A cable routing device for new energy vehicles and its cable routing method
By designing a new energy vehicle cable wiring device with skateboard bracket, slide rail, engaging wheel assembly and telescopic engager, the problems of operation difficulty and cable friction damage when the cable length is long are solved, and efficient and safe cable wiring effect is achieved.
Patent Information
- Application Number
- CN202310579139.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-22
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2043-05-22
AI Technical Summary
The existing new energy vehicle cable wiring device is difficult to use when the cable length is long, and when the cable is arranged in a curved manner, the cable is prone to friction with the rotating shaft and the engagement wheel assembly, resulting in cable damage.
A new energy vehicle cable wiring device including a skateboard bracket, a slide rail, an engagement wheel assembly and a telescopic engagement device is designed. Through the design of the slide bracket and slide rail, the cable can be easily placed and moved; the engaging wheel assembly reduces friction through the anti-slip rubber leather and snap strip structure; the telescopic engaging device solves the friction problem of the cable when it is bent by controlling the speed difference of the engaging wheel assembly.
This device improves the cable wiring efficiency, especially when the cable length is long, reducing the difficulty of operation; by reducing the friction between the engagement wheel assembly and the cable, the service life of the cable is extended and cable damage is avoided.
Smart Images

Figure CN116730116B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cable wiring, and particularly to a cable wiring device for a new energy vehicle and a wiring method thereof. Background Technique
[0002] A new energy vehicle refers to a vehicle that uses unconventional vehicle fuel as the power source (or uses conventional vehicle fuel and adopts a new type of vehicle-mounted power device), integrates advanced technologies in the power control and drive aspects of the vehicle, and forms a vehicle with advanced technical principles, new technologies, and new structures. New energy vehicles include pure electric vehicles, range-extended electric vehicles, hybrid vehicles, fuel cell electric vehicles, hydrogen engine vehicles, etc.
[0003] For the existing wiring device, reference can be made to the Chinese invention patent with the authorization announcement number CN114873372A, which discloses a cable wiring device for a new energy vehicle and a wiring method thereof. "A cable wiring device for a new energy vehicle includes a support box. The bottom end of the support box is fixedly connected to a bottom plate. An electric push rod is installed at the top end of the bottom plate. The output shaft end of the electric push rod is connected to a cross plate. The left and right parts of the top end of the cross plate are fixedly connected with connecting shafts respectively. The circumferential outer walls of the connecting shafts are all slidably matched with the bottom side wall of the support box. The upper and lower parts of the support box are both provided with support plates. The bottom end of the lower support plate is fixedly connected to the top ends of the connecting shafts. The support plates are in a "U" shape. A support roller is rotatably connected to the middle of each support plate through a shaft. The support roller includes a plurality of support wheels. A linkage shaft is fixedly connected between every two adjacent support wheels. A first annular groove is arranged in the middle of the support wheel. A motor is installed at the right end of the support box. The output shaft end of the motor is fixedly connected to a first rotating shaft. The left end of the first rotating shaft is rotatably connected to the left inner wall of the support box. A second rotating shaft is arranged above the first rotating shaft. A plurality of second annular grooves corresponding to the first annular grooves are arranged in the middle of the first rotating shaft and the second rotating shaft respectively.
[0004] When the above device is in use, first control the rotation of the handwheel and the telescopic movement of the electric push rod to make the distance between the two linkage shafts the shortest, and make the mark on the elastic rope located at the middle zero point of the scale line. Then rotate the handwheel in the reverse direction and control the electric push rod to act in the reverse direction to insert each cable into the relatively middle area of the corresponding first annular groove and the second annular groove. During this operation process, each cable needs to be inserted into the relatively middle area of the corresponding first annular groove and the second annular groove. This operation means that when the cable is long, the device is more difficult to use. At the same time, in this device, the first rotating shaft is driven to rotate by the motor, and the first gear and the second gear are engaged, so as to drive the second rotating shaft to rotate, and then drive multiple cables to move. When the device arranges the cables in a bending manner, the cables will rub against the first rotating shaft and the second rotating shaft, resulting in damage to the cables. Summary of the Invention
[0005] The present invention provides a cable wiring device for a new energy vehicle and its wiring method, which solves the problems raised in the above background technology.
[0006] The present invention provides the following technical solutions: A cable wiring device for a new energy vehicle, including a skateboard bracket, an outer wall of the skateboard bracket is fixedly assembled with a slide rail, an outer wall of the skateboard bracket away from the slide rail is fixedly assembled with a handle one, an outer edge of the slide rail is slidably sleeved with a right support frame, a first chute is opened on an outer wall of the right support frame close to the slide rail, a right fixing ring is fixedly assembled on an outer wall of the right support frame away from the first chute, a support skeleton is fixedly assembled on an outer wall of the right support frame, an arc groove is opened on an outer wall of the support skeleton, a cleaning sponge is fixedly assembled on an outer wall of the arc groove, a left support frame is fixedly assembled at one end of the support skeleton away from the right support frame, a left fixing ring is fixedly assembled on an outer wall of the left support frame, driving motors are fixedly assembled on inner walls of the left fixing ring and the right support frame, a moving fixing frame is fixedly assembled on an outer wall of the first chute close to the right fixing ring, a telescopic column is fixedly assembled on a top outer wall of the moving fixing frame, a telescopic main body is arranged on a top of the telescopic column, a telescopic fixing plate is fixedly assembled on a top of the telescopic main body, a moving fixing frame is opened on an outer wall of the moving fixing frame away from the telescopic column, an installation rotating groove is opened on an outer wall of the moving fixing frame away from the telescopic column, a rotating shaft is rotatably connected in an inner cavity of the installation rotating groove, a meshing wheel assembly is rotatably sleeved on an outer edge of the rotating shaft, a fixing seat is rotatably sleeved at one end of the rotating shaft away from the moving fixing frame, a support fixing groove is opened on an outer wall of the fixing seat away from the rotating shaft, a clamping column is sleeved on an inner wall of the support fixing groove, an L-shaped plate is fixedly assembled at one end of the clamping column away from the fixing seat, a telescopic rod is fixedly assembled at one end of the L-shaped plate away from the clamping column, a connecting plate is fixedly assembled on an outer wall of the telescopic rod, and a handle two is fixedly assembled on an outer wall of the connecting plate away from the telescopic rod.
[0007] Preferably, a card slot opening is provided on the outer wall of the rotating shaft, and the position of the card slot opening corresponds to the position of the meshing wheel assembly.
[0008] Preferably, the meshing wheel assembly includes a pulley main body. A pulley rotating groove is provided on the outer wall of the pulley main body. A pulley card slot and a sliding groove fixing groove are respectively provided on the outer wall of the pulley main body. A sliding groove installation groove is provided on the inner wall of the pulley rotating groove. A telescopic meshing device is fixedly assembled on the inner wall of the sliding groove installation groove. A clamping seat is fixedly assembled at the telescopic end of the telescopic meshing device. An anti-slip rubber skin is sleeved on the outer wall of the pulley main body. A support card strip is fixedly assembled on the outer wall of the anti-slip rubber skin close to the pulley main body. Anti-slip lines are provided on the outer wall of the anti-slip rubber skin away from the pulley main body. Fixed card strips are fixedly assembled on the outer walls at both ends of the anti-slip rubber skin.
[0009] Preferably, the position of the clamping seat corresponds to the position of the card slot opening. The fixed card strip is located on the inner wall of the sliding groove installation groove. The support card strip is clamped with the inner wall of the pulley card slot. A plurality of the meshing wheel assemblies are fixedly assembled with the rotating shaft through the clamping seat. The pulley card slot inclines 5 degrees towards the side close to the cleaning sponge.
[0010] Preferably, a driving structure is arranged in the inner cavity of the moving fixing frame. Its driving motor is meshed with the rotating shaft through the moving fixing frame. The telescopic fixing plate is fixedly assembled with the outer wall of the sliding plate bracket. The sliding rail is slidably sleeved with the inner wall of the first sliding groove.
[0011] Preferably, the cleaning sponge is located at the outer wall of the meshing wheel assembly. The number of the moving fixing frames and the fixed seats is two groups each. The structures of the two groups of moving fixing frames and fixed seats are symmetrically arranged up and down.
[0012] Preferably, the number of the clamping columns and the L-shaped plates is two groups, and the two groups of L-shaped plates are respectively located at the telescopic ends of both ends of the telescopic rod. The two groups of fixed seats are sleeved with the inner wall of the support fixing groove through the clamping columns to achieve fixation.
[0013] Preferably, the driving motor drives the rotating shaft to rotate towards the side close to the cleaning sponge through the moving fixing frame.
[0014] Preferably, three switches are respectively inlaid in the inner cavities of the first handle and the second handle, and the three switches are respectively used to control the operation of the telescopic main body, the telescopic meshing device and the driving motor. A power supply is inlaid in the inner cavity of the sliding plate bracket.
[0015] A wiring method for a cable wiring device of a new energy vehicle includes the following steps:
[0016] S1: When using this new energy vehicle cable wiring device, first press the three switches respectively embedded in the inner cavities of the first handle and the second handle to test whether the new energy vehicle cable wiring device can operate normally. When using this new energy vehicle cable wiring device for wiring, separate the clamping post from the support fixing groove, and control the telescopic main body through the switch, so that the telescopic main body drives the movable fixing frame through the driving motor, and the movable fixing frame drives the right support frame to slide along the slide rail, thereby separating the two right support frames;
[0017] S2: After the two right support frames are separated, in the new energy vehicle cable wiring device, the distance between the two meshing wheel assemblies allows the cable to be conveniently placed between the two meshing wheel assemblies. After placing it well, control the telescopic main body through the switch, so that the telescopic main body drives the movable fixing frame through the driving motor, and the movable fixing frame drives the right support frame to slide along the slide rail, thereby aggregating the two right support frames and clamping the cable by the two meshing wheel assemblies;
[0018] S3: After the two meshing wheel assemblies clamp the cable, the operator holds the first handle and the second handle, controls the driving motor through the switch, so that the driving motor drives the rotating shaft to rotate through the movable fixing frame, uses the rotating shaft to drive the meshing wheel assembly, and the meshing wheel assembly pulls the cable. At the same time, several meshing wheel assemblies pull several cables at the same time to realize the parallel arrangement of several cables;
[0019] S4: When several cables need to be bent and arranged to the right, control the telescopic coupler through the switch on the right, so that the telescopic coupler drives the clamping seat to gradually contract from the right to the left, thereby realizing a speed difference between several meshing wheel assemblies, and then solving the problem that the cable will rub against the meshing wheel assembly when the cable is bent and arranged.
[0020] The present invention has the following beneficial effects:
[0021] 1. For this new energy vehicle cable wiring device, the anti-slip rubber skin is sleeved on the outer wall of the pulley main body through the support card strip and the fixed card strip, so that the anti-slip rubber skin can be replaced to solve the problem that after the meshing wheel assembly is used for a period of time, the friction force between the outer wall of the anti-slip rubber skin and the cable decreases, resulting in slippage when the device is wiring.
[0022] 2. For this new energy vehicle cable wiring device, control the telescopic coupler through the switch on the right, so that the telescopic coupler drives the clamping seat to gradually contract from the right to the left, thereby realizing a speed difference between several meshing wheel assemblies, and then solving the problem that the cable will rub against the meshing wheel assembly when the cable is bent and arranged.
[0023] 3. The cable routing device for new energy vehicles solves the problem that in traditional devices, the cable is too long to be used because it needs to be inserted into the device. When this device is in use, the cable can be directly placed between two sets of meshing wheel assemblies from the side far away from the skateboard bracket through the connection method of inserting the clamping post into the support fixing groove. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 is a schematic three - dimensional structure diagram of the present invention;
[0025] Figure 2 is a schematic structure diagram of the support skeleton of the present invention;
[0026] Figure 3 is a schematic structure diagram of the cleaning sponge of the present invention;
[0027] Figure 4 is a schematic structure diagram of the rotating shaft of the present invention;
[0028] Figure 5 is a schematic structure diagram of the anti - slip rubber skin of the present invention;
[0029] Figure 6 is a schematic structure diagram of the chute installation groove of the present invention;
[0030] Figure 7 is a schematic installation structure diagram of the rotating shaft and the telescopic meshing device of the present invention.
[0031] In the figure: 1. Skateboard bracket; 2. Slide rail; 3. Handle 1; 4. Right support frame; 5. Right fixing ring; 6. Chute 1; 7. Support skeleton; 8. Arc groove; 9. Left support frame; 10. Left fixing ring; 11. Driving motor; 12. Telescopic fixing plate; 13. Telescopic main body; 14. Telescopic column; 15. Moving fixing frame; 16. Installation rotating groove; 17. Rotating shaft; 1701. Card slot opening; 18. Meshing wheel assembly; 1801. Pulley main body; 1802. Pulley rotating groove; 1803. Pulley card slot; 1804. Chute fixing groove; 1805. Chute installation groove; 1806. Telescopic meshing device; 1807. Clamping seat; 1808. Anti - slip rubber skin; 1809. Support card strip; 1810. Anti - slip pattern; 1811. Fixed card strip; 19. Fixed seat; 20. Support fixing groove; 21. Clamping post; 22. L - shaped plate; 23. Telescopic rod; 24. Connecting plate; 25. Handle 2; 26. Cleaning sponge. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0032] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0033] Please refer to Figure 1-7 , a cable routing device for a new energy vehicle, including a skateboard bracket 1, a slide rail 2 is fixedly assembled on the outer wall of the skateboard bracket 1, a first handle 3 is fixedly assembled on the outer wall of the skateboard bracket 1 away from the slide rail 2, a right support frame 4 is slidably sleeved on the outer edge of the slide rail 2, a first chute 6 is opened on the outer wall of the right support frame 4 close to the slide rail 2, a right fixing ring 5 is fixedly assembled on the outer wall of the right support frame 4 away from the first chute 6, a support skeleton 7 is fixedly assembled on one outer wall of the right support frame 4, an arc groove 8 is opened on the outer wall of the support skeleton 7, a cleaning sponge 26 is fixedly assembled on the outer wall of the arc groove 8, a left support frame 9 is fixedly assembled at one end of the support skeleton 7 away from the right support frame 4, a left fixing ring 10 is fixedly assembled on the outer wall of the left support frame 9, driving motors 11 are fixedly assembled on the inner walls of the left fixing ring 10 and the right support frame 4, a moving fixing frame 15 is fixedly assembled on the outer wall of the first chute 6 close to the right fixing ring 5, a telescopic column 14 is fixedly assembled on the top outer wall of the moving fixing frame 15, a telescopic main body 13 is arranged at the top of the telescopic column 14, a telescopic fixing plate 12 is fixedly assembled on the top of the telescopic main body 13, a moving fixing frame 15 is opened on the outer wall of the moving fixing frame 15 away from the telescopic column 14, an installation rotating groove 16 is opened on the outer wall of the moving fixing frame 15 away from the telescopic column 14, a rotating shaft 17 is rotatably connected in the inner cavity of the installation rotating groove 16, a meshing wheel assembly 18 is rotatably sleeved on the outer edge of the rotating shaft 17, a fixing seat 19 is rotatably sleeved at one end of the rotating shaft 17 away from the moving fixing frame 15, a support fixing groove 20 is opened on the outer wall of the fixing seat 19 away from the rotating shaft 17, a clamping column 21 is sleeved on the inner wall of the support fixing groove 20, an L-shaped plate 22 is fixedly assembled at one end of the clamping column 21 away from the fixing seat 19, a telescopic rod 23 is fixedly assembled at one end of the L-shaped plate 22 away from the clamping column 21, a connecting plate 24 is fixedly assembled on the outer wall of the telescopic rod 23, and a second handle 25 is fixedly assembled on the outer wall of the connecting plate 24 away from the telescopic rod 23.
[0034] Wherein, a card slot opening 1701 is opened on the outer wall of the rotating shaft 17, and the position of the card slot opening 1701 corresponds to the position of the meshing wheel assembly 18.
[0035] Among them, the meshing wheel assembly 18 includes a pulley main body 1801. A pulley rotating groove 1802 is formed on the outer wall of the pulley main body 1801. A pulley clamping groove 1803 and a chute fixing groove 1804 are respectively formed on the outer wall of the pulley main body 1801. A chute installation groove 1805 is formed on the inner wall of the pulley rotating groove 1802. A telescopic meshing device 1806 is fixedly assembled on the inner wall of the chute installation groove 1805. A clamping seat 1807 is fixedly assembled on the telescopic end of the telescopic meshing device 1806. An anti-slip rubber skin 1808 is sleeved on the outer wall of the pulley main body 1801. A support clamping strip 1809 is fixedly assembled on the outer wall of the anti-slip rubber skin 1808 close to the pulley main body 1801. An anti-slip pattern 1810 is formed on the outer wall of the anti-slip rubber skin 1808 away from the pulley main body 1801. Fixed clamping strips 1811 are fixedly assembled on the outer walls of both ends of the anti-slip rubber skin 1808. In the above structure, the anti-slip rubber skin 1808 is sleeved on the outer wall of the pulley main body 1801 through the support clamping strip 1809 and the fixed clamping strip 1811, so that the anti-slip rubber skin 1808 can be replaced, to solve the problem that after the meshing wheel assembly 18 is used for a period of time, the friction between the outer wall of the anti-slip rubber skin 1808 and the cable decreases, resulting in slippage when the device arranges the cable.
[0036] Among them, the position of the clamping seat 1807 corresponds to the position of the card slot opening 1701. The fixed clamping strip 1811 is located on the inner wall of the chute installation groove 1805. The support clamping strip 1809 is clamped with the inner wall of the pulley clamping groove 1803. A number of meshing wheel assemblies 18 are fixedly assembled with the rotating shaft 17 through the clamping seat 1807. The pulley clamping groove 1803 is inclined five degrees towards the side close to the cleaning sponge 26. In the above structure, through the pulley clamping groove 1803 being inclined five degrees towards the side close to the cleaning sponge 26, the anti-slip rubber skin 1808 and the pulley main body 1801 can be fixed through the friction generated by the clamping of the support clamping strip 1809 and the pulley clamping groove 1803, thereby solving the problem that the anti-slip rubber skin 1808 will fall off during the operation of the device.
[0037] Among them, a driving structure is arranged in the inner cavity of the movable fixing frame 15. Its driving motor 11 is meshed with the rotating shaft 17 through the movable fixing frame 15. The telescopic fixing plate 12 is fixedly assembled with the outer wall of the sliding plate bracket 1. The sliding rail 2 is slidably sleeved with the inner wall of the chute one 6. In the above structure, through the telescopic fixing plate 12, the telescopic main body 13 can drive the right support frame 4 and the movable fixing frame 15 to move through the telescopic column 14.
[0038] Among them, the cleaning sponge 26 is located at the outer wall of the meshing wheel assembly 18. The number of the movable fixing frames 15 and the fixed seats 19 is two groups each. The structures of the two groups of movable fixing frames 15 and fixed seats 19 are symmetrically arranged up and down. In the above structure, through the cleaning sponge 26, while the meshing wheel assembly 18 is rotating, the grease on the outer wall of the meshing wheel assembly 18 can be wiped by the cleaning sponge 26, thereby preventing the problem of slipping between the meshing wheel assembly 18 and the cable.
[0039] Among them, the number of the clamping posts 21 and the L-shaped plates 22 is two groups, and the two groups of L-shaped plates 22 are respectively located at the telescopic ends of both ends of the telescopic rod 23. The two groups of fixed seats 19 are fixed by sleeving the clamping posts 21 on the inner wall of the support fixing groove 20. In the above structure, through the telescopic rod 23, the distance between the two groups of L-shaped plates 22 can be changed. Thus, when the device clamps cables of different thicknesses through the meshing wheel assembly 18, the telescopic rod 23 can drive the L-shaped plates 22 to keep the clamping posts 21 engaged with the support fixing groove 20, so that the two groups of support fixing grooves 20 can be fixed, and thus the meshing wheel assemblies 18 at both ends of the rotating shaft 17 can clamp the cable, avoiding the problem of slipping between the meshing wheel assembly 18 and the cable.
[0040] Among them, the driving motor 11 drives the rotating shaft 17 to rotate towards the side close to the cleaning sponge 26 through the movable fixing frame 15. In the above structure, the pulley card slot 1803 is inclined by five degrees towards the side close to the cleaning sponge 26. By using the driving motor 11 to drive the rotating shaft 17 to rotate towards the side close to the cleaning sponge 26 through the movable fixing frame 15, when the meshing wheel assembly 18 rotates, its anti-slip rubber skin 1808 can be fixed through the rotating direction of the meshing wheel assembly 18 and the engaging direction of the support card strip 1809 with the pulley card slot 1803.
[0041] Among them, three switches are respectively inlaid in the inner cavities of the first handle 3 and the second handle 25, and the three switches are respectively used to control the operation of the telescopic main body 13, the telescopic meshing device 1806 and the driving motor 11. A power supply is inlaid in the inner cavity of the slide plate bracket 1.
[0042] A cable laying method for a new energy vehicle cable laying device includes the following steps:
[0043] S1: When using the new energy vehicle cable laying device, first press the three switches respectively inlaid in the inner cavities of the first handle 3 and the second handle 25 to test whether the new energy vehicle cable laying device can operate normally. When using the new energy vehicle cable laying device for cable laying, separate the clamping post 21 from the support fixing groove 20, and control the telescopic main body 13 through the switch, so that the telescopic main body 13 drives the movable fixing frame 15 through the driving motor 11, and the movable fixing frame 15 drives the right support frame 4 to slide along the slide rail 2, thereby separating the two groups of right support frames 4;
[0044] S2: After the two sets of right support frames 4 are separated, in the new energy vehicle cable routing device, the distance between the two sets of meshing wheel assemblies 18 allows the cable to be conveniently placed between the two sets of meshing wheel assemblies 18. After the cable is placed, the telescopic main body 13 is controlled by a switch, so that the telescopic main body 13 drives the movable fixing frame 15 through the driving motor 11, and the movable fixing frame 15 drives the right support frame 4 to slide along the slide rail 2, thereby aggregating the two sets of right support frames 4 and enabling the two sets of meshing wheel assemblies 18 to clamp the cable.
[0045] S3: After the two sets of meshing wheel assemblies 18 clamp the cable, the operator holds the handle one 3 and the handle two 25, and controls the driving motor 11 through the switch, so that the driving motor 11 drives the rotating shaft 17 to rotate through the movable fixing frame 15, and the rotating shaft 17 drives the meshing wheel assembly 18 to pull the cable. At the same time, several cables are pulled simultaneously by several meshing wheel assemblies 18 to achieve the parallel arrangement of several cables.
[0046] S4: When several cables need to be bent and arranged to the right, the telescopic coupler 1806 is controlled by the switch on the right, so that the telescopic coupler 1806 drives the clamp 1807 to gradually contract from the right to the left, thereby creating a speed difference between several meshing wheel assemblies 18, and then solving the problem that the cable will rub against the meshing wheel assembly 18 when the cable is bent and arranged.
[0047] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0048] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A cable routing device for a new energy vehicle, comprising a skateboard bracket (1), characterized in that: The outer wall of the skateboard bracket (1) is fixedly equipped with a slide rail (2). On the outer wall of the skateboard bracket (1) away from the slide rail (2), a first handle (3) is fixedly equipped. The outer edge of the slide rail (2) is slidably sleeved with a right support frame (4). On the outer wall of the right support frame (4) close to the slide rail (2), a first chute (6) is provided. On the outer wall of the right support frame (4) away from the first chute (6), a right fixing ring (5) is fixedly equipped. On one outer wall of the right support frame (4), a support skeleton (7) is fixedly equipped. An arc-shaped groove (8) is provided on the outer wall of the support skeleton (7). A cleaning sponge (26) is fixedly equipped on the outer wall of the arc-shaped groove (8). One end of the support skeleton (7) away from the right support frame (4) is fixedly equipped with a left support frame (9). A left fixing ring (10) is fixedly equipped on the outer wall of the left support frame (9). Driving motors (11) are fixedly equipped on the inner walls of the left fixing ring (10) and the right support frame (4). On the outer wall of the first chute (6) close to the right fixing ring (5), a movable fixing frame (15) is fixedly equipped. A telescopic column (14) is fixedly equipped on the top outer wall of the movable fixing frame (15). A telescopic main body (13) is arranged at the top of the telescopic column (14). A telescopic fixing plate (12) is fixedly equipped on the top of the telescopic main body (13). A movable fixing frame (15) is provided on the outer wall of the movable fixing frame (15) away from the telescopic column (14). An installation rotation groove (16) is provided on the outer wall of the movable fixing frame (15) away from the telescopic column (14). A rotating shaft (17) is rotatably connected in the inner cavity of the installation rotation groove (16). A meshing wheel assembly (18) is rotatably sleeved on the outer edge of the rotating shaft (17). A fixing seat (19) is rotatably sleeved at one end of the rotating shaft (17) away from the movable fixing frame (15). A support fixing groove (20) is provided on the outer wall of the fixing seat (19) away from the rotating shaft (17). A clamping column (21) is sleeved on the inner wall of the support fixing groove (20). An L-shaped plate (22) is fixedly equipped at one end of the clamping column (21) away from the fixing seat (19). A telescopic rod (23) is fixedly equipped at one end of the L-shaped plate (22) away from the clamping column (21). A connecting plate (24) is fixedly equipped on one outer wall of the telescopic rod (23). A second handle (25) is fixedly equipped on the outer wall of the connecting plate (24) away from the telescopic rod (23).
2. The cable routing device for a new energy vehicle according to claim 1, characterized in that: A card slot opening (1701) is provided on the outer wall of the rotating shaft (17), and the position of the card slot opening (1701) corresponds to the position of the meshing wheel assembly (18).
3. The cable routing device for a new energy vehicle according to claim 2, wherein: The meshing wheel assembly (18) includes a pulley body (1801). A pulley rotating groove (1802) is formed on the outer wall of the pulley body (1801). A pulley clamping groove (1803) and a chute fixing groove (1804) are respectively formed on the outer wall of the pulley body (1801). A chute installation groove (1805) is formed on the inner wall of the pulley rotating groove (1802). A telescopic meshing device (1806) is fixedly assembled on the inner wall of the chute installation groove (1805). A clamping seat (1807) is fixedly assembled at the telescopic end of the telescopic meshing device (1806). An anti-slip rubber skin (1808) is sleeved on the outer wall of the pulley body (1801). A support clamping strip (1809) is fixedly assembled on the outer wall of the anti-slip rubber skin (1808) close to the pulley body (1801). Anti-slip lines (1810) are formed on the outer wall of the anti-slip rubber skin (1808) away from the pulley body (1801). Fixed clamping strips (1811) are fixedly assembled on the outer walls at both ends of the anti-slip rubber skin (1808).
4. The cable wiring device for a new energy vehicle according to claim 3, wherein: The position of the clamping seat (1807) corresponds to that of the card slot opening (1701). The fixed clamping strip (1811) is located on the inner wall of the chute installation groove (1805). The support clamping strip (1809) is clamped with the inner wall of the pulley clamping groove (1803). A plurality of the meshing wheel assemblies (18) are fixedly assembled with the rotating shaft (17) through the clamping seat (1807). The pulley clamping groove (1803) inclines 5 degrees towards the side close to the cleaning sponge (26).
5. The cable wiring device for a new energy vehicle according to claim 4, wherein: A driving structure is arranged in the inner cavity of the movable fixing frame (15). Its driving motor (11) is meshed with the rotating shaft (17) through the movable fixing frame (15). The telescopic fixing plate (12) is fixedly assembled with the outer wall of the slide plate bracket (1). The slide rail (2) is slidably sleeved with the inner wall of the chute one (6).
6. The cable routing device for a new energy vehicle according to claim 5, characterized in that: The cleaning sponge (26) is located at the outer wall of the meshing wheel assembly (18). The numbers of the movable fixing frame (15) and the fixed seat (19) are both two groups. The structures of the two groups of the movable fixing frame (15) and the fixed seat (19) are symmetrically arranged up and down.
7. The cable routing device for a new energy vehicle according to claim 6, wherein: The numbers of the clamping columns (21) and the L-shaped plates (22) are two groups. And the two groups of L-shaped plates (22) are respectively located at the telescopic ends at both ends of the telescopic rod (23). The two groups of the fixed seats (19) are sleeved with the inner wall of the support fixing groove (20) through the clamping columns (21) to achieve fixation.
8. The cable routing device for a new energy vehicle according to claim 7, characterized in that: The driving motor (11) drives the rotating shaft (17) to rotate towards the side close to the cleaning sponge (26) through the movable fixing frame (15).
9. The cable routing device for a new energy vehicle according to claim 8, characterized in that: Three switches are respectively inlaid in the inner cavities of the handle one (3) and the handle two (25). And the three switches are respectively used to control the operation of the telescopic main body (13), the telescopic meshing device (1806) and the driving motor (11). A power supply is inlaid in the inner cavity of the slide plate bracket (1).
10. The wire arranging method of a wire arranging device for a new energy vehicle cable according to claim 9, characterized in that, Including the following steps: S1: First, press the three groups of switches respectively embedded in the inner cavities of the handle one (3) and the handle two (25) to test whether the cable routing device of the new energy vehicle can operate normally. When using the cable routing device of the new energy vehicle for cable routing, separate the clamping post (21) from the support fixing groove (20). Control the telescopic main body (13) through the switch, so that the telescopic main body (13) drives the moving fixing frame (15) through the driving motor (11), and the moving fixing frame (15) drives the right support frame (4) to slide along the slide rail (2), so that the two right support frames (4) are separated; S2: After the two right support frames (4) are separated, in the cable routing device of the new energy vehicle, the distance between the two meshing wheel assemblies (18) allows the cable to be conveniently placed between the two meshing wheel assemblies (18). After placing, control the telescopic main body (13) through the switch, so that the telescopic main body (13) drives the moving fixing frame (15) through the driving motor (11), and the moving fixing frame (15) drives the right support frame (4) to slide along the slide rail (2), so that the two right support frames (4) are aggregated, and the two meshing wheel assemblies (18) clamp the cable; S3: After the two meshing wheel assemblies (18) clamp the cable, insert the clamping post (21) into the inner cavity of the support fixing groove (20), and use the telescopic rod (23) to drive the telescopic rod (23) through the L plate (22), so that the two fixing seats (19) are fixed. The operator holds the handle one (3) and the handle two (25), and controls the driving motor (11) through the switch, so that the driving motor (11) drives the rotating shaft (17) to rotate through the moving fixing frame (15), and uses the rotating shaft (17) to drive the meshing wheel assembly (18), so that the meshing wheel assembly (18) pulls the cable, and at the same time, several meshing wheel assemblies (18) pull several cables at the same time to realize the parallel arrangement of several cables; S4: When several cables need to be bent and arranged to the right, control the telescopic coupler (1806) through the switch on the right, so that the telescopic coupler (1806) drives the clamping seat (1807) to gradually contract from right to left, so that there is a speed difference between several meshing wheel assemblies (18), and then solve the problem that the cable will rub against the meshing wheel assembly (18) when the cable is bent and arranged.
Citation Information
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