Identification assembly and movable identification piece

By designing the first and second positioning structures of concave and convex matching in the identification assembly, the problem of uneven time gaps in the trademark identification part when adjusting the installation angle is solved, and a more uniform gap and a more beautiful identification assembly are achieved.

CN120014931APending Publication Date: 2025-05-16INVENTEC PUDONG TECH CORPOARTION +1
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Patent Information

Application Number
CN202311533381.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-16
Publication Date
2025-05-16

AI Technical Summary

Technical Problem

When adjusting the installation angle of existing trademark marks, it is easy to cause uneven gaps between the housing assembly grooves, affecting the aesthetics of the host.

Method used

Design an identification assembly that includes a carrier and a movable identification piece. The carrier is provided with a plurality of first positioning structures, the movable marking member is provided with a plurality of second positioning structures, and the second positioning structure matches the first positioning structure with a concave and convexity, allowing the base to be positioned in the assembly groove through different installation angles.

Benefits of technology

Through the positioning structure of concave and convex matching, the uneven gap between the base of the movable marking member and the carrier assembly groove is reduced, and the overall aesthetics of the marking assembly is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an identification assembly. The identification assembly comprises a bearing piece and a movable identification piece. The bearing piece comprises a carrier and a plurality of first positioning structures. The carrier comprises an assembling groove and a guiding groove. The assembling groove is communicated with the guiding groove, and the first positioning structures are located between the assembling groove and the guiding groove. The movable identification piece comprises a base part, a guide part, a plurality of second positioning structures and an identification part. The base part is movably arranged in the assembling groove. The guiding part is connected to one side of the base part and movably arranged in the guiding groove in a penetrating mode. The second positioning structures are connected to the base part and located on the same side as the guide part. And the second positioning structures are respectively and selectively positioned with the first positioning structures, so that the base part can be positioned in the assembling groove through different assembling angles. The identification part is arranged on the other side of the base part.
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Description

Technical Field

[0001] The present application relates to an identification component and a movable identification part, and in particular to an identification component and a movable identification part including a positioning structure. Background Art

[0002] In order to more effectively promote brand culture and identify their products, manufacturers will add trademark logos to their products to strengthen the link between the trademark and the product, so that consumers can recognize the manufacturer of the product by seeing the trademark logo. In this way, it can effectively differentiate from other similar products on the market.

[0003] Take the host manufacturer as an example. The manufacturer will install a trademark identification part on the housing of the host to enhance the recognition of the product. After purchasing the host, the user will adjust the installation angle of the trademark identification part according to their own usage habits, such as laying the host flat or standing it upright on the desktop, and adjust the installation angle of the trademark identification part according to the display angle of the host to maintain the overall aesthetics of the host. Generally speaking, the trademark identification part will be provided with a rotating part to adjust the installation angle of the trademark identification part by rotation. However, when the installation angle of the current trademark identification part is adjusted, an uneven gap will be generated between the trademark identification part and the assembly slot of the housing, thereby destroying the overall aesthetics of the host. Therefore, how to take into account the rotatable setting of the trademark identification part on the housing and making the gap between the trademark identification part and the assembly slot more uniform to maintain the overall aesthetics of the host is one of the problems that R&D personnel should solve. Summary of the invention

[0004] The present application provides a marking assembly and a movable marking piece, so as to take into account that the movable marking piece can be rotatably arranged on the carrier and the gap between the movable marking piece and the assembly groove is more uniform, so as to maintain the overall aesthetics of the marking assembly

[0005] The identification component disclosed in one embodiment of the present application includes a carrier and a movable identification member. The carrier includes a carrier and a plurality of first positioning structures. The carrier includes an assembly groove and a guide groove. The assembly groove is connected to the guide groove, and these first positioning structures are located between the assembly groove and the guide groove. The movable identification member includes a base, a guide portion, a plurality of second positioning structures and an identification portion. The base is movably disposed in the assembly groove. The guide portion is connected to one side of the base and movably penetrates the guide groove. These second positioning structures are connected to the base and are located on the same side as the guide portion. These second positioning structures can be selectively positioned with these first positioning structures, respectively, so that the base can be positioned in the assembly groove at different installation angles. The identification portion is disposed on the other side of the base.

[0006] Another embodiment of the present application discloses a movable identification member, which is suitable for being installed on a carrier including a carrier and a plurality of first positioning structures. The carrier includes an assembly groove and a guide groove that are connected to each other, and these first positioning structures are located between the assembly groove and the guide groove. The movable identification member includes a base, a guide portion, these second positioning structures and an identification portion. The base is used to be movably arranged in the assembly groove. The guide portion is connected to one side of the base and is used to be movably arranged in the guide groove. These second positioning structures are connected to the base and are located on the same side as the guide portion. These second positioning structures are used to be selectively positioned with these first positioning structures, respectively, so that the base can be used to be positioned in the assembly groove at different installation angles. The identification portion is arranged on the other side of the base.

[0007] According to the identification assembly and the movable identification member of the above embodiment, when the movable identification member is installed on the carrier, since the carrier is provided with a plurality of first positioning structures and the movable identification member is provided with a plurality of second positioning structures, and these second positioning structures are respectively matched with these first positioning structures in a concave-convex manner, when the installation angle of the movable identification member is adjusted by rotation, the uneven gap between the base of the movable identification member and the assembly groove of the carrier can be reduced. In other words, the base will not be offset in the assembly groove, so that the gap between the base and the assembly groove is more uniform. In this way, the overall aesthetics of the identification assembly can be improved.

[0008] The above description of the content of the present application and the following description of the implementation methods are used to demonstrate and explain the principles of the present application, and to provide further explanation of the scope of the patent application of the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0009] Figure 1 Shown is a three-dimensional schematic diagram of the identification component described in an embodiment of the present application.

[0010] Figure 2 Display as Figure 1 An exploded schematic diagram of the identification components.

[0011] Figure 3 Display as Figure 1 A schematic cross-sectional view of the identification component.

[0012] Figure 4 Display as Figure 1 A three-dimensional schematic diagram of the movable identification part of the identification component before turning.

[0013] Figure 5 Display as Figure 1 A schematic cross-sectional view of the movable identification member of the identification assembly before turning.

[0014] Figure 6 Display as Figure 1 A three-dimensional schematic diagram of the movable identification part of the identification component after being turned.

[0015] Figure 7 Display as Figure 1 A schematic cross-sectional view of the movable identification member of the identification component after being turned.

[0016] Component number description

[0017] 10 Identification components

[0018] 10 Bearing

[0019] 111 Carrier

[0020] 1111 First Ventilation Rack

[0021] 11111 Guide groove

[0022] 1112 Second ventilation rack

[0023] 11121 Assembly slot

[0024] 112 First positioning structure

[0025] 1121 groove wall

[0026] 12 Movable identification parts

[0027] 121 base

[0028] 122 Guide

[0029] 123 Second positioning structure

[0030] 124 Logo Department

[0031] 15 Stop structure

[0032] 151 Stopper

[0033] 152 reset piece

[0034] A~C Direction

[0035] H Height

[0036] L Length

[0037] R Angle DETAILED DESCRIPTION

[0038] See also Figures 1 to 3 . Figure 1 It is a three-dimensional schematic diagram of the identification component according to the embodiment of the present application. Figure 2 for Figure 1 An exploded schematic diagram of the identification components. Figure 3 for Figure 1 A schematic cross-sectional view of the identification component.

[0039] The identification component 10 of this embodiment includes a carrier 11 , a movable identification member 12 and a stop structure 15 . The carrier 11 is, for example, a carrier 11 of a host (not shown), and includes a carrier 111 and a plurality of first positioning structures 112 .

[0040] The carrier 111 includes a first ventilation frame 1111 and a second ventilation frame 1112 for circulating a cooling airflow (not shown). The first ventilation frame 1111 includes a guide groove 11111. The second ventilation frame 1112 is stacked on the first ventilation frame 1111 and includes an assembly groove 11121. The assembly groove 11121 is connected to the guide groove 11111. These first positioning structures 112 are located on the first ventilation frame 1111. These first positioning structures 112 are, for example, positioning grooves and include two groove walls 1121. The angle R between the two groove walls 1121 is, for example, 120 degrees. These first positioning structures 112 are located between the assembly groove 11121 and the guide groove 11111.

[0041] The movable identification member 12 is, for example, a component with a trademark of a manufacturer drawn on it, and includes a base 121, a guide portion 122, a plurality of second positioning structures 123, and an identification portion 124. The base 121 is movably disposed in the assembly groove 11121. The guide portion 122 is connected to one side of the base 121 and movably penetrates the guide groove 11111. In detail, the guide portion 122 can slide and rotate relative to the guide groove 11111.

[0042] These second positioning structures 123 are, for example, positioning protrusions, and the length L of one side of these second positioning structures 123 connected to the base 121 is, for example, 1.8 mm, and the height H of these second positioning structures 123 is, for example, 0.91 mm. These second positioning structures 123 are concavely matched with these first positioning structures 112, respectively. These second positioning structures 123 are connected to the base 121 and are located on the same side as the guide portion 122. These second positioning structures 123 can be selectively positioned with these first positioning structures 112, respectively, through the guidance of the guide portion 122 and the two groove walls 1121, so that the base 121 can be positioned in the assembly groove 11121 at different installation angles. In this way, the movable identification member 12 can be adjusted to a suitable installation angle according to the placement angle of the host to enhance the overall aesthetics of the identification assembly 10.

[0043] The identification portion 124 is disposed on the other side of the base 121. That is, the identification portion 124, the guiding portion 122 and the second positioning structures 123 are respectively located on two opposite sides of the base 121.

[0044] The stop structure 15 includes a stopper 151 and a reset member 152. The stopper 151 is, for example, a screw and is disposed on the guide portion 122. The stopper 151 and the base portion 121 are located at opposite sides of the carrier 111 and are used to limit the movement of the guide portion 122 in the guide slot 11111, and prevent the guide portion 122 from moving out of the guide slot 11111.

[0045] The reset member 152 is, for example, a spring, and is sleeved on the guide portion 122, and the opposite ends of the reset member 152 are respectively against the second ventilation frame 1112 and the stopper 151 of the carrier 111, so that when the movable identification member 12 is adjusted to an installation angle on the carrier 11 and the guide portion 122 slides relative to the guide groove 11111, the reset member 152 will be compressed by the second ventilation frame 1112 and the stopper 151. The reset member 152 is used to further limit the movement of the guide portion 122 in the guide groove 11111, and will not cause the guide portion 122 to move out of the guide groove 11111. In addition, when the adjustment of the installation angle of the movable identification member 12 on the carrier 11 is completed, the reset member 152 can reset the guide portion 122.

[0046] In this embodiment, when the movable identification member 12 is installed on the carrier 11, the carrier 11 is provided with a plurality of first positioning structures 112 and the movable identification member 12 is provided with a plurality of second positioning structures 123, and these second positioning structures 123 are respectively matched with these first positioning structures 112 in a concave-convex manner, so that when the installation angle of the movable identification member 12 is adjusted by rotation, the uneven gap between the base 121 of the movable identification member 12 and the assembly groove 11121 of the carrier 11 can be reduced. In other words, the base 121 will not be offset in the assembly groove 11121, so that the gap between the base 121 and the assembly groove 11121 is more uniform. In this way, the overall aesthetics of the identification assembly 10 can be improved.

[0047] In addition, by providing two groove walls 1121 with an included angle R of 120 degrees on these first positioning structures 112, when the user wants to adjust the installation angle of the movable identification member 12 on the carrier 11 and rotates and releases the movable identification member 12, these second positioning structures 123 can be automatically positioned on these first positioning structures 112 through the guidance of the two groove walls 1121. In this way, the user can adjust the installation angle of the movable identification member 12 on the carrier 11 with less effort.

[0048] Furthermore, the installation angle of the movable identification member 12 on the supporting member 11 can be adjusted by rotating without removing and reinstalling the movable identification member 12. In addition to improving the convenience of installation, it can also prevent the movable identification member 12 from scratching the supporting member 11 during the removal and installation process.

[0049] In this embodiment, the first positioning structures 112 are positioning grooves, the second positioning structures 123 are positioning convex blocks, and the second positioning structures 123 are concavely matched with the first positioning structures 112, but the present invention is not limited thereto. In other embodiments, the first positioning structures may also be positioning convex blocks, the second positioning structures may also be positioning grooves, and the second positioning structures are concavely matched with the first positioning structures.

[0050] See also Figures 4 to 7 . Figure 4 for Figure 1 A three-dimensional schematic diagram of the movable identification part of the identification component before turning. Figure 5 for Figure 1 A schematic cross-sectional view of the movable identification member of the identification assembly before turning. Figure 6 for Figure 1 A three-dimensional schematic diagram of the movable identification part of the identification component after being turned. Figure 7 for Figure 1 A schematic cross-sectional view of the movable identification member of the identification component after being turned.

[0051] In this embodiment, the movable identification member 12 is installed on the carrier 11. At this time, the base 121 is located in the assembly groove 11121, and the second positioning structures 123 are positioned on the first positioning structures 112. Figure 4 and Figure 5 As shown, when the user wants to adjust the main unit from lying flat on a plane (not shown) to standing on the plane, and adjust the installation angle of the movable identification member 12 at the same time, first, the user lifts the movable identification member 12 along direction A, so that the base 121 is separated from the assembly groove 11121. At this time, the guide portion 122 slides relative to the guide groove 11111 along direction A, so that the second positioning structures 123 are released from the positioning of the first positioning structures 112. In addition, the reset member 152 is compressed by the second ventilation frame 1112 and the stopper 151 along direction A to store elastic force.

[0052] like Figure 6 and Figure 7 As shown, the user then rotates the movable identification member 12 along direction B in accordance with the arrangement angle of the host on the plane. At this time, the guide portion 122 rotates along direction B relative to the guide groove 11111. Then, the user releases the movable identification member 12, so that the reset member 152 releases the elastic force and causes the guide portion 122 to slide along direction C relative to the guide groove 11111, and drives the movable identification member 12 to reset along direction C. At this time, these second positioning structures 123 are guided by the two groove walls 1121 and positioned on these first positioning structures 112, so that the base 121 is assembled in the assembly groove 11121. In this way, the installation angle of the movable identification member 12 on the carrier 11 can be adjusted.

[0053] According to the identification assembly and the movable identification member of the above embodiment, when the movable identification member is installed on the carrier, since the carrier is provided with a plurality of first positioning structures and the movable identification member is provided with a plurality of second positioning structures, and these second positioning structures are respectively matched with these first positioning structures in a concave-convex manner, when the installation angle of the movable identification member is adjusted by rotation, the uneven gap between the base of the movable identification member and the assembly groove of the carrier can be reduced. In other words, the base will not be offset in the assembly groove, so that the gap between the base and the assembly groove is more uniform. In this way, the overall aesthetics of the identification assembly can be improved.

[0054] In addition, by providing two groove walls with an angle of 120 degrees on the first positioning structures, when the user wants to adjust the installation angle of the movable identification member on the carrier and rotates and releases the movable identification member, the second positioning structures can be automatically positioned on the first positioning structures through the guidance of the two groove walls. In this way, the user can adjust the installation angle of the movable identification member on the carrier with less effort.

[0055] Furthermore, the installation angle of the movable identification component on the carrier can be adjusted by rotating without disassembling and reinstalling the movable identification component. In addition to improving the convenience of installation, it can also prevent the movable identification component from scratching the carrier during disassembly and installation.

[0056] Although the present application is disclosed as above with the aforementioned embodiments, it is not intended to limit the present application. Anyone skilled in the art may make some changes and modifications without departing from the spirit and scope of the present application. Therefore, the scope of patent protection of the present application shall be subject to the scope of the patent application attached to this specification.

Claims

1. A marking component, characterized in that: Include: A carrier, comprising a carrier and a plurality of first positioning structures, wherein the carrier comprises an assembly groove and a guide groove, the assembly groove is connected to the guide groove, and the plurality of first positioning structures are located between the assembly groove and the guide groove; and A movable identification member, comprising: a base, movably disposed in the assembly slot; A guide portion connected to one side of the base portion and movably arranged in the guide groove; A plurality of second positioning structures connected to the base and located on the same side as the guide portion, wherein the plurality of second positioning structures can be selectively positioned with the plurality of first positioning structures, respectively, so that the base can be positioned in the assembly slot at different installation angles; as well as A marking portion is arranged on the other side of the base.

2. The identification assembly according to claim 1, characterized in that: The carrier member includes a first ventilation frame and a second ventilation frame. The first ventilation frame includes the guide groove. The second ventilation frame is stacked on the first ventilation frame and includes the assembly groove. A plurality of the first positioning structures are located on the first ventilation frame.

3. The identification assembly according to claim 2, characterized in that: The movable identification member further includes a stop structure, which is arranged on the guide portion and is located on two opposite sides of the carrier with the base portion, and is used to limit the movement of the guide portion in the guide groove.

4. The identification assembly according to claim 3, characterized in that: The stop structure includes a stop member, which is disposed at one end of the guide portion and is used to limit the movement of the guide portion in the guide groove.

5. The marking assembly according to claim 4, characterized in that: The stop structure further includes a reset member, which is sleeved on the guide portion, and the opposite ends of the reset member respectively abut against the second ventilation frame of the carrier and the stop member, and the reset member is used to limit the movement of the guide portion in the guide groove and reset the guide portion.

6. The identification assembly according to claim 1, characterized in that: The plurality of first positioning structures are positioning protrusions, the plurality of second positioning structures are positioning grooves, and the plurality of second positioning structures are matched with the plurality of first positioning structures in concave and convex manner respectively, so that the base is positioned in the assembly groove.

7. The marking assembly according to claim 6, characterized in that: The plurality of first positioning structures include two groove walls, and the included angle between the two groove walls is 120 degrees.

8. The marking assembly according to claim 6, characterized in that: The length of one side of the plurality of second positioning structures connected to the base is 1.8 mm.

9. The marking assembly according to claim 6, characterized in that: The height of the plurality of second positioning structures is 0.91 mm.

10. A movable identification member, characterized in that: Suitable for being installed on a carrier including a carrier and a plurality of first positioning structures, the carrier including an assembly groove and a guide groove that are connected, and the plurality of first positioning structures are located between the assembly groove and the guide groove, the movable identification member including: a base, configured to be movably disposed in the assembly slot; A guide portion connected to one side of the base portion and used to be movably arranged in the guide groove; A plurality of second positioning structures connected to the base and located on the same side as the guide portion, wherein the plurality of second positioning structures are used to selectively position with the plurality of first positioning structures, respectively, so that the base can be positioned in the assembly slot at different installation angles; as well as A marking portion is arranged on the other side of the base.