High-density steel wire mesh weaving device

By setting up an application unit and a wiping unit in the braiding machine to apply lubricant to the surface of the steel wire and using a cleaning mechanism to clean the wire mesh, the problems of scratches, fraying, and overheating on the surface of the steel wire during the extrusion deformation process of the braiding machine are solved, thereby improving the braiding quality and the strength of the interlacing points.

CN120961802APending Publication Date: 2025-11-18NINGBO SHIELD SEALING CO LTD
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Patent Information

Application Number
CN202511329850.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

Existing weaving machines are prone to surface scratches, fraying, localized overheating, and brittle fracture during the extrusion and deformation of steel wire mesh, which affects the weaving quality.

Method used

The surface of the steel wire is coated with lubricant using a coating unit and a wiping unit, and the steel wire mesh is cleaned by a cleaning mechanism to reduce friction and uneven thermal expansion.

Benefits of technology

It effectively prevents scratches and fraying on the steel wire surface, reduces local overheating, improves weaving quality and the strength of interlacing points, and reduces lubricant waste.

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Abstract

The invention discloses a high-density steel wire mesh weaving device, and relates to the technical field of steel wire mesh weaving devices.The high-density steel wire mesh weaving device comprises a fixing frame, a crossing assembly, a pushing assembly and an extruding assembly are arranged at the top of the fixing frame, and a smearing mechanism used in cooperation with the extruding assembly is arranged at the top of the fixing frame; the smearing mechanism comprises a smearing unit and a wiping unit, the smearing unit and the wiping unit are both used in cooperation with the extrusion assembly, and a cleaning mechanism is arranged on one side of the pushing assembly. According to the lubricating device, the lubricating agent is conveyed into a cavity through a hose and then enters a sponge brush through the cavity, at the moment, two first concave plates move in a reciprocating mode, when the first concave plates move, the hose can be driven to slide in an inner cavity of a sliding groove, and therefore the effect that the lubricating agent in the sponge brush is brushed on the surface of a steel wire is achieved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of steel wire mesh weaving devices, in particular to a high-density steel wire mesh weaving device. BACKGROUND

[0002] Steel wire mesh is a mesh structure material made of high-quality low-carbon steel wire or stainless steel wire and other metal materials through mechanical weaving or welding process, which has the characteristics of high strength, corrosion resistance, good air permeability, etc. Among them, the plain weave steel wire mesh is interwoven with warp and weft at the same pitch to form a regular square pattern, and the structure is stable, which is suitable for screening and filtering.

[0003] The plain weave steel wire mesh is mainly prepared by using a plain weave machine. The plain weave is interwoven by warp and weft, forming a net surface with compact structure and smooth surface. The characteristics of this weaving method are: 1. balanced strength: uniform stress in all directions, not easy to appear local weak point, suitable for high precision and high strength demand; 2. high surface flatness: warp and weft are interlaced tightly, the net surface is smooth, reducing particle jamming, suitable for fine screening; 3. density controllable: by adjusting the thickness, pitch and weaving tension of warp and weft, the mesh size can be accurately controlled to meet the high precision requirement.

[0004] However, the existing weaving machine needs to use a pressure roller to extrude and deform the steel wire when in use, so that the steel wire mesh is in a wavy shape, thereby facilitating the weaving of the plain steel wire mesh. However, during the extrusion and deformation, surface scratches, fuzzing or local overheating may occur due to severe friction, and even brittle fracture may occur. The increased surface roughness caused by fuzzing may weaken the friction between the steel wires, causing the interlacing point to be less firm. Under the action of dynamic load (such as vibration and impact), the mesh hole may deform due to the loosening of the interlacing point, resulting in size deviation. Local overheating may cause uneven thermal expansion of the steel wire, resulting in inconsistent shrinkage of the mesh after weaving, thereby affecting the quality of weaving. Therefore, we propose a high-density steel wire mesh weaving device. SUMMARY

[0005] The purpose of the present application is to provide a high-density steel wire mesh weaving device to solve the problems raised in the background art.

[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a high-density steel wire mesh weaving device, comprising a fixed frame, a cross assembly, a pushing assembly and an extrusion assembly are arranged on the top of the fixed frame, a smearing mechanism cooperating with the extrusion assembly is arranged on the top of the fixed frame, the smearing mechanism comprises a smearing unit and a wiping unit, the smearing unit and the wiping unit are used in cooperation with the extrusion assembly, and a cleaning mechanism is arranged on one side of the pushing assembly.

[0007] Preferably, the extrusion assembly comprises two support plates fixedly connected to the top of the fixed frame, two compression rollers rotatably connected between the opposite sides of the two support plates, one side of one of the support plates is fixedly connected with a motor, the output end of the motor penetrates through the one support plate and is fixedly connected with one end of one of the compression rollers, one side of the other support plate is rotatably connected with two gears, the two gears are in meshing connection, and the gears are fixedly connected with the compression rollers through rotating shafts.

[0008] Preferably, the smearing unit comprises a first protective shell fixedly connected to the inner wall of the fixed frame, one side of the first protective shell is fixedly connected with a smearing shell in communication, the inner cavity of the smearing shell is slidably connected with two first concave plates, the inner wall of the first concave plate is fixedly connected with a sponge brush, the inside of the concave plate is provided with a first cavity, a plurality of liquid guide holes are formed in the inner wall of the first concave plate and communicated with the first cavity, and sliding grooves are formed in the top and bottom of the smearing shell.

[0009] Preferably, the inner wall of the fixed frame is fixedly connected with a storage box, one side of the storage box is fixedly connected with an oil pump, the oil pumping end of the oil pump penetrates to the inner wall of the storage box, the oil outlet end of the oil pump is fixedly connected with an oil outlet pipe, one end of the oil outlet pipe is fixedly connected with a fixed pipe, and one end of each of the two soft pipes is fixedly communicated with the surface of the fixed pipe.

[0010] Preferably, the wiping unit comprises a wiping shell fixedly connected to one side of the first protective shell, the inner cavity of the wiping shell is slidably connected with two second concave plates, the inner wall of the second concave plate is fixedly connected with adsorbing cotton, the inner cavity of the wiping shell is fixedly connected with two branch pipes, the surface of the branch pipe is fixedly connected with a plurality of scraping pipes, the scraping pipes are used for extruding the adsorbing cotton, one end of each of the two branch pipes penetrates to the outside of the wiping shell and is fixedly connected with a main pipe, one side of the storage box is fixedly connected with a vacuum pump, the air inlet end of the vacuum pump is fixedly connected with one end of the main pipe, and the air outlet end of the vacuum pump penetrates to the inner cavity of the storage box.

[0011] Preferably, the inner cavity of the storage box is slidably connected with a moving frame, the inner wall of the moving frame is fixedly connected with a filter screen, and one side of the moving frame is fixedly connected with a handle.

[0012] Preferably, one end of the first concave plate and the second concave plate is fixedly connected with a guide rod, the guide rod on the first concave plate is in sliding connection with the inner wall of the smearing shell, the guide rod on the second concave plate is in sliding connection with the inner wall of the wiping shell, one side of the smearing shell and one side of the wiping shell are rotatably connected with a concave-convex disc, one end of the guide rod is fixedly connected with a convex rod, the surface of the guide rod is sleeved with a spring, one end of the spring is fixedly connected with one side of the convex rod, the side close to the spring of the wiping shell and the smearing shell is fixedly connected with the spring, one side of one of the gears is fixedly connected with a double-groove transmission shaft, one side of the concave-convex disc is fixedly connected with a single-groove transmission shaft, and the two single-groove transmission shafts are in transmission connection with the double-groove transmission shaft through two transmission belts.

[0013] Preferably, the cleaning mechanism comprises a mounting shell fixedly connected to the top of the fixed frame, a connecting shell mounted on the top of the mounting shell through screws, a water outlet pipe fixedly connected to the top of the connecting shell, a plurality of water spraying pipes fixedly connected to the surface of the water outlet pipe, the number of the water spraying pipes being several, one end of the water spraying pipe penetrating through to the bottom of the connecting shell, a gas guide pipe fixedly connected to the top of the connecting shell, a plurality of water blowing pipes fixedly connected to the surface of the gas guide pipe, one end of the water blowing pipe penetrating through to the bottom of the connecting shell, and the bottom of the connecting shell and the inner wall of the mounting shell being fixedly connected with shielding cotton.

[0014] Preferably, the inner wall of the fixed frame is fixedly connected with a water storage tank, one side of the water storage tank is fixedly connected with a water pump, the water pumping end of the water pump penetrates into the inner cavity of the water storage tank, the water outlet end of the water pump is fixedly connected with a connecting pipe, one end of the connecting pipe is fixedly connected with the water blowing pipe, the top of the connecting shell is fixedly connected with an air pump, and the air outlet end of the air pump is fixedly connected with one end of the gas guide pipe.

[0015] Preferably, the inner wall of the water storage tank is fixedly connected with a partition plate, the bottom of the water guide shell is inclinedly arranged.

[0016] Compared with the prior art, the present application has the following beneficial effects: By arranging the smearing unit, the steel wire is located between the two first concave plates, then the lubricant is delivered into the cavity through the hose, then enters the sponge brush through the cavity, at this time, the two first concave plates are reciprocally moved, and the first concave plate slides in the inner cavity of the sliding groove during movement, so that the lubricant in the sponge brush is brushed on the surface of the steel wire. The present application is characterized in that the wiping unit is arranged, the lubricant on the steel wire is adsorbed on the adsorbing cotton through the reciprocating movement of the second concave plate, the scraping pipe does not move when the adsorbing cotton moves, so that the scraping pipe extrudes the adsorbing cotton, thereby extruding the lubricant in the adsorbing cotton, at this time, the vacuum pump is started to generate a certain suction force on the main pipe, thereby sucking the extruded lubricant into the scraping pipe, so that the lubricant enters the storage box through the branch pipe, which can not only reduce the lubricant on the surface of the steel wire, but also collect the lubricant and reduce the waste of the lubricant. The present application is characterized in that the cleaning mechanism is arranged, the woven steel wire mesh is located between the mounting shell and the connecting shell, then water is sprayed to the surface of the steel wire mesh through the water outlet pipe and the water spraying pipe, so that the lubricant on the surface of the steel wire mesh can be washed away, then air is introduced into the water blowing pipe through the air guide pipe, the water on the steel wire mesh can be blown downward through the water blowing pipe, thereby reducing the moisture on the steel wire mesh, and the setting of the shielding cotton can reduce the splashing of water when the water impacts on the steel wire mesh. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the present application; Figure 2 It is a schematic diagram of the structure of the filter screen, the gear and the support plate of the present application; Figure 3 It is a schematic diagram of the structure of the first protective shell, the compression roller and the first concave plate of the present application; Figure 4 It is a schematic diagram of the structure of the compression roller, the gear and the main pipe of the present application; Figure 5 It is a schematic diagram of the structure of the main pipe, the branch pipe and the scraping pipe of the present application; Figure 6 It is a schematic diagram of the structure of the present application Figure 5 It is a partial enlarged view of A in the present application; Figure 7 It is a schematic diagram of the structure of the concave-convex plate, the guide rod and the spring of the present application; Figure 8 It is a schematic diagram of the structure of the mounting shell and the connecting shell of the present application; Figure 9 It is a schematic diagram of the structure of the water guide shell and the water outlet pipe of the present application; Figure 10 It is a schematic diagram of the structure of the present application Figure 9 It is a partial enlarged view of B in the present application; Figure 11 It is a schematic diagram of the structure of the main pipe, the branch pipe and the second concave plate of the present application; Figure 12 It is a partial enlarged view of C in the present application; Figure 11 Figure 13 ​The structural schematic diagram of the filter screen and the moving frame of the application; Figure 14 The sectional view schematic diagram of the first concave plate of the application.

[0018] In the figure: 1, fixed frame; 11, cross assembly; 12, pushing assembly; 13, extrusion assembly; 1301, support plate; 1302, pressure roller; 1303, motor; 1304, gear; 2, smearing mechanism; 21, smearing unit; 2101, first protective shell; 2102, smearing shell; 2103, first concave plate; 2104, sponge brush; 2105, first cavity; 2106, liquid guide hole; 2107, sliding groove; 2108, hose; 2109, storage box; 2110, oil pump; 2111, oil outlet pipe; 2112, fixed pipe; 22, wiping unit; 2201, wiping shell; 2202, second concave plate; 2203, adsorbing cotton; 2204, branch pipe; 2205, pipe scraping; 2206, main pipe; 2207, vacuum pump; 2208, moving frame; 2209, filter screen; 2210, handle; 2211, guide rod; 2212, concave-convex disc; 2213, convex rod; 2214, spring; 2215, double-groove transmission shaft; 2216, single-groove transmission shaft; 2217, transmission belt; 3, cleaning mechanism; 301, mounting shell; 302, connecting shell; 303, water outlet pipe; 304, water spraying pipe; 305, air guide pipe; 306, water blowing pipe; 307, shielding cotton; 308, water storage tank; 309, water pump; 310, connecting pipe; 311, air pump; 312, partition plate; 313, water guide shell. DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the application.

[0020] Embodiment 1: see Figures 1-14 The application provides a technical solution: a high-density steel wire mesh weaving device, comprising a fixed frame 1, the top of the fixed frame 1 is provided with a cross assembly 11, a pushing assembly 12 and an extrusion assembly 13, the top of the fixed frame 1 is provided with a smearing mechanism 2 used in cooperation with the extrusion assembly 13, the smearing mechanism 2 comprises a smearing unit 21 and a wiping unit 22, the smearing unit 21 and the wiping unit 22 are used in cooperation with the extrusion assembly 13, and one side of the pushing assembly 12 is provided with a cleaning mechanism 3.

[0021] Supplementary explanation: the cross assembly 11 includes two reciprocating insertion frames, one of which moves upward, and the other moves downward, and the two insertion frames are used to cross the steel wires, and then insert the individual steel wires between the two crossed steel wires, and the pushing assembly 12 includes a rotating shaft and a plurality of partitions 312 fixedly connected to the surface of the rotating shaft, which rotates when the rotating shaft rotates, so that the partitions 312 push the individual steel wires to realize the weaving of the steel wire mesh. This is the prior art and will not be described in detail.

[0022] The extrusion assembly 13 includes two support plates 1301 fixedly connected to the top of the fixed frame 1, and two compression rollers 1302 are rotatably connected between the opposite sides of the two support plates 1301. One side of one of the support plates 1301 is fixedly connected with a motor 1303, the output end of the motor 1303 penetrates through one of the support plates 1301 and is fixedly connected with one end of one of the compression rollers 1302. The other side of the other support plate 1301 is rotatably connected with two gears 1304, the two gears 1304 are in meshing engagement, and the gears 1304 are fixedly connected with the compression rollers 1302 through rotating shafts. By arranging the extrusion assembly 13, the plurality of steel wires are located between the two compression rollers 1302, and then the motor 1303 is started to drive one of the compression rollers 1302 to rotate, so that the compression roller 1302 drives one of the gears 1304 to rotate. Since the two gears 1304 are in meshing engagement, the compression roller 1302 can extrude the steel wires, so that the steel wires are in a wavy state, facilitating the weaving of the steel wire mesh in the later stage.

[0023] The smearing unit 21 includes a first protective shell 2101 fixedly connected to the inner wall of the fixed frame 1, and a smearing shell 2102 fixedly connected to one side of the first protective shell 2101. The inner cavity of the smearing shell 2102 is slidably connected with two first concave plates 2103, the inner wall of the first concave plate 2103 is fixedly connected with a sponge brush 2104, the inside of the concave plate is provided with a first cavity 2105, and the inner wall of the first concave plate 2103 is provided with a plurality of liquid guide holes 2106 in communication with the first cavity 2105. The top and bottom of the smearing shell 2102 are provided with sliding grooves 2107, the inner cavity of the sliding groove 2107 is provided with a hose 2108, one end of the hose 2108 is fixedly connected with the first concave plate 2103, and the hose 2108 is in communication with the first cavity 2105. By arranging the smearing unit 21, the steel wires are located between the two first concave plates 2103, and then the lubricant is delivered into the cavity through the hose 2108, and then into the sponge brush 2104. At this time, the two first concave plates 2103 are reciprocated, and the first concave plate 2103 slides in the inner cavity of the sliding groove 2107 when moving, so as to brush the lubricant in the sponge brush 2104 on the surface of the steel wire.

[0024] The inner wall of the fixing frame 1 is fixedly connected with a storage box 2109, one side of the storage box 2109 is fixedly connected with an oil pump 2110, the oil pumping end of the oil pump 2110 penetrates to the inner wall of the storage box 2109, the oil outlet end of the oil pump 2110 is fixedly connected with an oil outlet pipe 2111, one end of the oil outlet pipe 2111 is fixedly connected with a fixed pipe 2112, one end of the two hoses 2108 is fixedly communicated with the surface of the fixed pipe 2112, by setting the cooperation of the storage box 2109, the oil pump 2110 and the fixed pipe 2112, the lubricant in the storage box 2109 is pumped into the oil outlet pipe 2111 by starting the oil pump 2110 by the external control switch, so that the lubricant is transported into the sponge brush 2104.

[0025] The specific implementation of the embodiment is that the steel wires are located between the two first concave plates 2103, the lubricant in the storage box 2109 is pumped into the oil outlet pipe 2111 by starting the oil pump 2110 by the external control switch, and then the lubricant is transported into the cavity through the hose 2108, and then enters the sponge brush 2104 through the cavity, at this time, the two first concave plates 2103 are reciprocated, and the first concave plate 2103 drives the hose 2108 to slide in the inner cavity of the sliding groove 2107 when moving, so as to brush the lubricant in the sponge brush 2104 on the surface of the steel wire, the plurality of steel wires are located between the two compression rollers 1302, and then the motor 1303 is started, so that the motor 1303 drives one of the compression rollers 1302 to rotate, so that the compression roller 1302 drives one of the gears 1304 to rotate, since the two gears 1304 are engaged, the compression roller 1302 can extrude the steel wire, so that the steel wire is in a wave state, which is convenient for weaving the steel wire mesh in the later period, and since the surface of the steel wire is coated with lubricant, the phenomenon of surface scratching, fuzzing or local overheating caused by severe friction can be effectively solved, and the phenomenon of brittle fracture is reduced.

[0026] Embodiment 2: please refer to Figures 1-14 The present application provides a technical solution: a high-density steel wire mesh weaving device, which improves the technical problems mentioned in the background art.

[0027] The wiping unit 22 comprises a wiping shell 2201 fixedly connected to one side of the first protective shell 2101, the inner cavity of the wiping shell 2201 is slidably connected with two second concave plates 2202, the inner wall of the second concave plate 2202 is fixedly connected with adsorbing cotton 2203, the inner cavity of the wiping shell 2201 is fixedly connected with two branch pipes 2204, the surface of the branch pipe 2204 is fixedly connected with a plurality of scraping pipes 2205, the scraping pipes 2205 are used for extruding the adsorbing cotton 2203, one end of the two branch pipes 2204 penetrates to the outside of the wiping shell 2201 and is fixedly and commonly connected with a main pipe 2206, one side of the storage box 2109 is fixedly connected with a vacuum pump 2207, the air inlet end of the vacuum pump 2207 is fixedly connected with one end of the main pipe 2206, and the air outlet end of the vacuum pump 2207 penetrates to the inner cavity of the storage box 2109, by setting the wiping unit 22, the lubricant on the steel wire is adsorbed on the adsorbing cotton 2203 through the reciprocating movement of the second concave plate 2202, and when the adsorbing cotton 2203 moves, the scraping pipes 2205 do not move, so that the scraping pipes 2205 extrude the adsorbing cotton 2203, so that the lubricant in the adsorbing cotton 2203 is extruded out, at this time, the vacuum pump 2207 is started, so that the main pipe 2206 generates a certain suction force, so that the extruded lubricant is sucked into the scraping pipes 2205, and the lubricant enters the storage box 2109 through the branch pipe 2204, which can not only reduce the lubricant on the surface of the steel wire, but also collect the lubricant and reduce the waste of the lubricant. It should be noted that the surface of the scraping pipe 2205 is provided with suction holes, which are communicated with the branch pipe 2204 through the scraping pipe 2205 and are used for sucking the lubricant.

[0028] The inner cavity of the storage box 2109 is slidably connected with a moving frame 2208, the inner wall of the moving frame 2208 is fixedly connected with a filter screen 2209, one side of the moving frame 2208 is fixedly connected with a handle 2210, by setting the cooperation of the moving frame 2208, the filter screen 2209 and the handle 2210, when the lubricant is collected, the lubricant passes through the filter screen 2209, and the lubricant is filtered through the filter screen 2209. It should be noted that there is usually an oxide film on the surface of the steel wire, when the steel wire is extruded, the surface is plastically deformed, the oxide layer may be peeled off due to stress concentration, forming fine metal oxide powder, and the metal oxide powder can be filtered through the filter screen 2209, and the moving frame 2208 can be pulled out through the handle 2210, so that the filter screen 2209 can be cleaned.

[0029] One end of the first concave plate 2103 and the second concave plate 2202 is fixedly connected with a guide rod 2211, the guide rod 2211 on the first concave plate 2103 is in sliding connection with the inner wall of the smearing shell 2102, the guide rod 2211 on the second concave plate 2202 is in sliding connection with the inner wall of the wiping shell 2201, one side of the smearing shell 2102 and one side of the wiping shell 2201 are rotatably connected with a concave-convex disc 2212, one end of the guide rod 2211 is fixedly connected with a convex rod 2213, the surface of the guide rod 2211 is sleeved with a spring 2214, one end of the spring 2214 is fixedly connected with one side of the convex rod 2213, one side of the wiping shell 2201 and one side of the smearing shell 2102 close to the spring 2214 are fixedly connected with the spring 2214, one side of one of the gear 1304 is fixedly connected with a double-groove transmission shaft 2215, one side of the concave-convex disc 2212 is fixedly connected with a single-groove transmission shaft 2216, the two single-groove transmission shafts 2216 are in transmission connection with the double-groove transmission shaft 2215 through two transmission belts 2217, through the cooperation of the guide rod 2211, the concave-convex disc 2212, the convex rod 2213 and the spring 2214, when the gear 1304 is rotated, the gear 1304 will drive the double-groove transmission shaft 2215 to rotate, the double-groove transmission shaft 2215 will drive the single-groove transmission shaft 2216 to rotate through the transmission belt 2217, so that the concave-convex disc 2212 rotates, because the concave-convex shape on the concave-convex disc 2212 can extrude the convex rod 2213, at this time the convex rod 2213 will drive the guide rod 2211 to move, so that the second concave plate 2202 reciprocates, and through the setting of the spring 2214, the second concave plate 2202 can be reset.

[0030] The specific implementation of the embodiment is that when the gear 1304 is rotated, the gear 1304 will drive the double-groove transmission shaft 2215 to rotate, the double-groove transmission shaft 2215 will drive the single-groove transmission shaft 2216 to rotate through the transmission belt 2217, so that the concave-convex disc 2212 rotates, because the concave-convex shape on the concave-convex disc 2212 can extrude the convex rod 2213, at this time the convex rod 2213 will drive the guide rod 2211 to move, so that the second concave plate 2202 reciprocates, through the reciprocating movement of the second concave plate 2202, the lubricant on the steel wire is adsorbed on the adsorbing cotton 2203, and when the adsorbing cotton 2203 moves, the scraper 2205 does not move, so that the scraper 2205 extrudes the adsorbing cotton 2203, thereby extruding the lubricant in the adsorbing cotton 2203, at this time the vacuum pump 2207 is started, so that the total pipe 2206 generates a certain suction force, thereby sucking the extruded lubricant into the scraper 2205, so that the lubricant enters the storage box 2109 through the branch pipe 2204, which not only can reduce the lubricant on the surface of the steel wire, but also can collect the lubricant and reduce the waste of the lubricant.

[0031] Embodiment 3: Please refer to Figures 1-14 The application provides a technical solution: a high-density steel wire braiding device, which makes corresponding improvements to the technical problems mentioned in the background art.

[0032] The cleaning mechanism 3 comprises a mounting shell 301 fixedly connected to the top of the fixed frame 1, a connecting shell 302 mounted on the top of the mounting shell 301 through screws, a water outlet pipe 303 fixedly connected to the top of the connecting shell 302, a plurality of water spraying pipes 304 fixedly connected to the surface of the water outlet pipe 303, one end of each water spraying pipe 304 penetrating through the bottom of the connecting shell 302, a gas guide pipe 305 fixedly connected to the top of the connecting shell 302, a plurality of water blowing pipes 306 fixedly connected to the surface of the gas guide pipe 305, one end of each water blowing pipe 306 penetrating through the bottom of the connecting shell 302, shielding cotton 307 fixedly connected to the inner walls of the bottom of the connecting shell 302 and the mounting shell 301, by arranging the cleaning mechanism 3, the braided steel wire mesh is located between the mounting shell 301 and the connecting shell 302, then water is sprayed to the surface of the steel wire mesh through the water outlet pipe 303 and the water spraying pipe 304, so that the lubricant on the surface of the steel wire mesh can be washed away, then air is introduced into the water blowing pipe 306 through the gas guide pipe 305, and the water on the steel wire mesh can be blown downward through the water blowing pipe 306, thereby reducing the moisture on the steel wire mesh, and the arrangement of the shielding cotton 307 can reduce the splashing of water when the water impacts on the steel wire mesh.

[0033] Supplementary note: The lubricant is a water-based lubricant, which is based on water and can be removed by rinsing with water after use.

[0034] The inner wall of the fixed frame 1 is fixedly connected with a water storage tank 308, one side of the water storage tank 308 is fixedly connected with a water pump 309, the water pumping end of the water pump 309 penetrates into the inner cavity of the water storage tank 308, the water outlet end of the water pump 309 is fixedly connected with a connecting pipe 310, one end of the connecting pipe 310 is fixedly connected with the water blowing pipe 306, the top of the connecting shell 302 is fixedly connected with an air pump 311, the air outlet end of the air pump 311 is fixedly connected with one end of the gas guide pipe 305, by arranging the water storage tank 308, the water pump 309 and the connecting pipe 310 in cooperation, the water pump 309 can be started by an external control switch, so that the water in the water storage tank 308 can be pumped into the water outlet pipe 303, thereby realizing the transportation of water, and at the same time, the air pump 311 can be started to transport air into the gas guide pipe 305, so that the air is sprayed from the water blowing pipe 306, thereby reducing the water on the surface of the steel wire mesh.

[0035] The inner wall of the water storage tank 308 is fixedly connected with a partition plate 312, the bottom of the mounting shell 301 is fixedly connected with a water guide shell 313, the bottom of the water guide shell 313 is inclinedly arranged, through the cooperation of the partition plate 312 and the water guide shell 313, the water pump 309 pumps the water on one side of the partition plate 312, and the water collected by the water guide shell 313 falls on the other side of the partition plate 312, and there is a certain amount of lubricant in the collected water, the lubricant floats above the other side of the partition plate 312, so that the floating lubricant can be prevented from being pumped into the water outlet pipe 303.

[0036] The specific implementation of the embodiment is that: the woven steel wire mesh is located between the mounting shell 301 and the connecting shell 302, the water pump 309 is started by using an external control switch, so that the water in the water storage tank 308 can be pumped into the water outlet pipe 303, thereby realizing the transportation of water, the water is sprayed to the surface of the steel wire mesh through the water outlet pipe 303 and the water spraying pipe 304, so that the lubricant on the surface of the steel wire mesh can be washed away, at the same time, the air pump 311 is started, air can be transported into the air guide pipe 305, so that the air is sprayed out of the water blowing pipe 306, the water on the steel wire mesh can be blown downward through the water blowing pipe 306, thereby reducing the moisture on the steel wire mesh, the shielding cotton 307 is arranged, the shielding cotton 307 is in close contact with the steel wire mesh, when the water impacts on the steel wire mesh, the splashing of the water can be reduced, the water pump 309 pumps the water on one side of the partition plate 312, and the water collected by the water guide shell 313 falls on the other side of the partition plate 312, and there is a certain amount of lubricant in the collected water, the lubricant floats above the other side of the partition plate 312, so that the floating lubricant can be prevented from being pumped into the water outlet pipe 303.

[0037] It should be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0038] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, the scope of the present application being defined by the appended claims and their equivalents.

Claims

1. A high-density steel wire mesh weaving device, comprising a fixing frame (1), characterized in that: The top of the fixed frame (1) is provided with a cross component (11), a push component (12) and a squeeze component (13). The top of the fixed frame (1) is provided with a coating mechanism (2) that works in conjunction with the squeeze component (13). The coating mechanism (2) includes a coating unit (21) and a wiping unit (22). Both the coating unit (21) and the wiping unit (22) work in conjunction with the squeeze component (13). A cleaning mechanism (3) is provided on one side of the push component (12).

2. The high-density steel wire mesh weaving device according to claim 1, characterized in that: The extrusion assembly (13) includes two support plates (1301) fixedly connected to the top of the fixed frame (1). Two pressure rollers (1302) are rotatably connected between opposite sides of the two support plates (1301). A motor (1303) is fixedly connected to one side of one of the support plates (1301). The output end of the motor (1303) passes through one of the support plates (1301) and is fixedly connected to one end of one of the pressure rollers (1302). Two gears (1304) are rotatably connected to one side of the other support plate (1301). The two gears (1304) mesh with each other. The gears (1304) are fixedly connected to the pressure rollers (1302) through a rotating shaft.

3. The high-density steel wire mesh weaving device according to claim 2, characterized in that: The application unit (21) includes a first protective shell (2101) fixedly connected to the inner wall of the fixing frame (1). One side of the first protective shell (2101) is fixedly connected to an application shell (2102). Two first concave plates (2103) are slidably connected to the inner cavity of the application shell (2102). A sponge brush (2104) is fixedly connected to the inner wall of the first concave plate (2103). A first cavity (2105) is opened inside the concave plate. The inner wall of the plate (2103) is provided with a plurality of liquid guiding holes (2106), which are connected to the first cavity (2105). The top and bottom of the coating shell (2102) are provided with sliding grooves (2107). The inner cavity of the sliding groove (2107) is provided with a flexible tube (2108). One end of the flexible tube (2108) is fixedly connected to the first concave plate (2103), and the flexible tube (2108) is connected to the first cavity (2105).

4. The high-density steel wire mesh weaving device according to claim 3, characterized in that: A storage box (2109) is fixedly connected to the inner wall of the fixed frame (1). An oil pump (2110) is fixedly connected to one side of the storage box (2109). The oil pump (2110) has its oil-drawing end extending through the inner wall of the storage box (2109). An oil outlet pipe (2111) is fixedly connected to the oil outlet end of the oil pump (2110). A fixed pipe (2112) is fixedly connected to one end of the oil outlet pipe (2111). One end of each of the two hoses (2108) is fixedly connected to the surface of the fixed pipe (2112).

5. A high-density steel wire mesh weaving device according to claim 4, characterized in that: The wiping unit (22) includes a wiping shell (2201) fixedly connected to one side of the first protective shell (2101). Two second concave plates (2202) are slidably connected to the inner cavity of the wiping shell (2201). Absorbent cotton (2203) is fixedly connected to the inner wall of the second concave plates (2202). Two branch pipes (2204) are fixedly connected to the inner cavity of the wiping shell (2201). A scraper (2205) is fixedly connected to the surface of each branch pipe (2204). The quantity is several. The scraper tube (2205) is used to squeeze the absorbent cotton (2203). One end of each of the two branch tubes (2204) extends through to the outside of the wiping shell (2201) and is fixedly connected to the main tube (2206). A vacuum pump (2207) is fixedly connected to one side of the storage box (2109). The air inlet of the vacuum pump (2207) is fixedly connected to one end of the main tube (2206). The air outlet of the vacuum pump (2207) extends through the inner cavity of the storage box (2109).

6. A high-density steel wire mesh weaving device according to claim 4, characterized in that: The storage box (2109) has a sliding frame (2208) slidably connected to its inner cavity. A filter screen (2209) is fixedly connected to the inner wall of the sliding frame (2208). A handle (2210) is fixedly connected to one side of the sliding frame (2208).

7. A high-density steel wire mesh weaving device according to claim 5, characterized in that: One end of the first concave plate (2103) and the second concave plate (2202) is fixedly connected to a guide rod (2211). The guide rod (2211) on the first concave plate (2103) is slidably connected to the inner wall of the coating shell (2102), and the guide rod (2211) on the second concave plate (2202) is slidably connected to the inner wall of the wiping shell (2201). One side of the coating shell (2102) and one side of the wiping shell (2201) are rotatably connected to a concave-convex disc (2212). One end of the guide rod (2211) is fixedly connected to a protruding rod (2213). A spring (2214) is fitted on the surface of 211. One end of the spring (2214) is fixedly connected to one side of the protruding rod (2213). The wiping shell (2201) and the coating shell (2102) are fixedly connected to the spring (2214) on the side close to the spring (2214). One side of one of the gears (1304) is fixedly connected to a double-groove drive shaft (2215). One side of the concave-convex disc (2212) is fixedly connected to a single-groove drive shaft (2216). The two single-groove drive shafts (2216) are connected to the double-groove drive shaft (2215) through two drive belts (2217).

8. The high-density steel wire mesh weaving device according to claim 1, characterized in that: The cleaning mechanism (3) includes a mounting shell (301) fixedly connected to the top of the fixing frame (1). A connecting shell (302) is installed on the top of the mounting shell (301) by screws. A water outlet pipe (303) is fixedly connected to the top of the connecting shell (302). A water spray pipe (304) is fixedly connected to the surface of the water outlet pipe (303). There are several water spray pipes (304). One end of the water spray pipe (304) extends to the bottom of the connecting shell (302). An air guide pipe (305) is also fixedly connected to the top of the connecting shell (302). Several blow pipes (306) are fixedly connected to the surface of the air guide pipe (305). One end of the blow pipe (306) extends to the bottom of the connecting shell (302). A shielding cotton (307) is fixedly connected to the bottom of the connecting shell (302) and the inner wall of the mounting shell (301).

9. A high-density steel wire mesh weaving device according to claim 8, characterized in that: A water storage tank (308) is fixedly connected to the inner wall of the fixed frame (1). A water pump (309) is fixedly connected to one side of the water storage tank (308). The water pump (309) has its pumping end penetrating into the inner cavity of the water storage tank (308). The water pump (309) has its outlet end fixedly connected to a connecting pipe (310). One end of the connecting pipe (310) is fixedly connected to a blower pipe (306). An air pump (311) is fixedly connected to the top of the connecting shell (302). The air outlet end of the air pump (311) is fixedly connected to one end of the air guide pipe (305).

10. A high-density steel wire mesh weaving device according to claim 9, characterized in that: The inner wall of the water storage tank (308) is fixedly connected to a partition (312), and the bottom of the mounting shell (301) is fixedly connected to a water guide shell (313), the bottom of which is inclined.