Folding printing brochure
The folding structure and reinforcement mesh design solve the problem that flip-page brochures cannot print long pictures intuitively, thereby improving the visual impact and extending the service life.
Patent Information
- Application Number
- CN202422829245.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-11-20
AI Technical Summary
Existing brochures printed on paper are of the page-turning type, which cannot print long pictures intuitively in the brochure, resulting in poor visual impact on viewers and affecting the promotional effect.
It adopts a folding structure, including multiple mesh structures and folding promotional mechanisms. By printing the main text and graphics on the printing component and utilizing the design of the reinforcement net and packaging component, the brochure can be intuitively opened and folded, enhancing the visual impact. The reinforcement net and mesh structure protect the bending parts of the printing component from damage.
It enables intuitive browsing of the brochure, enhances the visual impact, attracts the viewer's attention, and extends the service life of the brochure.
Smart Images

Figure CN223478613U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of brochure technology, and in particular to a foldable printed brochure. Background Technology
[0002] A brochure is a type of publication that uses its layout to attract attention and promote policies, religions, crafts, culture, businesses, and other related information. It is generally made of paper and produced through printing. Existing brochures are usually flip-page brochures, fixed by an adhesive layer on the spine. However, the adhesive layer required is relatively thick and is prone to cracking and deformation.
[0003] The prior art CN217671879U discloses a brochure printed on paper, including subpages, multiple first connecting lines, second connecting lines, and an adhesive layer. The subpages include multiple book pages, which are folded together to form a book block and a spine at the fold. Multiple first connecting lines are set on the spine of the subpages, and each first connecting line includes inner lines and outer lines. Multiple inner lines are fixedly connected to the spine of the subpages, and multiple outer lines are fixedly connected to the multiple inner lines and located within the book block. The multiple inner lines and outer lines form a loop arranged along the thickness direction of the book block. Second connecting lines pass through the loops in sequence and are woven with the outer lines into a mesh structure. The adhesive layer is fixedly connected between the mesh structure and the spine. When the brochure is opened, the mesh structure formed by the multiple first connecting lines and second connecting lines will share the shear force and bending force of the adhesive layer, reducing the probability of the adhesive layer cracking, deforming, and falling off, thereby extending the service life of the brochure.
[0004] However, the existing paper-printed brochures are page-turning type, which cannot display long images intuitively. The visual impact on viewers is poor, which leads to a decrease in the promotional effect. Utility Model Content
[0005] The purpose of this utility model is to provide a foldable printed brochure, which aims to solve the problem that existing paper-printed brochures are page-turning and cannot display long images intuitively, resulting in a poor visual impact for viewers and reduced promotional effectiveness.
[0006] To achieve the above objectives, this utility model provides a foldable printed brochure, comprising multiple mesh structures and a folding mechanism. The folding mechanism includes multiple reinforcing meshes, a printing component, a cover page, an end page, and a packaging component. The multiple reinforcing meshes are fixedly connected to and staggered with the multiple mesh structures. The printing component is disposed on the surfaces of the multiple reinforcing meshes and the multiple mesh structures, and the multiple mesh structures are the folding points of the foldable printed brochure. The cover page is disposed at one end of the printing component, and the end page is disposed at the end of the printing component away from the cover page. The packaging component is disposed on the surfaces of the cover page and the end page.
[0007] The printing component includes a text surface and an image surface. The text surface is fixedly connected to the cover page and the end page, and is also fixedly connected to one side of the plurality of reinforcing meshes and the plurality of mesh structures. The image surface is fixedly connected to the cover page and the end page, and is also fixedly connected to the side of the plurality of reinforcing meshes and the plurality of mesh structures away from the text surface.
[0008] The packaging assembly includes a packaging shell, a slider, a switch, and two encapsulation shells. The packaging shell is slidably connected to the surfaces of the cover page and the end page. The slider is slidably connected inside the packaging shell. The switch is disposed inside the packaging shell. The two encapsulation shells are slidably connected to one side of the packaging shell.
[0009] The switch includes a card holder, a reset spring, and two encapsulation components. The card holder is fixedly connected to the lower part of the slider, the reset spring is fixedly connected to the slider and located inside the packaging shell, and the two encapsulation components are respectively disposed on one side of the two packaging shells.
[0010] The encapsulation component includes a locking block, a pressure plate, and a power spring. The locking block is fixedly connected to the encapsulation shell and slidably connected inside the packaging shell, and engages with one end of the card holder. The pressure plate is slidably connected inside the packaging shell, and the power spring is fixedly connected to the pressure plate and located inside the packaging shell.
[0011] This utility model discloses a foldable printed brochure. When using the brochure, the text and images to be advertised are printed on the printing component. For storage, the printing component is folded with the multiple mesh structures as bending points and the multiple reinforcing meshes as folding surfaces, with the cover page on top and the last page at the bottom. It is then placed into the packaging component. To browse the brochure, the packaging component is opened, the brochure is taken out, placed on a table, and the cover page is grasped, or the cover page and last page are grasped with both hands respectively. The brochure is then opened, revealing the text on the front and the images on the back, allowing for a direct and intuitive view of the entire brochure. This enhances visual impact and attracts the viewer's attention. Furthermore, the multiple mesh structures prevent damage to the bending points of the printing component, and the multiple reinforcing meshes prevent damage to the folding surfaces, extending the brochure's lifespan. This design avoids the problems of existing paper-printed brochures, which are often flip-page designs and cannot display long images directly, resulting in a poor visual impact and reduced advertising effectiveness. This brochure thus improves the overall advertising impact. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0014] Figure 2 This is a schematic diagram of the structure of this utility model after the sealing shell is removed.
[0015] Figure 3 This is a structural schematic diagram of the slider and switch of this utility model.
[0016] Figure 4 This is a schematic diagram of the internal structure of the packaging shell of this utility model.
[0017] Figure 5 yes Figure 4 A magnified view of a portion of point A in the middle.
[0018] 1-Mesh structure, 2-Reinforcing mesh, 3-Printing component, 4-Cover page, 5-End page, 6-Packaging component, 7-Text side, 8-Illustrated side, 9-Packaging shell, 10-Slide button, 11-Switch component, 12-Encapsulation shell, 13-Card holder, 14-Reset spring, 15-Encapsulation component, 16-Card block, 17-Pressure plate, 18-Power spring. Detailed Implementation
[0019] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0020] Please see Figures 1-5 ,in Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the structure of this utility model after the sealing shell has been removed; Figure 3 This is a structural schematic diagram of the slider and switch of this utility model; Figure 4 This is a schematic diagram of the internal structure of the packaging shell of this utility model; Figure 5 yes Figure 4 A magnified view of a portion of point A in the middle.
[0021] This utility model provides a foldable printed brochure: it includes multiple mesh structures 1 and a folding mechanism. The folding mechanism includes multiple reinforcing meshes 2, printing components 3, a cover page 4, an end page 5, and a packaging component 6. The printing components 3 include a text surface 7 and an image surface 8. The packaging component 6 includes a packaging shell 9, a sliding button 10, a switch 11, and two encapsulation shells 12. The switch 11 includes a card holder 13, a return spring 14, and two encapsulation components 15. The encapsulation components 15 include a card block 16, a pressure plate 17, and a power spring 18. The aforementioned solution solves the problem that existing paper-printed brochures are page-turning, which cannot display long images intuitively, resulting in a poor visual impact for viewers and reduced promotional effectiveness.
[0022] In this specific embodiment, multiple reinforcing meshes 2 and multiple mesh structures 1 are fixedly connected and staggered. The printing component 3 is disposed on the surfaces of the multiple reinforcing meshes 2 and multiple mesh structures 1, and the multiple mesh structures 1 are all the folds of the foldable printed brochure. The cover page 4 is disposed at one end of the printing component 3, and the end page 5 is disposed at the end of the printing component 3 away from the cover page 4. The packaging component 6 is disposed on the surfaces of the cover page 4 and the end page 5. When using the brochure, the text and graphics to be advertised are printed on the printing component 3. When storing, the printing component 3 with multiple mesh structures... The brochure is designed with multiple reinforcing meshes at one bend and two folds at the other, so that the cover page 4 is on top and the end page 5 is on the bottom. It is then placed into the packaging component 6. When browsing the brochure, the packaging component 6 is opened, the brochure is taken out, placed on a table, and the cover page 4 is grasped, or the cover page 4 and the end page 5 are grasped with both hands respectively to open the brochure. The front displays the promotional text, and the back displays promotional images and text, allowing for a direct and intuitive view of the entire brochure. This enhances the visual impact and attracts the viewer's attention. Furthermore, the multiple mesh structures 1 prevent damage to the bends of the printing component 3, and the multiple reinforcing meshes 2 prevent damage to the folds of the printing component 3, extending the brochure's lifespan.
[0023] The main text surface 7 is fixedly connected to the cover page 4 and the end page 5, and is also fixedly connected to one side of the multiple reinforcing nets 2 and the multiple mesh structures 1. The graphic surface 8 is fixedly connected to the cover page 4 and the end page 5, and is also fixedly connected to the side of the multiple reinforcing nets 2 and the multiple mesh structures 1 away from the main text surface 7. When the brochure is opened, the main text surface 7 is the front, and the graphic surface 8 is the back. When printing the brochure, the main text surface 7 is used to print the main text content and may be accompanied by short pictures, while the graphic surface 8 is used to print long pictures and is accompanied by promotional slogans, summaries, or introductions.
[0024] Secondly, the packaging shell 9 is slidably connected to the surface of the cover page 4 and the end page 5. The slider 10 is slidably connected inside the packaging shell 9. The switch 11 is disposed inside the packaging shell 9. The two encapsulation shells 12 are slidably connected to one side of the packaging shell 9. When the viewer wants to take out the brochure, they slide the slider 10, and the switch 11 opens, causing the two encapsulation shells 12 to pop out and slide along the packaging shell 9 to both sides. At this time, the brochure can be taken out. When putting it back, the brochure is placed inside the packaging shell 9, and the two encapsulation shells 12 are slid. Under the action of the switch 11, the two encapsulation shells 12 are closed and fixed, and the storage is completed.
[0025] Meanwhile, the card holder 13 is fixedly connected to the lower part of the slider 10, and the return spring 14 is fixedly connected to the slider 10 and located inside the packaging shell 9. The two packaging components 15 are respectively disposed on one side of the two packaging shells 12. When the slider 10 is slid, the card holder 13 moves accordingly and squeezes the return spring 14. The two packaging components 15 simultaneously lose the constraint of the card holder 13, causing the two packaging shells 12 to be ejected and slide along the packaging shell 9. At this time, the packaging assembly 6 has been opened. When the slider 10 is released, under the action of the return spring 14, the slider 10 drives the card holder 13 to return to its original position.
[0026] Finally, the card block 16 is fixedly connected to the packaging shell 12 and slidably connected inside the packaging shell 9, and engages with one end of the card holder 13. The pressure plate 17 is slidably connected inside the packaging shell 9. The power spring 18 is fixedly connected to the pressure plate 17 and located inside the packaging shell 9. When the card holder 13 moves, it separates from the two card blocks 16. The two power springs 18, which are in a compressed state, extend and eject the two card blocks 16 through the two pressure plates 17 respectively. Thus, under the inertia of the two card blocks 16, the two packaging shells 12 are ejected and slide along the packaging shell 9, thereby opening the packaging assembly 6.
[0027] When using the brochure, the text and images to be promoted are printed on the printing component 3. When storing, the printing component 3 is folded with the section with multiple mesh structures 1 as the bending point and the section with multiple reinforcing meshes 2 as the folding surface, with the cover page 4 on top and the end page 5 on the bottom. Then, it is placed into the packaging component 6. When browsing the brochure, the slider 10 is slid, the card holder 13 moves accordingly, and compresses the return spring 14. Simultaneously, it separates from the two card blocks 16, and the two compressed power springs 18 extend, ejecting the two card blocks 16 through the two pressure plates 17. The inertia of the two card blocks 16 causes the two packaging shells 12 to pop out and slide along the packaging shell 9, opening the packaging component 6. The brochure is then removed, placed on a table, and the cover page 4 is grasped, or both hands are used to hold it. Each person grasps the cover page 4 and the end page 5 to open the brochure. The front displays the promotional text, and the back displays promotional images and text, allowing for a direct and intuitive view of the entire book, enhancing visual impact and attracting the viewer's attention. Furthermore, the multiple mesh structures 1 prevent damage to the bending points of the printing components 3, and the multiple reinforcing meshes 2 prevent damage to the folded surfaces of the printing components 3, extending the brochure's lifespan. To return the brochure, place it inside the packaging shell 9, slide the two sealing shells 12, and under the action of the switch 11, the two sealing shells 12 close and are fixed in place, completing the storage process. This avoids the problem of existing paper-printed brochures being page-turning, unable to display long images directly, resulting in a poor visual impact for viewers and reduced promotional effectiveness. This method enhances the promotional impact.
[0028] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A foldable printed brochure, comprising multiple mesh structures, characterized in that, This also includes folding publicity agencies; The folding promotional brochure includes multiple reinforcing meshes, a printing component, a cover page, an end page, and a packaging component. The multiple reinforcing meshes are fixedly connected to and staggered with the multiple mesh structures. The printing component is disposed on the surfaces of the multiple reinforcing meshes and the multiple mesh structures, and the multiple mesh structures are the folds of the folding printed brochure. The cover page is disposed at one end of the printing component, and the end page is disposed at the end of the printing component away from the cover page. The packaging component is disposed on the surfaces of the cover page and the end page.
2. The foldable printed brochure as described in claim 1, characterized in that, The printing component includes a text surface and an image surface. The text surface is fixedly connected to the cover page and the end page, and is also fixedly connected to one side of the plurality of reinforcing meshes and the plurality of mesh structures. The image surface is fixedly connected to the cover page and the end page, and is also fixedly connected to the side of the plurality of reinforcing meshes and the plurality of mesh structures away from the text surface.
3. The foldable printed brochure as described in claim 1, characterized in that, The packaging assembly includes a packaging shell, a slider, a switch, and two encapsulation shells. The packaging shell is slidably connected to the surfaces of the cover page and the end page. The slider is slidably connected inside the packaging shell. The switch is disposed inside the packaging shell. The two encapsulation shells are slidably connected to one side of the packaging shell.
4. The foldable printed brochure as described in claim 3, characterized in that, The switch includes a card holder, a return spring, and two encapsulation components. The card holder is fixedly connected to the lower part of the slider, the return spring is fixedly connected to the slider and located inside the packaging shell, and the two encapsulation components are respectively disposed on one side of the two packaging shells.
5. The foldable printed brochure as described in claim 4, characterized in that, The packaging component includes a locking block, a pressure plate, and a power spring. The locking block is fixedly connected to the packaging shell and slidably connected inside the packaging shell, and engages with one end of the card holder. The pressure plate is slidably connected inside the packaging shell, and the power spring is fixedly connected to the pressure plate and located inside the packaging shell.
Citation Information
Patent Citations
Paper-printed brochure
CN217671879U