Handle structure of handheld stabilizer
By designing a detachable secondary handle structure, the problem of inconvenient storage and space occupation of the handheld stabilizer's handle is solved, providing a convenient user experience and efficient space utilization.
Patent Information
- Application Number
- CN202520016278.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-03
AI Technical Summary
Existing handheld camera stabilizers with handles are inconvenient to store and use, and take up a lot of space.
A handle structure for a handheld stabilizer was designed, including a handle body, a housing cavity, a secondary handle, and a base. The secondary handle can be detached and installed through a sliding and locking structure, allowing it to be used for shooting as a teapot and also stored in the housing cavity to reduce space occupation.
It enables convenient use of the secondary handle when needed and saves space when not needed, solving the problems of inconvenient storage and space occupation in existing designs.
Smart Images

Figure CN223740532U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to stabilizer technical field, more specifically, relate to a handle structure of handheld stabilizer. BACKGROUND
[0002] Handheld photography stabilizer can effectively reduce the shake in the process of shooting, improve the stability and quality of the shooting picture. In the prior art, in order to make the user hold the handheld stabilizer more labor-saving during lens operation, a kettle handle is designed. However, the existing kettle handle usually needs to be carried separately, and needs to be aligned with the connecting part on the stabilizer for installation and use, which is inconvenient for storage and use. Or the kettle handle and the stabilizer are connected in a non-detachable manner, occupying space and cannot be hidden for storage when not in use, increasing the burden of the user. Therefore, the design of the existing handheld photography stabilizer handle has certain limitations and needs to be further improved. SUMMARY
[0003] The utility model discloses to overcome the prior art stabilizer kettle handle's problem of inconvenient storage and use and large space occupation, and provides a handle structure of handheld stabilizer.
[0004] To solve the above technical problems, the utility model adopts the technical scheme of a handle structure of handheld stabilizer, which comprises: a handle main body, a containing cavity, a secondary handle and a base, the top end of the handle main body is provided with a first connecting part, the containing cavity is opened in the bottom end face of the handle main body and extends towards the top end direction of the handle main body, the secondary handle is slidingly installed in the containing cavity, the base is connected to the handle main body, the base is provided with a mounting position for containing the secondary handle, and the base is also provided with a locking structure, when the secondary handle is installed in the mounting position, the locking structure is connected with the secondary handle to fix the secondary handle and make the secondary handle in the kettle shape.
[0005] In the technical scheme of the present application, the top end of the handle main body is provided with a first connecting part, which is used to connect the stabilizing mechanism. When shooting in the kettle state is needed, the secondary handle in the containing cavity can be installed in the mounting position and fixed by the locking structure, so that the secondary handle can be used as a kettle state for shooting, which is more convenient to use. When shooting in the kettle state is not needed, the secondary handle can be detached from the mounting position and stored in the mounting cavity, so that the secondary handle does not occupy more space, thereby solving the problem of inconvenient storage and large space occupation of the existing stabilizer kettle handle.
[0006] Further, the base is installed on the handle body and close to the bottom end of the handle body, the base is a semi-enclosing structure, the base has two opposite installation surfaces, and an open structure communicating with the installation position is formed between the two installation surfaces.
[0007] Further, the auxiliary handle is slidingly connected with the accommodating cavity along the length direction of the auxiliary handle, and the auxiliary handle is slidingly connected with the installation surface along a direction substantially perpendicular to the handle body through the first guide structure. When the auxiliary handle slides to a position where the installation surface is away from the handle body, the end of the auxiliary handle away from the first guide structure rotates around the first guide structure to accommodate the auxiliary handle in the installation position.
[0008] Further, the two sides of the auxiliary handle are respectively provided with first guide grooves along the length direction of the auxiliary handle, and the first guide grooves have upper stop position portions; the installation surface is provided with a first sliding groove along a direction substantially perpendicular to the handle body, one end of the first guide structure is slidingly connected in the first sliding groove, and the other end of the first guide structure is located in the first guide groove; the first sliding groove has a first position close to the handle body and a second position away from the handle body.
[0009] When the first guide structure is located at the first position of the first sliding groove, after the auxiliary handle moves in a direction away from the top end of the handle body and the upper stop position portion contacts the first guide structure, the auxiliary handle drives the first guide structure to move to the second position of the first sliding groove, and the end of the auxiliary handle away from the first guide structure flips around the first guide structure to accommodate the auxiliary handle in the installation position.
[0010] Further, the installation surface is provided with a protrusion, the arrangement direction of the protrusion is parallel to the direction of the first guide groove when the auxiliary handle is located in the installation position, and an opening is formed in the auxiliary handle and communicates with the first guide groove, and the position of the opening corresponds to the protrusion so that the protrusion slides into the first guide groove through the opening.
[0011] Further, the inner wall surface of the base is provided with a limiting block, and the side of the auxiliary handle facing the limiting block is provided with a limiting groove corresponding to the position of the limiting block, one end of the limiting groove is closed, and the other end extends to the end edge of the auxiliary handle in the movement direction of the protrusion.
[0012] Further, the base is installed on the handle body and close to the bottom end of the handle body, the base is a semi-enclosing structure, the base has two opposite installation surfaces, and an open structure communicating with the installation position is formed between the two installation surfaces.
[0013] Further, the support part is formed at one end of the sub-handle exposed from the accommodating cavity, and at least one second connecting part is arranged on the support part.
[0014] Further, the locking structure has at least two locking parts, one of which is used to connect with the sub-handle in the accommodating cavity to fix the sub-handle, and the other is used to connect with the sub-handle in the mounting position to fix the sub-handle.
[0015] Further, the locking structure comprises a driving part and a pressing block, two locking parts are formed on the pressing block, the locking parts have extrusion surfaces, the base has an installation cavity inside, the pressing block is slidingly installed in the installation cavity, the sub-handle has a to-be-extruded surface corresponding to the position of the extrusion surface, the inner wall surface of the base is provided with a first through hole and a second through hole for the locking parts to pass through respectively, the first through hole communicates the accommodating cavity with the installation cavity, the second through hole communicates the mounting position with the installation cavity, and the driving part is connected with the pressing block to drive the extrusion surface to extrude the to-be-extruded surface.
[0016] Compared with the prior art, the utility model has the beneficial effects that: in the utility model, when shooting is needed in the state of holding the pot, the sub-handle in the accommodating cavity can be installed in the mounting position and fixed by the locking structure, so that the sub-handle can be used for shooting in the state of holding the pot, and the use is more convenient. When shooting is not needed in the state of holding the pot, the sub-handle can be dismounted from the mounting position and stored in the installation cavity, so that the sub-handle does not occupy more space position, and the problems of inconvenient storage and large space occupation of the existing stabilizer pot handle are solved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is the structure diagram of the handle structure of the handheld stabilizer of embodiment 1 when the sub-handle is in the accommodating cavity;
[0018] Figure 2 is the structure diagram of the handle structure of the handheld stabilizer of embodiment 1 when the sub-handle is in the mounting position;
[0019] Figure 3 is the perspective view of the handle structure of the handheld stabilizer of embodiment 1 from the front view when the sub-handle is removed;
[0020] Figure 4 is the perspective view of the handle structure of the handheld stabilizer of embodiment 1 from the right side view when the sub-handle is removed;
[0021] Figure 5 is the perspective view of the handle structure of the handheld stabilizer of embodiment 1 from the bottom side view when the sub-handle is removed;
[0022] Figure 6 is an exploded view of the handle structure of the handheld stabilizer when the auxiliary handle is removed;
[0023] Figure 7 is a structural schematic diagram of the auxiliary handle in the handle structure embodiment 1 of the handheld stabilizer;
[0024] Figure 8 is a structural diagram of the handle structure embodiment 2 of the handheld stabilizer when the auxiliary handle is in the installation position;
[0025] Figure 9 is a structural diagram of the handle structure embodiment 2 of the handheld stabilizer when the auxiliary handle is in the accommodation cavity;
[0026] Figure 10 is a structural schematic diagram of the base of the handle structure embodiment 2 of the handheld stabilizer;
[0027] Figure 11 is a structural schematic diagram of the auxiliary handle of the handle structure embodiment 2 of the handheld stabilizer;
[0028] Figure 12 is a structural schematic diagram of the internal structure of the base in the handle structure of the handheld stabilizer.
[0029] In the drawings: 1, handle main body; 2, accommodation cavity; 3, auxiliary handle; 4, base; 5, installation position; 6, locking structure; 41, installation surface; 42, open structure; 7, first guide structure; 31, first guide groove; 32, upper stop portion; 43, first sliding groove; 44, protruding block; 33, notch; 45, limiting block; 34, limiting groove; 35, supporting portion; 36, second connecting portion; 37, surface to be extruded; 61, locking portion; 62, driving portion; 63, pressing block; 64, extrusion surface; 46, first through hole; 47, second through hole; 8, tripod; 9, stabilizing mechanism; 10, third connecting portion; 12, wrist rest; 71, sliding block; 72, guide column; 48, through groove; 65, threaded rod; 67, sealing plate; 66, gasket. DETAILED DESCRIPTION
[0030] The drawings are only used for exemplary illustration and cannot be understood as limiting the patent; in order to better illustrate the embodiments, some components in the drawings can be omitted, enlarged or reduced, and do not represent the actual product size; for those skilled in the art, it can be understood that some well-known structures in the drawings and their descriptions can be omitted. The positional relationship described in the drawings is only used for exemplary illustration and cannot be understood as limiting the patent.
[0031] The same or similar reference signs in the drawings of the embodiments of the present utility model correspond to the same or similar components; in the description of the present utility model, it is understood that if the orientation or position relationship indicated by the terms "upper", "lower", "left", "right", "long" and "short" is based on the orientation or position relationship shown in the drawings, it is only for the convenience of describing the present utility model and simplifying the description, and does not indicate or imply that the device or element indicated must have a specific orientation, be constructed and operated in a specific orientation, therefore the terms describing the position relationship in the drawings are only used for exemplary illustration, and cannot be understood as a limitation on the present patent, for ordinary skilled persons in the art, the specific meanings of the above terms can be understood according to the specific circumstances.
[0032] The technical scheme of the present utility model will be further specifically described below by means of specific embodiments and in combination with the drawings:
[0033] Embodiment 1
[0034] As shown in Figure 1 , Figure 2 , Figure 8 and Figure 9 , a handle structure of a handheld stabilizer, comprising: a handle main body 1, a containing cavity 2, a sub-handle 3 and a base 4, the top end of the handle main body 1 is provided with a first connecting part; the containing cavity 2 is opened in the bottom end face of the handle main body 1 and extends towards the top end direction of the handle main body 1; the sub-handle 3 is slidingly installed in the containing cavity 2; the base 4 is connected to the handle main body 1, the base 4 is provided with a mounting position 5 for containing the sub-handle 3, and the base 4 is also provided with a locking structure 6; when the sub-handle 3 is installed in the mounting position 5, the locking structure 6 is connected with the sub-handle 3 to fix the sub-handle 3 and make the sub-handle 3 in a kettle lifting state.
[0035] In the present embodiment, the top end of the handle main body 1 is provided with a first connecting part, the stabilizing mechanism 9 is connected by means of the first connecting part, when it is needed to use the kettle lifting state to shoot, the sub-handle 3 in the containing cavity 2 can be installed in the mounting position 5 and fixed by means of the locking structure 6, so that the sub-handle 3 can be used as the kettle lifting state to shoot, and it is more convenient to use. When it is not needed to use the sub-handle 3 as the kettle lifting state to shoot, the sub-handle 3 can be disassembled from the mounting position 5 and stored in the mounting cavity, so that the sub-handle 3 does not occupy more space position, and thus the problem of inconvenient storage and large space occupation of the existing stabilizer kettle lifting handle is solved.
[0036] It should be noted that when the sub-handle 3 is installed in the installation position 5, the included angle between the sub-handle 3 and the handle body 1 is substantially an acute angle, so that the user's strength can be saved when shooting in the state of using the kettle. The first connecting part is generally a rotating connecting part, and the stabilizing mechanism 9 can be pivoted by the first connecting part. It should be noted that the wrist rest accommodating cavity is also arranged on the handle body 1, and the third connecting part 10 for installing the wrist rest 12 is arranged on the base 4 and located on both sides of the installation position 5. One end of the wrist rest 12 is provided with a matching connecting piece, and the connection between the connecting piece of the wrist rest 12 and the third connecting part 10 can be snap connection or screw connection. The two third connecting parts 10 can increase the user's selection, and whether the left hand or the right hand is operated, the wrist rest 12 arranged on the corresponding side can be used to save the strength, and when not in use, it can be stored, which is convenient for carrying and avoids loss. The sub-handle 3 is slidingly installed in the accommodating cavity 2. It can be understood that the sub-handle 3 can be completely placed in the accommodating cavity 2, or can be partially accommodated in the accommodating cavity 2.
[0037] As shown in Figures 3 to 6 , the base 4 is installed on the handle body 1 and close to the bottom end of the handle body 1, the base 4 is a half-enclosing structure, the base 4 has two installation surfaces 41 arranged oppositely, and the two installation surfaces 41 form an open structure 42 communicating with the installation position 5. In this embodiment, the base 4 penetrates up and down, and the front side of the base 4 is the open structure 42 formed between the two installation surfaces 41, so that the sub-handle 3 can be installed in the installation position 5 through the open structure 42 on the front side by turning.
[0038] As shown in Figures 1 to 7As shown, the auxiliary handle 3 is slidably connected with the accommodating cavity 2 along the length direction of the auxiliary handle 3, and the auxiliary handle 3 is slidably connected with the mounting surface 41 along a direction substantially perpendicular to the handle main body 1 through the first guide structure 7. When the auxiliary handle 3 is slid to a position where the mounting surface 41 is away from the handle main body 1, the end of the auxiliary handle 3 away from the first guide structure 7 is flipped about the first guide structure 7 to make the auxiliary handle 3 accommodated in the mounting position 5. In the embodiment, the auxiliary handle 3 is slid in a direction away from the top end of the handle main body 1 relative to the accommodating cavity 2. When the auxiliary handle 3 is slid to a position where the mounting surface 41 is away from the handle main body 1 along a direction substantially perpendicular to the handle main body 1 through the first guide structure 7, the end of the auxiliary handle 3 away from the first guide structure 7 is rotated about the first guide structure 7 to make the auxiliary handle 3 pass through the open structure 42 and be mounted in the mounting position 5. Since the auxiliary handle 3 is slidably connected with the accommodating cavity 2 and the mounting surface 41 respectively, and the sliding between the auxiliary handle 3 and the mounting surface 41 is guided by the first guide structure 7, the auxiliary handle 3 can be prevented from being separated from the mounting surface 41 when moving to the position where the mounting surface 41 is located. When the auxiliary handle 3 moves to the position where the mounting surface 41 is away from the handle main body 1, and the first guide structure 7 is used as the rotation center, the auxiliary handle 3 can be flipped about the first guide structure 7 to pass through the open structure 42 and be mounted in the mounting position 5.
[0039] As shown, Figure 7 the first guide structure 7 is slidably connected in the first sliding groove 43, and the other end of the first guide structure 7 is located in the first guide groove 31. The first sliding groove 43 has a first position close to the handle main body 1 and a second position away from the handle main body 1.
[0040] When the first guide structure 7 is located at the first position of the first sliding groove 43, the auxiliary handle 3 is moved in a direction away from the top end of the handle main body 1 and makes the upper stop portion 32 in contact with the first guide structure 7. Then, the auxiliary handle 3 drives the first guide structure 7 to move to the second position of the first sliding groove 43, and the end of the auxiliary handle 3 away from the first guide structure 7 is flipped about the first guide structure 7 to make the auxiliary handle 3 accommodated in the mounting position 5.
[0041] In the embodiment, the first guide structure 7 is located at the first position of the first sliding slot 43 at the initial position. When the sub-handle 3 moves away from the top end of the handle main body 1 and the upper stop portion 32 contacts the first guide structure 7, the sub-handle 3 is continuously pulled out in the direction substantially perpendicular to the handle main body 1, the first guide structure 7 is pushed by the upper stop portion 32 to move along the first sliding slot 43 to the second position, and then the sub-handle 3 is flipped around the first guide structure 7 as the rotation center, passes through the open structure 42 and is installed in the installation position 5.
[0042] It should be noted that, as shown in Figure 6 The first guide structure 7 includes a sliding block 71 slidingly connected in the first sliding slot 43 and a guide column 72 connected to one end of the sliding block 71, and the other end of the guide column 72 is located in the first guide slot 31. It should also be pointed out that the sub-handle 3 is an axisymmetric structure, and the side facing the inner wall of the accommodating cavity 2 includes two first guide slots 31 and two to-be-pressed surfaces 37 symmetrically arranged, and a front surface located between the two to-be-pressed surfaces 37, which forms a sliding portion for slidingly connecting with the inner wall surface of the accommodating cavity 2. The symmetric guide structure of the sub-handle 3 can ensure that the movement of the sub-handle 3 is more stable and avoids shaking. The pressing surface 64 of the locking structure 6 acts on one of the to-be-pressed surfaces 37, and the pressing contact between the inclined surfaces can increase the friction force to ensure the fastening when locking. The other side of the sub-handle 3 away from the inner wall of the accommodating cavity 2 is concave-shaped to reduce the problem of the sub-handle 3 occupying the internal space of the handle main body 1, so as to leave more space for the position of the components.
[0043] In one embodiment, the first guide structure 7 is installed on both sides of the sub-handle 3, the inner wall surface of the accommodating cavity 2 is provided with a second guide slot corresponding to the first guide structure 7, the second guide slot is slidingly connected with the first guide structure 7, the mounting surface 41 is provided with a second sliding slot in the direction substantially perpendicular to the handle main body 1, the second guide slot is connected with the second sliding slot, and the second sliding slot is slidingly connected with the first guide structure 7. In this embodiment, the first guide structure 7 is fixedly connected to the sub-handle 3, which can also realize the disengagement of the sub-handle 3 from the accommodating cavity 2, the sliding connection between the sub-handle 3 and the mounting surface 41, and the flipping of the sub-handle 3 by the first guide structure 7 to install the sub-handle 3 in the installation position 5.
[0044] As shown in Figures 4 to 6As shown, the mounting surface 41 is provided with a protrusion 44, the protrusion 44 is arranged in parallel to the direction of the first guide slot 31 when the auxiliary handle 3 is located in the mounting position 5, the auxiliary handle 3 is provided with an opening 33 which is in communication with the first guide slot 31, the position of the opening 33 corresponds to the protrusion 44 so that the protrusion 44 slides through the opening 33 into the first guide slot 31. In this embodiment, when the auxiliary handle 3 is rotated to the mounting position 5 through the first guide structure 7, at this time, the position of the opening 33 on the auxiliary handle 3 just corresponds to the position of the protrusion 44, and the protrusion 44 enters the first guide slot 31 through the opening 33 on the side of the opening 33, then a downward force is applied to the auxiliary handle 3 along the direction of the first guide slot 31, so that the protrusion 44 and the first guide structure 7 slide relative to the first guide slot 31, and the two side walls of the protrusion 44 are in contact with the two side walls of the first guide slot 31, the connection between the protrusion 44 and the first guide slot 31 is used to limit the auxiliary handle 3 from continuing to rotate towards one side of the handle main body 1, and also prevent the auxiliary handle 3 from rotating away from the handle main body 1 when the kettle-shaped mode is used for shooting, and the locking structure 6 is relied on to further ensure the stability of the auxiliary handle 3 installed in the mounting position 5.
[0045] As shown in Figure 5 , Figure 7 , the inner wall surface of the base 4 is provided with a limiting block 45, and the side of the auxiliary handle 3 facing the limiting block 45 is provided with a limiting slot 34 corresponding to the position of the limiting block 45, one end of the limiting slot 34 is closed, and the other end extends to the edge of the end of the auxiliary handle 3 in the direction opposite to the movement direction of the protrusion 44. In this embodiment, when the auxiliary handle 3 is flipped to the mounting position 5, the limiting block 45 is located in the limiting slot 34, and the limiting block 45 is in abutting cooperation with the closed end of the limiting slot 34 to limit the top end of the auxiliary handle 3 (which is the bottom end when the auxiliary handle 3 is in the storage state) from further moving towards the handle main body 1. In order to make the protrusion 44 enter the first guide slot 31 and limit the rotation of the auxiliary handle 3, the auxiliary handle 3 moves relative to the protrusion 44, and the other end of the limiting slot 34 extends to the edge of the end of the auxiliary handle 3 in the direction opposite to the movement direction of the protrusion 44, so that the other end of the limiting slot 34 can be in communication with the outside to enable the limiting block 45 to enter the limiting slot 34 through the end and finally abut against the closed end of the limiting slot 34.
[0046] As shown in Figure 1 , Figure 7 and Figure 9As shown, the auxiliary handle 3 has a support portion 35 extending from one end of the accommodating cavity 2, and at least one second connecting portion 36 is provided on the support portion 35. In this embodiment, when the auxiliary handle 3 is located in the accommodating cavity 2, the second connecting portion 36 can be located at the bottom of the support portion 35 or on the side of the support portion 35. The location and number of the second connecting portions 36 can be set as needed. When the second connecting portion 36 is located at the bottom of the support portion 35, the second connecting portion 36 can be used to connect the tripod 8.
[0047] Example 2
[0048] like Figures 8 to 11 As shown, the difference between Embodiment 2 and Embodiment 1 is that the secondary handle 3 can be completely detached from the receiving cavity 2. Specifically, the base 4 is installed on the handle body 1 and near the bottom end of the handle body 1. The base 4 is a vertically continuous enclosing structure, and the interior of the base 4 forms a mounting position 5. In this embodiment, since the base 4 is a vertically continuous enclosing structure, a mounting position 5 for installing the secondary handle 3 is formed inside the enclosing structure. After the secondary handle 3 is completely detached from the receiving cavity 2, when the secondary handle 3 is installed through the mounting position 5, the base 4 can support the circumference of the secondary handle 3, and the locking structure 6 can lock the secondary handle 3, thereby ensuring the firmness of the secondary handle 3. It should be noted that the base 4 can be installed on the bottom end face of the handle body 1, and the base 4 has a through groove 48 that communicates with the receiving cavity 2. The secondary handle 3 can be inserted into the receiving cavity 2 through the through groove 48 to complete the storage of the secondary handle 3.
[0049] Example 3
[0050] like Figure 5 , Figure 6 As shown, the locking structure 6 has at least two locking parts 61. One locking part 61 is used to connect with the secondary handle 3 located in the receiving cavity 2 to fix the secondary handle 3, and the other locking part 61 is used to connect with the secondary handle 3 located in the mounting position 5 to fix the secondary handle 3. In this embodiment, when the secondary handle 3 is located in the receiving cavity 2, the locking part 61 can lock the secondary handle 3 in the receiving cavity 2, thereby adjusting the length of the secondary handle 3 to meet the needs of different shooting ranges. When the secondary handle 3 is located in the mounting position 5, the other locking part 61 can lock the secondary handle 3 in the mounting position 5, ensuring the stability of operation in the pot-handling form.
[0051] like Figure 6 , Figure 12As shown, the locking structure 6 comprises a driving part 62 and a pressing block 63, two locking parts 61 are formed on the pressing block 63, the locking part 61 has a pressing surface 64, the base 4 has a mounting cavity inside, the pressing block 63 is slidingly installed in the mounting cavity, the auxiliary handle 3 has a to-be-pressed surface 37 corresponding to the position of the pressing surface 64, the inner wall surface of the base 4 is provided with a first through hole 46 and a second through hole 47 for the locking part 61 to pass through, the first through hole 46 communicates the containing cavity 2 with the mounting cavity, the second through hole 47 communicates the mounting position 5 with the mounting cavity, the driving part 62 is connected with the pressing block 63 to drive the pressing surface 64 to press the to-be-pressed surface 37. In this embodiment, when the auxiliary handle 3 is located in the containing cavity 2, the driving part 62 drives the pressing block 63 to move, the pressing block 63 drives the locking part 61 to move, since one of the locking parts 61 passes through the first through hole 46 and is located in the containing cavity 2, when the pressing block 63 drives the locking part 61 to move, the pressing surface 64 on the locking part 61 can press the to-be-pressed surface 37 on the auxiliary handle 3, thereby realizing the fixation of the auxiliary handle 3. In this embodiment, when the auxiliary handle 3 is located in the mounting position 5, the driving part 62 drives the pressing block 63 to move, the pressing block 63 drives the other locking part 61 to move, since the locking part 61 passes through the second through hole 47 and is located in the mounting position 5, when the pressing block 63 drives the locking part 61 to move, the pressing surface 64 on the locking part 61 can press the to-be-pressed surface 37 on the auxiliary handle 3, thereby realizing the fixation of the auxiliary handle 3. It should be noted that the driving part 62 can be threadedly connected with the pressing block 63 through a threaded rod 65, the driving part 62 can be an operating wrench, the operating wrench is connected with the threaded rod 65, the threaded rod 65 is threadedly connected with the pressing block 63, when the operating wrench rotates, the threaded rod 65 can drive the pressing block 63 to move in the mounting cavity. Since the pressing block 63 is installed in the mounting cavity, the opening of the mounting cavity of the base 4 is closed by a sealing plate 67, one end of the threaded rod 65 passes through the sealing plate 67 and extends into the mounting cavity and is threadedly connected with the pressing block 63. The other end of the threaded rod 65 is connected with the driving part 62, and a gasket 66 is arranged on the threaded rod 65 between the driving part 62 and the sealing plate 67. It should be noted that the pressing surface 64 and the to-be-pressed surface 37 can be inclined surfaces, the pressing surface 64 of the locking structure 6 acts on the to-be-pressed surface 37, the friction force can be increased by the pressing contact between the inclined surfaces, and the fastening during locking is ensured.
[0052] Obviously, the above embodiments of the present application are merely exemplary for clearly illustrating the present application, and are not intended to limit the implementation modes of the present application. For those skilled in the art, other different forms of changes or modifications can be made on the basis of the above description. Here, all the implementation modes are not required or can not be exhausted. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A handle structure for a hand-held stabilizer, characterized in that The utility model provides a kettle handle, including: Handle main part (1), the top end of handle main part (1) is provided with first connecting part; Accommodation cavity (2), the bottom end surface of handle main part (1) is opened and extends towards the top end direction of handle main part (1); Sub handle (3), sub handle (3) is installed in accommodation cavity (2); Base (4), base (4) is connected on handle main part (1), and the installation site (5) for accommodating sub handle (3) is opened on base (4), and locking structure (6) is also provided on base (4); When sub handle (3) is installed in installation site (5), locking structure (6) is connected with sub handle (3) to fix sub handle (3) and makes sub handle (3) be in the kettle shape of lifting.
2. The handle structure of a hand-held stabilizer according to claim 1, characterized in that Base (4) is installed on handle main part (1) and is close to the bottom end of handle main part (1), and base (4) is half-enclosed structure, and base (4) has two installation surfaces (41) that are oppositely arranged, and the open structure (42) that communicates installation site (5) is formed between two installation surfaces (41).
3. The handle structure of a hand-held stabilizer according to claim 2, characterized in that Sub handle (3) and accommodation cavity (2) are slidably connected along the length direction of sub handle (3), and sub handle (3) is slidably connected with installation surface (41) along the direction that is substantially perpendicular to handle main part (1) through first guide structure (7), when sub handle (3) slides to the position that installation surface (41) is away from handle main part (1), the end of sub handle (3) that is away from first guide structure (7) rotates around first guide structure (7) to make sub handle (3) be accommodated in installation site (5).
4. The handle structure of the handheld stabilizer according to claim 3, characterized in that, The two sides of sub handle (3) are provided with first guide slot (31) along its length direction respectively, and first guide slot (31) has upper stop portion (32);First guide structure (7) one end is slidably connected in first sliding slot (43) that is arranged along the direction that is substantially perpendicular to handle main part (1) on installation surface (41), and the other end of first guide structure (7) is located in first guide slot (31);First sliding slot (43) has first position that is close to handle main part (1) and second position that is away from handle main part (1); When first guide structure (7) is located at the first position of first sliding slot (43), sub handle (3) moves along the direction that is away from the top end of handle main part (1) and makes the upper stop portion (32) contact with first guide structure (7), then sub handle (3) drives first guide structure (7) to move to the second position of first sliding slot (43), and the end of sub handle (3) that is away from first guide structure (7) is turned around first guide structure (7) to make sub handle (3) be accommodated in installation site (5).
5. The handle structure of the handheld stabilizer according to claim 4, characterized in that, The mounting surface (41) is provided with a protrusion (44), the arrangement direction of the protrusion (44) is parallel to the direction of the first guide slot (31) when the auxiliary handle (3) is located in the mounting position (5), the auxiliary handle (3) is provided with an opening (33) communicated with the first guide slot (31), the position of the opening (33) corresponds to the protrusion (44) so that the protrusion (44) slides through the opening (33) into the first guide slot (31).
6. The handle structure of a hand-held stabilizer according to claim 5, characterized in that The inner wall surface of the base (4) is provided with a limiting block (45), the side of the auxiliary handle (3) facing the limiting block (45) is provided with a limiting slot (34) corresponding to the position of the limiting block (45), one end of the limiting slot (34) is closed, and the other end extends to the end edge of the auxiliary handle (3) in the direction opposite to the movement direction of the protrusion (44).
7. The handle structure of the handheld stabilizer according to claim 1, characterized in that, The base (4) is mounted on the handle main body (1) and close to the bottom end of the handle main body (1), the base (4) is a surrounding structure penetrating from top to bottom, and the inside of the base (4) forms the mounting position (5).
8. The handle structure of the handheld stabilizer according to claim 1, characterized in that, The end of the auxiliary handle (3) exposed to the containing cavity (2) is formed with a supporting part (35), and at least one second connecting part (36) is arranged on the supporting part (35).
9. A handle structure for a handheld stabilizer according to any one of claims 1 to 8, characterized in that The locking structure (6) has at least two locking parts (61), one of which is used to connect with the auxiliary handle (3) located in the containing cavity (2) to fix the auxiliary handle (3), and the other is used to connect with the auxiliary handle (3) located in the mounting position (5) to fix the auxiliary handle (3).
10. The handle structure of the handheld stabilizer according to claim 9, characterized in that, The locking structure (6) comprises a driving part (62) and a pressing block (63), two locking parts (61) are formed on the pressing block (63), the locking part (61) has a pressing surface (64), the inside of the base (4) has a mounting cavity, the pressing block (63) is slidingly mounted in the mounting cavity, the auxiliary handle (3) has a to-be-pressed surface (37) corresponding to the position of the pressing surface (64), the inner wall surface of the base (4) is provided with a first through hole (46) and a second through hole (47) for the locking part (61) to pass through, respectively, the first through hole (46) communicates the containing cavity (2) with the mounting cavity, and the second through hole (47) communicates the mounting position (5) with the mounting cavity, and the driving part (62) is connected with the pressing block (63) to drive the pressing surface (64) to press the to-be-pressed surface (37).