New energy automobile battery pack wire profiling die and use method thereof
By introducing an adjustment and processing mechanism into the wire profiling die and using adjustable inner and outer rings to replace the traditional profiling groove, the problem of impurities in the profiling groove being difficult to remove is solved, efficient wire profiling and cleaning is achieved, and profiling efficiency and quality are improved.
Patent Information
- Application Number
- CN202510843177.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-23
- Publication Date
- 2025-09-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing wire profiling dies have too many profiling grooves and small inner diameters, making it difficult to remove impurities.
Adopting adjustment mechanism and processing mechanism, using adjustable inner and outer rings to replace traditional profiling grooves, combining control mechanism and placement components, through smooth rollers and unobstructed design, to achieve roller cleaning and position adjustment, in conjunction with pre-treatment and profiling work.
It effectively solves the problem of impurity removal during the profiling process, reduces the difficulty of cleaning, and adjusts the position of the profiling groove according to the size of the wire, thereby improving the profiling efficiency and quality.
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Figure CN120605941A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of wire pressing technology, and in particular to a new energy vehicle battery pack wire pressing die and a method of using the same. Background Art
[0002] The wire profiling operation is achieved by rotating two tangential rollers, using the rotation of the rollers and the friction between the rollers and the wire to pass the wire through the two rollers, and using the rollers to squeeze the wire to achieve the wire profiling operation.
[0003] Patent publication number CN111261340B discloses a wire profiling die and wire processing device. The device comprises multiple profiling grooves arranged on a movable pressing wheel assembly. These grooves have an arc-shaped cross-section, and the diameters of the arc-shaped cross-sections of the grooves increase sequentially. This means that the grooves have different specifications. These grooves can produce wires of various specifications, thus meeting the need for a single profiling die to produce a variety of wires. However, the excessive number of profiling grooves and their small inner diameters make it difficult to remove impurities adhering to the grooves during the profiling process. Summary of the Invention
[0004] In order to overcome the problem that there are too many pressing grooves and the inner diameter of the grooves is small, and impurities attached to the pressing grooves during the pressing process are difficult to remove, the present invention provides a new energy vehicle battery pack wire pressing die, including a die; A lifting plate installed on the top of the mold; a channel, the channel being opened at the bottom of the mold; A control mechanism, which is installed outside the mold and includes a first slider, a second slider, and a placement assembly; an adjusting mechanism connected to the first slider, the adjusting mechanism comprising a first roller and a moving assembly, the first slider being used to control the first roller and the moving assembly to move in a vertical direction, and the placing assembly cooperating with the first slider to control the rotation of the first roller and the moving assembly; The processing mechanism is connected to the second slider, the processing mechanism includes a second roller, the second slider is used to control the second roller to move in the vertical direction, and the placement component cooperates with the second slider to control the rotation of the second roller.
[0005] Preferably, the control mechanism further comprises: A mounting rod, the mounting rod being mounted on the outside of the mold and connected to the placement assembly; The slideway is provided on the side wall of the mold. There are two slideways provided and they are symmetrically arranged. There are two first sliders and two second sliders provided and they are symmetrically arranged.
[0006] Preferably, the placement component includes: A placement rack, the placement rack being installed outside the mounting rod; a first motor, the first motor being installed inside the placement rack, and an output end of the first motor being connected to a first telescopic rod; The second motor is installed inside the placement rack, and the output end of the second motor is connected to the second telescopic rod.
[0007] Preferably, the adjustment mechanism further comprises: a first through groove, the first through groove being disposed inside the first slider, and a first fixing tube being installed inside the first through groove; a first connecting seat, the first connecting seat being rotatably connected to the first fixing pipe, the first connecting seat being connected to the first roller, and two first connecting seats being provided and symmetrically arranged; The outer ring is installed on the outside of the first connecting seat, and the outer ring is connected to the moving component. There are two outer rings and two moving components, and they are symmetrically arranged.
[0008] Preferably, the adjustment mechanism further comprises: a first center rod, the first center rod being connected to the first roller, and a first slot being defined in the interior of the first center rod; The first fixing seat is arranged inside the first sliding block, a first push rod is installed inside the first fixing seat, and a telescopic end of the first push rod is connected to the first roller.
[0009] Preferably, the moving component comprises: A connecting frame, the connecting frame being installed outside the outer ring; a third telescopic rod, the third telescopic rod being mounted on the outside of the connecting frame, and the outer portion of the third telescopic rod being mounted with an inner ring; A fourth telescopic rod is installed on the outside of the connecting frame, a clamping plate is installed on the outside of the fourth telescopic rod, and an outer ring is installed on the outside of the clamping plate.
[0010] Preferably, the processing mechanism comprises: a second fixing tube, the second fixing tube being installed inside the second slider; a second connecting seat, the second connecting seat being rotatably connected to the second fixing pipe, and the second connecting seat being connected to the second roller; A fixing groove is provided inside the second roller, and two fixing grooves are provided and are symmetrically arranged, and a pushing component is installed inside the fixing groove; A connecting rod, the connecting rod being installed inside the fixing groove, and a connecting ring being installed outside the connecting rod; a second fixing seat, the second fixing seat being disposed inside the second sliding block, a second push rod being installed inside the second fixing seat, and a telescopic end of the second push rod being connected to the second roller; The second center rod is connected to the second roller, and a second slot is provided inside the second center rod.
[0011] Preferably, the pushing assembly comprises: a third push rod, the third push rod being installed inside the fixing groove; A top plate is installed on the top of the third push rod, and a connecting rod is installed on the outside of the top plate.
[0012] The present invention provides a method for using a new energy vehicle battery pack wire pressing die, comprising the following steps: S1. Before using the equipment, adjust the first roller to the rotating state and adjust the position of the second roller in the processing mechanism; S2. As the first roller rotates, the first roller contacts and rubs against the outer connecting ring of the second roller, thereby pre-treating the first roller; S3. After pre-processing, the moving components in the adjustment mechanism are adjusted according to the size of the wire, thereby adjusting the distance between the two inner rings or the two outer rings; S4. Adjust the first slider, the second slider and the placement component to control the rotation of the first roller and the second roller. The wire is placed between the first roller and the second roller to perform the profiling work.
[0013] The present invention provides a new energy vehicle battery pack conductor pressing die and its use method. It has the following beneficial effects: 1. This new energy vehicle battery pack wire profiling die and its use method utilize an adjustment mechanism to replace conventional profiling grooves with adjustable inner and outer rings. Existing equipment has too many profiling grooves and small inner diameters, making it difficult to remove impurities adhering to the grooves during the profiling process. Therefore, the adjustment mechanism utilizes a smooth first roller with two adjustable inner and outer rings, facilitating cleaning of the smooth rollers and addressing this issue.
[0014] 2. The new energy vehicle battery pack wire pressing die and its use method, by setting a control mechanism and a placement component, uses a first slider, a second slider, a first telescopic rod, a second telescopic rod, a first motor and a second motor to control the height of the first roller and the second roller, and control the rotation state of the first roller and the second roller, and cooperate with the first roller and the second roller to complete the pretreatment work and pressing work.
[0015] 3. This new energy vehicle battery pack conductor profiling die and its use method utilize an adjustment mechanism and a movable assembly. Using a smooth first roller with no obstructions, the die facilitates handling of the first roller before and after profiling, making it easier to manipulate than a roller with multiple profiling grooves. Furthermore, two movable assemblies are provided. Adjusting the positions of the two inner and outer rings allows for adjustment, which in turn adjusts the positions of the inner and outer rings according to the conductor size. The inner and outer rings, along with the first roller, form a profiling groove.
[0016] 4. This new energy vehicle battery pack wire profiling die and its use method utilizes a processing mechanism and a push assembly. During profiling, the second roller, located in the area without the fixing groove, cooperates with the first roller to perform wire profiling. During pre-treatment, the outer surface of the first roller is treated by adjusting the position of the second roller and controlling the expansion of the connecting ring. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a flowchart of the present invention; Figure 2 It is a schematic diagram of the overall structure of the present invention; Figure 3 Schematic diagram of the bottom structure of the present invention; Figure 4 Schematic diagram of the control mechanism structure of the present invention; Figure 5 This is a schematic diagram of the component placement structure of the present invention; Figure 6 This is a schematic diagram of the structure of the regulating mechanism of the present invention; Figure 7 It is a cross-sectional view of the adjustment mechanism of the present invention; Figure 8 This is a schematic diagram of the structure of the mobile component of the present invention; Figure 9 This is a schematic diagram of the processing mechanism structure of the present invention; Figure 10 It is a cross-sectional view of the processing mechanism of the present invention; Figure 11 This is a schematic diagram of the structure of the driving component of the present invention.
[0018] In the figure: 1. mold; 2. control mechanism; 201. mounting rod; 202. placement assembly; 2021. placement rack; 2022. first motor; 2023. first telescopic rod; 2024. second motor; 2025. second telescopic rod; 203. slideway; 204. first slider; 205. second slider; 3. lifting plate; 4. adjustment mechanism; 401. first fixed tube; 402. first connecting seat; 403. outer ring; 404. moving assembly; 4041. connecting rack; 4042. third telescopic rod; 4043. inner ring; 4044. fourth telescopic rod; 4045. clamping plate ;4046, outer ring; 405, first roller; 406, first through slot; 407, first center rod; 408, first slot; 409, first push rod; 410, first fixed seat; 5, processing mechanism; 501, second fixed tube; 502, second connecting seat; 503, second roller; 504, fixed slot; 505, connecting rod; 506, connecting ring; 507, second push rod; 508, second fixed seat; 509, pushing assembly; 5091, third push rod; 5092, top plate; 5093, connecting rod; 510, second center rod; 511, second slot; 6, channel. DETAILED DESCRIPTION
[0019] The present invention will be described in further detail below with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are provided for purposes of illustration and description and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are chosen and described to better illustrate the principles of the invention and its practical application, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for specific applications.
[0020] like Figures 1-11 As shown, the present invention provides a technical solution: comprising a mold 1: A lifting plate 3 is installed on the top of the mold 1; Channel 6, channel 6 is opened at the bottom of the mold 1; The control mechanism 2 is installed outside the mold 1 and includes a first slider 204, a second slider 205, and a placement assembly 202. The first slider 204 and the second slider 205 are both provided with a power system. Adjustment mechanism 4, which is connected to the first slider 204 and includes a first roller 405 and a moving assembly 404. The first slider 204 is used to control the vertical movement of the first roller 405 and the moving assembly 404. The placement assembly 202 cooperates with the first slider 204 to control the rotation of the first roller 405 and the moving assembly 404. The processing mechanism 5 is connected to the second slider 205 . The processing mechanism 5 includes a second roller 503 . The second slider 205 is used to control the second roller 503 to move in the vertical direction. The placement component 202 cooperates with the second slider 205 to control the rotation of the second roller 503 .
[0021] Before using the equipment, adjust control mechanism 2 to rotate first roller 405 and adjust the position of second roller 503 in processing mechanism 5 to pre-process first roller 405. After pre-processing, adjust moving assembly 404 in adjustment mechanism 4 according to the wire size, adjust first slider 204, second slider 205, and placement assembly 202, control the rotation of first roller 405 and second roller 503, and position the wire between them for profiling.
[0022] The control mechanism 2 also includes: A mounting rod 201 is mounted on the outside of the mold 1 and is connected to the placement assembly 202; The slideway 203 is provided on the side wall of the mold 1 . There are two slideways 203 , which are symmetrically arranged. There are two first sliders 204 and two second sliders 205 , which are symmetrically arranged.
[0023] The placement component 202 includes: A placement rack 2021, which is installed outside the mounting rod 201; A first motor 2022 is installed inside the placement rack 2021, and an output end of the first motor 2022 is connected to a first telescopic rod 2023; The second motor 2024 is installed inside the placement rack 2021 , and the output end of the second motor 2024 is connected to the second telescopic rod 2025 .
[0024] When the device is in the pre-processing mode, the power system in the first slider 204 is adjusted, and the first slider 204 drives the adjustment mechanism 4 to move until the first slider 204 and the first motor 2022 are at the same horizontal height. At this time, by opening the first telescopic rod 2023, the first telescopic rod 2023 is connected to the adjustment mechanism 4, and the first motor 2022 can be turned on. The first motor 2022 controls the first telescopic rod 2023 to rotate, and the first telescopic rod 2023 drives the adjustment mechanism 4 to rotate, thereby controlling the first roller 405 in the adjustment mechanism 4 to rotate.
[0025] When the movable component 404 in the adjusting mechanism 4 needs to be adjusted according to the wire size, the power system in the first slider 204 is adjusted, and the first slider 204 drives the adjusting mechanism 4 to move upward, reserving working space for adjusting the movable component 404.
[0026] When the wire needs to be profiled, the power systems in the first slider 204 and the second slider 205 are adjusted simultaneously. The first slider 204 drives the adjusting mechanism 4 to move until the first slider 204 and the output end of the first motor 2022 are at the same horizontal height. At this time, by opening the first telescopic rod 2023, the first telescopic rod 2023 is connected to the adjusting mechanism 4, the first motor 2022 can be turned on, and the first motor 2022 controls the first telescopic rod 2023 to rotate, and the first telescopic rod 2023 drives the adjusting mechanism 4 to rotate, thereby controlling the first roller 405 in the adjusting mechanism 4 to rotate; the second slider 205 drives the processing mechanism 5 to move until the second slider 205 and the output end of the second motor 2024 are at the same horizontal height. At this time, by opening the second telescopic rod 2025, the second telescopic rod 2025 is connected to the processing mechanism 5, the second motor 2024 can be turned on, and the second telescopic rod 2025 controls the second telescopic rod 2025 to rotate, and the second telescopic rod 2025 drives the processing mechanism 5 to rotate, thereby controlling the second roller 503 in the processing mechanism 5 to rotate.
[0027] When the outside of the second roller 503 needs to be cleaned, the second slider 205 controls the second roller 503 to be located at the channel 6, so that workers can clean it manually.
[0028] By setting up the control mechanism 2 and the placement component 202, using the first slider 204, the second slider 205, the first telescopic rod 2023, the second telescopic rod 2025, the first motor 2022 and the second motor 2024, the height of the first roller 405 and the second roller 503 are controlled, and the rotation state of the first roller 405 and the second roller 503 is controlled, and the first roller 405 and the second roller 503 are cooperated to complete the pretreatment work and the pressing work.
[0029] The regulating mechanism 4 further comprises: A first through slot 406 , which is provided inside the first slider 204 , and a first fixing tube 401 is installed inside the first through slot 406 ; A first connecting seat 402 is rotatably connected to the first fixed tube 401 and connected to the first roller 405. Two first connecting seats 402 are provided and are symmetrically arranged; The outer ring 403 is installed on the outside of the first connecting seat 402. The outer ring 403 is connected to the moving component 404. There are two outer rings 403 and two moving components 404, and they are symmetrically arranged.
[0030] A first center rod 407, which is connected to the first roller 405, and has a first slot 408 formed inside. The first fixed seat 410 is disposed inside the first sliding block 204 . A first push rod 409 is installed inside the first fixed seat 410 . The telescopic end of the first push rod 409 is connected to the first roller 405 .
[0031] As the first telescopic rod 2023 is opened, it gradually enters the first engaging slot 408 in the first central rod 407. By turning on the first motor 2022, the first motor 2022 drives the first telescopic rod 2023 and the first roller 405 to rotate. The rotation of the first roller 405 drives the outer ring 403, the moving assembly 404, the first push rod 409, and the first fixing seat 410 to rotate. At this time, the first fixing seat 410 rotates within the first slider 204.
[0032] The mobile component 404 includes: A connecting frame 4041 is installed outside the outer ring 403; A third telescopic rod 4042 is mounted on the outside of the connecting frame 4041 , and an inner ring 4043 is mounted on the outside of the third telescopic rod 4042 ; The fourth telescopic rod 4044 is installed on the outside of the connecting frame 4041 . A clamping plate 4045 is installed on the outside of the fourth telescopic rod 4044 . An outer ring 4046 is installed on the outside of the clamping plate 4045 .
[0033] Before pretreatment, adjust the third telescopic rod 4042 and the fourth telescopic rod 4044 to their initial state. At this time, the inner ring 4043 and the outer ring 4046 are both away from the first roller 405, making it easier for the processing mechanism 5 to clean the outer surface of the first roller 405.
[0034] Before profiling, adjust the third telescopic rod 4042 to the appropriate stroke based on the wire size, bringing the two inner rings 4043 closer together. At this point, the two inner rings 4043 and the first roller 405 form a profiling groove. If the wire is larger, manually install the outer ring 4046 of the appropriate size. Adjust the third telescopic rod 4042 and the fourth telescopic rod 4044 to the appropriate stroke, so that the inner rings 4043, outer ring 4046, and first roller 405 form a new profiling groove. As the first motor 2022 and the second motor 2024 drive the first roller 405 and the second roller 503 toward each other, the wire profiling process begins.
[0035] By providing an adjustment mechanism 4 and a movable assembly 404, and using a first roller 405 with a smooth outer surface and no obstructions, the first roller 405 can be easily handled before and after profiling, making it easier to handle than a roller with multiple profiling grooves. Furthermore, two movable assemblies 404 are provided. By adjusting the positions of the two inner rings 4043 and the two outer rings 4046, the positions of the inner rings 4043 and the outer rings 4046 can be adjusted according to the size of the wire. The inner rings 4043, the outer rings 4046, and the first roller 405 form a profiling groove.
[0036] The processing mechanism 5 includes: A second fixed tube 501, which is installed inside the second slider 205; A second connecting seat 502, which is rotatably connected to the second fixed tube 501 and is connected to the second roller 503; Fixed groove 504: The second roller 503 has two fixed grooves 504 formed therein and arranged symmetrically. A pushing assembly 509 is installed inside the fixed grooves 504. A connecting rod 505 is installed inside the fixing groove 504. A connecting ring 506 is installed outside the connecting rod 505. The connecting rings 506 are located in the two fixing grooves 504 and are made of elastic material. A scraper is provided on the outside of one connecting ring 506, and a brush head is provided on the outside of the other connecting ring 506. A second fixed seat 508 is provided inside the second slider 205 . A second push rod 507 is installed inside the second fixed seat 508 . The telescopic end of the second push rod 507 is connected to the second roller 503 . The second center rod 510 is connected to the second roller 503 , and a second slot 511 is defined inside the second center rod 510 .
[0037] The pushing component 509 includes: A third push rod 5091, which is installed inside the fixing groove 504; Top plate 5092 , top plate 5092 is installed on the top of the third push rod 5091 , a connecting rod 5093 is installed on the outside of the top plate 5092 , the upper surface of the top plate 5092 is set to be arc-shaped, and the upper surface of the top plate 5092 is adapted to the connecting ring 506 .
[0038] Before pretreatment, the third push rod 5091 is turned on, and the third push rod 5091 drives the top plate 5092 and the connecting rod 5093 to move toward the direction of the connecting ring 506. Under the pressure of the top plate 5092, the connecting ring 506 is deformed and expanded outward, thereby driving the external scraper or brush head to move outward. At this time, the height of the connecting ring 506 in the vertical direction is higher than the middle part of the second roller 503.
[0039] The second push rod 507 is opened to its maximum stroke, driving the second roller 503 toward the placement assembly 202. Driven by the second slider 205, the second roller 503 moves upward. As the first roller 405 rotates, the scraper outside the connecting ring 506 begins to rub against the first roller 405, helping impurities to separate from the first roller 405. The stroke of the second push rod 507 is gradually adjusted to control the friction position until the brush head outside the connecting ring 506 contacts the outside of the first roller 405, thus performing a flexible cleaning of the first roller 405.
[0040] Before the profiling work, as the second telescopic rod 2025 is opened, the second telescopic rod 2025 gradually enters the second slot 511 in the second center rod 510, and the second motor 2024 controls the second telescopic rod 2025 to rotate. The second telescopic rod 2025 controls the second roller 503 to rotate. The position on the top of the second roller 503 where the fixed slot 504 is not provided cooperates with the first roller 405, and the first roller 405 and the second roller 503 move toward each other to perform the profiling work of the wire.
[0041] By providing the processing mechanism 5 and the pushing assembly 509, during the profiling operation, the second roller 503, where the fixing groove 504 is not provided, cooperates with the first roller 405 to perform the wire profiling operation. During the pre-treatment operation, the outer surface of the first roller 405 is treated by adjusting the position of the second roller 503 and controlling the expansion of the connecting ring 506.
[0042] Working principle: Before using the device, adjust the control mechanism 2 to adjust the first roller 405 to the rotating state. And adjust the position of the second roller 503 in the processing mechanism 5 to pre-process the first roller 405.
[0043] Adjust the power system in the first slider 204, and the first slider 204 drives the adjusting mechanism 4 to move until the first slider 204 and the first motor 2022 are at the same horizontal height. At this time, by opening the first telescopic rod 2023, the first telescopic rod 2023 is connected to the adjusting mechanism 4, and the first motor 2022 can be turned on. The first motor 2022 controls the first telescopic rod 2023 to rotate, and the first telescopic rod 2023 drives the adjusting mechanism 4 to rotate, thereby controlling the first roller 405 in the adjusting mechanism 4 to rotate.
[0044] As the first telescopic rod 2023 is opened, it gradually enters the first engaging slot 408 in the first central rod 407. By turning on the first motor 2022, the first motor 2022 drives the first telescopic rod 2023 and the first roller 405 to rotate. The rotation of the first roller 405 drives the outer ring 403, the moving assembly 404, the first push rod 409, and the first fixing seat 410 to rotate. At this time, the first fixing seat 410 rotates within the first slider 204.
[0045] Adjust the third telescopic rod 4042 and the fourth telescopic rod 4044 to the initial state. At this time, the inner ring 4043 and the outer ring 4046 are both located away from the first roller 405, which makes it easier for the processing mechanism 5 to clean the outer surface of the first roller 405.
[0046] The third push rod 5091 is turned on, and the third push rod 5091 drives the top plate 5092 and the connecting rod 5093 to move toward the direction of the connecting ring 506. Under the pressure of the top plate 5092, the connecting ring 506 is deformed and expanded outward, thereby driving the external scraper or brush head to move outward. At this time, the height of the connecting ring 506 in the vertical direction is higher than the middle part of the second roller 503.
[0047] The second push rod 507 is opened to its maximum stroke, driving the second roller 503 toward the placement assembly 202. Driven by the second slider 205, the second roller 503 moves upward. As the first roller 405 rotates, the scraper outside the connecting ring 506 begins to rub against the first roller 405, helping impurities to separate from the first roller 405. The stroke of the second push rod 507 is gradually adjusted to control the friction position until the brush head outside the connecting ring 506 contacts the outside of the first roller 405, thus performing a flexible cleaning of the first roller 405.
[0048] After preprocessing, the moving component 404 in the adjustment mechanism 4 is adjusted according to the size of the wire, the first slider 204, the second slider 205 and the placement component 202 are adjusted, the first roller 405 and the second roller 503 are controlled to rotate, and the wire is placed between the first roller 405 and the second roller 503 for profiling.
[0049] The power systems in the first slider 204 and the second slider 205 are adjusted simultaneously. The first slider 204 drives the adjusting mechanism 4 to move until the first slider 204 and the output end of the first motor 2022 are at the same horizontal height. At this time, by opening the first telescopic rod 2023, the first telescopic rod 2023 is connected to the adjusting mechanism 4, and the first motor 2022 can be turned on. The first telescopic rod 2023 is controlled by the first motor 2022 to rotate, and the first telescopic rod 2023 drives the adjusting mechanism 4 to rotate, thereby controlling the first roller 405 in the adjusting mechanism 4 to rotate; the second slider 205 drives the processing mechanism 5 to move until the second slider 205 and the output end of the second motor 2024 are at the same horizontal height. At this time, by opening the second telescopic rod 2025, the second telescopic rod 2025 gradually enters the second slot 511 in the second center rod 510, and the second motor 2024 can be turned on. The second motor 2024 controls the second telescopic rod 2025 to rotate, and the second telescopic rod 2025 drives the processing mechanism 5 to rotate, thereby controlling the second roller 503 in the processing mechanism 5 to rotate.
[0050] Depending on the size of the wire, the third telescopic rod 4042 is adjusted to the appropriate stroke, bringing the two inner rings 4043 closer together. At this point, the two inner rings 4043 and the first roller 405 form a profiling groove. If the wire is larger, an outer ring 4046 of the appropriate size can be manually installed. The third telescopic rod 4042 and the fourth telescopic rod 4044 are adjusted to the appropriate stroke, so that the inner rings 4043, outer ring 4046, and first roller 405 form a new profiling groove. As the first motor 2022 and the second motor 2024 drive the first roller 405 and the second roller 503 toward each other, the portion of the second roller 503 without the fixed groove 504 on its top engages with the first roller 405, and the first roller 405 and the second roller 503 move toward each other to perform the profiling of the wire.
[0051] The present invention provides a method for using a new energy vehicle battery pack conductor pressing die 1, comprising the following steps: S1. Before using the device, adjust the first roller 405 to the rotating state and adjust the position of the second roller 503 in the processing mechanism 5; S2. As the first roller 405 rotates, the first roller 405 contacts and rubs against the outer connecting ring 506 of the second roller 503, thereby pre-treating the first roller 405. S3. After pre-processing, the moving component 404 in the adjustment mechanism 4 is adjusted according to the size of the wire, thereby adjusting the distance between the two inner rings 4043 or the two outer rings 4046; S4. Adjust the first slider 204, the second slider 205 and the placement component 202 to control the rotation of the first roller 405 and the second roller 503. The wire is placed between the first roller 405 and the second roller 503 to perform the profiling operation.
[0052] Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field and related fields without making creative efforts should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention shall be implemented in accordance with conventional means in the field unless otherwise specified or limited.
Claims
1. A new energy vehicle battery pack conductor pressing die, comprising a die (1), characterized in that: A lifting plate (3), the lifting plate (3) being mounted on the top of the mold (1); A channel (6), wherein the channel (6) is opened at the bottom of the mold (1); A control mechanism (2), the control mechanism (2) being installed outside the mold (1), the control mechanism (2) comprising a first slider (204), a second slider (205) and a placement component (202); an adjusting mechanism (4), the adjusting mechanism (4) being connected to the first slider (204), the adjusting mechanism (4) comprising a first roller (405) and a moving assembly (404), the first slider (204) being used to control the first roller (405) and the moving assembly (404) to move in a vertical direction, and the placing assembly (202) cooperating with the first slider (204) to control the rotation of the first roller (405) and the moving assembly (404); A processing mechanism (5) is connected to a second slider (205), the processing mechanism (5) includes a second roller (503), the second slider (205) is used to control the second roller (503) to move in a vertical direction, and the placement component (202) cooperates with the second slider (205) to control the rotation of the second roller (503).
2. The new energy vehicle battery pack wire pressing die according to claim 1, characterized in that: The control mechanism (2) further comprises: A mounting rod (201), the mounting rod (201) being mounted on the outside of the mold (1), the mounting rod (201) being connected to the placement assembly (202); The slideway (203) is provided on the side wall of the mold (1). Two slideways (203) are provided and are symmetrically arranged. Two first sliders (204) and two second sliders (205) are provided and are symmetrically arranged.
3. The new energy vehicle battery pack wire pressing die according to claim 2, characterized in that: The placement component (202) includes: A placement rack (2021), wherein the placement rack (2021) is installed outside the mounting rod (201); a first motor (2022), the first motor (2022) being installed inside the placement rack (2021), the output end of the first motor (2022) being connected to a first telescopic rod (2023); A second motor (2024), wherein the second motor (2024) is installed inside the placement rack (2021), and an output end of the second motor (2024) is connected to a second telescopic rod (2025).
4. The new energy vehicle battery pack wire pressing die according to claim 1, characterized in that: The regulating mechanism (4) further comprises: a first through groove (406), the first through groove (406) being provided inside the first sliding block (204), and a first fixing tube (401) being installed inside the first through groove (406); A first connecting seat (402), the first connecting seat (402) is rotatably connected to the first fixed tube (401), the first connecting seat (402) is connected to the first roller (405), and two first connecting seats (402) are provided and are symmetrically arranged; An outer ring (403) is installed outside the first connecting seat (402), and the outer ring (403) is connected to the moving assembly (404). Two outer rings (403) and two moving assembly (404) are provided, and the two outer rings (403) and the moving assembly (404) are symmetrically arranged.
5. The new energy vehicle battery pack wire pressing die according to claim 4, characterized in that: The regulating mechanism (4) further comprises: A first center rod (407), the first center rod (407) is connected to the first roller (405), and a first slot (408) is provided inside the first center rod (407); A first fixed seat (410), wherein the first fixed seat (410) is arranged inside the first slider (204), a first push rod (409) is installed inside the first fixed seat (410), and a telescopic end of the first push rod (409) is connected to the first roller (405).
6. The new energy vehicle battery pack wire pressing die according to claim 4, characterized in that: The mobile component (404) includes: A connecting frame (4041), the connecting frame (4041) being mounted outside the outer ring (403); a third telescopic rod (4042), the third telescopic rod (4042) being mounted on the outside of the connecting frame (4041), and an inner ring (4043) being mounted on the outside of the third telescopic rod (4042); A fourth telescopic rod (4044) is mounted on the outside of the connecting frame (4041), a splint (4045) is mounted on the outside of the fourth telescopic rod (4044), and an outer ring (4046) is mounted on the outside of the splint (4045).
7. The new energy vehicle battery pack wire pressing die according to claim 1, characterized in that: The processing mechanism (5) comprises: A second fixed tube (501), the second fixed tube (501) being installed inside the second slider (205); A second connecting seat (502), the second connecting seat (502) is rotatably connected to the second fixed tube (501), and the second connecting seat (502) is connected to the second roller (503); A fixing groove (504), wherein the second roller (503) is provided with a fixing groove (504), wherein two fixing grooves (504) are provided and are symmetrically arranged, and a pushing component (509) is installed inside the fixing groove (504); A connecting rod (505), the connecting rod (505) being installed inside the fixing groove (504), and a connecting ring (506) being installed outside the connecting rod (505); a second fixed seat (508), the second fixed seat (508) being arranged inside the second slider (205), a second push rod (507) being installed inside the second fixed seat (508), and a telescopic end of the second push rod (507) being connected to the second roller (503); A second center rod (510), the second center rod (510) is connected to the second roller (503), and a second slot (511) is provided inside the second center rod (510).
8. The new energy vehicle battery pack wire pressing die according to claim 7, characterized in that: The pushing assembly (509) includes: A third push rod (5091), the third push rod (5091) being installed inside the fixing groove (504); A top plate (5092) is installed on the top of the third push rod (5091), and a connecting rod (5093) is installed on the outside of the top plate (5092).
9. The method for using the new energy vehicle battery pack wire pressing die is characterized in that: The following steps are involved: S1. Before using the device, adjust the first roller (405) to a rotating state and adjust the position of the second roller (503) in the processing mechanism (5); S2, as the first roller (405) rotates, the first roller (405) contacts and rubs against the outer connecting ring (506) of the second roller (503), thereby pre-treating the first roller (405); S3, after pre-processing, adjusting the moving component (404) in the adjustment mechanism (4) according to the size of the wire, thereby adjusting the distance between the two inner rings (4043) or the two outer rings (4046); S4, adjusting the first slider (204), the second slider (205) and the placement component (202), controlling the first roller (405) and the second roller (503) to rotate, placing the wire between the first roller (405) and the second roller (503), and performing the profiling operation.
Citation Information
Patent Citations
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