Wiring terminal processing equipment of transformer
By designing the stamping drive and terminal storage mechanism for transformer terminal processing equipment, the problems of matching inspection of stamping components and material leveling were solved, thus achieving safe equipment operation and efficient material turnover.
Patent Information
- Application Number
- CN202511222886.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2025-11-11
AI Technical Summary
Existing terminal block processing equipment cannot automatically detect whether the stamping components are matched, and the material collection is uneven, which affects the processing effect and material turnover efficiency.
A transformer terminal processing equipment was designed, comprising a stamping drive mechanism, a terminal forming mechanism, a terminal storage mechanism, and a connection positioning mechanism. Automatic detection and material leveling are achieved through a circular multi-functional rod and a servo motor, avoiding damage to the stamping components and material accumulation.
The system automates the testing of stamping components, ensuring safe operation of the equipment and improving the flatness and turnover efficiency of material collection to meet different processing needs.
Smart Images

Figure CN120933745A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of transformer coil processing technology, and more specifically, it relates to a transformer terminal processing equipment. Background Technology
[0002] The transformer coil is the core component of the transformer, made of conductive materials such as copper or aluminum, and achieves voltage transformation through electromagnetic induction. The terminals on the transformer coil are key components to ensure reliable electrical connections. They are usually made of conductive materials such as copper-zinc plated or copper-silver plated, and achieve a stable connection with the wires through a composite structure of metal sheets and insulating plastic. The terminals on the transformer coil require stamping equipment for processing.
[0003] The current terminal block processing equipment still has the following problems: 1. The stamping components cannot be automatically detected to ensure they are compatible before the stamping process. When the stamping components are not compatible, they are prone to damage upon contact. 2. Generally, the lack of a material rotation structure results in an uneven top of the collected material, affecting the collection effect. Furthermore, when there is a large amount of collected material, it cannot prompt staff to rotate it in a timely manner. Summary of the Invention
[0004] This invention relates to a terminal processing device for transformers, comprising a stamping drive mechanism, a terminal forming mechanism, a terminal storage mechanism, and a connection positioning mechanism. When the lower terminal stamping die and the upper terminal stamping die are mismatched, the lower terminal stamping die can push a circular multi-functional rod upward, and the control panel controls the electric telescopic rod to stop working, thus preventing damage to the lower and upper terminal stamping dies. When there is a large amount of material in the terminal storage box, the material in the terminal storage box can also push the circular multi-functional rod upward, facilitating timely turnover of the material in the terminal storage box by the staff. This solves the problems of not being able to automatically detect whether the stamping components are matched before stamping and not being able to prompt the staff to turnover in time when there is a large amount of material collected.
[0005] This invention provides a transformer terminal processing device, comprising: a stamping drive mechanism, a terminal forming mechanism, a terminal storage mechanism, a connection positioning mechanism, and a control panel; the terminal forming mechanism is mounted on the stamping drive mechanism, and the stamping drive mechanism and the terminal forming mechanism are used to stamp the raw materials required for the terminals; the terminal storage mechanism is mounted on the stamping drive mechanism, and the terminal storage mechanism is used to collect the stamped terminal materials; the connection positioning mechanism comprises two sets, and the two sets of connection positioning mechanisms are mounted on the stamping drive mechanism, and the two sets of connection positioning mechanisms are used to position the terminal storage mechanism; the control panel is mounted on the front side of the stamping drive mechanism, and the control panel is used to control the stamping drive mechanism and the terminal storage mechanism.
[0006] Furthermore, the stamping drive mechanism includes: a stamping support frame, an electric telescopic rod, and an upper die mounting plate; the stamping support frame has two rows of mounting holes; the electric telescopic rod is fixedly mounted on the stamping support frame and is electrically connected to the control panel; the upper die mounting plate is fixedly mounted on the output shaft of the electric telescopic rod.
[0007] Furthermore, the terminal forming mechanism includes: a lower terminal stamping die and an upper terminal stamping die; the lower terminal stamping die is slidably mounted on a stamping support frame, and a circular detection through hole is provided on the lower terminal stamping die; the upper terminal stamping die is fixedly mounted on an upper die mounting plate.
[0008] Furthermore, the terminal forming mechanism also includes: an inclined mounting bracket, a circular multi-functional rod, and a circular limiting ring a; the inclined mounting bracket is fixedly mounted on the front side of the terminal stamping upper die; the circular multi-functional rod is slidably mounted on the inclined mounting bracket, and the circular multi-functional rod is concentrically arranged with the circular detection through hole; the circular multi-functional rod and the circular detection through hole are clearance-fitted, and the bottom of the circular multi-functional rod is provided with rounded corners; the circular limiting ring a is fixedly mounted on the outside of the circular multi-functional rod.
[0009] Furthermore, the terminal forming mechanism also includes: a circular limiting ring b, a helical spring a, and a detection button; the circular limiting ring b is fixedly installed at the top of the circular multi-functional rod; the helical spring a is sleeved on the outside of the circular multi-functional rod, and the helical spring a is located between the inclined mounting bracket and the circular limiting ring a; the detection button is fixedly installed inside the circular limiting ring b, and the detection button is in a pressed state, and the detection button is electrically connected to the control panel.
[0010] Furthermore, the terminal storage mechanism includes: a terminal storage box and a rectangular mounting plate; the terminal storage box is slidably mounted on the stamping support frame, and two connection positioning grooves are provided at the bottom of the terminal storage box; the rectangular mounting plate is fixedly mounted on the bottom of the terminal storage box.
[0011] Furthermore, the terminal storage mechanism also includes a servo motor and a circular support plate; the servo motor is fixedly installed on the bottom of the rectangular mounting plate and is electrically connected to the control panel; the circular support plate is rotatably installed on the terminal storage box and is also fixedly connected to the output shaft of the servo motor.
[0012] Furthermore, the terminal storage mechanism also includes: circular support rods and solid spheres; there are four circular support rods, and the four circular support rods are fixedly installed at the bottom corner of the terminal storage box; there are four solid spheres, and the four solid spheres are rotatably installed at the bottom end of the four circular support rods, and the bottom of the four solid spheres is flush with the bottom of the stamping support frame.
[0013] Furthermore, the connecting positioning mechanism includes: a V-shaped bracket and a connecting positioning rod; the V-shaped bracket is fixedly installed on the stamping support frame; the connecting positioning rod is slidably installed on the V-shaped bracket and the stamping support frame, and the top end of the connecting positioning rod is a hemispherical structure, and the top end of the connecting positioning rod is inserted into the connecting positioning groove.
[0014] Furthermore, the connecting positioning mechanism also includes: a circular limiting ring c and a helical spring b; the circular limiting ring c is fixedly installed on the outside of the connecting positioning rod, and the top of the circular limiting ring c contacts the stamping support frame; the helical spring b is sleeved on the outside of the connecting positioning rod, and the helical spring b is located between the V-shaped bracket and the circular limiting ring c.
[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. This invention allows workers to easily select the appropriate terminal stamping lower die and terminal stamping upper die according to processing requirements, satisfying different processing needs; when the control panel controls the output shaft of the electric telescopic rod to extend, the upper die mounting plate drives the terminal stamping upper die to move downward; when the control panel controls the output shaft of the electric telescopic rod to retract, the upper die mounting plate drives the terminal stamping upper die to move upward. In addition, the tilting mounting bracket and the circular multi-functional rod can move along with the terminal stamping upper die; when the terminal stamping lower die is matched with the terminal stamping upper die, the circular multi-functional rod can be inserted into the circular detection through hole; when the terminal stamping lower die is not matched with the terminal stamping upper die, the circular multi-functional rod cannot be inserted into the circular detection through hole. In addition, when the lower die and upper die of terminal stamping are not compatible, the lower die of terminal stamping can push the circular multi-functional rod upward. When the circular multi-functional rod moves upward, the detection button is released. When the detection button is released, the control panel controls the electric telescopic rod to stop working, so as to avoid damage to the lower die and the upper die of terminal stamping.
[0016] 2. The four circular support rods and four solid spheres of this invention facilitate the connection or separation of the terminal storage box from the stamping support frame; the two connecting positioning grooves and two connecting positioning rods provide positioning for the connected terminal storage box, ensuring that the terminal storage box remains stable after being connected to the stamping support frame. In addition, when the servo motor is working, the output shaft of the servo motor drives the circular support plate to rotate, making the raw materials collected in the terminal storage box more even; when there are many raw materials in the terminal storage box, the raw materials in the terminal storage box can also push the circular multi-functional rod to move upward, making it convenient for staff to turn over the raw materials in the terminal storage box in a timely manner. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0018] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0019] In the attached diagram: Figure 1 A three-dimensional structural schematic diagram of the present invention is shown; Figure 2 A schematic diagram of the terminal forming mechanism of the present invention is shown; Figure 3 The present invention is shown. Figure 1 A schematic diagram of the longitudinal center section structure; Figure 4 The present invention is shown. Figure 3 A magnified schematic diagram of a portion of region A in the middle; Figure 5 The present invention is shown. Figure 1 A schematic diagram of the bottom view structure; Figure 6 A schematic diagram of the terminal storage mechanism of the present invention is shown; Figure 7 The present invention is shown. Figure 5 A magnified schematic diagram of a portion of region B in the middle; Figure 8 The present invention is shown. Figure 1 A schematic diagram of the transverse center section structure; Figure 9 The present invention is shown. Figure 8 A magnified schematic diagram of the structure of region C in the middle.
[0020] List of reference numerals in the attached diagram: 100. Stamping drive mechanism; 101. Stamping support frame; 102. Electric telescopic rod; 103. Upper die mounting plate; 200. Terminal forming mechanism; 201. Terminal stamping lower die; 2011. Circular detection through hole; 202. Terminal stamping upper die; 203. Inclined mounting bracket; 204. Circular multi-functional rod; 205. Circular limit ring a; 206. Circular limit ring b; 207. Helical spring a; 208. Detection button; 300. Terminal temporary storage mechanism; 301. Terminal temporary storage box; 3011. Connecting positioning groove; 302. Rectangular mounting plate; 303. Servo motor; 304. Circular support plate; 305. Circular support rod; 306. Solid sphere; 400. Connecting positioning mechanism; 401. V-shaped bracket; 402. Connecting positioning rod; 403. Circular limit ring c; 404. Helical spring b; 500. Control Panel. Detailed Implementation
[0021] To make the objectives, solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Unless otherwise stated, the terms used herein have their ordinary meanings in the art. The same reference numerals in the drawings represent the same parts.
[0022] Please refer to Figures 1 to 9 As shown: This invention provides a transformer terminal processing device, comprising: a stamping drive mechanism 100, a terminal forming mechanism 200, a terminal storage mechanism 300, a connection positioning mechanism 400, and a control panel 500; the terminal forming mechanism 200 is mounted on the stamping drive mechanism 100, and the stamping drive mechanism 100 and the terminal forming mechanism 200 are used to stamp the raw materials required for the terminals; the terminal storage mechanism 300 is mounted on the stamping drive mechanism 100, and the terminal storage mechanism 300 is used to collect the stamped terminal materials; two sets of connection positioning mechanisms 400 are provided, and the two sets of connection positioning mechanisms 400 are mounted on the stamping drive mechanism 100, and the two sets of connection positioning mechanisms 400 are used to position the terminal storage mechanism 300; the control panel 500 is mounted on the front side of the stamping drive mechanism 100, and the control panel 500 is used to control the stamping drive mechanism 100 and the terminal storage mechanism 300.
[0023] In this embodiment of the disclosure, such as Figure 1 , Figure 2 and Figure 4 As shown, the stamping drive mechanism 100 includes: a stamping support frame 101, an electric telescopic rod 102, and an upper die mounting plate 103; the stamping support frame 101 has two rows of mounting holes; the electric telescopic rod 102 is fixedly mounted on the stamping support frame 101, and the electric telescopic rod 102 is electrically connected to the control panel 500; the upper die mounting plate 103 is fixedly mounted on the output shaft of the electric telescopic rod 102. The terminal forming mechanism 200 includes: a lower terminal stamping die 201 and an upper terminal stamping die 202; the lower terminal stamping die 201 is slidably mounted on a stamping support frame 101, and a circular detection through hole 2011 is provided on the lower terminal stamping die 201; the upper terminal stamping die 202 is fixedly mounted on an upper die mounting plate 103; the terminal forming mechanism 200 also includes: an inclined mounting frame 203, a circular multi-functional rod 204, and a circular limiting ring a 205; the inclined mounting frame 203 is fixedly mounted on the front side of the upper terminal stamping die 202; the circular multi-functional rod 204 is slidably mounted on the inclined mounting frame 203, and the circular multi-functional rod 204 is concentrically arranged with the circular detection through hole 2011; the circular multi-functional rod 204 and the circular detection through hole The 2011 clearance fit is provided, and the bottom of the circular multi-functional rod 204 is provided with rounded corners; the circular limit ring a205 is fixedly installed on the outside of the circular multi-functional rod 204; the terminal forming mechanism 200 also includes: a circular limit ring b206, a helical spring a207 and a detection button 208; the circular limit ring b206 is fixedly installed on the top of the circular multi-functional rod 204; the helical spring a207 is sleeved on the outside of the circular multi-functional rod 204, and the helical spring a207 is located between the inclined mounting bracket 203 and the circular limit ring a205; the detection button 208 is fixedly installed inside the circular limit ring b206, and the detection button 208 is in the pressed state, and the detection button 208 is electrically connected to the control panel 500; Its specific functions are as follows: Since the terminal stamping lower die 201 is fixedly mounted on the stamping support frame 101 by screws, and the terminal stamping upper die 202 is fixedly mounted on the upper die mounting plate 103 by screws, it is convenient for the staff to select the appropriate terminal stamping lower die 201 and terminal stamping upper die 202 according to the processing requirements to meet different processing requirements; since the electric telescopic rod 102 is fixedly mounted on the stamping support frame 101, and the upper die mounting plate 103 is fixedly mounted on the output shaft of the electric telescopic rod 102, when the control panel 500 controls the output shaft of the electric telescopic rod 102 to extend, the upper die mounting plate 103 drives the terminal stamping upper die 202 to move downward; when the control panel 500 controls the output shaft of the electric telescopic rod 102 to retract, the upper die mounting plate 103 drives the terminal stamping upper die 202 to move upward. Furthermore, since the inclined mounting bracket 203 is fixedly mounted on the front side of the terminal stamping upper die 202, and the circular multi-functional rod 204 is slidably mounted on the inclined mounting bracket 203, the inclined mounting bracket 203 and the circular multi-functional rod 204 can move with the terminal stamping upper die 202. Also, since the terminal stamping lower die 201 has a circular detection through hole 2011, and the circular multi-functional rod 204 is concentrically arranged with the circular detection through hole 2011, and the circular multi-functional rod 204 and the circular detection through hole 2011 are clearance-fitted, when the terminal stamping lower die 201 and the terminal stamping upper die 202 are matched, the circular multi-functional rod 204 can be inserted into the circular detection through hole 2011; when the terminal stamping lower die 201 and the terminal stamping upper die 202 are not matched, the circular multi-functional rod 204 cannot be inserted into the circular detection through hole 2011. The circular detection through holes 2011 on different terminal stamping lower dies 201 are distributed in different positions, and the inclined mounting brackets 203 on different terminal stamping upper dies 202 are also distributed in different positions. Only when the terminal stamping lower die 201 and the terminal stamping upper die 202 are matched, the circular detection through holes 2011 are located directly below the circular multi-functional rod 204. Furthermore, since the circular limiting ring a205 is fixedly installed on the outside of the circular multi-functional rod 204, and the helical spring a207 is sleeved on the outside of the circular multi-functional rod 204, and the helical spring a207 is located between the inclined mounting bracket 203 and the circular limiting ring a205, when the terminal stamping lower die 201 and the terminal stamping upper die 202 are not matched, the terminal stamping lower die 201 can push the circular multi-functional rod 204 to move upward; also, since the electric telescopic rod 102 is electrically connected to the control panel 500, and the detection button 208 is fixedly installed inside the circular limiting ring b206, and the detection button 208 is electrically connected to the control panel 500, when the circular multi-functional rod 204 moves upward, the detection button 208 is released from the pressed state. When the detection button 208 is released from the pressed state, the control panel 500 controls the electric telescopic rod 102 to stop working, so as to avoid damage to the terminal stamping lower die 201 and the terminal stamping upper die 202.
[0024] In this embodiment of the disclosure, such as Figure 6 , Figure 7 and Figure 9As shown, the terminal storage mechanism 300 includes: a terminal storage box 301 and a rectangular mounting plate 302; the terminal storage box 301 is slidably mounted on the stamping support frame 101, and two connecting positioning grooves 3011 are provided at the bottom of the terminal storage box 301; the rectangular mounting plate 302 is fixedly mounted on the bottom of the terminal storage box 301; the terminal storage mechanism 300 also includes: a servo motor 303 and a circular support plate 304; the servo motor 303 is fixedly mounted on the bottom of the rectangular mounting plate 302, and the servo motor 303 is electrically connected to the control panel 500; the circular support plate 304... The 04 is rotatably mounted on the terminal storage box 301, and the circular support plate 304 is also fixedly connected to the output shaft of the servo motor 303; the terminal storage mechanism 300 also includes: a circular support rod 305 and a solid ball 306; there are four circular support rods 305, and the four circular support rods 305 are fixedly mounted at the bottom corner of the terminal storage box 301; there are four solid balls 306, and the four solid balls 306 are rotatably mounted on the bottom end of the four circular support rods 305, and the bottom of the four solid balls 306 is flush with the bottom of the stamping support frame 101; The connecting positioning mechanism 400 includes: a V-shaped bracket 401 and a connecting positioning rod 402; the V-shaped bracket 401 is fixedly installed on the stamping support frame 101; the connecting positioning rod 402 is slidably installed on the V-shaped bracket 401 and the stamping support frame 101, and the top end of the connecting positioning rod 402 is a hemispherical structure, and the top end of the connecting positioning rod 402 is inserted into the connecting positioning groove 3011; the connecting positioning mechanism 400 also includes: a circular limiting ring c403 and a helical spring b404; the circular limiting ring c403 is fixedly installed on the outside of the connecting positioning rod 402, and the top end of the circular limiting ring c403 contacts the stamping support frame 101; the helical spring b404 is sleeved on the outside of the connecting positioning rod 402, and the helical spring b404 is located between the V-shaped bracket 401 and the circular limiting ring c403; Its specific functions are as follows: Because the terminal storage box 301 is slidably installed on the stamping support frame 101, and four circular support rods 305 are fixedly installed at the bottom corner of the terminal storage box 301, and four solid spheres 306 are rotatably installed at the bottom of the four circular support rods 305, it is convenient for the terminal storage box 301 to be connected or separated from the stamping support frame 101; and because the bottom of the terminal storage box 301 is provided with two connecting positioning grooves 3011, and the top of the two connecting positioning rods 402 is a hemispherical structure, and the top of the two connecting positioning rods 402 is inserted into the two connecting positioning grooves 3011, it plays a positioning role for the terminal storage box 301 after connection, so that the terminal storage box 301 can always be in a stable state after being connected to the stamping support frame 101; Furthermore, since the servo motor 303 is fixedly installed at the bottom of the rectangular mounting plate 302, and the circular support plate 304 is rotatably installed on the terminal storage box 301, and the circular support plate 304 is also fixedly connected to the output shaft of the servo motor 303, when the servo motor 303 works, the output shaft of the servo motor 303 drives the circular support plate 304 to rotate, making the collected raw materials in the terminal storage box 301 more even; and since the circular multi-functional rod 204 passes through the circular detection through hole 2011, the bottom end of the circular multi-functional rod 204 can be inserted into the terminal storage box 301. When there are many raw materials in the terminal storage box 301, the raw materials in the terminal storage box 301 can also push the circular multi-functional rod 204 upward, making it convenient for staff to turn over the raw materials in the terminal storage box 301 in a timely manner.
[0025] The specific usage and function of this embodiment are as follows: In use, the operator first secures the stamping support frame 101 with bolts. Then, based on processing requirements, selects the appropriate terminal stamping lower die 201 and terminal stamping upper die 202 to meet different processing needs. Next, connects the connectors on the detection button 208 and servo motor 303 to the control panel 500, ensuring that the detection button 208 and servo motor 303 are electrically connected to the control panel 500. The movement of the material to be stamped is controlled by an external feeding device. Then, the electric telescopic rod 102 and servo motor 303 are activated via the control panel 500. When the output shaft of the electric telescopic rod 102 extends as controlled by the control panel 500, the upper die mounting plate 103 drives the terminal stamping upper die 202. The terminal stamping upper die 202 moves upward when the output shaft of the electric telescopic rod 102 is retracted by the control panel 500. The tilting mounting bracket 203 and the circular multi-functional rod 204 can move with the terminal stamping upper die 202. When the terminal stamping lower die 201 is matched with the terminal stamping upper die 202, the circular multi-functional rod 204 can be inserted into the circular detection through hole 2011. When the terminal stamping lower die 201 is not matched with the terminal stamping upper die 202, the circular multi-functional rod 204 cannot be inserted into the circular detection through hole 2011. When the terminal stamping lower die 201 is not matched with the terminal stamping upper die 202, the terminal stamping lower die 201 can push the circular multi-functional rod 204 upward. 04. Move upwards; when the circular multi-functional rod 204 moves upwards, the detection button 208 is released from the pressed state. When the detection button 208 is released from the pressed state, the control panel 500 controls the electric telescopic rod 102 to stop working, to avoid damage to the terminal stamping lower die 201 and the terminal stamping upper die 202; when the servo motor 303 works, the output shaft of the servo motor 303 drives the circular support plate 304 to rotate, making the raw materials collected in the terminal temporary storage box 301 more even; when there are many raw materials in the terminal temporary storage box 301, the raw materials in the terminal temporary storage box 301 can also push the circular multi-functional rod 204 upwards, making it convenient for staff to turn over the raw materials in the terminal temporary storage box 301 in a timely manner; when the terminal temporary storage box 304 moves upwards, the circular multi-functional rod 204 can also move upwards, to facilitate the timely turnover of raw materials in the terminal temporary storage box 301 .... When the raw materials in 01 need to be transferred, the worker pulls the handle on the terminal storage box 301 forward to separate the two connecting positioning slots 3011 from the two connecting positioning rods 402. The four solid spheres 306 facilitate the connection or separation of the terminal storage box 301 from the stamping support frame 101. When the terminal storage box 301 needs to be reset, the worker moves the terminal storage box 301 to the front of the stamping support frame 101 and then pushes the terminal storage box 301 backward so that the two connecting positioning rods 402 are inserted into the two connecting positioning slots 3011. This positions the terminal storage box 301 after connection, ensuring that the terminal storage box 301 remains stable after being connected to the stamping support frame 101.
[0026] The following points should be noted in this article: 1. The accompanying drawings of the embodiments disclosed herein only relate to the structures involved in the embodiments disclosed herein; other structures can be referred to in general design.
[0027] 2. Where there is no conflict, the embodiments of this disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0028] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.
Claims
1. A transformer terminal processing device, comprising: The device comprises a stamping drive mechanism (100), a terminal forming mechanism (200), a terminal storage mechanism (300), a connection positioning mechanism (400), and a control panel (500); characterized in that the terminal forming mechanism (200) is mounted on the stamping drive mechanism (100), and the stamping drive mechanism (100) and the terminal forming mechanism (200) are used to stamp the raw materials required for the terminals; the terminal storage mechanism (300) is mounted on the stamping drive mechanism (100), and the terminal storage mechanism (300) is used to collect the stamped terminal materials; the connection positioning mechanism (400) is provided in two sets, and the two sets of connection positioning mechanisms (400) are mounted on the stamping drive mechanism (100), and the two sets of connection positioning mechanisms (400) are used to position the terminal storage mechanism (300); the control panel (500) is mounted on the front side of the stamping drive mechanism (100), and the control panel (500) is used to control the stamping drive mechanism (100) and the terminal storage mechanism (300).
2. The transformer terminal processing equipment according to claim 1, characterized in that, The stamping drive mechanism (100) includes: a stamping support frame (101), an electric telescopic rod (102), and an upper die mounting plate (103); the stamping support frame (101) has two rows of mounting holes; the electric telescopic rod (102) is fixedly mounted on the stamping support frame (101), and the electric telescopic rod (102) is electrically connected to the control panel (500); the upper die mounting plate (103) is fixedly mounted on the output shaft of the electric telescopic rod (102).
3. The transformer terminal processing equipment according to claim 2, characterized in that, The terminal forming mechanism (200) includes: a lower terminal stamping die (201) and an upper terminal stamping die (202); the lower terminal stamping die (201) is slidably mounted on a stamping support frame (101), and a circular detection through hole (2011) is provided on the lower terminal stamping die (201); the upper terminal stamping die (202) is fixedly mounted on an upper die mounting plate (103).
4. The transformer terminal processing equipment according to claim 3, characterized in that, The terminal forming mechanism (200) further includes: an inclined mounting bracket (203), a circular multi-functional rod (204), and a circular limiting ring a (205); the inclined mounting bracket (203) is fixedly mounted on the front side of the terminal stamping upper die (202); the circular multi-functional rod (204) is slidably mounted on the inclined mounting bracket (203), and the circular multi-functional rod (204) is concentrically arranged with the circular detection through hole (2011); the circular multi-functional rod (204) and the circular detection through hole (2011) are clearance-fitted, and the bottom of the circular multi-functional rod (204) is provided with rounded corners; the circular limiting ring a (205) is fixedly mounted on the outside of the circular multi-functional rod (204).
5. The transformer terminal processing equipment according to claim 4, characterized in that, The terminal forming mechanism (200) further includes: a circular limiting ring b (206), a helical spring a (207), and a detection button (208); the circular limiting ring b (206) is fixedly installed on the top of the circular multi-functional rod (204); the helical spring a (207) is sleeved on the outside of the circular multi-functional rod (204), and the helical spring a (207) is located between the inclined mounting bracket (203) and the circular limiting ring a (205); the detection button (208) is fixedly installed inside the circular limiting ring b (206), and the detection button (208) is in a pressed state, and the detection button (208) is electrically connected to the control panel (500).
6. The transformer terminal processing equipment according to claim 2, characterized in that, The terminal storage mechanism (300) includes: a terminal storage box (301) and a rectangular mounting plate (302); the terminal storage box (301) is slidably mounted on the stamping support frame (101), and two connection positioning grooves (3011) are provided at the bottom of the terminal storage box (301); the rectangular mounting plate (302) is fixedly mounted on the bottom of the terminal storage box (301).
7. The transformer terminal processing equipment according to claim 6, characterized in that, The terminal storage mechanism (300) further includes a servo motor (303) and a circular support plate (304); the servo motor (303) is fixedly installed on the bottom of the rectangular mounting plate (302) and is electrically connected to the control panel (500); the circular support plate (304) is rotatably installed on the terminal storage box (301) and is also fixedly connected to the output shaft of the servo motor (303).
8. The transformer terminal processing equipment according to claim 7, characterized in that, The terminal storage mechanism (300) further includes: a circular support rod (305) and a solid sphere (306); there are four circular support rods (305), and the four circular support rods (305) are fixedly installed at the bottom corner of the terminal storage box (301); there are four solid spheres (306), and the four solid spheres (306) are rotatably installed at the bottom end of the four circular support rods (305), and the bottom of the four solid spheres (306) is flush with the bottom of the stamping support frame (101).
9. The transformer terminal processing equipment according to claim 6, characterized in that, The connecting positioning mechanism (400) includes a V-shaped bracket (401) and a connecting positioning rod (402); the V-shaped bracket (401) is fixedly installed on the stamping support frame (101); the connecting positioning rod (402) is slidably installed on the V-shaped bracket (401) and the stamping support frame (101), and the top end of the connecting positioning rod (402) is a hemispherical structure, and the top end of the connecting positioning rod (402) is inserted into the connecting positioning groove (3011).
10. A transformer terminal processing device according to claim 9, characterized in that, The connecting positioning mechanism (400) further includes: a circular limiting ring c (403) and a helical spring b (404); the circular limiting ring c (403) is fixedly installed on the outside of the connecting positioning rod (402), and the top of the circular limiting ring c (403) contacts the stamping support frame (101); the helical spring b (404) is sleeved on the outside of the connecting positioning rod (402), and the helical spring b (404) is located between the V-shaped bracket (401) and the circular limiting ring c (403).