Selfie stick frame with ground inserting structure

By designing a selfie pole frame with a ground structure, the problem that the existing selfie pole frame cannot be firmly placed in non-hard fields is solved, and the stable support in grass, sand and other places is achieved, which is suitable for outdoor live broadcasts.

CN222937599UActive Publication Date: 2025-06-03DONGGUAN HENGYI HIGH-TECH CO LTD
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Patent Information

Application Number
CN202422051349.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-09-26
Filing Date
2024-08-23
Publication Date
2025-06-03
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

The existing multi-function selfie stick stand is difficult to place it in a fixed position when broadcasting live in non-hard flat venues, especially in places such as grass or sand, where the stand cannot be placed firmly.

Method used

A self-portrait rod frame with a ground-mounted structure is designed, including a rod frame assembly, a support assembly and a ground-mounted rod. The ground rod can be inserted into the inside of the rod frame assembly for storage, and can be taken out from the inside and installed at the bottom end of the rod frame assembly to act as a ground nail to enhance support stability.

Benefits of technology

The selfie pole holder can be folded and hand-held, and can be opened to use on the ground. It has the function of inserting the ground to adapt to uneven ground. It is especially suitable for outdoor live broadcast venues such as grass and sand, providing stable support and easy to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

A selfie stick frame with a ground inserting structure comprises a stick frame assembly, a supporting assembly and a ground inserting rod, the supporting assembly is movably connected with the stick frame assembly, the supporting assembly can be folded to be overlapped with the stick frame assembly and can be unfolded to support the stick frame assembly, and the ground inserting rod can be inserted into the stick frame assembly to be stored. And the connecting rod can be taken out from the inside of the rod frame assembly to be mounted at the bottom end of the rod frame assembly and extend out of the rod frame assembly. The ground inserting rod can be taken out and installed at the bottom of the rod frame assembly so as to play a role of a ground nail, and the ground inserting rod can be inserted into the ground when needed so that the supporting structure can be more stable. The selfie stick frame with the ground inserting structure can be folded to be handheld for use, can also be unfolded to be supported on the ground for use, is provided with the ground inserting rod, can be suitable for being used on uneven ground, is particularly suitable for being used in outdoor direct broadcasting of grassland, sand and the like, and has the advantages of being practical in function, novel in structure, convenient to use and high in practicability. And the device has strong practicability and is suitable for vigorous popularization.
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Description

Technical Field

[0001] The utility model relates to the field of selfie sticks, and particularly to a selfie stick stand with a ground insertion structure. Background Art

[0002] Selfie sticks are usually telescopic structures and are mainly used by hand. With the rise of the live broadcast field, live broadcast stands have become more and more popular. Whether it is a selfie stick or a live broadcast stand, they are usually telescopic and foldable, and are provided with a mobile phone clip at the top for fixing and clamping the mobile phone. With the development of selfie sticks and live broadcast stands, the functions of the two have gradually merged into one. Such a multifunctional stand can usually be telescopic and foldable, the top can clamp the mobile phone, and the bottom can be opened to support and place on the ground; when it is needed to be used as a selfie stick, the support structure at the bottom is not opened, the hand can hold it, and the length of the telescopic rod 24 can be adjusted; when it is needed to be used as a live broadcast stand, the support structure at the bottom is opened, and it can be placed on the ground as a whole, and then the length of the telescopic rod 24 is adjusted to the required height. The existing such multifunctional selfie stick stands can meet the needs of selfies and live broadcasts at the same time, so they are widely popular. When people conduct live broadcasts outdoors, the ground is often uneven and the stand cannot be stably placed. Especially when conducting live broadcasts on non-rigid and flat sites such as grasslands and sandy lands, it is even more difficult to fix and place the stand. Therefore, the existing multifunctional selfie stick stands still have room for improvement in function to meet various actual use requirements. Summary of the Utility Model

[0003] The utility model aims to solve the above problems and provides a selfie stick stand with a ground insertion structure.

[0004] To solve the above problems, the utility model provides a selfie stick stand with a ground insertion structure, which is characterized in that it includes a rod stand assembly, a support assembly and a ground insertion rod. The support assembly is movably connected to the rod stand assembly. The support assembly can be retracted to overlap with the rod stand assembly and can be opened to support the rod stand assembly. The ground insertion rod can be inserted into the interior of the rod stand assembly for storage and can be taken out from the interior of the rod stand assembly to be installed at the bottom end of the rod stand assembly and extend out of the rod stand assembly.

[0005] Further, an accommodation cavity extending along the axial direction thereof is provided inside the rod stand assembly, and an installation hole communicating with the accommodation cavity is provided at the bottom of the rod stand assembly. The ground insertion rod can be installed at the installation hole and stored in the accommodation cavity.

[0006] Further, at least part of the installation hole is provided with internal threads. The ground insertion rod is in the shape of a long rod and is provided with an external thread portion. The ground insertion rod can be threadedly connected to the installation hole through the external thread portion.

[0007] Further, the ground-inserting rod includes an integrally formed long rod portion, a screwing portion, and the external thread portion. The external thread portion is provided between the long rod portion and the screwing portion, and the screwing portion is retracted relative to the external thread portion to form a stepped structure.

[0008] Further, when the support assembly is retracted to overlap with the rod frame assembly, a flared groove is formed at the bottom end of the support assembly, and the flared groove communicates with the mounting hole.

[0009] Further, when the ground-inserting rod is inserted into the interior of the rod frame assembly for storage and the support assembly is retracted to overlap with the rod frame assembly, the external thread portion is threadedly connected to the mounting hole, the screwing portion is located in the flared groove and is spaced from the wall portion of the flared groove; the long rod portion is hidden in the accommodating cavity;

[0010] When the ground-inserting rod is installed at the bottom end of the rod frame assembly and extends out of the rod frame assembly, the external thread portion is threadedly connected to the mounting hole, the screwing portion is hidden in the accommodating cavity, and the long rod portion is exposed outside the rod frame assembly.

[0011] Further, the support assembly includes:

[0012] A sliding cylinder, sleeved on the rod frame assembly and movable along the length direction of the rod frame assembly;

[0013] A plurality of legs, one end of which is hinged to the sliding cylinder and the other end extends as a free end;

[0014] A plurality of support rods, one end of which is hinged to the non-end portion of the leg and the other end is hinged to the rod frame assembly;

[0015] When the sliding cylinder is slid in a direction away from the bottom end of the rod frame assembly, the legs can be retracted to overlap with the rod frame assembly;

[0016] When the sliding cylinder is slid in the direction of the bottom end of the rod frame assembly, the legs can be opened to an inclined state relative to the rod frame assembly to support the rod frame assembly.

[0017] Further, the rod frame assembly includes:

[0018] A storage tube;

[0019] A telescopic rod, sleeved in the storage tube. The bottom end of the telescopic rod is fixedly connected to the storage tube, and the telescopic rod can be telescoped along the length direction;

[0020] A base, fixedly connected to the bottom end of the storage tube;

[0021] Wherein, the mounting hole is provided on the base, and the accommodating cavity is provided in the storage tube and the telescopic rod.

[0022] Further, a relief groove is provided on the base, and a rotating shaft hole is provided on the side wall of the relief groove. The rotating shaft hole is perpendicular to the axial direction of the rod frame assembly.

[0023] A protruding rotating shaft portion is provided at the end of the support rod. The rotating shaft portion is rotatably connected in the rotating shaft hole so that the support rod is hinged to the rod frame assembly.

[0024] Further, a limiting step is formed between the top of the receiving tube and the outer wall of the telescopic rod. The sliding cylinder is sleeved on the telescopic rod. When the sliding cylinder slides to abut against the limiting step, the support leg is opened to the maximum extent to support the rod frame assembly.

[0025] The beneficial contribution of the present utility model is that it effectively solves the above problems. The selfie rod frame with a ground-inserting structure of the present utility model includes a rod frame assembly, a support assembly, and a ground-inserting rod. The ground-inserting rod can be stored in the rod frame assembly and can be taken out and installed at the bottom of the rod frame assembly, so as to play the role of a ground nail and can be inserted into the ground when needed to make the support structure more stable. The selfie rod frame with a ground-inserting structure of the present utility model can be folded up for handheld use, and can also be opened to support on the ground for use. Moreover, it has a ground-inserting rod and can be adapted to use on uneven ground, especially suitable for use during outdoor live broadcasts on grasslands, sandy lands, etc. The selfie rod frame with a ground-inserting structure of the present utility model has practical functions, novel structures, and convenient use, and has strong practicability and is worthy of being vigorously promoted. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 is a schematic diagram of the state when the ground-inserting rod is installed at the bottom end of the rod frame assembly and extends out of the rod frame assembly.

[0027] Figure 2 is a schematic diagram of the state when the ground-inserting rod is inserted into the interior of the rod frame assembly for storage.

[0028] Figure 3 is Figure 2 is a longitudinal sectional view.

[0029] Figure 4 is a schematic structural diagram when the support assembly is opened.

[0030] Figure 5 is an exploded schematic diagram of the overall structure.

[0031] Figure 6 is a schematic structural diagram of the ground-inserting rod.

[0032] Figure 7 is a schematic diagram of the overall structure.

[0033] Reference Signs:

[0034] Support component 10: flaring groove 11, sliding cylinder 12, upper sliding cylinder 121, leg 13, inclined wedge surface 131, hook portion 132, bayonet 133, support rod 14;

[0035] Rod frame component 20: accommodation cavity 21, mounting hole 22, storage tube 23, telescopic rod 24, base 25, limiting step 26, upper base 251, lower base 252;

[0036] Ground-inserting rod 30: long rod portion 31, external thread portion 32, screwing portion 33, pan-tilt structure 40, relief groove 51, rotating shaft hole 52, rotating shaft portion 53. Specific implementation mode

[0037] The following embodiments are further explanations and supplements to the present utility model, and do not constitute any limitation to the present utility model.

[0038] As Figures 1 to 7 shown, the selfie stick holder with a ground-inserting structure of the present utility model includes a rod frame component 20, a support component 10 and a ground-inserting rod 30. The support component 10 is used to support the rod frame component 20 so that the selfie stick holder can be stably placed on the ground for use. The support component 10 is movably connected to the rod frame component 20, and the support component 10 can be folded to overlap with the rod frame component 20 for convenient handheld use by the user; and the support component 10 can be opened to support the rod frame component 20. The ground-inserting rod 30 is used to be inserted into the ground during outdoor live broadcasts to enhance the support stability. The ground-inserting rod 30 can be inserted into the interior of the rod frame component 20 for storage, and can be taken out from the interior of the rod frame component 20 to be installed at the bottom end of the rod frame component 20 and extend out of the rod frame component 20.

[0039] Since the ground-inserting rod 30 is provided and the state of the ground-inserting rod 30 can be placed according to the use needs, therefore, it can meet the use requirements of different scenarios, and can be either hidden and stored or installed and used as a ground nail.

[0040] To facilitate the storage of the ground-inserting rod 30, an accommodation cavity 21 extending along its axial direction is provided inside the rod frame component 20, and a mounting hole 22 is provided at the bottom of the rod frame component 20. The mounting hole 22 communicates with the accommodation cavity 21. The ground-inserting rod 30 can be installed at the mounting hole 22 and stored in the accommodation cavity 21.

[0041] Wherein, the ground-inserting rod 30 can be installed at the mounting hole 22, which means that there is a matching relationship between the ground-inserting rod 30 and the mounting hole 22, and the ground-inserting rod 30 will not easily fall out from the mounting hole 22.

[0042] Further, to achieve the mating installation of the ground insertion rod 30 and the installation hole 22, internal threads are provided at least in part of the installation hole 22. Correspondingly, the ground insertion rod 30 is in the shape of a long rod, and an external thread portion 32 is provided thereon. The external thread portion 32 of the ground insertion rod 30 can be threadedly connected to the installation hole 22. In this way, the ground insertion rod 30 can be threadedly connected to the installation hole 22. When the longer end is installed inward (as shown in Figure 2 and Figure 3 ), the ground insertion rod 30 is hidden in the accommodation cavity 21; when the longer end is installed outward (as shown in Figure 1 ), the ground insertion rod 30 is exposed outside the rod frame assembly 20. At this time, it acts as a ground nail and can be driven into the ground to play a role in strengthening the support.

[0043] Further, the ground insertion rod 30 is in the shape of a long rod, and it includes an integrally formed long rod portion 31, a screwing portion 33, and an external thread portion 32. Among them, the external thread portion 32 is located between the long rod portion 31 and the screwing portion 33.

[0044] The length of the long rod portion 31 can be set as required, and it is used to insert into the ground. Usually, the length of the long rod portion 31 is greater than the lengths of the screwing portion 33 and the external thread portion 32. And when the support assembly 10 is opened, the end of the installed long rod portion 31 should extend beyond the plane where the bottom end of the support assembly 10 is located. In this way, when the bottom end of the support assembly 10 contacts the ground, the long rod portion 31 can be long enough to be driven into the ground. To facilitate insertion into the ground, the end of the long rod portion 31 opposite to the screwing portion 33 is usually in a sharp shape. The long rod portion 31 can be a round rod or a non-round rod, and its specific shape can be set as required. Preferably, the long rod portion 31 is set in a round rod shape.

[0045] The external thread portion 32 is provided with external threads, which can cooperate with the internal threads of the installation hole 22, so as to be threadedly connected to the installation hole 22. The length of the external thread portion 32 can be set as required.

[0046] The screwing portion 33 is used to facilitate the user to rotate the ground insertion rod 30 for convenient disassembly and assembly of the ground insertion rod 30. Since the rod frame assembly 20 is usually not very thick, to facilitate the user to screw the ground insertion rod 30, the screwing portion 33 is configured to form a stepped structure by shrinking relative to the external thread portion 32. In this way, not only can the volume of the screwing portion 33 be reduced to facilitate the operation of the user's fingers, but also slipping can be prevented to facilitate the user to rotate the ground insertion rod 30.

[0047] In this embodiment, the screwing portion 33 is in a double-flat shape, that is, its opposite sides are flat and form a stepped structure with the adjacent external thread portion 32, and the side walls are part of a cylindrical surface.

[0048] The length of the screwing part 33 can be set as required.

[0049] To facilitate the user to disassemble and assemble the ground-inserting rod 30 when the support assembly 10 is in a folded state, further, when the support assembly 10 is folded and overlapped with the rod frame assembly 20, as Figure 7 shown, a flared groove 11 is formed at the bottom of the support assembly 10, and the flared groove 11 communicates with the mounting hole 22. The cross-sectional size of the flared groove 11 increases along the end face direction of the support assembly 10 from the mounting hole 22, thus forming a flared structure. In this way, it is convenient for the user's finger to enter the flared groove 11 to rotate the screwing part 33.

[0050] When the ground-inserting rod 30 is inserted into the interior of the rod frame assembly 20 for storage and the support assembly 10 is in a folded state, the external thread part 32 is threadedly connected to the mounting hole 22, the long rod part 31 is hidden in the accommodating cavity 21, and the screwing part 33 is located in the flared groove 11 and is spaced from the wall of the flared groove 11. In this way, a space that can be entered by a finger is formed between the flared groove 11 and the screwing part 33, which is convenient for the user to use a finger to rotate the ground-inserting rod 30 to take out or install the ground-inserting rod 30.

[0051] When the ground-inserting rod 30 is installed at the bottom end of the rod frame assembly 20 and extends out of the rod frame assembly 20 and the support assembly 10 is in a folded state, the external thread part 32 is threadedly connected to the mounting hole 22, the screwing part 33 is hidden in the accommodating cavity 21, and the long rod part 31 passes through the flared groove 11 and axially extends outside the rod frame assembly 20. At this time, the long rod part 31 can be inserted into the ground. When the support assembly 10 is in an open state, the ground-inserting rod 30 and the support assembly 10 can jointly maintain the stability of the rod frame.

[0052] Preferably, when the ground-inserting rod 30 is inserted into the interior of the rod frame assembly 20 for storage, the end of the screwing part 33 does not extend out of the end of the support assembly 10 in the folded state. In this way, the screwing part 33 can be entirely located in the flared groove 11 without protruding, which is not only convenient for the user to screw but also can avoid the structure from protruding and scratching people or objects, thus avoiding safety risks. When the support assembly 10 is opened, the screwing part 33 is completely exposed outside the end of the rod frame assembly 20, and the user can more conveniently screw the ground-inserting rod 30.

[0053] Further, the support assembly 10 includes a sliding cylinder 12, a plurality of legs 13, and a plurality of support rods 14.

[0054] The sliding cylinder 12 is sleeved on the rod frame assembly 20 and can move along the length direction of the rod frame assembly 20, so as to facilitate opening or folding the support assembly 10.

[0055] One end of the leg 13 is hinged to the sliding cylinder 12, and the other end extends as a free end. Therefore, the leg 13 can move along with the sliding cylinder 12. The leg 13 is used to support the rod frame assembly 20.

[0056] One end of the support rod 14 is hinged to a non-end portion of the leg 13, and the other end is hinged to the rod frame assembly 20. The support rod 14 is used to support the leg 13.

[0057] By sliding the sliding cylinder 12 along the length direction of the rod frame assembly 20, the opening angles of the leg 13 and the support rod 14 can be adjusted to achieve the folding and opening effects.

[0058] When sliding the sliding cylinder 12 in the direction away from the bottom end of the rod frame assembly 20 (i.e., sliding the sliding cylinder 12 upward), the leg 13 and the support rod 14 gradually close. When sliding to the limit position, the leg 13 and the support rod 14 are closed together and overlap with the rod frame assembly 20. At this time, the support rod 14 is closed between the leg 13 and the rod frame assembly 20, and several legs 13 can be seen from the outside. Several legs 13 are closed outside the rod frame assembly 20 and form a column shape.

[0059] When sliding the sliding cylinder 12 in the direction of the bottom end of the rod frame assembly 20, the leg 13 and the support rod 14 gradually open. When sliding to the limit position, the leg 13 opens to the maximum angle, which is inclined at a certain angle with the rod frame assembly 20. The support rod 14 is supported between the leg 13 and the rod frame assembly 20, and the support rod 14 is inclined at a certain angle with the leg 13 and the rod frame assembly 20 respectively. At this time, the leg 13 can support the rod frame assembly 20, and the rod frame can be placed on the ground and used as a live broadcast support.

[0060] In this embodiment, there are 4 legs 13 and support rods 14 respectively. In other embodiments, the numbers of the legs 13 and the support rods 14 can be set according to needs.

[0061] In order to form a flared groove 11 at the bottom end when the support assembly 10 is closed, the free ends of the legs 13 are respectively provided with inclined wedge surfaces 131. The inclined wedge surface 131 can be a curved inclined wedge surface 131 or a flat inclined wedge surface 131. In this way, when the legs 13 and the support rods 14 are closed and overlap with the rod frame assembly 20, the flared groove 11 can be enclosed between the bottom ends of the legs 13.

[0062] To facilitate closing the support rod 14 between the leg 13 and the rod frame assembly 20, the inner surface of the leg 13 is arched. When it is aligned with the surface of the rod frame assembly 20, it can provide a receiving space for the support rod 14, so that the support rod 14 can be hidden and closed between the rod frame assembly 20 and the leg 13.

[0063] Furthermore, the rod frame assembly 20 includes a receiving tube 23, a telescopic rod 24, and a base 25.

[0064] The receiving tube 23 is tubular. In this embodiment, it is circular tubular.

[0065] The telescopic rod 24 is sleeved in the receiving tube 23. The bottom end of the telescopic rod 24 is fixedly connected to the receiving tube 23, and a pan-tilt structure 40 is provided at its top end for clamping a mobile phone or the like. The telescopic rod 24 can be telescoped along the length direction. The structure of the telescopic rod 24 can refer to the known technology, and the present utility model does not limit it. Preferably, the bottom end of the telescopic rod 24 is fixedly connected to the bottom end of the receiving tube 23, and they can be fixedly connected by a known structure such as a snap structure or a pin structure, so that the bottom end of the telescopic rod 24 is fixedly arranged.

[0066] The inside of the telescopic rod 24 is hollow, thereby forming the accommodating cavity 21, which can be used to accommodate the ground inserting rod 30. Of course, in some embodiments, when the bottom end of the telescopic rod 24 is fixedly connected to a non-end portion of the receiving tube 23, the inside of the telescopic rod 24 communicates with the inside of the receiving tube 23 to form the accommodating cavity 21 for accommodating the ground inserting rod 30.

[0067] The base 25 is fixedly connected to the bottom end of the receiving tube 23, and they can be fixedly connected by an interference fit, a slot structure or other means. The base 25 is integrally disc-shaped, and an installation hole 22 is provided thereon. The installation hole 22 is arranged along the axial direction of the base 25. The installation hole 22 penetrates the base 25 and communicates with the accommodating cavity 21.

[0068] When the support rod 14 is hinged to the rod frame assembly 20, the end of the support rod 14 is hinged to the base 25. For convenience of processing and installation, the base 25 may include an upper base 251 and a lower base 252 that are joined together. A plurality of relief grooves 51 are provided at the joining portion of the upper base 251 and the lower base 252, and a rotating shaft hole 52 is provided in the relief groove 51. The rotating shaft hole 52 is perpendicular to the axial direction of the rod frame assembly 20. Correspondingly, a protruding rotating shaft portion 53 is provided at the end of the support rod 14. The rotating shaft portion 53 is inserted into the rotating shaft hole 52 so that the support rod 14 is hinged to the base 25 together, so as to realize the rotation of the support rod 14 relative to the base 25.

[0069] Similarly, for the hinge connection between the support rod 14 and the support leg 13, such a structure can also be referred to. In this embodiment, a rotating shaft hole 52 is provided at a non-end portion of the support leg 13, and a protruding rotating shaft portion 53 is provided at the end of the support rod 14. The rotating shaft portion 53 cooperates with the rotating shaft hole 52, and the hinge connection between the support leg 13 and the support rod 14 can be realized.

[0070] Similarly, for the hinge connection between the leg 13 and the sliding cylinder 12, such a structure can also be referred to. In this embodiment, a plurality of relief grooves 51 are provided on the sliding cylinder 12, and a rotating shaft hole 52 is provided in the relief groove 51. The rotating shaft hole 52 is perpendicular to the axial direction of the rod frame assembly 20. A protruding rotating shaft portion 53 is provided at the end of the leg 13, and the rotating shaft portion 53 is matched with the rotating shaft hole 52, so as to realize the hinge connection between the leg 13 and the sliding cylinder 12.

[0071] Further, when the telescopic rod 24 is sleeved in the receiving tube 23, a limiting step 26 is formed between the top of the receiving tube 23 and the outer wall of the telescopic rod 24. The sliding cylinder 12 is sleeved on the telescopic rod 24 and cannot pass through the receiving tube 23. In this way, the sliding cylinder 12 can only slide on the telescopic rod 24, and its lowest position can slide to abut against the top of the receiving tube 23, that is, to abut against the limiting step 26.

[0072] When the sliding cylinder 12 slides to abut against the limiting step 26, the leg 13 is opened to the maximum extent. At this time, it can stably support the rod frame assembly 20, so that the rod frame can be stably placed on a plane for use.

[0073] Further, when the support assembly 10 is folded together, in order to prevent the support assembly 10 from being opened randomly, a buckle structure can be provided on the side wall of the leg 13. When the support assembly 10 is folded together, the adjacent legs 13 can be clamped together through the buckle structure. In this way, the legs 13 are connected to each other and cannot be freely spread out. When it is necessary to open the support assembly 10, slightly force the leg 13 to be pulled outwards to make the adjacent legs 13 unhook, and then slide the sliding cylinder 12, so that the support assembly 10 can be opened to the support state.

[0074] The buckle structure is not limited. For example, a protruding hook portion 132 can be provided on one side wall of the leg 13, and a corresponding bayonet 133 can be provided on the other side wall. The hook portion 132 can be buckled into the bayonet 133 to achieve clamping. In this way, the adjacent two legs 13 can be clamped through the cooperation of the bayonet 133 and the hook portion 132 to prevent the support assembly 10 from being freely opened.

[0075] Further, the sliding cylinder 12 can be an integral structure or a structure formed by connecting a plurality of components together. In this embodiment, the sliding cylinder 12 includes an upper sliding cylinder 121 and a lower sliding cylinder 122, which are fixedly connected to each other. The upper sliding cylinder 121 is a cylindrical straight cylinder, and the lower sliding cylinder 122 is provided with the relief groove 51 and the rotating shaft hole 52 for hinging with the leg 13. This structure is more conducive to processing and manufacturing.

[0076] When it is necessary to hold and use (such as during self - shooting), the support assembly 10 is folded to overlap with the rod - frame assembly 20, and the ground - inserting rod 30 is hidden and installed inside the rod - frame assembly 20, with only the screwing part of the ground - inserting rod 30 exposed; at this time, the user can adjust the use length of the telescopic rod 24 and the pan - tilt structure 40 as needed. When it is necessary to support and use on a hard ground (such as during indoor live broadcast), slide the sliding cylinder 12 downward to the lowest position (i.e., the limit step 26), and open the support assembly 10, so that the legs 13 are inclined with the rod - frame assembly 20. In this way, the rod - frame assembly 20 can be supported, and the whole rod - frame is stably placed on the ground plane. When it is necessary to support and use on a non - rigid ground (such as during outdoor live broadcast), the ground - inserting rod 30 can be taken out from the rod - frame assembly 20, and then the installation direction is reversed, so that the screwing part 33 faces inward and is hidden in the accommodating cavity 21, and the long rod part 31 extends out of the rod - frame assembly 20, so that the long rod part 31 can be inserted into the ground and jointly support the rod - frame assembly 20 with the support assembly 10 to ensure the support stability.

[0077] Although the present utility model has been disclosed through the above - mentioned embodiments, the scope of the present utility model is not limited thereto. Under the condition of not deviating from the concept of the present utility model, the above - mentioned components can be replaced by similar or equivalent elements known to those skilled in the relevant technical field.

Claims

1. A selfie stick stand with a ground-inserting structure, characterized in that: The invention comprises a rod frame assembly (20), a support assembly (10) and a ground-inserting rod (30); the support assembly (10) is movably connected to the rod frame assembly (20); the support assembly (10) can be folded to overlap with the rod frame assembly (20), and can be opened to support the rod frame assembly (20); the ground-inserting rod (30) can be inserted into the interior of the rod frame assembly (20) for storage, and can be taken out from the interior of the rod frame assembly (20) to be installed at the bottom end of the rod frame assembly (20) and extend out of the rod frame assembly (20).

2. The selfie stick holder with a ground-inserting structure as claimed in claim 1, characterized in that: The rod frame assembly (20) is provided with a receiving cavity (21) extending along its axial direction inside, and a mounting hole (22) penetrating the receiving cavity (21) is provided at the bottom of the rod frame assembly (20), and the ground insertion rod (30) can be installed at the mounting hole (22) and received in the receiving cavity (21).

3. The selfie stick holder with a ground-inserting structure as claimed in claim 2, characterized in that: The mounting hole (22) is at least partially provided with an internal thread, the ground insertion rod (30) is in the shape of a long rod and is provided with an external thread portion (32), and the ground insertion rod (30) can be threadedly connected to the mounting hole (22) via the external thread portion (32).

4. The selfie stick holder with a ground-inserting structure as claimed in claim 3, characterized in that: The ground insertion rod (30) comprises an integrally formed long rod portion (31), a screwing portion (33) and the external threaded portion (32); the external threaded portion (32) is arranged between the long rod portion (31) and the screwing portion (33); the screwing portion (33) is retracted relative to the external threaded portion (32) to form a step structure.

5. The selfie stick holder with a ground-inserting structure as claimed in claim 4, characterized in that: When the support assembly (10) is folded to overlap with the rod frame assembly (20), a flared groove (11) is formed at the bottom end of the support assembly (10), and the flared groove (11) is connected to the mounting hole (22).

6. The selfie stick holder with a ground-inserting structure as claimed in claim 5, characterized in that: When the ground insertion rod (30) is inserted into the rod frame assembly (20) for storage, and the support assembly (10) is folded to overlap with the rod frame assembly (20), the external threaded portion (32) is threadedly connected to the mounting hole (22), and the screwing portion (33) is located in the flaring groove (11) and is spaced apart from the wall of the flaring groove (11); the long rod portion (31) is hidden in the accommodating cavity (21); When the ground-inserting rod (30) is installed at the bottom end of the rod frame assembly (20) and extends out of the rod frame assembly (20), the external threaded portion (32) is threadedly connected to the mounting hole (22), the screwing portion (33) is hidden in the accommodating cavity (21), and the long rod portion (31) is exposed outside the rod frame assembly (20).

7. The selfie stick holder with a ground-inserting structure as claimed in claim 6, characterized in that: The support assembly (10) comprises: A sliding cylinder (12) is sleeved on the rod frame assembly (20) and can move along the length direction of the rod frame assembly (20); A plurality of legs (13), one end of which is hinged to the sliding cylinder (12) and the other end of which is extended to form a free end; A plurality of support rods (14), one end of which is hinged to the non-end portion of the support leg (13), and the other end of which is hinged to the rod frame assembly (20); When the sliding cylinder (12) is slid in a direction away from the bottom end of the rod frame assembly (20), the supporting legs (13) can be folded to overlap with the rod frame assembly (20); When the sliding cylinder (12) is slid along the bottom end direction of the rod frame assembly (20), the supporting legs (13) can be opened to a state inclined with respect to the rod frame assembly (20) to support the rod frame assembly (20).

8. The selfie stick holder with a ground-inserting structure as claimed in claim 7, characterized in that: The rod frame assembly (20) comprises: Storage tube (23); A telescopic rod (24) is sleeved in the storage tube (23), the bottom end of the telescopic rod (24) is fixedly connected to the storage tube (23), and the telescopic rod (24) can be telescoped along the length direction; A base (25) fixedly connected to the bottom end of the storage tube (23); The mounting hole (22) is provided on the base (25), and the accommodating cavity (21) is provided in the storage tube (23) and the telescopic rod (24).

9. The selfie stick holder with a ground-inserting structure as claimed in claim 8, characterized in that: The base (25) is provided with a clearance groove (51), and a rotating shaft hole (52) is provided on the side wall of the clearance groove (51), and the rotating shaft hole (52) is perpendicular to the axial direction of the rod frame assembly (20); A protruding rotating shaft portion (53) is provided on the end of the support rod (14), and the rotating shaft portion (53) is rotatably connected to the rotating shaft hole (52) so that the support rod (14) and the rod frame assembly (20) are hinged.

10. The selfie stick holder with a ground-inserting structure as claimed in claim 8, characterized in that: A limiting step (26) is formed between the top of the storage tube (23) and the outer wall of the telescopic rod (24); the sliding cylinder (12) is sleeved on the telescopic rod (24); when the sliding cylinder (12) slides to abut against the limiting step (26), the supporting legs (13) are opened to the maximum extent to support the rod frame assembly (20).