Small flexible lamination table
By designing a small, flexible stacking stage and adopting structures such as guide rails and adjustable set screws, the problem of poor adaptability of traditional stacking stages has been solved, stacking efficiency and accuracy have been improved, and human error and maintenance costs have been reduced.
Patent Information
- Application Number
- CN202422942805.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-29
AI Technical Summary
Traditional stacking tables have a simple structure but lack flexibility, making it difficult to adapt to silicon steel sheets of different specifications and sizes. This results in low operating efficiency, large human error, high maintenance costs, and affects the quality and accuracy of stacking.
Design a small flexible stacking table with fixed connection of horizontal and vertical beams, equipped with vertical and horizontal guide rails, and set with upper yoke guide rail slide, iron yoke slider and core column support slide. The position and height can be adjusted by adjustable set screws and fasteners to adapt to stacking operations of different specifications and sizes.
It improves the efficiency and quality of wafer stacking operations, ensures the accuracy and consistency of wafer stacking, reduces human error, enhances the versatility and ease of upgrading of the equipment, and reduces maintenance costs.
Smart Images

Figure CN223527006U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of power transformer core production, specifically relates to a small -size flexible lamination table. BACKGROUND
[0002] In the manufacturing process of electrical equipment, lamination operation is a crucial link, especially in the manufacturing of transformer and inductor and other equipment, the quality and precision of lamination directly affect the performance and reliability of the final product. The traditional lamination operation usually relies on fixed lamination table to complete, and the structure of this lamination table is relatively simple, but the function is single, and lacks flexibility.
[0003] The traditional lamination table is usually composed of fixed frame and support structure, and the silicon steel sheet needs to be manually adjusted in position and angle during stacking to adapt to the structure of the lamination table. However, since different specifications and sizes of iron sheets have different shapes and sizes, the fixed lamination table is generally difficult to meet the stacking needs of different iron sheets. In actual operation, the operator needs to spend a lot of time and effort to adjust the position and angle of the iron sheet, which not only reduces the operation efficiency, but also increases the risk of human error.
[0004] In addition, the traditional lamination table often needs to be modified or adjusted when adapting to different sizes of iron sheets, which not only increases the complexity of the equipment, but also increases the maintenance cost of the equipment. At the same time, due to the inaccuracy in the process of modification and adjustment, the quality and precision of lamination are further affected. SUMMARY
[0005] The utility model aims at: propose a kind of small -size flexible lamination table, this technical solution improves the flexibility of lamination table structure, improves the efficiency and quality of lamination operation.
[0006] To achieve the above object, the disclosed embodiment provides a small -size flexible lamination table, which comprises a crossbeam and a vertical beam, the crossbeam and the vertical beam are fixedly connected as the frame of the lamination table, the vertical beam is fixedly connected with vertical guide rails, and a plurality of through holes are arranged on the vertical guide rails, the upper yoke guide rail slide is arranged on the vertical guide rail, the upper yoke guide rail slide is arranged between the two vertical beams and parallel to the crossbeam, the crossbeam is provided with horizontal guide rails, the upper yoke guide rail slide and the horizontal guide rails are provided with iron yoke sliding blocks, and adjustable top wires are arranged on the iron yoke sliding blocks;Core column support slide is further arranged on the vertical guide rail, and the core column support slide is arranged between the two vertical beams and parallel to the crossbeam.
[0007] The beneficial effects of the basic scheme: through the fixed connection of the cross beam and the vertical beam, a stable frame of the lamination table is formed, providing a solid foundation for the entire device and ensuring the stability and accuracy of the lamination operation. The setting of vertical guide rails and horizontal guide rails, as well as the matching upper yoke guide rail slide and iron yoke slide block, makes the entire lamination table have great flexibility in vertical and horizontal directions, and can adjust the position and height according to actual needs to adapt to lamination operations of different specifications and sizes.
[0008] The iron yoke slide block can be accurately fixed at the desired position and can be flexibly adjusted in height through the adjustable jack, thereby ensuring the accuracy and consistency of the lamination and improving the quality and reliability of the product. The setting of the core column support slide block provides convenience for the core column support that may be needed during lamination, enhancing the multifunctionality of the device. The modular design of the vertical guide rails and horizontal guide rails, as well as the universality of components such as adjustable jacks, make the lamination table easy to functionally expand and upgrade to adapt to new lamination needs that may arise.
[0009] As a preferred implementation, a plurality of through holes are provided on the vertical beam to adjust the position of the upper yoke guide rail slide on the vertical guide rail, and the upper yoke guide rail slide can be fixed through the cooperation of the first fastener and the through hole; the position of the core column support slide on the vertical guide rail is adjusted, and the core column support slide can be fixed through the cooperation of the second fastener and the through hole.
[0010] As a preferred implementation, a core column auxiliary clamp seat is provided on the core column support slide to support the iron core column during lamination.
[0011] As a preferred implementation, a steel ruler is provided on the side surface of the vertical beam to measure the distance between components on the vertical guide rail.
[0012] As a preferred implementation, support beams are fixedly connected to the lower ends of the vertical beams as support structures of the lamination table.
[0013] As a preferred implementation, a channel steel vertical bar is fixedly connected between the two support beams of the vertical beam.
[0014] As a preferred implementation, a rubber-coated foot cup is fixedly connected to the bottom of the support beam.
[0015] As a preferred implementation, a storage box is provided on the lamination table, and the storage box is arranged below the cross beam or the vertical beam.
[0016] As a preferred implementation, a cross bar steel piece is fixedly connected between the two vertical beams.
[0017] As a preferred implementation, a plurality of rubber rollers are provided between the corresponding cross bar steel pieces of each group of vertical beams, and the rubber rollers are parallel to the cross bar steel pieces. Attached Figure Description
[0018] Fig. 1 This is a schematic diagram of a small flexible stacking stage.
[0019] Fig. 2 This is a front view of a small flexible stacking stage.
[0020] Fig. 3 This is a left view of a small flexible stacking stage.
[0021] Fig. 4 This is a top view of a small flexible stacking stage. Detailed Implementation
[0022] To make the technical solution and advantages of this application clearer, the technical solution of this utility model will be further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only some embodiments of this utility model, and are only used to explain this application, not to limit it. It should be noted that the technical features or combinations of technical features described in the following embodiments should not be considered isolated; they can be combined with each other to achieve better technical effects. The same reference numerals appearing in the accompanying drawings of the following embodiments represent the same features or components, and can be applied to different embodiments.
[0023] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "set" and "connection" should be interpreted broadly. For example, it can be a fixed connection, a detachable connection, or an integrated connection; it can be a mechanical connection (including various forms of mechanical connection, such as couplings or gear pairs) or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0024] Furthermore, unless otherwise defined, the technical or scientific terms used in this description shall have the ordinary meaning as understood by one of ordinary skill in the art to which this invention pertains.
[0025] The present invention will now be described in further detail with reference to the accompanying drawings:
[0026] Attached reference numerals: 1. Horizontal beam; 2. Vertical beam; 3. Support beam; 4. Rubber-coated foot cup; 5. Channel steel vertical bar; 6. Vertical guide rail; 7. Upper yoke guide rail slide; 8. Through hole; 9. Horizontal guide rail; 10. Iron yoke slider; 11. Adjustable set screw; 12. Horizontal bar steel part; 13. Rubber roller; 14. Core column support slide; 15. Storage box; 16. Steel ruler.
[0027] Reference Figs. 1 to 4A small flexible laminating table, comprising a crossbeam 1 and a vertical beam 2, which are fixedly connected as the frame of the laminating table, and in the embodiment, the crossbeam 1 and the vertical beam 2 are preferably rectangular tubes.
[0028] The lower ends of the vertical beams 2 are fixedly connected with support beams 3, which are used as the support structure of the laminating table to bear the weight of the whole platform, and in the embodiment, the support beams 3 are preferably channel steel legs.
[0029] The two support beams 3 of each vertical beam 2 are fixedly connected with channel steel verticals 5, which are used to increase the vertical stability of the laminating table and provide space for storing and arranging tools or components.
[0030] The vertical beams 2 are fixedly connected with vertical guide rails 6, and the vertical guide rails 6 are provided with upper yoke guide rail slides 7, which are arranged between the two vertical beams 2 and parallel to the crossbeam 1. The vertical beams 2 are also provided with a plurality of through holes 8 to adjust the position of the upper yoke guide rail slides 7 on the vertical guide rails 6, and the upper yoke guide rail slides 7 are fixed by cooperating with the through holes 8 through first fasteners, and in the embodiment, the first fasteners are fixed spring pins.
[0031] The upper yoke guide rail slides 7 and the crossbeam 1 are both provided with horizontal guide rails 9, which are used to support and guide the movement of sliding components such as iron yoke sliding blocks 10 in the horizontal direction. The iron yoke sliding blocks 10 are provided with adjustable jacks 11, which can adjust the height.
[0032] The two vertical beams 2 are also fixedly connected with horizontal steel members 12, which are used to strengthen the stability of the laminating table frame and provide space for storing and arranging tools or components. A plurality of rubber rollers 13 are also provided between each group (one group corresponds to two channel steel verticals 5) of channel steel verticals 5, which are parallel to the channel steel verticals 5 and used to store clamping members during lamination, and facilitate picking up and assembling after lamination.
[0033] The vertical guide rails 6 are also provided with core column support slides 14, which are arranged between the two vertical beams 2 and parallel to the crossbeam 1, and the position of the core column support slides 14 on the vertical guide rails 6 (between the crossbeam 1 and the upper yoke guide rail slides 7) can be adjusted, and the core column support slides 14 are fixed by cooperating with the through holes 8 through second fasteners, and in the embodiment, the second fasteners are bolts.
[0034] The core column support slides 14 are also provided with core column auxiliary clamping member card holders, which are used to support the iron core column during lamination.
[0035] By adjusting the positions of the vertical guide rails 6, the horizontal guide rails 9, the iron yoke sliding blocks 10, and the core column auxiliary clamping member card holders, the laminating table can be adapted to different sizes and shapes of iron sheets, improving the versatility of the laminating table.
[0036] The laminating table is also provided with a storage box 15, which is arranged below the cross beam 1 or the vertical beam 2.
[0037] The side surface of the vertical beam 2 is inlaid with a steel ruler 16, which is used for measuring the distance between components on the vertical guide rail 6.
[0038] Different colors are sprayed on different parts of the laminating table to distinguish the functions. In this embodiment, RAL6011 color is sprayed on the whole table body, yellow color is sprayed on the sliding parts, and blue color is sprayed on the tool placing part.
[0039] The above is only an embodiment of the present application, and the common knowledge of specific structures and characteristics in the scheme is not described in detail, the ordinary skilled in the art knows all the ordinary technical knowledge in the technical field of the present application before the filing date or the priority date, can know all the prior art in the field and has the ability to apply the conventional experimental means before the date, the ordinary skilled in the art can improve and implement the present scheme under the inspiration of the present application combined with their own ability, some typical known structures or known methods should not be an obstacle for the ordinary skilled in the art to implement the present application. It should be pointed out that, for those skilled in the art, without departing from the structure of the present application, a number of modifications and improvements can be made, which should also be considered as the protection scope of the present application, which will not affect the effect and practicality of the present application. The protection scope of the present application should be subject to the content of its claims, and the specific implementation mode and the like in the specification can be used to explain the content of the claims.
Claims
1. A compact flexible lamination station characterized by: The frame of the laminating table comprises cross beams and vertical beams which are fixedly connected between the cross beams; vertical guide rails are fixedly connected to the vertical beams and are provided with through holes; an upper yoke guide rail sliding seat is arranged on the vertical guide rails and is arranged between the two vertical beams and parallel to the cross beams; horizontal guide rails are arranged on the cross beams; iron yoke sliding blocks are arranged on the upper yoke guide rail sliding seat and the horizontal guide rails; and adjustable jacks are arranged on the iron yoke sliding blocks; core column support sliding seats are further arranged on the vertical guide rails and are arranged between the two vertical beams and parallel to the cross beams.
2. A compact flexible lamination station according to claim 1, characterized in that: The vertical beams are further provided with through holes; the position of the upper yoke guide rail sliding seat on the vertical guide rails is adjusted; the upper yoke guide rail sliding seat is fixed by cooperation of the first fasteners and the through holes; the position of the core column support sliding seat on the vertical guide rails is adjusted; and the core column support sliding seat is fixed by cooperation of the second fasteners and the through holes.
3. A compact flexible lamination station according to claim 2, characterized in that: The core column support sliding seat is further provided with core column auxiliary clamping piece clamping seats for supporting the core columns during lamination.
4. A compact flexible lamination station according to claim 3, characterized in that: Steel rulers are arranged on the side surfaces of the vertical beams for measuring the distance between the components on the vertical guide rails.
5. A compact flexible lamination station according to any one of claims 1-4, characterized in that: Support beams are fixedly connected to the lower portions of the two ends of the vertical beams as support structures of the laminating table.
6. A compact flexible lamination station according to claim 5, characterized in that: Channel steel vertical bars are fixedly connected between the two support beams of the vertical beams.
7. A compact flexible lamination station according to claim 5, wherein: Rubber cups are fixedly connected to the bottoms of the support beams.
8. A compact flexible lamination station according to claim 1, wherein: The laminating table is further provided with a storage box which is arranged below the cross beams or the vertical beams.
9. A compact flexible lamination station according to claim 6, characterized in that: Horizontal steel pieces are further fixedly connected between the two vertical beams.
10. A compact flexible lamination station according to claim 9, characterized in that: A plurality of rubber rollers are further arranged between the horizontal steel pieces corresponding to each group of vertical beams and parallel to the horizontal steel pieces; and a plurality of rubber rollers are further arranged between each group of channel steel vertical bars and parallel to the channel steel vertical bars.