CN219180888U - Data line - Google Patents

Data line Download PDF

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Publication number
CN219180888U
CN219180888U CN202223168952.3U CN202223168952U CN219180888U CN 219180888 U CN219180888 U CN 219180888U CN 202223168952 U CN202223168952 U CN 202223168952U CN 219180888 U CN219180888 U CN 219180888U
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CN
China
Prior art keywords
light
bottom plate
data line
accommodating space
storage
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CN202223168952.3U
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Chinese (zh)
Inventor
郭予鑫
申文武
阮敏
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Guangdong Mcdodo Industrial Co ltd
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Guangdong Mcdodo Industrial Co ltd
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Priority to CN202223168952.3U priority Critical patent/CN219180888U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation

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Abstract

The utility model relates to the technical field of data wires, in particular to a data wire, which comprises a storage component, wherein the storage component comprises a connecting wire and a storage main body, the connecting wire is telescopically stored in the storage main body, the data wire also comprises a light-emitting component connected with the storage component, the light-emitting component comprises a bottom plate and a light-transmitting shell, the bottom plate and the light-transmitting shell are connected to form an accommodating space, and a light-emitting flowing body is filled in the accommodating space; one side of the bottom plate, which is far away from the light-transmitting shell, is provided with at least one connecting column, the accommodating main body is provided with a connecting through hole corresponding to the connecting column, and the connecting column can be detachably clamped into the connecting through hole. The luminous component can be detached and connected with the storage component, so that the luminous component and the storage component are manufactured separately, the pollution of connecting wires when luminous flowing bodies are filled into the luminous component is prevented, further, the luminous components on the data wires can be replaced by users, the colors of the luminous flowing bodies in different styles are selected, and the user experience and the purchasing desire of consumers are improved.

Description

Data line
[ field of technology ]
The utility model relates to the technical field of data lines, in particular to a data line.
[ background Art ]
And the data line (d a t a c a b l e) is used for connecting the mobile device and the computer so as to achieve the purposes of charging, data transmission or communication. Now, with the development of the electronic industry, the data line has become an indispensable part in our life, the use scene has become wider, and the convenience requirement of the user on the data line has become higher. Thus, a flexible data line appears on the market.
After the existing telescopic data line is stored, the volume is smaller, and when the light is darker, the user can find the telescopic data line more difficult, and the telescopic data line is more inconvenient to use.
[ utility model ]
The utility model provides a data line for solving the problem that the existing data line is inconvenient to find when light rays are darker.
The technical problem to be solved is to provide a data line, which comprises a storage component, wherein the storage component comprises a connecting wire and a storage main body, the connecting wire is telescopically stored in the storage main body, the data line also comprises a light-emitting component connected with the storage component, the light-emitting component comprises a bottom plate and a light-transmitting shell, the bottom plate is connected with the light-transmitting shell to form a storage space, and a light-emitting flowing body is filled in the storage space; the bottom plate is kept away from the one side of printing opacity shell is equipped with at least one spliced pole, accomodate the main part correspondence the spliced pole has been seted up and has been connected the through-hole, the spliced pole can be dismantled the card and go into connect the through-hole.
Preferably, the middle part of the bottom plate protrudes towards one side of the accommodating space to form a protruding part, one surface of the protruding part away from the accommodating space forms a concave cambered surface, and the connecting column is arranged on the concave cambered surface.
Preferably, a gap exists between the protruding portion and the light-transmitting shell.
Preferably, an annular step is formed in the inner wall of the edge of the light-transmitting shell, which is close to one end of the bottom plate, and the edge of the bottom plate is in interference fit with the annular step.
Preferably, the light emitting assembly further comprises a glue layer; the bottom plate also comprises a plane part surrounding the protruding part, the surface of one side of the plane part, which is far away from the accommodating space, is coplanar with the end face of one end of the light-transmitting shell, which is close to the bottom plate, and the glue layer covers the surface of one side of the plane part, which is far away from the accommodating space, and the end face of one end of the light-transmitting shell, which is close to the bottom plate.
Preferably, the accommodating main body comprises a connecting disc, a butt joint groove is formed in one side, facing the light-emitting component, of the connecting disc, and the connecting through hole is formed in the bottom wall of the butt joint groove; when the light-emitting assembly is connected with the storage assembly, the light-emitting assembly enters the butt joint groove, and the glue layer is adhered to the bottom wall of the butt joint groove.
Preferably, the connecting column comprises an end face far away from the bottom plate and a side face connected with the end face, a notch is formed in the side face, and the notch penetrates through the connecting column.
Preferably, the notch divides the connecting column into a first half column body and a second half column body, and a flanging is arranged on the side surface of the first half column body and/or the side surface of the second half column body.
Preferably, a light shielding plate is arranged on the surface of one side of the light-transmitting shell, which is far away from the accommodating space, corresponding to the protruding part, and a part of the light-transmitting shell, which is not provided with the light shielding plate, forms a ring shape.
Preferably, the accommodating main body comprises a housing, the housing and one side, far away from the light-emitting assembly, of the connecting disc are clamped to form a second accommodating space, a central column is arranged in the second accommodating space towards the connecting disc, and a second notch is formed in the central column; the connecting disc is far away from one side of the light-emitting component and corresponds to the central column, a clamping plate is arranged in the accommodating hole and corresponds to the second notch, the central column is inserted into the accommodating hole, and the clamping plate is inserted into the second notch.
Compared with the prior art, the data line has the following advantages:
1. the data line of the utility model, including accomodating the subassembly, accomodate the subassembly and include connecting wire and accomodate the main part, the connecting wire is scalable accomodate in accomodating the main part, its characterized in that still includes: the light-emitting assembly is connected with the storage assembly and comprises a bottom plate and a light-transmitting shell, the bottom plate and the light-transmitting shell are connected to form a storage space, and a light-emitting flowing body is filled in the storage space; one side of the bottom plate, which is far away from the light-transmitting shell, is provided with at least one connecting column, the accommodating main body is provided with a connecting through hole corresponding to the connecting column, and the connecting column can be detachably clamped into the connecting through hole. The luminous component can be detached and connected with the storage component, so that the luminous component and the storage component are manufactured separately, the pollution of connecting wires when luminous flowing bodies are filled into the luminous component is prevented, further, the luminous components on the data wires can be replaced by users, the colors of the luminous flowing bodies in different styles are selected, and the user experience and the purchasing desire of consumers are improved.
2. The middle part of the bottom plate is protruded towards one side of the accommodating space to form a protruding part, one surface of the protruding part, which is far away from the accommodating space, is provided with a concave cambered surface, and the connecting column is arranged on the concave cambered surface. The bulge part has upward elastic potential energy, and can upwardly tighten the connecting column to form pretightening force, so that the connection between the storage assembly and the light-emitting assembly is more stable; in addition, the convex part enables the luminous fluid to flow and gather to the edge of the accommodating space to form a ring shape, thereby enhancing luminous effect.
3. The gap exists between the protruding part and the light-transmitting shell, so that the flow area of the luminous flow body in the accommodating space is increased, and the luminous flow body is prevented from only locally emitting light in the accommodating space.
4. The inner wall of the edge of the light-transmitting shell, which is close to one end of the bottom plate, is provided with the annular step, and the edge of the bottom plate is in interference fit with the annular step, so that the bottom plate is more tightly connected with the light-transmitting shell, the impact resistance is better, and the luminous fluid is not easy to flow out.
5. The luminous component of the utility model also comprises a glue layer; the bottom plate still includes the plane portion that encircles the bellying, and the plane portion is kept away from the surface of accommodating space one side and is close to the terminal surface coplane of bottom plate one end with the printing opacity shell, and the glue film covers the surface of accommodating space one side and the terminal surface that the printing opacity shell is close to bottom plate one end of being away from the plane portion, and the glue film can encapsulate the space that the bottom plate formed after being connected with the printing opacity shell, has further improved luminous element's leakproofness.
6. The storage main body comprises a connecting disc, wherein a butt joint groove is formed in one side, facing the light-emitting component, of the connecting disc, and a connecting through hole is formed in the bottom wall of the butt joint groove; when the light-emitting component is connected with the storage component, the light-emitting component enters the butt joint groove, the glue layer is adhered to the bottom wall of the butt joint groove, the light-emitting component and the storage component are further adhered together through the glue layer, and the stability of the data line is improved.
7. The connecting column comprises an end face far away from the bottom plate and a side face connected with the end face, a notch is formed in the side face, the notch penetrates through the connecting column, the connecting column is enabled to have certain elasticity due to the fact that the notch is formed, namely the diameter of the connecting column can be reduced under the action of external force, and the connecting column is enabled to be inserted into the connecting through hole more easily.
8. The notch divides the connecting column into a first half column body and a second half column body, and the side surface of the first half column body and/or the side surface of the second half column body are/is provided with turned edges. After the spliced pole inserts the connection through-hole, the turn-ups can restrict the spliced pole to extract the connection through-hole, have improved the stability of data line.
9. The surface of one side of the light-transmitting shell far away from the accommodating space is provided with the light shielding plate corresponding to the convex part, and the part of the light-transmitting shell, which is not provided with the light shielding plate, forms a ring shape. The content of the luminous fluid at the position corresponding to the light shielding plate in the accommodating space is less, the luminous is not obvious, the light shielding plate is arranged so as not to influence the luminous fluid to emit light at the edge of the accommodating space, and the use instruction information of the data line can be printed on the light shielding plate, so that the use efficiency of the light-transmitting shell is improved; the printing machine can also be used for printing brand visual identification information, graphic information and the like, enhancing the aesthetic feeling of products and improving the brand identification degree.
10. The storage main body comprises a shell, wherein the shell and one side of the connecting disc, which is far away from the light-emitting component, are clamped to form a second storage space, a center column is arranged in the second storage space towards the connecting disc, and a second notch is formed in the center column; one side of the connecting disc, which is far away from the light-emitting component, is provided with a containing hole corresponding to the central column, a clamping plate is arranged in the containing hole corresponding to the second notch, the central column is inserted into the containing hole, and the clamping plate is inserted into the second notch. The clamping plate is arranged, so that the contact area of the connecting disc and the central column is increased, the connecting disc is tightly connected with the shell, and the stability of the data line is improved.
[ description of the drawings ]
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed in the embodiments or the description of the prior art will be briefly described below, it being obvious that the drawings in the following description are only some embodiments of the present utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is an exploded view of a data line according to a first embodiment of the present utility model.
Fig. 2 is a schematic explosion diagram of a data line according to a first embodiment of the present utility model.
Fig. 3 is a cross-sectional view of a light emitting device of a data line according to a first embodiment of the present utility model.
Fig. 4 is a schematic perspective view of a storage body for data lines according to a first embodiment of the present utility model.
Fig. 5 is a schematic perspective view of a portion of a data line according to a first embodiment of the present utility model.
Fig. 6 is a schematic perspective view of a data line according to a first embodiment of the present utility model.
Fig. 7 is a schematic perspective view of a housing of a data line according to a first embodiment of the present utility model.
The attached drawings are used for identifying and describing:
10. a data line; 11. a light emitting assembly; 12. a receiving assembly;
111. a bottom plate; 112. a light-transmitting case; 113. an accommodating space;
114. a gap; 115. a glue layer; 116. a light shielding plate; 121. connected with
Wiring; 122. a storage main body; 123. a connecting disc; 124. a housing;
125. a second accommodation space;
1111. a connecting column; 1112. a boss; 1113. concave arc
A noodle; 1114. a planar portion; 1115. a first half cylinder; 1116.
a second half cylinder; 1117. flanging; 1118. a notch; 1119.
fool-proof column; 1121. an annular step; 1231. a connecting through hole; 1232.
a butt joint groove; 1233. an accommodation hole; 1234. a clamping plate; 1235.
fool-proof holes; 1241. a center column; 1242. and a second notch.
[ detailed description ] of the utility model
The present utility model will be described in further detail with reference to the accompanying drawings and examples of implementation in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
It will be understood that when an element is referred to as being "fixed to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and the like are used herein for illustrative purposes only.
In the present utility model, the terms "upper", "lower", "left", "right", "front", "rear", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal" and the like indicate an azimuth or a positional relationship based on that shown in the drawings. These terms are only used to better describe the present utility model and its embodiments and are not intended to limit the scope of the indicated devices, elements or components to the particular orientations or to configure and operate in the particular orientations.
Also, some of the terms described above may be used to indicate other meanings in addition to orientation or positional relationships, for example, the term "upper" may also be used to indicate some sort of attachment or connection in some cases. The specific meaning of these terms in the present utility model will be understood by those of ordinary skill in the art according to the specific circumstances.
Furthermore, the terms "mounted," "configured," "provided," "connected," and "connected" are to be construed broadly. For example, it may be a fixed connection, a removable connection, or a unitary construction; may be a mechanical connection, or an electrical connection; may be directly connected, or indirectly connected through intervening media, or may be in internal communication between two devices, elements, or components. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art according to the specific circumstances.
Referring to fig. 1 and 2, a first embodiment of the present utility model provides a data line 10, which includes a storage component 12, the storage component 12 includes a connection line 121 and a storage main body 122, the connection line 121 is telescopically stored in the storage main body 122, the data line 10 further includes a light emitting component 11 connected with the storage component 12, the light emitting component 11 includes a bottom plate 111 and a light-transmitting shell 112, the bottom plate 111 and the light-transmitting shell 112 are connected to form a storage space 113, and the storage space 113 is filled with a light-emitting fluid; at least one connecting column 1111 is disposed on a surface of the bottom plate 111 away from the light-transmitting shell 112, a connecting through hole 1231 is formed in the accommodating body 122 corresponding to the connecting column 1111, and the connecting column 1111 is detachably clamped into the connecting through hole 1231.
It can be appreciated that the detachable connection between the light emitting component 11 and the accommodating component 12 can separate the light emitting component 11 from the accommodating component 12, so as to prevent the connecting line 121 from being polluted when the light emitting fluid is poured into the light emitting component 11, and further, the user can replace the light emitting component 11 on the data line 10 to select different colors of the light emitting fluid, thereby improving the user experience and the purchasing desire of the user.
Optionally, the luminous flowing body directly adopts luminous sand/powder, and the filling amount is controlled to enable the luminous flowing body to be in a flowing state in the accommodating space 113; alternatively, noctilucent sand/powder can be mixed in the oily liquid to form noctilucent agent, and the noctilucent sand/powder can flow along with the oily liquid; or, the luminous sand/powder and the fillers with other shapes can be mixed in the oily liquid to form the mixed luminous agent, the luminous sand/powder and the fillers with other shapes can flow along with the oily liquid at the same time, and the fillers with other shapes can be luminous or non-luminous paillettes with triangular, square, pentagram or other irregular shapes, and can also be luminous or non-luminous objects with other shapes such as cartoon images, brand images and the like, so long as the flowing of the luminous sand/powder and the fillers in the oily liquid is not influenced. It can be understood that after the luminous sand/powder irradiates, light with corresponding color can be emitted in a darker environment, and the design adopts the characteristics of the material to realize the effect that the data line is easy to find in the darker environment, so that the process is simple, and the use experience of a user can be improved.
Alternatively, the accommodating component 12 may be a telescopic component, that is, two ends of the connecting wire 121 extending out of the accommodating main body 122 are stretchable, but one end is pulled, and the other end does not follow the extension; alternatively, the accommodating assembly 12 may be a single-stretching and shrinking assembly, that is, the connecting wire 121 extends out of two ends of the accommodating body 122, and only one end thereof is stretchable; alternatively, the accommodating assembly 12 may be a dual-stretching and shrinking assembly, that is, two ends of the connecting wire 121 extending out of the accommodating body 122 are stretchable, but one end is pulled, and the other end is synchronously extended.
Preferably, the number of the connection posts 1111 is 4, and correspondingly, the number of the connection through holes 1231 is also 4, and the numbers of the connection posts 1111 and the connection through holes 1231 are not limited herein.
Further, the bottom plate 111 is further provided with a foolproof column 1119 far away from the light-transmitting shell 112, the accommodating main body 122 is correspondingly provided with a foolproof hole 1235, the foolproof column 1119 is inserted into the foolproof hole 1235, the diameter of the foolproof column 1119 is different from that of the connecting column 1111, further, the diameter of the foolproof column 1119 is smaller than that of the connecting column 1111, the aperture of the foolproof hole 1235 is smaller than that of the connecting through hole 1231, and as can be understood, the foolproof column 1119 and the foolproof hole 1235 are arranged to prevent a plurality of connecting columns 1111 and connecting through holes 1231 from being arranged, the connecting column 1111 is inserted into the non-corresponding connecting through holes 1231, and the connecting efficiency of the light-emitting component 11 and the accommodating component 12 is improved.
Preferably, the number of the fool-proof columns 1119 is 1, and the number of the fool-proof holes 1235 is 1, and the number of the fool-proof columns 1119 and the fool-proof holes 1235 may be other, which is not limited herein.
Referring to fig. 3, a middle portion of the bottom plate 111 protrudes toward the accommodating space 113 to form a protruding portion 1112, a concave arc surface 1113 is formed on a surface of the protruding portion 1112 away from the accommodating space 113, and the connecting post 1111 is disposed on the concave arc surface 1113.
It can be appreciated that the protruding portion 1112 has an upward elastic potential energy, and can tighten the connecting column 1111 upward to form a pre-tightening force, so that the connection between the receiving assembly 12 and the light emitting assembly 11 is more stable; in addition, the protrusions 1112 enable the luminous fluid to flow and gather annularly to the edge of the accommodating space 113, so that luminous effect is enhanced.
Further, the gap 114 between the protrusion 1112 and the transparent shell 112 increases the flow area of the luminous fluid in the accommodating space 113, and prevents the luminous fluid from being inconvenient to circulate and causing only partial luminescence in the accommodating space 113.
Further, a solid paillette can be added in the accommodating space 113, and the paillette moves in the luminous fluid under the action of external force, so that the luminous assembly 11 is more beautiful, the user experience is further improved, and the gaps 114 between the protrusions 1112 and the transparent shell 112 effectively prevent the paillette from being deposited on the part of the accommodating space 113.
Further, the inner wall of the edge of the light-transmitting shell 112, which is close to one end of the bottom plate 111, is provided with an annular step 1121, and the edge of the bottom plate 111 is in interference fit with the annular step 1121, so that the bottom plate 111 is more tightly connected with the light-transmitting shell 112, the impact resistance is better, and the luminous fluid is not easy to flow out.
Further, the light emitting assembly 11 further includes a glue layer 115; the bottom plate 111 further includes a planar portion 1114 surrounding the protruding portion 1112, a surface of the planar portion 1114 on a side away from the accommodating space 113 is coplanar with an end face of the light-transmitting shell 112 near one end of the bottom plate 111, and the adhesive layer 115 covers a surface of the planar portion 1114 on a side away from the accommodating space 113 and an end face of the light-transmitting shell 112 near one end of the bottom plate 111. The glue layer 115 can encapsulate the gap formed after the bottom plate 111 is connected with the light-transmitting shell 112, so as to further improve the sealing performance of the light-emitting component 11.
Referring to fig. 4 and 5, the accommodating body 122 includes a connecting disc 123, a docking slot 1232 is formed on a side of the connecting disc 123 facing the light emitting component 11, and a connection through hole 1231 is formed on a bottom wall of the docking slot 1232; when the light emitting component 11 is connected with the accommodating component 12, the light emitting component 11 enters the docking groove 1232, the glue layer 115 is adhered to the bottom wall of the docking groove 1232, and the light emitting component 11 and the accommodating component 12 are further adhered together through the glue layer 115, so that the stability of the data line 10 is improved.
Referring to fig. 3 and 5, the connecting column 1111 includes an end surface far away from the bottom plate 111 and a side surface connected to the end surface, a notch 1118 is formed on the side surface, the notch 1118 penetrates the connecting column 1111, and the notch 1118 is formed to enable the connecting column 1111 to have a certain elasticity, i.e. the diameter of the connecting column 1111 can be reduced under the action of external force, so that the connecting column 1111 can be more easily inserted into the connecting through hole 1231.
Further, the notch 1118 divides the connecting column 1111 into a first half-column 1115 and a second half-column 1116, and a flange 1117 is provided on the side of the first half-column 1115 and/or the side of the second half-column 1116. After the connection post 1111 is inserted into the connection hole 1231, the flange 1117 may limit the connection post 1111 from being pulled out of the connection hole 1231, thereby improving the stability of the data line 10.
Referring to fig. 3 and 6, a light shielding plate 116 is disposed on a surface of the light-transmitting shell 112, which is far from the accommodating space 113, corresponding to the protruding portion 1112, and a portion of the light-transmitting shell 112, where the light shielding plate 116 is not disposed, is formed in a ring shape.
It can be understood that the portion of the accommodating space 113 corresponding to the light shielding plate 116 has less luminous fluid content and no obvious luminous effect, the light shielding plate 116 does not influence the luminous fluid to emit light at the edge of the accommodating space 113, and information such as the use instruction of the data line 10 can be printed on the light shielding plate 116, so that the use efficiency of the transparent shell 112 is improved; the printing machine can also be used for printing brand visual identification information, graphic information and the like, enhancing the aesthetic feeling of products and improving the brand identification degree.
Alternatively, the light shielding plate 116 may be made of P C, pvc, metal or leather, and may be made into a light shielding sheet. It will be appreciated that different material selections may be adapted for different process customizations to achieve different customization results, meeting different brand user requirements.
Referring to fig. 5 and 7, the accommodating body 122 includes a housing 124, the housing 124 and the connecting disc 123 are clamped together at a side far away from the light emitting component 11 to form a second accommodating space 125, a central column 1241 is disposed in the second accommodating space 125 towards the connecting disc 123 by the housing 124, and a second notch 1242 is formed in the central column 1241; the connecting disc 123 is far away from the light emitting component 11 and is provided with a containing hole 1233 corresponding to the central column 1241, a clamping plate 1234 is arranged in the containing hole 1233 corresponding to the second notch 1242, the central column 1241 is inserted into the containing hole 1233, and the clamping plate 1234 is inserted into the second notch 1242. The provision of the snap plate 1234 increases the contact area between the land 123 and the center post 1241, which makes the land 123 more tightly connected with the housing 124, and improves the stability of the data line 10.
Compared with the prior art, the data line has the following advantages:
1. the data line of the utility model, including accomodating the subassembly, accomodate the subassembly and include connecting wire and accomodate the main part, the connecting wire is scalable accomodate in accomodating the main part, its characterized in that still includes: the light-emitting assembly is connected with the storage assembly and comprises a bottom plate and a light-transmitting shell, the bottom plate and the light-transmitting shell are connected to form a storage space, and a light-emitting flowing body is filled in the storage space; one side of the bottom plate, which is far away from the light-transmitting shell, is provided with at least one connecting column, the accommodating main body is provided with a connecting through hole corresponding to the connecting column, and the connecting column can be detachably clamped into the connecting through hole. The luminous component can be detached and connected with the storage component, so that the luminous component and the storage component are manufactured separately, the pollution of connecting wires when luminous flowing bodies are filled into the luminous component is prevented, further, the luminous components on the data wires can be replaced by users, the colors of the luminous flowing bodies in different styles are selected, and the user experience and the purchasing desire of consumers are improved.
2. The middle part of the bottom plate is protruded towards one side of the accommodating space to form a protruding part, one surface of the protruding part, which is far away from the accommodating space, is provided with a concave cambered surface, and the connecting column is arranged on the concave cambered surface. The bulge part has upward elastic potential energy, and can upwardly tighten the connecting column to form pretightening force, so that the connection between the storage assembly and the light-emitting assembly is more stable; in addition, the convex part enables the luminous fluid to flow and gather to the edge of the accommodating space to form a ring shape, thereby enhancing luminous effect.
3. The gap exists between the protruding part and the light-transmitting shell, so that the flow area of the luminous flow body in the accommodating space is increased, and the luminous flow body is prevented from only locally emitting light in the accommodating space.
4. The inner wall of the edge of the light-transmitting shell, which is close to one end of the bottom plate, is provided with the annular step, and the edge of the bottom plate is in interference fit with the annular step, so that the bottom plate is more tightly connected with the light-transmitting shell, the impact resistance is better, and the luminous fluid is not easy to flow out.
5. The luminous component of the utility model also comprises a glue layer; the bottom plate still includes the plane portion that encircles the bellying, and the plane portion is kept away from the surface of accommodating space one side and is close to the terminal surface coplane of bottom plate one end with the printing opacity shell, and the glue film covers the surface of accommodating space one side and the terminal surface that the printing opacity shell is close to bottom plate one end of being away from the plane portion, and the glue film can encapsulate the space that the bottom plate formed after being connected with the printing opacity shell, has further improved luminous element's leakproofness.
6. The storage main body comprises a connecting disc, wherein a butt joint groove is formed in one side, facing the light-emitting component, of the connecting disc, and a connecting through hole is formed in the bottom wall of the butt joint groove; when the light-emitting component is connected with the storage component, the light-emitting component enters the butt joint groove, the glue layer is adhered to the bottom wall of the butt joint groove, the light-emitting component and the storage component are further adhered together through the glue layer, and the stability of the data line is improved.
7. The connecting column comprises an end face far away from the bottom plate and a side face connected with the end face, a notch is formed in the side face, the notch penetrates through the connecting column, the connecting column is enabled to have certain elasticity due to the fact that the notch is formed, namely the diameter of the connecting column can be reduced under the action of external force, and the connecting column is enabled to be inserted into the connecting through hole more easily.
8. The notch divides the connecting column into a first half column body and a second half column body, and the side surface of the first half column body and/or the side surface of the second half column body are/is provided with turned edges. After the spliced pole inserts the connection through-hole, the turn-ups can restrict the spliced pole to extract the connection through-hole, have improved the stability of data line.
9. The surface of one side of the light-transmitting shell far away from the accommodating space is provided with the light shielding plate corresponding to the convex part, and the part of the light-transmitting shell, which is not provided with the light shielding plate, forms a ring shape. The content of the luminous fluid at the position corresponding to the light shielding plate in the accommodating space is less, the luminous is not obvious, the light shielding plate is arranged so as not to influence the luminous fluid to emit light at the edge of the accommodating space, and information such as the use instruction of the data line can be printed on the light shielding plate, so that the use efficiency of the light-transmitting shell is improved; the printing machine can also be used for printing brand visual identification information, graphic information and the like, enhancing the aesthetic feeling of products and improving the brand identification degree.
10. The storage main body comprises a shell, wherein the shell and one side of the connecting disc, which is far away from the light-emitting component, are clamped to form a second storage space, a center column is arranged in the second storage space towards the connecting disc, and a second notch is formed in the center column; one side of the connecting disc, which is far away from the light-emitting component, is provided with a containing hole corresponding to the central column, a clamping plate is arranged in the containing hole corresponding to the second notch, the central column is inserted into the containing hole, and the clamping plate is inserted into the second notch. The clamping plate is arranged, so that the contact area of the connecting disc and the central column is increased, the connecting disc is tightly connected with the shell, and the stability of the data line is improved.
The above description is only of the preferred embodiments of the present utility model and is not intended to limit the utility model, but any modifications, equivalents, improvements, etc. within the principles of the present utility model should be included in the scope of the present utility model.

Claims (10)

1. The utility model provides a data line, includes the storage subassembly, the storage subassembly includes connecting wire and storage main part, the connecting wire scalable accomodate in the storage main part, its characterized in that still includes: the light-emitting assembly is connected with the storage assembly and comprises a bottom plate and a light-transmitting shell, the bottom plate and the light-transmitting shell are connected to form a storage space, and a light-emitting flowing body is filled in the storage space; the bottom plate is kept away from the one side of printing opacity shell is equipped with at least one spliced pole, accomodate the main part correspondence the spliced pole has been seted up and has been connected the through-hole, the spliced pole can be dismantled the card and go into connect the through-hole.
2. The data line of claim 1, wherein the middle portion of the bottom plate protrudes toward one side of the accommodating space to form a protruding portion, a face of the protruding portion away from the accommodating space forms a concave arc face, and the connection post is disposed on the concave arc face.
3. The data line of claim 2, wherein a gap exists between the boss and the light-transmissive shell.
4. The data line of claim 1, wherein an annular step is formed in an inner wall of the edge of the light-transmitting shell adjacent to one end of the bottom plate, and the edge of the bottom plate is in interference fit with the annular step.
5. The data line of claim 2, wherein the light emitting assembly further comprises a glue layer; the bottom plate also comprises a plane part surrounding the protruding part, the surface of one side of the plane part, which is far away from the accommodating space, is coplanar with the end face of one end of the light-transmitting shell, which is close to the bottom plate, and the glue layer covers the surface of one side of the plane part, which is far away from the accommodating space, and the end face of one end of the light-transmitting shell, which is close to the bottom plate.
6. The data line of claim 5, wherein the receiving body includes a land, a docking slot is provided at a side of the land facing the light emitting assembly, and the connection through hole is provided at a bottom wall of the docking slot; when the light-emitting assembly is connected with the storage assembly, the light-emitting assembly enters the butt joint groove, and the glue layer is adhered to the bottom wall of the butt joint groove.
7. The data line of claim 5, wherein the connection post comprises an end surface remote from the base plate and a side surface connected to the end surface, the side surface being provided with a notch, the notch extending through the connection post.
8. The data line of claim 7, wherein the notch divides the connection post into a first half post and a second half post, and wherein a flange is provided on a side of the first half post and/or a side of the second half post.
9. The data line according to claim 2, wherein a light shielding plate is disposed on a surface of the light-transmitting shell, which is far from the accommodating space, corresponding to the protruding portion, and a portion of the light-transmitting shell, on which the light shielding plate is not disposed, forms a ring shape.
10. The data line of claim 6, wherein the accommodating body comprises a housing, the housing and the side of the connecting disc away from the light emitting component are clamped to form a second accommodating space, a center column is arranged in the second accommodating space towards the connecting disc, and a second notch is formed in the center column; the connecting disc is far away from one side of the light-emitting component and corresponds to the central column, a clamping plate is arranged in the accommodating hole and corresponds to the second notch, the central column is inserted into the accommodating hole, and the clamping plate is inserted into the second notch.
CN202223168952.3U 2022-11-28 2022-11-28 Data line Active CN219180888U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223168952.3U CN219180888U (en) 2022-11-28 2022-11-28 Data line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223168952.3U CN219180888U (en) 2022-11-28 2022-11-28 Data line

Publications (1)

Publication Number Publication Date
CN219180888U true CN219180888U (en) 2023-06-13

Family

ID=86664630

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223168952.3U Active CN219180888U (en) 2022-11-28 2022-11-28 Data line

Country Status (1)

Country Link
CN (1) CN219180888U (en)

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