Book type set convenient to check and punching device and machining equipment thereof

By setting up an identification area and a verification area at the edge of the formula set page, and combining the identification code and the observation channel, static verification and self-checking of the formula set are realized. This solves the problems of low verification efficiency and high cost in the existing technology, improves verification efficiency and reduces equipment modification costs.

CN224224788UActive Publication Date: 2026-05-12BEIJING JINCHEN CVIC SECURITY PRINTING
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BEIJING JINCHEN CVIC SECURITY PRINTING
Filing Date
2025-04-07
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

The current page number order verification of the book set relies on manual inspection, which is inefficient and easily affected by human factors. Automated equipment is costly and has poor adaptability, making it difficult to meet the needs of efficient verification.

Method used

An identification area and a verification area are set at the edge of the collection page. The identification area contains an identification code, and the verification area has an observation channel. The combination of the identification area and the verification area realizes the static self-check function, reducing costs and improving verification efficiency.

Benefits of technology

The system implements a static self-check function for the set of expressions, which improves verification efficiency, reduces the financial pressure of equipment upgrades and renovations, avoids page errors and page reversals, and enhances the stability and consistency of verification.

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Abstract

The utility model discloses a book type set convenient to check and a punching device and processing equipment thereof, the book type set comprises n set pages with a preset arrangement sequence, n is greater than or equal to 3, the edge positions of the first to nth pieces of the set pages are provided with identification areas, and the edge positions of the first to (n-1) th pieces of the set pages are also provided with check areas; the identification area is provided with an identification code, and the verification area is provided with an observation channel for observing the identification code; the mth page of the set pages is provided with (n-m) check areas, (n-m) observation channels of the mth page of the set pages correspond to the identification codes of the (m + 1) th page to the nth page in a one-to-one mode, and n is larger than m; the sequential verification method comprises the following steps: verifying identification codes from the second page to the nth page of a set page through (n-1) observation channels of the first page of the set page; when the identification code is correctly displayed, determining that the collection page is qualified; and when the identification code is displayed wrongly, determining to adjust the target set page. The utility model relates to a native set, which can effectively improve the verification efficiency of the native set and reduce the verification cost.
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Description

Technical Field

[0001] This article deals with sets of expressions, and in particular with a set of expressions. Background Technology

[0002] This type of document collection typically employs sewing binding to secure multiple pages together, ensuring durability and anti-counterfeiting features for long-term use. If the collection contains important information, the correct page numbering order directly impacts the effective transmission and verification of that information. Disordered document order, missing page numbers, or duplicate page numbers can lead to information recognition failures and disrupt the normal workflow. Therefore, ensuring the accuracy of page numbering order is crucial during the production and use of this type of document collection.

[0003] The current verification of document collections mainly relies on manual inspection. Inspectors typically need to manually flip through the entire collection. To prevent such products from leaking out, manual inspection is usually used, with 100% self-inspection. After sewing each day, crew members perform self-inspection by checking the collating labels on each book. The collating labels are arranged in a trapezoidal shape, and only the top label is visible when the product is stationary. Employees need to unfold each product to check the collating labels, but this method is not easy to operate. Each product must be unfolded into a fan shape to observe the order of the collating labels, which is inefficient. Furthermore, manual operation inevitably leads to missed inspections. This method is not only time-consuming and labor-intensive, but also susceptible to human factors, leading to misjudgments or missed inspections. In addition, in scenarios involving the verification of large volumes of documents, manual operation cannot meet the needs of efficient processing, increasing the time cost and manpower input of the inspection work, and reducing the stability and consistency of the verification.

[0004] To improve verification effectiveness, some equipment is equipped with high-definition, high-speed cameras for alarm detection in each collating hopper during the sewing process. However, a mature detection system is very expensive, and due to the limited number of collating hoppers, a huge financial investment is required. Furthermore, because different organizations use different bookbinding specifications and binding processes, the adaptability and compatibility requirements of automated equipment are high, further increasing the implementation difficulty and financial investment.

[0005] In view of the current state of the technology, this utility model, after in-depth research, proposes a set of formulas and a method for verifying their order. Utility Model Content

[0006] In view of this, the main objective of this utility model is to provide a set of formulas and a method for verifying their order, in order to reduce verification costs.

[0007] To achieve the above objectives, as a first aspect of this utility model, a collection of n pages arranged in a preset order is provided. ,

[0008] The edges of the first to nth pages of the collection page are marked with identification areas, and the edges of the first to (n-1)th pages of the collection page are also marked with verification areas.

[0009] The identification area is equipped with an identification code, and the verification area has an observation channel for observing the identification code;

[0010] The m-th page of the collection page has nm verification areas, and the nm observation channels of the m-th page correspond one-to-one with the identification codes of the (m+1)-th to n-th pages. .

[0011] The combination of the identifier area and the verification area is configured to support the static verification and self-checking function of the formula set.

[0012] In some implementations, the identification code is Arabic numerals, letters, Chinese characters, or graphics;

[0013] And / or,

[0014] The observation channel is configured as a hole or a notch;

[0015] And / or,

[0016] The identification area and the verification area are located at any of the following positions: the side, top, or bottom edge of the formula set;

[0017] And / or,

[0018] The identification area includes a first color block, and the identification code is set in the first color block.

[0019] The verification area includes a second color block, and the observation channel is located within the second color block.

[0020] The color of the first color block is different from the color of the second color block;

[0021] And / or,

[0022] The area of ​​the identification area is equal to or greater than that of the verification area, and the area of ​​the observation channel is smaller than that of the verification area.

[0023] In some implementations, the markings are placed on the side, top, or bottom edges to facilitate the die-cutting of the verification marks when the edges are cut off after processing.

[0024] In some embodiments, the marking area is square, circular, semi-circular, conical, or triangular;

[0025] And / or,

[0026] The verification area can be square, circular, semi-circular, conical, or triangular.

[0027] And / or,

[0028] The observation channel can be semi-circular, circular, square, triangular, or conical.

[0029] The aforementioned semicircle refers to a non-circle, including large semicircles that extend beyond half the area of ​​a circle, as well as small semicircles that do not extend beyond half the area of ​​a circle.

[0030] In some implementations, the marking area is rectangular, the verification area is rectangular, and the observation channel is a small semicircle or half a circle;

[0031] And / or,

[0032] The main text printing color of the collection page includes the color of the first color block or the color of the second color block.

[0033] Choosing a small semicircle or half circle will prevent small hooks from forming at the observation channel, resulting in a smoother edge.

[0034] In some implementations, the identifier is an Arabic numeral, and the identifier of the m-th page of the collection is the Arabic numeral m;

[0035] The observation channel is designed with a notch;

[0036] The identification area and the verification area are set at any of the following locations: the side, top, or bottom edge of the formula set;

[0037] The identification area includes a first color block, and the identification code is set in the first color block.

[0038] The verification area includes a second color block, and the observation channel is located within the second color block.

[0039] The identifier code is set to the third color block.

[0040] The first color block of the identification area in the first to nth images uses a different color.

[0041] The second color block of the verification area in sheets 2 through n uses a different color.

[0042] The second color block of the last verification area of ​​the first image is the same color as the color of the identifier area of ​​the nth image, and so on. The second color block of each verification area of ​​the collection page is set to the same color as the identifier area corresponding to the observation channel within the verification area.

[0043] The third color is different from the color of the first color block, and the third color is different from the color of the second color block.

[0044] In some embodiments, the identification area includes a first color block, and the identification code is disposed within the first color block.

[0045] The verification area includes a second color block, and the observation channel is located within the second color block.

[0046] The first color block is a blue block, and the second color block is a yellow block or a brown block;

[0047] The first color block and the second color block are rectangular, and the size of both the first color block and the second color block is set to 14mm. The first color block and the second color block are evenly distributed along the long side of the color block, with a spacing of 10 mm between adjacent color blocks. The observation channel is a semi-circular notch in the second color block with a diameter of 10 mm. The edge of the observation channel is 2 mm away from the short edge of the verification area. The semi-circular notch is made by a hollow drill bit.

[0048] In some implementations, the set of these forms includes certificates, securities, and anti-counterfeiting labels.

[0049] This utility model also provides a set of formulas, comprising n pages arranged in a preset order. Its characteristics are,

[0050] The edges of the first to nth pages of the collection page are marked with identification areas, and the edges of the first to (n-1)th pages of the collection page are also marked with verification areas.

[0051] The marking area has a color, and the verification area has an observation channel for observing the color of the marking area;

[0052] The m-th page of the collection page has nm verification areas, and the nm observation channels of the m-th page correspond one-to-one with the identification areas of the (m+1)-th to n-th pages. .

[0053] This setup allows you to identify whether a page is wrong, missing, or reversed simply by checking if the color of the identification area matches the color of the verification area.

[0054] This utility model also provides a punching device for die-cutting or punching the observation channel of the above-mentioned set of formulas.

[0055] This utility model also provides a processing device for the above-mentioned collection of formulas, which is used for processing the above-mentioned collection of formulas, or includes the above-mentioned punching device.

[0056] Compared with related technologies, the formula set in this utility model can achieve static self-checking function through the combination of the identification area and the verification area of ​​the formula set, and the cost is low. On the one hand, it can greatly improve the verification efficiency. Through the first set page and the multiple observation channels opened on the first set page, the sequential verification of all set pages can be completed directly, effectively improving the verification process of checking the page number sequence page by page using the fan-shaped unfolding method in the prior art. On the other hand, it can effectively reduce the cost investment and avoid the financial pressure brought by equipment upgrades and modifications. For equipment using sewing machine sets, due to the change in self-checking method, the production efficiency of the sewing machine set is greatly improved under 100% self-checking conditions. Applying the formula set and its sequential verification method provided by this utility model can effectively prevent formula sets with misplaced or reversed pages from entering the hands of customers, which has significant beneficial technical effects.

[0057] Other features and advantages of this invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. Other advantages of this invention can be realized and obtained by means of the solutions described in the description and the accompanying drawings. Attached Figure Description

[0058] The accompanying drawings are used to provide an understanding of the technical solution of this utility model and constitute a part of the specification. They are used to explain the technical solution of this utility model and do not constitute a limitation on the technical solution of this utility model.

[0059] Figure 1 This is a schematic diagram of the formula set in Embodiment 1 of this utility model;

[0060] Figure 2 This is a schematic diagram of the first assembly page in Embodiment 1 of this utility model;

[0061] Figure 3 This is a schematic diagram of the second assembly page in Embodiment 1 of this utility model;

[0062] Figure 4 This is a schematic diagram of the last page in Embodiment 1 of this utility model;

[0063] Figure 5 These are the third and fourth pages of the misaligned page diagram in Embodiment 2 of this utility model;

[0064] Figure 6 This is the third reverse page diagram in Embodiment 2 of this utility model.

[0065] Illustration:

[0066] 1-Identification area, 2-Verification area, 3-Observation channel, 4-Identification code, 5-Sewing thread. Detailed Implementation

[0067] This utility model describes several embodiments, but these descriptions are exemplary and not limiting, and it will be apparent to those skilled in the art that many more embodiments and implementations are possible within the scope of the embodiments described herein. Although many possible combinations of features are shown in the drawings and discussed in the detailed description, many other combinations of the disclosed features are also possible. Unless specifically limited, any feature or element of any embodiment may be used in combination with, or may replace, any feature or element of any other embodiment.

[0068] This utility model includes and contemplates combinations with features and elements known to those skilled in the art. The embodiments, features, and elements disclosed in this utility model can also be combined with any conventional features or elements to form a unique utility model as defined by the claims. Any feature or element of any embodiment can also be combined with features or elements from other utility model solutions to form another unique utility model as defined by the claims. Therefore, it should be understood that any feature shown and / or discussed in this utility model can be implemented individually or in any suitable combination. Therefore, the embodiments are not limited except by the limitations imposed by the appended claims and their equivalents. Furthermore, various modifications and changes can be made within the scope of the appended claims.

[0069] Furthermore, in describing representative embodiments, the specification may have presented the method and / or process as a specific sequence of steps. However, the method or process should not be limited to the specific order of steps described herein, to the extent that it does not depend on such a specific order. As will be understood by those skilled in the art, other sequences of steps are also possible. Therefore, the specific order of steps set forth in the specification should not be construed as a limitation of the claims. Moreover, the claims relating to the method and / or process should not be limited to the steps performed in the order written, and those skilled in the art will readily understand that these orders can be varied and still remain within the spirit and scope of the embodiments of this utility model.

[0070] In view of the current state of the technology, this utility model, through in-depth research, innovatively proposes a set of forms, comprising n pages arranged in a preset order. Each page from page 1 to page n has an identification area at its edge, and each page from page 1 to page (n-1) also has a verification area at its edge. The identification areas contain identification codes, and the verification areas have observation channels for viewing these codes. Page m has nm verification areas, and the nm observation channels of page m correspond one-to-one with the identification codes of pages (m+1) to n. The combination of the identifier area and the verification area is configured to support the static verification and self-checking function of the formula set.

[0071] The technical solution proposed in this utility model can realize the static verification and self-checking function of the formula set by combining the identification area and the verification area of ​​the formula set, and the cost is low. On the one hand, it can greatly improve the verification efficiency. By using the first set page and the multiple observation channels opened on the first set page, the sequential verification of all set pages can be completed directly, which effectively improves the verification process of checking the page number order page by page in the existing technology by using a fan-shaped unfolding method. On the other hand, it can effectively reduce the cost investment and avoid the financial pressure brought about by equipment upgrades and renovations.

[0072] Example 1

[0073] Combination Figures 1-4 As shown, the set of this embodiment includes 6 sets of pages with a preset arrangement order. The edges of the 1st to 6th pages of the set are provided with an identification area 1, and the edges of the 1st to 5th pages of the set are also provided with a verification area 2. The identification area is provided with an identification code, and the verification area is provided with an observation channel 3 for observing the identification code.

[0074] like Figure 1 As shown, the set of six pages can directly realize the static verification and self-checking function of the set of formulas through the combination of the identification area and the verification area. On the one hand, it can greatly improve the verification efficiency. Through the first page and the five observation channels opened on the first page, the sequential verification of all pages can be completed directly, which effectively improves the verification process of checking the page number order page by page in the existing technology using the fan-shaped unfolding method. On the other hand, it can effectively reduce the cost investment and avoid the financial pressure brought about by equipment upgrades and modifications.

[0075] like Figure 2 As shown, the first page of the collection page has one identification area 1 and five verification areas 2. The observation channels 3 of these five verification areas 2 correspond one-to-one with the identification codes of the second to sixth pages.

[0076] like Figure 3 As shown, the second page of the collection page has one identification area and four verification areas. The observation channels of these four verification areas correspond one-to-one with the identification codes of the third to sixth pages.

[0077] Similarly, the third page of the collection page has one identifier area and three verification areas, and the observation channels of these three verification areas correspond one-to-one with the identifier codes of the fourth to sixth pages; the fourth page of the collection page has one identifier area and two verification areas, and the observation channels of these two verification areas correspond one-to-one with the identifier codes of the fifth and sixth pages; the fifth page of the collection page has one identifier area and one verification area, and the observation channel of this one verification area corresponds to the identifier code of the sixth page.

[0078] like Figure 4 As shown, the 6th page of the collection page only has one identifier area. Since it is the last page of the collection page, no corresponding verification area needs to be set.

[0079] To further improve the convenience of verification operations in the identification and verification areas, the identification area in this embodiment includes a first color block, in which an identification code is set; the verification area includes a second color block, in which an observation channel is located; the color of the first color block is different from the color of the second color block. By using different colors for the first and second color blocks, the visual difference between the identification and verification areas can be improved. Compared to identification and verification areas of the same color or no color, the use of different colors for the first and second color blocks in this embodiment makes the entire sequential verification process more convenient.

[0080] To further optimize production costs, the text printing colors of the collection page in this embodiment include the colors of the first color block and the second color block; that is, the printing colors of the first color block and the second color block are both derived from the printing colors of the color area of ​​the collection page, without the need to set additional printing color configurations. This allows for the reasonable utilization of the printing colors of the current color area of ​​the collection page, thereby optimizing the overall production costs.

[0081] In this embodiment, the first color block of the identification area is blue, and the second color block of the verification area is brown. This blue and brown configuration ensures that the color scheme of the identification and verification areas maintains a high degree of consistency with the color printing areas of the formula set, resulting in a unified style. Furthermore, the contrast between the blue and brown blocks greatly enhances the convenience of sequential verification of the formula set.

[0082] If the two color blocks are too close together, it will affect the final perforation; if they are too far apart, it will limit the width of the paper. If the color blocks are designed to be too wide, they may affect the effective area of ​​the printed page, resulting in waste; if they are designed to be too narrow, it will cause inconvenience in the final verification. In this embodiment, to reduce the impact of perforation on the overall integrity of the paper, the size of both the first and second color blocks is set to 14mm × 5.5mm, and they are evenly distributed along the long side of the color blocks, with a spacing of 10mm between adjacent color blocks. This design ensures clear markings while optimizing verification accuracy and production process. The reasonable color block size avoids the problems of excessive width affecting the effective area of ​​the printed page or excessive narrowness reducing verification accuracy; the 10mm spacing prevents adjacent color blocks from interfering with the overall integrity of the paper during perforation and avoids the width limitation caused by excessive spacing, thereby improving the stability and production efficiency of document sequence verification.

[0083] In this embodiment, the observation channel can be configured as a hole or a notch, preferably a semi-circular notch in the second color block, with a diameter preferably 10mm. This design optimizes punching accuracy and improves the stability of verification and binding. The semi-circular notch design makes the punching position more uniform, avoiding damage to the color block due to drill bit deviation, while ensuring a 2mm gap between the punched edge and the top and bottom of the long side. Even with slight errors, the integrity of the color block will not be affected. The punching position on the short side is controlled between 4mm and 5mm to avoid small hooks forming at the hole edge due to exceeding 5mm, which would affect the normal operation of the sewing machine's collating hopper. At the same time, it ensures accurate paper positioning during verification, improving overall verification efficiency and production stability.

[0084] In some implementations, a 10mm hollow drill bit is ultimately chosen for punching, and 300 sheets of color brochures with the same number are stacked together for punching. The punching position is at the center of the long side of the color brochure block. After punching, the edge of the hole is 2mm from the top and bottom edges of the long side, so that even if there is a slight deviation during the punching process, the area of ​​the color brochure block will not be punched. The punching position on the short side is between 4mm and 5mm. If it exceeds 5mm, the punch will result in a large semicircle and small hooks on the edge of the hole, which will affect the normal operation of the paper in the sewing machine's collating hopper; if it is less than 4mm, it will be detrimental to the final verification.

[0085] In the first embodiment, the identification code is preferably in the form of Arabic numerals (1, 2, 3...), and the identification code corresponding to the m-th page of the set page is the Arabic numeral m. This design ensures the intuitiveness and readability of the numbering. Arabic numerals have a standardized representation, which can avoid recognition errors that may be caused by other symbols or complex coding forms, thereby improving the accuracy and processing efficiency of document verification. In addition, the identification code can also be encoded in the form of English letters (A, B, C...), Greek letters (α, β, γ...), or a combination thereof, and the identification code corresponding to the m-th page of the set page can be incremented according to a preset rule. This structural design ensures the intuitiveness and uniqueness of the numbering. In contrast, Arabic numerals have better intuitiveness and readability, ensuring the accuracy of the verification process and improving the efficiency of document management and automated processing.

[0086] In this embodiment, the identification area and the verification area are preferably set on the side of the booklet-style set, aiming to improve the convenience of verification operations. The side position facilitates the verification staff to directly read the identification information after flipping open the document, improving the verification speed and accuracy. In addition, when the space on the side is limited, the top or bottom edge can also be used as an alternative position for the identification area and the verification area to adapt to different document specifications and ensure the readability of the identification information and the smoothness of the verification process.

[0087] Embodiment Two

[0088] This embodiment provides a sequential verification method applied to the booklet-style set in the first embodiment. Through the 5 observation channels on the first page of the set page, the identification codes of the second to sixth pages of the set page are verified. When the identification code is displayed correctly, it is determined that the set page is qualified. When the identification code is displayed incorrectly, it is determined to adjust the target set page. The above sequential verification method can directly implement the static inspection and self-check function of the booklet-style set. On the one hand, it can greatly improve the verification efficiency. Through the first page of the set page and the 5 observation channels opened on the first page of the set page, the sequential verification work of all set pages can be directly completed, effectively improving the verification process of sequentially checking the page numbers by the fan-shaped expansion method in the prior art. On the other hand, it can effectively reduce the cost investment and avoid the financial pressure brought by equipment upgrading and transformation.

[0089] During the sequential verification process, when and only when the identification code of the m-th set page is not displayed, it is determined that the m-th set page and the (m + 1)-th set page are misaligned. When the identification codes of the m-th to n-th pages are not displayed, it is determined that the m-th set page is reversed.

[0090] Such as Figure 5As shown, taking the example of a page misalignment between the 3rd and 4th collection pages, a page misalignment is determined to occur if and only if the identifier of the 3rd collection page is not displayed. This misalignment causes the 3rd page, which was originally above the 4th page, to appear below it; and due to the viewing channel limitations of the 4th page, the identifier of the 3rd collection page is obscured. Therefore, it is clear that a page misalignment between the 3rd and 4th collection pages can be determined if and only if the identifier of the 3rd collection page is not displayed.

[0091] like Figure 6 As shown, taking the page reversal of the third collection page as an example, if the identification codes of pages 3 through 6 are not displayed, it is determined that the third collection page has been reversed. Because the third collection page is reversed, the side of the third collection page with the observation channel changes position, and the unique identification page of the third collection page also changes position, no longer appearing in the observation channel of the second collection page, resulting in the identification code of the third collection page not being displayed. Furthermore, because the third collection page is reversed, the side of the third collection page without the observation channel overlaps above the identification area of ​​subsequent collection pages, obscuring the identification codes of subsequent collection pages, resulting in the identification codes of pages 4 through 6 not being displayed. Therefore, when the identification codes of pages 3 through 6 are not displayed, it can be determined that the third collection page has been reversed.

[0092] In some implementations, a hollow drill bit is used to drill a semi-circular hole for ease of implementation.

[0093] In some implementations, verification can be combined with weighing, with additional or missing pages further monitored by weighing using an electronic scale. This creates a closed loop in the production process, preventing such quality issues from occurring in the manufactured products.

[0094] The foregoing has described specific embodiments of the present invention. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps described in the claims may be performed in a different order than that shown in the embodiments to achieve the desired result. In some implementations, multitasking and parallel processing are also possible or may be advantageous.

[0095] In the description of the embodiments of this utility model, the terms "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the present utility model. In the embodiments of this utility model, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. Furthermore, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in the embodiments of this utility model, as well as the features of the different embodiments or examples.

[0096] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features, excluding any ordering. Thus, features defined with "first" and "second" may explicitly or implicitly include at least one of those features and are used to distinguish them from one another. In the description of embodiments of this utility model, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0097] The scope of the preferred embodiments of this utility model includes other implementations in which functions may be performed not in the order shown or discussed, including substantially simultaneously or in reverse order, depending on the functions involved, as will be understood by those skilled in the art to which the embodiments of this utility model pertain.

[0098] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A set of formulas that is easy to verify, comprising n pages arranged in a preset order. Its characteristics are, The edges of the first to nth pages of the collection page are marked with identification areas, and the edges of the first to (n-1)th pages of the collection page are also marked with verification areas. The identification area is equipped with an identification code, and the verification area has an observation channel for observing the identification code; The m-th page of the collection page has nm verification areas, and the nm observation channels of the m-th page correspond one-to-one with the identification codes of the (m+1)-th to n-th pages. .

2. The set of formulas according to claim 1, characterized in that, The identification code can be Arabic numerals, letters, Chinese characters, or graphics; And / or, The observation channel is configured as a hole or a notch; And / or, The identification area and the verification area are located at any of the following positions: the side, top, or bottom edge of the formula set; And / or, The identification area includes a first color block, and the identification code is set in the first color block. The verification area includes a second color block, and the observation channel is located within the second color block. The color of the first color block is different from the color of the second color block; And / or, The area of ​​the identification area is equal to or greater than that of the verification area, and the area of ​​the observation channel is smaller than that of the verification area.

3. The set of formulas according to claim 1 or 2, characterized in that, The marking area can be square, circular, semi-circular, conical, or triangular; And / or, The verification area can be square, circular, semi-circular, conical, or triangular; And / or, The observation channel can be semi-circular, circular, square, triangular, or conical.

4. The set of formulas according to claim 2, characterized in that, The marking area is rectangular, the verification area is rectangular, and the observation channel is a small semicircle or half a circle; And / or, The main text printing color of the collection page includes the color of the first color block or the color of the second color block.

5. The set of expressions as described in claim 1, characterized in that, The identification code is an Arabic numeral, and the identification code of the m-th page of the collection is the Arabic numeral m; The observation channel is designed with a notch; The identification area and the verification area are located at any of the following positions: the side, top, or bottom edge of the formula set; The identification area includes a first color block, and the identification code is set in the first color block. The verification area includes a second color block, and the observation channel is located within the second color block. The identifier is set to a third color. The first color block of the identification area in the first to nth images uses a different color. The second color block of the verification area in sheets 2 through n uses a different color. The second color block of the last verification area of ​​the first image is the same color as the color of the identifier area of ​​the nth image, and so on. The second color block of each verification area of ​​the collection page is set to the same color as the identifier area corresponding to the observation channel within the verification area. The third color is different from the color of the first color block, and the third color is different from the color of the second color block.

6. The set of formulas according to claim 1, characterized in that, The identification area includes a first color block, and the identification code is set in the first color block. The verification area includes a second color block, and the observation channel is located within the second color block. The first color block is a blue block, and the second color block is a yellow block or a brown block; The first color block and the second color block are rectangular, and the size of both the first color block and the second color block is set to 14mm. The first color block and the second color block are evenly distributed along the long side of the color block, with a spacing of 10 mm between adjacent color blocks. The observation channel is a semi-circular notch in the second color block with a diameter of 10 mm. The edge of the observation channel is 2 mm away from the short edge of the verification area. The semi-circular notch is made by a hollow drill bit.

7. The set of formulas according to any one of claims 1, 2, 4-6, characterized in that, The set of these formulas includes certificates, securities, and anti-counterfeiting labels.

8. A set of formulas, comprising n pages arranged in a predetermined order. Its characteristics are, The edges of the first to nth pages of the collection page are marked with identification areas, and the edges of the first to (n-1)th pages of the collection page are also marked with verification areas. The marking area has a color, and the verification area has an observation channel for observing the color of the marking area; The m-th page of the collection page has nm verification areas, and the nm observation channels of the m-th page correspond one-to-one with the identification areas of the (m+1)-th to n-th pages. .

9. A punching device, characterized in that, Die-cutting or punching for the observation channel of the set of formulas described in any one of claims 1-8.

10. A processing device, characterized in that, For processing of the set of formulas as described in any one of claims 1-8, or including the punching device as described in claim 9.