Reinforced large-capacity adjustable amorphous alloy iron core template

By designing a reinforced large-capacity adjustable amorphous alloy core template, adopting a top frame and side frame structure, and setting reinforcement rods and quick connection components are installed on the side frames, the problem of diversified core templates of amorphous alloy dry transformer is solved, and adaptive support for iron cores of different lengths is achieved, which improves production efficiency and template utilization.

CN223123736UActive Publication Date: 2025-07-18JINPAN TECHNOLOGY NEW ENERGY INTELLIGENT EQUIPMENT (HUNAN) CO LTD
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Patent Information

Application Number
CN202422334876.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-07-18
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

In the prior art, the diversified size of the core template of amorphous alloy dry transformer leads to a backlog of inventory, prolonged production cycle, and cannot effectively adapt to cores of different lengths.

Method used

A reinforced large-capacity adjustable amorphous alloy iron core template is designed, adopting a top frame and side frame structure, with reinforcement rods and quick connection components on the side frames to adjust the components to adjust the side frame length to meet the support needs of iron cores of different lengths.

Benefits of technology

The bending strength and installation efficiency of the template are improved, the deformation of the template is reduced, and the adaptive support for iron cores of different lengths is achieved, avoiding the waste of new template production and inventory backlog.

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Abstract

The utility model relates to the technical field of formwork supporting, and particularly discloses a reinforced large-capacity adjustable amorphous alloy iron core formwork which comprises a top frame and a side frame, the top frame and the side frame are perpendicular to each other, a reinforcing rod is arranged on the side frame, quick connecting assemblies are arranged on the reinforcing rod and the side frame, and the side frame comprises a first side plate and a second side plate. Adjusting assemblies are arranged on the first side plate and the second side plate; the reinforcing rods can improve the bending strength of the side frames and reduce bending deformation of the side frames when the distance between the first side plate and the second side plate is increased, the top frame and the side frames can be rapidly connected and installed through the rapid connecting assemblies, the installation efficiency is improved, the distance between the first side plate and the second side plate can be adjusted through the adjusting assemblies, and the installation efficiency is improved. And the length of the side frame is adjusted, so that iron cores with different lengths can be adaptively supported under the condition that a new template does not need to be produced.
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Description

Technical Field

[0001] This application relates to the technical field of formwork supports, and in particular to a reinforced large-capacity adjustable amorphous alloy core formwork. Background Art

[0002] At present, amorphous alloy dry-type transformers have the characteristics of maintenance-free, flame-retardant, small volume, etc., and are widely used in places such as urban high-rise buildings and rail transit.

[0003] In related technologies, the core of an amorphous alloy dry-type transformer is processed using amorphous alloy strips, and the manufacturing process involves processes such as shearing, forming, and heat treatment of the amorphous alloy strips. During these processes, shearing relies on automated shearing by special machine equipment, and the forming process is currently manually operated. The operator needs to first align the sheared strips in groups of overlaps, and after alignment, place them into the inner mold and the core formwork for the forming process.

[0004] For the above-mentioned related technologies, when the cores required for some large-capacity amorphous alloy dry-type transformers are relatively long, the length of the required formwork is also relatively long. At this time, a new formwork adapted to the length of the core needs to be customized. When the new formwork is long, a thin steel plate will have a curvature. Moreover, since there is no standardization for current amorphous dry-type transformers, the sizes of the corresponding core formworks are relatively diverse. Many factory drawings are used only once, resulting in a large inventory of formworks in the core production factory. Some formworks are only used once and then become inventory, causing inventory backlog of formworks. Remaking formworks causes financial losses and wastes the production cycle time of new formworks, resulting in an extended production cycle of amorphous cores in the core factory. Therefore, improvements are made. Summary of the Utility Model

[0005] In order to enable the core formwork to adaptively support cores of various different lengths and reduce the deformation of the core formwork, this application provides a reinforced large-capacity adjustable amorphous alloy core formwork.

[0006] The reinforced large-capacity adjustable amorphous alloy core formwork provided by this application adopts the following technical solutions:

[0007] A reinforced large-capacity adjustable amorphous alloy core formwork includes a top frame and side frames. The top frame and the side frames are perpendicularly arranged. Reinforcing bars are provided on the side frames, and quick connection components for quickly installing and connecting the top frame and the side frames are provided on the reinforcing bars and the side frames. The side frames include a first side plate and a second side plate, and adjustment components for adjusting the distance between the first side plate and the second side plate are provided on the first side plate and the second side plate.

[0008] By adopting the above technical solution, the reinforcing rod can improve the bending strength of the side frame and reduce the bending deformation of the side frame when the distance between the first side panel and the second side panel increases. The quick connection component can quickly connect and install the top frame and the side frame to improve the installation efficiency, and the adjustment component can adjust the distance between the first side panel and the second side panel to adjust the length of the side frame, thereby meeting the adaptation support for iron cores of different lengths without the need to produce new templates.

[0009] Optionally, the quick connection assembly includes a first latch, a mounting block and a first reset piece, the mounting block is arranged at the end of the reinforcing rod, a mounting groove is provided on the top frame corresponding to the mounting block, the first latch is movably arranged on the top frame, a movable groove is provided on the top frame for the first latch, a latch groove is provided on the end of the mounting block corresponding to the first latch, the first reset piece is sleeved on the first latch and arranged in the movable groove, and the first latch is provided with a lever for moving the first latch.

[0010] By adopting the above technical solution, the lever is first moved to move the first latch away from the mounting block, and then the mounting block is installed in the mounting groove and the lever is released. Under the action of the first resetting member, the first latch moves in the movable groove for resetting until the end enters the latch groove, thereby realizing a quick fixed connection between the top frame and the side frame.

[0011] Optionally, the adjustment assembly includes a first adjustment plate, a second adjustment plate and an adjustment member, the first adjustment plate and the second adjustment plate are each provided with two groups, the two groups of the first adjustment plates are provided in parallel and spaced apart on the first side plate, the two groups of the second adjustment plates are provided in parallel and spaced apart on the second side plate, the two groups of the second adjustment plates are provided between the two groups of the first adjustment plates, and the adjustment member is provided on the first adjustment plate and the second adjustment plate for fixedly connecting the adjusted first adjustment plate and the second adjustment plate.

[0012] By adopting the above technical solution, the two groups of second adjustment plates are placed between the two groups of first adjustment plates, and the positions of the first side plates and the second side plates are adjusted to appropriate positions and fixedly connected through adjustment parts, so as to adjust the length of the side frame, thereby meeting the requirements of adaptive support for iron cores of different lengths without the need to produce new templates.

[0013] Optionally, the adjusting part includes bolts and nuts, and a plurality of groups of threaded holes for the bolts are arranged at intervals on the first adjusting plate, the second adjusting plate and the reinforcing rod, and a plurality of groups of bolts and nuts are arranged, and the plurality of groups of bolts are arranged in the threaded holes and extend out of the threaded holes to be fixedly connected to the plurality of groups of nuts.

[0014] By adopting the above technical solution, the different threaded holes formed in the first adjustment plate and the second adjustment plate are aligned, and multiple groups of bolts are respectively installed in the aligned threaded holes and fixed by nuts, so that the distance between the first side plate and the second side plate can be adjusted, and the length of the side frame can be adjusted, thereby meeting the adaptation and support requirements for iron cores of different lengths without the need to produce new templates.

[0015] Optionally, the adjusting member includes a second pin, a connecting rod, and a second reset member. The first adjustment plate and the second adjustment plate are respectively provided with multiple groups of second pin holes at intervals corresponding to the second pin. Multiple groups of the second pins are provided, and multiple groups of the second pins are all arranged in the second pin holes. Multiple groups of the second pins are connected into a whole through the connecting rod. A moving groove is formed in the reinforcing rod corresponding to the connecting rod and the second pin, and the second reset member is arranged between the inner bottom of the moving groove and the second pin.

[0016] By adopting the above technical solution, when the connecting rod is moved in the moving groove to separate the second pin from the second pin hole, the positional relationship between the first adjustment plate and the second adjustment plate is adjusted to align the different second pin holes formed in the first adjustment plate and the second adjustment plate. After loosening the connecting rod, under the action of the second reset member, the second pin is reset and extends into the aligned second pin hole for fixation, so that the distance between the first side plate and the second side plate can be adjusted, and the length of the side frame can be adjusted, thereby meeting the adaptation and support requirements for iron cores of different lengths without the need to produce new templates.

[0017] Optionally, the adjusting member includes a driving gear, a socket rod, and a rotating disk. The first adjustment plate and the second adjustment plate are respectively provided with multiple groups of socket holes at intervals corresponding to the socket rod. The socket rod is arranged in the socket holes. The driving gear is rotatably arranged in the reinforcing rod. A tooth pattern is formed on one surface of the socket rod close to the driving gear, and the tooth pattern meshes with the driving gear. A connecting column is arranged between the rotating disk and the driving gear. One end of the connecting column extends out of the reinforcing rod and is connected to the rotating disk, and the other end is connected to the driving gear.

[0018] By adopting the above technical solution, the driving gear is rotated to separate the socket rod from the socket hole, then the positional relationship between the first adjustment plate and the second adjustment plate is adjusted to align the different socket holes formed in the first adjustment plate and the second adjustment plate. Then the driving gear is rotated in the reverse direction to make the socket rod extend into the aligned socket hole for fixation, so that the distance between the first side plate and the second side plate can be adjusted, and the length of the side frame can be adjusted, thereby meeting the adaptation and support requirements for iron cores of different lengths without the need to produce new templates.

[0019] Optionally, a reinforcement plate is provided between the side frame and the top frame.

[0020] By adopting the above technical solution, the reinforcing plate can improve the stability of the connection between the side frame and the top frame, reduce the deformation of the connection between the side frame and the top frame, and further improve the bending resistance of the side frame.

[0021] Optionally, a reinforcement groove is provided on the top frame, and the reinforcement plate portion is socketed and arranged in the reinforcement groove.

[0022] By adopting the above technical solution, when the top frame is connected to the side frame, part of the reinforcing plate is socket-installed in the reinforcing groove, which can further improve the stability of the connection between the top frame and the side frame, reduce the deformation of the connection between the side frame and the top frame, and avoid relative displacement between the reinforcing plate and the top frame when the top frame and the side frame are squeezed.

[0023] In summary, the present application includes at least one of the following beneficial technical effects:

[0024] 1. The reinforcing rod can improve the bending strength of the side frame and reduce the bending deformation of the side frame when the distance between the first side plate and the second side plate increases. The quick connection component can quickly connect and install the top frame and the side frame to improve the installation efficiency, and the adjustment component can adjust the distance between the first side plate and the second side plate to adjust the length of the side frame, thereby meeting the adaptation support of the iron cores of different lengths without the need to produce new templates;

[0025] 2. The reinforcing plate can improve the stability of the connection between the side frame and the top frame, reduce the deformation of the connection between the side frame and the top frame, and further improve the bending resistance of the side frame. When the top frame and the side frame are connected, part of the reinforcing plate is installed in the reinforcing groove to further improve the stability of the connection between the top frame and the side frame, reduce the deformation of the connection between the side frame and the top frame, and avoid relative displacement between the reinforcing plate and the top frame when the top frame and the side frame are squeezed;

[0026] 3. Move the lever to move the first latch away from the mounting block, then install the mounting block in the mounting groove and release the lever. Under the action of the first resetting member, the first latch moves in the movable groove for resetting until the end enters the latch groove, thereby realizing a quick fixed connection between the top frame and the side frame. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0028] Figure 1 It is a schematic diagram of the overall structure of the first embodiment of the present application;

[0029] Figure 2 is Figure 1 a partial structure schematic diagram of;

[0030] Figure 3 It is a schematic diagram of the structure of the adjusting member in the second embodiment;

[0031] Figure 4 It is a schematic diagram of the structure of the adjusting member in the third embodiment;

[0032] Figure 5 is Figure 4 a partial structure schematic diagram of.

[0033] Reference numerals: 1, top frame; 2, side frame; 21, reinforcing rod; 22, first side plate; 23, second side plate; 3, quick connection assembly; 31, first bolt; 32, mounting block; 33, first reset member; 34, lever; 4, adjustment assembly; 41, first adjustment plate; 42, second adjustment plate; 43, adjusting member; 5, bolt; 6, second bolt; 61, connecting rod; 63, second reset member; 7, driving gear; 71, socket rod; 72, rotating disc; 73, connecting column; 8, reinforcing plate; 9, reinforcing groove. Detailed implementation manners

[0034] The following further elaborates on the present application in conjunction with the attached Figures 1-5 drawings.

[0035] Embodiment 1:

[0036] The embodiment of the present application discloses a reinforced large-capacity adjustable amorphous alloy iron core template. Referring to Figure 1 and Figure 2 , a reinforced large-capacity adjustable amorphous alloy iron core template includes a top frame 1 and a side frame 2. The top frame 1 and the side frame 2 are perpendicularly arranged. A reinforcing rod 21 is welded and installed on the side frame 2. A quick connection assembly 3 is installed on the reinforcing rod 21 and the side frame 2. The side frame 2 includes a first side plate 22 and a second side plate 23. An adjustment assembly 4 is installed on the first side plate 22 and the second side plate 23.

[0037] The reinforcing rod 21 can improve the bending strength of the side frame 2 and reduce the bending deformation of the side frame 2 when the distance between the first side plate 22 and the second side plate 23 increases. The quick connection assembly 3 can quickly connect and install the top frame 1 and the side frame 2, improving the installation efficiency. The adjustment assembly 4 can adjust the distance between the first side plate 22 and the second side plate 23, realizing the adjustment of the length of the side frame 2, so as to adapt and support iron cores of different lengths without producing new templates.

[0038] In order to achieve rapid installation between the side frame 2 and the top frame 1 and improve the installation efficiency, referring to Figure 2 , in this embodiment, the quick connection component 3 includes a first bolt 31, a mounting block 32 and a first reset member 33. The mounting block 32 is integrally provided at the end of the reinforcing rod 21. A mounting groove is provided on the top frame 1 corresponding to the mounting block 32. The first bolt 31 is movably installed on the top frame 1. An activity groove is provided on the top frame 1 for the first bolt 31. A bolt groove is provided on the mounting block 32 corresponding to the end of the first bolt 31. The first reset member 33 is sleeved on the first bolt 31 and installed in the activity groove. A lever 34 is welded and installed on the first bolt 31. First, the lever 34 is toggled to move the first bolt 31 away from the mounting block 32. Then, after the mounting block 32 is installed in the mounting groove, the lever 34 is released. Under the action of the first reset member 33, the first bolt 31 moves and resets in the activity groove until the end enters the bolt groove, thereby realizing the quick fixed connection between the top frame 1 and the side frame 2. In this embodiment, the first reset member 33 is a spring, and the spring is a preferred manner in this embodiment. In other embodiments, the first reset member 33 can be an elastic cushion layer, etc.

[0039] When it is necessary to adjust and adapt the length of the template according to the length of the iron core, referring to Figure 1 , in this embodiment, the adjustment component 4 includes a first adjustment plate 41, a second adjustment plate 42 and an adjustment member 43. Two groups of the first adjustment plates 41 and two groups of the second adjustment plates 42 are installed. The two groups of the first adjustment plates 41 are welded and installed on the first side plate 22 in parallel at intervals. The two groups of the second adjustment plates 42 are welded and installed on the second side plate 23 in parallel at intervals. The two groups of the second adjustment plates 42 are installed between the two groups of the first adjustment plates 41. The adjustment member 43 is installed on the first adjustment plate 41 and the second adjustment plate 42. First, the two groups of the second adjustment plates 42 are placed between the two groups of the first adjustment plates 41. The positions of the first side plate 22 and the second side plate 23 are adjusted to appropriate positions and fixedly connected through the adjustment member 43 to realize the adjustment of the length of the side frame 2, so as to adapt and support iron cores of different lengths without producing new templates.

[0040] Referring to Figure 1The adjusting member 43 in this embodiment includes bolts 5 and nuts. Multiple groups of threaded holes are provided for the bolts 5 at intervals on the first adjusting plate 41, the second adjusting plate 42 and the reinforcing rod 21. Multiple groups of bolts 5 and nuts are installed. Multiple groups of bolts 5 are installed in the threaded holes and extend out of the threaded holes to be fixedly connected with multiple groups of nuts. The different threaded holes provided on the first adjusting plate 41 and the second adjusting plate 42 are aligned, and multiple groups of bolts 5 are respectively installed in the aligned threaded holes and fixed by nuts. The spacing between the first side plate 22 and the second side plate 23 can be adjusted to adjust the length of the side frame 2, so as to meet the requirements of adapting and supporting the iron cores of different lengths without producing new templates. In this embodiment, two groups of bolts 5 and nuts are installed. The two groups can improve the connection strength between the first adjusting plate 41 and the second adjusting plate 42, and can also prevent the first adjusting plate 41 and the second adjusting plate 42 from rotating relative to each other.

[0041] In order to further improve the connection stability between the side frame 2 and the top frame 1, refer to Figure 1 A reinforcing plate 8 is installed between the side frame 2 and the top frame 1. The reinforcing plate 8 is welded and installed on the side frame 2. A reinforcing groove 9 is opened on the top frame 1, and part of the reinforcing plate 8 is installed in the reinforcing groove 9 by means of a socket. The reinforcing plate 8 can improve the stability of the connection between the side frame 2 and the top frame 1, reduce the deformation at the connection between the side frame 2 and the top frame 1, and further improve the bending resistance of the side frame 2. When the top frame 1 is connected to the side frame 2, part of the reinforcing plate 8 is installed in the reinforcing groove 9 by means of a socket, which can further improve the stability of the connection between the top frame 1 and the side frame 2, reduce the deformation at the connection between the side frame 2 and the top frame 1, and avoid the relative displacement between the reinforcing plate 8 and the top frame 1 when the top frame 1 and the side frame 2 are squeezed.

[0042] The implementation principle of the shot blasting machine for metal processing in the embodiment of the present application is:

[0043] When it is necessary to realize a quick connection between the side frame 2 and the top frame 1, the lever 34 is firstly moved to move the first latch 31 away from the mounting block 32, and then the mounting block 32 is installed in the mounting groove and the lever 34 is released. Under the action of the first reset member 33, the first latch 31 moves in the movable groove to reset until the end enters the latch groove, thereby realizing a quick fixed connection between the top frame 1 and the side frame 2;

[0044] When the length of the side frame 2 needs to be adjusted to meet the requirements of different lengths of the iron core, the different threaded holes opened on the first adjustment plate 41 and the second adjustment plate 42 are aligned, and multiple groups of bolts 5 are respectively installed in the aligned threaded holes and fixed by nuts. In this way, the distance between the first side plate 22 and the second side plate 23 can be adjusted to adjust the length of the side frame 2.

[0045] Embodiment 2:

[0046] Referring to Figure 3 , Embodiment 2 also discloses a specific structure of an adjusting member 43. The adjusting member 43 in this embodiment includes a second pin 6, a connecting rod 61, and a second reset member 63. The first adjusting plate 41 and the second adjusting plate 42 are both provided with multiple groups of second pin 6 holes at intervals corresponding to the second pin 6. Multiple groups of the second pins 6 are installed, and multiple groups of the second pins 6 are all installed in the second pin 6 holes, and multiple groups of the second pins 6 are connected into a whole through the connecting rod 61. A moving groove is provided in the reinforcing rod 21 corresponding to the connecting rod 61 and the second pin 6, and the second reset member 63 is arranged between the inner bottom of the moving groove and the second pin 6.

[0047] Move the connecting rod 61 to move in the moving groove, so that the second pin 6 is separated from the second pin 6 hole, then adjust the positional relationship between the first adjusting plate 41 and the second adjusting plate 42 to align different second pin 6 holes opened on the first adjusting plate 41 and the second adjusting plate 42. Loosen the connecting rod 61, and under the action of the second reset member 63, the second pin 6 is reset and extends into the aligned second pin 6 hole for fixation, thereby adjusting the distance between the first side plate 22 and the second side plate 23, and realizing the adjustment of the length of the side frame 2. Thus, it can meet the adaptation and support of iron cores with different lengths without producing new templates. In this embodiment, four groups of the second pins 6 are installed, and there are two groups of the connecting rods 61. Two pins are fixedly connected to one group of the connecting rods 61. In other embodiments, the numbers of the second pins 6 and the connecting rods 61 can be adjusted according to actual requirements. And in this embodiment, the second reset member 63 is a spring, and the spring is a preferred manner of this embodiment. In other embodiments, the second reset member 63 can be an elastic cushion layer, etc.

[0048] The implementation principle of the shot blasting machine for metal processing in the embodiment of the present application is as follows: Move the connecting rod 61 to move in the moving groove, so that the second pin 6 is separated from the second pin 6 hole, then adjust the positional relationship between the first adjusting plate 41 and the second adjusting plate 42 to align different second pin 6 holes opened on the first adjusting plate 41 and the second adjusting plate 42. Loosen the connecting rod 61, and under the action of the second reset member 63, the second pin 6 is reset and extends into the aligned second pin 6 hole for fixation, thereby adjusting the distance between the first side plate 22 and the second side plate 23, and realizing the adjustment of the length of the side frame 2.

[0049] Embodiment 3:

[0050] Referring to Figure 4 and Figure 5, Embodiment 3 of the present invention also discloses a specific structure of the adjusting member 43. The adjusting member 43 in Embodiment 3 includes a driving gear 7, a socket rod 71, and a rotating disk 72. The first adjusting plate 41 and the second adjusting plate 42 are respectively provided with a plurality of socket holes at intervals corresponding to the socket rod 71. The socket rod 71 is installed in the socket holes. The driving gear 7 is rotatably installed in the reinforcing rod 21. A tooth pattern is provided on the surface of the socket rod 71 close to the driving gear 7, and the tooth pattern meshes with the driving gear 7. A connecting column 73 is welded between the rotating disk 72 and the driving gear 7. One end of the connecting column 73 extends out of the reinforcing rod 21 and is welded to the rotating disk 72, and the other end is welded to the driving gear 7.

[0051] Rotate the driving gear 7 to separate the socket rod 71 from the socket hole, then adjust the positional relationship between the first adjusting plate 41 and the second adjusting plate 42 to align the different socket holes provided on the first adjusting plate 41 and the second adjusting plate 42. Then rotate the driving gear 7 in the reverse direction to make the socket rod 71 extend into the aligned socket hole for fixation, so as to adjust the distance between the first side plate 22 and the second side plate 23, and realize the adjustment of the length of the side frame 2, thereby meeting the adaptation and support of iron cores of different lengths without producing new templates. In this embodiment, two groups of socket rods 71 are installed, and the two groups of socket rods 71 are symmetrically installed centered on the driving gear 7. In this embodiment, the cross section of the socket rod 71 is rectangular.

[0052] The implementation principle of the shot blasting machine for metal processing in the embodiment of the present application is: rotate the driving gear 7 to separate the socket rod 71 from the socket hole, then adjust the positional relationship between the first adjusting plate 41 and the second adjusting plate 42 to align the different socket holes provided on the first adjusting plate 41 and the second adjusting plate 42. Then rotate the driving gear 7 in the reverse direction to make the socket rod 71 extend into the aligned socket hole for fixation, so as to adjust the distance between the first side plate 22 and the second side plate 23, and realize the adjustment of the length of the side frame 2.

[0053] Unless otherwise defined, the technical terms or scientific terms used in this application shall have the ordinary meanings as understood by those of ordinary skill in the field to which this application pertains. The terms "first", "second", "third" and similar terms used in the description and claims of this application do not denote any order, quantity or importance, but are merely used to distinguish different components. The terms such as "a" or "an" do not denote a limitation of quantity, but rather denote the presence of at least one. The terms such as "comprising" or "including" mean that the elements or items appearing before "comprising" or "including" cover the elements or items listed after "comprising" or "including" and their equivalents, and do not exclude other elements or items. The terms such as "upper", "lower", "left", "right" are only used to indicate relative positional relationships, and when the absolute position of the object being described changes, the relative positional relationships may also change accordingly.

[0054] The above are all optional embodiments of this application, and do not limit the protection scope of this application accordingly. Therefore, all equivalent changes made according to the structure, shape and principle of this application shall be covered within the protection scope of this application.

Claims

1. An enhanced large-capacity adjustable amorphous alloy iron core template, comprising a top frame (1) and side frames (2), characterized in that: The top frame (1) and the side frame (2) are arranged perpendicular to each other. A reinforcing rod (21) is provided on the side frame (2). A quick connection assembly (3) for quickly installing and connecting the top frame (1) and the side frame (2) is provided on the reinforcing rod (21) and the side frame (2). The side frame (2) includes a first side plate (22) and a second side plate (23). An adjusting assembly (4) for adjusting the distance between the first side plate (22) and the second side plate (23) is provided on the first side plate (22) and the second side plate (23).

2. The enhanced large-capacity adjustable amorphous alloy iron core template according to claim 1, wherein: The quick connection assembly (3) includes a first bolt (31), a mounting block (32), and a first reset member (33). The mounting block (32) is arranged at the end of the reinforcing rod (21). A mounting groove is formed on the top frame (1) corresponding to the mounting block (32). The first bolt (31) is movably arranged on the top frame (1). An activity groove is formed on the top frame (1) for the first bolt (31). A bolt groove is formed on the mounting block (32) corresponding to the end of the first bolt (31). The first reset member (33) is sleeved on the first bolt (31) and arranged in the activity groove. A lever (34) for moving the first bolt (31) is provided on the first bolt (31).

3. The reinforced large-capacity adjustable amorphous alloy core template according to claim 1, characterized in that: The adjusting assembly (4) includes a first adjusting plate (41), a second adjusting plate (42), and an adjusting member (43). There are two groups of the first adjusting plates (41) and the second adjusting plates (42). The two groups of the first adjusting plates (41) are arranged in parallel at intervals on the first side plate (22). The two groups of the second adjusting plates (42) are arranged in parallel at intervals on the second side plate (23). The two groups of the second adjusting plates (42) are arranged between the two groups of the first adjusting plates (41). The adjusting member (43) is arranged on the first adjusting plate (41) and the second adjusting plate (42) for fixedly connecting the adjusted first adjusting plate (41) and the second adjusting plate (42).

4. An enhanced large-capacity adjustable amorphous alloy iron core template according to claim 3, characterized in that: The adjusting member (43) includes a bolt (5) and a nut. Multiple groups of threaded holes are spaced apart on the first adjusting plate (41), the second adjusting plate (42), and the reinforcing rod (21) for the bolt (5). There are multiple groups of the bolts (5) and the nuts. Multiple groups of the bolts (5) are arranged in the threaded holes and extend out of the threaded holes to be fixedly connected to multiple groups of the nuts.

5. The enhanced large-capacity adjustable amorphous alloy core template according to claim 3, characterized in that: The adjusting member (43) includes a second pin (6), a connecting rod (61), and a second reset member (63). The first adjusting plate (41) and the second adjusting plate (42) are each provided with multiple groups of second pin (6) holes at intervals corresponding to the second pin (6). There are multiple groups of the second pins (6), and multiple groups of the second pins (6) are all arranged in the second pin (6) holes. Multiple groups of the second pins (6) are connected into a whole through the connecting rod (61). A moving groove is formed in the reinforcing rod (21) corresponding to the connecting rod (61) and the second pin (6). The second reset member (63) is arranged between the bottom of the moving groove and the second pin (6).

6. The enhanced large-capacity adjustable amorphous alloy iron core template according to claim 3, characterized in that: The adjusting member (43) includes a driving gear (7), a socket rod (71), and a rotating disk (72). The first adjusting plate (41) and the second adjusting plate (42) are each provided with multiple groups of socket holes at intervals corresponding to the socket rod (71). The socket rod (71) is arranged in the socket holes. The driving gear (7) is rotatably arranged in the reinforcing rod (21). A tooth pattern is formed on one surface of the socket rod (71) close to the driving gear (7), and the tooth pattern meshes with the driving gear (7). A connecting column (73) is arranged between the rotating disk (72) and the driving gear (7). One end of the connecting column (73) extends out of the reinforcing rod (21) to be connected with the rotating disk (72), and the other end is connected with the driving gear (7).

7. An enhanced large-capacity adjustable amorphous alloy iron core template according to claim 1, characterized in that: A reinforcing plate (8) is arranged between the side frame (2) and the top frame (1).

8. An enhanced large-capacity adjustable amorphous alloy iron core template according to claim 7, characterized in that: A reinforcing groove (9) is formed in the top frame (1), and a part of the reinforcing plate (8) is inserted into the reinforcing groove (9).