Busbar double-layer outer sheath sleeving machine

By designing a double-layer outer sheathing machine for busbars, the machine utilizes a motor-driven gear and bearing to rotate the screw, and works in conjunction with a spiral blade and temperature control box to achieve double-layer wrapping of the busbars. This solves the problem of low installation efficiency of busbar sheaths, improves processing efficiency, and avoids busbar bending.

CN223665235UActive Publication Date: 2025-12-12GUANGDONG RIZHAO ELECTRIC CO LTD
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Patent Information

Application Number
CN202423162042.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-12-12
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The existing busbar sheath design is not conducive to the installation of double-layer sheaths, which affects the busbar processing efficiency.

Method used

Design a busbar double-layer outer sheathing machine. The double-layer sheathing of the busbar is achieved through the extrusion sheathing assembly and transition guide assembly on the first and second guide screws. The motor drives the gears and bearings to rotate the screws, and the spiral blades extrude the raw material in the plasticizing chamber and sheath it on the surface of the busbar. The temperature control box and water storage box are combined for cooling and support guidance.

Benefits of technology

This improves the efficiency of double-layer busbar sheathing, prevents busbar bending during transmission, and ensures the integrity of the sheath assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a bus double-layer outer sheath sleeving machine, which belongs to the field of bus processing, and comprises a support frame, and the top of the support frame is sequentially provided with a first fixing plate, a first temperature control box, a second fixing plate and a second temperature control box. The first fixing plate and the first temperature control box are installed and connected through a first guide screw, the second fixing plate and the second temperature control box are installed and connected through a second guide screw, the surface of one end of the first guide screw and the surface of one end of the second guide screw are each provided with an extrusion sleeving assembly, and a transition guide assembly is arranged in the middle of the top of the supporting frame. According to the utility model, the first guide screw drives the spiral blade to extrude the raw material in the plasticizing bin from the extrusion groove in the end face of the extrusion piece, the extruded first sheath is sleeved on the surface of the bus body to complete the first coating, and the second guide screw drives the spiral blade to extrude the raw material in the plasticizing bin from the extrusion groove in the end face of the extrusion piece. And sleeving the extruded second sheath on the surface of the bus body to finish secondary coating.
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Description

TECHNICAL FIELD

[0001] The utility model relates to busbar processing field, concretely to a busbar double -layer outer sheath dress machine. BACKGROUND

[0002] Insulated busbar is widely used in various substations, in some cases, the insulated busbar is often laid in the outdoor, the outer layer of the insulated busbar is prone to ultraviolet aging, corrosion or external damage, which causes the insulation performance of the busbar and the use reliable safety and the appearance to decline, therefore need to be sheathed in its outside, through the retrieval application number CN201120151700.2 disclosed an insulated busbar with outer sheath its recorded including the conductor of insulated busbar outer winding insulation layer, and in the insulation layer of both ends interval setting capacitor voltage screen, the insulation layer is equipped with the earth screen and the protective layer, in the both ends terminal of conductor, in the outermost layer of the insulated busbar add metal outer sheath, this insulated busbar has strong safety, long service life, appearance beautiful and so on Characteristics, but the above description still has the following defects when actually using: the design effect of the sheath of the existing busbar is remarkable when using, the role of the busbar sheath dressing equipment is constantly embodied, the existing busbar is not convenient for the installation of double -layer sheath, thereby influence the processing efficiency of busbar, therefore need to design a kind of busbar double -layer outer sheath dress machine of strong practicality. UTILITY MODEL CONTENTS

[0003] The utility model is to provide a kind of busbar double -layer outer sheath dress machine, to solve the problem raised in the above background art.

[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of busbar double -layer outer sheath dress machine, including support frame, the top of the support frame is sequentially equipped with first fixed plate, first temperature control box, second fixed plate and second temperature control box, the first fixed plate and first temperature control box are connected by first guide screw installation, the second fixed plate and second temperature control box are connected by second guide screw installation, the surface of the first guide screw and second guide screw one end is equipped with extrusion dress component, the middle part of the top of support frame is equipped with transition guide component;

[0005] Extrusion dress component, the extrusion dress component includes the spiral blade of being sleeved on the surface of the first guide screw and second guide screw one end, the surface of the first guide screw and second guide screw one end is sleeved with plasticizing bin, two the spiral blade is arranged in the inside of plasticizing bin, the edge of the inner wall of two plasticizing bin is clamped with two extrusion pieces, the end surface of the first guide screw and second guide screw one end is rotatably connected with the inner wall of two extrusion pieces, the other end of two the extrusion piece is provided with extrusion groove, the inside of the first guide screw and second guide screw is designed as hollow, and is connected with busbar body and is inserted;

[0006] The transition guide assembly comprises a mounting plate installed in the middle of the top of the support frame, one side of the mounting plate is provided with a plurality of second motors, the output shafts of the plurality of second motors are fixedly connected with guide wheels, the side of the plurality of guide wheels is provided with guide grooves, and the inner wall of the guide grooves is in abutment with the surface of the bus body.

[0007] As a preferred scheme of the utility model: the middle of the surface of the first fixed plate and the second fixed plate is provided with a rotating hole, the inner wall of the two rotating holes is rotatably connected with the surface of the other end of the first guide screw and the second guide screw through a bearing.

[0008] As a preferred scheme of the utility model: one side of the first fixed plate and the second fixed plate is provided with a first motor, the output shafts of the two first motors are fixedly connected with drive gears, and the side of the two drive gears is respectively meshed with the driven gears provided on the surface of the other end of the first guide screw and the second guide screw.

[0009] As a preferred scheme of the utility model: one side of the first temperature control box and the second temperature control box is provided with a through groove, the inner wall of the two through grooves is clampedly connected with the surface of the two plasticizing bins, the other side of the first temperature control box and the second temperature control box is provided with a cover, the middle of the surface of the two covers is provided with a through hole, the inner wall of the two through holes is clampedly connected with the side of the two extruding pieces, and the top of the first temperature control box and the second temperature control box is provided with a feeding hopper.

[0010] As a preferred scheme of the utility model: the region between the first temperature control box and the mounting plate is provided with a first water storage tank, and the region of one side of the second temperature control box is provided with a second water storage tank.

[0011] As a preferred scheme of the utility model: the structure of the surface and the inside of the second guide screw is greater than that of the first guide screw.

[0012] As a preferred scheme of the utility model: the other side of the first fixed plate and the second fixed plate is provided with a control panel, and the first motor and the second motor are electrically connected with an external power supply through the control panel.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] (1) through the first fixed plate on the first motor drive gear rotation, drive gear from the driven gear and bearing drive first guide screw in the first temperature control box in the plasticization warehouse rotation, first guide screw rotation at the same time drive the surface of the spiral blade will be extruded from the extrusion piece end face extrusion slot in the plasticization warehouse raw materials, extruded first sheath set in from the second guide screw inside the bus body surface, complete the first coating, bus body after liquid cooling and transition guide into the second guide screw inside, the first motor on the second fixed plate drive gear rotation, drive gear from the driven gear and bearing drive second guide screw in the second temperature control box in the plasticization warehouse rotation, second guide screw rotation at the same time drive the surface of the spiral blade will be extruded from the extrusion piece end face extrusion slot in the plasticization warehouse raw materials, extruded second sheath set in from the second guide screw inside the bus body surface, complete the second coating, thereby facilitating the efficiency of the bus body double layer coating;

[0015] (2) through the installation plate surface of a plurality of second motor drive a plurality of guide wheel rotation, a plurality of guide wheels cooperate with a plurality of guide slots for supporting the bus body after the first coating guide, thereby avoiding the transmission process of the bus body too long resulting in overall bending, thereby affecting the effect of secondary coating. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the structure schematic diagram of the utility model;

[0017] Figure 2 It is the partial structure schematic diagram of the utility model;

[0018] Figure 3 It is the extrusion set component structure schematic diagram of the utility model;

[0019] Figure 4 It is the transition guide component structure schematic diagram of the utility model.

[0020] In the drawing: 1, support frame; 11, first fixed plate; 12, first temperature control box; 13, second fixed plate; 14, second temperature control box; 15, first guide screw; 16, second guide screw; 17, bus body; 18, rotating hole; 19, bearing; 110, first motor; 111, drive gear; 112, driven gear; 113, through slot; 114, cover; 115, feed hopper; 116, first water storage tank; 117, second water storage tank; 118, control panel; 2, extrusion set component; 21, spiral blade; 22, plasticization warehouse; 23, extrusion piece; 24, extrusion slot; 3, transition guide component; 31, mounting plate; 32, second motor; 33, guide wheel; 34, guide slot. DETAILED DESCRIPTION

[0021] In order to make the purposes, technical schemes and advantages of the embodiments of the present application clearer, the technical schemes of the embodiments of the present application will be described clearly and completely below in conjunction with the drawings of the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0022] Please refer to Figures 1-4 The bus double-layer outer sheath sleeving machine comprises a support frame 1, the top of the support frame 1 is sequentially provided with a first fixed plate 11, a first temperature control box 12, a second fixed plate 13 and a second temperature control box 14, the first fixed plate 11 and the first temperature control box 12 are connected through a first guide screw 15, the second fixed plate 13 and the second temperature control box 14 are connected through a second guide screw 16, the surfaces of one ends of the first guide screw 15 and the second guide screw 16 are both provided with an extrusion sleeving assembly 2, and the middle part of the top of the support frame 1 is provided with a transition guide assembly 3.

[0023] Please refer to Figure 3 The extrusion sleeving assembly 2 comprises helical leaves 21 sleeved on the surfaces of one ends of the first guide screw 15 and the second guide screw 16, the surfaces of one ends of the first guide screw 15 and the second guide screw 16 are both sleeved with plasticizing bins 22, the two helical leaves 21 are both arranged in the interiors of the plasticizing bins 22, one ends of the two plasticizing bins 22 are clamped with the edges of the inner walls of two extrusion pieces 23, the end faces of one ends of the first guide screw 15 and the second guide screw 16 are rotatably connected with the inner walls of the two extrusion pieces 23, the other ends of the two extrusion pieces 23 are provided with extrusion grooves 24, the interiors of the first guide screw 15 and the second guide screw 16 are both designed as hollow, and the first guide screw 15 and the second guide screw 16 are both connected with a bus body 17.

[0024] Specific use: the first motor 110 on the first fixed plate 11 drives the drive gear 111 to rotate, the drive gear 111 cooperates with the driven gear 112 and the bearing 19 to drive the first guide screw 15 to rotate in the plasticizing bin 22 in the first temperature control box 12, the first guide screw 15 rotates at the same time to drive the surface spiral blade 21 to extrude the raw materials in the plasticizing bin 22 from the extrusion slot 24 on the end surface of the extrusion piece 23, the extruded first sheath is sleeved on the surface of the busbar body 17 passing out from the inside of the first guide screw 15 to complete the first coating, the busbar body 17 passes through liquid cooling and transition guide and enters the inside of the second guide screw 16, the first motor 110 on the second fixed plate 13 drives the drive gear 111 to rotate, the drive gear 111 cooperates with the driven gear 112 and the bearing 19 to drive the second guide screw 16 to rotate in the plasticizing bin 22 in the second temperature control box 14, the second guide screw 16 rotates at the same time to drive the surface spiral blade 21 to extrude the raw materials in the plasticizing bin 22 from the extrusion slot 24 on the end surface of the extrusion piece 23, the extruded second sheath is sleeved on the surface of the busbar body 17 passing out from the inside of the second guide screw 16 to complete the second coating, so as to improve the efficiency of double-layer coating of the busbar body 17.

[0025] Please refer to Figure 4 , the transition guide assembly 3 comprises the mounting plate 31 installed on the top middle part of the support frame 1, the mounting plate 31 is provided with a plurality of second motors 32 on one side, the output shafts of the plurality of second motors 32 are fixedly connected with guide wheels 33, the side of the plurality of guide wheels 33 is provided with guide grooves 34, and the inner wall of the guide groove 34 is in abutment with the surface of the busbar body 17.

[0026] Specific use: the plurality of second motors 32 on the surface of the mounting plate 31 drive the plurality of guide wheels 33 to rotate, the plurality of guide wheels 33 cooperate with the plurality of guide grooves 34 to support and guide the busbar body 17 after the first coating, so as to avoid that the busbar body 17 is too long to cause overall bending during transmission, thereby affecting the effect of the second coating.

[0027] Please refer to Figure 2 , the middle part of the surface of the first fixed plate 11 and the second fixed plate 13 is provided with a rotating hole 18, and the inner walls of the two rotating holes 18 are rotatably connected with the surfaces of the other ends of the first guide screw 15 and the second guide screw 16 through the bearings 19.

[0028] Specific use: the surfaces of the other ends of the first guide screw 15 and the second guide screw 16 cooperate with the two bearings 19 to be rotatably connected with the inner walls of the two rotating holes 18 on the surfaces of the first fixed plate 11 and the second fixed plate 13, so as to facilitate the device to normally extrude the sheath.

[0029] Please refer to Figure 2 , Figure 3A first motor 110 is provided on one side of the first fixing plate 11 and the second fixing plate 13. The output shafts of the two first motors 110 are fixedly connected to drive gears 111. The sides of the two drive gears 111 are respectively meshed with driven gears 112 provided on the other end surfaces of the first guide screw 15 and the second guide screw 16.

[0030] In practical use: the first motor 110 on the first fixed plate 11 drives the drive gear 111 to rotate. The drive gear 111, in conjunction with the driven gear 112 and the bearing 19, drives the first guide screw 15 to rotate in the plasticizing chamber 22 inside the first temperature control box 12. The first motor 110 on the second fixed plate 13 drives the drive gear 111 to rotate. The drive gear 111, in conjunction with the driven gear 112 and the bearing 19, drives the second guide screw 16 to rotate in the plasticizing chamber 22 inside the second temperature control box 14. This facilitates the normal rotation of the first guide screw 15 and the second guide screw 16.

[0031] Please see Figure 2 , Figure 3 The first temperature control box 12 and the second temperature control box 14 are provided with through grooves 113 on one side. The inner walls of the two through grooves 113 are engaged with the surfaces of the two plasticizing chambers 22. The first temperature control box 12 and the second temperature control box 14 are provided with caps 114 on the other side. The two caps 114 are provided with through holes in the middle of their surfaces. The inner walls of the two through holes are engaged with the sides of the two extrusion parts 23. The first temperature control box 12 and the second temperature control box 14 are provided with feed funnels 115 at the top.

[0032] In practical use: the sides of the two extruders 23 engage with the inner walls of the through holes on the surfaces of the two caps 114, thereby facilitating their docking and fixing with the two plasticizing chambers 22 inside the first temperature control box 12 and the second temperature control box 14, and preventing blockage during extrusion.

[0033] Please see Figure 2 A first water storage tank 116 is provided in the area between the first temperature control box 12 and the mounting plate 31, and a second water storage tank 117 is provided on one side of the second temperature control box 14.

[0034] In practical use: the liquid inside the first water tank 116 and the second water tank 117 is used to cool down the covered busbar body 17.

[0035] Please see Figure 1 The surface and internal structure of the second guide screw 16 are larger than the surface and internal structure of the first guide screw 15.

[0036] In practical use: the surface and internal structure of the second guide screw 16 are larger than the surface and internal structure of the first guide screw 15, which facilitates the double-layer outer sheathing of the busbar body 17.

[0037] Please refer to Figure 1 The other side of the first fixed plate 11 and the second fixed plate 13 is provided with a control panel 118, and the first motor 110 and the second motor 32 are electrically connected with the external power supply through the control panel 118.

[0038] Specific use: the first motor 110 and the second motor 32 are controlled by the control panel 118, so that the device is convenient for double-layer outer sheath covering of the bus body 17.

[0039] In use, the first motor 110 on the first fixed plate 11 drives the driving gear 111 to rotate, the driving gear 111 cooperates with the driven gear 112 and the bearing 19 to drive the first guide screw 15 to rotate in the plasticizing bin 22 in the first temperature control box 12, and the first guide screw 15 drives the spiral blade 21 on the surface to extrude the raw materials in the plasticizing bin 22 from the extrusion slot 24 on the end surface of the extrusion piece 23, and the extruded first sheath is sleeved on the surface of the bus body 17 passing through the first guide screw 15 to complete the first covering, the bus body 17 is cooled by liquid, and then the second motor 32 on the surface of the mounting plate 31 drives the guide wheel 33 to rotate, the guide wheel 33 cooperates with the guide groove 34 to support and guide the bus body 17 after the first covering, so that the bus body 17 is not bent too much during transmission, and the effect of the second covering is affected, the bus body 17 after the transition and guidance enters the second guide screw 16, the first motor 110 on the second fixed plate 13 drives the driving gear 111 to rotate, the driving gear 111 cooperates with the driven gear 112 and the bearing 19 to drive the second guide screw 16 to rotate in the plasticizing bin 22 in the second temperature control box 14, and the second guide screw 16 drives the spiral blade 21 on the surface to extrude the raw materials in the plasticizing bin 22 from the extrusion slot 24 on the end surface of the extrusion piece 23, and the extruded second sheath is sleeved on the surface of the bus body 17 passing through the second guide screw 16 to complete the second covering, so as to improve the efficiency of the double-layer covering of the bus body 17.

[0040] The contents not described in detail in the description belong to the prior art known to those skilled in the art, although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the utility model shall be included in the protection scope of the utility model.

Claims

1. A busbar double outer sheath sleeving machine characterized by, The utility model provides a temperature control device, including support frame (1), the top of support frame (1) is equipped with first fixed plate (11) in proper order, first temperature control box (12), second fixed plate (13) and second temperature control box (14), first fixed plate (11) and first temperature control box (12) between through first guide screw (15) installation connection, second fixed plate (13) and second temperature control box (14) between through second guide screw (16) installation connection, first guide screw (15) and second guide screw (16) one end's surface all is equipped with extrusion suit component (2), the middle part of support frame (1) top is equipped with transition guide component (3), The utility model provides a temperature control device, including support frame (1), the top of support frame (1) is equipped with first fixed plate (11) in proper order, first temperature control box (12), second fixed plate (13) and second temperature control box (14), first fixed plate (11) and first temperature control box (12) between through first guide screw (15) installation connection, second fixed plate (13) and second temperature control box (14) between through second guide screw (16) installation connection, first guide screw (15) and second guide screw (16) one end's surface all is equipped with extrusion suit component (2), the middle part of support frame (1) top is equipped with transition guide component (3), The utility model provides a temperature control device, including support frame (1), the top of support frame (1) is equipped with first fixed plate (11) in proper order, first temperature control box (12), second fixed plate (13) and second temperature control box (14), first fixed plate (11) and first temperature control box (12) between through first guide screw (15) installation connection, second fixed plate (13) and second temperature control box (14) between through second guide screw (16) installation connection, first guide screw (15) and second guide screw (16) one end's surface all is equipped with extrusion suit component (2), the middle part of support frame (1) top is equipped with transition guide component (3), 2. The bus double-layer outer sheath sleeving machine according to claim 1, characterized in that: The utility model provides a temperature control device, including support frame (1), the top of support frame (1) is equipped with first fixed plate (11) in proper order, first temperature control box (12), second fixed plate (13) and second temperature control box (14), first fixed plate (11) and first temperature control box (12) between through first guide screw (15) installation connection, second fixed plate (13) and second temperature control box (14) between through second guide screw (16) installation connection, first guide screw (15) and second guide screw (16) one end's surface all is equipped with extrusion suit component (2), the middle part of support frame (1) top is equipped with transition guide component (3), 3. The bus double outer jacket sleeving machine of claim 1, wherein: The utility model provides a temperature control device, including support frame (1), the top of support frame (1) is equipped with first fixed plate (11) in proper order, first temperature control box (12), second fixed plate (13) and second temperature control box (14), first fixed plate (11) and first temperature control box (12) between through first guide screw (15) installation connection, second fixed plate (13) and second temperature control box (14) between through second guide screw (16) installation connection, first guide screw (15) and second guide screw (16) one end's surface all is equipped with extrusion suit component (2), the middle part of support frame (1) top is equipped with transition guide component (3), 4. The bus double outer jacket sleeving machine of claim 1, wherein: The first temperature control box (12) and the second temperature control box (14) are provided with a through groove (113) on one side, the inner walls of the two through grooves (113) are clamped and connected with the surfaces of the two plasticizing bins (22), the other sides of the first temperature control box (12) and the second temperature control box (14) are provided with a cover (114), the middle parts of the surfaces of the two covers (114) are provided with a through hole, the inner walls of the two through holes are clamped and connected with the side edges of the two extrusion pieces (23), and the top parts of the first temperature control box (12) and the second temperature control box (14) are provided with a feeding hopper (115).

5. The bus double outer jacket sleeving machine of claim 1, wherein: The area between the first temperature control box (12) and the mounting plate (31) is provided with a first water storage tank (116), and the side area of the second temperature control box (14) is provided with a second water storage tank (117).

6. The bus double outer jacket sleeving machine of claim 1, wherein: The surface and the internal structure of the second guide screw (16) are larger than those of the first guide screw (15).

Citation Information

Patent Citations

  • Insulating bus with external sheath

    CN202034115U