Bus duct forming device and forming method thereof

The busbar trunking forming device, which integrates bending, straightening, grinding, cutting and spraying mechanisms, solves the problem of manual handling in the processing of busbar trunking terminal block raw materials, realizes automated forming and reduces dust pollution, and improves processing efficiency.

CN117733570BActive Publication Date: 2026-05-12WUHU JINNIU ELECTRIC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
WUHU JINNIU ELECTRIC
Filing Date
2023-12-07
Publication Date
2026-05-12

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Abstract

The application discloses a bus duct forming device and a forming method thereof, and belongs to the technical field of bus duct processing, which comprises a device body, a bending assembly, a bearing plate, a straightening assembly, a polishing mechanism, a cutting mechanism, a pressing assembly and a spraying mechanism, wherein the bearing plate is fixedly connected with a second linear motion part fixedly connected to the device body and is used for bearing devices; the straightening assembly is used for straightening processing of a wiring board raw material; the polishing mechanism is used for polishing the side of the wiring board raw material; the cutting mechanism is used for cutting the wiring board raw material; the pressing assembly is used for positioning processing of the wiring board raw material subjected to bending and cutting; and the spraying mechanism is used for dust adsorption processing of the smoke generated by the polishing mechanism; the application can perform burr processing on the side of the wiring board raw material during straightening, and can perform adsorption and dust reduction on the smoke generated by the burr processing through the spraying mechanism; meanwhile, the wiring board raw material can be cut during pressing and bending of the end part of the wiring board raw material to complete the forming processing of the bus duct wiring board raw material.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of bus duct processing, and particularly relates to a bus duct forming device and a forming method thereof. BACKGROUND

[0002] The bus duct is a device responsible for transmission and distribution of electric energy in a low-voltage power supply system, has the advantages of large current-carrying capacity, high protection level, convenient distribution of electric energy, compact structure, easy installation and maintenance, long service life and the like, and has become a development trend to replace cables with bus ducts, especially in hotels, mines, high-rise buildings and public facilities.

[0003] When the bus duct is processed, the bus duct terminal board raw material needs to be bent. The existing bus duct terminal board raw material needs to be cut into a terminal board raw material of a directional size by a cutting device during processing, and then is bent and formed by a bending device. Personnel need to transfer the cut terminal board raw material to the bending area of the bending device for bending treatment.

[0004] The present application provides a bus duct forming device which can cut and bend the terminal board raw material to form the terminal board raw material without personnel transfer. SUMMARY

[0005] In view of the deficiencies of the prior art, the application provides a bus duct forming device and a forming method thereof, which solve the above problems.

[0006] To achieve the above object, the application is implemented by the following technical scheme: a bus duct forming device and a forming method thereof, comprising a device body and a bending assembly fixedly connected to the device body and used for bending the terminal board raw material of the bus duct, further comprising:

[0007] A bearing plate is fixedly connected to a second linear motion member fixedly connected to the device body and used for bearing the device;

[0008] A straightening assembly is installed on the device body and used for straightening the terminal board raw material;

[0009] A polishing mechanism is installed on the device body and used for polishing the side of the terminal board raw material;

[0010] A cutting mechanism is installed on the bearing plate and used for cutting the terminal board raw material to a directional size;

[0011] A pressing assembly is installed on the bearing plate and used for positioning the terminal board raw material subjected to bending and cutting; and

[0012] A spraying mechanism is installed on the device body and used for dust absorption treatment of the smoke generated by the polishing mechanism.

[0013] The straightening assembly includes a first rotating shaft, a second rotating shaft, rollers, and a first gear. The two vertically distributed first rotating shafts and the two vertically distributed second rotating shafts are arranged in a rectangle on the device body and are rotatably connected to the device body. The four rollers are fixedly connected to the first rotating shafts and the second rotating shafts respectively. The ends of the first rotating shafts and the second rotating shafts are fixedly connected to the first gears respectively. The first gears installed on the two first rotating shafts mesh with each other, and the first gears installed on the two second rotating shafts mesh with each other.

[0014] Based on the above technical solutions, the present invention also provides the following optional technical solutions:

[0015] A further technical solution: the size of the first rotating shaft located on the roller is smaller than the size of the roller located on the first rotating shaft.

[0016] Further technical solution: The polishing mechanism includes polishing wheels, two of which are symmetrically rotatably connected to the same second rotating shaft, and further includes:

[0017] The first pushing component is used to push the rubbing wheel to rotate vertically;

[0018] The first pushing component includes a second gear and a third gear. The second gear is sleeved on the rubbing wheel and fixedly connected to the rubbing wheel. The third gear is sleeved on another second rotating shaft and fixedly connected to the second rotating shaft. The third gear meshes with the second gear.

[0019] Further technical solution: The spraying mechanism includes a spray pipe, and further includes:

[0020] The liquid supply assembly, installed on the main body of the device, is used to supply liquid to the nozzle.

[0021] Further technical solution: The liquid supply assembly includes a first liquid storage cylinder, a second liquid storage cylinder, a first piston plate, a push rod, and a hinge rod. The two first liquid storage cylinders are symmetrically arranged on the device body and fixedly connected to the device body. The first liquid storage cylinders communicate with the first cavity opened on the device body. The two ends of the second liquid storage cylinder are fixedly connected to the two first liquid storage cylinders respectively and communicate with the first liquid storage cylinders. A first one-way valve is embedded and fixedly connected to both ends of the second liquid storage cylinder. A second one-way valve is embedded and fixedly connected at the connection between the first liquid storage cylinder and the device body. The first piston plate slides and limits the first liquid storage cylinder. The end of the push rod is fixedly connected to the first piston plate. One end of the hinge rod is hinged to the push rod, and the other end of the hinge rod is hinged to the side of the first gear. The nozzle is fixedly connected to the second liquid storage cylinder.

[0022] A further technical solution: The device body is fixedly connected to a scraper for scraping the surface of the terminal block material.

[0023] Further technical solution: The pressing assembly includes a pressing plate, a support plate, and a limiting box. The pressing plate is fixedly connected to one end of the support plate. The other end of the support plate passes through the limiting box and is fixedly connected to a limiting plate that slides and limits the limiting box. The limiting plate is fixedly connected to an elastic element that is fixedly connected to the limiting box at one end. The limiting box is fixedly connected to a bearing plate.

[0024] Further technical solution: The cutting mechanism includes a cutting device body, and further includes:

[0025] The guide rail assembly, mounted on the support plate, is used to drive the cutting device body to perform linear movement in the horizontal direction;

[0026] The guide rail assembly includes a mounting plate, a lead screw, and a guide rod. The cutting device body is mounted on the mounting plate. The mounting plate is threadedly connected to the lead screw, which is rotatably connected to the bearing plate. The mounting plate is slidably connected to the guide rod, which is fixedly connected to the bearing plate.

[0027] Further technical solution: The bending assembly includes a lower pressing block, an upper pressing block, and a first linear motion component. The upper pressing block is fixedly connected to the output end of the first linear motion component, and the end of the first linear motion component is embedded and fixedly connected to the device body. The lower pressing block is detachably connected to the device body.

[0028] A method for forming a busbar trunking forming device includes the following steps:

[0029] S1. The relevant technicians place the terminal block material on the device body placement platform. At this time, a first rotating shaft and a second rotating shaft are caused to rotate synchronously. The first rotating shaft and the second rotating shaft drive another first rotating shaft and the second rotating shaft to rotate in the opposite direction to the first rotating shaft and the second rotating shaft through the first gear. That is, the two sets of rollers are caused to perform roller pressing and straightening treatment on the terminal block material.

[0030] S2. The grinding mechanism grinds both sides of the terminal block material that is moving linearly in the horizontal direction to eliminate its edge burrs. When the terminal block material moves to the preset position under the push of the straightening component, the pressing component presses and limits the terminal block material. At the same time, the spraying mechanism can spray out mist when the straightening component cooperates with the grinding mechanism to grind the burrs on the sides of the terminal block material, so as to absorb the smoke generated during the grinding and perform dust reduction treatment.

[0031] S3. Start the cutting mechanism to cut the side of the terminal block material closest to the straightening component, while the bending component bends the end furthest from the straightening component.

[0032] This invention provides a busbar trunking forming device and method, which have the following advantages compared with the prior art:

[0033] 1. When straightening the terminal block material, the edges are deburred, and the smoke generated by the deburring is absorbed and dust is reduced by the spray mechanism 5. At the same time, when pressing and bending the end of the terminal block material, it can be cut to complete the forming process of the busbar trunking terminal block material. Attached Figure Description

[0034] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0035] Figure 2 This is a three-dimensional structural diagram of the device body of the present invention.

[0036] Figure 3 This is a schematic diagram showing the distribution of the components of the present invention.

[0037] Figure 4 This is a schematic diagram of the spray mechanism of the present invention.

[0038] Figure 5 This is a schematic diagram of the cutting mechanism of the present invention.

[0039] Reference numerals in the attached drawings: 1. Device body; 101. First cavity; 2. Bending assembly; 201. Lower pressing block; 202. Upper pressing block; 203. First linear motion component; 3. Straightening assembly; 301. First rotating shaft; 302. Second rotating shaft; 303. Roller; 304. First gear; 4. Grinding mechanism; 401. Polishing wheel; 402. Pushing assembly; 4021. Second gear; 4022. Third gear; 5. Spraying mechanism; 501. Spray nozzle; 502. Liquid supply assembly; 5021, first liquid storage tank; 5022, second liquid storage tank; 5023, first piston plate; 5024, push rod; 5025, hinge rod; 6, bearing plate; 7, pressing assembly; 701, pressing plate; 702, support plate; 703, limiting box; 8, cutting mechanism; 801, cutting device body; 802, guide rail assembly; 8021, mounting plate; 8022, lead screw; 8023, guide rod; 9, second linear motion component; 10, scraper. Detailed Implementation

[0040] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0041] The specific implementation of the present invention will be described in detail below with reference to specific embodiments.

[0042] Please see Figures 1-4 According to one embodiment of the present invention, a busbar trunking forming device includes a device body 1 and a bending assembly 2 mounted on the device body 1 for bending the wiring plate material of the busbar trunking, and further includes:

[0043] The support plate 6 is fixedly connected to the second linear motion component 9, which is fixedly connected to the device body 1, and is used to support the device.

[0044] The straightening component 3 is installed on the device body 1 and is used to straighten the wiring board material.

[0045] The grinding mechanism 4 is installed on the device body 1 and is used to grind the edges of the wiring board material.

[0046] The cutting mechanism 8 is mounted on the support plate 6 and is used to cut the terminal block material.

[0047] Pressing component 7, mounted on support plate 6, is used for positioning the terminal block material to be bent and cut; and

[0048] The spray mechanism 5 is installed on the device body 1 and is used to adsorb and reduce dust from the smoke generated by the grinding mechanism 4.

[0049] The straightening assembly 3 includes a first rotating shaft 301, a second rotating shaft 302, rollers 303, and a first gear 304. The two vertically distributed first rotating shafts 301 and the two vertically distributed second rotating shafts 302 are arranged in a rectangular shape on the device body 1 and are rotatably connected to the device body 1. The four rollers 303 are correspondingly fixedly connected to the first rotating shafts 301 and the second rotating shafts 302. The ends of the first rotating shafts 301 and the second rotating shafts 302 are correspondingly fixedly connected to the first gears 304. The first gears 304 installed on the two first rotating shafts 301 mesh with each other, and the first gears 304 installed on the two second rotating shafts 302 mesh with each other.

[0050] Specifically, the size of the first rotating shaft 301 located on the roller 303 is smaller than the size of the roller 303 located on the first rotating shaft 301. The purpose of this arrangement is to facilitate the installation of the grinding mechanism 4 and to facilitate the grinding mechanism 4 to deburr the edges of the terminal block material.

[0051] Preferably, the second linear motion member 9 is an electric telescopic rod. Those skilled in the art should know that the purpose of this arrangement is to push the bearing plate 6 to perform linear movement in the vertical direction. Therefore, in some embodiments, the second linear motion member 9 can also be set as any one of a cylinder, a hydraulic cylinder, and a linear motor.

[0052] In this embodiment of the invention, a person skilled in the art places the terminal block material on the placement platform of the device body 1. At this time, a first rotating shaft 301 and a second rotating shaft 302 are synchronously rotated. The first rotating shaft 301 and the second rotating shaft 302 drive the other first rotating shaft 301 and the second rotating shaft 302 to rotate in the opposite direction to the first rotating shaft 301 and the second rotating shaft 302 through the first gear 304. That is, the two sets of rollers 303 perform roll pressing and straightening treatment on the terminal block material. At the same time, the grinding mechanism 4 can grind the two sides of the terminal block material that is moving linearly in the horizontal direction to eliminate its edge burrs. When the terminal block material moves to the preset position under the push of the straightening component 3, When the terminal block material is pressed and limited by the pressing component, the cutting mechanism 8 is activated to cut the side of the terminal block material close to the straightening component 3. At the same time, the bending component bends the end away from the straightening component 3. Meanwhile, the spraying mechanism 5 sprays mist when the straightening component 3 and the grinding mechanism 4 are used to deburr the edge of the terminal block material. This mist absorbs and reduces the dust generated during the grinding process. This process allows for deburring the edge of the terminal block material during straightening, and the spraying mechanism 5 absorbs and reduces the dust generated during the deburring process. Additionally, the terminal block material can be cut when the end is pressed and bent to complete the forming process of the busbar terminal block material.

[0053] Please see Figures 1-3 As an embodiment of the present invention, the polishing mechanism 4 includes polishing wheels 401, two polishing wheels 401 being symmetrically rotatably connected to the same second rotating shaft 302, and further includes:

[0054] The first pushing component 402 is used to push the rubbing wheel 401 to rotate in the vertical direction;

[0055] The first pushing component 402 includes a second gear 4021 and a third gear 4022. The second gear 4021 is sleeved on the rubbing wheel 401 and fixedly connected to the rubbing wheel 401. The third gear 4022 is sleeved on another second rotating shaft 302 and fixedly connected to the second rotating shaft 302. The third gear 4022 meshes with the second gear 4021.

[0056] In this embodiment of the invention, the rotating second shaft 302 drives the third gear 4022 fixedly connected thereto to rotate vertically, and the third gear 4022 drives the second gear 4021 meshing with it to rotate vertically. The two polishing wheels 401 rotate horizontally in sync to deburr and polish the edges of the wiring board material that has been straightened by the straightening component 3 and driven to move linearly in the horizontal direction.

[0057] Please see Figures 1-4 As one embodiment of the present invention, the spraying mechanism 5 includes a spray pipe 501, and further includes:

[0058] The liquid supply assembly 502 is installed on the device body 1 and is used to supply liquid to the nozzle 501.

[0059] The liquid supply assembly 502 includes a first liquid storage cylinder 5021, a second liquid storage cylinder 5022, a first piston plate 5023, a push rod 5024, and a hinge rod 5025. The two first liquid storage cylinders 5021 are symmetrically arranged on the device body 1 and fixedly connected to it. Each first liquid storage cylinder 5021 communicates with a first cavity 101 formed on the device body 1. The two ends of the second liquid storage cylinder 5022 are correspondingly fixedly connected to and communicate with the two first liquid storage cylinders 5021. Each end is embedded with a first one-way valve (not shown in the figure), and the first liquid storage cylinder 5021 is embedded with a second one-way valve (not shown in the figure) at the connection between the device body 1 and the first liquid storage cylinder 5021. The first piston plate 5023 slides with the first liquid storage cylinder 5021 in a limited position. The end of the push rod 5024 is fixedly connected to the first piston plate 5023. One end of the hinge rod 5025 is hinged to the push rod 5024, and the other end of the hinge rod 5025 is hinged to the side of the first gear 304. The nozzle 501 is fixedly connected through to the second liquid storage cylinder 5022.

[0060] In this embodiment of the invention, the first gear 304, which rotates horizontally, pushes the push rod 5024 via the hinge rod 5025, causing the first piston plate 5023 to reciprocate linearly along the length of the first liquid storage cylinder 5021. When the first piston plate 5023 moves in the opposite direction, a negative pressure is formed in the inner cavities of the first liquid storage cylinder 5021 and the second liquid storage cylinder 5022, which adsorbs the liquid located in the device body 1 into their inner cavities. When the first piston plate 5023 moves in the forward direction, the first piston plate 5023 squeezes the liquid located in the first liquid storage cylinder 5021 and the second liquid storage cylinder 5022 and pressurizes it to be introduced into the nozzle 501. The nozzle 501 sprays out the pressurized liquid to form a water mist, thereby adsorbing and reducing the dust generated by the grinding mechanism 4 and the straightening component 3 in the deburring process of the two sides of the edge of the wiring board material.

[0061] Preferably, a scraper 10 for scraping the surface of the terminal block material is fixedly connected to the device body 1. The purpose of this arrangement is to block the dust generated by the spray mechanism 5 and prevent it from entering the working area of ​​the pressing component.

[0062] Please see Figures 1-4 As an embodiment of the present invention, the pressing assembly 7 includes a pressing plate 701, a support plate 702, and a limiting box 703. The pressing plate 701 is fixedly connected to one end of the support plate 702. The other end of the support plate 702 passes through the limiting box 703 and is fixedly connected to a limiting plate (not shown in the figure) that slides and limits the limiting box 703. The limiting plate is fixedly connected to an elastic element (not shown in the figure) that is fixedly connected to the limiting box 703 at one end. The limiting box 703 is fixedly connected to the bearing plate 6.

[0063] In this embodiment of the invention, the second linear motion member 9 pushes the bearing plate 6 to perform a linear motion in the vertical direction. The bearing plate 6 pushes the limiting box 703 fixedly connected thereto to perform a synchronous linear motion. The limiting box 703 drives the support plate 702 to push the pressing plate 701 to abut against the connecting plate material. At this time, the second linear motion member 9 continues to drive the bearing plate 6 to perform a linear motion in the vertical direction, that is, it causes the pressing plate 701 to push the limiting plate to compress elastically. At this time, the elastic member gives the support plate 702 a reaction force. This reaction force achieves the pressing and limiting treatment of the connecting plate material by pushing the support plate 702 to drive the pressing plate 701 to abut against the limiting plate material.

[0064] Please see Figure 1 , Figure 2 as well as Figure 5 As one embodiment of the present invention, the cutting mechanism 8 includes a cutting device body 801, and further includes:

[0065] The guide rail assembly 802 is mounted on the support plate 6 and is used to drive the cutting device body 801 to perform linear movement in the horizontal direction;

[0066] The guide rail assembly 802 includes a mounting plate 8021, a lead screw 8022, and a guide rod 8023. The cutting device body 801 is mounted on the mounting plate 8021. The mounting plate 8021 is threadedly connected to the lead screw 8022, which is rotatably connected to the bearing plate 6. The mounting plate 8021 is slidably engaged with the guide rod 8023, which is fixedly connected to the bearing plate 6.

[0067] In this embodiment of the invention, the drive screw 8022 rotates in the horizontal direction, and the screw 8022 pushes the mounting plate 8021 to move linearly along the length of the guide rod 8023. The mounting plate 8021 achieves the technical effect of cutting the connecting plate material by synchronously driving the cutting device body 801 to move linearly in the horizontal direction.

[0068] Please see Figure 1 , Figure 2 as well as Figure 4 As an embodiment of the present invention, the bending assembly includes a lower pressing block 201, an upper pressing block 202 and a first linear motion member 203. The upper pressing block 202 is fixedly connected to the output end of the first linear motion member 203. The end of the first linear motion member 203 is embedded and fixedly connected to the device body 1. The lower pressing block 201 is detachably connected to the device body 1.

[0069] Preferably, the first linear motion member 203 is an electric telescopic rod. Those skilled in the art should know that the purpose of this arrangement is to push the upper pressing block 202 to perform linear motion in the vertical direction. Therefore, in some embodiments, the first linear motion member 203 can also be set as any one of a cylinder, a hydraulic cylinder, and a linear motor.

[0070] Preferably, the lower pressing block 201 is detachably connected to the device body 1 by a bolt assembly. Those skilled in the art should know that the purpose of this arrangement is to confine the lower pressing block 201 to the device body 1. Therefore, in some embodiments, the lower pressing block 201 can also be detachably connected to the device body 1 by a snap-fit ​​method or fixedly connected to the device body 1 by welding.

[0071] In this embodiment of the invention, the first linear motion member 203 pushes the upper pressing block 202 to perform linear motion in the vertical direction. The upper pressing block 202 achieves the technical effect of bending the terminal block material by pushing the terminal block material and pressing it against the lower pressing block 201.

[0072] A method for forming a busbar trunking forming device includes the following steps:

[0073] S1. Relevant technicians place the terminal block material on the placement platform of the device body 1. At this time, a first rotating shaft 301 and a second rotating shaft 302 are caused to rotate synchronously. The first rotating shaft 301 and the second rotating shaft 302 drive the other first rotating shaft 301 and the second rotating shaft 302 to rotate in the opposite direction to the first rotating shaft 301 and the second rotating shaft 302 through the first gear 304. That is, the two sets of rollers 303 are used to roll and straighten the terminal block material.

[0074] S2. The grinding mechanism 4 grinds both sides of the terminal block material that is moving linearly in the horizontal direction to eliminate its edge burrs. When the terminal block material moves to the preset position under the push of the straightening component 3, the pressing component presses and limits the terminal block material. At the same time, the spraying mechanism 5 can spray out mist when the straightening component 3 cooperates with the grinding mechanism 4 to grind the burrs on the sides of the terminal block material, so as to absorb the smoke generated during the grinding and perform dust reduction treatment.

[0075] S3. Start the cutting mechanism 8 to cut the side of the wiring board material close to the straightening component 3, while the bending component bends the end away from the straightening component 3.

[0076] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0077] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A busbar trunking forming device, comprising a device body (1) and a bending assembly (2) mounted on the device body (1) for bending the wiring plate material of the busbar trunking, characterized in that, Also includes: The support plate (6) is fixedly connected to the second linear motion component (9) which is fixedly connected to the device body (1) and is used to support the device. The straightening component (3) is installed on the device body (1) and is used to straighten the wiring board material; The grinding mechanism (4) is installed on the device body (1) and is used to grind the edges of the wiring board material. The cutting mechanism (8) is installed on the support plate (6) and is used to cut the terminal block material; The pressing component (7) is mounted on the support plate (6) for positioning the terminal block material that is being bent and cut; and The spray mechanism (5) is installed on the device body (1) and is used to adsorb and reduce dust from the smoke generated by the grinding mechanism (4). The straightening assembly (3) includes a first rotating shaft (301), a second rotating shaft (302), rollers (303), and a first gear (304). The two vertically distributed first rotating shafts (301) and the two vertically distributed second rotating shafts (302) are arranged in a rectangular shape on the device body (1) and are rotatably connected to the device body (1). The four rollers (303) are fixedly connected to the first rotating shafts (301) and the second rotating shafts (302). The ends of the first rotating shafts (301) and the second rotating shafts (302) are fixedly connected to the first gears (304). The first gears (304) installed on the two first rotating shafts (301) mesh with each other, and the first gears (304) installed on the two second rotating shafts (302) mesh with each other. The polishing mechanism (4) includes polishing wheels (401), two polishing wheels (401) are symmetrically rotatably connected to the same second rotating shaft (302), and also includes: The first pushing component (402) is used to push the rubbing wheel (401) to rotate in the vertical direction; The first pushing component (402) includes a second gear (4021) and a third gear (4022). The second gear (4021) is sleeved on the rubbing wheel (401) and fixedly connected to the rubbing wheel (401). The third gear (4022) is sleeved on another second rotating shaft (302) and fixedly connected to the second rotating shaft (302). The third gear (4022) meshes with the second gear (4021). The spraying mechanism (5) includes a nozzle (501) and further includes: A liquid supply assembly (502), installed on the device body (1), is used to supply liquid to the nozzle (501). The liquid supply assembly (502) includes a first liquid storage cylinder (5021), a second liquid storage cylinder (5022), a first piston plate (5023), a push rod (5024), and a hinge rod (5025). The two first liquid storage cylinders (5021) are symmetrically arranged on the device body (1) and fixedly connected to the device body (1). The first liquid storage cylinders (5021) communicate with the first cavity (101) opened on the device body (1). The two ends of the second liquid storage cylinder (5022) are correspondingly fixedly connected to the two first liquid storage cylinders (5021) and... The first liquid storage cylinder (5021) is connected to the second liquid storage cylinder (5022), and both ends of the second liquid storage cylinder (5022) are embedded and fixedly connected with a first one-way valve. The first liquid storage cylinder (5021) is embedded and fixedly connected with a second one-way valve at the connection between the first liquid storage cylinder (5021) and the device body (1). The first piston plate (5023) slides with the first liquid storage cylinder (5021) in a limited position. The end of the push rod (5024) is fixedly connected to the first piston plate (5023). One end of the hinge rod (5025) is hinged to the push rod (5024), and the other end of the hinge rod (5025) is hinged to the side of the first gear (304). The nozzle (501) is connected through and fixedly connected to the second liquid storage cylinder (5022). The pressing assembly (7) includes a pressing plate (701), a support plate (702), and a limiting box (703). The pressing plate (701) is fixedly connected to one end of the support plate (702). The other end of the support plate (702) passes through the limiting box (703) and a limiting plate that slides and limits the limiting box (703) is fixedly connected thereto. The limiting plate is fixedly connected to an elastic element that is fixedly connected to the limiting box (703) at one end. The limiting box (703) is fixedly connected to the bearing plate (6). The cutting mechanism (8) includes a cutting device body (801) and further includes: The guide rail assembly (802) is mounted on the support plate (6) and is used to drive the cutting device body (801) to perform linear movement in the horizontal direction. The guide rail assembly (802) includes a mounting plate (8021), a lead screw (8022) and a guide rod (8023). The cutting device body (801) is mounted on the mounting plate (8021). The mounting plate (8021) is threadedly connected to the lead screw (8022) which is rotatably connected to the support plate (6). The mounting plate (8021) is slidably engaged with the guide rod (8023) which is fixedly connected to the support plate (6).

2. The busbar trunking forming device according to claim 1, characterized in that, The size of the first rotating shaft (301) located on the roller (303) is smaller than the size of the roller (303) located on the first rotating shaft (301).

3. The busbar trunking forming device according to claim 1, characterized in that, The device body (1) is fixedly connected to a scraper (10) for scraping the surface of the terminal block material.

4. The busbar trunking forming device according to claim 1, characterized in that, The bending assembly (2) includes a lower pressing block (201), an upper pressing block (202), and a first linear motion component (203). The upper pressing block (202) is fixedly connected to the output end of the first linear motion component (203). The end of the first linear motion component (203) is embedded and fixedly connected to the device body (1). The lower pressing block (201) is detachably connected to the device body (1).

5. The forming method of the busbar trunking forming device according to claim 1, characterized in that, Includes the following steps: S1. The relevant technicians place the terminal block material on the placement platform of the device body (1). At this time, a first rotating shaft (301) and a second rotating shaft (302) are driven to rotate synchronously. The first rotating shaft (301) and the second rotating shaft (302) drive the other first rotating shaft (301) and the second rotating shaft (302) to rotate in the opposite direction to the first rotating shaft (301) and the second rotating shaft (302) through the first gear (304). That is, the two sets of rollers (303) are driven to perform roller pressing and straightening treatment on the terminal block material. S2. The grinding mechanism (4) grinds the two sides of the terminal block material that is moving linearly in the horizontal direction to eliminate its edge burrs. When the terminal block material moves to the preset position under the push of the straightening component (3), the pressing component presses and limits the terminal block material. At the same time, the spraying mechanism (5) can spray out mist when the straightening component (3) cooperates with the grinding mechanism (4) to grind the burrs on the side of the terminal block material, and adsorb the smoke generated during grinding and perform dust reduction treatment. S3. Start the cutting mechanism (8) to cut the side of the wiring board material close to the straightening component (3), while the bending component bends the end away from the straightening component (3).