CN216057116U - Mobile phone support - Google Patents

Mobile phone support Download PDF

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Publication number
CN216057116U
CN216057116U CN202120353429.4U CN202120353429U CN216057116U CN 216057116 U CN216057116 U CN 216057116U CN 202120353429 U CN202120353429 U CN 202120353429U CN 216057116 U CN216057116 U CN 216057116U
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CN
China
Prior art keywords
magnet
groove
base housing
base
annular
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Active
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CN202120353429.4U
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Chinese (zh)
Inventor
张平
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Saimi Software Technology Development Co ltd
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Qingdao Saimi Software Technology Development Co ltd
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Application filed by Qingdao Saimi Software Technology Development Co ltd filed Critical Qingdao Saimi Software Technology Development Co ltd
Priority to CN202120353429.4U priority Critical patent/CN216057116U/en
Priority to US17/367,500 priority patent/US11265035B1/en
Priority to GB2313552.8A priority patent/GB2618946A/en
Priority to PCT/US2022/012265 priority patent/WO2022169573A1/en
Priority to US17/580,867 priority patent/US11784675B2/en
Application granted granted Critical
Publication of CN216057116U publication Critical patent/CN216057116U/en
Priority to US18/230,492 priority patent/US20230378991A1/en
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Abstract

The utility model relates to the field of mobile phone accessories and discloses a mobile phone support which comprises an adsorption component and an air bag component. The adsorption component comprises a base shell and a magnet, and the magnet is arranged on the base shell; the air bag assembly is mounted on the adsorption assembly; wherein, the base shell is provided with an accommodating groove; the airbag module comprises an airbag portion, the airbag portion comprises a first end portion, a second end portion and a folding section, the folding section is connected between the first end portion and the second end portion, the first end portion is contained in the containing groove, and the folding section can be folded to be contained in the containing groove or unfolded to extend out of the containing groove. The electromagnetic induction coil of the mobile phone is adsorbed by the magnet, the problem that the requirement of a glue layer or a sucker on the surface of the mobile phone is high in flatness and cleanliness can be solved, and meanwhile, the mobile phone support comprises the air bag assembly, so that the mobile phone support can stretch and retract, and the mobile phone support is convenient to use by a user.

Description

Mobile phone support
Technical Field
The utility model relates to the field of mobile phone accessories, in particular to a mobile phone support.
Background
The mobile phone is a necessary article for people to live, and the mobile phone support is used for bringing convenience to people to place or hold the mobile phone. The gasbag support is one kind of cell phone stand. The air bag support is foldable, and the size of the air bag support can be reduced, so that the purpose of portability is achieved. The airbag support generally fixes the mobile phone through an adhesive layer or a suction cup.
However, the adhesive layer or the suction cup has high requirements on the flatness and cleanliness of the surface of the mobile phone.
SUMMERY OF THE UTILITY MODEL
The embodiment of the utility model aims to provide a mobile phone support, and aims to solve the technical problem that in the prior art, the glue layer or the sucker of an air bag support has high requirements on the flatness and the cleanliness of the surface of a mobile phone.
The embodiment of the utility model adopts the following technical scheme for solving the technical problems:
provided is a mobile phone stand including:
the adsorption component comprises a base shell and a magnet, and the magnet is arranged on the base shell; and
an air bag module mounted on the adsorption module;
wherein, the base shell is provided with an accommodating groove; the airbag module comprises an airbag portion, the airbag portion comprises a first end portion, a second end portion and a folding section, the folding section is connected between the first end portion and the second end portion, the first end portion is contained in the containing groove, and the folding section can be folded to be contained in the containing groove or unfolded to extend out of the containing groove.
In some embodiments, the magnet is in a ring configuration.
In some embodiments, the base shell comprises a support;
the magnet is fixed to the support.
In some embodiments, the magnet comprises at least two magnetic units;
the at least two magnetic units are distributed annularly, and every two adjacent magnetic units are arranged at intervals.
In some embodiments, each of the magnetic units has an arc-shaped structure;
the at least two magnetic units are in a discontinuous annular structure.
In some embodiments, the base housing comprises at least two magnet slot portions;
the at least two magnet groove parts are distributed in a ring shape, and every two adjacent magnet groove parts are arranged at intervals;
each of the magnetic units is accommodated in a corresponding one of the magnet groove portions.
In some embodiments, the airbag assembly further includes a flange portion connected to the second end portion, the flange portion for abutting the base housing when the folded section is folded to prevent the flange portion from entering the receiving slot.
In some embodiments, the base shell includes a first fastening portion disposed on a wall of the receiving groove, and the airbag module includes a second fastening portion connected to the first end portion, the second fastening portion being fastened to the first fastening portion; alternatively, the first and second electrodes may be,
the airbag module includes a bonding portion bonded to a groove wall of the accommodating groove and fixed to the base case by an adhesive.
In some embodiments, the base housing is provided with a groove, the groove is disposed at one side of the receiving groove and communicated with the receiving groove, and when the folding section is folded, the groove exposes a side surface of the second end portion.
In some embodiments, the base housing comprises a first base housing member and a second base housing member, the first base housing member being mounted to the second base housing member;
the first base housing member includes an annular bottom wall, an annular outer side wall extending from an outer peripheral edge of the annular bottom wall toward one side of the annular bottom wall, and an annular inner side wall extending from an inner peripheral edge of the annular bottom wall toward the same side of the annular bottom wall;
the second base shell member includes a body portion including a first end face and a second end face that are opposite to each other;
the main body part is sleeved in the annular outer side wall, the first end face abuts against the periphery of the annular inner side wall, and the first end face and the annular inner side wall jointly enclose the accommodating groove.
In some embodiments, the first base shell member further comprises a locator post having one end connected to the annular bottom wall and another end distal from the annular bottom wall and beyond the annular inner sidewall;
the second base housing member further includes a positioning hole portion provided in the main body portion and penetrating the first end surface and the second end surface;
the positioning column part is inserted into the positioning hole part;
the base housing further includes a third base housing member including a cover covering the second end face.
In some embodiments, the sorption assembly comprises at least two magnetic units, each of the magnetic units being in an arc-shaped configuration;
the second base shell component further comprises at least two magnet groove parts, the at least two magnet groove parts are arranged on the main body part and distributed annularly, and every two adjacent magnet groove parts are arranged at intervals;
each magnetic unit is accommodated in a corresponding magnetic slot part;
the base shell comprises a supporting piece, the supporting piece is sleeved in the annular outer side wall and sleeved outside the annular inner side wall, and the supporting piece is attached to the annular bottom wall;
the at least two magnetic units are fixed to the support.
In some embodiments, the base housing comprises a base housing body and a cover;
a magnet groove part is arranged on one end face of the base shell main body, the magnet is contained in the magnet groove part, and the cover body covers the end face to shield the magnet groove part;
the airbag module is mounted to the base housing body.
In some embodiments, the base shell comprises a support, the base shell body encasing the support;
the magnet comprises at least two magnetic units, each magnetic unit is of an arc-shaped structure, and each magnetic unit is accommodated in the magnetic groove and fixed on the support piece.
In some embodiments, the base housing comprises a base housing body and a cover;
a magnet groove part is arranged on one end face of the base shell main body, and the cover body covers the end face;
the magnet is accommodated in the magnet groove.
In some embodiments, the base shell comprises a support;
the magnet comprises at least two magnetic units, each magnetic unit is of an arc-shaped structure, and the at least two magnetic units are fixed on the supporting piece and are contained in the magnetic body groove part together with the supporting piece.
Compared with the prior art, in the mobile phone support provided by the embodiment of the utility model, the electromagnetic induction coil of the mobile phone is adsorbed by the magnet, so that the problem that the requirement of a glue layer or a sucker on the flatness and cleanliness of the surface of the mobile phone is high can be solved, and meanwhile, the mobile phone support comprises the airbag assembly, so that the mobile phone support can be stretched and retracted, and is convenient for a user to use.
In addition, the magnet is designed into an annular structure and is matched with the electromagnetic induction coil of the mobile phone in shape, so that the adsorption capacity of the magnet on the mobile phone can be improved.
Drawings
One or more embodiments are illustrated by way of example in the accompanying drawings, which correspond to the figures in which like reference numerals refer to similar elements and which are not to scale unless otherwise specified.
Fig. 1 is a schematic structural diagram of a mobile phone support according to an embodiment of the present invention;
FIG. 2 is a disassembled schematic view of the handset support shown in FIG. 1;
FIG. 3 is a schematic diagram of the suction assembly of the handset support shown in FIG. 1;
FIG. 4 is a disassembled schematic view of the adsorbent assembly shown in FIG. 3;
FIG. 5 is a disassembled schematic view of the adsorbent assembly shown in FIG. 3 at another angle;
FIG. 6 is a schematic view of the configuration of the magnets of the adsorbent assembly shown in FIG. 3;
FIG. 7 is a schematic cross-sectional view of the adsorbent assembly shown in FIG. 3;
FIG. 8 is a schematic view of the airbag module of the handset support shown in FIG. 1;
FIG. 9 is a cross-sectional schematic view of the cell phone stand shown in FIG. 1;
FIG. 10 is a schematic view of the handset support of FIG. 1 shown in an alternate angle;
FIG. 11 is a schematic view of the handset support shown in FIG. 1 in another configuration;
FIG. 12 is a schematic structural view of the handset support shown in FIG. 1 in accordance with further embodiments;
FIG. 13 is a schematic cross-sectional view of the handset support shown in FIG. 1 in accordance with other embodiments;
fig. 14 and 15 are disassembled schematic views of the suction assembly of the mobile phone holder shown in fig. 1 in other embodiments.
Detailed Description
In order to facilitate an understanding of the utility model, the utility model is described in more detail below with reference to the accompanying drawings and specific examples. It will be understood that when an element is referred to as being "connected" to another element, it can be directly on the other element or intervening elements may be present. The terms "upper", "lower", "left", "right", "upper", "lower", "top" and "bottom" used in the present specification indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience in describing and simplifying the description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and thus should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the utility model herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model.
Referring to fig. 1 and 2, an embodiment of the utility model provides a mobile phone holder 100, which includes an absorption assembly 10 and an airbag assembly 20. The adsorption module 10 is connected to the airbag module 20.
Referring to fig. 3, the adsorption assembly 10 includes a base housing 12 and a magnet 14. The magnet 14 is mounted to the base housing 12.
The base housing 12 is generally cylindrical in configuration.
It should be noted that the base shell 12 may be designed to have other shapes, such as a triangular prism, a quadrangular prism, a pentagonal prism, etc., according to actual needs.
Referring to fig. 4 and 5, the base housing 12 is a split structure and includes a first base housing member 120, a second base housing member 122, a third base housing member 124 and a fourth base housing member 126. The first, second, third and fourth base housing members 120, 122, 124, 126 are assembled together.
It is understood that the base shell 12 may be a one-piece structure, depending on the actual requirements.
The first base housing member 120 includes an annular bottom wall 1200, an annular outer side wall 1202, an annular inner side wall 1204, a spud portion 1206, and a threaded portion 1208.
The annular bottom wall 1200 and the annular outer sidewall 1202 form part of the outer contour of the base housing 12, and both the annular bottom wall 1200 and the annular outer sidewall 1202 are annular structures.
It is understood that, according to the actual requirement, for example, when the base housing 12 is designed to be a triangular prism structure, a quadrangular prism structure, a pentagonal prism structure, etc., the annular bottom wall 1200 and the annular outer side wall 1202 are both in a triangular annular structure, a quadrangular annular structure, a pentagonal annular structure, etc.
The annular inner side wall 1204 is of an annular structure.
It should be noted that the annular inner sidewall 1204 may be designed to have other shapes, such as a triangular annular structure, a quadrangular annular structure, a pentagonal annular structure, etc., according to actual needs.
The annular outer sidewall 1202 extends from the outer periphery of the annular bottom wall 1200 to one side of the annular bottom wall 1200, the annular inner sidewall 1204 extends from the inner periphery of the annular bottom wall 1200 to the same side of the annular bottom wall 1200, and the annular outer sidewall 1202 surrounds the annular inner sidewall 1204.
The number of the retainer posts 1206 is three. The three positioning column portions 1206 are disposed between the annular outer sidewall 1202 and the annular inner sidewall 1204 and surround the annular inner sidewall 1204.
One end of each of the retainer pillar portions 1206 is connected to the annular bottom wall 1200, and the other end of the retainer pillar portion 1206 is away from the bottom wall 1200 and extends beyond the annular inner sidewall 1204.
The number of the positioning column portions 1206 is not limited to three, and the number of the positioning column portions 1206 may be any number according to actual needs.
The number of the screw-coupling portions 1208 is three. Each of the screw portions 1208 is disposed at an end of the corresponding one of the retainer post portions 1206 remote from the annular bottom wall 1200.
The screw joint 1208 is in a screw hole structure.
It is understood that the number of the screw-fastening portions 1208 is not limited to three, and the number of the screw-fastening portions 1208 may be any number according to practical requirements as long as the number of the stud portions 1206 is not exceeded.
The second base member 122 includes a main body portion 1220, a first click portion 1222, a magnet groove portion 1224, and a positioning hole portion 1226. The first latching portion 1222, the magnet groove portion 1224, and the positioning hole portion 1226 are all disposed on the main body portion 1220.
The main body portion 1220 has a substantially flat cylindrical structure and includes a first end surface 1221 and a second end surface 1223. The first end face 1221 and the second end face 1223 face away from each other.
The first latching portion 1222 is disposed at the center of the main body portion 1220. The first fastening portion 1222 is a stepped hole structure, a section of the stepped hole structure with a smaller diameter is close to the first end surface 1221, and a section of the stepped hole structure with a larger diameter is close to the second end surface 1223.
The number of the magnet groove parts 1224 is at least two. At least two magnet groove parts 1224 are disposed on the main body part 1220 and surround the first latching part 1222, and every two adjacent magnet groove parts 1224 are disposed at intervals. The magnet groove portion 1224 penetrates the first end face 1221 and the second end face 1223.
Each of the magnet slot portions 1224 is generally arcuate in configuration and at least two of the magnet slot portions 1224 are generally discontinuous in annular configuration.
In this embodiment, the number of the at least two magnet groove parts 1224 is 7, and the 7 magnet groove parts 1224 are uniformly distributed around the first latching part 1222 and distributed along the same circumference.
The positioning hole 1226 penetrates the first end surface 1221 and the second end surface 1223. The number of the positioning hole portions 1226 is three. The three positioning hole portions 1226 are provided around the first latching portion 1222. Each of the positioning hole portions 1226 is adapted to be inserted into a corresponding one of the positioning post portions 1206.
It is to be understood that the number of the positioning hole portions 1226 is not limited to three, and the number of the positioning hole portions 1226 may be any number as long as the number of the positioning column portions 1206 is the same, according to the actual requirement.
The third base housing component 124 includes a cover 1240. The cover 1240 forms part of the outer contour of the base housing 12, and the cover 1240 has a generally circular, sheet-like configuration.
It is understood that the cover 1240 may have a substantially triangular, quadrangular, pentagonal, or the like sheet-like structure, as desired, for example, when the base housing 12 is designed as a triangular, quadrangular, pentagonal, or the like.
The cover 1240 may be made of a soft material. The soft material may be leather, silica gel, sponge, or the like.
The fourth base housing member 126 includes a support 1260.
The support 1260 is a generally annular, sheet-like structure. The supporting member 1260 may be made of a ferromagnetic material. The ferromagnetic material is, for example, iron, nickel, cobalt, or the like.
Referring to fig. 6, the magnet 14 is substantially ring-shaped. The magnet 14 includes a magnetic unit 140.
In other embodiments, the number of the magnetic units 140 is one, and the magnetic units 140 are an integral ring structure.
In this embodiment, the number of the magnetic units 140 is at least two, and at least two of the magnetic units 140 are annularly distributed.
Every two adjacent magnetic units 140 are spaced apart.
Each of the magnetic units 140 has an arc structure, and at least two of the magnetic units 140 have a discontinuous ring structure.
Referring to fig. 7, the assembly process of the adsorption assembly 10 is as follows:
the supporting element 1260 is sleeved in the annular outer side wall 1202 and sleeved outside the annular inner side wall 1204. The support 1260 fits against the annular bottom wall 1200.
The main body portion 1220 is sleeved in the annular outer side wall 1202, the first end face 1221 abuts against the periphery of the annular inner side wall 1204 and the support 1260, the first end face 1221 and the annular inner side wall 1204 together enclose to form an accommodating groove 101, and the first buckling portion 1202 is arranged on a portion of the first end face 1221 participating in forming the accommodating groove 101. Each of the retainer post portions 1206 is formed through a corresponding one of the retainer hole portions 1226. A threaded fastener (not shown) is inserted through the positioning hole 1226 and is threadedly engaged with the threaded portion 1208.
Each of the magnet units 140 is received in a corresponding one of the magnet slot portions 1224 and is attracted to the support 1260.
The cover 1240 covers the second end face 1223 to cover the magnet groove 1224, the positioning hole portion 1226, and the like. The cover 1240 may be secured to the body 1220 by an adhesive layer.
It is understood that in some embodiments, the support 1260 is not limited to being made of a ferromagnetic material as long as it can carry the magnetic unit 140, and may be made of stainless steel, composite material, or engineering plastic, for example. When the support 1260 is not made of a ferromagnetic material, the magnetic unit 140 may be fixed to the support 1260 by means of gluing or the like.
It is understood that in some embodiments, the support 1260 may be omitted.
Referring to fig. 8, the airbag module 20 includes an airbag portion 22, a second fastening portion 24, and a flange portion 26.
The bladder portion 22 includes a first end 220, a second end 222, and a folded section 224. The folding segment 224 is connected between the first end portion 220 and the second end portion 222, and the folding segment 224 can be unfolded or folded, wherein when unfolded, the first end portion 220 is close to the second end portion 222; when folded, the first end 220 is distal from the second end 222.
The first end 220 has a diameter smaller than the diameter of the second end 222. The folded section 224 is generally flared, with the smaller diameter end of the folded section 224 connected to the first end 220 and the larger diameter end of the folded section 224 connected to the second end 222.
The second latch portion 24 is connected to the first end portion 220.
The second fastening portion 24 is a stepped pillar structure, a section of the stepped pillar structure with a smaller diameter is far away from the first end portion 220, and a section of the stepped pillar structure with a larger diameter is connected with the second end portion 220.
The flange portion 26 is connected to the second end portion 222 and extends beyond a side surface of the second end portion 222.
The airbag module 20 is a split structure including a first support member and a second support member. The second support member is mounted to the first support member.
The first support member includes the second fastening portion 24, the first end portion 220, the second end portion 222, the folding section 224, and the first fastening portion 21. The first fastening portion 21 is connected to an end of the folding segment 224 away from the first end 220.
The second support member includes the flange portion 26 and the second engagement portion 23. The second engagement portion 23 is connected to the flange portion 26.
The second engaging portion 23 engages with the first engaging portion 21, so that the flange portion 26 is fixed to the second end portion 222.
The first fastening portion 21 may be a fastening hole, and is opened at the second end 222. The number of the first fastening parts 21 is 4, and 4 first fastening parts 21 are uniformly distributed on the circumference of the second end portion 222. The second engaging portion 23 may be an L-shaped buckle, which is fixed to the flange portion 26. The number of the second fastening portions 23 is 4, and each of the second fastening portions 23 is accommodated in a corresponding one of the first fastening portions 21.
It is understood that the airbag module 20 may be a one-piece structure, as desired.
Referring to fig. 9, the assembly process of the mobile phone holder 100 is as follows:
the first end portion 220 is disposed in the accommodating groove 101, and the first latching portion 1222 is engaged with the second latching portion 24.
Referring to fig. 10 and 11, the usage of the mobile phone holder 100 is as follows:
first, the cover 1240 is attached to the handset. The magnet 14 attracts an electromagnetic coil in the handset to mount the handset cradle 100 to the handset.
It should be noted that, on one hand, the cover 1240 made of a soft material can prevent the mobile phone holder 100 from scratching the mobile phone. On the other hand, the electromagnetic induction coil is generally of a ring-shaped structure, and the magnet 14 is designed to be of a ring-shaped structure, so that the shape of the magnet 14 matches the shape of the electromagnetic induction coil, and the adsorption capability of the magnet 14 to the mobile phone can be improved.
It should be understood that the absorption assembly 10 is not limited to absorb the mobile phone by magnetic attraction, and the magnet 14 may be replaced by a suction cup according to actual requirements as long as the absorption assembly 10 can absorb the mobile phone.
When the airbag module 20 needs to be held by hand, the folded section 224 is unfolded, the folded section 224 extends out of the receiving groove 101, and a user can grip the folded section 224 with fingers so as to grasp the mobile phone.
When the airbag module 20 needs to be stored, the folded section 224 is folded, the folded section 224 is stored in the storage groove 101, the volume of the cellular phone holder 100 is reduced, and the folded section 224 is arranged so as not to be easily collided with and unfolded by the storage groove 101. The flange portion 26 has a diameter larger than that of the receiving groove 101, and the flange portion 26 is used to abut against the annular bottom wall 1200 when the folding section 224 is folded, so as to prevent the flange portion 26 from entering the receiving groove 101. The user may act on the flange portion 26 to unfold the folded section 224 to more easily unfold the folded section 224.
Referring to fig. 12, in some other embodiments, the base shell 12 is further provided with a groove 103. The groove 103 is disposed at one side of the accommodating groove 101 and is communicated with the accommodating groove 101. When the folding segment 224 is folded, the groove 103 exposes the side surface of the second end portion 222, and a user can act on the side surface of the second end portion 222 through the groove 103 to facilitate unfolding of the folding segment 224.
The number of the grooves 103 may be two, and the two grooves 103 are symmetrically disposed on two opposite sides of the accommodating slot 101, respectively.
Referring to fig. 13, in some other embodiments, the base housing 12 includes a base housing main body 1201, a cover 1240 and a support 1260.
The base shell main body 1201 is roughly in a flat cylindrical structure, and the supporting piece 1260 is wrapped by a metal insert injection molding process, so that a positioning column part, a positioning hole part and a screwing part can be omitted, the molding period is shortened, and the assembling process is simplified.
The magnet groove 1224 is provided at one end surface of the base housing main body 1201, and the cover 1240 covers the end surface to shield the magnet groove 1224.
The other end surface of the base case main body 1201 is provided with the housing groove 101.
It is understood that in some embodiments, the support 1260 may be omitted.
In other embodiments, the first and second locking portions are omitted. The airbag module 20 further includes a fitting portion 25. The attachment portion 25 is substantially a sheet-like structure and is connected to the bag portion 22. The bonding portion 25 is bonded to the wall of the storage groove 101 and fixed to the base case 12 by adhesion.
Referring to fig. 14 and 15, in other embodiments, the base housing 12 includes a base housing body 1201, a cover 1240, and a support 1260.
The base case main body 1201 has a substantially flat cylindrical configuration, and has a magnet groove 1224 provided on one end surface and a housing groove 101 provided on the other end surface. The magnet slot portion 1224 is an annular structure.
The magnet 14 is attracted to the support 1260 and is received in the magnet slot 1224 with the support 1260. The supporting member 1260 is fixed to the base case main body 1201 by gluing.
The cover 1240 covers the end face to shield the magnet slot 1224.
The magnet 14 includes at least two magnetic units 140. Every two adjacent magnetic units 140 are in contact. Each of the magnet units 140 has an arc-shaped structure and is fixed to the support 1260.
It is understood that in some embodiments, the support 1260 may be omitted and the magnet 14 received in the magnet slot 1224 may be secured to the base housing body 1201 by gluing or the like.
Compared with the prior art, in the mobile phone support 100 provided by the embodiment of the utility model, the magnet 14 adsorbs the electromagnetic induction coil of the mobile phone, so that the problem that the requirement of a glue layer or a sucker on the flatness and cleanliness of the surface of the mobile phone is high can be solved, and meanwhile, the mobile phone support 100 comprises the airbag assembly 20, so that the mobile phone support 100 can be stretched, and the use of a user is facilitated.
In addition, the magnet 14 is designed into an annular structure, and the shape of the magnet is basically matched with that of an electromagnetic induction coil of the mobile phone, so that the adsorption capacity of the magnet 14 on the mobile phone can be improved.
In addition, by disposing the housing groove 101, the folding segment 224 can be housed in the housing groove 101, and the folding segment 224 is not easily collided and unfolded.
Finally, it should be noted that: the above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; within the idea of the utility model, also technical features in the above embodiments or in different embodiments may be combined, steps may be implemented in any order, and there are many other variations of the different aspects of the utility model as described above, which are not provided in detail for the sake of brevity; while the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art will appreciate that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and the modifications or the substitutions do not make the essence of the corresponding technical solutions depart from the scope of the technical solutions of the embodiments of the present invention.

Claims (16)

1. A handset support, comprising:
the adsorption component comprises a base shell and a magnet, and the magnet is arranged on the base shell; and
an air bag module mounted on the adsorption module;
wherein, the base shell is provided with an accommodating groove; the airbag module comprises an airbag portion, the airbag portion comprises a first end portion, a second end portion and a folding section, the folding section is connected between the first end portion and the second end portion, the first end portion is contained in the containing groove, and the folding section can be folded to be contained in the containing groove or unfolded to extend out of the containing groove.
2. The handset support according to claim 1, wherein the magnet is of annular configuration.
3. The handset cradle of claim 2, wherein the base housing comprises a support;
the magnet is fixed to the support.
4. The handset cradle of claim 2, wherein the magnet comprises at least two magnetic units;
the at least two magnetic units are distributed annularly, and every two adjacent magnetic units are arranged at intervals.
5. The handset support according to claim 4, wherein each of the magnetic units is of an arc-shaped structure;
the at least two magnetic units are in a discontinuous annular structure.
6. The handset cradle of claim 4, wherein the base housing comprises at least two magnet slots;
the at least two magnet groove parts are distributed in a ring shape, and every two adjacent magnet groove parts are arranged at intervals;
each of the magnetic units is accommodated in a corresponding one of the magnet groove portions.
7. The handset cradle of claim 1, wherein the airbag assembly further comprises a flange portion connected to the second end, the flange portion configured to abut the base housing when the folded section is folded to prevent the flange portion from entering the receiving slot.
8. The mobile phone support according to claim 1, wherein the base shell includes a first fastening portion disposed on a wall of the receiving slot, and the airbag module includes a second fastening portion connected to the first end portion, the second fastening portion being fastened to the first fastening portion; alternatively, the first and second electrodes may be,
the airbag module includes a bonding portion bonded to a groove wall of the accommodating groove and fixed to the base case by an adhesive.
9. The phone holder according to claim 1, wherein the base housing is provided with a groove, the groove is disposed at one side of the receiving groove and communicated with the receiving groove, and when the folding section is folded, the groove exposes a side surface of the second end.
10. The handset cradle of claim 1, wherein the base housing comprises a first base housing member and a second base housing member, the first base housing member being mounted to the second base housing member;
the first base housing member includes an annular bottom wall, an annular outer side wall extending from an outer peripheral edge of the annular bottom wall toward one side of the annular bottom wall, and an annular inner side wall extending from an inner peripheral edge of the annular bottom wall toward the same side of the annular bottom wall;
the second base shell member includes a body portion including a first end face and a second end face that are opposite to each other;
the main body part is sleeved in the annular outer side wall, the first end face abuts against the periphery of the annular inner side wall, and the first end face and the annular inner side wall jointly enclose the accommodating groove.
11. The handset support according to claim 10, wherein the first base member further comprises a post portion, one end of the post portion being connected to the annular bottom wall and the other end being remote from the annular bottom wall and extending beyond the annular inner side wall;
the second base housing member further includes a positioning hole portion provided in the main body portion and penetrating the first end surface and the second end surface;
the positioning column part is inserted into the positioning hole part;
the base housing further includes a third base housing member including a cover covering the second end face.
12. The mobile phone support according to claim 11, wherein the adsorption component comprises at least two magnetic units, each of the magnetic units is of an arc-shaped structure;
the second base shell component further comprises at least two magnet groove parts, the at least two magnet groove parts are arranged on the main body part and distributed annularly, and every two adjacent magnet groove parts are arranged at intervals;
each magnetic unit is accommodated in a corresponding magnetic slot part;
the base shell comprises a supporting piece, the supporting piece is sleeved in the annular outer side wall and sleeved outside the annular inner side wall, and the supporting piece is attached to the annular bottom wall;
the at least two magnetic units are fixed to the support.
13. The handset support according to claim 1, wherein the base case comprises a base case main body and a cover body;
a magnet groove part is arranged on one end face of the base shell main body, the magnet is contained in the magnet groove part, and the cover body covers the end face to shield the magnet groove part;
the airbag module is mounted to the base housing body.
14. The handset cradle according to claim 13, wherein the base housing includes a support member, the base housing body encasing the support member;
the magnet comprises at least two magnetic units, each magnetic unit is of an arc-shaped structure, and each magnetic unit is accommodated in the magnetic groove and fixed on the support piece.
15. The handset support according to claim 1, wherein the base case comprises a base case main body and a cover body;
a magnet groove part is arranged on one end face of the base shell main body, and the cover body covers the end face;
the magnet is accommodated in the magnet groove.
16. The handset cradle of claim 15, wherein the base housing comprises a support;
the magnet comprises at least two magnetic units, each magnetic unit is of an arc-shaped structure, and the at least two magnetic units are fixed on the supporting piece and are contained in the magnetic body groove part together with the supporting piece.
CN202120353429.4U 2021-02-08 2021-02-08 Mobile phone support Active CN216057116U (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
CN202120353429.4U CN216057116U (en) 2021-02-08 2021-02-08 Mobile phone support
US17/367,500 US11265035B1 (en) 2021-02-08 2021-07-05 Mobile device holder
GB2313552.8A GB2618946A (en) 2021-02-08 2022-01-13 Mobile device holder
PCT/US2022/012265 WO2022169573A1 (en) 2021-02-08 2022-01-13 Mobile device holder
US17/580,867 US11784675B2 (en) 2021-02-08 2022-01-21 Mobile device holder
US18/230,492 US20230378991A1 (en) 2021-02-08 2023-08-04 Mobile Device Holder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120353429.4U CN216057116U (en) 2021-02-08 2021-02-08 Mobile phone support

Publications (1)

Publication Number Publication Date
CN216057116U true CN216057116U (en) 2022-03-15

Family

ID=80534595

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120353429.4U Active CN216057116U (en) 2021-02-08 2021-02-08 Mobile phone support

Country Status (1)

Country Link
CN (1) CN216057116U (en)

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