CN115274253A - Transformer installation component - Google Patents

Transformer installation component Download PDF

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Publication number
CN115274253A
CN115274253A CN202211178557.5A CN202211178557A CN115274253A CN 115274253 A CN115274253 A CN 115274253A CN 202211178557 A CN202211178557 A CN 202211178557A CN 115274253 A CN115274253 A CN 115274253A
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CN
China
Prior art keywords
transformer
sliding
limiting
groove
rows
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Granted
Application number
CN202211178557.5A
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Chinese (zh)
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CN115274253B (en
Inventor
龙捷峰
沈宝春
魏小桐
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Jiangsu Longchuang Electric Co ltd
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Jiangsu Longchuang Electric Co ltd
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Priority to CN202211178557.5A priority Critical patent/CN115274253B/en
Publication of CN115274253A publication Critical patent/CN115274253A/en
Application granted granted Critical
Publication of CN115274253B publication Critical patent/CN115274253B/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F27/00Details of transformers or inductances, in general
    • H01F27/06Mounting, supporting or suspending transformers, reactors or choke coils not being of the signal type
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F27/00Details of transformers or inductances, in general
    • H01F27/28Coils; Windings; Conductive connections
    • H01F27/29Terminals; Tapping arrangements for signal inductances

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Housings And Mounting Of Transformers (AREA)
  • Coils Or Transformers For Communication (AREA)

Abstract

The invention provides a transformer mounting assembly. The transformer installation component comprises an installation seat, a transformer is installed on the installation seat, a groove with an upward opening is formed in the installation seat, a socket fixed to the bottom of the transformer is inserted into the groove, two rows of slots are formed in the groove, two arc elastic conducting strips are symmetrically arranged in each slot, two rows of power-on inserting pieces are fixedly connected to the bottom of the socket and electrically connected with the transformer, the power-on inserting pieces are inserted into the two rows of slots respectively, each power-on inserting piece is abutted to the corresponding two arc elastic conducting strips respectively, a limiting hole is formed in each power-on inserting piece, a limiting part is arranged on each power-on inserting piece in a matched mode with the limiting hole, the limiting part comprises a limiting column, and two sliding cavities symmetrically arranged inside the installation seat are formed. The transformer mounting assembly provided by the invention has the advantages that the mounting and dismounting of the transformer are simple and rapid, and the maintenance and the replacement of the transformer are convenient.

Description

Transformer installation component
Technical Field
The invention relates to the field of transformers, in particular to a transformer mounting assembly.
Background
The transformer is a device for changing alternating voltage by using the principle of electromagnetic induction, and main components are a primary coil, a secondary coil and an iron core. The main functions are as follows: voltage transformation, current transformation, impedance transformation, isolation, voltage stabilization, and the like. Transformers can be divided into: distribution transformers, power transformers, fully enclosed transformers, combined transformers, dry-type transformers, oil-immersed transformers, single-phase transformers, electric furnace transformers, rectifier transformers, reactors, anti-interference transformers, lightning protection transformers, box-type transformer test transformers, corner transformers, high current transformers, excitation transformers, etc. The transformer is seen everywhere in our life, and some outdoor power transmission equipment can use the transformer, and some small-size electronic equipment can also use the transformer.
When the installation of large-scale transformer, for guaranteeing its fastness, can use more bolt to fix it, the transformer among some small-size electronic equipment also can adopt the screw to fix it mostly, and the operation is comparatively troublesome, and some transformers now also can adopt the mode of pin with its direct and adapting unit butt joint, but its fastness is relatively poor, when great scope appears rocking in equipment, leads to the butt joint of transformer to appear becoming flexible easily.
Therefore, there is a need to provide a new transformer mounting assembly to solve the above technical problems.
Disclosure of Invention
In order to solve the technical problems, the invention provides the transformer mounting assembly which is simple and quick to mount and dismount the transformer and is convenient for overhauling and replacing the transformer.
The transformer mounting assembly provided by the invention comprises: the mounting seat, install the transformer on the mounting seat, set up the recess that the opening is ascending on the mounting seat, and insert in the recess and be equipped with the socket of fixing in the transformer bottom, two rows of slots have been seted up in the recess, and equal fixedly connected with symmetry sets up two arc elastic conducting strips in every slot, socket bottom fixedly connected with two rows of circular telegram inserted sheets with transformer electric connection, two rows of circular telegram inserted sheets are inserted respectively and are located in two rows of slots, and every circular telegram inserted sheet offsets with corresponding two arc elastic conducting strips respectively and sets up spacing hole on the circular telegram inserted sheet, the mounting seat internally mounted has the locating part that sets up with spacing hole cooperation, the locating part includes spacing post, the mounting seat is inside to set up the sliding cavity that two symmetries set up, and two sliding cavities communicate with two rows of slots respectively, equal sliding connection has a draw runner in two sliding cavities, all set up one row of inner chamber in the inner chamber, sliding connection has the connecting block in the inner chamber, and the connecting block passes through the one end inner wall connection of spring and inner chamber, the connecting block is connected with the one end inner wall of inner chamber, the connecting block is kept away from the spring, and extends to the inner chamber, and the connecting piece is outside the driving piece, two rows of the mounting seat, two rows of the relative sliding control of mounting seat, the side wall that the mounting seat is exposed, the inserted sheet is installed, the relative control of the inserted sheet is installed.
Preferably, the outer wall of the socket is attached to the inner wall of the groove, and the outer diameter of the upper end of the groove is larger than that of the lower end of the groove.
Preferably, the arc-shaped elastic conductive sheets in each row of grooves are connected in series and electrically connected.
Preferably, the inner wall of the sliding cavity is provided with a limiting sliding groove, and a limiting sliding block fixed on the side wall of the sliding strip is connected to the limiting sliding groove in a sliding mode.
Preferably, the driving part comprises a bidirectional screw rod, the bidirectional screw rod is transversely connected inside the mounting seat in a rotating mode, two ends of the bidirectional screw rod penetrate through the two sliding strips respectively and are in threaded connection with the two sliding strips, and one end of the bidirectional screw rod is fixedly connected with a knob.
Preferably, the stabilizing part comprises a U-shaped sliding plate and a U-shaped limiting plate, the U-shaped sliding plate is installed on the installation seat and is in sliding connection with the outer side wall of the installation seat, the U-shaped limiting plate is fixed above the U-shaped sliding plate and is abutted to the side wall of the upper side of the socket, a guide block is fixedly installed on the U-shaped sliding plate, a guide groove transversely arranged is formed in the outer side wall of the installation seat, and the guide block is in sliding connection with the guide groove.
Preferably, two magnetic blocks are fixedly connected in the guide groove and respectively located at two ends of the guide groove, the guide block is made of magnetic metal, and the magnetism of the guide block is opposite to that of the magnetic blocks.
Preferably, the connecting piece includes fixed block and connecting screw, and fixed mounting has two sets of fixed blocks of symmetry setting on the lateral wall of mount pad, and all installs connecting screw on two sets of fixed blocks.
Preferably, the through grooves for arranging wires are formed in two ends of the mounting seat.
Compared with the related art, the transformer mounting assembly provided by the invention has the following beneficial effects:
1. the transformer is further limited by the limiting part, the limit of the electrified inserting sheet can be removed by inserting the elastic limiting column on the sliding strip into the limiting hole on the electrified inserting sheet, the electrified inserting sheet is further limited, the mounting stability of the transformer is improved, the limit of the electrified inserting sheet can be removed by controlling the limiting column to be separated from the limiting hole of the electrified inserting sheet, the transformer is convenient to pull out upwards, the mounting and dismounting of the transformer are simple and quick, the transformer can be mounted and dismounted without tools in the whole process, the transformer is convenient to overhaul and replace, the position of the sliding strip can be adjusted according to actual needs, when the end part of the limiting column on the sliding strip is positioned right below the slot, the electrified inserting sheet can be directly downwards inserted into the limiting column to insert into the limiting hole, the semi-limiting of the transformer is realized, the transformer can be pulled out upwards by using larger force, the limiting column on the sliding strip can be also controlled to be separated from the limiting hole, the pulling out of the transformer is convenient, after the electrified inserting sheet is inserted into the slot, the sliding strip can be controlled to move inwards, the limiting column is further inserted into the limiting hole, and the complete limiting sheet is realized;
2. the arc-shaped elastic conducting strips in each row of grooves are connected in series and electrically connected, each row of power-on inserting pieces correspond to the arc-shaped elastic conducting strips in one row of slots, so that the series connection is realized, and the power-on inserting pieces are in contact power on with the arc-shaped elastic conducting strips, so that the power-on stability of the transformer is ensured;
3. according to the invention, the transformer is further reinforced through the stabilizing part, the transformer can be installed by sliding the U-shaped sliding plate to one side of the installation seat, and after the transformer is installed, the U-shaped sliding plate is moved, so that the U-shaped limiting plate clamps the upper surface of the socket, and the transformer is further reinforced, thereby improving the installation stability of the transformer.
Drawings
FIG. 1 is a schematic structural diagram of a transformer mounting assembly according to a preferred embodiment of the present invention;
FIG. 2 is a schematic view of the U-shaped slide of the present invention when opened;
fig. 3 is an exploded view of the transformer mounting assembly provided by the present invention;
FIG. 4 is a schematic structural view of a mounting base according to the present invention;
FIG. 5 is a schematic structural diagram of a transformer according to the present invention;
FIG. 6 is a schematic structural diagram of a limiting element according to the present invention;
FIG. 7 is a schematic view of the structure at A in FIG. 6;
fig. 8 is a schematic structural view of the stabilizer of the present invention.
The reference numbers in the figures: 1. a mounting seat; 11. a groove; 12. a slot; 13. an arc-shaped elastic conducting sheet; 2. a transformer; 21. a socket; 22. a power-on plug-in sheet; 23. a limiting hole; 3. a stopper; 31. a slide chamber; 32. a slide bar; 33. an inner cavity; 34. connecting blocks; 35. a spring; 36. a limiting column; 37. a limiting chute; 38. a limiting slide block; 4. a drive member; 41. a bidirectional screw; 42. a knob; 5. a stabilizer; 51. a U-shaped slide plate; 52. a U-shaped limiting plate; 53. a guide block; 54. a guide groove; 55. a magnetic block; 6. a connecting member; 61. a fixed block; 62. and (7) connecting screws.
Detailed Description
The invention is further described with reference to the following figures and embodiments.
In the specific implementation process, as shown in fig. 1 to 8, a transformer 2 is installed on an installation base 1, a groove 11 with an upward opening is formed on the installation base 1, a socket 21 fixed at the bottom of the transformer 2 is inserted in the groove 11, two rows of slots 12 are formed in the groove 11, two arc-shaped elastic conductive sheets 13 symmetrically arranged are fixedly connected in each slot 12, two rows of energization insertion sheets 22 electrically connected with the transformer 2 are fixedly connected at the bottom of the socket 21, the two rows of energization insertion sheets 22 are respectively inserted in the two rows of slots 12, each energization insertion sheet 22 is respectively abutted against the corresponding two arc-shaped elastic conductive sheets 13, a limiting hole 23 is formed in the energization insertion sheet 22, a limiting member 3 matched with the limiting hole 23 is installed in the installation base 1, the limiting member 3 comprises a limiting column 36, two sliding cavities 31 symmetrically arranged are formed in the installation base 1, the two sliding cavities 31 are respectively communicated with the two rows of slots 12, a sliding strip 32 is respectively connected in each sliding cavity 31 in a sliding mode, a row of inner cavities 33 are formed in each sliding strip 32, a connecting block 34 is connected in each inner cavity 33 in a sliding mode, the connecting block 34 is connected with the inner wall of one end of each inner cavity 33 through a spring 35, one end, far away from the spring 35, of each connecting block 34 is fixedly connected with a limiting column 36, the limiting column 36 penetrates through the inner cavities 33 and extends to the outside of each sliding strip 32, the bottoms of the two rows of electrified insertion pieces 22 respectively extend into the two sliding cavities 31, the two rows of limiting columns 36 are respectively inserted into the two rows of limiting holes 23, one end, far away from the exposed end, of each limiting column 36 is arranged in a hemispherical shape, a driving piece 4 for controlling the two sliding strips 32 to slide relatively is installed inside the mounting base 1, a stabilizing piece 5 is installed above the mounting base 1, and a connecting piece 6 is installed on the side wall of the mounting base 1.
It should be noted that: before the transformer 2 is installed, the installation base 1 is required to be fixed on a position appointed by installation equipment of the transformer 2 through the connecting piece 6, when the transformer 2 is in butt joint with the installation base 1, the socket 21 on the transformer 2 is aligned with the groove 11 on the installation base 1 to be inserted, the two rows of electrified insertion sheets 22 are aligned with the two rows of slots 12 to be inserted, the electrified insertion sheets 22 are inserted into the slots 12, the arc-shaped elastic conducting sheets 13 are extruded, the electrified insertion sheets 22 are in tight contact with the arc-shaped elastic conducting sheets 13 to be connected, meanwhile, when the bottoms of the electrified insertion sheets 22 are in contact with the limiting columns 36, the limiting columns 36 are retracted, so that the connecting blocks 34 slide in the inner cavities 33 to extrude the springs 35, when the limiting holes 23 on the electrified insertion sheets 22 are displaced to the limiting columns 36, the limiting columns 36 are clamped into the limiting holes 23 under the elastic force of the springs 35 to limit the electrified insertion sheets 22, the transformer 2 is fixed on the mounting base 1 and the socket 21 on the transformer 2 is limited by the stabilizing piece 5, so that the mounting stability of the transformer 2 is improved, when the transformer 2 needs to be taken down, the limitation of the stabilizing piece 5 on the socket 21 is removed, the driving piece 4 drives the two sliding strips 32 to slide in the sliding cavity 31, the limiting column 36 is driven to be separated from the limiting hole 23 of the electrified inserting piece 22, the limitation on the electrified inserting piece 22 is removed, the transformer 2 is convenient to be pulled out upwards, the mounting and dismounting of the transformer 2 are simple and rapid, the transformer 2 is convenient to overhaul and replace, the driving piece 4 can control the two sliding strips 32 to slide in the sliding cavity 31, the two sliding strips 32 are far away from or close to each other, the positions of the sliding strips 32 can be adjusted according to actual needs, when the end parts of the limiting columns 36 on the sliding strips 32 are positioned right below the slot 12, the electrifying inserting piece 22 can be directly downwards inserted to enable the limiting column 36 to be inserted into the limiting hole 23, the semi-limiting of the transformer 2 is realized, the transformer 2 can be upwards extracted by large force, the limiting column 36 on the sliding strip 32 can be controlled to be separated from the limiting hole 23, the transformer 2 is conveniently extracted, after the electrifying inserting piece 22 is inserted into the slot 12, the sliding strip 32 can be controlled to move inwards, the limiting column 36 is further inserted into the limiting hole 23, and the complete limiting of the electrifying inserting piece 22 is realized.
Wherein, the outer wall of the socket 21 is attached to the inner wall of the groove 11, and the outer diameter of the upper end of the groove 11 is larger than that of the lower end thereof; the socket 21 on the transformer 2 is conveniently inserted into the groove 11, the socket 21 is tightly butted with the groove 11, and the mounting stability of the transformer 2 is improved.
Wherein, the arc elastic conducting strips 13 in each row of grooves 11 are connected in series and electrically connected; each row of the electrifying inserting pieces 22 corresponds to the arc-shaped elastic conducting pieces 13 in one row of the slots 12, so that the serial connection of the electrifying inserting pieces is realized, and the electrifying inserting pieces 22 are in contact with the arc-shaped elastic conducting pieces 13 for electrifying, so that the electrifying stability of the transformer 2 is ensured.
Referring to fig. 4 and 6, a limiting sliding groove 37 is formed on the inner wall of the sliding cavity 31, and a limiting sliding block 38 fixed on the side wall of the sliding strip 32 is slidably connected in the limiting sliding groove 37.
It should be noted that: when the slide bar 32 slides in the slide cavity 31, the limiting slide block 38 is driven to move in the limiting slide groove 37, so that the moving stability of the slide bar 32 is improved, and meanwhile, the slide bar 32 is limited and cannot move out of the slide cavity 31.
Referring to fig. 6, the driving member 4 includes a bidirectional screw rod 41, the bidirectional screw rod 41 is transversely and rotatably connected inside the mounting base 1, two ends of the bidirectional screw rod 41 respectively penetrate through the two sliding bars 32 and are in threaded connection with the sliding bars, and one end of the bidirectional screw rod 41 is fixedly connected with a knob 42.
It should be noted that: by turning the knob 42, the bidirectional screw 41 is rotated, so that the two slides 32 are moved relatively to each other, and the two slides 32 are moved toward or away from each other.
Referring to fig. 8, the stabilizing member 5 includes a U-shaped sliding plate 51 and a U-shaped limiting plate 52, the U-shaped sliding plate 51 is mounted on the mounting seat 1 and slidably connected to an outer side wall thereof, the U-shaped limiting plate 52 is fixed above the U-shaped sliding plate 51 and disposed against an upper side wall of the socket 21, a guide block 53 is fixedly mounted on the U-shaped sliding plate 51, a transversely disposed guide groove 54 is formed on an outer side wall of the mounting seat 1, and the guide block 53 is slidably connected to the guide groove 54.
It should be noted that: when the stabilizing piece 5 is used, the U-shaped sliding plate 51 slides to one side of the mounting seat 1, the transformer 2 can be mounted, after the transformer 2 is mounted, the U-shaped sliding plate 51 is moved, the U-shaped limiting plate 52 clamps the upper surface of the socket 21, the transformer 2 is further reinforced, the mounting stability of the transformer 2 is improved, and the guide block 53 on the U-shaped sliding plate 51 slides in the guide groove 54 on the outer side wall of the mounting seat 1 to limit the U-shaped sliding plate 51.
Referring to fig. 4, two magnetic blocks 55 are fixedly connected in the guide groove 54, the two magnetic blocks 55 are respectively located at two ends of the guide groove 54, the guide block 53 is made of magnetic metal, and the magnetism of the guide block 53 is opposite to that of the magnetic blocks 55.
It should be noted that: when the U-shaped sliding plate 51 slides to both ends, the guiding block 53 with opposite magnetism is attracted by the magnetic block 55, so as to limit the U-shaped limiting plate 52, and prevent the U-shaped sliding plate 51 from sliding freely and being unable to limit the socket 21.
Referring to fig. 4, the connecting member 6 includes a fixing block 61 and a connecting screw 62, two sets of symmetrically arranged fixing blocks 61 are fixedly mounted on the side wall of the mounting base 1, and the connecting screws 62 are mounted on both sets of fixing blocks 61.
It should be noted that: the fixing block 61 is fixed at a position designated by a machine by a coupling screw 62, thereby fixing the mount 1.
Wherein, the two ends of the mounting seat 1 are both provided with through grooves for arranging wires; the electric wire passes through the through groove, and the electric wire is prevented from being extruded by the mounting seat 1 and damaged.
The working principle provided by the invention is as follows: before the invention is used, the installation seat 1 needs to be installed, the fixing block 61 is fixed at the position appointed by mechanical equipment through the connecting screw 62, so as to fix the installation seat 1, the U-shaped sliding plate 51 is slid to one side of the installation seat 1, so that the installation of the transformer 2 is not hindered by the U-shaped limiting plate 52, when the transformer 2 is installed, the socket 21 on the transformer 2 is aligned with the groove 11 on the installation seat 1 to be inserted, and the two rows of electrifying insertion sheets 22 are aligned with the two rows of insertion slots 12 to be inserted, the arc-shaped elastic conducting sheet 13 is extruded in the process that the electrifying insertion sheets 22 are inserted into the insertion slots 12, so that the electrifying insertion sheets 22 are closely contacted with the arc-shaped elastic conducting sheet 13 to be connected, and simultaneously when the bottom of the electrifying insertion sheets 22 is contacted with the limiting column 36, the limiting column 36 is retracted, so that the connecting block 34 slides in the inner cavity 33 to extrude the spring 35, and when the limiting hole 23 on the electrifying insertion sheets 22 is displaced to the limiting column 36, the limiting post 36 is clamped into the limiting hole 23 under the elastic force of the spring 35, so as to limit the electrified inserting sheet 22 and prevent the electrified inserting sheet 22 from being pulled out of the slot 12, the transformer 2 is fixed on the mounting seat 1, the socket 21 on the transformer 2 is limited through the stabilizing piece 5, the U-shaped sliding plate 51 is moved, the U-shaped limiting plate 52 is clamped on the upper surface of the socket 21, the transformer 2 is further reinforced, when the U-shaped sliding plate 51 slides to two ends, the guide block 53 with opposite magnetism is adsorbed by the magnetic block 55, so as to limit the U-shaped limiting plate 52, the problem that the U-shaped sliding plate 51 slides randomly and cannot limit the socket 21 is avoided, when the transformer 2 needs to be taken down, the limiting of the socket 21 by the stabilizing piece 5 is relieved, the bidirectional screw 41 is rotated through rotating the knob 42, so as to realize the relative movement of the two sliding strips 32, the two sliding strips 32 are far away from each other to drive the limiting columns 36 to be separated from the limiting holes 23 of the electrified insertion pieces 22, the limitation on the electrified insertion pieces 22 is removed, the transformer 2 is convenient to pull out upwards, the installation and the disassembly of the transformer 2 are simple and rapid, the transformer 2 is convenient to overhaul and replace, the driving piece 4 can control the two sliding strips 32 to slide in the sliding cavity 31, the two sliding strips 32 are far away from or close to each other, the positions of the sliding strips 32 can be adjusted according to actual requirements, when the end parts of the limiting columns 36 on the sliding strips 32 are positioned under the slots 12, the electrified insertion pieces 22 can be directly inserted downwards to enable the limiting columns 36 to be inserted into the limiting holes 23, the semi-limiting of the transformer 2 is achieved, the transformer 2 can be pulled out upwards by using large force, the limiting columns 36 on the sliding strips 32 can be controlled to be separated from the limiting holes 23, the pulling out of the transformer 2 is convenient, after the electrified insertion pieces 22 are inserted into the slots 12, the sliding strips 32 can be controlled to move inwards, the limiting columns 36 are further inserted into the limiting holes 23, and the complete limiting of the electrified insertion pieces 22 is achieved.
The above description is only an embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications of equivalent structures and equivalent processes, which are made by using the contents of the present specification and the accompanying drawings, or directly or indirectly applied to other related technical fields, are included in the scope of the present invention.

Claims (9)

1. A transformer mounting assembly, comprising:
the transformer-mounted power distribution device comprises a mounting seat (1), wherein a transformer (2) is mounted on the mounting seat (1), a groove (11) with an upward opening is formed in the mounting seat (1), a socket (21) fixed at the bottom of the transformer (2) is inserted into the groove (11), two rows of slots (12) are formed in the groove (11), two arc-shaped elastic conducting strips (13) symmetrically arranged in each slot (12) are fixedly connected, two rows of electrifying inserting pieces (22) electrically connected with the transformer (2) are fixedly connected to the bottom of the socket (21), the two rows of electrifying inserting pieces (22) are respectively inserted into the two rows of slots (12), each electrifying inserting piece (22) is respectively abutted against the corresponding two arc-shaped elastic conducting strips (13), a limiting hole (23) is formed in each electrifying inserting piece (22), a limiting piece (3) matched with the limiting hole (23) is mounted in the mounting seat (1), the limiting piece (3) comprises a limiting column (36), two symmetrically arranged sliding cavities (31) are formed in the mounting seat (1), the two sliding cavities (31) are respectively communicated with the two sliding cavities (12), and two sliding strips (32) are respectively arranged in the two rows of the two sliding strips (32), sliding connection has connecting block (34) in inner chamber (33), and connecting block (34) pass through the one end inner wall connection of spring (35) and inner chamber (33), spacing post (36) of one end fixedly connected with of spring (35) are kept away from in connecting block (34), and just spacing post (36) run through inner chamber (33) and extend to draw runner (32) outside, two rows circular telegram inserted sheet (22) bottom extends to two sliding chambers (31) respectively inside, and two rows of spacing post (36) insert respectively and locate two rows of spacing holes (23), exposed one end is kept away from in spacing post (36) and is the hemisphere setting, mount pad (1) internally mounted has two sliding bars (32) of control driving piece (4) relative slip, stabilizing part (5) are installed to mount pad (1) top, install connecting piece (6) on the lateral wall of mount pad (1).
2. The transformer mounting assembly according to claim 1, wherein the outer wall of the socket (21) is attached to the inner wall of the groove (11), and the outer diameter of the upper end of the groove (11) is larger than that of the lower end thereof.
3. A transformer mounting assembly according to claim 1, characterized in that the arc-shaped resilient conducting strips (13) in each row of slots (11) are connected in series and electrically connected.
4. The transformer mounting assembly according to claim 1, wherein a limiting sliding groove (37) is formed on an inner wall of the sliding cavity (31), and a limiting sliding block (38) fixed on a side wall of the sliding bar (32) is slidably connected in the limiting sliding groove (37).
5. The transformer mounting assembly according to claim 1, wherein the driving member (4) comprises a bidirectional screw (41), the bidirectional screw (41) is transversely and rotatably connected inside the mounting seat (1), two ends of the bidirectional screw (41) respectively penetrate through the two sliding bars (32) and are in threaded connection with the sliding bars, and one end of the bidirectional screw (41) is fixedly connected with a knob (42).
6. The transformer mounting assembly according to claim 1, wherein the stabilizer (5) comprises a U-shaped sliding plate (51) and a U-shaped limiting plate (52), the U-shaped sliding plate (51) is mounted on the mounting base (1) and is slidably connected with the outer side wall of the mounting base, the U-shaped limiting plate (52) is fixedly arranged above the U-shaped sliding plate (51) and is abutted against the upper side wall of the socket (21), a guide block (53) is fixedly mounted on the U-shaped sliding plate (51), a transversely-arranged guide groove (54) is formed in the outer side wall of the mounting base (1), and the guide block (53) is slidably connected in the guide groove (54).
7. The transformer mounting assembly according to claim 6, wherein two magnetic blocks (55) are fixedly connected in the guide groove (54), and the two magnetic blocks (55) are respectively located at two ends of the guide groove (54), the guide block (53) is made of magnetic metal, and the magnetism of the guide block (53) is opposite to that of the magnetic blocks (55).
8. The transformer mounting assembly according to claim 1, wherein the connecting member (6) comprises fixing blocks (61) and connecting screws (62), two sets of symmetrically arranged fixing blocks (61) are fixedly mounted on the side wall of the mounting base (1), and the connecting screws (62) are mounted on both sets of fixing blocks (61).
9. The transformer mounting assembly according to claim 1, wherein both ends of the mounting base (1) are provided with through slots for winding displacement.
CN202211178557.5A 2022-09-27 2022-09-27 Transformer installation component Active CN115274253B (en)

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Application Number Priority Date Filing Date Title
CN202211178557.5A CN115274253B (en) 2022-09-27 2022-09-27 Transformer installation component

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Application Number Priority Date Filing Date Title
CN202211178557.5A CN115274253B (en) 2022-09-27 2022-09-27 Transformer installation component

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CN115274253A true CN115274253A (en) 2022-11-01
CN115274253B CN115274253B (en) 2022-12-13

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN211062561U (en) * 2019-11-22 2020-07-21 上海稳压器厂 Transformer capable of being stably installed
CN112133527A (en) * 2020-09-10 2020-12-25 山东中安电力科技有限公司 Transformer convenient to fix
CN113628842A (en) * 2021-08-10 2021-11-09 合肥博恒电气科技有限公司 Quick installation fixing assembly of transformer
CN113674951A (en) * 2021-08-20 2021-11-19 丁志伟 Electronic transformer convenient to disassemble and assemble quickly

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN211062561U (en) * 2019-11-22 2020-07-21 上海稳压器厂 Transformer capable of being stably installed
CN112133527A (en) * 2020-09-10 2020-12-25 山东中安电力科技有限公司 Transformer convenient to fix
CN113628842A (en) * 2021-08-10 2021-11-09 合肥博恒电气科技有限公司 Quick installation fixing assembly of transformer
CN113674951A (en) * 2021-08-20 2021-11-19 丁志伟 Electronic transformer convenient to disassemble and assemble quickly

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