Push type telescopic shooting support
Patent Information
- Application Number
- CN202522336048.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-04
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-11-04
AI Technical Summary
[0003]在户外拍摄的场景中,拍摄支架的携带使用便捷性是一个重要的性能指标,传统三脚架在展开使用时,需要逐一旋拧各个支脚关节来展开实现支撑,展开部署操作繁琐且耗时长,使用难度大,展开效率低,难以适应户外拍摄等需要频繁展开部署的应用场景,现有的拍摄支架直接影响户外拍摄进度
通过上锁弹性件驱动按压板的锁舌插入锁止槽中,能够有效限制升降环在升降通道中的位置,各个转动连接于升降环的支撑脚能够被有效收拢于升降通道中,升降通道的内壁能够有效限制支撑脚的位置,以防止支撑脚转动,锁舌以垂直于升降通道的方向接插到锁止槽中,能够形成可靠的机械锁止结构,能有效降低因自重或震动而导致支撑脚意外脱出的机率,携带收纳状态稳定牢固,携带使用方便;通过按下按压板摆动以使锁舌脱离锁止槽,被释放的升降环在升降弹性件的作用下能够沿升降通道向底座前进,直至支撑脚转动连接于升降环的端部正对锁止槽,解除周向围绕限制支撑脚在的展开弹性件的作用下背离杆主体转动展开,一系列展开动作连贯可靠,能够实现一键式展开部署,操作简单快捷,展开部署效率高,能够有效适应户外拍摄等需要频繁展开部署的应用场景,能够有效辅助加快拍摄进度,整体结构位置简洁可靠,不仅能够有效降低制造成本,还能够有效延长使用寿命,维护成本低。
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Figure CN224756652U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of telescopic brackets, and in particular to a press-type telescopic shooting bracket. Background Technology
[0002] The purpose of a shooting stand is to provide stable support for shooting equipment such as cameras and mobile phones. For example, the tripod is the most common type of stand used to assist shooting. With the popularization of new media creation, live streaming, video conferencing and other activities, the demand for shooting stands is also increasing.
[0003] In outdoor shooting scenarios, the portability and ease of use of shooting tripods is an important performance indicator. Traditional tripods require twisting each leg joint individually to unfold and provide support, making the unfolding and deployment process cumbersome, time-consuming, difficult to use, and inefficient. They are not suitable for outdoor shooting and other application scenarios that require frequent unfolding and deployment, and existing shooting tripods directly affect the progress of outdoor shooting. Utility Model Content
[0004] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a press-type telescopic shooting bracket, which can be deployed with a single button, offering high deployment efficiency and helping to accelerate the shooting process.
[0005] A press-type telescopic shooting bracket according to an embodiment of the present utility model includes: The rod body has a lifting channel and a swing seat outside the rod body. One end of the lifting channel has a locking through hole that connects to the swing seat. The locking through hole is perpendicular to the lifting channel. A pressing plate is movably connected inside the swing seat. A locking tongue is provided on one side of the pressing plate and passes through the locking through hole. A locking elastic element with one end abutting against the pressing plate is provided inside the swing seat so that the locking tongue tends to move closer to the lifting channel. One end of the rod body has a base. The base is located at the end of the lifting channel away from the locking through hole. The base has n support grooves connected to the perimeter of the lifting channel, where n is an integer greater than 2. The lifting ring is installed in the lifting channel. One end of the lifting ring is provided with a lifting elastic element that connects to the main body of the rod, so that the lifting ring tends to move closer to the base. One side of the lifting ring is provided with a locking groove that matches the locking tongue. The support feet are provided in n and are inserted into the corresponding support slots. One end of each support foot is rotatably connected to the lifting ring. An expansion elastic element is connected between each support foot and the lifting ring so that the support foot forms a tendency to rotate away from the lifting channel.
[0006] In this embodiment, the pressing plate is provided with a movable hole, the swing seat is provided with a swing shaft passing through the movable hole, the top of the swing seat is provided with a cover plate, the locking elastic element is located on the side of the pressing plate away from the lock tongue, the end of the locking elastic element away from the pressing plate abuts against the cover plate, and the cover plate is provided with a pressing clearance hole located on the side of the movable hole away from the lock tongue.
[0007] In this embodiment, there are two locking tongues and two swing shafts, and two movable holes and two locking grooves. The extension direction of the locking tongue, the extension direction of the locking elastic element, and the swing shaft are parallel to each other. The cover plate is located at the end of the swing shaft away from the lifting channel, and the end of the locking tongue near the lifting channel is spherical.
[0008] In this embodiment, the locking elastic element is a locking spring, the pressing plate is provided with a limiting groove, one end of the locking spring is provided in the limiting groove, and one side of the cover plate is provided with a positioning post that passes through the locking spring.
[0009] In this embodiment, the pressing plate is also provided with a button protrusion passing through the pressing clearance hole.
[0010] In this embodiment, a remote control base is also provided outside the main body of the rod, and a remote control is detachably connected to the remote control base.
[0011] In this embodiment, the rod body is also provided with a telescopic clearance hole connected to the end of the lifting channel away from the base. The inner diameter of the lifting channel is larger than the inner diameter of the telescopic clearance hole. The base is provided with a telescopic rod that passes through the lifting channel and the telescopic clearance hole. The lifting ring is sleeved on the outside of the telescopic rod. The rod body is also provided with a storage groove connected to the side of the lifting channel away from the base. The end of the lifting elastic element away from the base is located in the storage groove.
[0012] In this embodiment, a positioning element for connecting a shooting device is provided at the end of the telescopic rod away from the base.
[0013] In this embodiment, the positioning component includes a housing and a threaded joint. The housing is connected to the telescopic rod, and the threaded joint is rotatably connected to the housing. The housing is provided with an adjustment clearance hole, and the threaded joint is provided with an adjustment block that passes through the adjustment clearance hole.
[0014] In this embodiment, the surface of the rod body is provided with an anti-slip soft sleeve.
[0015] The embodiments of this utility model have at least the following beneficial effects: The locking tongue, driven by the locking elastic element, inserts into the locking groove of the pressing plate, effectively restricting the position of the lifting ring in the lifting channel. Each support foot rotatably connected to the lifting ring can be effectively retracted into the lifting channel. The inner wall of the lifting channel effectively restricts the position of the support feet to prevent rotation. The locking tongue, perpendicular to the lifting channel, inserts into the locking groove, forming a reliable mechanical locking structure. This effectively reduces the probability of the support feet accidentally dislodging due to their own weight or vibration. The lock is stable and secure in its stored state, making it convenient to carry and use. Pressing the pressing plate causes the locking tongue to disengage from the locking groove, releasing the lock. Under the action of the lifting elastic component, the lifting ring can move forward along the lifting channel towards the base until the end of the support foot connected to the lifting ring is aligned with the locking groove. The circumferential restriction is released, and the support foot rotates away from the main body of the rod under the action of the unfolding elastic component. The series of unfolding actions are smooth and reliable, enabling one-button unfolding and deployment. The operation is simple and quick, and the unfolding and deployment efficiency is high. It can effectively adapt to application scenarios such as outdoor shooting that require frequent unfolding and deployment, and can effectively help speed up the shooting progress. The overall structure is simple and reliable, which can not only effectively reduce manufacturing costs, but also effectively extend service life and reduce maintenance costs. Attached Figure Description
[0016] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which: Figure 1 This is a three-dimensional structural diagram of a push-to-retractable shooting bracket according to an embodiment of the present utility model; Figure 2 This is a three-dimensional structural diagram of the press-type telescopic shooting bracket in another usage state according to an embodiment of the present utility model; Figure 3 This is a three-dimensional structural diagram of the press-type telescopic shooting bracket in another usage state according to an embodiment of the present utility model; Figure 4 This is a schematic diagram of the main structure of the press-type telescopic shooting bracket according to an embodiment of the present utility model; Figure 5 For along Figure 4 A schematic diagram of the cross-sectional structure of line A-A'; Figure 6 for Figure 5 A magnified structural diagram of B in the diagram; Figure 7 This is an exploded structural diagram of the press-type telescopic shooting bracket according to an embodiment of the present utility model; Figure 8 This is an exploded structural diagram of the press-type telescopic shooting bracket according to an embodiment of the present utility model from another perspective.
[0017] Figure label: 100 rod body, 101 anti-slip soft sleeve, 110 lifting channel, 111 locking through hole, 112 telescopic clearance hole, 113 storage slot, 120 swing seat, 121 swing shaft, 130 pressing plate, 131 locking tongue, 132 movable hole, 133 limiting groove, 134 button protrusion, 140 locking elastic element, 150 base, 151 support groove, 152 telescopic rod, 160 cover plate, 161 pressing clearance hole, 162 positioning post, 170 remote control seat, 171 remote control, 180 housing, 181 adjustment clearance hole, 190 threaded joint, 191 adjusting lever; Lifting ring 200, lifting elastic element 210, locking groove 220; Support foot 300, unfolding elastic element 310. Detailed Implementation
[0018] The embodiments of this utility model are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0019] In the description of this utility model, it should be understood that the orientation descriptions, such as up, down, left, right, front, and back, are based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0020] In the description of this utility model, if the wire sleeve or bracket is mentioned, it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated or the order of the technical features indicated.
[0021] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.
[0022] With the increasing popularity of new media creation, live streaming, and video conferencing, the demand for shooting tripods is growing. In outdoor shooting scenarios, the portability and ease of use of shooting tripods is a crucial performance indicator. Traditional tripods require individual screwing and turning of each leg joint to unfold and provide support, making deployment cumbersome, time-consuming, difficult to use, and inefficient. This makes them unsuitable for outdoor shooting scenarios that require frequent deployment, directly slowing down outdoor shooting progress and resulting in a poor user experience. Some technologies attempt to redesign the leg structure of shooting tripods, such as hinged legs around the main body with corresponding connecting rods to limit the critical hinge positions. However, even with these designs, users still need to manually pry open each leg during deployment, resulting in low efficiency and inconvenience. Furthermore, the folded state of these tripods is unstable, typically requiring a space-limited storage bag to restrict the position of the legs after folding, making storage cumbersome.
[0023] The following is for reference only. Figure 1 To be continued Figure 8 This invention describes a press-type telescopic shooting bracket that can be deployed with one click, is easy to use, has high deployment efficiency, and can help speed up the shooting process.
[0024] Reference Figures 1 to 8 A press-type telescopic shooting bracket according to an embodiment of the present invention includes: The rod body 100 has a lifting channel 110 inside and a swing seat 120 outside. One end of the lifting channel 110 has a locking through hole 111 connecting to the swing seat 120. The two ends of the locking through hole 111 connect to the interior of the lifting channel 110 and the swing seat 120, respectively. The axis of the locking through hole 111 is perpendicular to the axis of the lifting channel 110. By offsetting the locking force direction and the lifting force direction, the stability of the locking action can be significantly improved. A pressing plate 130 is movably connected inside the swing seat 120. A locking tongue 131 passes through the locking through hole 111 on one side of the pressing plate 130. A locking elastic element 140, one end of which abuts against the pressing plate 130, is provided inside the swing seat 120 to cause the locking tongue 131 to rise. As the lifting channel 110 approaches the movement trend, a base 150 is provided at one end of the rod body 100. The base 150 is located at the end of the lifting channel 110 away from the locking through hole 111. The base 150 is provided with n support grooves 151 connected to the periphery of the lifting channel 110. The support grooves 151 are evenly distributed around the periphery of the lifting channel 110. One end of the support groove 151 is connected to the lifting channel 110, and the other end of the support groove 151 passes through the base 150 and connects to the external environment. The bottom of the support groove 151 is located on the side close to the rod body 100, and the groove opening of the support groove 151 is opposite to the rod body along the extension direction of the rod body. This can provide a stable positioning effect for the deployment of the support foot 330 and can effectively improve the stability of the support effect during deployment. n is an integer greater than 2, that is, n is at least 3. A lifting ring 200 is inserted into the lifting channel 110. One end of the lifting ring 200 is provided with a lifting elastic element 210 connecting the main body 100 of the lifting rod. The lifting elastic element 210 is used to make the lifting ring 200 move towards the base 150. The side of the lifting ring 200 near the upper locking through hole 111 is provided with a locking groove 220 matching the locking tongue 131. The locking tongue 131 is inserted into the locking groove 220 to effectively limit the position of the lifting ring 200. There are n support feet 330, and each support foot 330 is inserted into a corresponding support groove 151. The length of the lifting channel 110 is greater than the length of the support foot 330 to ensure that the support foot 330 can be completely stored in the lifting channel 110. One end of each support foot 330 is rotatably connected to the lifting ring 200. An unfolding elastic member 310 is connected between each support foot 330 and the lifting ring 200. The unfolding elastic member 310 is used to make each support foot 330 form a tendency to rotate away from the lifting channel 110.
[0025] When organizing, refer to Figure 2As shown, each support foot 330 is parallel to the rod body 100, and each support foot 330 is housed in the lifting channel 110. The lifting ring 200 is pushed to the top of the lifting channel 110, the lifting elastic element 210 is compressed, and the locking tongue 131 is inserted into the locking groove 220 through the locking through hole 111 under the action of the locking elastic element 140, and the position of the lifting ring 200 is locked.
[0026] When unfolding, refer to Figure 1 and Figure 3 As shown, the pressing plate 130 is pressed and swung against the elastic resistance of the locking elastic element 140 until the locking tongue 131 is completely disengaged from the locking groove 220. The lifting ring 200, which has lost its locking and positioning function, moves closer to the base 150 under the elastic force of the lifting elastic element 210 until the four sides of the lifting ring 200 are aligned with the support groove 151. Each support foot 330 rotates away from the lifting channel 110 under the elastic force of the corresponding unfolding elastic element 310. The support foot 330 passes through the support groove 151 and rotates to extend to the four sides of the rod body 100, thereby unfolding and forming a reliable support effect. At this time, the support foot 330 and the rod body 100 form a nearly vertical angle, specifically 90 to 120 degrees.
[0027] The locking tongue 131 of the pressing plate 130, driven by the locking elastic element 140, is inserted into the locking groove 220, effectively restricting the position of the lifting ring 200 in the lifting channel 110. Each support foot 330 rotatably connected to the lifting ring 200 can be effectively retracted into the lifting channel 110. The inner wall of the lifting channel 110 effectively restricts the position of the support feet 330 to prevent rotation. The locking tongue 131 is inserted into the locking groove 220 in a direction perpendicular to the lifting channel 110, forming a reliable mechanical locking structure. This effectively reduces the probability of the support feet 330 accidentally dislodging due to their own weight or vibration. The storage state is stable and secure, and it is convenient to carry and use. During carrying, the shaking force generated by the lifting ring 200 in the lifting channel 110 is perpendicular to the movement direction of the locking tongue 131, effectively preventing the vibration force generated by the lifting ring 200 during carrying from affecting the position of the locking tongue 131. By pressing the pressing plate 130 and swinging it, the locking... Tongue 131 disengages from locking groove 220, and the released lifting ring 200, under the action of lifting elastic element 210, can move along lifting channel 110 towards base 150. Each support foot 330 moves synchronously with lifting ring 200 and passes through corresponding support groove 151 until the end of support foot 330 connected to lifting ring 200 is directly opposite locking groove 220. The circumferential restriction is released, and the support foot 330 rotates away from the rod body 100 and unfolds under the action of unfolding elastic element 310. The series of unfolding actions are smooth and reliable, enabling one-button unfolding deployment. Compared with traditional technology that requires adjusting each support foot one by one, this shooting bracket is simple and quick to operate, has high unfolding deployment efficiency, and short unfolding deployment time. It can effectively adapt to application scenarios such as outdoor shooting that require frequent unfolding deployment, effectively assisting in speeding up shooting progress, providing a good user experience, and has a simple and reliable overall structure. It can not only effectively reduce manufacturing costs but also effectively extend service life and reduce maintenance costs.
[0028] The lifting ring 200 has n rotating insertion holes that match the corresponding support slots 151 on the side near the base 150. One end of each support foot 330 is rotatably connected to the corresponding rotating insertion hole. The unfolding elastic element 310 can be a torsion spring. The support foot 330 is rotatably connected to the rotating insertion hole through a rotating shaft, and the torsion spring is sleeved on the outside of the rotating shaft.
[0029] Understandably, the pressing plate 130 has a movable hole 132 in the middle, and the swing seat 120 has a swing shaft 121 passing through the movable hole 132. A cover plate 160 is fixedly installed on the top of the swing seat 120. The cover plate 160 is located on the side of the pressing plate 130 opposite to the locking through hole 111, and the locking elastic member 140 is located on the side of the pressing plate 130 opposite to the lock tongue 131. The end of the locking elastic member 140 opposite to the pressing plate 130 abuts against the cover plate 160. The cover plate 160 has a pressing clearance hole 161 located on the side of the movable hole 132 opposite to the lock tongue 131. The cover plate 160 can reliably store and protect the pressing plate 130, significantly reducing the probability of the pressing plate 130 being accidentally opened. The stored state is stable and reliable, while the pressing clearance hole 161 can effectively ensure the operability of the pressing plate 130.
[0030] Without external force, the pressing plate 130 is driven to swing around the swing shaft 121 by the elastic force of the locking elastic element 140, so that the locking tongue 131 is inserted into the lifting channel 110 through the locking through hole 111. In the retracted state, the lifting ring 200 is pushed to the top of the lifting channel 110, and the locking tongue 131 is inserted into the locking groove 220, thereby locking the position of the lifting ring 200. When it needs to be unfolded, the pressing plate 130 is pressed through the pressing clearance hole 161, so that the pressing plate 130 overcomes the locking elastic element 140. The elastic force swings around the swing axis 121, and the locking tongue 131 moves away from the lifting channel 110 until the locking tongue 131 is completely disengaged from the locking groove 220. Under the action of the lifting elastic element 210, the lifting ring 200 moves closer to the base 150 until the four sides of the lifting ring 200 are aligned with the support groove 151. Each support foot 330 rotates away from the lifting channel 110 under the elastic force of the corresponding unfolding elastic element 310. The support foot 330 passes through the support groove 151 and rotates to extend to the four sides of the rod body 100, thereby forming a reliable support effect.
[0031] It is understandable that both the locking tongue 131 and the swing shaft 121 are provided in pairs, and both the movable hole 132 and the locking groove 220 are provided in pairs. The diameter of the movable hole 132 is larger than the diameter of the swing shaft 121, thus providing sufficient swing space for the pressing plate 130 to swing, which can effectively improve the reliability of the pressing trigger action. By setting two sets of swing shafts 121 and movable holes 132, the stability of the pressing plate 130 when swinging in the swing seat 120 can be effectively improved. The two sets of locking tongues 131 and locking grooves 220 can effectively improve the locking and positioning effect on the lifting ring 200. For stability, the extension direction of the locking tongue 131, the extension direction of the locking elastic element 140, and the extension direction of the swing shaft 121 are parallel to each other. Correspondingly, the extension direction of the locking through hole 111 and the extension direction of the movable hole 132 are parallel to the extension direction of the swing shaft 121. The cover plate 160 is located at the end of the swing shaft 121 away from the lifting channel 110. The unified direction can not only improve the reliability of the locking action associated with the swing, but also effectively improve the space utilization and assembly convenience, and reduce the assembly cost. The end of the locking tongue 131 near the lifting channel 110 is spherical.
[0032] When the support foot 330 is pushed back into place, the spherical end of the latch 131 effectively improves the smoothness of its movement when it engages with the locking groove 220, thereby enhancing the convenience of the retraction operation. Furthermore, when the press plate 130 rotates and swings, the spherical edge contraction effectively reduces rigid collisions between the latch 131 and the lifting ring 200, thus improving the smoothness of the pressing trigger action.
[0033] It is understandable that when the locking elastic element 140 is a locking spring, the pressing plate 130 is provided with a limiting groove 133 that matches the locking spring. One end of the locking spring is located in the limiting groove 133. The cover plate 160 is provided with a positioning post 162 that passes through the locking spring on the side near the inside of the swing seat 120. The positioning post 162 and the limiting groove 133 can effectively limit the position of the locking spring, thereby preventing the locking spring from deflecting during compression or recovery, thereby improving the reliability and consistency of the action when the pressing plate 130 rotates and swings.
[0034] It is understandable that the pressing plate 130 is also provided with a button protrusion 134 passing through the pressing relief hole 161. The button protrusion 134 passing through the pressing relief hole 161 makes it convenient for users to press and use. Preferably, in the natural state, the surface of the button protrusion 134 is flush with the surface of the cover plate 160, which can further ensure the anti-accidental touch performance. The button protrusion 134 and the pressing plate 130 are integrally formed structures.
[0035] It is understandable that a remote control base 170 is also provided outside the main body 100 of the pole, and a remote control 171 is detachably connected to the remote control base 170. The remote control 171 can be a wireless remote control 171 such as a Bluetooth remote control 171 or an infrared remote control 171.
[0036] Based on the needs of practical applications, the remote control base 170 is provided with pick-up and put-down relief grooves on both opposite sides to facilitate users to apply force to pick up and put down the remote control 171. The remote control 171 also has anti-slip structures on both opposite sides facing the corresponding pick-up and put-down relief grooves. Specifically, the side of the remote control 171 may have a locking structure for abutting against the pick-up and put-down relief groove to stabilize its position. This structure elastically abuts against the edge of the pick-up and put-down relief groove when inserted into the remote control base 170, achieving a stable locking and fixing. Preferably, the locking structure is an elastic protrusion made of rubber.
[0037] It is understandable that the rod body 100 is also provided with a telescopic clearance hole 112 connected to the end of the lifting channel 110 away from the base 150. The cross-section of both the lifting channel 110 and the telescopic clearance hole 112 is circular. The inner diameter of the lifting channel 110 is larger than the inner diameter of the telescopic clearance hole 112. The telescopic clearance hole 112 passes through the end of the rod body 100 away from the base 150. The base 150 is provided with a telescopic rod 152 that passes through the lifting channel 110 and the telescopic clearance hole 112. The lifting ring 200 is sleeved on the telescopic rod 152. When the lifting elastic element 210 is a lifting spring, the lifting spring is also sleeved on the telescopic rod 152. The telescopic rod 152 includes an outer rod and an inner rod. One end of the outer rod is fixedly connected to the base 150, and the other end of the outer rod passes through the telescopic clearance hole 112. The inner rod passes inside the outer rod. Telescopic positioning is achieved by setting matching threaded connection structures or interference fit structures at the ends of the inner rod and the outer rod. The position of the outer rod is fixed and can effectively separate the movement space between the inner rod and the lifting ring 200, which can effectively improve the reliability of their respective operation. The rod body 100 is also provided with a storage groove 113 connected to the side of the lifting channel 110 away from the base 150. One end of the lifting elastic element 210 abuts against the end of the lifting ring 200 away from the base 150, and the end of the lifting elastic element 210 away from the base 150 is located in the storage groove 113. The storage groove 113 provides storage and positioning space for the lifting elastic element 210, which can improve the reliability of the telescopic operation of the lifting elastic element 210.
[0038] Furthermore, the limiting position at the top of the lifting channel 110 provides positioning for the lifting ring 200's lifting action, ensuring that when the lifting ring 200 is pushed to the deepest part of the lifting channel 110 during storage, the locking groove 220 can be effectively aligned with the locking through hole 111. This ensures that the locking tongue 131 can be smoothly inserted into the locking groove 220 under the action of the locking elastic member 140 to achieve upper locking. The storage groove 113 provides sufficient storage space for the retraction of the lifting elastic member 210, which can prevent the lifting elastic member 210 from being affected by excessive compression, thus affecting its effective service life.
[0039] Understandably, the telescopic rod 152 has a positioning component for connecting shooting equipment at the end opposite to the base 150, which facilitates the installation and use of shooting equipment.
[0040] It is understood that the positioning component includes a housing 180 and a threaded connector 190. The housing 180 is fixedly connected to the top of the inner sleeve of the telescopic rod 152, and the threaded connector 190 is rotatably connected to the housing 180. The housing 180 is provided with an adjustment clearance hole 181, and the threaded connector 190 is provided with an adjustment block 191 passing through the adjustment clearance hole 181. The adjustment block 191 is disc-shaped and coaxial with the threaded connector 190. The circumferential surface of the adjustment block 191 is provided with anti-slip texture.
[0041] The adjustment lever 191 extends to the outside of the housing 180. By rotating the adjustment lever 191, the threaded connector 190 can be driven to rotate, thereby realizing the assembly and disassembly of the shooting device and the threaded connector 190. Preferably, the threaded connector 190 is a quarter screw, which can effectively accommodate the quarter screw holes of most shooting devices on the market.
[0042] Understandably, the surface of the rod body 100 is provided with an anti-slip soft sleeve 101, which is preferably made of silicone or other soft elastic materials with a good coefficient of friction, in order to enhance the user's comfort and stability when holding the rod and prevent slippage.
[0043] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A push-type telescopic shooting support, characterized in that, include: A rod body (100) is provided with a lifting channel (110). A swing seat (120) is provided outside the rod body (100). One end of the lifting channel (110) is provided with a locking through hole (111) connecting the swing seat (120). The locking through hole (111) is perpendicular to the lifting channel (110). A pressing plate (130) is movably connected inside the swing seat (120). One side of the pressing plate (130) is provided with a locking tongue (131) passing through the locking through hole (111). The swing seat... (120) is provided with a locking elastic element (140) with one end abutting against the pressing plate (130) so that the locking tongue (131) forms a tendency to move closer to the lifting channel (110). One end of the rod body (100) is provided with a base (150). The base (150) is located at one end of the lifting channel (110) away from the locking through hole (111). The base (150) is provided with n support grooves (151) connected to the periphery of the lifting channel (110), where n is an integer greater than 2. A lifting ring (200) is inserted into the lifting channel (110). One end of the lifting ring (200) is provided with a lifting elastic element (210) that connects to the rod body (100) so that the lifting ring (200) tends to move closer to the base (150). One side of the lifting ring (200) is provided with a locking groove (220) that matches the locking tongue (131). The support feet (330) are provided in n and pass through the corresponding support grooves (151). One end of each support foot (330) is rotatably connected to the lifting ring (200). Each support foot (330) and the lifting ring (200) are connected by an unfolding elastic member (310) so that the support foot (330) forms a tendency to rotate away from the lifting channel (110).
2. The press-type telescopic shooting bracket according to claim 1, characterized in that, The pressing plate (130) is provided with a movable hole (132), and the swing seat (120) is provided with a swing shaft (121) passing through the movable hole (132). The top of the swing seat (120) is provided with a cover plate (160). The locking elastic member (140) is located on the side of the pressing plate (130) away from the lock tongue (131). The end of the locking elastic member (140) away from the pressing plate (130) abuts against the cover plate (160). The cover plate (160) is provided with a pressing clearance hole (161) located on the side of the movable hole (132) away from the lock tongue (131).
3. A press-type telescopic shooting bracket according to claim 2, characterized in that, The latch (131) and the swing shaft (121) are each provided with two, the movable hole (132) and the locking groove (220) are each provided with two, the extension direction of the latch (131), the extension direction of the locking elastic element (140) and the swing shaft (121) are parallel to each other, the cover plate (160) is located at the end of the swing shaft (121) away from the lifting channel (110), and the end of the latch (131) near the lifting channel (110) is spherical.
4. A press-type telescopic shooting bracket according to claim 3, characterized in that, The locking elastic element (140) is a locking spring. The pressing plate (130) is provided with a limiting groove (133). One end of the locking spring is located in the limiting groove (133). The cover plate (160) is provided with a positioning post (162) that passes through the locking spring on one side.
5. A press-type telescopic shooting bracket according to claim 2, characterized in that, The pressing plate (130) is also provided with a button protrusion (134) passing through the pressing relief hole (161).
6. A press-type telescopic shooting bracket according to claim 1, characterized in that, The rod body (100) is also provided with a remote control base (170), and a remote control (171) is detachably connected to the remote control base (170).
7. A press-type telescopic shooting bracket according to claim 1, characterized in that, The rod body (100) is also provided with a telescopic clearance hole (112) connected to the end of the lifting channel (110) away from the base (150). The inner diameter of the lifting channel (110) is larger than the inner diameter of the telescopic clearance hole (112). The base (150) is provided with a telescopic rod (152) passing through the lifting channel (110) and the telescopic clearance hole (112). The lifting ring (200) is sleeved outside the telescopic rod (152). The rod body (100) is also provided with a storage groove (113) connected to the side of the lifting channel (110) away from the base (150). The end of the lifting elastic element (210) away from the base (150) is located in the storage groove (113).
8. A press-type telescopic shooting bracket according to claim 7, characterized in that, The telescopic rod (152) has a positioning component for connecting shooting equipment at one end away from the base (150).
9. A press-type telescopic shooting bracket according to claim 8, characterized in that, The positioning component includes a housing (180) and a threaded connector (190). The housing (180) is connected to the telescopic rod (152), and the threaded connector (190) is rotatably connected to the housing (180). The housing (180) is provided with an adjustment clearance hole (181), and the threaded connector (190) is provided with an adjustment lever (191) passing through the adjustment clearance hole (181).
10. A press-type telescopic shooting bracket according to claim 1, characterized in that, The surface of the rod body (100) is provided with an anti-slip soft sleeve (101).