Mutual inductor production platform convenient to move
By designing a conveniently movable transformer production platform, the movement of the workbench is achieved using the drive screw and gear transmission system, which solves the problem of operators frequently moving the transformer, improves operating efficiency and reduces working intensity.
Patent Information
- Application Number
- CN202510205526.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2025-05-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the transformer production process, operators need to frequently move the transformer to inspect and operate every part around it, resulting in high working intensity and low efficiency.
A conveniently movable transformer production platform is designed, including a support part, a drive part, an adapter part and a working part. By driving the screw and a gear transmission system, the workbench can be translated and rotated, allowing operators to operate the transformer in all directions without moving their own position.
The platform allows operators to avoid frequent movement of themselves or transformers, significantly reduces working strength and improves operating efficiency, and can easily perform necessary operations on all parts of the transformer's peripheral area.
Smart Images

Figure CN120015494A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of transformer production, and in particular relates to a convenient and mobile transformer production platform. Background Art
[0002] Before pouring and sealing the transformer products, a series of operations are usually required to ensure the quality of pouring and sealing. At this time, necessary operations such as cable combing, inspection, and trimming are usually performed around the transformer. When completing the above operations on a traditional operating table, the operator needs to frequently move the transformer in order to complete relevant inspections and necessary operations on various parts around the transformer. Obviously, this brings greater work intensity to the operator and seriously affects work efficiency. Summary of the invention
[0003] The present invention provides a convenient and mobile transformer production platform to solve the problems in the above-mentioned background technology.
[0004] The technical problem solved by the present invention is achieved by adopting the following technical solutions: A convenient and mobile transformer production platform comprises a supporting part, a driving part, a switching part and a working part, wherein the driving part is mounted on the supporting part, the switching part is mounted on the supporting part, and the working part is mounted on the switching part and connected with the driving part for transmission.
[0005] The support part includes a base plate, a connecting boss, a movable slide and a mounting boss. The base plate supports the entire device on the ground or on a suitable bracket. The driving part includes a supporting lug and a driving screw. The supporting lug has four parts and is mounted on the base plate. The driving screw is hingedly mounted on the two longitudinal supporting lugs. The driving screw is meshed with the lower gear of the working part. The two driving screws are respectively located on both sides of the lower gear and are meshed with the lower gear. There is a driving shaft in the center of the driving screw, which is hinged on the supporting lug. The two driving shafts are each connected to a power source. The adapter part includes a fixed bracket and a movable bracket. The fixed bracket is mounted on the base plate, and the movable bracket is slidably mounted on the fixed bracket. The main structure of the fixed bracket is a pair of longitudinal slides. The bottom of the pair of longitudinal slides is connected to form a whole through a plurality of array-distributed connecting plates. The connecting plate located in the middle of the longitudinal slide reserves the movement space of the working part. Two side support rods extend from both sides of the longitudinal slide. The bottom of the side support rod has a mounting plate, and the mounting plate fixes the fixed bracket on the base plate. The bottom of the movable bracket has a longitudinal boss arranged longitudinally, which is slidably mounted in the longitudinal slide groove. The longitudinal bosses are connected by hinge plates, which hinge the movable bracket to the rotating shaft of the working part. The top of the longitudinal boss has a pair of transverse slide grooves arranged transversely, and the working part is installed in the transverse slide groove. The working part includes a workbench, a rotating shaft, a lower gear and an upper gear. The workbench is a frame-shaped structure, and the mutual inductor products to be operated are placed on the workbench. The inner side of the transverse frame of the bottom frame of the workbench has a rack, which meshes with the upper gear for transmission. The outer side of the transverse frame of the workbench frame has a transverse boss, which slides the workbench into the transverse slide groove. The lower gear is installed in the middle of the rotating shaft, and the top shaft is provided with a top shaft, on which the upper gear is installed.
[0006] Furthermore, the bottom plate is provided with a pair of connecting bosses, the driving part is installed on the connecting bosses, and the bottom of the supporting ear piece is provided with a connecting plate, which is connected with the connecting bosses to realize the installation of the supporting ear piece.
[0007] Furthermore, a movable slide groove is provided in the middle of the bottom plate, and the working part is slidably installed on the movable slide groove.
[0008] Furthermore, the bottom plate is provided with four mounting bosses arranged in an array with each other, the adapter is installed on the mounting bosses, and the mounting plate is butt-jointedly installed with the mounting bosses.
[0009] Furthermore, the bottom of the rotating shaft is a movable bottom shaft, and the movable bottom shaft is movably mounted in the movable slide groove, and the movable bottom shaft can rotate and translate in the movable slide groove.
[0010] Furthermore, the inner ring side of the lower gear has a docking groove, and the side wall of the rotating shaft has a docking boss corresponding thereto, and the docking boss docks with the docking groove to realize the installation and limiting of the lower gear on the rotating shaft.
[0011] The beneficial effects of the present invention are: The present invention is used in the production link of mutual inductors, and its platform structure has the technical feature of controllable motion, and the translation position of the platform can be conveniently adjusted according to needs, so that operators can perform necessary operations on various peripheral parts of the mutual inductor products placed on the platform without moving their own positions. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 is a schematic diagram of the present invention; Figure 2 It is a right side view of the present invention; Figure 3 is an exploded view of the present invention; In the figure: 10. supporting part, 11. bottom plate, 12. connecting boss, 13. movable slide, 14. mounting boss, 20. driving part, 21. supporting ear, 211. connecting plate, 22. driving screw, 221. driving shaft, 30. adapter, 31. fixed bracket, 311. longitudinal slide, 312. side support rod, 313. mounting plate, 314. connecting plate, 32. movable bracket, 321. transverse slide, 322. longitudinal boss, 323. hinge plate, 40. working part, 41. working table, 411. transverse boss, 412. rack, 42. rotating shaft, 421. movable bottom shaft, 422. docking boss, 423. top shaft, 43. lower gear, 431. docking groove, 44. upper gear. DETAILED DESCRIPTION
[0013] In order to facilitate the understanding of the present invention, the present invention will be described more fully below with reference to the relevant drawings. The preferred embodiments of the present invention are shown in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present invention more thorough and comprehensive.
[0014] See also Figure 1-Figure 3 The convenient and mobile transformer production platform shown includes a support part 10, a driving part 20, an adapter part 30 and a working part 40. The driving part 20 is installed on the support part 10, the adapter part 30 is installed on the support part 10, and the working part 40 is installed on the adapter part 30 and is connected to the driving part 20 for transmission.
[0015] The supporting portion 10 includes a base plate 11, a connecting boss 12, a movable slide groove 13 and a mounting boss 14. The base plate 11 supports the entire device on the ground or a suitable bracket. The base plate 11 has a pair of connecting bosses 12, and the driving portion 20 is mounted on the connecting bosses 12. The middle part of the base plate 11 has a movable slide groove 13, and the working portion 40 is slidably mounted on the movable slide groove 13. The base plate 11 also has four mounting bosses 14 arranged in an array with each other, and the adapter portion 30 is mounted on the mounting bosses 14.
[0016] The driving part 20 includes a supporting ear piece 21 and a driving screw 22. The supporting ear piece 21 has four parts, all of which are installed on the bottom plate 11. The bottom of the supporting ear piece 21 has a connecting plate 211, and the connecting plate 211 is connected to the connecting boss 12 to realize the installation of the supporting ear piece 21. The driving screw 22 is hingedly installed on the two longitudinal supporting ear pieces 21. The driving screw 22 is meshed with the lower gear 43 of the working part 40. The two driving screws 22 are respectively located on both sides of the lower gear 43 and are meshed with the lower gear 43. A driving shaft 221 is provided in the center of the driving screw 22. The driving shaft 221 is hinged on the supporting ear piece 21. The two driving shafts 221 are each connected to a power source. The power source drives the driving shaft 221 to rotate, and further drives the movement of the lower gear 43.
[0017] The adapter 30 includes a fixed bracket 31 and a movable bracket 32. The fixed bracket 31 is mounted on the bottom plate 11, and the movable bracket 32 is slidably mounted on the fixed bracket 31. The main structure of the fixed bracket 31 is a pair of longitudinal slide grooves 311. The bottom of the pair of longitudinal slide grooves 311 is connected to form a whole through a plurality of array-distributed connecting plates 314. The connecting plate 314 located in the middle of the longitudinal slide groove 311 reserves a movement space for the working part 40 (such as Figure 3 As shown in the figure, two side support rods 312 extend from both sides of the longitudinal slot 311, and the bottom of the side support rods 312 has a mounting plate 313, which fixes the fixed bracket 31 on the bottom plate 11, and the mounting plate 313 is docked with the mounting boss 14. The bottom of the floating bracket 32 has a longitudinal boss 322 arranged longitudinally, and the longitudinal boss 322 is slidably mounted in the longitudinal slot 311. The longitudinal bosses 322 are connected by hinge plates 323, and the hinge plates 323 hinge the floating bracket 32 on the rotating shaft 42 of the working part 40. The top of the longitudinal boss 322 has a pair of transverse slots 321 arranged transversely, and the working part 40 is installed in the transverse slots 321.
[0018] The working part 40 includes a workbench 41, a rotating shaft 42, a lower gear 43 and an upper gear 44. The workbench 41 is a frame-shaped structure. The mutual inductor product to be operated is placed on the workbench 41. The inner side of the transverse frame of the bottom frame of the workbench 41 is provided with a rack 412. The rack 412 is meshed with the upper gear 44 for transmission. The outer side of the transverse frame of the frame of the workbench 41 is provided with a transverse boss 411. The transverse boss 411 slides the workbench 40 in the transverse slide groove 321. The bottom of the rotating shaft 42 is a floating bottom shaft 421. The floating bottom shaft 421 is movably sleeved and installed in the floating slide groove 1 3, the movable bottom shaft 421 can rotate and translate in the movable slide groove 13, the lower gear 43 is installed in the middle of the rotating shaft 42, the inner ring side of the lower gear 43 has a docking groove 431, the side wall of the rotating shaft 42 has a docking boss 422 corresponding to it, the docking boss 422 docks with the docking groove 431 to achieve the installation and limit of the lower gear 43 on the rotating shaft 42, the top of the rotating shaft 42 has a top shaft 423, the top shaft 423 is installed on the upper gear 44, the upper gear 44 and the top shaft 423 respectively have structures similar to the docking boss 422 and the docking groove 431 to achieve installation.
[0019] The working principle of the present invention is: two power sources drive the connected driving screws 22 to rotate respectively, and the rotation speed relationship of the driving screws 22 directly affects the motion form of the working part 40. Specifically, when the two driving screws 22 rotate at the same speed and in the same direction, the two sides of the lower gear 43 are respectively subjected to force and cannot rotate. At this time, the lower gear 43 drives the entire working part 40 to move longitudinally along the movable slide 13, which is reflected on the workbench 41 as longitudinal translation; when the two driving screws 22 rotate in opposite directions at the same speed, the lower gear 43 rotates but cannot move, and at this time drives the upper gear 44 to rotate, and the upper gear 44 drives the workbench 41 to move horizontally as a whole; when there is a speed difference between the two driving screws 22, the lower gear 43 both rotates and moves, and the movement of the lower gear 43 drives the workbench 41 to move longitudinally, and the rotation of the lower gear 43 drives the upper gear 44 to rotate and further drives the workbench 41 to move horizontally, forming a combined motion. By controlling the combination of the rotation speed and direction of the two driving screws 22, a movement combination of the workbench 41 can be obtained, that is, the workbench 41 can be conveniently operated to move within a certain range. At this time, the operator can perform necessary operations on the periphery of the mutual inductor product in different directions without moving the position of the mutual inductor product to be operated placed on the workbench 41, without repeatedly moving the mutual inductor or repeatedly moving the operator's own position.
[0020] The above embodiments mainly illustrate the convenient and mobile transformer production platform of the present invention. Although only limited embodiments and technical features are described, those skilled in the art should understand that the present invention can be implemented in many other forms without departing from its subject matter and scope. Therefore, the embodiments shown are regarded as illustrative rather than restrictive, and the present invention may cover various modifications and replacements without departing from the spirit and scope of the present invention as defined in the appended claims.
Claims
1. A convenient and mobile transformer production platform, comprising a supporting part (10), a driving part (20), a switching part (30) and a working part (40), characterized in that: The driving part (20) is mounted on the supporting part (10), the adapter part (30) is mounted on the supporting part (10), the working part (40) is mounted on the adapter part (30) and is connected to the driving part (20) for transmission, the supporting part (10) comprises a bottom plate (11), the bottom plate (11) supports the entire device on the ground or on a bracket, the driving part (20) comprises a supporting ear piece (21) and a driving screw rod (22), the supporting ear piece (21) has four supporting ears (21) which are all mounted on the bottom plate (11), the driving screw rods (22) are hingedly mounted on two longitudinal supporting ears (21), the driving screw rods (22) are connected to the lower gear (43) of the working part (40), and the driving screw rods (22) are connected to the lower gear (43) of the working part (40). ) are meshed, a driving screw rod (22) has a driving shaft (221) in the center, the driving shaft (221) is hinged on the supporting ear piece (21), the two driving shafts (221) are respectively connected to a power source, the adapter (30) comprises a fixed bracket (31) and a floating bracket (32), the fixed bracket (31) is mounted on the bottom plate (11), the floating bracket (32) is slidably mounted on the fixed bracket (31), the main structure of the fixed bracket (31) is a pair of longitudinal slide grooves (311), the bottom of the pair of longitudinal slide grooves (311) are connected to form a whole through a plurality of array-uniformly distributed connecting plates (314), and two longitudinal slide grooves (311) are extended on both sides. The side support rod (312) has a mounting plate (313) at the bottom of the side support rod (312). The mounting plate (313) fixes the fixed bracket (31) on the bottom plate (11). The bottom of the movable bracket (32) has a longitudinal boss (322) arranged longitudinally. The longitudinal boss (322) is slidably mounted in the longitudinal slide groove (311). The longitudinal bosses (322) are connected by a hinge plate (323). The hinge plate (323) hinges the movable bracket (32) on the rotating shaft (42) of the working part (40). The top of the longitudinal boss (322) has a pair of transverse slide grooves (321) arranged transversely. The working part (40) ) comprises a workbench (41), a rotating shaft (42), a lower gear (43) and an upper gear (44); the workbench (41) is a frame-shaped structure; a rack (412) is provided on the inner side of a transverse frame along the bottom frame of the workbench (41); the rack (412) is meshed with the upper gear (44) for transmission; a transverse boss (411) is provided on the outer side of the transverse frame along the surrounding frame of the workbench (41); the transverse boss (411) slides the workbench (40) in a transverse slide groove (321); a lower gear (43) is installed in the middle of the rotating shaft (42); a top shaft (423) is provided on the top of the rotating shaft (42); and an upper gear (44) is installed on the top shaft (423).
2. The convenient and mobile transformer production platform according to claim 1, characterized in that: The bottom plate (11) is provided with a pair of connecting bosses (12), a driving unit (20) is mounted on the connecting bosses (12), a connecting plate (211) is provided at the bottom of the supporting ear piece (21), and the connecting plate (211) is butt-jointed with the connecting bosses (12) to achieve the installation of the supporting ear piece (21).
3. The convenient and mobile transformer production platform according to claim 1, characterized in that: The bottom plate (11) has a movable slide groove (13) in the middle, and a working part (40) is slidably mounted on the movable slide groove (13).
4. The convenient and mobile transformer production platform according to claim 1, characterized in that: The bottom plate (11) is also provided with four mounting bosses (14) arranged in an array with each other, the adapter (30) is mounted on the mounting bosses (14), and the mounting plate (313) is butt-jointedly mounted with the mounting bosses (14).
5. The convenient and mobile transformer production platform according to claim 1, characterized in that: The bottom of the rotating shaft (42) is a movable bottom shaft (421), and the movable bottom shaft (421) is movably mounted in the movable slide groove (13). The movable bottom shaft (421) can rotate and translate in the movable slide groove (13).
6. The convenient and mobile transformer production platform according to claim 1, characterized in that: The inner ring side of the lower gear (43) has a docking groove (431), and the side wall of the rotating shaft (42) has a docking boss (422) corresponding thereto. The docking boss (422) docks with the docking groove (431) to achieve installation and positioning of the lower gear (43) on the rotating shaft (42).