CN220668247U - Anti-shake support for heel-beat - Google Patents

Anti-shake support for heel-beat Download PDF

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Publication number
CN220668247U
CN220668247U CN202321318001.1U CN202321318001U CN220668247U CN 220668247 U CN220668247 U CN 220668247U CN 202321318001 U CN202321318001 U CN 202321318001U CN 220668247 U CN220668247 U CN 220668247U
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CN
China
Prior art keywords
sleeve
abutting
base
ring
telescopic rod
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Active
Application number
CN202321318001.1U
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Chinese (zh)
Inventor
应东义
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NINGBO XINLIJIE METAL PRODUCTS CO Ltd
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NINGBO XINLIJIE METAL PRODUCTS CO Ltd
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Priority to CN202321318001.1U priority Critical patent/CN220668247U/en
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Publication of CN220668247U publication Critical patent/CN220668247U/en
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Abstract

The utility model discloses a shake-proof support for a follow-up shooting, which comprises a telescopic rod, a triaxial tripod head and a base, wherein the telescopic rod comprises a sleeve with openings at two ends and an inner tube which can be telescopically inserted into the sleeve, a locking component which can lock the inner tube is arranged on the sleeve, the triaxial tripod head is used for clamping equipment, the triaxial tripod head is arranged at the top of the telescopic rod, the base is connected with the bottom of the telescopic rod through a positioning buffer mechanism, and the positioning buffer mechanism arranged by connecting the base with the telescopic rod can offset acting forces in different directions from the ground, so that shake influence on the telescopic rod and the triaxial tripod head is prevented, and the base can also prevent the support from being inclined due to the factors of natural wind, so that the stability of the support is further improved.

Description

Anti-shake support for heel-beat
Technical Field
The utility model relates to the technical field of cameras, in particular to a follow-up shooting anti-shake support.
Background
The anti-shake support is a shooting auxiliary device and is used for installing and fixing a camera and the like, and shooting pictures of a user are stabilized through an external physical anti-shake scheme.
Chinese patent CN217030597U discloses a triaxial anti-shake device of cell-phone cloud platform, including handle and coupling mechanism, the top of handle is fixed with the operation panel, the top of operation panel is connected with the rotation axis, and one side of rotation axis is connected with the steering spindle, one side of steering spindle is provided with coupling mechanism, and coupling mechanism is including outer pole, spacing groove, connecting rod, first splint, spacing spring and stopper, the fixed surface of outer pole has the second splint. This triaxial anti-shake device of cell-phone cloud platform, pulling first splint drive the connecting rod that links to each other along spacing groove outward movement, connecting rod extrusion limit spring simultaneously drives limit spring extrusion stopper, release first splint again to limit spring reaction is connecting rod, makes first splint reset, shakes because of ground shake causes the supporting seat, thereby makes the movable block that links to each other with the supporting seat shake, makes the movable block drive buffer spring shake, can close the protection frame on the operation panel, makes the buckle block advance the draw-in groove.
The prior art solutions described above have the following drawbacks: the support can only singly reduce shake through a buffer spring, is too simple, can only reduce partial shake, and still has the influence of partial shake on the support.
Disclosure of Invention
To above-mentioned problem, provide one kind with clapping anti-shake support, the location buffer gear that sets up is connected with the telescopic link through the base can offset the effort that comes from the equidirectional on ground, prevents to produce shake influence to telescopic link and triaxial cloud platform, and the base can also prevent that the support from inclining because of the factor of natural wind to further promotion support's stability.
In order to solve the problems in the prior art, the utility model provides a heel-beat anti-shake support, which comprises a telescopic rod, a triaxial holder and a base;
the telescopic rod comprises a sleeve with two open ends and an inner tube which can be telescopic and is inserted into the sleeve, and a locking assembly which can lock the inner tube is arranged on the sleeve;
the triaxial holder is used for clamping equipment and is arranged at the top of the telescopic rod;
the base is connected with the bottom of the telescopic rod through a positioning buffer mechanism;
the positioning buffer mechanism comprises an abutting table, a first abutting ring, a limiting ring, a supporting column and a spring;
the abutting table is arranged in the sleeve;
the support column is vertically inserted into the base, and the top of the support column is fixedly connected with the abutting table;
the limiting ring is fixedly arranged on the base and is provided with a through hole for the supporting column to pass through;
one side of the first abutting ring, which is far away from the limiting ring, is arranged on the outer side of the supporting column, and one end of the first abutting ring can be abutted against the outer wall surface of the abutting table;
the spring is sleeved outside the support column, one end of the spring is in abutting connection with the outer wall surface of the first abutting ring, and the other end of the spring is in abutting connection with the base;
three U-shaped elastic plates are arranged between the first abutting ring and the limiting ring at equal intervals.
Preferably, the locking assembly comprises a gripping portion and an abutment portion;
the gripping part is a sleeve with external threads arranged outside, one end of the sleeve, which is far away from the base, is provided with a plurality of elastic grippers which are equidistantly distributed at one end of the sleeve, which is far away from the base, along the axis of the sleeve, the inner side of the elastic grippers can be in butt joint with the outside of the inner tube, and one end of the elastic grippers, which is far away from the sleeve, is provided with a reducing surface;
the abutting part is a nut with an inner thread arranged on the inner ring, the nut is in threaded connection with the sleeve, and the inner ring of the nut is provided with an abutting groove which can be matched with the elastic grab.
Preferably, the shape of base is loudspeaker structure, and the base is including placing the face and connecting surface, and place the face and be greater than the connecting surface, connecting surface and positioning buffer mechanism's internal connection, place the face and place subaerial.
Preferably, a rubber ring is adhered to the outside of the sleeve.
Preferably, the end of the abutment is provided with a threaded shaft, and one end of the sleeve is provided with a threaded socket capable of being in threaded connection with the threaded shaft.
Compared with the prior art, the utility model has the beneficial effects that: according to the utility model, the positioning buffer mechanism connected with the telescopic rod through the base can offset acting forces from different directions on the ground, so that the shaking influence on the telescopic rod and the triaxial holder is prevented, and the base can also prevent the support from being inclined due to the natural wind, so that the stability of the support is further improved.
Drawings
Fig. 1 is a schematic perspective view of a heel-beat anti-shake support.
Fig. 2 is a schematic diagram of a part of a heel-beat anti-shake support.
Fig. 3 is a cross-sectional view taken along A-A in fig. 2 of the present application.
Fig. 4 is an enlarged schematic view of fig. 3B of the present application.
Fig. 5 is an enlarged schematic view of fig. 3C of the present application.
Fig. 6 is a schematic diagram of a part of the structure of the anti-shake support.
The reference numerals in the figures are: 1-a triaxial holder; 2-a telescopic rod; 21-an inner tube; 22-sleeve; 221-rubber rings; 222-threaded socket; 23-locking assembly; 231-grip; 2311-elastic grip; 2312-reduced facets; 232-a tightening part; 2321-a nut; 2322-tightening grooves; 3-a base; 31-placing the surface; 32-connecting surfaces; 4-positioning buffer mechanism; 41-a first abutment ring; 42-abutting the platform; 421-threaded shaft; 43-limiting rings; 44-U-shaped elastic plates; 45-springs; 46-support columns.
Detailed Description
The utility model will be further described in detail with reference to the drawings and the detailed description below, in order to further understand the features and technical means of the utility model and the specific objects and functions achieved.
Referring to fig. 1 to 6, a heel-beat anti-shake support comprises a telescopic rod 2, a triaxial holder 1 and a base 3;
the telescopic rod 2 comprises a sleeve 22 with two open ends and an inner tube 21 which can be telescopically inserted into the sleeve 22, and a locking assembly 23 which can lock the inner tube 21 is arranged on the sleeve 22;
the triaxial holder 1 is used for clamping equipment and is arranged at the top of the telescopic rod 2;
the base 3 is connected with the bottom of the telescopic rod 2 through a positioning buffer mechanism 4;
the positioning buffer mechanism 4 comprises an abutting table 42, a first abutting ring 41, a limiting ring 43, a supporting column 46 and a spring 45;
the abutment 42 is provided in the sleeve 22;
the support column 46 is vertically inserted into the base 3, and the top of the support column 46 is fixedly connected with the abutting table 42;
the limiting ring 43 is fixedly arranged on the base 3, and the limiting ring 43 is provided with a through hole for the supporting column 46 to penetrate through;
one side of the first abutment ring 41 away from the limiting ring 43 is provided outside the support column 46 and one end thereof can be arranged in abutment with the outer wall surface of the abutment table 42;
the spring 45 is sleeved outside the support column 46, one end of the spring 45 is in abutting connection with the outer wall surface of the first abutting ring 41, and the other end of the spring 45 is in abutting connection with the base 3;
three U-shaped elastic plates 44 are arranged between the first abutting ring 41 and the limiting ring 43 at equal intervals.
When a worker needs to follow-up shooting, after the equipment is placed on the triaxial tripod head 1, the sleeve 22 of the telescopic rod 2 is held by hand, then the locking component 23 on the sleeve 22 is manually rotated, after the inner tube 21 is drawn to adjust the equipment of the triaxial tripod head 1 at the top to a proper position, the locking component 23 is rotated to lock the inner tube 21, then the object or person needing follow-up shooting is aligned, when the object or person needing to be still and shot is placed on the ground, the whole support is placed on the ground, then the locking component 23 on the sleeve 22 can also be manually rotated, after the inner tube 21 is drawn to adjust the equipment of the triaxial tripod head 1 to a proper position, the shooting is facilitated, the locking component 23 is rotated to lock the inner tube 21, when the support is contacted with the ground, shake can be generated on the ground at any time, and different direction acting forces can be generated on the base 3 during shake, the base 3 can offset the effort that comes from the different directions on ground through connecting setting up location buffer gear 4, prevent to produce the influence to telescopic link 2 and triaxial cloud platform 1, and base 3 can also prevent that the support from inclining because of the factor of natural wind, thereby further promote the stability of support, can produce effort and act on base 3 when the ground shakes, base 3 can act on earlier with spring 45, spring 45 can act on first butt ring 41 offset most shake, still some shake is through spacing ring 43 and three U type elastic plate 44 on the first butt ring 41, offset some shake again, thereby prevent the shake of whole support, have the location effect between base 3 and the telescopic link 2 through support column 46 and U type elastic plate 44 inside spring 45 simultaneously, prevent that base 3 from shifting.
Referring to fig. 3 and 4, the locking assembly 23 includes a grip 231 and an abutment 232;
the gripping part 231 is a sleeve 22 with external threads on the outside, one end of the sleeve 22 far away from the base 3 is provided with a plurality of elastic grippers 2311, the elastic grippers 2311 are distributed at one end of the sleeve 22 far away from the base 3 along the axis of the sleeve 22 at equal intervals, the inner side of the elastic grippers 2311 can be abutted with the outside of the inner tube 21, and one end of the elastic grippers 2311 far away from the sleeve 22 is provided with a reducing surface 2312;
the abutting portion 232 is a nut 2321 with an inner ring provided with an internal thread, the nut 2321 is in threaded connection with the sleeve 22, and an abutting groove 2322 which can be matched with the elastic gripper 2311 is formed in the inner ring of the nut 2321.
When it is required to fix the inner tube 21 on the sleeve 22, the nut 2321 of the abutting portion 232 is first screwed, the sleeve 22 of the external thread on the gripping portion 231 is engaged with each other by the internal thread of the nut 2321, and the reducing surface 2312 of the elastic grip 2311 is abutted against the gripping portion 231 by the abutting groove 2322 of the nut 2321, so that the reducing surface 2312 is gradually reduced, thereby abutting against the outer portion of the inner tube 21, and the inner tube 21 is fixed on the sleeve 22.
Referring to fig. 6, the shape of the base 3 is a horn structure, the base 3 includes a placement surface 31 and a connection surface 32, the placement surface 31 is larger than the connection surface 32, the connection surface 32 is connected with the inside of the positioning buffer mechanism 4, and the placement surface 31 is placed on the ground.
The large placement surface 31 can increase the contact area with the ground, thereby increasing the friction force and effectively preventing the bracket from tilting or shifting.
Referring to fig. 3, a rubber ring 221 is adhered to the outside of the sleeve 22.
The softness of the rubber ring 221 can increase the hand feeling and friction of the grip, and the practicability is improved.
Referring to fig. 5, a threaded shaft 421 is provided at the end of the abutment 42, and a threaded socket 222 that can be screwed to the threaded shaft 421 is provided at one end of the sleeve 22.
When the base 3 needs to be disassembled, the base 3 can be directly rotated to drive the abutting table 42 of the positioning buffer mechanism 4 to rotate, so that the threaded shaft 421 of the abutting table 42 is driven to be separated from the threaded socket 222 of the sleeve 22, the size of the bracket is reduced, and the bracket is convenient to carry.
The foregoing examples merely illustrate one or more embodiments of the utility model, which are described in greater detail and are not to be construed as limiting the scope of the utility model. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the utility model, which are all within the scope of the utility model. Accordingly, the scope of protection of the present utility model is to be determined by the appended claims.

Claims (5)

1. The heel-beat anti-shake support is characterized by comprising a telescopic rod (2), a triaxial holder (1) and a base (3);
the telescopic rod (2) comprises a sleeve (22) with two open ends and an inner tube (21) which can be telescopic and is inserted into the sleeve (22), and a locking assembly (23) which can lock the inner tube (21) is arranged on the sleeve (22);
the triaxial holder (1) is used for clamping equipment and is arranged at the top of the telescopic rod (2);
the base (3) is connected with the bottom of the telescopic rod (2) through a positioning buffer mechanism (4);
the positioning buffer mechanism (4) comprises an abutting table (42), a first abutting ring (41), a limiting ring (43), a supporting column (46) and a spring (45); wherein,
the abutting table (42) is arranged in the sleeve (22);
the support column (46) is vertically inserted into the base (3), and the top of the support column (46) is fixedly connected with the abutting table (42);
the limiting ring (43) is fixedly arranged on the base (3), and the limiting ring (43) is provided with a through hole for the supporting column (46) to penetrate through;
one side of the first abutting ring (41) far away from the limiting ring (43) is arranged on the outer side of the supporting column (46) and one end of the first abutting ring can be abutted against the outer wall surface of the abutting table (42);
the spring (45) is sleeved outside the supporting column (46), one end of the spring (45) is in abutting connection with the outer wall surface of the first abutting ring (41), and the other end of the spring (45) is in abutting connection with the base (3);
three U-shaped elastic plates (44) are arranged between the first abutting ring (41) and the limiting ring (43) at equal intervals.
2. A heel-beat anti-shake mount according to claim 1, wherein the locking assembly (23) comprises a grip portion (231) and a tightening portion (232);
the gripping part (231) is a sleeve (22) with external threads, one end of the sleeve (22) far away from the base (3) is provided with a plurality of elastic grippers (2311), the elastic grippers (2311) are distributed at one end of the sleeve (22) far away from the base (3) along the axis of the sleeve (22) at equal intervals, the inner side of the elastic grippers (2311) can be in abutting connection with the outer part of the inner tube (21), and one end of the elastic grippers (2311) far away from the sleeve (22) is provided with a reducing surface (2312);
the abutting part (232) is a nut (2321) with an inner ring provided with an inner thread, the nut (2321) is in threaded connection with the sleeve (22), and an abutting groove (2322) which can be matched with the elastic grab (2311) is formed in the inner ring of the nut (2321).
3. The anti-shake support for the heel-beat according to claim 1, wherein the base (3) is in a horn structure, the base (3) comprises a placing surface (31) and a connecting surface (32), the placing surface (31) is larger than the connecting surface (32), the connecting surface (32) is connected with the inside of the positioning buffer mechanism (4), and the placing surface (31) is placed on the ground.
4. A heel-beat anti-shake support according to claim 1, characterised in that the outer part of the sleeve (22) is glued with a rubber ring (221).
5. The anti-shake support according to claim 1, characterized in that the end of the abutment table (42) is provided with a threaded shaft (421), and one end of the sleeve (22) is provided with a threaded socket (222) capable of being in threaded connection with the threaded shaft (421).
CN202321318001.1U 2023-05-29 2023-05-29 Anti-shake support for heel-beat Active CN220668247U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321318001.1U CN220668247U (en) 2023-05-29 2023-05-29 Anti-shake support for heel-beat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321318001.1U CN220668247U (en) 2023-05-29 2023-05-29 Anti-shake support for heel-beat

Publications (1)

Publication Number Publication Date
CN220668247U true CN220668247U (en) 2024-03-26

Family

ID=90339093

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321318001.1U Active CN220668247U (en) 2023-05-29 2023-05-29 Anti-shake support for heel-beat

Country Status (1)

Country Link
CN (1) CN220668247U (en)

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