An electronic waybill

By designing the base and surface structures of the electronic waybill, the waybill information is dispersed and remains on the surface and base layers, and can be destroyed by simply tearing it off. This solves the problem of inconvenient information destruction in the existing technology and reduces the risk of information leakage.

CN112757705BActive Publication Date: 2025-09-12BEIJING JINGDONG ZHENSHI INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202110198943.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-02-22
Publication Date
2025-09-12
Estimated Expiration
2041-02-22

AI Technical Summary

Technical Problem

It is inconvenient to destroy information on existing electronic waybills, and users need to use tools to complete it, resulting in a high risk of information leakage.

Method used

An electronic waybill is designed, including a base layer and a surface layer. The surface layer is adhered to the base layer and constitutes an information-bearing surface. After the surface layer is removed, the waybill information is scattered on the base layer and the surface layer. Some information remains incomplete and can be destroyed by a simple tearing action.

Benefits of technology

It realizes the simple and rapid destruction of the waybill information, reduces the risk of information leakage, and meets the information preservation or destruction purposes of users with different needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of logistics technology, and in particular to an electronic waybill. The electronic waybill disclosed in the present invention includes a base layer and a surface layer, wherein the surface layer is arranged on one side of the base layer, and the base layer and the surface layer together constitute an information-bearing surface, which is used to carry the waybill information. After the surface layer is removed from the base layer, a portion of the waybill information remains on the base layer, and another portion of the waybill information remains on the surface layer. After the user removes the surface layer from the base layer, the waybill information remaining on the surface layer and the waybill information remaining on the base layer are both incomplete, thereby achieving the purpose of destroying the waybill information, and can achieve the purpose of simply and quickly destroying the waybill information.
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Description

Technical Field

[0001] The present invention relates to the field of logistics technology, and in particular to an electronic waybill. Background Art

[0002] With the rapid development of e-commerce and logistics, more and more users are using convenient express delivery to purchase goods. However, the growth of the express delivery industry has also gradually compromised user privacy. This is especially true when users casually discard the packaging after receiving goods from express delivery companies. This allows criminals to collect information such as the delivery address, name, and phone number on the electronic waybill on the packaging, resulting in the leakage of this information. This information can even be exploited by malicious parties, causing personal and financial losses to users.

[0003] The destruction of existing electronic waybills requires users to use tools such as pens and knives, which makes the destruction of waybill information very inconvenient.

[0004] Based on this, it is urgent to invent an electronic waybill to solve the problem of the inconvenience of destroying the information on the electronic waybill. Summary of the Invention

[0005] The purpose of the present invention is to provide an electronic waybill that can achieve simple and rapid destruction of waybill information.

[0006] To achieve the above object, the present invention adopts the following technical solutions:

[0007] An electronic waybill comprises a base layer and a surface layer, wherein the surface layer is arranged on one side of the base layer, and the base layer and the surface layer together constitute an information bearing surface, and the information bearing surface is used to carry waybill information. After the surface layer is removed from the base layer, a portion of the waybill information remains on the base layer, and another portion of the waybill information remains on the surface layer.

[0008] As a preferred solution, the surface layer includes a surface layer body adhered to the base layer and a filling part, the surface layer body is provided with a plurality of through holes, the filling part is filled in the through holes, and the surface of the surface layer away from the base layer constitutes the information bearing surface.

[0009] As a preferred solution, the surface layer body and the filling portion are connected via a tear line.

[0010] As a preferred solution, the base layer includes an intermediate layer and a bottom layer, one side surface of the intermediate layer is adhered to the bottom layer, and the surface layer body and the filling portion are adhered to the other side surface of the intermediate layer.

[0011] As a preferred solution, the surface body includes a first adhesive portion and a first peeling portion, the through hole is opened on the first adhesive portion, the first adhesive portion is adhered to the middle layer, and the first peeling portion is connected to the corner position of the first adhesive portion and is separated from the middle layer.

[0012] As a preferred solution, the middle layer includes a second adhesive portion and a second peeling portion, the second adhesive portion is adhered to the bottom layer on the side facing away from the first adhesive portion, and the second peeling portion is connected to the corner position of the second adhesive portion and is separated from the bottom layer.

[0013] As a preferred solution, the electronic waybill is rectangular, and the first opening portion and the second opening portion are distributed along a diagonal line of the electronic waybill.

[0014] As a preferred solution, the through hole is a parallelogram, and two sides of the parallelogram are parallel to the diagonal line.

[0015] As a preferred solution, a plurality of through holes are opened on the surface layer, the surface layer is adhered to the base layer, and the surface of the surface layer facing away from the base layer and the surface of the base layer exposed by the through holes together constitute the information bearing surface.

[0016] As a preferred solution, the base layer includes a first glassine paper layer and multiple first adhesive layers distributed on one side thereof, the surface layer is adhered to the first adhesive layer, and the surface of the surface layer facing away from the first adhesive layer constitutes the information bearing surface.

[0017] The beneficial effects of the present invention are:

[0018] The electronic waybill provided by the present invention comprises a base layer and a surface layer, which together constitute an information-bearing surface for carrying the waybill information. After the surface layer is removed from the base layer, a portion of the waybill information remains on the base layer, while another portion remains on the surface layer. After the user removes the surface layer from the base layer, the waybill information remaining on the surface layer and the waybill information remaining on the base layer are both incomplete, thereby achieving the purpose of destroying the waybill information, which can achieve the purpose of simply and quickly destroying the waybill information. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in describing the embodiments of the present invention. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the contents of the embodiments of the present invention and these drawings without any creative work.

[0020] Figure 1 is a schematic structural diagram of the surface layer provided in Example 1;

[0021] Figure 2 This is a cross-sectional view of the electronic waybill provided in Example 1 in one direction;

[0022] Figure 3 This is a schematic structural diagram of the surface layer body provided in Example 1;

[0023] Figure 4 is a structural schematic diagram of the filling portion provided in Example 1;

[0024] Figure 5 is a cross-sectional view of the base layer provided in Example 1 in another direction;

[0025] Figure 6 is a schematic structural diagram of the intermediate layer provided in Example 1;

[0026] Figure 7 is a cross-sectional view of the electronic waybill provided in Example 2;

[0027] Figure 8 is a cross-sectional view of the electronic waybill provided in Example 3;

[0028] Figure 9 This is an exploded view of the electronic waybill provided in Example 4;

[0029] Figure 10 This is an exploded view of the electronic waybill provided in Example 5;

[0030] Figure 11 This is an exploded view of the electronic waybill provided in Example 6.

[0031] The following are marked in the figure:

[0032] In the first embodiment:

[0033] 100 - electronic waybill; 11 - base layer; 111 - middle layer; 1111 - second adhesive portion; 11111 - first glassine paper layer; 11112 - third adhesive layer; 1112 - second uncovering portion; 112 - base layer; 1121 - second glassine paper layer; 1122 - fourth adhesive layer; 12 - surface layer; 121 - surface layer body; 1211 - first adhesive portion; 12111 - diagonal line; 12112 - first printed layer; 12113 - first adhesive layer; 12114 - through hole; 1212 - first uncovering portion; 122 - filling portion; 1221 - second printed layer; 1222 - second adhesive layer;

[0034] In the second embodiment:

[0035] 200 - electronic waybill; 21 - base layer; 211 - first glassine paper layer; 212 - third adhesive layer; 22 - surface layer; 221 - surface layer body; 2211 - through hole; 2212 - first printed layer; 2213 - first adhesive layer; 222 - filling portion; 2221 - second printed layer; 2222 - second adhesive layer;

[0036] In the third embodiment:

[0037] 300 - electronic waybill; 31 - base layer; 311 - third glassine paper layer; 312 - first adhesive layer; 313 - second adhesive layer; 32 - surface layer; 321 - surface layer body; 3211 - through hole; 3212 - first printed layer; 3213 - first glassine paper layer; 322 - filling portion; 3221 - second printed layer; 3222 - second glassine paper layer;

[0038] In the fourth embodiment:

[0039] 400-electronic waybill; 41-base layer; 411-first glassine paper layer; 412-first adhesive layer; 42-surface layer;

[0040] In the fifth embodiment:

[0041] 500-electronic waybill; 51-base layer; 511-second printing layer; 512-second adhesive layer; 52-surface layer; 521-through hole; 522-first printing layer; 523-first adhesive layer;

[0042] In the sixth embodiment:

[0043] 600-electronic waybill; 61-base layer; 611-connecting layer; 6111-adhesive part; 6112-printing part; 612-second adhesive layer; 62-surface layer; 621-through hole; 622-first printing layer; 623-first adhesive layer. DETAILED DESCRIPTION

[0044] The present invention will be further described in detail below with reference to the accompanying drawings and examples. It will be understood that the specific embodiments described herein are intended only to illustrate the present invention and are not intended to limit the present invention. It should also be noted that, for ease of description, the accompanying drawings only illustrate portions relevant to the present invention, not all structures.

[0045] In the description of the present invention, unless otherwise expressly specified or limited, the terms "connected," "connected," and "fixed" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integration; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention in specific circumstances.

[0046] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Furthermore, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0047] In the description of this embodiment, terms such as "upper," "lower," "left," and "right" are used to refer to positions or locations based on those shown in the accompanying drawings. These terms are intended solely to facilitate description and simplify operation, and are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used solely for descriptive purposes and have no special meaning.

[0048] Example 1

[0049] like Figure 1 and Figure 2 As shown, this embodiment provides an electronic waybill 100, which includes a base layer 11 and a surface layer 12, which are adhered to each other. The side of the base layer 11 not provided with the surface layer 12 is adhered to the product to be attached (such as a courier box), which can prevent the electronic waybill 100 from falling off the courier box. The side of the surface layer 12 not provided with the base layer 11 is used to print the waybill information. After the user tears the surface layer 12 from the base layer 11, it is necessary to use a tool such as a pen or a knife to completely destroy the waybill information, which makes it very inconvenient for the user to destroy the waybill information.

[0050] In order to solve the above problems, Figure 1 and Figure 3 As shown, the surface layer 12 is disposed on one side of the base layer 11. The base layer 11 and the surface layer 12 together constitute an information-bearing surface for carrying the face sheet information. After the surface layer 12 is removed from the base layer 11, a portion of the face sheet information remains on the base layer 11, while the other portion remains on the surface layer 12. After the user removes the surface layer 12 from the base layer 11, the face sheet information remaining on the surface layer 12 and the face sheet information remaining on the base layer 11 are both incomplete, thereby achieving the purpose of destroying the face sheet information, which can achieve the purpose of simply and quickly destroying the face sheet information.

[0051] Specifically, if Figure 1 and Figure 3As shown, the surface layer 12 includes a surface body 121 and a filling part 122 pasted on the base layer 11. A plurality of through holes 12114 for the filling part 122 are provided on the surface body 121. The filling part 122 is filled in the through holes 12114. The surface body 121 and the filling part 122 are pasted on the base layer 11. Part of the face sheet information is printed on the surface body 121, and the other part of the face sheet information is printed on the plurality of filling parts 122. The user can tear off the surface body 121 from the base layer 11 through a simple tearing action. The face sheet information remaining on the surface body 121 and the face sheet information remaining on the filling part 122 are both incomplete, thereby achieving the effect of better destroying the face sheet information, and can achieve the effect of simply and quickly destroying the face sheet information.

[0052] As a preferred solution, Figure 3 As shown, multiple through holes 12114 are arranged in an array, and the cross-sectional area of ​​the through holes 12114 is 1 mm 2 ~3mm 2 Since the number of through holes 12114 is large and the cross-sectional area is small, it can ensure that the residual information of the filling part 122 after tearing off the surface body 121 cannot be identified, and can play a better role in destroying the face sheet information.

[0053] like Figure 2 As shown, the base layer 11 includes an intermediate layer 111 and a bottom layer 112. One side surface of the intermediate layer 111 is adhered to the bottom layer 112, and the surface layer body 121 and the filling portion 122 are adhered to the other side surface of the intermediate layer 111. When the user tears the intermediate layer 111 from the bottom layer 112, the complete face sheet information can be removed from the express box, making it convenient for the user to archive the surface layer 12 and the intermediate layer 111 that retain the complete face sheet information and are adhered to each other. When the user tears the surface layer body 121 from the intermediate layer 111, the face sheet information can be destroyed, achieving the purpose of simply and quickly destroying the face sheet information. By applying the electronic face sheet 100 provided in this embodiment, customers can selectively tear the surface layer body 121 from the intermediate layer 111 according to their different needs, or tear the surface layer 12 and the intermediate layer 111 that are adhered together from the bottom layer 112, thereby achieving the different purposes of destroying the face sheet information or archiving the face sheet information to meet the different needs of users.

[0054] If the surface layer 121 is completely adhered to the middle layer 111, it is difficult for the operator to separate the surface layer 121 from the middle layer 111 with a fingernail, resulting in difficulty in removing the surface layer 121 from the middle layer 111. Figure 3As shown, the surface body 121 includes a first adhesive portion 1211 and a first peeling portion 1212. A through hole 12114 is provided on the first adhesive portion 1211. The first adhesive portion 1211 is adhered to the middle layer 111. The first peeling portion 1212 is connected to a corner of the first adhesive portion 1211 and is separated from the middle layer 111. A user can quickly remove the surface body 121 from the middle layer 111 by inserting a finger into the gap between the first peeling portion 1212 and the middle layer 111, then pinching the first peeling portion 1212 with two fingers and applying force to the surface body 121. In addition, if the surface body 121 is completely adhered to the middle layer 111, the outer periphery of the surface body 121 will be torn during the initial separation of the completely adhered surface body 121 and the middle layer 111, resulting in an incomplete and unsightly outer periphery of the surface body 121. However, by separating the first peeling portion 1212 from the middle layer 111, the user will not have to exert too much effort in the initial process of separating the surface body 121 and the middle layer 111, nor will the outer periphery of the surface body 121 be torn, thereby ensuring that the outer periphery of the surface body 121 is intact and beautiful.

[0055] Specifically, if Figure 3 As shown, the first adhesive portion 1211 includes a first printed layer 12112 and a first adhesive layer 12113 that are adhered to each other. The first printed layer 12112 is connected to the first uncovering portion 1212. Figure 4 As shown, the filling portion 122 includes a second printing layer 1221 and a second adhesive layer 1222 that are adhered to each other, and the first adhesive layer 12113 and the second adhesive layer 1222 are respectively adhered to the middle layer 111. Exemplarily, the first printing layer 12112 and the second printing layer 1221 can be thermal paper, writing paper or coated paper, which can achieve rapid printing of the face sheet information and ensure good clarity of the face sheet information. Exemplarily, the first adhesive layer 12113 and the second adhesive layer 1222 can be double-sided tape, self-adhesive tape or adhesive, which can achieve the effect of better adhesion of the surface layer 121 to the middle layer 111. During the transportation of the express box, the first adhesive layer 12113 and the second adhesive layer 1222 can prevent the surface layer 121 from falling off from the middle layer 111.

[0056] If the middle layer 111 is completely adhered to the bottom layer 112, it is difficult for the operator to separate the middle layer 111 from the bottom layer 112 with fingernails, resulting in difficulty in removing the middle layer 111 from the bottom layer 112. Figure 5As shown, the middle layer 111 includes a second adhesive portion 1111 and a second peeling portion 1112. The side of the second adhesive portion 1111 facing away from the first adhesive portion 1211 is adhered to the bottom layer 112. The second peeling portion 1112 is connected to a corner of the second adhesive portion 1111 and is separated from the bottom layer 112. The user inserts a finger into the gap between the second peeling portion 1112 and the bottom layer 112, then pinches the second peeling portion 1112 with two fingers and applies force to the adhered surface layer 121 and middle layer 111, thereby quickly removing the adhered surface layer 121 and middle layer 111 from the bottom layer 112. Furthermore, if the middle layer 111 is completely adhered to the bottom layer 112, the user may tear the periphery of the middle layer 111 or the bottom layer 112 during the initial separation of the completely adhered middle layer 111 and bottom layer 112, resulting in an incomplete and unsightly appearance of the removed surface layer 121 and the middle layer 111. In this embodiment, the second peeling portion 1112 is separated from the bottom layer 112, which reduces the user's effort during the initial separation of the middle layer 111 and the bottom layer 112, and prevents the periphery of the surface layer 121 and the middle layer 111 from being torn, thereby ensuring that the periphery of the removed surface layer 121 and the middle layer 111 remain intact and aesthetically pleasing.

[0057] Specifically, if Figure 5 As shown, the second adhesive portion 1111 includes a first glassine paper layer 11111 and a third adhesive layer 11112, the second peeling portion 1112 is connected to the first glassine paper layer 11111, and one side of the first glassine paper layer 11111 is adhered to the first adhesive layer 12113 and the second adhesive layer 1222. Since the surface of the first glassine paper layer 11111 is smooth, it is convenient to remove the first adhesive layer 12113 and the second adhesive layer 1222 from the surface of the first glassine paper layer 11111, and it is convenient to remove the surface layer body 121 from the second adhesive portion 1111, and it can also prevent residual adhesive from adhering to the surface of the first glassine paper layer 11111, so that the surface of the intermediate layer 111 removed from the surface layer body 121 is smooth and beautiful. The other side of the first glassine paper layer 11111 is adhered to the third adhesive layer 11112, and the side of the third adhesive layer 11112 facing away from the first glassine paper layer 11111 is adhered to the bottom layer 112. By setting the third adhesive layer 11112, a better adhesion effect between the middle layer 111 and the bottom layer 112 can be achieved. During the transportation of the express box, the third adhesive layer 11112 can prevent the middle layer 111 from falling off from the bottom layer 112.

[0058] Specifically, if Figure 5As shown, the bottom layer 112 includes a second glassine paper layer 1121 and a fourth adhesive layer 1122. The third adhesive layer 11112 is adhered to the second glassine paper layer 1121. The smooth surface of the second glassine paper layer 1121 facilitates removal of the third adhesive layer 11112 from the bottom layer 112 and prevents any residual adhesive from the third adhesive layer 11112 on the second glassine paper layer 1121, resulting in an aesthetically pleasing outer surface of the second glassine paper layer 1121. The fourth adhesive layer 1122 is adhered to the side of the second glassine paper layer 1121 facing away from the third adhesive layer 11112. The side of the fourth adhesive layer 1122 facing away from the second glassine paper layer 1121 is adhered to the courier box, thereby achieving a good adhesion between the bottom layer 112 and the courier box, preventing the electronic waybill 100 from falling off the courier box during transportation. For example, the third adhesive layer 11112 and the fourth adhesive layer 1122 may be double-sided tape, self-adhesive stickers, or adhesives.

[0059] like Figure 1 、 Figure 3 and Figure 6 As shown, the electronic waybill 100 is rectangular, with the first and second opening portions 1212, 1112 arranged along the diagonal line 12111 of the electronic waybill 100. Since the first and second opening portions 1212, 1112 are relatively far apart, users can avoid accidentally opening the wrong layer. As a preferred embodiment, corresponding markings can be placed on the upper surface of the surface layer 12 at locations corresponding to the first and second opening portions 1212, 1112, respectively, to remind users to open the corresponding layers. For example, the upper surface of the surface layer 12 can be marked with "Destruction Information" at the location corresponding to the first opening portion 1212, and the upper surface of the surface layer 12 can be marked with "Retain Information" at the location corresponding to the second opening portion 1112.

[0060] As a preferred solution, Figure 3 As shown, the user tears off the surface layer 12 or the middle layer 111 along the diagonal 12111, and sets the through hole 12114 as a parallelogram, with the two sides of the parallelogram parallel to the diagonal 12111, so as to facilitate the separation of the filling part 122 and the surface layer body 121, thereby achieving the effect of better destroying the information on the face sheet.

[0061] As a preferred solution, Figure 3 As shown, the free end of the first unveiling portion 1212 and / or the free end of the second unveiling portion 1112 are rounded to prevent the user from being cut when pinching the first unveiling portion 1212 or the second unveiling portion 1112, thereby improving the user experience.

[0062] Example 2

[0063] like Figure 7As shown, the electronic waybill 200 includes a base layer 21 and a surface layer 22. The surface layer 22 includes a surface layer body 221 and a filling portion 222. The surface layer body 221 is provided with a through hole 2211, and the filling portion 222 is filled in the through hole 2211. After the user removes the surface layer 221 from the base layer 21, the filling portion 222 remains on the base layer 21, thereby destroying the waybill information. This can achieve the purpose of simply and quickly destroying the waybill information.

[0064] The structure of the electronic waybill 200 provided in this embodiment is mainly different from the electronic waybill 100 provided in the first embodiment in that: Figure 7 As shown, the surface layer 221 includes a first printed layer 2212 and a first adhesive layer 2213 adhered to each other. A through hole 2211 extends through the first printed layer 2212 and the first adhesive layer 2213. The filling portion 222 includes a second printed layer 2221 and a second adhesive layer 2222 adhered to each other. The base layer 21 includes a first glassine paper layer 211 adhered to each other. The side of the first adhesive layer 2213 facing away from the first printed layer 2212 is adhered to the first glassine paper 211, and the side of the second adhesive layer 2222 facing away from the second printed layer 2221 is adhered to the first glassine paper 211. Compared to the electronic waybill 100 of the first embodiment, the electronic waybill 200 of this embodiment has fewer layers, a simpler structure, and is easier to manufacture.

[0065] As a preferred solution, Figure 7 As shown, the base layer 21 also includes a third adhesive layer 212, which is arranged on the side of the first glassine paper 211 away from the surface layer 22, so as to enable the electronic label 200 to be adhered to the product to be attached (such as a courier box).

[0066] Example 3

[0067] The structure of the electronic waybill 300 provided in this embodiment is substantially the same as that of the electronic waybill 100 provided in the first embodiment. Figure 8 As shown, the electronic waybill 300 includes a base layer 31 and a surface layer 32. The surface layer 32 includes a surface layer body 321 and a filling portion 322. The surface layer body 321 has a through hole 3211, and the filling portion 322 fills the through hole 3211. After the user removes the surface layer 321 from the base layer 31, the filling portion 322 remains on the base layer 31, thereby destroying the waybill information. This can achieve the purpose of simply and quickly destroying the waybill information.

[0068] The structure of the electronic waybill 300 provided in this embodiment is mainly different from the electronic waybill 100 provided in the first embodiment in that: Figure 8As shown, the surface layer 321 includes a first printed layer 3212 and a first glassine paper layer 3213, which are bonded together. A through hole 3211 extends through the first printed layer 3212 and the first glassine paper layer 3213. The filling portion 322 includes a second printed layer 3221 and a second glassine paper layer 3222, which are bonded together. The base layer 31 includes a third glassine paper layer 311 and a second adhesive layer 313, which are bonded together. The first glassine paper layer 3213 and the second glassine paper layer 3222 are respectively bonded to the side of the second adhesive layer 313 facing away from the third glassine paper layer 311. Compared to the electronic waybill 100 of the first embodiment, the electronic waybill 300 of this embodiment has fewer layers, a simpler structure, and is easier to manufacture.

[0069] As a preferred solution, Figure 8 As shown, the base layer 31 also includes a first adhesive layer 312, which is adhered to the side of the third glassine paper layer 311 facing away from the second adhesive layer 313. The first adhesive layer 312 can achieve the function of adhering the electronic waybill 300 to the product to be adhered (such as a courier box).

[0070] Example 4

[0071] The structure of the electronic waybill 400 provided in this embodiment is mainly different from the electronic waybill 100 provided in the first embodiment in that: Figure 9 As shown, the electronic waybill 400 includes a base layer 41 and a surface layer 42. The base layer 41 includes a first glassine paper layer 411 and multiple first adhesive layers 412 distributed on one side thereof. The surface layer 42 is adhered to the first adhesive layer 412, and the surface of the surface layer 42 facing away from the first adhesive layer 412 constitutes the information-bearing surface. After the user removes the surface layer 42 from the base layer 21, the portion of the surface layer 42 adhered to the first adhesive layer 412 remains on the base layer 41, thereby destroying the waybill information. This allows for simple and quick destruction of the waybill information. Compared to the electronic waybill 100 of the first embodiment, the electronic waybill 300 of this embodiment has fewer layers, a simpler structure, and is easier to manufacture.

[0072] In order to ensure that the surface layer 42 is firmly adhered to the base layer 41 and to prevent the surface layer 42 from falling off from the base layer 41 during the transportation of the express box, Figure 9 As shown, the plurality of first adhesive layers 412 are arranged in an array.

[0073] Example 5

[0074] The structure of the electronic waybill 500 provided in this embodiment is mainly different from the electronic waybill 100 provided in the first embodiment in that: Figure 10As shown, the surface layer 52 is provided with a plurality of through holes 521. The surface layer 52 is adhered to the base layer 51. The surface of the surface layer 52 facing away from the base layer 51 and the surface of the base layer 51 exposed by the through holes 521 together constitute the information-bearing surface. After the user removes the surface layer 52 from the base layer 51, a portion of the face sheet information remains on the surface layer 52, while a portion remains on the base layer 51, thereby achieving the purpose of destroying the face sheet information, which can achieve the purpose of simply and quickly destroying the face sheet information. Compared to the electronic face sheet 100 of the first embodiment, the electronic face sheet 300 of this embodiment has fewer layers, a simpler structure, and is easier to manufacture.

[0075] Specifically, if Figure 10 As shown, the surface layer 52 includes a first printed layer 522 and a first adhesive layer 523 adhered to each other, with a through hole 521 extending through the first printed layer 522 and the first adhesive layer 523. The base layer 51 includes a second printed layer 511, with the first adhesive layer 523 adhered to one side of the first printed layer 522. Furthermore, to ensure that the electronic waybill 500 is adhered to the courier box, the base layer 51 also includes a second adhesive layer 512 adhered to the side of the first printed layer 522 facing away from the first adhesive layer 523. The second adhesive layer 512 adheres to the courier box to prevent the electronic waybill 500 from falling off the courier box during transportation.

[0076] Example 6

[0077] The structure of the electronic waybill 600 provided in this embodiment is mainly different from the electronic waybill 500 provided in the fifth embodiment in that: Figure 11 As shown, the base layer 61 includes a connecting layer 611, which includes an adhesive portion 6111 and multiple printing portions 6112. Each printing portion 6112 has the same shape and size as the corresponding through-hole 621 and is arranged directly opposite each other. The adhesive portion 6111 is made of glassine paper, and the printing portion 6112 is made of printing paper. When the first adhesive layer 623 is adhered to the adhesive portion 6111, the printing portion 6112 and the first printed layer 622 together form the information-bearing surface. After the user removes the surface layer 62 from the base layer 61, a portion of the face sheet information remains on the first printed layer 622, while a portion remains on the printing portion 6112, thereby achieving the purpose of destroying the face sheet information simply and quickly.

[0078] In addition, in order to enable the electronic waybill 600 to be adhered to the express box, the base layer 61 also includes a second adhesive layer 612 adhered to the side of the connecting layer 611 away from the first adhesive layer 623. The second adhesive layer 612 is adhered to the express box to prevent the electronic waybill 600 from falling off the express box during transportation.

[0079] Note that the basic principles and main features of the present invention and the advantages of the present invention are shown and described above. It should be understood by those skilled in the art that the present invention is not limited to the above-described embodiments, which are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and modifications are intended to fall within the scope of the present invention as claimed, which is defined by the appended claims and their equivalents.

Claims

1. An electronic waybill, comprising a base layer and a surface layer, characterized in that: The surface layer is arranged on one side of the base layer, and the base layer and the surface layer together constitute an information bearing surface, and the information bearing surface is used to carry the waybill information. After the surface layer is removed from the base layer, a part of the waybill information remains on the base layer, and another part of the waybill information remains on the surface layer; The surface layer includes a surface layer body adhered to the base layer and a filling portion, the surface layer body is provided with a plurality of through holes, the filling portion is filled in the through holes, and the surface of the surface layer away from the base layer constitutes the information carrying surface; The surface layer body comprises a first adhesive portion (1211) and a first uncovering portion (1212), the through hole is provided on the first adhesive portion (1211), the first adhesive portion (1211) is adhered to the base layer, and the first uncovering portion (1212) is connected to a corner of the first adhesive portion (1211) and is separated from the base layer; The electronic waybill is rectangular, the first uncovering portion (1212) is arranged on the diagonal line (12111) of the electronic waybill, the through hole is a parallelogram, and two sides of the parallelogram are parallel to the diagonal line (12111).

2. The electronic waybill according to claim 1, characterized in that: The surface layer body and the filling portion are connected via a tear line.

3. The electronic waybill according to claim 1, characterized in that: The base layer comprises an intermediate layer (111) and a bottom layer (112), one side surface of the intermediate layer (111) is adhered to the bottom layer (112), and the surface layer body and the filling portion are adhered to the other side surface of the intermediate layer (111).

4. The electronic waybill according to claim 3, characterized in that: The middle layer (111) comprises a second adhesive portion (1111) and a second uncovering portion (1112), wherein the second adhesive portion (1111) is adhered to the bottom layer (112) on the side facing away from the first adhesive portion (1211), and the second uncovering portion (1112) is connected to a corner of the second adhesive portion (1111) and is separated from the bottom layer (112).

5. The electronic waybill according to claim 4, characterized in that: The first uncovering portion (1212) and the second uncovering portion (1112) are distributed along the diagonal line (12111) of the electronic waybill, and the cross-sectional area of ​​the through hole is 1 mm² to 3 mm².

6. The electronic waybill according to claim 1, characterized in that: The surface layer is provided with a plurality of through holes, the surface layer is adhered to the base layer, and the surface of the surface layer facing away from the base layer and the surface of the base layer exposed by the through holes together constitute the information bearing surface.

7. The electronic waybill according to claim 1, characterized in that: The base layer includes a first glassine paper layer and a plurality of first adhesive layers distributed on one side thereof. The surface layer is adhered to the first adhesive layer, and the surface of the surface layer facing away from the first adhesive layer constitutes the information bearing surface.

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