Cable anti-corrosion grease coating equipment
By using a combination of electric push rod, oil press plate and mandrel in the cable anti-corrosion grease coating equipment, the problems of uneven coating and intermittent coating are solved, and the uniform coating and efficient corrosion resistance of anti-corrosion grease on the cable are achieved.
Patent Information
- Application Number
- CN202421885869.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-08-06
AI Technical Summary
Existing cable anti-corrosion grease coating equipment leads to uneven coating and intermittent coating under high production speed or high grease viscosity, affecting the anti-corrosion effect.
Use electric push rod, oil pressing plate and mandrel to press anticorrosion grease into the mandrel through the downward pressure of the oil pressing plate to avoid the formation of cavity and ensure uniform coating.
The uniform coating of anti-corrosion grease on the cable is achieved, which avoids intermittent phenomena, improves the corrosion resistance, and can adjust the pressure of the oil pressure plate according to different grease viscosity.
Smart Images

Figure CN222883314U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cable oiling, in particular to a cable anti-corrosion grease coating device. Background Art
[0002] Cable oiling is to apply a layer of anti-corrosion grease on the surface of the cable, which not only has an anti-corrosion effect, but also can effectively prevent the cables from being damaged due to contact and friction when they are wound, thereby effectively protecting the cables.
[0003] The current cable anti-corrosion grease coating equipment generally adopts a semi-automatic oiling device, which only relies on the form of a cylinder block. The cylinder fills the cavity formed by the grease carried away by the cable coating during the back-and-forth movement. However, if the cable production speed is fast and the cylinder movement is not timely; or the grease viscosity is too high, the movement of the cylinder cannot fill the cavity with grease, which will cause the anti-corrosion grease on the cable to be intermittent and uneven, thus affecting the anti-corrosion effect. Therefore, the above problems need to be solved urgently. Summary of the invention
[0004] The technical problem to be solved by the utility model is to provide a cable anti-corrosion grease coating device, which uses an electric push rod, an oil pressure plate and a core rod to press the anti-corrosion grease into the core rod by relying on the downward pressure of the oil pressure plate, thereby avoiding the formation of a cavity and making the anti-corrosion grease on the cable more uniform and without discontinuity.
[0005] In order to solve the above technical problems, the utility model adopts the following technical solutions: the utility model is a cable anti-corrosion grease coating equipment, the innovation of which is that it includes a base, a movable plate, a movable assembly, an oil drum, a core rod, an oil pressure plate and a bottom cover plate; the movable plate is horizontally spaced on the upper surface of the base arranged horizontally and longitudinally, and is moved horizontally and longitudinally by the movable assembly; the oil drum is a hollow rectangular parallelepiped structure arranged horizontally and longitudinally, and is suspended on the upper surface of the movable plate by a fixed frame; a horizontal and longitudinal oil drum is also arranged in the middle of the lower surface of the oil drum A square conveying groove is vertically embedded and connected to the interior of the oil barrel, and its front and rear ends extend vertically out of the front and rear surfaces of the oil barrel respectively; a core rod is also horizontally and longitudinally arranged at the bottom of the oil barrel relative to the position of the conveying groove, and the core rod is fixed in the conveying groove by screwing the bottom cover plate to the lower surface of the oil barrel; a matching oil pressure plate is horizontally arranged inside the oil barrel, and the oil pressure plate slides vertically up and down in the oil barrel, and presses anti-corrosion grease downward into the core rod, so as to coat the cable coaxially passing through the core rod.
[0006] Preferably, the two fixing frames are both L-shaped structures arranged horizontally and transversely, and are symmetrically arranged on the front and rear sides of the lower surface of the oil barrel relative to the conveying trough; the length of each fixing frame matches the transverse length of the oil barrel, and its horizontal edges are screwed and fixed to the corresponding positions of the upper surface of the movable plate, and its vertical edges are vertically fixed to the corresponding positions of the lower surface of the oil barrel, thereby mounting the oil barrel on the movable plate.
[0007] Preferably, the core rod is a hollow cylindrical structure arranged horizontally and longitudinally, and its length is smaller than the distance between the left and right outer sides of the oil barrel, and larger than the distance between the left and right inner sides of the oil barrel; the outer diameter of the core rod is smaller than the longitudinal width of the conveying groove, and its inner diameter is larger than the cable diameter, and a plurality of holes are evenly and spacedly embedded in its outer circumferential surface along its circumferential direction, and each of the holes extends radially and vertically to the interior of the core rod, and the anti-corrosion grease is pressed into the interior of the core rod through the hole by the downward pressure of the oil pressure plate.
[0008] Preferably, it also includes a sealing plate and a flange plate; the bottom cover plate is a hollow semi-cylindrical structure arranged horizontally and longitudinally, and its inner diameter matches the outer diameter of the core rod, and its outer diameter is larger than the longitudinal width of the conveying trough; the length of the bottom cover plate corresponds to the distance between the left and right outer side surfaces of the oil drum, and its outer circumferential surface is arranged downward; flange plates are also horizontally and transversely arranged on the front and rear sides of the outer circumferential surface of the bottom cover plate near its top surface, and the upper surface of each flange plate is coplanar with the top surface of the bottom cover plate, and the two are integrally formed and fixed by screwing the flange plate to the lower surface of the oil drum, so that the bottom cover plate and the oil drum are connected together, and then the core rod coaxially sleeved in the bottom cover plate is clamped in the conveying trough, and the core rod is upper-positioned by the left and right ends of the lower surface of the oil drum; The inner circumferential surface of the bottom cover plate is coaxially embedded with an arc groove relative to the internal area of the oil barrel, and the left and right ends of the arc groove do not extend beyond the front and rear surfaces of the bottom cover plate, respectively, so that an arc-shaped gap is formed between the middle part of the core rod and the bottom cover plate through the arc groove; an annular sealing plate is coaxially provided on the front and rear surfaces of the bottom cover plate, and the spacing between the two sealing plates is consistent with the distance between the left and right outer sides of the oil barrel, the outer diameter of each sealing plate is consistent with the outer diameter of the bottom cover plate, and the two are integrally formed, the inner diameter of each sealing plate is larger than the cable diameter and smaller than the inner diameter of the core rod, and when the bottom cover plate is screwed to the oil barrel, the two ends of the conveying groove are sealed by the sealing plate, and the anti-corrosion grease in the core rod is prevented from leaking through the sealing plate.
[0009] Preferably, it also includes an electric push rod; an electric push rod is also vertically provided in the middle position of the upper surface of the oil barrel, and the pushing end of the electric push rod extends vertically downward to the interior of the oil barrel, and is screwed and fixed to the middle position of the upper surface of the oil pressure plate, thereby driving the oil pressure plate to move vertically up and down in the area inside the oil barrel relative to the core rod.
[0010] Preferably, it also includes a bottom plate and fixed columns; a bottom plate is also horizontally and longitudinally arranged directly below the base, and a number of fixed columns are vertically and spaced in sequence along the longitudinal direction between the base and the bottom plate, and the base and the bottom plate are connected together through the fixed columns, and then through the height coordination of the bottom plate, the fixed columns and the base, it is ensured that the cables in the production process pass through the oil barrel through the conveying trough for oiling.
[0011] Preferably, the moving assembly includes a motor, a gear, a support plate, a slider, a slide rail and a rack; the base is a hollow rectangular structure arranged horizontally and longitudinally, and support plates arranged vertically and transversely are symmetrically arranged front and back inside the base, and each of the support plates is fixedly connected to the inner bottom surface and left and right inner surfaces of the base respectively; a rack is also arranged horizontally and longitudinally in the middle position between the two support plates, and the tooth surface of the rack is arranged toward the right side, and the two ends of the rack are respectively fixedly connected to the inner side surfaces of the corresponding support plates, and a number of rib plates for supporting the rack are also vertically arranged in sequence along the length direction between the lower surface and the inner bottom surface of the base; slide rails are also arranged horizontally and longitudinally at intervals on the left and right sides directly above the rack and located inside the base, and the two ends of the two slide rails are respectively screwed and fixed to the corresponding front and rear inner side surfaces of the base, and the two ends of the lower surface They are respectively fixedly connected to the upper surfaces of the corresponding support plates; sliders matching the slide rails are also vertically symmetrically fixed at four right angles on the lower surface of the movable plate, the setting position of each slider corresponds to the setting position of each slide rail, and they respectively extend vertically downward to the interior of the base, and are respectively connected to the corresponding slide rails, so that the movable plate is horizontally and longitudinally slidably connected to the corresponding slide rails through the sliders; a motor is also vertically fixed on the front side of the upper surface of the movable plate and relative to the two slide rails, and the motor is spaced apart from the oil barrel in front and behind; the output end of the motor extends vertically downward to the interior of the base, and is meshed with the rack through a gear, and then, driven by the motor, through the meshing cooperation of the gear and the rack, the movable plate makes horizontal and longitudinal reciprocating motion on the base, and drives the oil barrel to make horizontal and longitudinal reciprocating motion.
[0012] Preferably, the two slide rails do not interfere with the movement of the gears, and the upper surface of the base is provided with first strip grooves which are horizontally and longitudinally embedded and opened at intervals on the left and right sides. The two first strip grooves are matched with each of the sliders, and their setting positions correspond to the horizontal and longitudinal sliding tracks of the corresponding sliders. Furthermore, by setting the first strip grooves, it is ensured that the base does not interfere with the horizontal and longitudinal movement of the movable plate.
[0013] Preferably, a second strip groove is vertically embedded in the upper surface of the base, the second strip groove matches the output end of the motor, and its setting position corresponds to the horizontal and longitudinal sliding trajectory of the motor, thereby ensuring that the base does not interfere with the horizontal and longitudinal movement of the movable plate by setting the second strip groove.
[0014] Preferably, an oil filling pipe is horizontally and vertically provided on the rear outer surface of the oil barrel near its bottom end, and the oil filling pipe is connected to the interior of the oil barrel and does not interfere with the coating operation of the cable passing through the core rod, so that grease is injected into the oil barrel through the oil filling pipe; a sealing cover is coaxially sleeved at the end of the oil filling pipe away from the oil barrel, and the sealing cover is screwed and fixed to the oil filling pipe.
[0015] Beneficial effects of the utility model:
[0016] (1) The utility model uses an electric push rod, an oil pressing plate and a core rod in coordination, and relies on the downward pressure of the oil pressing plate to press the anti-corrosion grease into the core rod, thereby avoiding the formation of cavities, making the anti-corrosion grease on the cable more uniform and without discontinuity;
[0017] (2) The utility model can adjust the downward pressure of the oil pressing plate according to the different viscosities of anti-corrosion greases of different specifications, thereby ensuring uniform oil coating;
[0018] (3) The bottom cover plate and the oil barrel of the utility model are screwed together, so that the core rod can be fixed easily, so that the cable can pass through the core rod for coating with anti-corrosion grease, and the installation and disassembly are simple and convenient;
[0019] (4) The utility model reduces the phenomenon of anti-corrosion grease flowing out from both ends of the core rod by integrally forming sealing plates at both ends of the bottom cover plate;
[0020] (5) The utility model provides a movable assembly so that the oil container can be horizontally moved to one side when the cable does not need to be oiled. This is simple and convenient, thereby achieving a dual-purpose effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0022] Figure 1 The utility model is a structural schematic diagram of a cable anti-corrosion grease coating device.
[0023] Figure 2 for Figure 1 Side view of.
[0024] Figure 3 for Figure 1 An enlarged schematic diagram of the oil barrel section.
[0025] Figure 4 for Figure 3 Side view of.
[0026] Figure 5 for Figure 2 Medium AA view.
[0027] Among them, 1-bottom plate; 2-fixed column; 3-base; 4-movable plate; 5-oil barrel; 6-fixed frame; 7-bottom cover plate; 8-sealing plate; 9-flange plate; 10-core rod; 11-motor; 12-gear; 13-support plate; 14-slider; 15-slide rail; 16-rack; 17-transmission trough; 18-cable; 19-electric push rod; 20-oil pressure plate; 21-oil filling pipe; 22-sealing cover. DETAILED DESCRIPTION
[0028] The technical solution of the utility model will be clearly and completely described below through specific implementation methods.
[0029] The utility model discloses a cable anti-corrosion grease coating device, comprising a base 3, a movable plate 4, a movable assembly, an oil barrel 5, a core rod 10, an oil pressing plate 20 and a bottom cover plate 7; the specific structure is as follows Figures 1 to 5 As shown, the movable plate 4 is horizontally spaced on the upper surface of the horizontally and longitudinally arranged base 3, and is moved horizontally and longitudinally by the movable assembly; the oil barrel 5 is a hollow rectangular structure arranged horizontally and longitudinally, and is suspended on the rear side of the upper surface of the movable plate 4 by a fixed frame 6; a square conveying groove 17 is also vertically embedded in the middle position of the lower surface of the oil barrel 5 horizontally and longitudinally, and the conveying groove 17 is connected to the interior of the oil barrel 5, and its front and rear ends extend vertically out of the front and rear surfaces of the oil barrel 5 respectively; a core rod 10 is also horizontally and longitudinally arranged at the bottom of the oil barrel 5 relative to the position of the conveying groove 17, and the core rod 10 is fixed in the conveying groove 17 by screwing the bottom cover plate 7 to the lower surface of the oil barrel 5.
[0030] like Figures 1 to 5 As shown, the two fixing frames 6 are both L-shaped structures arranged horizontally and transversely, and are symmetrically arranged at intervals on the front and rear sides of the lower surface of the oil barrel 5 relative to the conveying groove 17; the length of each fixing frame 6 matches the transverse length of the oil barrel 5, and its horizontal edges are screwed and fixed to the corresponding positions of the upper surface of the movable plate 4, and its vertical edges are vertically fixed to the corresponding positions of the lower surface of the oil barrel 5, thereby mounting the oil barrel 5 on the movable plate 4.
[0031] The mandrel 10 of the utility model is a hollow cylindrical structure arranged horizontally and longitudinally, and its length is less than the distance between the left and right outer sides of the oil barrel 5, and greater than the distance between the left and right inner sides of the oil barrel 5; Figures 1 to 5 As shown, the outer diameter of the core rod 10 is smaller than the longitudinal width of the conveying groove 17, and its inner diameter is larger than the diameter of the cable 18, and a plurality of holes are evenly spaced and embedded in its outer circumferential surface along its circumferential direction, each hole extending radially and vertically to the interior of the core rod 10, and then the anti-corrosion grease is pressed into the interior of the core rod 10 through the hole by the downward pressure of the oil pressure plate 20.
[0032] like Figures 1 to 5 As shown, the bottom cover plate 7 is a hollow semi-cylindrical structure arranged horizontally and longitudinally, and its inner diameter matches the outer diameter of the core rod 10, and its outer diameter is larger than the longitudinal width of the conveying groove 17; the length of the bottom cover plate 7 corresponds to the distance between the left and right outer side surfaces of the oil barrel 5, and its outer circumferential surface is arranged downward; flange plates 9 are also arranged horizontally and transversely on the front and rear sides of the outer circumferential surface of the bottom cover plate 7 near its top surface, and the upper surface of each flange plate 9 is arranged coplanar with the top surface of the bottom cover plate 7, and the two are integrally formed, and the flange plate 9 is screwed and fixed to the lower surface of the oil barrel 5, so that the bottom cover plate 7 and the oil barrel 5 are connected together, and then the core rod 10 coaxially sleeved in the bottom cover plate 7 is clamped in the conveying groove 17, and the core rod 10 is upper-limited by the left and right ends of the lower surface of the oil barrel 5;
[0033] like Figures 1 to 5 As shown, an arc groove is coaxially embedded in the inner circumferential surface of the bottom cover plate 7 relative to the inner area of the oil barrel 5, and the left and right ends of the arc groove do not extend beyond the front and rear surfaces of the bottom cover plate 7 respectively, so that an arc gap is formed between the middle part of the core rod 10 and the bottom cover plate 7 through the arc groove; an annular sealing plate 8 is coaxially provided on the front and rear surfaces of the bottom cover plate 7, and the spacing between the two sealing plates 8 is consistent with the distance between the left and right outer sides of the oil barrel 5, the outer diameter of each sealing plate 8 is consistent with the outer diameter of the bottom cover plate 7, and the two are integrally formed, the inner diameter of each sealing plate 8 is larger than the diameter of the cable 18, and smaller than the inner diameter of the core rod 10, so that when the bottom cover plate 7 is screwed to the oil barrel 5, the two ends of the conveying groove 17 are sealed by the sealing plate 8, and the anti-corrosion grease in the core rod 10 is prevented from leaking through the sealing plate 8.
[0034] The utility model is provided with a matching oil pressing plate 20 in the oil barrel 5, and the oil pressing plate 20 slides vertically up and down in the oil barrel 5, and presses the anti-corrosion grease downward into the core rod 10, and performs coating operation on the cable 18 coaxially passing through the core rod 10; Figures 1 to 4 As shown, an electric push rod 19 is vertically provided in the middle position of the upper surface of the oil barrel 5, and the pushing end of the electric push rod 19 extends vertically downward to the inside of the oil barrel 5, and is screwed and fixed to the middle position of the upper surface of the oil pressure plate 20, thereby driving the oil pressure plate 20 to make vertical up and down movements inside the oil barrel 5 relative to the area directly above the core rod 10.
[0035] like Figures 1 to 4 As shown, a bottom plate 1 is provided horizontally and longitudinally directly below the base 3, and a plurality of fixing columns 2 are provided vertically and spaced in sequence along the longitudinal direction between the base 3 and the bottom plate 1, and the base 3 is connected to the bottom plate 1 through the fixing columns 2. Furthermore, through the height coordination of the bottom plate 1, the fixing columns 2 and the base 3, it is ensured that the cables 18 in the production process pass through the oil barrel 5 through the conveying trough 17 for oiling.
[0036] The mobile assembly of the utility model includes a motor 11, a gear 12, a support plate 13, a slider 14, a slide rail 15 and a rack 16; Figures 1 to 5 As shown, the base 3 is a hollow rectangular parallelepiped structure arranged horizontally and longitudinally, and a support plate 13 arranged vertically and transversely is arranged inside it symmetrically in front and back, and each support plate 13 is fixedly connected to the inner bottom surface and the left and right inner surfaces of the base 3 respectively; a rack 16 is also arranged horizontally and longitudinally in the middle position between the two support plates 13, and the tooth surface of the rack 16 is arranged to face the right direction, and the two ends of the rack 16 are respectively fixedly connected to the inner side surface of the corresponding support plate 13, and a plurality of ribs for supporting the rack 16 are arranged vertically and spaced in sequence along the length direction between the lower surface and the inner bottom surface of the base 3; on the left and right sides just above the rack 16 In addition, slide rails 15 are arranged horizontally and longitudinally at intervals inside the base 3. The two ends of the two slide rails 15 are respectively screwed and fixed to the corresponding front and rear inner sides of the base 3, and the two ends of the lower surfaces are respectively fixedly connected to the upper surfaces of the corresponding support plates 13; sliders 14 matching the slide rails 15 are also vertically and symmetrically fixed at four right angles on the lower surface of the movable plate 4. The setting position of each slider 14 corresponds to the setting position of each slide rail 15, and they extend vertically downward to the inside of the base 3 and are respectively connected to the corresponding slide rails 15, so that the movable plate 4 is horizontally and longitudinally slidably connected to the corresponding slide rails 15 through the sliders 14;
[0037] like Figures 1 to 5As shown, a motor 11 is vertically fixed on the front side of the upper surface of the moving plate 4 and between the two slide rails 15, and the motor 11 is spaced apart from the oil bucket 5; the output end of the motor 11 vertically extends downward to the inside of the base 3, and is meshed with the rack 16 through the gear 12. Under the drive of the motor 11, the moving plate 4 of the utility model performs horizontal and longitudinal reciprocating motion on the base 3 through the meshing cooperation of the gear 12 and the rack 16, and drives the oil bucket 5 to perform horizontal and longitudinal reciprocating motion.
[0038] Among them, Figures 1 to 4 As shown, the two slide rails 15 do not interfere with the movement of the gear 12, and the upper surface of the base 3 is also provided with first strip grooves that are embedded horizontally and vertically at intervals on the left and right sides. The two first strip grooves are matched with each slider 14, and their setting positions correspond to the horizontal and longitudinal sliding tracks of the corresponding sliders 14. Therefore, by setting the first strip grooves, it is ensured that the base 3 does not interfere with the horizontal and longitudinal movement of the movable plate 4; the upper surface of the base 3 is also provided with second strip grooves that are embedded horizontally and vertically, and the second strip grooves match the output end of the motor 11, and their setting positions correspond to the horizontal and longitudinal sliding tracks of the motor 11. Therefore, by setting the second strip grooves, it is ensured that the base 3 does not interfere with the horizontal and longitudinal movement of the movable plate 4.
[0039] like Figure 2 , Figure 4 As shown, an oil filling pipe 21 is horizontally and vertically provided on the rear outer surface of the oil barrel 5 near its bottom end, and the oil filling pipe 21 is connected to the interior of the oil barrel 5, and does not interfere with the coating operation of the cable 18 passing through the core rod 10, and grease is injected into the oil barrel 5 through the oil filling pipe 21; a sealing cover 22 is coaxially sleeved at the end of the oil filling pipe 21 away from the oil barrel 5, and the sealing cover 22 is screwed and fixed to the oil filling pipe 21.
[0040] The working principle of the utility model is as follows: firstly, the mandrel 10 is coaxially sleeved in the bottom cover plate 7, and the bottom cover plate 7 is connected to the oil barrel 5 by screwing the flange plate 9 with the lower surface of the oil barrel 5, and then the mandrel 10 is clamped in the conveying groove 17, and the mandrel 10 is upper-positioned by the left and right ends of the lower surface of the oil barrel 5, and at this time, the sealing plate 8 blocks the two ends of the conveying groove 17; then, the anti-corrosion grease is pressed into the mandrel 10 through the hole by the downward movement of the oil pressing plate 20, so that the anti-corrosion grease can be evenly coated on the cable 18 passing through the mandrel 10;
[0041] During the oiling process of the cable 18, the sealing cover 22 needs to be opened, and grease needs to be continuously added to the oil barrel 5 through the oil filling pipe 21, so as to ensure continuous production;
[0042] When the cable 18 does not need to be oiled, the oil drum 5 is moved horizontally and longitudinally backward by the moving assembly, so that the cable 18 can enter the subsequent process without passing through the oil drum 5.
[0043] Beneficial effects of the utility model:
[0044] (1) The utility model uses the electric push rod 19, the oil pressing plate 20 and the core rod 10 in coordination, and relies on the downward pressure of the oil pressing plate 20 to press the anti-corrosion grease into the core rod 10, thereby avoiding the formation of cavities, so that the anti-corrosion grease on the cable 18 is more uniform and has no discontinuity;
[0045] (2) The utility model can adjust the downward pressure of the oil pressing plate 20 according to the different viscosities of anti-corrosion greases of different specifications, thereby ensuring uniform oil coating;
[0046] (3) The bottom cover plate 7 and the oil drum 5 of the utility model are screwed together, so that the core rod 10 can be fixed easily, so that the cable 18 can pass through the core rod 10 for coating with anti-corrosion grease, and the installation and disassembly are simple and convenient;
[0047] (4) The utility model has sealing plates 8 integrally formed at both ends of the bottom cover plate 7, thereby reducing the phenomenon of anti-corrosion grease flowing out from both ends of the core rod 10;
[0048] (5) The utility model provides a moving assembly so that the oil container 5 can be horizontally moved to one side when the cable 18 does not need to be oiled. This is simple and convenient, thereby achieving a dual-purpose effect.
[0049] The embodiments described above are merely descriptions of preferred implementation modes of the present invention, and are not intended to limit the concept and scope of the present invention. Without departing from the design concept of the present invention, various modifications and improvements made to the technical solutions of the present invention by ordinary engineering and technical personnel in the field should fall within the protection scope of the present invention. The technical contents for which protection is sought in the present invention have been fully recorded in the technical requirements.
Claims
1. A cable anti-corrosion grease coating device, characterized in that: The invention comprises a base, a movable plate, a movable assembly, an oil drum, a core rod, an oil pressure plate and a bottom cover plate; the movable plate is horizontally spaced on the upper surface of the base arranged horizontally and longitudinally, and is moved horizontally and longitudinally by the movable assembly; the oil drum is a hollow rectangular structure arranged horizontally and longitudinally, and is suspended on the rear side of the upper surface of the movable plate by a fixed frame; a square conveying groove is also vertically embedded in the middle position of the lower surface of the oil drum horizontally and longitudinally, the conveying groove is connected with the interior of the oil drum, and its front and rear ends extend vertically out of the front and rear surfaces of the oil drum respectively; a core rod is also horizontally and longitudinally arranged at the bottom of the oil drum relative to the position of the conveying groove, and is fixed in the conveying groove by screwing the bottom cover plate and the lower surface of the oil drum; a matching oil pressure plate is horizontally arranged inside the oil drum, and the oil pressure plate slides vertically up and down in the oil drum, and presses anti-corrosion grease downward into the core rod to coat the cable coaxially passing through the core rod.
2. A cable anti-corrosion grease coating device according to claim 1, characterized in that: The two fixing frames are both L-shaped structures arranged horizontally and transversely, and are symmetrically arranged on the lower surface of the oil barrel relative to the front and rear sides of the conveying trough; the length of each fixing frame matches the transverse length of the oil barrel, and its horizontal edges are screwed and fixed to the corresponding positions of the upper surface of the movable plate, and its vertical edges are vertically fixed to the corresponding positions of the lower surface of the oil barrel, thereby placing the oil barrel on the movable plate.
3. The cable anti-corrosion grease coating device according to claim 1, characterized in that: The core rod is a hollow cylindrical structure arranged horizontally and longitudinally, and its length is smaller than the distance between the left and right outer sides of the oil barrel, and larger than the distance between the left and right inner sides of the oil barrel; the outer diameter of the core rod is smaller than the longitudinal width of the conveying groove, and its inner diameter is larger than the cable diameter, and a plurality of holes are evenly and spacedly embedded in its outer circumferential surface along its circumferential direction, and each of the holes extends radially and vertically to the interior of the core rod, and then the anti-corrosion grease is pressed into the interior of the core rod through the hole by the downward pressure of the oil pressure plate.
4. A cable anti-corrosion grease coating device according to claim 3, characterized in that: It also includes a sealing plate and a flange plate; the bottom cover plate is a hollow semi-cylindrical structure arranged horizontally and longitudinally, and its inner diameter matches the outer diameter of the core rod, and its outer diameter is larger than the longitudinal width of the conveying groove; the length of the bottom cover plate corresponds to the distance between the left and right outer side surfaces of the oil drum, and its outer circumferential surface is arranged downward; flange plates are also horizontally and transversely arranged on the front and rear sides of the outer circumferential surface of the bottom cover plate near its top surface, and the upper surface of each flange plate is coplanar with the top surface of the bottom cover plate, and the two are integrally formed and fixed by screwing the flange plate to the lower surface of the oil drum, so that the bottom cover plate and the oil drum are connected together, and then the core rod coaxially sleeved in the bottom cover plate is clamped in the conveying groove, and the core rod is upper-limited by the left and right ends of the lower surface of the oil drum; in the The inner circumferential surface of the bottom cover plate is coaxially embedded with an arc groove relative to the internal area of the oil barrel, and the left and right ends of the arc groove do not extend beyond the front and rear surfaces of the bottom cover plate, respectively, so that an arc gap is formed between the middle part of the core rod and the bottom cover plate through the arc groove; an annular sealing plate is coaxially provided on the front and rear surfaces of the bottom cover plate, and the spacing between the two sealing plates is consistent with the distance between the left and right outer sides of the oil barrel, the outer diameter of each sealing plate is consistent with the outer diameter of the bottom cover plate, and the two are integrally formed, the inner diameter of each sealing plate is larger than the cable diameter and smaller than the inner diameter of the core rod, and when the bottom cover plate is screwed to the oil barrel, the two ends of the conveying groove are sealed by the sealing plate, and the anti-corrosion grease in the core rod is prevented from leaking through the sealing plate.
5. The cable anti-corrosion grease coating device according to claim 1, characterized in that: It also includes an electric push rod; an electric push rod is vertically arranged in the middle position of the upper surface of the oil barrel, and the pushing end of the electric push rod extends vertically downward to the interior of the oil barrel, and is screwed and fixed to the middle position of the upper surface of the oil pressure plate, thereby driving the oil pressure plate to move vertically up and down in the area inside the oil barrel relative to the core rod.
6. The cable anti-corrosion grease coating device according to claim 1, characterized in that: It also includes a bottom plate and fixed columns; a bottom plate is horizontally and longitudinally arranged directly below the base, and a number of fixed columns are vertically and spaced in sequence along the longitudinal direction between the base and the bottom plate, and the base and the bottom plate are connected together through the fixed columns, and then the height coordination of the bottom plate, the fixed columns and the base ensures that the cables in the production process pass through the transmission trough through the oil barrel for oiling.
7. The cable anti-corrosion grease coating device according to claim 1, characterized in that: The moving assembly includes a motor, a gear, a support plate, a slider, a slide rail and a rack; the base is a hollow rectangular structure arranged horizontally and longitudinally, and a support plate arranged vertically and transversely is symmetrically arranged front and back inside the base, and each of the support plates is fixedly connected to the inner bottom surface and the left and right inner surfaces of the base respectively; a rack is also arranged horizontally and longitudinally in the middle position between the two support plates, and the tooth surface of the rack is arranged toward the right side, and the two ends of the rack are respectively fixedly connected to the inner side surfaces of the corresponding support plates, and a number of rib plates for supporting the rack are vertically arranged in sequence along the length direction between the lower surface and the inner bottom surface of the base; slide rails are also arranged horizontally and longitudinally at intervals on the left and right sides directly above the rack and located inside the base, and the two ends of the two slide rails are respectively screwed and fixed to the corresponding front and rear inner side surfaces of the base, and the two ends of the lower surface are respectively The movable plate is fixedly connected to the upper surface of the corresponding support plate; sliders matching the slide rails are vertically and symmetrically fixed at four right angles on the lower surface of the movable plate, and the setting position of each slider corresponds to the setting position of each slide rail, and they extend vertically downward to the interior of the base, and are respectively connected to the corresponding slide rails, so that the movable plate is horizontally and longitudinally slidably connected to the corresponding slide rails through the sliders; a motor is vertically fixed on the front side of the upper surface of the movable plate and relative to the two slide rails, and the motor is spaced apart from the oil barrel in front and behind; the output end of the motor extends vertically downward to the interior of the base, and is meshed with the rack through a gear, and then, driven by the motor, through the meshing cooperation of the gear and the rack, the movable plate makes horizontal and longitudinal reciprocating motion on the base, and drives the oil barrel to make horizontal and longitudinal reciprocating motion.
8. The cable anti-corrosion grease coating device according to claim 7, characterized in that: The two slide rails do not interfere with the movement of the gears, and first strip grooves are vertically embedded in the upper surface of the base at intervals on the left and right sides, and the two first strip grooves are matched with each slider, and their setting positions correspond to the horizontal and longitudinal sliding tracks of the corresponding sliders. By setting the first strip grooves, it is ensured that the base does not interfere with the horizontal and longitudinal movement of the movable plate.
9. The cable anti-corrosion grease coating device according to claim 8, characterized in that: A second strip groove is also vertically embedded in the upper surface of the base in the horizontal and longitudinal directions. The second strip groove matches the output end of the motor, and its setting position corresponds to the horizontal and longitudinal sliding track of the motor. By setting the second strip groove, it is ensured that the base does not interfere with the horizontal and longitudinal movement of the movable plate.
10. The cable anti-corrosion grease coating device according to claim 1, characterized in that: An oil filling pipe is horizontally and vertically provided on the rear outer surface of the oil barrel near its bottom end, and the oil filling pipe is connected to the interior of the oil barrel and does not interfere with the coating operation of the cable passing through the core rod, so that grease is injected into the oil barrel through the oil filling pipe; a sealing cover is coaxially sleeved at the end of the oil filling pipe away from the oil barrel, and the sealing cover is screwed and fixed to the oil filling pipe.