Terminal block copper column punching equipment
By designing a terminal block copper pillar assembly equipment, and utilizing the synergistic effect of drive components and moving seats, the automated assembly of copper pillars is achieved, solving the problems of low assembly efficiency and high defect rate in existing technologies, and improving assembly efficiency and accuracy.
Patent Information
- Application Number
- CN202423103778.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-16
AI Technical Summary
In the existing technology, the copper pillar assembly of the terminal block is inefficient and prone to defects, leading to performance problems.
Design a terminal block copper pillar assembly device, including a base, a terminal block feeding assembly, a copper pillar feeding assembly, and a copper pillar assembly. Through the coordinated action of a drive element and a moving base, the copper pillars are automatically assembled.
This improves the assembly efficiency and accuracy of copper pillars, avoids terminal block performance issues, saves manual loading time, and ensures that copper pillars are assembled in place.
Smart Images

Figure CN223771541U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of electricity meter technology and relates to a device for driving copper pillars into terminal blocks. Background Technology
[0002] Currently, terminal blocks are widely used in new energy, electric vehicles, industrial automation and smart home fields as key components of electrical connections. Copper pillars, as an important part of terminal blocks, have strong conductivity and good corrosion resistance, which can improve the overall performance of terminal blocks.
[0003] Existing technical solutions involve manually inserting copper pillars into the terminal blocks, which is not only inefficient but also prone to improper assembly, leading to poor performance of the terminal blocks. There is considerable room for improvement. Summary of the Invention
[0004] The purpose of this invention is to address the aforementioned problems in the existing technology by proposing a terminal block copper pillar punching device.
[0005] The objective of this utility model can be achieved through the following technical solution: A terminal block copper pillar feeding device, comprising: a base; a terminal block feeding assembly, which includes a terminal block positioning seat, the terminal block positioning seat being connected to the base and used for positioning the terminal block; a copper pillar feeding assembly, which includes a copper pillar feeding tray and a copper pillar moving seat, the copper pillar feeding tray being connected to the base, the copper pillar moving seat being movably connected to the base, the copper pillar moving seat being movable to a first feeding position or a first working position, wherein when the copper pillar moving seat is located at the first feeding position, the... A copper pillar moving seat is aligned with the copper pillar loading tray. When the copper pillar moving seat is in the first working position, it is aligned with at least a portion of the terminal block positioning seat. A copper pillar striking assembly includes a copper pillar striking base, which is movably connected to the base and can move closer to or further away from the terminal block positioning seat. The moving direction of the copper pillar striking base is perpendicular to the moving direction of the copper pillar moving seat. When the copper pillar moving seat is in the first working position, the copper pillar striking base can push the copper pillar of the copper pillar moving seat into the terminal block of the terminal block positioning seat.
[0006] In the aforementioned terminal block copper pillar mounting device, the copper pillar feeding assembly further includes a copper pillar moving drive element. The copper pillar moving drive element is connected to the base, and the copper pillar moving seat is connected to the drive shaft of the copper pillar moving drive element. The copper pillar moving drive element can drive the copper pillar moving seat to move to the first feeding position or the first working position.
[0007] In the aforementioned terminal block copper pillar bonding device, the copper pillar bonding assembly further includes a copper pillar bonding drive element. The copper pillar bonding drive element is connected to the base, and the copper pillar bonding seat is connected to the drive shaft of the copper pillar bonding drive element. The copper pillar bonding drive element can drive the copper pillar bonding seat to move closer to or further away from the terminal block positioning seat.
[0008] In any of the terminal block copper pillar punching devices described above, there are two sets of copper pillar feeding components, which are located on both sides of the copper pillar punching component. When the copper pillar moving seat is in the first working position, the copper pillar moving seat is located between the terminal block positioning seat and the copper pillar punching seat. When the copper pillar moving seats of both sets of copper pillar feeding components are in the first working position, the copper pillar punching seat can simultaneously push the copper pillars of the copper pillar moving seats of both sets of copper pillar feeding components into the terminal block of the terminal block positioning seat.
[0009] In the aforementioned terminal block copper pillar mounting device, the copper pillar moving seat is provided with a contact portion. When the copper pillar moving seats of both sets of copper pillar feeding assemblies are in the first working position, the copper pillar moving seats of the two sets of copper pillar feeding assemblies contact each other through the contact portion.
[0010] In the aforementioned terminal block copper pillar mounting device, the terminal block feeding assembly further includes a terminal block feeding tray, a terminal block moving seat, and a terminal block feeding base. The terminal block feeding tray is connected to the base, and the terminal block moving seat is movably connected to the base. The terminal block moving seat can be moved to a second feeding position or a second working position. When the terminal block moving seat is in the second feeding position, it is aligned with the terminal block feeding tray. When the terminal block moving seat is in the second working position, it is aligned with the terminal block moving seat. The terminal block feeding base is movably connected to the base and can move closer to or further away from the terminal block positioning seat. The moving direction of the terminal block feeding base is perpendicular to the moving direction of the terminal block moving seat.
[0011] In the aforementioned terminal block copper pillar bonding equipment, the terminal block feeding assembly further includes a terminal block moving drive element, which is connected to the base. The terminal block moving seat is connected to the drive shaft of the terminal block moving drive element, and the terminal block moving drive element can drive the terminal block moving seat to move to the second feeding position or the second working position.
[0012] In the aforementioned terminal block copper pillar mounting device, the terminal block feeding assembly further includes a terminal block feeding drive element. The terminal block feeding drive element is connected to the base, and the terminal block feeding seat is connected to the drive shaft of the terminal block feeding drive element. The terminal block feeding drive element can drive the terminal block feeding seat to move closer to or further away from the terminal block positioning seat.
[0013] In the aforementioned terminal block copper pillar mounting equipment, the terminal block feeding assembly further includes a terminal block positioning block. The terminal block positioning block is located above the terminal block positioning seat. The terminal block positioning block is vertically connected to the base and can move closer to or further away from the terminal block positioning seat.
[0014] In the aforementioned terminal block copper pillar mounting device, the terminal block feeding assembly further includes a terminal block positioning drive element. The terminal block positioning drive element is connected to the base, and the terminal block positioning block is connected to the drive shaft of the terminal block positioning drive element. The terminal block positioning drive element can drive the terminal block positioning block to move closer to or further away from the terminal block positioning seat.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0016] 1. When the copper column moving seat is aligned with the terminal block positioning seat, the copper column can be pushed into the terminal block of the terminal block positioning seat by moving the copper column seat, which improves the assembly efficiency of the copper column and ensures that the copper column is assembled in place, thus avoiding performance problems of the terminal block.
[0017] 2. The copper column moving drive element can drive the copper column moving seat to move from the first loading position to the first working position for assembly after the material is loaded at the first loading position, saving the time of manual loading and improving efficiency.
[0018] 3. The copper pillar driving element can drive the copper pillar holder to move closer to or away from the terminal block positioning seat, thereby realizing the automatic assembly of the copper pillar into the terminal block. This not only improves the efficiency of copper pillar installation but also ensures that the copper pillar is driven into the ground more accurately, avoiding performance problems.
[0019] 4. When the two sets of copper column feeding components come into contact, the two sets of copper columns are arranged to form the shape required for the terminal block, which makes it easy to drive the two sets of copper columns into the terminal block at the same time.
[0020] 5. The terminal block positioning block can be automatically moved closer to or further away from the terminal block positioning seat by the terminal block positioning drive element, eliminating the error of manual positioning and improving the accuracy of copper pillar installation. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the terminal block copper pillar punching device of this utility model.
[0022] Figure 2 This is a schematic diagram of the terminal block copper pillar punching device of this utility model when it is not in operation.
[0023] Figure 3 This is a schematic diagram of the terminal block copper pillar punching device of this utility model during operation.
[0024] In the diagram, 100 is the base; 210 is the terminal block positioning seat; 220 is the terminal block feeding tray; 230 is the terminal block moving seat; 240 is the terminal block feeding seat; 250 is the terminal block moving drive element; 260 is the terminal block feeding drive element; 270 is the terminal block positioning block; 280 is the terminal block positioning drive element; 310 is the copper pillar feeding tray; 320 is the copper pillar moving seat; 321 is the contact part; 330 is the copper pillar moving drive element; 410 is the copper pillar mounting seat; and 420 is the copper pillar mounting drive element. Detailed Implementation
[0025] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.
[0026] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0027] Furthermore, in this utility model, the use of terms such as "first," "second," and "a" is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0028] In this utility model, unless otherwise explicitly specified and limited, the terms "connection," "fixing," etc., should be interpreted broadly. For example, "fixing" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0029] Furthermore, the technical solutions of the various embodiments of this utility model can be combined with each other, but only if they are based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0030] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.
[0031] like Figures 1-3 As shown, a terminal block copper pillar punching device includes: a base 100, a terminal block feeding assembly, a copper pillar feeding assembly, and a copper pillar punching assembly.
[0032] The terminal block feeding assembly includes a terminal block positioning seat 210, which is connected to the base 100 and used to position the terminal blocks.
[0033] The copper column feeding assembly includes a copper column feeding tray 310 and a copper column moving seat 320. The copper column feeding tray 310 is connected to the base 100, and the copper column moving seat 320 is movably connected to the base 100. The copper column moving seat 320 can be moved to a first feeding position (not shown in the figure) or a first working position (not shown in the figure). When the copper column moving seat 320 is in the first feeding position, the copper column moving seat 320 is aligned with the copper column feeding tray 310. When the copper column moving seat 320 is in the first working position, the copper column moving seat 320 is aligned with at least a portion of the terminal block positioning seat 210.
[0034] The copper pillar assembly includes a copper pillar base 410, which is movably connected to the base 100 and can move closer to or further away from the terminal block positioning seat 210. The moving direction of the copper pillar base 410 is perpendicular to the moving direction of the copper pillar moving seat 320. When the copper pillar moving seat 320 is in the first working position, the copper pillar base 410 can push the copper pillar of the copper pillar moving seat 320 into the terminal block of the terminal block positioning seat 210.
[0035] In this embodiment, when the copper pillar moving seat 320 is aligned with the terminal block positioning seat 210, the copper pillar can be pushed into the terminal block of the terminal block positioning seat 210 by moving the copper pillar seat 410, which improves the assembly efficiency of the copper pillar and ensures that the copper pillar is assembled in place, thus avoiding performance problems of the terminal block.
[0036] like Figures 1-3As shown, based on the above embodiment, the copper column feeding assembly further includes a copper column moving drive element 330, which is connected to the base 100. The copper column moving seat 320 is connected to the drive shaft of the copper column moving drive element 330, and the copper column moving drive element 330 can drive the copper column moving seat 320 to move to the first feeding position or the first working position.
[0037] In this embodiment, the copper column moving drive element 330 can drive the copper column moving seat 320 to move from the first loading position to the first working position for assembly after the material is loaded at the first loading position, saving the time of manual loading and improving efficiency.
[0038] like Figures 1-3 As shown, based on the above embodiment, the copper-pin assembly further includes a copper-pin driving element 420, which is connected to the base 100. The copper-pin seat 410 is connected to the drive shaft of the copper-pin driving element 420. The copper-pin driving element 420 can drive the copper-pin seat 410 to move closer to or away from the terminal block positioning seat 210.
[0039] In this embodiment, the copper pillar driving element 420 can drive the copper pillar holder 410 to approach or move away from the terminal block positioning seat 210, thereby realizing the automatic assembly of the copper pillar into the terminal block. This not only improves the efficiency of copper pillar installation but also ensures that the copper pillar is driven into the ground more accurately, avoiding performance problems.
[0040] like Figures 1-3 As shown, based on the above implementation method, there are two sets of copper column feeding assemblies. The two sets of copper column feeding assemblies are located on both sides of the copper column pressing assembly. When the copper column moving seat 320 is in the first working position, the copper column moving seat 320 is located between the terminal block positioning seat 210 and the copper column pressing seat 410. When the copper column moving seats 320 of both sets of copper column feeding assemblies are in the first working position, the copper column pressing seat 410 can simultaneously push the copper columns of the copper column moving seats 320 of both sets of copper column feeding assemblies into the terminal block of the terminal block positioning seat 210.
[0041] In this embodiment, copper column feeding components are provided on both sides of the copper column assembly, so that feeding can be carried out simultaneously, thereby improving the efficiency of copper column feeding.
[0042] like Figures 1-3 As shown, based on the above embodiment, the copper column moving seat 320 is provided with a contact portion 321. When the copper column moving seats 320 of the two sets of copper column feeding assemblies are both in the first working position, the copper column moving seats 320 of the two sets of copper column feeding assemblies contact each other through the contact portion 321.
[0043] In this embodiment, when the two sets of copper pillar feeding components come into contact, the two sets of copper pillars are arranged to form the shape required for the terminal block, which makes it easy for the copper pillar holder 410 to drive the two sets of copper pillars into the terminal block at the same time.
[0044] like Figures 1-3 As shown, based on the above embodiment, the terminal block feeding assembly further includes a terminal block feeding tray 220, a terminal block moving seat 230, and a terminal block feeding base 240. The terminal block feeding tray 220 is connected to the base 100, and the terminal block moving seat 230 is movably connected to the base 100. The terminal block moving seat 230 can be moved to a second feeding position (not shown in the figure) or a second working position (not shown in the figure). When the terminal block moving seat 230 is in the second feeding position, the terminal block moving seat 230 is aligned with the terminal block feeding tray 220. When the terminal block moving seat 230 is in the second working position, the terminal block feeding base 240 is aligned with the terminal block moving seat 230. The terminal block feeding base 240 is movably connected to the base 100 and can move closer to or further away from the terminal block positioning seat 210. The moving direction of the terminal block feeding base 240 is perpendicular to the moving direction of the terminal block moving seat 230.
[0045] In this embodiment, when the terminal block moving seat 230 is in the second loading position, the terminal block loading tray 220 can feed the terminal block onto the terminal block moving seat 230, and then move the terminal block to the second working position through the terminal block moving seat 230.
[0046] like Figures 1-3 As shown, based on the above embodiment, the terminal block feeding assembly further includes a terminal block moving drive element 250, which is connected to the base 100. The terminal block moving seat 230 is connected to the drive shaft of the terminal block moving drive element 250, and the terminal block moving drive element 250 can drive the terminal block moving seat 230 to move to the second feeding position or the second working position.
[0047] In this embodiment, the terminal block moving drive element 250 can drive the terminal block moving seat 230 to move to the second feeding position or the second working position, saving the time of manual feeding and improving efficiency.
[0048] like Figures 1-3As shown, based on the above embodiment, the terminal block feeding assembly further includes a terminal block feeding drive element 260, which is connected to the base 100. The terminal block feeding seat 240 is connected to the drive shaft of the terminal block feeding drive element 260. The terminal block feeding drive element 260 can drive the terminal block feeding seat 240 to move closer to or further away from the terminal block positioning seat 210.
[0049] In this embodiment, the terminal block feeding drive element 260 can drive the terminal block feeding seat 240 to approach or move away from the terminal block positioning seat 210, thereby automatically driving the copper pillar into the terminal block and improving the efficiency of driving the copper pillar.
[0050] like Figures 1-3 As shown, based on the above embodiment, the terminal block feeding assembly further includes a terminal block positioning block 270, which is located above the terminal block positioning seat 210. The terminal block positioning block 270 is vertically connected to the base 100 and can move closer to or further away from the terminal block positioning seat 210.
[0051] In this embodiment, the terminal block positioning block 270 can be used to fix the terminal block and prevent the terminal block from shifting and being damaged when the copper pillar is driven.
[0052] like Figures 1-3 As shown, based on the above embodiment, the terminal block feeding assembly further includes a terminal block positioning drive element 280, which is connected to the base 100. The terminal block positioning block 270 is connected to the drive shaft of the terminal block positioning drive element 280, and the terminal block positioning drive element 280 can drive the terminal block positioning block 270 to move closer to or away from the terminal block positioning seat 210.
[0053] In this embodiment, the terminal block positioning block 270 can be automatically moved closer to or further away from the terminal block positioning seat 210 by the terminal block positioning driving element 280, which eliminates the error of manual positioning and improves the accuracy of copper pillar installation.
Claims
1. A terminal array copper post punching apparatus, characterized by, The application relates to a terminal and copper column feeding device. The device comprises a base, a terminal row positioning seat, a copper column feeding disc and a copper column moving seat. The terminal row positioning seat is connected with the base and used for positioning a terminal row. The copper column feeding disc is connected with the base. The copper column moving seat is movably connected with the base and can be moved to a first feeding position or a first working position.
2. A terminal strip copper pillar striking apparatus as claimed in claim 1, wherein: When the copper column moving seat is located at the first feeding position, the copper column moving seat is aligned with the copper column feeding disc.
3. A terminal strip copper pillar apparatus as defined in claim 1, wherein: When the copper column moving seat is located at the first working position, the copper column moving seat is aligned with at least a part of the terminal row positioning seat.
4. A terminal strip copper pillar apparatus as claimed in any one of claims 1-3, wherein: The device further comprises a copper column moving driving element connected with the base.
5. A terminal strip copper pillar apparatus as defined in claim 4, wherein: The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper column driving element connected with the base. The copper column moving seat is connected with a driving shaft of the copper column moving driving element. The copper column moving driving element can drive the copper column moving seat to move to the first feeding position or the first working position. The device further comprises a copper 6. A terminal strip copper pillar apparatus as defined in claim 1, wherein: The terminal row feeding assembly further comprises a terminal row feeding disc, a terminal row moving seat and a terminal row feeding seat, the terminal row feeding disc is connected with the base, the terminal row moving seat is movably connected with the base, the terminal row moving seat is movable to a second feeding position or a second working position, the terminal row moving seat is aligned with the terminal row feeding disc when the terminal row moving seat is located at the second feeding position, the terminal row feeding seat is aligned with the terminal row moving seat when the terminal row moving seat is located at the second working position, the terminal row feeding seat is movably connected with the base and is movable to approach or away from the terminal row positioning seat, and the moving direction of the terminal row feeding seat is perpendicular to the moving direction of the terminal row moving seat.
7. A terminal strip copper pillar apparatus as defined in claim 6, wherein: The terminal row feeding assembly further comprises a terminal row moving driving element, the terminal row moving driving element is connected with the base, the terminal row moving seat is connected with the driving shaft of the terminal row moving driving element, and the terminal row moving driving element can drive the terminal row moving seat to move to the second feeding position or the second working position.
8. A terminal strip copper pillar apparatus as defined in claim 6, wherein: The terminal row feeding assembly further comprises a terminal row feeding driving element, the terminal row feeding driving element is connected with the base, the terminal row feeding seat is connected with the driving shaft of the terminal row feeding driving element, and the terminal row feeding driving element can drive the terminal row feeding seat to approach or away from the terminal row positioning seat.
9. A terminal strip copper pillar apparatus as defined in claim 1, wherein: The terminal row feeding assembly further comprises a terminal row positioning block, the terminal row positioning block is located above the terminal row positioning seat, the terminal row positioning block is liftably connected with the base and is movable to approach or away from the terminal row positioning seat.
10. A terminal strip copper pillar apparatus as defined in claim 9, wherein: The terminal row feeding assembly further comprises a terminal row positioning driving element, the terminal row positioning driving element is connected with the base, the terminal row positioning block is connected with the driving shaft of the terminal row positioning driving element, and the terminal row positioning driving element can drive the terminal row positioning block to approach or away from the terminal row positioning seat.