A marking strip and a mold for molding a marking strip
By setting an interlocking anti-slip structure on the marking strips, the problems of slippage and rotation when the marking strips are stacked are solved, enabling accurate identification and efficient production by laser printing equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO GAOSONG NEW ENERGY TECH CO LTD
- Filing Date
- 2025-05-22
- Publication Date
- 2026-07-03
AI Technical Summary
The marking strips are prone to relative sliding and rotation after being stacked, making it difficult for laser printing equipment to recognize them and affecting production efficiency and quality.
The marking strip is equipped with a first anti-slip structure and a second anti-slip structure. An interlocking interface is provided on the side of the frame. The anti-slip structure includes anti-slip grooves and anti-slip posts to ensure stable stacking of the marking strips in parallel with the information printing surface.
It effectively prevents the marking strips from sliding and rotating during the stacking process, ensuring accurate identification by laser printing equipment, improving production efficiency and quality, and providing a gap for easy picking.
Smart Images

Figure CN224448565U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electrical equipment technology, and in particular to a marking strip and a mold for forming the marking strip. Background Technology
[0002] A sign, which has numbers, letters, symbols or colors printed on its surface, is used in the electrical industry to identify electrical information.
[0003] During production, multiple markers are mounted on a frame to form marker strips. The markings on the markers are usually printed using laser printing equipment. To facilitate actual production, multiple marker strips are usually stacked before being sent to the laser printing equipment. In the existing technology, the marker strips may slide relative to each other after being stacked, causing misalignment, which makes it difficult for the laser printing equipment to identify them, resulting in low production efficiency and even affecting the final quality. Utility Model Content
[0004] To overcome the shortcomings of existing technologies, this invention provides a marking strip with a first anti-slip structure and a second anti-slip structure. This restricts the relative sliding and rotation of the marking strips within a plane parallel to the information printing surface when they are stacked, which is beneficial for the recognition of laser printing equipment. This invention also provides a mold for forming the marking strip.
[0005] To achieve the above objectives, the present invention employs the following technical solution:
[0006] A marking strip includes a frame and one or more marking plates, the marking plates being connected to the frame via a connecting part, the marking plates having an information printing surface for printing information; the frame is provided with a first anti-slip structure on a first frame side in a direction perpendicular to the information printing surface, and the frame is provided with a second anti-slip structure matching the first anti-slip structure on a second frame side in a direction perpendicular to the information printing surface;
[0007] The first anti-slip structure and the second anti-slip structure work together to form an interlocking interface between the first frame side and the second frame side.
[0008] By adopting the above technical solution, since the first anti-slip structure and the second anti-slip structure cooperate to form an interlocking interface between the first frame side and the second frame side, when multiple marking strips are stacked, the first anti-slip structure on one of two adjacent marking strips can match the second anti-slip structure on the other, which can prevent relative sliding and rotation between two adjacent marking strips in a plane parallel to the information printing surface, thus ensuring the accurate relative position of multiple marking strips. This ensures that when multiple marking strips are placed in the laser printing equipment, the equipment can accurately and effectively identify and print them, and ensure the accuracy of the printing position, thereby improving production efficiency and quality.
[0009] Specifically, the frame is provided with a second anti-slip structure at a position relative to the first anti-slip structure, so that when multiple marker strips are stacked, the first anti-slip structure on one of two adjacent marker strips can be positioned opposite to the second anti-slip structure on the other to achieve mutual cooperation.
[0010] Furthermore, one of the first anti-slip structure and the second anti-slip structure is configured as an anti-slip groove, and the other of the first anti-slip structure and the second anti-slip structure is configured as an anti-slip post, and at least one end of the anti-slip post that is away from the frame can be inserted into the anti-slip groove;
[0011] The cross-section of one end of the anti-slip post that can be inserted into the anti-slip groove is polygonal, and the cross-section of the anti-slip groove is a matching polygonal; and / or there are multiple anti-slip posts and multiple anti-slip grooves, with each of the multiple anti-slip posts and multiple anti-slip grooves corresponding one-to-one.
[0012] By adopting the above technical solution, the first anti-slip structure and the second anti-slip structure are more reasonable. When multiple marker strips are stacked, the anti-slip post on one of two adjacent marker strips can be inserted into the anti-slip groove on the other, thereby limiting the relative sliding between the two adjacent marker strips.
[0013] When the cross-section of one end of the anti-slip post that can be inserted into the anti-slip groove is polygonal, and the cross-section of the anti-slip groove is a matching polygonal; and / or when there are multiple anti-slip posts and multiple anti-slip grooves, and the multiple anti-slip posts and multiple anti-slip grooves correspond one-to-one, the anti-slip post on one of two adjacent marker strips and the anti-slip groove on the other can cooperate to restrict the relative rotation between the two adjacent marker strips;
[0014] Furthermore, under a certain force, the anti-slip post and the anti-slip groove can still cooperate stably and reliably, meaning that the mutual cooperation between the anti-slip post and the anti-slip groove provides more stable and reliable restriction between two adjacent marking strips.
[0015] Furthermore, when multiple marker strips are interlocked and stacked through the first anti-slip structure and the second anti-slip structure, there is a pickup gap between the frames and / or marker plates of any two adjacent marker strips to facilitate the picking up of the marker strips by the feeding equipment.
[0016] By adopting the above technical solution, when multiple marker strips are stacked, there is a picking gap between two adjacent marker strips, that is, there is sufficient space between two adjacent marker strips, which facilitates the picking by the feeding equipment; especially when the height of the frame and the overall height of the marker strip is small.
[0017] Specifically, the height of the anti-slip post matches the depth of the anti-slip groove to support a pickup gap between two adjacent marker strips, and the above technical solution is reasonably designed.
[0018] Furthermore, at least the inner wall of the anti-slip groove near its opening is formed as a first guide portion for guiding the anti-slip post into the anti-slip groove, and / or at least the outer wall of the anti-slip post away from the frame is formed as a second guide portion for guiding the anti-slip post into the anti-slip groove.
[0019] By adopting the above technical solution, the arrangement of the anti-slip post and the anti-slip groove is more reasonable. The arrangement of the first guide part and / or the second guide part makes it convenient for the anti-slip post of one of the marker strips to be inserted into the anti-slip groove when one of the marker strips is stacked on top of another marker strip.
[0020] Furthermore, along the direction from the opening of the anti-slip groove to its bottom surface, the first guide portion gradually narrows inward; along the direction from the side of the anti-slip post toward the frame to the side away from the frame, the second guide portion gradually narrows inward.
[0021] By adopting the above technical solution, the first guide part and the second guide part are more reasonably positioned, which facilitates the insertion of the anti-slip post into the anti-slip groove. Moreover, the above technical solution does not require very precise alignment when the marking strips are stacked, that is, it does not require ensuring that the central axis of the anti-slip post is aligned with the central axis of the anti-slip groove. When there is a certain deviation between the two, the first guide part and / or the second guide part can still guide the anti-slip post into the anti-slip groove and can make certain corrections. This further enables operators to stack the strips conveniently and quickly.
[0022] Furthermore, the first frame side or the second frame side of the frame is provided with a support column that protrudes along the direction perpendicular to the information printing surface;
[0023] When multiple marker strips are stacked and interlocked by the first anti-slip structure and the second anti-slip structure, the support column on one of two adjacent marker strips abuts against the frame of the other.
[0024] The support columns are provided in multiple ways. The frame has a length direction and a width direction. The multiple support columns are arranged in multiple columns along the length direction of the frame and in multiple rows along the width direction of the frame.
[0025] The arrangement of multiple A elements along the length of the frame in multiple columns can be understood as follows: A elements are arranged in multiple columns, with the columns spaced apart along the length of the frame, and the extension direction of each column being the width direction of the frame.
[0026] Multiple A elements arranged in multiple rows along the width of the frame can be understood as follows: A elements are arranged in multiple rows, with the rows spaced apart along the width of the frame, and the extension direction of each row is the length direction of the frame, and the same applies below.
[0027] By adopting the above technical solution, the marking strip is made more reasonable; when the marking strip is thin and long, the setting and distribution of the support columns are reasonable, which can support the marking strip and prevent it from bending and deforming. Especially when there are too many marking strips stacked, it can effectively suppress the deformation of the lower layer of marking strips, thereby avoiding affecting the recognition and picking of the laser printing equipment.
[0028] Specifically, the support columns between adjacent rows can be arranged in the same position or staggered.
[0029] Furthermore, the anti-slip post is provided with one or more of the support posts, and some or all of the support posts are formed as the anti-slip post.
[0030] By adopting the above technical solution, the marking strip becomes more reasonable, and some or all of the support columns are formed as anti-slip columns, which simplifies the structure of the marking strip and facilitates the positional distribution of the anti-slip columns and the support columns;
[0031] Of course, if only some of the support columns are formed as anti-slip columns, and the height of the support columns formed as anti-slip columns is greater than the height of the support columns not formed as anti-slip columns, such that when the support columns not formed as anti-slip columns abut against the frame of another marking strip, the support columns formed as anti-slip columns can be inserted into the anti-slip groove.
[0032] Furthermore, in the arrangement of the plurality of support columns, at least three or more support columns are arranged in columns located at both ends and the middle of the frame in the length direction, and are equally spaced along the width direction of the frame; in the arrangement of the plurality of support columns, at least three or more support columns are arranged in rows located at both ends and the middle of the frame in the width direction, and are equally spaced along the length direction of the frame.
[0033] By adopting the above technical solution, the position distribution of the support columns is more reasonable, the support columns can support the marking strip more stably and reliably, effectively avoid the marking strip from bending and deforming in its length and width directions, and enable more marking strips to be superimposed on it without deforming the marking strip.
[0034] Furthermore, the frame includes a first frame edge strip, a second frame edge strip, and a frame connecting strip. The first frame edge strip and the second frame edge strip are spaced apart and extend along a first direction. The frame connecting strip is disposed between the first frame edge strip and the second frame edge strip, and both ends of the frame connecting strip are respectively connected to the first frame edge strip and the second frame edge strip.
[0035] The sign is connected to the frame connecting strip via the connecting part, and the surface where the information printing of the sign is located is parallel to the first direction and the length direction of the frame connecting strip;
[0036] The first anti-slip structure and the second anti-slip structure are disposed on the frame connecting strip.
[0037] The above technical solution makes the framework more reasonable.
[0038] Furthermore, one end of the connecting part is connected to the frame connecting strip, and the other end is connected to the sign, and the connection between the connecting part and the sign is configured as a predetermined fracture structure.
[0039] By adopting the above technical solution, the connection part is made more reasonable, so that after the marking strip is completely processed, the marking tag can be easily removed from the frame by a predetermined fracture structure.
[0040] Furthermore, multiple anti-slip posts and multiple anti-slip grooves are provided, with each of the multiple anti-slip posts and multiple anti-slip grooves corresponding to one another.
[0041] By adopting the above technical solution, the arrangement of the anti-slip posts and anti-slip grooves is more reasonable. The cooperation of multiple anti-slip posts and multiple anti-slip grooves can make the restriction of the relative movement between two adjacent marking strips more stable and reliable.
[0042] Furthermore, the frame has a length direction, and a plurality of anti-slip posts are arranged in multiple columns along the length direction of the frame. In each column of the arrangement of the plurality of anti-slip posts, at least two anti-slip posts are provided, and the anti-slip posts in each column include a first anti-slip post and a second anti-slip post. The anti-slip groove includes a first anti-slip groove into which the first anti-slip post can be inserted and a second anti-slip groove into which the second anti-slip post can be inserted. The frame is provided with the first anti-slip groove on the opposite side of the location where the first anti-slip post is provided, and with the second anti-slip groove on the opposite side of the location where the second anti-slip post is provided. The first anti-slip post cannot be inserted into the second anti-slip groove and / or the second anti-slip post cannot be inserted into the first anti-slip groove.
[0043] By adopting the above technical solution, the setting of the anti-slip post and the anti-slip groove is more reasonable. Since the first anti-slip post cannot be inserted into the second anti-slip groove and / or the second anti-slip post cannot be inserted into the first anti-slip groove, when the marking strips are stacked, it can prevent the two adjacent marking strips from being misaligned in their width direction, thereby ensuring that the laser printing equipment can effectively identify them.
[0044] Specifically, the cross-section of the first anti-slip post is different from that of the second anti-slip post, so that the first anti-slip post cannot be inserted into the second anti-slip groove and / or the second anti-slip post cannot be inserted into the first anti-slip groove;
[0045] More specifically, the cross-section of the first anti-slip post is polygonal, especially quadrilateral, and the cross-section of the second anti-slip post is circular. The length of the cross-section of the first anti-slip post is greater than the diameter of the cross-section of the second anti-slip post, and the width of the cross-section of the first anti-slip post is less than the diameter of the cross-section of the second anti-slip post.
[0046] Furthermore, multiple frame connecting strips are provided, and the multiple frame connecting strips are spaced apart along the first direction, with some or all of the frame connecting strips having the marking plate;
[0047] When the frame connecting strip is provided with the marking plate, the marking plate is provided on one or both sides of the frame connecting strip in the first direction, and along the length direction of the frame connecting strip, the marking plate is arranged on the side of the frame connecting strip.
[0048] By adopting the above technical solution, the framework becomes more reasonable, and the setting of the signboard becomes more reasonable, which facilitates actual production.
[0049] Furthermore, the first direction is the length direction of the frame, the length direction of the frame connecting strip is the width direction of the frame, and the two ends of the frame connecting strip along its length direction are provided with the first anti-slip post and the first anti-slip groove, and the middle position is provided with the second anti-slip post and the second anti-slip groove.
[0050] By adopting the above technical solution, the marking strip is made more reasonable, and the arrangement of the first anti-slip post and the first anti-slip groove, the second anti-slip post and the second anti-slip groove is more reasonable.
[0051] Furthermore, along the first direction, the two outermost frame connecting strips are not provided with the marking plate, or the marking plate is provided on the side facing inward along the first direction and not on the side facing outward. The frame connecting strip between the two outermost frame connecting strips is provided with the marking plate on both sides of its first direction.
[0052] The above technical solution makes the marking bar more reasonable.
[0053] A mold for forming a marker strip includes a male mold and a female mold, which can move closer to and further away from each other, thereby allowing the mold for forming the marker strip to switch between an open state and a closed state. When the mold for forming the marker strip is in the closed state, the male mold and the female mold cooperate to form a forming cavity for forming the marker strip. The forming cavity includes a frame forming cavity for forming the frame and a marker forming cavity for forming the marker. The male mold is provided with a first anti-slip forming structure for forming the first anti-slip structure in the frame forming cavity, and the female mold is provided with a second anti-slip forming structure for forming the second anti-slip structure in the frame forming cavity.
[0054] Using the above technical solution, the mold for forming the marking strip can be used to produce the marking strip; specifically, the positions of the first anti-slip forming structure and the second anti-slip forming structure are arranged in a one-to-one correspondence.
[0055] Furthermore, one of the first anti-slip molding structure and the second anti-slip molding structure is configured as a molding column, and the other of the first anti-slip molding structure and the second anti-slip molding structure is configured as a molding groove; the molding column extends into the frame molding cavity to form an anti-slip groove, and the side of the molding groove facing the frame molding cavity is connected to the frame molding cavity to form an anti-slip column.
[0056] By adopting the above technical solution, the first anti-slip molding structure and the second anti-slip molding structure are more reasonable; specifically, the setting of the molding column facilitates the molding of the anti-slip groove on the frame, and the setting of the molding groove facilitates the molding of the anti-slip column on the frame.
[0057] Compared with the prior art, the present invention has the following beneficial effects:
[0058] (1) The marking strip of this utility model is provided with a first anti-slip structure and a second anti-slip structure, so that when the marking strips are stacked, they can be restricted to relative sliding and rotation in a plane parallel to the information printing surface, which is beneficial to the recognition of laser printing equipment.
[0059] (2) The height of the anti-slip column of the marking strip of this utility model is such that after multiple marking strips are stacked, there is a picking gap between the frames of two adjacent marking strips to facilitate the feeding equipment to pick up the marking strips, and / or there is a picking gap between the marking plates of two adjacent marking strips to facilitate the feeding equipment to pick up the marking strips, so as to facilitate the feeding equipment to pick up the marking strips.
[0060] (3) The marking strip of this utility model has a support column that can support the marking strip and prevent it from bending and deforming. In particular, when there are too many marking strips stacked, it can effectively suppress the deformation of the lower marking strips, thereby avoiding affecting the recognition and picking of the laser printing equipment.
[0061] (4) The marking strip and the mold used to form the marking strip of this utility model are reasonably designed. Attached Figure Description
[0062] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0063] Figure 1 This is a three-dimensional structural diagram of the marking strip of this utility model;
[0064] Figure 2 This is a three-dimensional structural diagram of the marking strip of this utility model from another angle;
[0065] Figure 3 This is a top view of the marking strip of this utility model;
[0066] Figure 4 This is a bottom view of the marking strip of this utility model;
[0067] Figure 5 This is a schematic diagram of the structure of the marking strips of this utility model in a stacked state;
[0068] Figure 6 This is a cross-sectional view of the stacked marking strips of this utility model.
[0069] The component names corresponding to the various reference numerals in the figure are as follows: 1. Frame; 101. First frame side; 102. Second frame side; 103. First frame edge strip; 104. Second frame edge strip; 105. Frame connecting strip; 2. Marking plate; 201. Information printing surface; 3. Connecting part; 4. First anti-slip structure; 5. Second anti-slip structure; 6. Anti-slip groove; 601. First guide part; 602. First anti-slip groove; 603. Second anti-slip groove; 7. Anti-slip post; 701. Second guide part; 702. First anti-slip post; 703. Second anti-slip post; 8. Support post. Detailed Implementation
[0070] The present application will now be described in detail with reference to the accompanying drawings and specific embodiments.
[0071] The following specific examples illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. This application can also be implemented or applied through other different specific embodiments, and the details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be noted that, in the absence of conflict, the following embodiments and features in the embodiments can be combined with each other. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0072] It should be noted that various aspects of embodiments within the scope of the appended claims are described below. It will be apparent that the aspects described herein can be embodied in a wide variety of forms, and any particular structure and / or function described herein is merely illustrative. Based on this application, those skilled in the art will understand that one aspect described herein can be implemented independently of any other aspect, and two or more of these aspects can be combined in various ways. For example, any number and aspects set forth herein can be used to implement the device and / or practice the method. Additionally, this device and / or method can be implemented using structures and / or functionalities other than one or more of the aspects set forth herein.
[0073] It should also be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of this application. The drawings only show the components related to this application and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.
[0074] Additionally, specific details are provided in the following description to facilitate a thorough understanding of the examples. However, those skilled in the art will understand that practice can be carried out without these specific details.
[0075] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0076] The technical solutions provided by the various embodiments of this application are described below with reference to the accompanying drawings.
[0077] See Figures 1 to 6 This utility model provides a marking strip, including a frame 1 and one or more marking plates 2. The marking plates 2 are connected to the frame 1 through a connecting part 3. The marking plates 2 have an information printing surface 201 for printing information. The frame 1 is provided with a first anti-slip structure 4 on a first frame side 101 in a direction perpendicular to the information printing surface 201. The frame 1 is provided with a second anti-slip structure 5 on a second frame side 102 in a direction perpendicular to the information printing surface 201, which matches the first anti-slip structure 4.
[0078] The first anti-slip structure 4 and the second anti-slip structure 5 cooperate to form an interlocking interface between the first frame side 101 and the second frame side 102.
[0079] By adopting the above technical solution, since the first anti-slip structure 4 and the second anti-slip structure 5 cooperate to form an interlocking interface between the first frame side 101 and the second frame side 102, when multiple marking strips are stacked, the first anti-slip structure 4 on one of two adjacent marking strips can match the second anti-slip structure 5 on the other, which can prevent relative sliding and rotation between two adjacent marking strips in a plane parallel to the information printing surface 201, thus ensuring the accurate relative position of multiple marking strips. This ensures that when multiple marking strips are placed in the laser printing equipment, the equipment can be accurately and effectively identified and printed, and the accuracy of the printing position is guaranteed, thereby improving production efficiency and quality.
[0080] Specifically, the frame 1 is provided with the second anti-slip structure 5 at the relative position of the first anti-slip structure 4, so that when multiple marker strips are stacked, the first anti-slip structure 4 on one of two adjacent marker strips can be positioned opposite to the second anti-slip structure 5 on the other to achieve mutual cooperation.
[0081] Furthermore, one of the first anti-slip structure 4 and the second anti-slip structure 5 is configured as an anti-slip groove 6, and the other of the first anti-slip structure 4 and the second anti-slip structure 5 is configured as an anti-slip post 7, and at least one end of the anti-slip post 7 that is away from the frame 1 can be inserted into the anti-slip groove 6;
[0082] The cross-section of one end of the anti-slip post 7 that can be inserted into the anti-slip groove 6 is polygonal, and the cross-section of the anti-slip groove 6 is a matching polygon; and / or there are multiple anti-slip posts 7 and multiple anti-slip grooves 6, with each of the multiple anti-slip posts 7 and multiple anti-slip grooves 6 corresponding one-to-one.
[0083] By adopting the above technical solution, the first anti-slip structure 4 and the second anti-slip structure 5 are more reasonable. When multiple marker strips are stacked, the anti-slip post 7 on one of two adjacent marker strips can be inserted into the anti-slip groove 6 on the other, thereby limiting the relative sliding between the two adjacent marker strips.
[0084] When the cross-section of one end of the anti-slip post 7 that can be inserted into the anti-slip groove 6 is polygonal, and the cross-section of the anti-slip groove 6 is a matching polygon; and / or when there are multiple anti-slip posts 7 and multiple anti-slip grooves 6, and the multiple anti-slip posts 7 and multiple anti-slip grooves 6 correspond one-to-one, the anti-slip post 7 on one of two adjacent marker strips and the anti-slip groove 6 on the other can cooperate to restrict the relative rotation between the two adjacent marker strips;
[0085] Furthermore, under a certain force, the anti-slip post 7 and the anti-slip groove 6 can still cooperate stably and reliably, that is, the mutual cooperation between the anti-slip post 7 and the anti-slip groove 6 provides more stable and reliable restriction between two adjacent marking strips.
[0086] Furthermore, when multiple marker strips are interlocked and stacked through the first anti-slip structure 4 and the second anti-slip structure 5, there is a picking gap between the frames 1 and / or marker plates 2 of any two adjacent marker strips to facilitate the picking up of the marker strips by the feeding equipment.
[0087] By adopting the above technical solution, when multiple marker strips are stacked, there is a picking gap between two adjacent marker strips, that is, there is sufficient space between two adjacent marker strips, which facilitates the picking by the feeding equipment; especially when the overall height of the frame 1 and the marker 2 in the marker strip is small.
[0088] Specifically, the height of the anti-slip post 7 is matched with the depth of the anti-slip groove 6 to support a pickup gap between two adjacent marker strips. The above technical solution is reasonably designed.
[0089] Furthermore, at least the inner wall of the anti-slip groove 6 near its opening is formed as a first guide portion 601 for guiding the anti-slip post 7 into the anti-slip groove 6, and / or at least the outer wall of the anti-slip post 7 away from the frame 1 is formed as a second guide portion 701 for guiding the anti-slip post 7 into the anti-slip groove 6.
[0090] By adopting the above technical solution, the anti-slip post 7 and the anti-slip groove 6 are set more reasonably. The setting of the first guide part 601 and / or the second guide part 701 makes it convenient for the anti-slip post 7 of one of the marker strips to be inserted into the anti-slip groove 6 when one of the marker strips is stacked on top of another.
[0091] Furthermore, along the direction from the opening of the anti-slip groove 6 to its bottom surface, the first guide portion 601 gradually narrows inward; along the direction from the side of the anti-slip post 7 toward the frame 1 to the side away from the frame 1, the second guide portion 701 gradually narrows inward.
[0092] By adopting the above technical solution, the arrangement of the first guide part 601 and the second guide part 701 is more reasonable, which facilitates the effect of guiding the anti-slip post 7 into the anti-slip groove 6. Moreover, the above technical solution does not require very precise alignment when the marking strips are stacked, that is, it does not need to ensure that the central axis of the anti-slip post 7 is aligned with the central axis of the anti-slip groove 6. When there is a certain deviation between the two, the first guide part 601 and / or the second guide part 701 can still guide the anti-slip post 7 into the anti-slip groove 6 and can make certain corrections. This further enables operators to stack the strips conveniently and quickly.
[0093] Furthermore, the first frame side 101 or the second frame side 102 of the frame 1 is provided with a support column 8 that protrudes along a direction perpendicular to the information printing surface 201;
[0094] When multiple marker strips are interlocked and stacked through the first anti-slip structure 4 and the second anti-slip structure 5, the support column 8 on one of two adjacent marker strips abuts against the frame 1 of the other.
[0095] Multiple support columns 8 are provided. The frame 1 has a length direction and a width direction. The multiple support columns 8 are arranged in multiple columns along the length direction of the frame 1 and in multiple rows along the width direction of the frame 1.
[0096] The arrangement of multiple A elements along the length of the frame 1 in multiple columns can be understood as follows: A elements are arranged in multiple columns, with the columns spaced apart along the length of the frame 1, and the extension direction of each column is the width direction of the frame 1.
[0097] The arrangement of multiple A elements along the width of the frame 1 in multiple rows can be understood as follows: A elements are arranged in multiple rows, with the rows spaced apart along the width of the frame 1, and the extension direction of each row is the length direction of the frame 1, and so on.
[0098] By adopting the above technical solution, the marking strip is made more reasonable; when the marking strip is thin and long, the setting and distribution of the support column 8 are reasonable, which can support the marking strip and prevent it from bending and deforming. Especially when there are too many marking strips stacked, it can effectively suppress the deformation of the lower layer of marking strips, thereby avoiding affecting the recognition and picking of the laser printing equipment.
[0099] Specifically, the support columns 8 between adjacent rows can be arranged in the same position or staggered.
[0100] Furthermore, the anti-slip post 7 is provided with one or more of the support posts 8 forming the anti-slip post 7.
[0101] By adopting the above technical solution, the marking strip is made more reasonable, and some or all of the support columns 8 are formed as anti-slip columns 7, which simplifies the structure of the marking strip and facilitates the positional distribution of the anti-slip columns 7 and the support columns 8.
[0102] Of course, if only a portion of the support column 8 is formed as the anti-slip column 7, and the height of the support column 8 formed as the anti-slip column 7 is greater than the height of the support column 8 not formed as the anti-slip column 7, such that the support column 8 not formed as the anti-slip column 7 abuts against the frame 1 of another marking strip, the support column 8 formed as the anti-slip column 7 can be inserted into the anti-slip groove 6.
[0103] Furthermore, in the arrangement of the plurality of support columns 8, at least three or more support columns 8 are arranged in columns located at both ends and the middle of the length direction of the frame 1, and are equally spaced along the width direction of the frame 1; in the arrangement of the plurality of support columns 8, at least three or more support columns 8 are arranged in rows located at both ends and the middle of the width direction of the frame 1, and are equally spaced along the length direction of the frame 1.
[0104] By adopting the above technical solution, the position distribution of the support column 8 is more reasonable, the support column 8 can support the marking strip more stably and reliably, effectively avoid the marking strip from bending and deforming in its length and width directions, and enable more marking strips to be superimposed on it without deforming the marking strip.
[0105] Further, the frame 1 includes a first frame edge strip 103, a second frame edge strip 104, and a frame connecting strip 105. The first frame edge strip 103 and the second frame edge strip 104 are spaced apart and extend along a first direction. The frame connecting strip 105 is disposed between the first frame edge strip 103 and the second frame edge strip 104, and both ends of the frame connecting strip 105 are respectively connected to the first frame edge strip 103 and the second frame edge strip 104.
[0106] The sign 2 is connected to the frame connecting strip 105 via the connecting part 3, and the surface where the information printing surface 201 of the sign 2 is located is parallel to the first direction and the length direction of the frame connecting strip 105;
[0107] The first anti-slip structure 4 and the second anti-slip structure 5 are disposed on the frame connecting strip 105.
[0108] By adopting the above technical solution, the framework 1 becomes more reasonable.
[0109] Furthermore, one end of the connecting part 3 is connected to the frame connecting strip 105 and the other end is connected to the marker 2, and the connection between the connecting part 3 and the marker 2 is configured as a predetermined fracture structure.
[0110] By adopting the above technical solution, the connecting part 3 is made more reasonable, so that after the marking strip is completely processed, the marking plate 2 can be easily removed from the frame 1 by means of a predetermined fracture structure.
[0111] Furthermore, multiple anti-slip posts 7 and multiple anti-slip grooves 6 are provided, with each of the multiple anti-slip posts 7 and multiple anti-slip grooves 6 corresponding to one another.
[0112] By adopting the above technical solution, the anti-slip post 7 and the anti-slip groove 6 are set more reasonably. The cooperation of multiple anti-slip posts 7 and multiple anti-slip grooves 6 can make the restriction of the relative movement between two adjacent marking strips more stable and reliable.
[0113] Furthermore, the frame 1 has a length direction, and a plurality of anti-slip posts 7 are arranged in multiple columns along the length direction of the frame 1. Each column of the plurality of anti-slip posts 7 is provided with at least two anti-slip posts 7, and each column of anti-slip posts 7 includes a first anti-slip post 702 and a second anti-slip post 703. The anti-slip groove 6 includes a first anti-slip groove 602 into which the first anti-slip post 702 can be inserted, and a second anti-slip groove 603 into which the second anti-slip post 703 can be inserted. The frame 1 is provided with the first anti-slip groove 602 on the opposite side where the first anti-slip post 702 is provided, and the second anti-slip groove 603 is provided on the opposite side where the second anti-slip post 703 is provided. The first anti-slip post 702 cannot be inserted into the second anti-slip groove 603 and / or the second anti-slip post 703 cannot be inserted into the first anti-slip groove 602.
[0114] By adopting the above technical solution, the anti-slip post 7 and the anti-slip groove 6 are set more reasonably. Since the first anti-slip post 702 cannot be inserted into the second anti-slip groove 603 and / or the second anti-slip post 703 cannot be inserted into the first anti-slip groove 602, when the marking strips are stacked, the misalignment of two adjacent marking strips in their width direction can be avoided, thereby ensuring effective recognition by the laser printing equipment.
[0115] Specifically, the cross-section of the first anti-slip post 702 is different from the cross-section of the second anti-slip post 703, so that the first anti-slip post 702 cannot be inserted into the second anti-slip groove 603 and / or the second anti-slip post 703 cannot be inserted into the first anti-slip groove 602;
[0116] More specifically, the cross-section of the first anti-slip post 702 is polygonal, especially quadrilateral, and the cross-section of the second anti-slip post 703 is circular. The length of the cross-section of the first anti-slip post 702 is greater than the diameter of the cross-section of the second anti-slip post 703, and the width of the cross-section of the first anti-slip post 702 is less than the diameter of the cross-section of the second anti-slip post 703.
[0117] Furthermore, multiple frame connecting strips 105 are provided, and the multiple frame connecting strips 105 are spaced apart along the first direction. The marking plate 2 is provided on some or all of the frame connecting strips 105.
[0118] When the frame connecting strip 105 is provided with the marking plate 2, the marking plate 2 is provided on one or both sides of the frame connecting strip 105 in the first direction, and along the length direction of the frame connecting strip 105, the marking plate 2 is arranged on the side of the frame connecting strip 105.
[0119] By adopting the above technical solution, the frame 1 becomes more reasonable, and the setting of the sign 2 becomes more reasonable, which facilitates actual production.
[0120] Furthermore, the first direction is the length direction of the frame 1, the length direction of the frame connecting strip 105 is the width direction of the frame 1, and the two ends of the frame connecting strip 105 in the length direction are provided with the first anti-slip post 702 and the first anti-slip groove 602, and the middle position is provided with the second anti-slip post 703 and the second anti-slip groove 603.
[0121] By adopting the above technical solution, the marking strip is made more reasonable, and the arrangement of the first anti-slip post 702 and the first anti-slip groove 602, the second anti-slip post 703 and the second anti-slip groove 603 is more reasonable.
[0122] Furthermore, along the first direction, the two outermost frame connecting strips 105 are not provided with the marking plate 2, or the marking plate 2 is provided on the side facing inward along the first direction and not provided on the side facing outward. The frame connecting strip 105 between the two outermost frame connecting strips 105 is provided with the marking plate 2 on both sides of its first direction.
[0123] The above technical solution makes the marking bar more reasonable.
[0124] A mold for forming a marker strip includes a male mold and a female mold, which can move closer to and further away from each other, thereby allowing the mold for forming the marker strip to switch between an open state and a closed state. When the mold for forming the marker strip is in the closed state, the male mold and the female mold cooperate to form a forming cavity for forming the marker strip. The forming cavity includes a frame forming cavity for forming the frame 1 and a marker forming cavity for forming the marker 2. The male mold is provided with a first anti-slip forming structure for forming the first anti-slip structure 4 in the frame forming cavity, and the female mold is provided with a second anti-slip forming structure for forming the second anti-slip structure 5 in the frame forming cavity.
[0125] Using the above technical solution, the mold for forming the marking strip can be used to produce the marking strip; specifically, the positions of the first anti-slip forming structure and the second anti-slip forming structure are arranged in a one-to-one correspondence.
[0126] Furthermore, one of the first anti-slip molding structure and the second anti-slip molding structure is configured as a molding column, and the other of the first anti-slip molding structure and the second anti-slip molding structure is configured as a molding groove; the molding column extends into the frame molding cavity to form an anti-slip groove 6, and the side of the molding groove facing the frame molding cavity is connected to the frame molding cavity to form an anti-slip column 7.
[0127] By adopting the above technical solution, the first anti-slip molding structure and the second anti-slip molding structure are more reasonable; specifically, the setting of the molding column facilitates the molding of the anti-slip groove 6 on the frame 1, and the setting of the molding groove facilitates the molding of the anti-slip column 7 on the frame 1.
[0128] The same or similar parts between the various embodiments in this specification can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments.
[0129] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A marking strip, characterized in that: The system includes a frame (1) and one or more signboards (2), the signboards (2) being connected to the frame (1) via a connecting part (3), the signboards (2) having an information printing surface (201) for printing information; the frame (1) has a first anti-slip structure (4) on a first frame side (101) perpendicular to the information printing surface (201), and the frame (1) has a second anti-slip structure (5) matching the first anti-slip structure (4) on a second frame side (102) perpendicular to the information printing surface (201); The first anti-slip structure (4) and the second anti-slip structure (5) cooperate to form an interlocking interface between the first frame side (101) and the second frame side (102).
2. The marker strip of claim 1, wherein: One of the first anti-slip structure (4) and the second anti-slip structure (5) is configured as an anti-slip groove (6), and the other of the first anti-slip structure (4) and the second anti-slip structure (5) is configured as an anti-slip post (7); The cross-section of one end of the anti-slip post (7) that can be inserted into the anti-slip groove (6) is polygonal, and the cross-section of the anti-slip groove (6) is a matching polygon; and / or there are multiple anti-slip posts (7) and multiple anti-slip grooves (6), with multiple anti-slip posts (7) and multiple anti-slip grooves (6) corresponding one-to-one.
3. The marker strip of claim 2, wherein: When multiple marker strips are interlocked and stacked through the first anti-slip structure (4) and the second anti-slip structure (5), there is a picking gap between the frames (1) and / or the marker plates (2) of any two adjacent marker strips to facilitate the picking up of the marker strips by the feeding equipment.
4. The marker strip of claim 2, wherein: The inner wall of the anti-slip groove (6) is formed at least near its opening side as a first guide portion (601) for guiding the anti-slip post (7) into the anti-slip groove (6), and / or the outer wall of the anti-slip post (7) is formed at least away from the frame (1) side as a second guide portion (701) for guiding the anti-slip post (7) into the anti-slip groove (6); Along the direction from the opening of the anti-slip groove (6) to its bottom surface, the first guide portion (601) gradually narrows inward; along the direction from the anti-slip post (7) toward the side of the frame (1) to the side away from the frame (1), the second guide portion (701) gradually narrows inward.
5. The marker strip of claim 2, wherein: The first frame side (101) or the second frame side (102) of the frame (1) is provided with a support column (8) that protrudes along a direction perpendicular to the information printing surface (201); When multiple marker strips are interlocked and stacked through the first anti-slip structure (4) and the second anti-slip structure (5), the support column (8) on one of two adjacent marker strips abuts against the frame (1) of the other. The support columns (8) are provided in multiple ways. The frame (1) has a length direction and a width direction. The multiple support columns (8) are arranged in multiple columns along the length direction of the frame (1) and in multiple rows along the width direction of the frame (1). The anti-slip post (7) is provided with one or more of the support posts (8) forming the anti-slip post (7).
6. The marker strip of claim 5, wherein: In the arrangement of the plurality of support columns (8), at least three or more support columns (8) are arranged in columns located at both ends and the middle of the frame (1) along the length direction, and are equally spaced along the width direction of the frame (1). In the arrangement of the plurality of support columns (8), at least three or more support columns (8) are arranged in rows located at both ends and the middle of the frame (1) along the width direction, and are equally spaced along the length direction of the frame (1).
7. The marker strip of claim 2, wherein: The frame (1) includes a first frame edge strip (103), a second frame edge strip (104), and a frame connecting strip (105). The first frame edge strip (103) and the second frame edge strip (104) are spaced apart and extend along a first direction. The frame connecting strip (105) is disposed between the first frame edge strip (103) and the second frame edge strip (104), and both ends of the frame connecting strip (105) are connected to the first frame edge strip (103) and the second frame edge strip (104) respectively. The sign (2) is connected to the frame connecting strip (105) through the connecting part (3), and the surface where the information printing surface (201) of the sign (2) is located is parallel to the first direction and the length direction of the frame connecting strip (105); The first anti-slip structure (4) and the second anti-slip structure (5) are disposed on the frame connecting strip (105); One end of the connecting part (3) is connected to the frame connecting strip (105), and the other end is connected to the sign (2), and the connection between the connecting part (3) and the sign (2) is configured as a predetermined fracture structure.
8. The marker strip of claim 7, wherein: Multiple anti-slip posts (7) are provided, and multiple anti-slip grooves (6) are provided, with each of the multiple anti-slip posts (7) and multiple anti-slip grooves (6) corresponding to one another; The frame (1) has a length direction, and a plurality of anti-slip posts (7) are arranged in multiple columns along the length direction of the frame (1). Each column of the plurality of anti-slip posts (7) contains at least two anti-slip posts (7), and each column includes a first anti-slip post (702) and a second anti-slip post (703). The anti-slip groove (6) includes a first anti-slip groove (602) into which the first anti-slip post (702) can be inserted, and a groove into which the second anti-slip post (703) can be inserted. 703) The second anti-slip groove (603) is inserted, the frame (1) is provided with the first anti-slip groove (602) on the opposite side of the first anti-slip post (702) and the second anti-slip groove (603) on the opposite side of the second anti-slip post (703), the first anti-slip post (702) cannot be inserted into the second anti-slip groove (603) and / or the second anti-slip post (703) cannot be inserted into the first anti-slip groove (602); The frame connecting strip (105) is provided in multiple ways, and the multiple frame connecting strips (105) are spaced apart along the first direction. The marking plate (2) is provided on some or all of the frame connecting strips (105). When the frame connecting strip (105) is provided with the marking plate (2), the marking plate (2) is provided on one or both sides of the frame connecting strip (105) in the first direction, and along the length direction of the frame connecting strip (105), the marking plate (2) is arranged on the side of the frame connecting strip (105). The first direction is the length direction of the frame (1), the length direction of the frame connecting strip (105) is the width direction of the frame (1), and the two ends of the frame connecting strip (105) in the length direction are provided with the first anti-slip post (702) and the first anti-slip groove (602), and the middle position is provided with the second anti-slip post (703) and the second anti-slip groove (603). Along the first direction, the two outermost frame connecting strips (105) are not provided with the mark (2), or the mark (2) is provided on the side facing inward along the first direction and not on the side facing outward. The frame connecting strip (105) between the two outermost frame connecting strips (105) is provided with the mark (2) on both sides of its first direction.
9. A mold for forming a marking strip, characterized by: The mold includes a male mold and a female mold, which can move closer to each other and further away, so that the mold for forming the marking strip can switch between an open state and a closed state; and when the mold for forming the marking strip is in the closed state, the male mold and the female mold cooperate to form a forming cavity for forming the marking strip according to any one of claims 1 to 8, the forming cavity including a frame forming cavity for forming the frame (1) and a marking plate forming cavity for forming the marking plate (2), the male mold is provided with a first anti-slip forming structure for forming the first anti-slip structure (4) at the frame forming cavity, and the female mold is provided with a second anti-slip forming structure for forming the second anti-slip structure (5) at the frame forming cavity.
10. The mold for molding a marking strip according to claim 9, characterized in that: One of the first anti-slip molding structure and the second anti-slip molding structure is configured as a molding column, and the other of the first anti-slip molding structure and the second anti-slip molding structure is configured as a molding groove; the molding column extends into the frame molding cavity to form an anti-slip groove (6), and the side of the molding groove facing the frame molding cavity is connected to the frame molding cavity to form an anti-slip column (7).