Iron core positioning clamp for cutting machine

By designing the iron core positioning clamp for cutting machines, and using the structure of adjustment screws and grips, the problem of inaccurate positioning of the iron core by traditional cutting machines is solved, and adaptive and precise positioning and cutting processing for iron cores of different specifications is achieved, and processing quality and efficiency are improved.

CN223084234UActive Publication Date: 2025-07-11NICORE ELECTRICAL MFR CO LTD
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Patent Information

Application Number
CN202421682042.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-07-11
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

It is difficult for traditional cutting machines to achieve accurate positioning of the iron core with good adaptability, especially for the iron core with various specifications and sizes.

Method used

A core positioning clamp for cutting machines is designed, including a support, a first fixing block, an adjustment plate and a positioning plate. By adjusting the adjustment hole structure connected by the screw, the precise adjustment and positioning of the core is achieved, and fine-tuned with the grip and pointer to ensure the adaptive positioning of the cores of different specifications.

Benefits of technology

Accurate positioning and cutting processing of the iron core is realized, adapting to iron cores of different specifications and sizes, and improving cutting quality and efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides an iron core positioning clamp for a cutting machine, and relates to the technical field of clamps, and the iron core positioning clamp is characterized by comprising a support, a first fixing block is arranged on the outer side of the front end of the support in the length direction, and a first adjusting plate is slidably arranged on the upper surface of the support in the width direction; a first positioning plate is arranged on the first adjusting plate; a first adjusting hole is formed in the first fixing block in the width direction of the support, a second adjusting hole is formed in the first adjusting plate in the width direction of the support, and the first adjusting hole and the second adjusting hole are the same in size and correspond in position. The first adjusting hole and the second adjusting hole are rotationally connected through a first adjusting screw. The iron core positioning clamp for the cutting machine, provided by the invention, has the advantage of realizing accurate positioning with good adaptability on the iron core during cutting processing.
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Description

Technical Field

[0001] This application relates to the technical field of jigs, and more particularly, to an iron core positioning jig for a cutting machine. Background Art

[0002] During the processing of an iron core cutting machine, it is necessary to repeatedly position the iron core to ensure that the processing quality of the iron core meets the requirements. However, the specifications and dimensions of iron cores vary widely, making it difficult for traditional cutting machines to achieve precise positioning with good adaptability for iron cores.

[0003] In view of the above problems, there is an urgent need for improvement. Summary of the Utility Model

[0004] The purpose of this application is to provide an iron core positioning jig for a cutting machine, which has the advantage of achieving precise positioning with good adaptability for the iron core during cutting processing.

[0005] This application provides an iron core positioning jig for a cutting machine, and the technical solution is as follows:

[0006] It includes a support. A first fixing block is arranged on the outer side of the front end of the support along the width direction. A first adjusting plate is slidably arranged on the upper surface of the support along the width direction, and a first positioning plate is arranged on the first adjusting plate.

[0007] The first fixing block is provided with a first adjusting hole along the width direction of the support. The first adjusting plate is provided with a second adjusting hole along the width direction of the support. The first adjusting hole and the second adjusting hole have the same size and corresponding positions, and the first adjusting hole and the second adjusting hole are rotatably connected by a first adjusting screw.

[0008] The iron core positioning fixture for a cutting machine provided by this application includes a support base, which is used to provide a basic supporting function and a mounting structure for other components. A first fixing block is arranged on the outer side of the front end of the support base in the width direction. A first adjusting plate is slidably arranged on the upper surface of the support base in the width direction. A first positioning plate is arranged on the first adjusting plate. Among them, the first fixing block is used to provide a mounting base for the components that play an adjusting role. The first positioning plate is used to position and place the iron core for cutting processing. The first adjusting plate is used to provide structural support and position adjustment for the first positioning plate, so as to facilitate accurate cutting processing of the iron core. The first fixing block is provided with a first adjusting hole along the width direction of the support base. The first adjusting plate is provided with a second adjusting hole along the width direction of the support base. The first adjusting hole and the second adjusting hole have the same size and corresponding positions. The first adjusting hole and the second adjusting hole are rotationally connected by a first adjusting screw. Through the above structure, the first adjusting hole and the second adjusting hole form a corresponding adjusting structure, providing a connection basis for the penetration and rotational adjustment of the first adjusting screw. By rotating the first adjusting screw, the first adjusting plate can be made to approach or move away from the first fixing block, thereby driving the first positioning plate to approach or move away from the first fixing block, realizing precise adjustment of the iron core cutting position. Especially for iron cores with different specifications and sizes, adaptive positioning placement and position adjustment can be realized, so as to realize cutting processing with good adaptability and precise positioning of the iron core.

[0009] Further, in this application, a holding portion is arranged at one end of the first adjusting screw that is outside the coverage of the first fixing block and away from the first adjusting plate. A pointer is arranged on the outer axial end face of the holding portion.

[0010] For the iron core positioning fixture for a cutting machine provided by this application, a holding portion is arranged at one end of the first adjusting screw that is outside the coverage of the first fixing block and away from the first adjusting plate. A pointer is arranged on the outer axial end face of the holding portion. Among them, the holding portion is used to facilitate the force application and adjustment of the first adjusting screw. The pointer is used to play a position display role and cooperate with the holding portion to realize fine adjustment of the first adjusting screw, so as to realize precise and fine position adjustment of the first positioning plate and the iron core placed on the first positioning plate, and thus facilitate the precise positioning processing of the iron core.

[0011] Further, in this application, patterns are arranged on the outer radial wall of the holding portion.

[0012] For the iron core positioning fixture for a cutting machine provided by this application, patterns are arranged on the outer radial wall of the holding portion, which is used to further make the holding portion have a convenient force application structure, so as to carry out convenient and accurate rotational adjustment of the holding portion, drive the first adjusting plate and the first positioning plate to realize precise position adjustment, and thus realize precise positioning and cutting processing of the iron core placed on the first positioning plate.

[0013] Further, in the present application, a positioning groove is provided on the upper surface of the first positioning plate along the length direction of the support.

[0014] The iron core positioning fixture for a cutting machine provided by the present application has a positioning groove provided on the upper surface of the first positioning plate along the length direction of the support, which is used to position and place the iron core. Among them, the positioning groove has a supporting effect on the iron core, that is, the outer wall of the radial direction of the iron core is placed against the positioning groove.

[0015] Further, in the present application, the number of the positioning grooves is multiple, and the multiple positioning grooves are arranged in sequence along the width direction of the support.

[0016] Further, in the present application, the width of the positioning groove gradually increases along the width direction of the support from the middle of the first positioning plate.

[0017] Further, in the present application, the cross-section of the positioning groove along the length direction of the support is an inverted T shape.

[0018] Further, in the present application, guiding strips are provided at the upper ends of both sides of the support along the length direction, and the first adjusting plate is located between the two guiding strips.

[0019] Further, in the present application, the height of the first adjusting plate is greater than the height of the guiding strip.

[0020] Further, in the present application, a first installation groove is provided on the first adjusting plate, and a first installation hole is provided on the first positioning plate. After the first installation hole and the first installation groove are correspondingly spliced, they are connected by a first installation bolt.

[0021] As described above, a core positioning fixture for a cutting machine provided by the present application includes a support, which provides a basic supporting function and a mounting structure for other components. A first fixing block is arranged on the outer side of the front end of the support in the width direction. A first adjusting plate is slidably arranged on the upper surface of the support in the width direction. A first positioning plate is arranged on the first adjusting plate. Among them, the first fixing block provides a mounting basis for the components that play an adjusting role. The first positioning plate is used to position and place the core for cutting processing. The first adjusting plate is used to provide structural support and position adjustment for the first positioning plate, thereby facilitating accurate cutting processing of the core. A first adjusting hole is opened in the first fixing block along the width direction of the support. A second adjusting hole is opened in the first adjusting plate along the width direction of the support. The first adjusting hole and the second adjusting hole have the same size and corresponding positions. The first adjusting hole and the second adjusting hole are rotationally connected by a first adjusting screw. Through the above structure, the first adjusting hole and the second adjusting hole form a corresponding adjusting structure, providing a connection basis for the insertion and rotational adjustment of the first adjusting screw. By rotating the first adjusting screw, the first adjusting plate can be moved closer to or farther away from the first fixing block, thereby driving the first positioning plate to move closer to or farther away from the first fixing block, realizing precise adjustment of the cutting position of the core. Especially for cores with different specifications and dimensions, adaptive positioning placement and position adjustment can be realized, so as to realize cutting processing after precise positioning with good adaptability to the core. A holding portion is arranged at one end of the first adjusting screw outside the coverage of the first fixing block and away from the first adjusting plate. A pointer is arranged on the outer end face of the axial direction of the holding portion. Among them, the holding portion is used to facilitate the exertion of force to adjust the first adjusting screw, and the pointer is used to play a position display role and cooperate with the holding portion to realize fine adjustment of the first adjusting screw, thereby realizing precise and subtle position adjustment of the first positioning plate and the core placed on the first positioning plate, and further facilitating precise positioning processing of the core. A pattern is arranged on the outer wall of the radial direction of the holding portion, which is used to further make the holding portion have a convenient force exerting structure, thereby realizing convenient and accurate rotational adjustment of the holding portion, driving the first adjusting plate and the first positioning plate to realize precise position adjustment, and further realizing precise positioning and cutting processing of the core placed on the first positioning plate. A positioning groove is opened on the upper surface of the first positioning plate along the length direction of the support, which is used to position and place the core. Among them, the positioning groove provides a supporting and placing effect for the core in a supporting manner, that is, the outer wall of the diameter of the core is placed in contact with the positioning groove.

[0022] Other features and advantages of the present application will be described in the subsequent specification, and part of them will become obvious from the specification, or can be understood by implementing the embodiments of the present application. The objectives and other advantages of the present application can be achieved and obtained through the structures specifically pointed out in the written specification and the drawings. Brief Description of the Drawings

[0023] Figure 1Schematic structural diagram of an iron core positioning fixture for a cutting machine provided by this application.

[0024] Figure 2 Schematic structural diagram of the iron core positioning fixture for a cutting machine provided by this application after removing the first positioning plate.

[0025] In the figure: 1, support; 2, first fixing block; 3, first adjusting plate; 4, first positioning plate; 5, first adjusting hole; 6, second adjusting hole; 7, first adjusting screw; 71, holding part; 72, pointer; 8, positioning groove; 9, guiding strip; 10, first installation groove; 11, first installation hole. Detailed implementation manners

[0026] Next, the technical solutions in this application will be clearly and completely described in conjunction with the accompanying drawings in this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. Usually, the components of this application described and shown in the accompanying drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely represents the selected embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative efforts belong to the scope of protection of this application.

[0027] It should be noted that: Similar reference numerals and letters indicate similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. At the same time, in the description of this application, the terms "first", "second", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.

[0028] Please refer to Figures 1 to 2 As shown, this application provides an iron core positioning fixture for a cutting machine, including a support 1. A first fixing block 2 is arranged on the outer side of the front end of the support 1 in the width direction. A first adjusting plate 3 is slidably arranged on the upper surface of the support 1 in the width direction. A first positioning plate 4 is arranged on the first adjusting plate 3. A first adjusting hole 5 is opened in the first fixing block 2 along the width direction of the support 1. A second adjusting hole 6 is opened in the first adjusting plate 3 along the width direction of the support 1. The first adjusting hole 5 and the second adjusting hole 6 have the same size and corresponding positions. The first adjusting hole 5 and the second adjusting hole 6 are rotationally connected by a first adjusting screw 7.

[0029] Specifically, during the processing of the core cutting machine, the core needs to be repeatedly positioned to ensure that the processing quality of the core meets the requirements. However, the specifications and sizes of the core are diverse, making it difficult for traditional cutting machines to achieve good adaptability and precise positioning of the core. Therefore, in order to solve the above problems, the core positioning fixture for the cutting machine provided in the present application includes a support 1, which is used to provide basic support and provide a mounting structure for other components. A first fixed block 2 is provided on the outer side of the front end of the support 1 along the width direction, and a first adjustment plate 3 is slidably provided on the upper surface of the support 1 along the width direction. A first positioning plate 4 is provided on the first adjustment plate 3, wherein the first fixed block 2 is used to provide a mounting basis for the components that play an adjusting role, and the first positioning plate 4 is used to position and place the core for cutting processing, and the first adjustment plate 3 is used to provide structural support and position adjustment for the first positioning plate 4, thereby facilitating accurate cutting of the core; the first fixed block 2 is provided with a first adjustment hole 5 along the width direction of the support 1, and the first A second adjustment hole 6 is opened on the adjustment plate 3 along the width direction of the support 1. The first adjustment hole 5 and the second adjustment hole 6 have the same size and corresponding positions. The first adjustment hole 5 and the second adjustment hole 6 are rotatably connected by a first adjusting screw 7. Through the above structure, the first adjustment hole 5 and the second adjustment hole 6 form a corresponding adjustment structure, which provides a connection basis for the penetration-type rotation adjustment of the first adjusting screw 7. By rotating the first adjusting screw 7, the first adjustment plate 3 can be moved closer to or away from the first fixed block 2, thereby driving the first positioning plate 4 to move closer to or away from the first fixed block 2, thereby realizing precise adjustment of the iron core cutting position, especially for iron cores of different specifications and sizes, adaptive positioning placement and position adjustment can be realized, thereby realizing the cutting processing of the iron core after precise positioning with good adaptability.

[0030] In some preferred embodiments, a gripping portion 71 is provided at one end of the first adjusting screw 7 which is outside the coverage of the first fixing block 2 and away from the first adjusting plate 3 , and a pointer 72 is provided on the axial outer end surface of the gripping portion 71 .

[0031] Specifically, a holding portion 71 is provided at one end of the first adjusting screw 7 which is outside the coverage of the first fixed block 2 and away from the first adjusting plate 3, and a pointer 72 is provided on the axial outer end face of the holding portion 71, wherein the holding portion 71 is used to facilitate the force adjustment of the first adjusting screw 7, and the pointer 72 is used to display the position and cooperate with the holding portion 71 to achieve fine adjustment of the first adjusting screw 7, thereby achieving precise and subtle position adjustment of the first positioning plate 4 and the iron core placed on the first positioning plate 4, thereby facilitating precise positioning processing of the iron core.

[0032] In some preferred embodiments, the radial outer wall of the gripping portion 71 is provided with a pattern.

[0033] Specifically, the radially outer wall of the holding portion 71 is provided with patterns, which are used to further enable the holding portion 71 to have a convenient force application structure, so as to perform convenient and accurate rotational adjustment on the holding portion 71, drive the first adjustment plate 3 and the first positioning plate 4 to achieve precise position adjustment, and further achieve precise positioning and cutting processing of the iron core placed on the first positioning plate 4.

[0034] In some preferred embodiments, a positioning groove 8 is formed on the upper surface of the first positioning plate 4 along the length direction of the support 1.

[0035] Specifically, a positioning groove 8 is formed on the upper surface of the first positioning plate 4 along the length direction of the support 1, which is used to position and place the iron core. Among them, the positioning groove 8 provides a supporting placement effect on the iron core, that is, the radially outer wall of the iron core abuts and is placed on the positioning groove 8.

[0036] In some preferred embodiments, the number of the positioning grooves 8 is multiple, and the multiple positioning grooves 8 are arranged in sequence along the width direction of the support 1.

[0037] Specifically, the number of the positioning grooves 8 is multiple, and the multiple positioning grooves 8 are arranged in sequence along the width direction of the support 1. Through the above structure, multiple iron cores can be positioned and placed simultaneously, thus ensuring the continuity and high efficiency of the cutting process.

[0038] In some preferred embodiments, the width of the positioning groove 8 gradually increases along the width direction of the support 1 from the middle of the first positioning plate 4.

[0039] Specifically, the width of the positioning groove 8 gradually increases along the width direction of the support 1 from the middle of the first positioning plate 4, which is used to conveniently adapt to iron cores of different specifications. Through the positioning grooves 8 with different widths, corresponding supporting and positioning placements are carried out on iron cores of different specifications, so as to facilitate the precise cutting process of the iron cores.

[0040] In some preferred embodiments, the cross-section of the positioning groove 8 along the length direction of the support 1 is an inverted T shape.

[0041] Specifically, the cross-section of the positioning groove 8 along the length direction of the support 1 is an inverted T shape, which is used to conveniently discharge iron filings on the basis of positioning and placing the iron core. That is, during the cutting process of the iron core, a lot of iron filings will be generated. By setting the cross-section of the positioning groove 8 along the length direction of the support 1 as an inverted T shape, it is possible to prevent the iron filings from accumulating concentratedly at the positioning groove 8, especially preventing the iron filings from accumulating at the area where the iron core is positioned and placed, and ensuring the cutting quality of the iron core.

[0042] In some preferred embodiments, guide strips 9 are provided at the upper ends of both sides of the support 1 along the length direction, and the first adjustment plate 3 is located between the two guide strips 9.

[0043] Specifically, in order to make the position adjustment of the first adjusting plate 3 more accurate and prevent the first adjusting plate 3 from shifting in a non-adjustment direction, in this embodiment, guide bars 9 are provided at the upper ends of both sides of the support 1 along the length direction. The first adjusting plate 3 is located between the two guide bars 9. Through the setting of the above structure, when the first adjusting plate 3 moves along the adjustment direction, the two guide bars 9 play a guiding role for the first adjusting plate 3 moving along the adjustment direction, and at the same time play a limiting role for the first adjusting plate 3 in the non-adjustment direction, preventing the first adjusting plate 3 from shifting in the non-adjustment direction, thereby ensuring the accuracy of the first adjusting plate 3 moving in the adjustment direction, that is, ensuring the accuracy of the position adjustment of the first adjusting plate 3.

[0044] In some preferred embodiments, the height of the first adjusting plate 3 is greater than the height of the guide bar 9.

[0045] Specifically, in order to ensure the smooth movement of the first adjusting plate 3 and at the same time facilitate observing the specific position of the first adjusting plate 3, in this embodiment, the height of the first adjusting plate 3 is greater than the height of the guide bar 9, thereby realizing the guiding effect of the guide bar 9 on the first adjusting plate 3 in the adjustment direction, and at the same time avoiding hindering the observation of the position of the first adjusting plate 3.

[0046] In some preferred embodiments, a first installation groove 10 is provided on the first adjusting plate 3, and a first installation hole 11 is provided on the first positioning plate 4. After the first installation hole 11 and the first installation groove 10 are correspondingly spliced, they are connected by a first installation bolt.

[0047] Specifically, a first installation groove 10 is provided on the first adjusting plate 3, and a first installation hole 11 is provided on the first positioning plate 4. After the first installation hole 11 and the first installation groove 10 are correspondingly spliced, they are connected by a first installation bolt. Among them, by correspondingly adjusting the relative positions of the first installation hole 11 and the first installation groove 10, the position adjustment and installation of the first positioning plate 4 are realized, thereby facilitating the subsequent positioning placement and cutting processing of the iron core.

[0048] Through the above technical solution, the iron core positioning fixture for a cutting machine provided by the present application includes a support 1, which is used to provide a basic supporting function and a mounting structure for other components. A first fixing block 2 is arranged on the outer side of the front end of the support 1 in the width direction. A first adjusting plate 3 is slidably arranged on the upper surface of the support 1 in the width direction. A first positioning plate 4 is arranged on the first adjusting plate 3. Among them, the first fixing block 2 is used to provide a mounting basis for the components that play an adjusting role. The first positioning plate 4 is used to position and place the iron core for cutting processing. The first adjusting plate 3 is used to provide structural support and position adjustment for the first positioning plate 4, so as to facilitate accurate cutting processing of the iron core. A first adjusting hole 5 is formed in the first fixing block 2 along the width direction of the support 1. A second adjusting hole 6 is formed in the first adjusting plate 3 along the width direction of the support 1. The first adjusting hole 5 and the second adjusting hole 6 have the same size and corresponding positions. The first adjusting hole 5 and the second adjusting hole 6 are rotationally connected by a first adjusting screw 7. Through the above structure, the first adjusting hole 5 and the second adjusting hole 6 form a corresponding adjusting structure, providing a connection basis for the penetrating rotation adjustment of the first adjusting screw 7. By rotating the first adjusting screw 7, the first adjusting plate 3 can be moved closer to or farther away from the first fixing block 2, thereby driving the first positioning plate 4 to move closer to or farther away from the first fixing block 2, realizing precise adjustment of the iron core cutting position. Especially for iron cores with different specifications and sizes, adaptive positioning placement and position adjustment can be realized, so as to realize cutting processing after precise positioning with good adaptability for the iron core. A holding part 71 is arranged at one end of the first adjusting screw 7 outside the coverage of the first fixing block 2 and away from the first adjusting plate 3. A pointer 72 is arranged on the axial outer end face of the holding part 71. Among them, the holding part 71 is used to facilitate the force application and adjustment of the first adjusting screw 7. The pointer 72 is used to play a role of position display, and at the same time cooperate with the holding part 71 to realize fine adjustment of the first adjusting screw 7, so as to realize precise and fine position adjustment of the first positioning plate 4 and the iron core placed on the first positioning plate 4, and thus facilitate the precise positioning processing of the iron core. The outer wall of the radial direction of the holding part 71 is provided with patterns, which are used to further make the holding part 71 have a convenient force application structure, so as to carry out convenient and accurate rotational adjustment of the holding part 71, drive the first adjusting plate 3 and the first positioning plate 4 to realize precise position adjustment, and thus realize precise positioning and cutting processing of the iron core placed on the first positioning plate 4. A positioning groove 8 is formed in the upper surface of the first positioning plate 4 along the length direction of the support 1, which is used to position and place the iron core. Among them, the positioning groove 8 has a supporting and placing effect on the iron core, that is, the outer wall of the radial direction of the iron core is abutted and placed on the positioning groove 8.

[0049] The above are only examples of the present application and are not intended to limit the protection scope of the present application. For those skilled in the art, various modifications and changes can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included within the protection scope of the present application.

Claims

1. A core positioning fixture for a cutting machine, characterized in that It includes a support (1). A first fixing block (2) is arranged on the outer side of the front end of the support (1) in the width direction. A first adjusting plate (3) is slidably arranged on the upper surface of the support (1) in the width direction. A first positioning plate (4) is arranged on the first adjusting plate (3). A first adjusting hole (5) is formed in the first fixing block (2) in the width direction of the support (1). A second adjusting hole (6) is formed in the first adjusting plate (3) in the width direction of the support (1). The first adjusting hole (5) and the second adjusting hole (6) have the same size and corresponding positions. The first adjusting hole (5) and the second adjusting hole (6) are rotationally connected by a first adjusting screw (7).

2. The iron core positioning fixture for a cutting machine according to claim 1, characterized in that, A holding part (71) is arranged at one end of the first adjusting screw (7) outside the coverage of the first fixing block (2) and away from the first adjusting plate (3). A pointer (72) is arranged on the outer end face of the axial direction of the holding part (71).

3. The iron core positioning fixture for a cutting machine according to claim 2, characterized in that, Patterns are arranged on the outer wall of the radial direction of the holding part (71).

4. The iron core positioning fixture for a cutting machine according to claim 1, characterized in that, A positioning groove (8) is formed in the upper surface of the first positioning plate (4) in the length direction of the support (1).

5. The core positioning fixture for a cutting machine according to claim 4, characterized in that, The number of the positioning grooves (8) is multiple. The multiple positioning grooves (8) are arranged in sequence in the width direction of the support (1).

6. The iron core positioning fixture for a cutting machine according to claim 4, characterized in that The width of the positioning groove (8) gradually increases from the middle of the first positioning plate (4) in the width direction of the support (1).

7. The core positioning fixture for a cutting machine according to claim 4, characterized in that, The cross-section of the positioning groove (8) in the width direction of the support (1) is an inverted T shape.

8. The core positioning fixture for a cutting machine according to claim 1, characterized in that, Guide bars (9) are arranged at the upper ends of both sides of the support (1) in the length direction. The first adjusting plate (3) is located between the two guide bars (9).

9. The iron core positioning fixture for a cutting machine according to claim 8, wherein, The height of the first adjusting plate (3) is greater than the height of the guide bar (9).

10. The iron core positioning fixture for a cutting machine according to claim 1, characterized in that, A first installation groove (10) is arranged on the first adjusting plate (3). A first installation hole (11) is arranged on the first positioning plate (4). After the first installation hole (11) and the first installation groove (10) are correspondingly spliced, they are connected by a first installation bolt.