Rapid positioning clamp for lithium battery module assembly line
By using a rapid positioning fixture for lithium battery module assembly lines, and employing stable mounting components, locking components, and anti-slip components, the difficulties in troubleshooting and safety hazards caused by traditional insulating tape bundling methods are solved, achieving stable positioning and safe assembly of conductive wires.
Patent Information
- Application Number
- CN202520891110.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-05-08
AI Technical Summary
Traditional rapid positioning fixtures for lithium battery modules have specific problems that existing technologies have failed to solve or have failed to solve effectively.
A quick positioning fixture for a lithium battery module assembly line is provided, including multiple conductive wires and a first positioning clamp and a second positioning component for mutually cooperating to hold the multiple conductive wires. Through a stable mounting component, a locking component and an anti-slip component, the stability and safety of the conductive wires during the assembly process are ensured.
It improves the efficiency, stability and safety of lithium battery module assembly, and solves the problems of difficult fault diagnosis and potential safety hazards caused by traditional insulating tape binding methods.
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Figure CN223820432U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of conductive wire positioning fixture, specifically, relates to the quick positioning fixture of lithium battery module assembly line. BACKGROUND
[0002] Lithium battery module assembly line refers to the conductive wire for connecting lithium battery monomer battery and battery management system (BMS), control circuit and other components, and its main function is to ensure the stable flow of current in the battery pack and the transmission of signals, lithium battery assembly wire is usually composed of multiple thin copper wires or aluminum wires, and is wrapped with insulating material, has good conductivity, tensile resistance and high temperature resistance to adapt to the complex electrical requirements in the process of lithium battery assembly, in order to improve the safety and performance of the battery module, the wire needs to meet certain current carrying capacity and anti-interference ability in design, to ensure the high efficiency and long life of the battery, in addition, the battery assembly wire should also have good corrosion resistance and anti-aging property to ensure long-term stable working state, through precise connection, the battery module assembly wire helps to realize the efficient operation and reliability of the battery system.
[0003] In the prior art, after the traditional lithium battery assembly wire is welded with the lithium battery and the circuit board, the multiple wires are usually bundled with insulating tape, which is convenient and efficient in the assembly process, and can quickly bundle multiple wires together to improve production efficiency, but there are obvious deficiencies in actual application, first, the bundled wire is difficult to effectively troubleshoot, when the battery module fails during use, the maintenance personnel cannot quickly and accurately locate the problem wire, which makes the fault diagnosis and repair process more complex and time-consuming, second, the bundled wire may loosen or fall off due to vibration, temperature change and other factors during long-term use, which affects the stability of the wire, and may even cause short circuit or other electrical faults, in addition, the use of tape may also cause certain burden to the environment, especially the disposal problem after being discarded, in summary, although the traditional bundling method is simple, it brings great maintenance difficulty and potential safety hazard in actual application, therefore, the technical personnel in the technical field provide the quick positioning fixture of lithium battery module assembly line to solve the problems in the above background technology. UTILITY MODEL CONTENTS
[0004] The utility model discloses a purpose at providing lithium battery module assembly line's quick positioning fixture, solves traditional lithium battery assembly wire in prior art in the welding of lithium battery and circuit board is completed, usually adopts insulating adhesive tape to bundle up and handle multiple wires, this kind of mode is convenient and efficient in the assembly process, can quickly bundle up multiple wires together, to improve production efficiency, but there is obvious deficiency in practical application, first, the wire of insulating adhesive tape bundling is difficult to carry out effective troubleshooting, when the battery module appears the failure in the use process, since the wire is tightly bound by adhesive tape, the maintenance personnel cannot quickly, accurately locate the problem wire, lead to the failure diagnosis and the repair process become more complex and time -consuming, second, the wire of adhesive tape bundling can be loose or fall off due to factors such as vibration, temperature change in long -term use, thereby influence the stability of wire, even possibly cause short circuit or other electrical failure, in addition, the use of adhesive tape can also cause certain burden to the environment, especially the problem of disposal after abandonment, in conclusion, although the traditional bundling mode is simple, but in practical application, it brings greater maintenance difficulty and potential safety hazard problem.
[0005] The utility model provides following technical scheme: lithium battery module assembly line's quick positioning fixture, including multiple conductive wire and be used for mutually matched clamping multiple conductive wire's first positioning clamping strip and second positioning assembly, the first positioning clamping strip is away from second positioning assembly one side is provided with the firm installation assembly for the firm installation of second positioning assembly, the first positioning clamping strip one end is provided with the locking assembly for locking first positioning clamping strip and second positioning assembly and the clamping positioning of multiple conductive wire, the second positioning assembly is close to first positioning clamping strip one side place transverse arrangement fixedly connected with multiple anti -skid components for placing multiple conductive wire skid.
[0006] As the preferred technical scheme, the firm installation assembly includes a support plate, a plurality of installation slots are horizontally arranged and fixed at the upper end of the inner center of the support plate close to one side of the first positioning clamping strip, and four butt ear pieces are fixedly connected to the outer side of the support plate at the four diagonal positions.
[0007] As the preferred technical scheme, installation holes are formed at the inner center of the four butt ear pieces, first installation bolts are rotatably sleeved in the four installation holes, and first threaded butt holes are formed at the inner upper two ends of the support plate.
[0008] As the preferred technical scheme, a blocking strip is arranged at the upper end of the support plate, sleeve holes are formed at the inner two ends of the blocking strip, the two sleeve holes are threadedly sleeved in the two first threaded butt holes respectively, and the blocking strip, the two first threaded butt holes and the support plate are detachably connected.
[0009] As the preferred technical scheme, the first positioning strip comprises a plurality of installation rails, the plurality of installation rails are respectively slidably sleeved in the plurality of installation grooves, and the plurality of installation rails are detachably connected with the plurality of installation grooves.
[0010] As the preferred technical scheme, the first positioning strip comprises a plurality of installation rails, the plurality of installation rails are respectively slidably sleeved in the plurality of installation grooves, and the plurality of installation rails are detachably connected with the plurality of installation grooves.
[0011] As the preferred technical scheme, the first positioning strip comprises a plurality of installation rails, the plurality of installation rails are respectively slidably sleeved in the plurality of installation grooves, and the plurality of installation rails are detachably connected with the plurality of installation grooves.
[0012] As the preferred technical scheme, the first positioning strip comprises a plurality of installation rails, the plurality of installation rails are respectively slidably sleeved in the plurality of installation grooves, and the plurality of installation rails are detachably connected with the plurality of installation grooves.
[0013] As the preferred technical scheme, the first positioning strip comprises a plurality of installation rails, the plurality of installation rails are respectively slidably sleeved in the plurality of installation grooves, and the plurality of installation rails are detachably connected with the plurality of installation grooves.
[0014] As the preferred technical scheme, the first positioning strip comprises a plurality of installation rails, the plurality of installation rails are respectively slidably sleeved in the plurality of installation grooves, and the plurality of installation rails are detachably connected with the plurality of installation grooves.
[0015] Compared with the prior art, the utility model has the advantages that:
[0016] The quick positioning clamp of the lithium battery module assembly line effectively solves the problem of conductor wire positioning in the traditional lithium battery module assembly process through the stable installation assembly, the first positioning clamp strip, the locking assembly, the second positioning assembly and the plurality of anti-skid assemblies. The stable installation assembly provides reliable support to ensure the stability of the clamp during the working process. The first positioning clamp strip ensures that the conductor wire does not deviate during the assembly process through precise wire tolerance design and anti-skid rubber pads.
[0017] The locking assembly firmly fixes the conductor wire at the predetermined position through the rotation mechanism to prevent loosening during use. The second positioning assembly ensures precise positioning of the conductor wire through a flexible adjustment mechanism, avoiding potential failures caused by conductor mispositioning or uneven compression. The anti-skid assembly effectively prevents wire sliding by precisely fitting the wire surface, thereby improving the precision and safety of the overall assembly. These designs work together to greatly improve the efficiency, stability and safety of lithium battery module assembly. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a three-dimensional structure diagram of the quick positioning clamp of the lithium battery module assembly line.
[0019] Figure 2 It is an expanded three-dimensional structure diagram of the quick positioning clamp of the lithium battery module assembly line.
[0020] Figure 3 It is a three-dimensional split structure diagram of the stable installation assembly.
[0021] Figure 4 It is a three-dimensional structure diagram of the first positioning clamp strip.
[0022] Figure 5 It is a three-dimensional structure diagram of the first positioning clamp strip from another perspective.
[0023] Figure 6 It is a three-dimensional split structure diagram of the locking assembly.
[0024] Figure 7 It is a three-dimensional structure diagram of the second positioning assembly.
[0025] Figure 8 It is a three-dimensional structure diagram of the anti-skid assembly.
[0026] LEGEND:
[0027] 1, electric wire; 2, stable installation assembly; 201, support plate; 202, installation groove; 203, butt joint lug; 204, installation hole; 205, first installation bolt; 206, first threaded butt joint hole; 207, blocking strip; 208, sleeve hole; 209, first bolt; 3, first positioning clamp strip; 301, installation rail; 302, first positioning strip; 303, wire containing groove; 304, anti-skid rubber pad; 305, first connecting block; 306, first rotating rod; 307, butt joint clamp plate; 308, positioning hole; 4, locking assembly; 401, second rotating rod; 402, second connecting block; 403, externally threaded rod; 404, internally threaded knob; 405, butterfly piece; 5, second positioning assembly; 501, rotating connecting block; 502, second positioning clamp strip; 503, locking piece; 504, second threaded butt joint hole; 6, anti-skid assembly; 601, anti-skid rubber strip; 602, second installation bolt. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application.
[0029] Please refer to Figures 1-2 The utility model provides a technical scheme: the quick positioning clamp of lithium battery module assembly line, including a plurality of electric wire 1 and the first positioning clamp strip 3 and the second positioning assembly 5 for mutually matched clamping a plurality of electric wire 1, the first positioning clamp strip 3 is away from the second positioning assembly 5 side and is provided with the stable installation assembly 2 for firmly installing the second positioning assembly 5, the first positioning clamp strip 3 one end is provided with the locking assembly 4 for locking the first positioning clamp strip 3 and the second positioning assembly 5 and clamping positioning a plurality of electric wire 1, the second positioning assembly 5 is close to the first positioning clamp strip 3 one side and is horizontally arranged and is fixedly connected with a plurality of anti-skid assembly 6 for placing a plurality of electric wire 1 slip.
[0030] The quick positioning clamp of the lithium battery module assembly line effectively solves the problem of positioning the conductive wire 1 in the traditional lithium battery module assembly process through the stable installation assembly 2, the first positioning clamp strip 3, the locking assembly 4, the second positioning assembly 5 and the plurality of anti-skid assemblies 6. The stable installation assembly 2 provides reliable support to ensure the stability of the clamp during the working process. The first positioning clamp strip 3 ensures that the conductive wire 1 does not deviate during the assembly process through precise wire tolerance design and anti-skid rubber pads 304. The locking assembly 4 firmly fixes the conductive wire 1 in the predetermined position through the rotating mechanism to prevent loosening during use. The second positioning assembly 5 ensures accurate positioning of the conductive wire 1 through a flexible adjustment mechanism, avoiding potential failures caused by wire misalignment or uneven compression. The anti-skid assembly 6 effectively prevents wire sliding by precisely fitting the wire surface, thereby improving the accuracy and safety of the overall assembly. These designs work together to greatly improve the efficiency, stability and safety of lithium battery module assembly.
[0031] As an embodiment in this embodiment, please refer to Figure 3 As shown in the figure, the stable installation assembly 2 includes a support plate 201, a plurality of installation slots 202 are arranged and fixed horizontally on the upper end of the inside center of the support plate 201 near the side of the first positioning clamp strip 3, four butt ear pieces 203 are fixedly connected to the outside of the support plate 201 at the four corners, installation holes 204 are penetrated and arranged in the inside center of the four butt ear pieces 203, first installation bolts 205 are rotatably sleeved in the inside of the four installation holes 204, first threaded butt holes 206 are arranged in the inside of the support plate 201 near the two ends, a baffle 207 is arranged on the upper end of the support plate 201, sleeve holes 208 are penetrated and arranged in the inside of the baffle 207 near the two ends, and the two sleeve holes 208 are threadedly sleeved in the two first threaded butt holes 206 respectively, and the baffle 207 and the two first bolts 209 are detachably connected with the support plate 201.
[0032] The stable installation assembly 2 stably installs the entire clamp system on the assembly line or workbench through the support plate 201. The support plate 201 is internally provided with a plurality of installation slots 202, which cooperate with the installation rails 301 to realize modular positioning and disassembly. The butt ear pieces 203 at the four corners of the support plate 201 provide stable connection interfaces, so that the entire system can be firmly fixed to avoid shaking or loosening during use. In addition, the baffle 207 and the sleeve holes 208 arranged on the support plate 201 ensure the precise butt joint of the clamp position and make the installation process more convenient and stable. Through detachable connection, the disassembly of the support plate 201 and the baffle 207 does not affect the overall stability, thereby greatly improving the working efficiency and use flexibility of the clamp.
[0033] As an embodiment in this embodiment, please refer to Figures 4-5As shown, the first positioning clip 3 comprises a plurality of mounting rails 301, which are respectively slidably sleeved in the plurality of mounting grooves 202 and detachably connected with the plurality of mounting grooves 202, and one side of the plurality of mounting rails 301 is fixedly connected with a first positioning strip 302, a plurality of wire accommodating grooves 303 are arranged on the side of the first positioning strip 302 away from the plurality of mounting rails 301, and an antiskid rubber pad 304 is attached to the inside of each of the plurality of wire accommodating grooves 303, and a plurality of conductive wires 1 are respectively sleeved in the plurality of antiskid rubber pads 304, a first connecting block 305 is fixedly connected to the center of one side of the first positioning strip 302, a first rotating rod 306 is fixedly sleeved in the inside of the first connecting block 305, and a butt joint clamping plate 307 is fixedly connected to the upper and lower ends of the side of the first positioning strip 302 away from the first connecting block 305, and a positioning hole 308 is formed in the inside of each of the two butt joint clamping plates 307.
[0034] The first positioning clip 3 is slidably sleeved in the mounting groove 202 through the plurality of mounting rails 301, thereby achieving accurate positioning of the conductive wire 1, the antiskid rubber pad 304 is laid in the inside of each wire accommodating groove 303, and the antiskid rubber pad 304 provides good friction when the conductive wire 1 is placed, thereby effectively preventing the wire from slipping, the first positioning clip 3 is further matched with the first rotating rod 306 through the fixedly connected first connecting block 305, thereby ensuring that the position of the conductive wire 1 does not deviate, the first positioning clip 3 can be adjusted or replaced as needed through the detachable connection mechanism, thereby improving the flexibility and applicability of the system, and overall, the first positioning clip 3 ensures the stability of the conductive wire 1 in the assembly process through the precise positioning function, thereby reducing the problems caused by the misalignment of the wire.
[0035] As an embodiment of the present embodiment, please refer to Figure 6 As shown, the locking assembly 4 comprises two second rotating rods 401, which are respectively rotatably sleeved in the two positioning holes 308 through bearings, a second connecting block 402 is fixedly connected between the ends of the two second rotating rods 401 close to each other, an externally threaded rod 403 is fixedly connected to the center of one side of the second connecting block 402, an internally threaded knob 404 is threadedly sleeved on the outer side of one end of the externally threaded rod 403, and a butterfly-shaped plate 405 is fixedly connected to the outer side of the two ends of the internally threaded knob 404 away from the second connecting block 402.
[0036] The locking assembly 4 is matched with the positioning hole 308 through two second rotating rods 401, so as to realize the fastening of the first positioning clamp strip 3 and the second positioning assembly 5. When the second rotating rod 401 rotates, the outer threaded rod 403 drives the butterfly-shaped piece 405 to tightly contact the locking piece 503 on the second positioning assembly 5 through the inner threaded knob 404, so as to effectively clamp and lock the plurality of conductive wires 1. The rotating locking function of the locking assembly 4 not only improves the fastening degree of clamping, but also prevents the conductive wires 1 from loosening or falling off due to vibration or external force during use. Through the locking mechanism, the conductive wires 1 are reliably fixed after positioning, thereby ensuring the stability and safety of the battery module during long-term use.
[0037] As an embodiment in the present embodiment, please refer to Figure 7 As shown in the figure, the second positioning assembly 5 includes two rotating connecting blocks 501, which are rotatably sleeved on the outer side of the first rotating rod 306 at the upper and lower ends. One side of the two rotating connecting blocks 501 is fixedly connected with the second positioning clamp strip 502. The second positioning clamp strip 502 is fixedly connected with two locking pieces 503 at the end away from the two rotating connecting blocks 501. The outer threaded rod 403 is movably sleeved between the two locking pieces 503, and the inner threaded knob 404 is in close contact with the side of the two locking pieces 503. The second positioning clamp strip 502 is internally provided with a plurality of second threaded butt joints 504 in a rectangular filling array at the side close to the first positioning strip 302.
[0038] The second positioning assembly 5 is matched with the first rotating rod 306 through the rotating connecting block 501, so as to realize accurate wire positioning. The rotating connecting block 501 can be flexibly rotated when needed, so that the entire clamp can maintain good adaptability in multi-angle application scenarios. The second positioning clamp strip 502 is combined with the outer threaded rod 403 and the inner threaded knob 404 through the locking piece 503, so as to realize accurate adjustment of the clamping position of the conductive wire 1. The adjustment mechanism of the second positioning assembly 5 ensures that the plurality of conductive wires 1 can be accurately placed according to the predetermined arrangement order and position, thereby avoiding electrical faults caused by misalignment or excessive compression.
[0039] As an embodiment in the present embodiment, please refer to Figure 8 As shown in the figure, the anti-skid assembly 6 includes an anti-skid rubber strip 601, which is arranged at the side of the rotating connecting block 501 close to the first positioning strip 302. A plurality of second mounting bolts 602 are rotatably sleeved in the anti-skid rubber strip 601. The assembly end of the plurality of second mounting bolts 602 is threadedly sleeved in the corresponding plurality of second threaded butt joints 504. The anti-skid rubber strip 601 is movably sleeved in the corresponding wire accommodating groove 303, and the arc-shaped concave surface of the anti-skid rubber strip 601 is in close contact with one side of the conductive wire 1.
[0040] The anti-skid assembly 6 is combined with the anti-skid function of the anti-skid rubber strip 601, is fixed through a plurality of second mounting bolts 602 and a second threaded butt joint hole 504, ensures that the anti-skid rubber strip 601 can stably contact the conductive wire 1, the arc-shaped concave surface design of the anti-skid rubber strip 601 is accurately fitted with the surface of the conductive wire 1, so that the wire is not easy to slide or fall off in the clamping process, thereby improving the stability of the conductive wire 1 in the entire clamping and assembling process. Through the anti-skid design, the position of the conductive wire 1 in the entire working process is further fixed, avoiding assembly errors or electrical faults caused by slipping, ensuring the accuracy and safety of assembly.
[0041] Working principle: The stable mounting assembly 2 stably installs the entire clamp system on the assembly line or workbench through the support plate 201, a plurality of mounting grooves 202 are arranged in the support plate 201, the modular positioning and disassembly are realized through cooperation of the mounting grooves 202 and the mounting rails 301, the butt joint lugs 203 at four corners of the support plate 201 provide stable connection interfaces, so that the entire system can be firmly fixed, avoiding shaking or loosening in the use process. In addition, the blocking strips 207 and the sleeve holes 208 arranged on the support plate 201 ensure the accurate butt joint of the clamp position and make the installation process more simple and stable. Through the detachable connection, the disassembly of the support plate 201 and the blocking strips 207 does not affect the overall stability, thereby greatly improving the working efficiency and use flexibility of the clamp. The first positioning clamp strip 3 is mainly slidably sleeved in the mounting grooves 202 through a plurality of mounting rails 301, realizing accurate positioning of the conductive wire 1. The anti-skid rubber pads 304 are arranged in each wire containing groove 303. When the conductive wire 1 is placed, the anti-skid rubber pads 304 provide good friction, effectively preventing the wire from slipping. The first positioning clamp strip 3 is further matched with the first rotating rod 306 through the fixedly connected first connecting block 305, ensuring that the position of the conductive wire 1 does not deviate. Through the detachable connection mechanism, the first positioning clamp strip 3 can be adjusted or replaced according to needs, improving the flexibility and applicability of the system. Overall, the first positioning clamp strip 3 ensures the stability of the conductive wire 1 in the assembly process through the accurate positioning function, reducing the problems caused by wire misalignment.
[0042] The locking assembly 4 is matched with the positioning hole 308 through two second rotating rods 401, so that the first positioning clamp strip 3 and the second positioning assembly 5 are fastened, when the second rotating rod 401 rotates, the outer threaded rod 403 drives the butterfly plate 405 to tightly contact with the locking plate 503 on the second positioning assembly 5 through the inner threaded knob 404, so that the plurality of conductive wires 1 are effectively clamped and locked, the rotating locking function of the locking assembly 4 not only improves the fastening degree of clamping, but also prevents the conductive wires 1 from loosening or falling off due to vibration or external force in the use process, through the locking mechanism, the conductive wires 1 are reliably fixed after positioning, the stability and safety of the battery module in long-term use are ensured, the second positioning assembly 5 is matched with the first rotating rod 306 through the rotating connecting block 501, so that the precise wire positioning is realized, the rotating connecting block 501 can be flexibly rotated when needed, so that the whole clamp can maintain good adaptability in the application scene of multiple angles, the second positioning clamp strip 502 is combined with the outer threaded rod 403 and the inner threaded knob 404 through the locking plate 503, so that the precise adjustment of the clamping position of the conductive wire 1 is realized, the adjustment mechanism of the second positioning assembly 5 ensures that the plurality of conductive wires 1 can be accurately placed according to the predetermined arrangement order and position, and electrical failure caused by mispositioning or excessive compression is avoided.
[0043] The anti-skid assembly 6 adopts the anti-skid rubber strip 601 combined with the anti-skid function, is fixed through a plurality of second mounting bolts 602 and second threaded butt joints 504, so that the anti-skid rubber strip 601 can stably contact with the conductive wire 1, the arc-shaped concave surface design of the anti-skid rubber strip 601 is accurately matched with the surface of the conductive wire 1, so that the wire is not easy to slide or fall off in the clamping process, so that the stability of the conductive wire 1 in the whole clamping and assembling process is improved, through the anti-skid design, the position of the conductive wire 1 in the whole working process is further fixed, assembly errors or electrical failures caused by slipping are avoided, and the precision and safety of assembly are ensured.
[0044] The above examples are only used to illustrate the technical scheme of the utility model, and not to limit it.
Claims
1. A quick positioning fixture for a lithium battery module assembly line, comprising multiple conductive wires (1) and a first positioning clamp (3) and a second positioning assembly (5) for mutually cooperating in clamping the multiple conductive wires (1), characterized in that: The first positioning clamp (3) is provided with a stabilizing installation component (2) for stabilizing the second positioning component (5) on the side away from the second positioning component (5). One end of the first positioning clamp (3) is provided with a locking component (4) for locking the first positioning clamp (3) and the second positioning component (5) and clamping and positioning multiple conductive wires (1). Multiple anti-slip components (6) for preventing multiple conductive wires (1) from slipping are arranged and fixedly connected horizontally on the side of the second positioning component (5) near the first positioning clamp (3).
2. The rapid positioning fixture for a lithium battery module assembly line according to claim 1, characterized in that: The stable installation component (2) includes a support plate (201). Multiple installation slots (202) are fixedly arranged horizontally at the upper end of the support plate (201) near the first positioning clip (3). The support plate (201) is fixedly connected with four opposite corners on the outside of the support plate (201).
3. The rapid positioning fixture for a lithium battery module assembly line according to claim 2, characterized in that: Each of the four mating lugs (203) has a through-hole (204) at its center, and each of the four mounting holes (204) has a first mounting bolt (205) rotatably fitted inside. Each of the upper two ends of the support plate (201) has a first threaded mating hole (206).
4. The rapid positioning fixture for a lithium battery module assembly line according to claim 3, characterized in that: The upper end of the support plate (201) is provided with a baffle (207). The baffle (207) has through holes (208) at both ends. The two holes (208) are threaded into the two first threaded mating holes (206) respectively. The baffle (207) and the two first bolts (209) are detachably connected to the support plate (201).
5. The rapid positioning fixture for a lithium battery module assembly line according to claim 2, characterized in that: The first positioning clip (3) includes multiple mounting rails (301), which are slidably fitted inside multiple mounting grooves (202). The multiple mounting rails (301) and the multiple mounting grooves (202) are detachably connected. A first positioning strip (302) is fixedly connected to one side of the multiple mounting rails (301). Multiple wire receiving grooves (303) are arranged horizontally on the side away from the multiple mounting rails (301). Anti-slip rubber pads (304) are attached inside the multiple wire receiving grooves (303). Multiple conductive wires (1) are respectively fitted inside the multiple anti-slip rubber pads (304).
6. The quick positioning fixture for a lithium battery module assembly line according to claim 5, characterized in that: A first connecting block (305) is fixedly connected to the center of one side of the first positioning strip (302). A first rotating rod (306) is fixedly sleeved at one end of the center of the first connecting block (305). A docking clamp (307) is fixedly connected to both the upper and lower ends of the side of the first positioning strip (302) away from the first connecting block (305). A positioning hole (308) is opened through the interior of both docking clamps (307).
7. The quick positioning fixture for a lithium battery module assembly line according to claim 6, characterized in that: The locking assembly (4) includes two second rotating rods (401). The two second rotating rods (401) are respectively rotatably sleeved inside two positioning holes (308) through bearings. A second connecting block (402) is fixedly connected between the two ends of the two second rotating rods (401) that are close to each other. An external threaded rod (403) is fixedly connected at the center of one side of the second connecting block (402). An internal threaded knob (404) is threadedly sleeved at one end of the external threaded rod (403). A butterfly plate (405) is fixedly connected at both ends of the internal threaded knob (404) that is away from the second connecting block (402).
8. The rapid positioning fixture for a lithium battery module assembly line according to claim 7, characterized in that: The second positioning component (5) includes two rotating connecting blocks (501). The two rotating connecting blocks (501) are rotatably sleeved on the outer side of the first rotating rod (306) near the upper and lower ends by bearings. A second positioning clip (502) is fixedly connected to one side of the two rotating connecting blocks (501). Two locking pieces (503) are fixedly connected to the end of the second positioning clip (502) away from the two rotating connecting blocks (501).
9. The quick positioning fixture for a lithium battery module assembly line according to claim 8, characterized in that: The external threaded bar (403) is movably sleeved between the two locking pieces (503), and the internal threaded knob (404) is in contact with the side of the two locking pieces (503) that are close to each other. The second positioning clip (502) has a plurality of second threaded mating holes (504) equidistantly arranged in a rectangular filling array on the side of the first positioning clip (302).
10. The rapid positioning fixture for a lithium battery module assembly line according to claim 9, characterized in that: The anti-slip component (6) includes an anti-slip rubber strip (601), which is disposed on the side of the rotating connecting block (501) near the first positioning strip (302). The anti-slip rubber strip (601) is rotatably sleeved with a plurality of second mounting bolts (602). The assembly ends of the plurality of second mounting bolts (602) are threaded into the corresponding plurality of second thread mating holes (504). The anti-slip rubber strip (601) is slidably sleeved in the corresponding wire receiving groove (303), and the arc-shaped concave surface of the anti-slip rubber strip (601) is in contact with one side of the conductive wire (1).