004] Therefore, the present invention provides a flexible coating production line. Summary of the Invention

[0005] In order to overcome the shortcomings of the prior art, at least one technical problem raised in the background art is solved.

[0006] This invention provides a flexible coating production line, comprising:

[0007] A coating assembly includes a coating platform. From left to right, a first mounting frame, a second mounting frame, a guide block, and a coating seat are fixedly mounted on the upper surface of the coating platform. The inner wall of the first mounting frame is rotatably provided with two guide rollers for guiding aluminum foil sheets. The inner wall of the second mounting frame is rotatably provided with a guide pulley for guiding cable core wires. The surface of the guide block is provided with a guide hole, and the surface of the coating seat is provided with a mounting hole penetrating the coating seat. The inner wall of the mounting hole is provided with a coating mold.

[0008] A rolling assembly for rolling aluminum rods into aluminum foil, the rolling assembly including a rolling platform, the end of the rolling platform being fixedly connected to the end of a covering platform, the rolling assembly including a rolling frame fixed on the upper surface of the rolling platform, and a plurality of rolls rotatably disposed on the inner wall of the rolling frame, each pair of rolls forming a group, the plurality of groups of rolls being equidistantly disposed from left to right inside the rolling frame, and the middle of the two rolls in each group forming a rolling space for rolling the aluminum rod, the rolling spaces corresponding to the plurality of groups of rolls decreasing sequentially from left to right, the rolling assembly also including a drive motor fixed on the front side of the rolling frame for driving the two rolls in each group to rotate in opposite directions.

[0009] Preferably, the two ends of the roll are fixedly provided with connecting shafts that pass through the roll, the output end of the drive motor extends into the inside of the roll frame and is fixedly connected to the end of one of the connecting shafts, the other end of the connecting shaft on each set of rolls extends to the back of the roll frame, and the other end of the connecting shaft on each set of rolls is fixedly provided with a first toothed disc that meshes with each other.

[0010] By adopting the above technical solution, the rotation of one connecting shaft can drive two connecting shafts in a set to rotate in opposite directions under the action of two first gear discs, thereby driving two rollers in a set to rotate in opposite directions, achieving the purpose of conveying aluminum rods, and facilitating the rolling of aluminum rods.

[0011] Preferably, the back of the rolling frame is provided with several rotating shafts equidistantly located between two adjacent sets of rolling frames, and the ends of the several rotating shafts are all fixed with second toothed discs. The surface of the upper connecting shaft in each set of rolling frames is fixed with a third toothed disc, and the second toothed discs mesh with two adjacent third toothed discs respectively.

[0012] By adopting the above technical solution, when one of the connecting shafts in a group rotates, it can drive the third toothed disc to rotate. The rotation of the third toothed disc drives the second toothed disc to rotate, and the rotation of the second toothed disc drives the two connecting shafts in the two adjacent groups to rotate. Thus, the rotation of the drive motor can drive several groups of rollers to rotate simultaneously, thereby achieving the purpose of gradually rolling aluminum rods into shape.

[0013] Preferably, the back of the rolling frame is provided with a lubrication assembly for lubricating the first toothed disc, the second toothed disc and the third toothed disc. The lubrication assembly includes a sealed protective box fixed on the back of the rolling frame for protecting the first toothed disc, the second toothed disc and the third toothed disc, and a rectangular box fixed on the side of the sealed protective box. The bottom of the sealed protective box is filled with an appropriate amount of lubricating oil.

[0014] By adopting the above technical solution, the first, second, and third gear discs can be effectively lubricated by the lubricating oil inside the sealed protective box.

[0015] Preferably, the lubrication assembly further includes lubrication pipes fixed to the inner walls of both sides of the sealed protective box, and a plurality of atomizing nozzles are equidistantly arranged on the lower surface of the lubrication pipes. A rectangular sliding plate and a sealing piston plate are slidably arranged on the inner wall of the rectangular box, and a fixing rod is fixedly provided on the lower surface of the rectangular sliding plate. The upper surface of the sealing piston plate is fixedly connected to the end of the fixing rod away from the rectangular sliding plate.

[0016] By adopting the above technical solution, the vertical movement of the rectangular sliding plate can drive the sealing piston plate to move up and down, thereby delivering the lubricating oil in the sealing protection box to the lubrication pipe and spraying it out through the atomizing nozzle for lubrication.

[0017] Preferably, a connecting post is fixedly provided at one end of the connecting shaft, and a horizontal shaft extending into the sealed protective box and corresponding to the connecting post is rotatably provided on the inner side wall of the rectangular box. One end of the horizontal shaft and the end of the connecting post are both fixedly provided with a first bevel gear that meshes with each other. Rotating holes are provided on the inner walls of both the rectangular box and the sealed protective box, and the outer surface of the horizontal shaft is rotatably connected to the inner wall of the rotating hole through a sealed bearing.

[0018] By adopting the above technical solution, the rotation of a connecting shaft can drive the connecting column to rotate, and the rotation of the connecting column can drive the horizontal shaft to rotate under the action of two first bevel gears.

[0019] Preferably, the inner top wall of the rectangular box is rotatably provided with a vertical reciprocating screw, and the bottom end of the vertical reciprocating screw and the other end of the horizontal shaft are both fixed with a second bevel gear that meshes with each other. The upper surface of the rectangular slide plate is provided with a threaded hole that is threadedly connected to the outer surface of the vertical reciprocating screw.

[0020] By adopting the above technical solution, during the rotation of the horizontal axis, the vertical reciprocating screw can be driven to rotate under the action of the two second bevel gears. The rotation of the vertical reciprocating screw drives the rectangular slide plate to move up and down automatically.

[0021] Preferably, the lower surface of the rectangular box is provided with an oil suction pipe and an oil delivery pipe, and one end of the oil suction pipe extends to the inner bottom of the rectangular box, the other end of the oil suction pipe extends to the inner bottom of the sealed protective box and is fixed with a filter cover, and the surface of the oil suction pipe is provided with an oil suction one-way valve. One end of the oil delivery pipe extends to the inner bottom of the rectangular box, the other end of the oil delivery pipe extends to the inner top of the sealed protective box and communicates with the lubrication pipe, and the surface of the oil delivery pipe is provided with an oil delivery one-way valve.

[0022] By adopting the above technical solution, during the upward movement of the sealing piston plate, the lubricating oil in the sealing protection box can be drawn into the rectangular box through the oil suction pipe. At the same time, during the downward movement of the sealing piston plate, the lubricating oil drawn into the rectangular box can be transported to the lubrication pipe through the oil delivery pipe. The oil suction check valve and the oil delivery check valve are designed so that the oil suction pipe can only draw in lubricating oil in one direction and the oil delivery pipe can only deliver lubricating oil in one direction.

[0023] Preferably, the upper surface of the rolling platform is provided with a cooling assembly for cooling the rolled aluminum foil. The cooling assembly includes a cooling water tank fixed on the upper surface of the rolling platform, and a connecting roller is rotatably provided on the inner wall of the cooling water tank. The outer surfaces of the two guide rollers are covered with absorbent cotton cloth for drying the aluminum foil cooled by the cooling water tank.

[0024] By adopting the above technical solution, after the aluminum rod is rolled, the rolled aluminum foil can pass through the bottom of the connecting roller, thereby effectively cooling the rolled aluminum foil under the action of cooling water in the cooling water tank.

[0025] The beneficial effects of this invention are as follows:

[0026] The soft coating production line of this invention, by setting up a rolling assembly, allows aluminum rods to pass through the inside of the rolling frame before coating. Under the action of the gradually decreasing rolling space composed of several sets of rolling rollers, the aluminum rods are gradually rolled, so that the aluminum rods gradually form aluminum foil. This facilitates the rolling of aluminum rods in the coating production line, effectively ensuring the service life of the rolling rollers, and can achieve the purpose of automatically conveying and rolling aluminum rods.

[0027] The present invention discloses a soft coating production line. By setting a coating component, when coating a cable, the cable can enter the guide hole on the guide block through the guide pulley and then enter the coating mold in the coating seat. At the same time, the rolled aluminum foil enters the guide hole through the guide roller and then enters the coating mold, thereby realizing the automatic coating of the cable.

[0028] The soft-coating production line of this invention, by setting up a lubrication component, enables the rotation of the drive motor to drive the vertical reciprocating screw to rotate during the process of the aluminum rod entering the rolling space, thereby causing the sealing piston plate to move up and down reciprocally. During the upward movement of the sealing piston plate, the lubricating oil at the bottom of the sealing protective box can be sucked into the rectangular box through the oil suction pipe. When the sealing piston plate moves downward, the lubricating oil sucked into the rectangular box can be pressed into the lubrication pipe through the oil delivery pipe, and sprayed out through the atomizing nozzle to lubricate the first toothed disc, the second toothed disc and the third toothed disc, thereby achieving the purpose of lubrication during the rolling and conveying of the aluminum rod. Attached Figure Description

[0029] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0030] Figure 2 This is a top view of the structure of the present invention;

[0031] Figure 3 This is a schematic diagram of the cross-sectional structure of the roll frame of the present invention;

[0032] Figure 4 This is a schematic diagram of the rear view structure of the present invention;

[0033] Figure 5 This is a schematic diagram of the back structure of the rolling frame of the present invention;

[0034] Figure 6 This is the present invention. Figure 5 Second-view structural diagram;

[0035] Figure 7 This is a schematic cross-sectional view of the sealed protective box of the present invention;

[0036] Figure 8 This is the present invention. Figure 7 Enlarged structural diagram at point A in the middle;

[0037] Figure 9 This is the present invention. Figure 7 Enlarged structural diagram at point B.

[0038] Explanation of reference numerals in the attached figures:

[0039] 100. Covering component; 101. Covering platform; 102. First mounting frame; 103. Second mounting frame; 104. Guide block; 105. Covering seat; 106. Guide roller; 107. Guide pulley; 108. Guide hole; 109. Covering mold;

[0040] 200. Rolling assembly; 201. Rolling platform; 202. Rolling frame; 203. Roll; 204. Rolling space; 205. Third gear disc; 206. Drive motor; 207. Connecting shaft; 208. First gear disc; 209. Second gear disc;

[0041] 300. Lubrication assembly; 301. Sealed protective box; 302. Rectangular box; 303. Lubrication pipe; 304. Atomizing nozzle; 305. Rectangular slide plate; 306. Sealing piston plate; 307. Fixing rod; 308. Connecting column; 309. Horizontal shaft; 3010. First bevel gear; 3011. Vertical reciprocating screw; 3012. Second bevel gear; 3013. Oil suction pipe; 3014. Oil delivery pipe; 3015. Filter cover; 3016. Oil suction check valve; 3017. Oil delivery check valve;

[0042] 400. Cooling assembly; 401. Cooling water tank; 402. Connecting roller. Detailed Implementation

[0043] The subject matter described herein will now be discussed with reference to exemplary embodiments. It should be understood that these embodiments are discussed only to enable those skilled in the art to better understand and implement the subject matter described herein, and changes may be made to the function and arrangement of the elements discussed without departing from the scope of this specification. Various processes or components may be omitted, substituted, or added as needed in the examples. Furthermore, features described in some examples may be combined in other examples. Example

[0044] The technical solution of the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. Please refer to the accompanying drawings. Figures 1 to 9 Please refer to the flexible coating production line provided in this application. Figure 2 , Figure 3 , Figure 6 The system includes: a coating assembly 100, which includes a coating platform 101. From left to right, the upper surface of the coating platform 101 is fixed with a first mounting frame 102, a second mounting frame 103, a guide block 104, and a coating seat 105. The inner wall of the first mounting frame 102 is rotatably equipped with two guide rollers 106 for guiding aluminum foil sheets. The inner wall of the second mounting frame 103 is rotatably equipped with a guide pulley 107 for guiding cable core wires. The surface of the guide block 104 has a guide hole 108, and the surface of the coating seat 105 has a through mounting hole, with a coating mold 109 disposed on the inner wall of the mounting hole; and a rolling assembly 200 for rolling aluminum rods into aluminum foil. The assembly 200 includes a rolling platform 201, the end of which is fixedly connected to the end of the covering platform 101. The rolling assembly 200 includes a rolling frame 202 fixed on the upper surface of the rolling platform 201, and a plurality of rolls 203 rotatably disposed on the inner wall of the rolling frame 202. Each pair of rolls 203 forms a group, and the plurality of groups of rolls 203 are equidistantly disposed inside the rolling frame 202 from left to right. A rolling space 204 for rolling aluminum bars is formed between the two rolls 203 in each group. The rolling spaces 204 corresponding to the plurality of groups of rolls 203 decrease in size from left to right. The rolling assembly 200 also includes a drive motor 206 fixed on the front side of the rolling frame 202 for driving the two rolls 203 in each group to rotate in opposite directions.

[0045] Specifically, before the cable is wrapped, the aluminum rod can be gradually rolled by the gradually decreasing rolling space 204 formed by several sets of rollers 203 in the rolling frame 202, which facilitates the rolling of the aluminum rod in the wrapping production line and effectively ensures the service life of the rollers 203. At the same time, by setting the wrapping component 100, when the cable is wrapped, the cable can enter the guide hole 108 on the guide block 104 through the guide pulley 107 and enter the wrapping mold 109 in the wrapping seat 105. Meanwhile, the rolled aluminum foil enters the guide hole 108 and the wrapping mold 109 through the guide roller 106, thereby realizing the automatic wrapping of the cable.

[0046] Please refer to this carefully. Figure 5 and Figure 6 Both ends of the roll 203 are fixed with connecting shafts 207 that pass through the roll 203. The output end of the drive motor 206 extends into the inside of the roll frame 202 and is fixedly connected to the end of a connecting shaft 207. The other end of the connecting shaft 207 on each set of rolls 203 extends to the back of the roll frame 202, and the other end of the connecting shaft 207 on each set of rolls 203 is fixed with a first toothed disc 208 that meshes with each other.

[0047] Specifically, the rotation of a connecting shaft 207 can drive two connecting shafts 207 in a set to rotate in opposite directions under the action of two first gear discs 208, thereby driving two rollers 203 in a set to rotate in opposite directions, achieving the purpose of conveying aluminum rods and facilitating the rolling of aluminum rods.

[0048] Please refer to this carefully. Figure 5 and Figure 6 The back of the rolling frame 202 is equidistantly provided with several rotating shafts in the middle of two adjacent sets of rolling frames 203, and the ends of the several rotating shafts are all fixed with second toothed discs 209. The surface of the upper connecting shaft 207 in each set of rolling frames 203 is fixed with a third toothed disc 205, and the second toothed disc 209 meshes with the two adjacent third toothed discs 205 respectively.

[0049] Specifically, when one of the connecting shafts 207 in a group rotates, it drives the third gear disk 205 to rotate. The rotation of the third gear disk 205 drives the second gear disk 209 to rotate. The rotation of the second gear disk 209 drives the two connecting shafts 207 in the two adjacent groups to rotate. Thus, the rotation of the drive motor 206 drives several groups of rollers 203 to rotate simultaneously, thereby achieving the purpose of gradually rolling and forming aluminum rods.

[0050] In this invention, by setting up a rolling assembly 200, the aluminum rod first passes through the interior of the rolling frame 202 before coating. Under the action of the gradually decreasing rolling space 204 composed of several sets of rolling rollers 203, the aluminum rod is gradually rolled, so that the aluminum rod gradually forms aluminum foil. This facilitates the rolling of the aluminum rod in the coating production line and effectively ensures the service life of the rolling rollers 203. Moreover, during the process of the aluminum rod entering the rolling space 204, the rotation of the drive motor 206 can drive the rotation of a connecting shaft 207. The rotation of the connecting shaft 207, under the action of the two first toothed discs 208, drives the two connecting shafts 207 in each group to rotate in opposite directions, thereby driving the two rolling rollers 203 in each group to rotate in opposite directions. Simultaneously, the rotation of the connecting shaft 207 drives the third gear disk 205 to rotate. The rotation of the third gear disk 205, under the action of the second gear disk 209, drives the adjacent third gear disk 205 and the connecting shaft 207 to rotate, thereby driving the steel roller group 203 to rotate simultaneously, thus achieving the purpose of automatically conveying and rolling the aluminum rod. At the same time, by setting the covering component 100, when the cable is covered, the cable can enter the guide hole 108 on the guide block 104 through the guide pulley 107 and enter the covering mold 109 in the covering seat 105. Meanwhile, the rolled aluminum foil enters the guide hole 108 through the guide roller 106 and enters the covering mold 109, thereby realizing the automatic covering of the cable.

[0051] Please refer to this carefully. Figure 7 , Figure 8 , Figure 9 The back of the roll frame 202 is provided with a lubrication assembly 300 for lubricating the first toothed disc 208, the second toothed disc 209 and the third toothed disc 205. The lubrication assembly 300 includes a sealed protective box 301 fixed on the back of the roll frame 202 for protecting the first toothed disc 208, the second toothed disc 209 and the third toothed disc 205, and a rectangular box 302 fixed on the side of the sealed protective box 301. The bottom of the sealed protective box 301 is filled with an appropriate amount of lubricating oil.

[0052] Specifically, the first gear 208, the second gear 209, and the third gear 205 can be effectively lubricated by the lubricating oil inside the sealed protective box 301.

[0053] Please refer to this carefully. Figure 8 and Figure 9 The lubrication assembly 300 also includes lubrication pipes 303 fixed to the inner walls of both sides of the sealed protective box 301, and a number of atomizing nozzles 304 are equidistantly arranged on the lower surface of the lubrication pipes 303. A rectangular sliding plate 305 and a sealing piston plate 306 are slidably arranged on the inner wall of the rectangular box 302, and a fixing rod 307 is fixedly arranged on the lower surface of the rectangular sliding plate 305. The end of the fixing rod 307 away from the rectangular sliding plate 305 is fixedly connected to the upper surface of the sealing piston plate 306.

[0054] Specifically, the rectangular sliding plate 305 can move the sealing piston plate 306 up and down, thereby delivering the lubricating oil in the sealing protection box 301 to the lubrication pipe 303, and spraying it out through the atomizing nozzle 304 for lubrication.

[0055] Please refer to this carefully. Figure 8 and Figure 9 A connecting shaft 207 has a connecting post 308 fixed at its end, and a horizontal shaft 309 extending into the sealed protective box 301 and corresponding to the connecting post 308 is rotatably provided on the inner side wall of the rectangular box 302. One end of the horizontal shaft 309 and the end of the connecting post 308 are both fixed with a first bevel gear 3010 that meshes with each other. The inner walls of the rectangular box 302 and the sealed protective box 301 are both provided with rotating holes, and the outer surface of the horizontal shaft 309 is rotatably connected to the inner wall of the rotating hole through a sealed bearing.

[0056] Specifically, the rotation of a connecting shaft 207 can drive the connecting column 308 to rotate, and the rotation of the connecting column 308, under the action of two first bevel gears 3010, drives the horizontal shaft 309 to rotate.

[0057] Please refer to this carefully. Figure 8 The inner top wall of the rectangular box 302 is rotatably provided with a vertical reciprocating screw 3011, and the bottom end of the vertical reciprocating screw 3011 and the other end of the horizontal shaft 309 are both fixed with a second bevel gear 3012 that meshes with each other. The upper surface of the rectangular slide plate 305 is provided with a threaded hole that is threadedly connected to the outer surface of the vertical reciprocating screw 3011.

[0058] Specifically, during the rotation of the horizontal axis 309, the vertical reciprocating screw 3011 is driven to rotate under the action of the two second bevel gears 3012. The rotation of the vertical reciprocating screw 3011 drives the rectangular slide plate 305 to move up and down automatically.

[0059] Please refer to this carefully. Figure 9 The lower surface of the rectangular box 302 is provided with an oil suction pipe 3013 and an oil delivery pipe 3014. One end of the oil suction pipe 3013 extends to the inner bottom of the rectangular box 302, and the other end of the oil suction pipe 3013 extends to the inner bottom of the sealed protective box 301 and is fixed with a filter cover 3015. An oil suction one-way valve 3016 is provided on the surface of the oil suction pipe 3013. One end of the oil delivery pipe 3014 extends to the inner bottom of the rectangular box 302, and the other end of the oil delivery pipe 3014 extends to the inner top of the sealed protective box 301 and is connected to the lubrication pipe 303. An oil delivery one-way valve 3017 is provided on the surface of the oil delivery pipe 3014.

[0060] Specifically, during the upward movement of the sealing piston plate 306, the lubricating oil in the sealing protection box 301 is drawn into the rectangular box 302 through the oil suction pipe 3013. At the same time, during the downward movement of the sealing piston plate 306, the lubricating oil drawn into the rectangular box 302 is delivered to the lubrication pipe 303 through the oil delivery pipe 3014. The oil suction check valve 3016 and the oil delivery check valve 3017 are configured so that the oil suction pipe 3013 can only draw in lubricating oil in one direction, and the oil delivery pipe 3014 can only deliver lubricating oil in one direction.

[0061] In this invention, by setting up a lubrication assembly 300, during the process of the aluminum rod entering the rolling space 204, the rotation of the drive motor 206 can drive a connecting shaft 207 to rotate. The rotation of the connecting shaft 207 drives the connecting column 308 to rotate. The rotation of the connecting column 308, under the action of two first bevel gears 3010, drives the horizontal shaft 309 to rotate. The rotation of the horizontal shaft 309, under the action of two second bevel gears 3012, drives the vertical reciprocating screw 3011 to rotate. The rotation of the vertical reciprocating screw 3011 drives the rectangular slide plate 305 to move up and down reciprocally. The up and down movement of the rectangular slide plate 305... The reciprocating motion is driven by the fixed rod 307 to move the sealing piston plate 306 up and down. During the upward movement of the sealing piston plate 306, the lubricating oil at the bottom of the sealing protection box 301 can be drawn into the rectangular box 302 through the oil suction pipe 3013. When the sealing piston plate 306 moves downward, the lubricating oil drawn into the rectangular box 302 can be pressed into the lubrication pipe 303 through the oil delivery pipe 3014, and sprayed out through the atomizing nozzle 304 to lubricate the first toothed disc 208, the second toothed disc 209 and the third toothed disc 205, thereby achieving the purpose of lubrication during the rolling and conveying of aluminum rods.

[0062] Please refer to this carefully. Figure 2 A cooling assembly 400 is provided on the upper surface of the rolling platform 201 for cooling the rolled aluminum foil. The cooling assembly 400 includes a cooling water tank 401 fixed on the upper surface of the rolling platform 201, and a connecting roller 402 is rotatably provided on the inner wall of the cooling water tank 401. The outer surfaces of the two guide rollers 106 are covered with absorbent cotton cloth for drying the aluminum foil cooled by the cooling water tank 401.

[0063] Specifically, after the aluminum rod is rolled, the rolled aluminum foil passes through the bottom of the connecting roller 402, so that the rolled aluminum foil can be effectively cooled by the cooling water in the cooling water tank 401. Moreover, the cooled aluminum foil can be dried by the water-absorbing cotton cloth on the guide roller 106, ensuring the dryness of the aluminum foil surface during wrapping.

[0064] Working principle: Before coating, the aluminum rod is heated in a furnace and then enters the roll frame 202. Under the action of a gradually decreasing roll space 204 composed of several sets of rolls 203, the aluminum rod is gradually rolled, forming aluminum foil. This facilitates rolling the aluminum rod in the coating production line and effectively ensures the service life of the rolls 203. Furthermore, during the process of the aluminum rod entering the roll space 204, the rotation of the drive motor 206 drives a connecting shaft 207 to rotate. The rotation of the connecting shaft 207, under the action of two first gear discs 208, drives two connecting shafts 207 in each set to rotate in opposite directions, thereby driving two rolls 203 in each set to rotate in opposite directions. The rotation of the connecting shaft 207 drives the third gear disk 205 to rotate. The rotation of the third gear disk 205, under the action of the second gear disk 209, drives the adjacent third gear disk 205 and the connecting shaft 207 to rotate, thereby driving the steel roller 203 to rotate simultaneously, thus achieving the purpose of automatically conveying and rolling the aluminum rod. At the same time, by setting the covering component 100, when the cable is covered, the cable can enter the guide hole 108 on the guide block 104 through the guide pulley 107 and enter the covering mold 109 in the covering seat 105. Meanwhile, the rolled aluminum foil enters the guide hole 108 through the guide roller 106 and enters the covering mold 109, thereby realizing the automatic covering of the cable. Furthermore, during the process of the aluminum rod entering the rolling space 204, the rotation of the drive motor 206 can drive the rotation of a connecting shaft 207. The rotation of the connecting shaft 207 drives the rotation of the connecting column 308. The rotation of the connecting column 308, under the action of the two first bevel gears 3010, drives the horizontal shaft 309 to rotate. The rotation of the horizontal shaft 309, under the action of the two second bevel gears 3012, drives the vertical reciprocating screw 3011 to rotate. The rotation of the vertical reciprocating screw 3011 drives the rectangular slide plate 305 to move up and down reciprocally. The up and down reciprocating movement of the rectangular slide plate 305 is controlled by a fixed rod. 307 drives the sealing piston plate 306 to move up and down reciprocally. During the upward movement of the sealing piston plate 306, the lubricating oil at the bottom of the sealing protection box 301 can be drawn into the rectangular box 302 through the oil suction pipe 3013. When the sealing piston plate 306 moves downward, the lubricating oil drawn into the rectangular box 302 can be pressed into the lubrication pipe 303 through the oil delivery pipe 3014, and sprayed out through the atomizing nozzle 304 to lubricate the first toothed disc 208, the second toothed disc 209 and the third toothed disc 205, thereby achieving the purpose of lubrication during the rolling and conveying of aluminum rods.

[0065] The embodiments of this specific implementation have been described above. However, this embodiment is not limited to the specific implementation described above. The specific implementation described above is merely illustrative and not restrictive. Those skilled in the art can make many other forms based on the guidance of this embodiment, all of which are within the protection scope of this embodiment.

Claims

1. A softclad production line characterized by, Comprise: The cladding assembly comprises a cladding platform, the upper surface of the cladding platform is sequentially provided with a first mounting frame, a second mounting frame, a guide block and a cladding seat from left to right, the inner wall of the first mounting frame is rotationally provided with two guide rollers for guiding the aluminum foil, the inner wall of the second mounting frame is rotationally provided with a guide pulley for guiding the cable core, the surface of the guide block is provided with a guide hole, and the surface of the cladding seat is provided with a mounting hole penetrating the cladding seat, and the inner wall of the mounting hole is provided with a cladding die; The rolling assembly is used for rolling the aluminum bar into an aluminum foil, the rolling assembly comprises a rolling platform, and the end of the rolling platform is fixedly connected with the end of the cladding platform, the rolling assembly comprises a rolling frame fixedly arranged on the upper surface of the rolling platform, and a plurality of rolling rollers rotationally arranged on the inner wall of the rolling frame, every two rolling rollers form a group, a plurality of groups of rolling rollers are equidistantly arranged in the interior of the rolling frame from left to right, and the middle of the two rolling rollers in each group forms a rolling space for rolling the aluminum bar, the rolling spaces corresponding to the plurality of groups of rolling rollers are sequentially reduced from left to right, and the rolling assembly further comprises a driving motor fixedly arranged on the front surface of the rolling frame for driving the two rolling rollers in each group to rotate towards each other; Both ends of the rolling roller are fixedly provided with a connecting shaft penetrating the rolling roller, the output end of the driving motor extends into the interior of the rolling frame and is fixedly connected with the end of one connecting shaft, the other end of the connecting shaft on each group of rolling rollers extends to the back surface of the rolling frame, and the other end of the connecting shaft on each group of rolling rollers is fixedly provided with a first tooth disc which is engaged with each other; The back surface of the rolling frame is equidistantly rotationally provided with a plurality of rotating shafts in the middle of the adjacent two groups of rolling rollers, and the end of each rotating shaft is fixedly provided with a second tooth disc, the surface of the upper one of the rolling rollers in each group is fixedly provided with a third tooth disc, and the second tooth disc is engaged with the two adjacent third tooth discs respectively; The back surface of the rolling frame is provided with a lubricating assembly for lubricating the first tooth disc, the second tooth disc and the third tooth disc, the lubricating assembly comprises a sealed protection box and a rectangular box; The lubricating assembly further comprises lubricating pipes fixedly arranged on the inner walls of both sides of the sealed protection box, and the lower surface of the lubricating pipe is equidistantly provided with a plurality of atomizing nozzles, the inner wall of the rectangular box is slidingly provided with a rectangular sliding plate and a sealing piston plate respectively, and the lower surface of the rectangular sliding plate is fixedly provided with a fixed rod, and the end of the fixed rod away from the rectangular sliding plate is fixedly connected with the upper surface of the sealing piston plate; The end of one connecting shaft is fixedly provided with a connecting column, and the inner side wall of the rectangular box is rotationally provided with a horizontal shaft extending into the interior of the sealed protection box and corresponding to the connecting column, one end of the horizontal shaft and the end of the connecting column are fixedly provided with first bevel gears which are engaged with each other, the inner wall of the box of the rectangular box and the sealed protection box is provided with a rotating hole, and the outer surface of the horizontal shaft is rotationally connected with the inner wall of the rotating hole through a sealing bearing; The inner top wall of the rectangular box is rotationally provided with a vertical reciprocating screw, and the bottom end of the vertical reciprocating screw and the other end of the horizontal shaft are fixedly provided with second bevel gears which are engaged with each other, and the upper surface of the rectangular sliding plate is provided with a threaded hole which is threadedly connected with the outer surface of the vertical reciprocating screw.

2. A softclad production line according to claim 1, characterized in that The lubrication assembly includes a sealed protective box fixed to the back of the roll frame for protecting the first, second, and third toothed discs, and a rectangular box fixed to the side of the sealed protective box, wherein the bottom of the sealed protective box is filled with an appropriate amount of lubricating oil.

3. A softclad production line according to claim 2, characterized in that The lower surface of the rectangular box is provided with an oil suction pipe and an oil delivery pipe. One end of the oil suction pipe extends to the inner bottom of the rectangular box, and the other end of the oil suction pipe extends to the inner bottom of the sealed protective box and is fixed with a filter cover. The surface of the oil suction pipe is provided with an oil suction one-way valve. One end of the oil delivery pipe extends to the inner bottom of the rectangular box, and the other end of the oil delivery pipe extends to the inner top of the sealed protective box and is connected to the lubrication pipe. The surface of the oil delivery pipe is provided with an oil delivery one-way valve.

4. A softclad production line according to claim 1 wherein, The upper surface of the rolling platform is provided with a cooling component for cooling the rolled aluminum foil. The cooling component includes a cooling water tank fixed on the upper surface of the rolling platform, and a connecting roller is rotatably provided on the inner wall of the cooling water tank. The outer surfaces of the two guide rollers are covered with absorbent cotton cloth for drying the aluminum foil after it has been cooled by the cooling water tank.

Citation Information

Patent Citations

  • Wire stranding device and wire stranding method for electric wires and cables

    CN115762907A

  • Automatic it covers equipment to change aluminum foil pack

    CN205943597U