Supporting base, electronic equipment and selfie equipment
By designing a double-layer structure with an inner and outer cylindrical body and a cantilevered enclosure in the support base, the problem of support instability is solved, and the connection stability and service life are enhanced.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-04-10
AI Technical Summary
The existing support base has structural design flaws that cause the object to be unstable and easily damaged.
Design a support base, including a base, a support member and a connector. The connector consists of a cylindrical body and a surrounding wall. The surrounding wall is cantilevered, forming an inner and outer double-layer structure, providing deformation space and enhancing the connection stability between the support member and the base.
It improves the connection stability between the support and the base, resolves the dimensional mismatch problem caused by processing errors, and extends the service life and reliability of the device.
Smart Images

Figure CN224107966U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of support structure, in particular to a support base, an electronic device and a selfie device. BACKGROUND
[0002] The support base can be used to support objects such as fans, speakers, mobile phones, etc. However, the support base in the related art is unstable in supporting objects due to defects in its own structural design, which can easily cause damage to the objects. Therefore, how to design a new support base capable of providing stable support for objects has become a problem to be solved. CONTENT OF THE INVENTION
[0003] The embodiments of the present application provide a support base, an electronic device and a selfie device, which can solve the problem of unstable support of objects caused by defects in the structural design of the support base in the related art, which can easily cause damage to the objects.
[0004] In a first aspect, the embodiments of the present application provide a support base; the support base is used to support an object, and the support base comprises a base, a support piece and a connecting piece. The support piece is used to support the object, and the connecting piece comprises a cylinder arranged on the base, and at least two surrounding walls arranged at intervals around the cylinder axis and located at least partially in the cylinder cavity of the cylinder. The periphery of the at least two surrounding walls is spaced from the inner side wall surface of the cylinder to form a deformation space. Each surrounding wall comprises a first sub-wall and a second sub-wall. One end of the first sub-wall is connected to the cylinder wall of the cylinder, and the first sub-wall is arranged in a cantilevered manner in a direction parallel to the cylinder axis of the cylinder. The second sub-wall is bent and connected to the other end of the first sub-wall. When the end of the support piece is inserted into the cylinder cavity of the cylinder, the first sub-wall is fitted to the peripheral surface of the support piece, and the second sub-wall is fitted to the end surface of the support piece.
[0005] In a second aspect, the embodiments of the present application provide an electronic device; the electronic device comprises a device main body and the above-mentioned support base. The device main body is connected to the support piece as an object.
[0006] In a third aspect, the embodiments of the present application provide a selfie device; the selfie device comprises a lamp main body and the above-mentioned support base. The lamp main body is connected to the support piece as an object.
[0007] The support base, the electronic device and the self-photographing device based on the embodiments of the present application provide a stable support platform for the support member, and effectively transmit the force of the support member to the base, the surrounding wall provides a reinforcing effect for the structure of the cylinder, so that the connecting member is in a inner-outer double-layer structure, so as to strengthen the connection between the support member and the base when the end of the support member is inserted into the cylinder cavity of the cylinder, thereby effectively improving the connection stability between the support member and the base, so that the support base plays a good supporting role on the object. By designing at least two surrounding walls, by designing at least two surrounding walls, at least two surrounding walls are arranged in a cantilevered manner and form a space, and the periphery of at least two surrounding walls is spaced from the inner side wall of the cylinder to form a deformation space. This structure design not only ensures the stability of the surrounding wall in the cylinder, but also provides sufficient deformation space when the surrounding wall bears the extrusion force of the support member, so as to improve the problem of size mismatch caused by the machining error of the support member, and make the installation and disassembly of the support member more convenient. In addition, at least two surrounding walls can disperse stress by deformation when bearing the extrusion force of the support member, thereby avoiding the structural damage of the surrounding wall caused by stress concentration, and improving the service life and reliability of the whole device. BRIEF DESCRIPTION OF DRAWINGS
[0008] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0009] Figure 1 The partial structure schematic diagram of the support base in one embodiment of the present application;
[0010] Figure 2 The structure schematic diagram of the connecting member arranged on the base in one embodiment of the present application;
[0011] Figure 3 The structure schematic diagram of the connecting member arranged on the base in one embodiment of the present application; Figure 2 The cross-sectional structure schematic diagram of the connecting member arranged on the base in one embodiment of the present application;
[0012] Figure 4 The structure schematic diagram of the connecting member arranged on the base in one embodiment of the present application; Figure 2 The structure schematic diagram from another perspective;
[0013] Figure 5 The structure schematic diagram of the overturning member rotating to the outside of the storage groove of the base in another embodiment of the present application;
[0014] Figure 6 The partial cross-sectional structure schematic diagram of the overturning member rotating to the outside of the storage groove of the base in another embodiment of the present application; Figure 1
[0015] Figure 7 This is a partial structural diagram of the support base in another embodiment of this application;
[0016] Figure 8 for Figure 8 A schematic diagram of a partial cross-sectional structure;
[0017] Figure 9 This is a partial structural schematic diagram of the support base in another embodiment of this application;
[0018] Figure 10 for Figure 9 A schematic diagram of a partial cross-sectional structure;
[0019] Figure 11 This is a partial structural diagram of the support base in another embodiment of this application;
[0020] Figure 12 for Figure 11 A schematic diagram of a partial cross-sectional structure;
[0021] Figure 13 This is a partial structural diagram of the support base in another embodiment of this application;
[0022] Figure 14 for Figure 13 A schematic diagram of a partial cross-sectional structure;
[0023] Figure 15 This is a schematic diagram of the electronic device in use in one embodiment of this application;
[0024] Figure 16 This is a schematic diagram of the selfie device in use according to one embodiment of this application;
[0025] Figure 17 This is a schematic diagram of the selfie device in an idle state according to one embodiment of this application.
[0026] Reference numerals: 1. Support base; 11. Base; 111. Base; 111a. Storage slot; 111b. First locking port; 111c. Second locking port; 111d. Second through hole; 111e. First through hole; 112. Flip-over component; 112a. First through hole; 112b. Buckle; 113. Locking / unlocking assembly; 1131a. Locking / unlocking component; 1131b. First elastic component; 1132a. Locking component; 1132b. Unlocking component; 1132c. Second elastic component; 1132d. Third elastic component; 1133a. First mating component; 1133b. First fastener; 1134a. Second mating component; 11 34b, Second fastener; 114, Counterweight plate; 114a, Second through hole; 115, Locking component; 116, Anti-slip pad; 12, Support component; 12a, Fixing hole; 13, Connecting component; 131, Cylinder body; 131a, First cylinder section; 131b, Second cylinder section; OO', Cylinder axis; 132, Enclosure wall; 1321, First sub-wall; 1322, Second sub-wall; 1323, Perforation; 132a, First enclosure wall; 132b, Second enclosure wall; 132c, Third enclosure wall; 132d, Fourth enclosure wall; 14, Fixing component; 2, Electronic equipment; 21, Equipment body; 3, Selfie device; 31, Lighting body. Detailed Implementation
[0027] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0028] Support bases can be used to support objects such as fans, speakers, and mobile phones. However, in related technologies, support bases consist of a base and a support rod connected to the base, with the object mounted on the support rod. Because the structural strength at the connection point between the support rod and the base is relatively weak, the support for the object is unstable, easily leading to damage. Therefore, designing a new type of support base that can provide stable support for objects has become an urgent problem to be solved.
[0029] To solve the above problem, please refer to Figures 1-2 As shown, in a first aspect, this application proposes a support base 1 for supporting an object. The support base 1 includes a base 11, a support member 12, and a connector 13. The support base 1 in this application, through the design of the connector 13, effectively improves the connection stability between the support member 12 and the base 11, enabling the support base 1 to provide good support for the object.
[0030] The support member 12 is used for supporting an object; the connecting member 13 comprises a barrel 131 arranged on the base 11, and at least two surrounding walls 132 at least partially located in the barrel cavity of the barrel 131 and arranged at intervals around the barrel axis OO' of the barrel 131, the periphery of the at least two surrounding walls 132 is spaced from the inner side wall surface of the barrel 131 to form a deformation space, each surrounding wall 132 comprises a first sub-wall 1321 and a second sub-wall 1322, one end of the first sub-wall 1321 is connected with the barrel wall of the barrel 131, and the first sub-wall 1321 is arranged in a cantilevered manner extending in a direction parallel to the barrel axis OO' of the barrel 131, the second sub-wall 1322 is bent and connected to the other end of the first sub-wall 1321, when the end of the support member 12 is inserted into the barrel cavity of the barrel 131, the first sub-wall 1321 is fitted with the peripheral surface of the support member 12, and the second sub-wall 1322 is fitted with the end surface of the support member 12.
[0031] The specific structure of the support base 1 will be introduced in detail below. Figures 1-12 The specific structure of the support base 1 will be introduced in detail below.
[0032] As shown in Figures 1-2 The support base 1 is used for supporting an object; wherein the object can be but is not limited to a fan, a sound, a mobile phone, a tablet support, a mirror, a lamp and the like.
[0033] The support base 1 comprises a base 11, a support member 12 and a connecting member 13.
[0034] The base 11 is used as the seat of the support base 1, and is used to provide a stable support platform. Here, the specific shape of the base 11 is not limited, and the designer can reasonably design according to actual needs; for example, the shape of the base 11 can be but is not limited to a circular shape, a rectangular shape or other polygonal shapes, etc., to adapt to different use scenarios. Here, the specific material of the base 11 is not limited, and the designer can reasonably select according to actual needs; for example, the material of the base 11 can be but is not limited to metal (such as aluminum alloy, stainless steel), high-strength plastic, etc., to ensure that the base 11 has sufficient carrying capacity. The specific structure of the base 11 will be introduced in detail below.
[0035] The support member 12 is used as the support body of the support base 1, and is used to provide support for the above-mentioned object. Here, the specific material of the support member 12 is not limited, and the designer can reasonably select according to actual needs; for example, the material of the support member 12 can be but is not limited to metal (such as aluminum alloy, stainless steel), high-strength plastic, etc., to ensure that the support member 12 has sufficient carrying capacity. Here, the specific structure of the support member 12 is not limited, and the designer can reasonably design according to actual needs; for example, the support member 12 can be but is not limited to a columnar structure, a plate structure or other suitable structures, etc. In the embodiment of the present application, the support member 12 is a telescopic columnar structure, so that the user can adjust the length of the support member 12 according to actual needs.
[0036] As shown in Figures 1-2 The connecting piece 13 serves as an intermediate connecting structure between the support piece 12 and the base 11, and the connecting piece 13 comprises a cylinder body 131 and a surrounding wall 132.
[0037] The cylinder body 131, as the main part of the connecting piece 13, is used for inserting the end of the support piece 12, and the cylinder body 131 is arranged on the base 11. There can be a connection relationship between the cylinder body 131 and the base 11, or there can be no connection relationship. For example, when there is a connection relationship between the cylinder body 131 and the base 11, the cylinder body 131 can be, but is not limited to, detachably connected with the base 11 by at least one of the following modes: screwing, clamping, or inserting. The cylinder body 131 can also be, but is not limited to, non-detachably connected with the base 11 by the following modes: welding, gluing, riveting, injection molding, or 3D printing. The shape of the cross section of the cylinder body 131 in the direction perpendicular to the cylinder axis OO' can be, but is not limited to, circular, rectangular, elliptical, or other shapes.
[0038] The surrounding wall 132 provides a reinforcing effect for the cylinder body 131 in structure (so that the connecting piece 13 forms an inner-outer double-layer structure), so as to strengthen the connection between the support piece 12 and the base 11 when the end of the support piece 12 is inserted into the cylinder cavity of the cylinder body 131, thereby improving the connection stability between the support piece 12 and the base 11. The number of the surrounding wall 132 is at least two, and the at least two surrounding walls 132 can be designed as arc-shaped sheet bodies or other shapes to adapt to support pieces 12 of different shapes. The surrounding wall 132 can be, but is not limited to, detachably connected with the cylinder body 131 by at least one of the following modes: screwing, clamping, or inserting. The surrounding wall 132 can also be, but is not limited to, non-detachably connected with the cylinder body 131 by the following modes: riveting, welding, or gluing. In the embodiment of the present application, the surrounding wall 132 is integrally formed with the cylinder body 131 (for example, by injection molding or 3D printing), which can effectively reduce the processing difficulty between the surrounding wall 132 and the cylinder body 131. In the embodiment of the present application, the at least two surrounding walls 132 comprise a first surrounding wall 132a, a second surrounding wall 132b, a third surrounding wall 132c, and a fourth surrounding wall 132d, and the first surrounding wall 132a, the second surrounding wall 132b, the third surrounding wall 132c, and the fourth surrounding wall 132d are arranged at equal intervals around the cylinder axis OO' of the cylinder body 131.
[0039] As shown in Figures 2-4As shown, each surrounding wall 132 comprises a first sub-wall 1321 and a second sub-wall 1322, one end of the first sub-wall 1321 is connected with the barrel wall of the barrel body 131, and the first sub-wall 1321 is arranged in a cantilevered manner along a direction parallel to the barrel axis OO' of the barrel body 131, and the second sub-wall 1322 is bent and connected to the other end of the first sub-wall 1321; when the end of the support piece 12 is inserted into the barrel cavity of the barrel body 131, the first sub-wall 1321 is fitted with the peripheral side surface of the support piece 12, and the second sub-wall 1322 is fitted with the end surface of the support piece 12. Thus, by designing the cross section of the surrounding wall 132 in the plane of the barrel axis OO' of the barrel body 131 to be L-shaped, the surrounding wall 132 can increase the contact area between the surface of the support piece 12 while providing support for the support piece 12, thereby further improving the stability of the support piece 12.
[0040] Based on the support base 1 in the embodiment of the present application, the barrel body 131 provides a stable support platform for the support piece 12 and effectively transmits the force of the support piece 12 to the base 11, the surrounding wall 132 provides a reinforcing effect for the barrel body 131 in structure, so that the connecting piece 13 is in an inner-outer double-layer structure, so as to strengthen the connection between the support piece 12 and the base 11 when the end of the support piece 12 is inserted into the barrel cavity of the barrel body 131, thereby effectively improving the connection stability between the support piece 12 and the base 11, so that the support base 1 plays a good supporting role on the object. By designing at least two surrounding walls 132, by designing at least two surrounding walls 132, at least two surrounding walls 132 are arranged in a cantilevered manner and form a space, and the periphery of at least two surrounding walls 132 is spaced from the inner barrel wall surface of the barrel body 131 to form a deformation space. This structural design not only ensures the stability of the surrounding wall 132 in the barrel body 131, but also provides sufficient deformation space for the surrounding wall 132 when bearing the extrusion force of the support piece 12, so as to improve the problem of size mismatch caused by the machining error of the support piece 12, and make the installation and disassembly of the support piece 12 more convenient. In addition, at least two surrounding walls 132 can disperse stress by deformation when bearing the extrusion force of the support piece 12, thereby avoiding structural damage of the surrounding wall 132 due to stress concentration, improving the service life and reliability of the entire device.
[0041] As Figures 2-4 and Figure 6As shown, the end surface of the support 12 is provided with a fixing hole 12a, and the second sub-wall 1322 of all the surrounding walls 132 is distanced from the first sub-wall 1321 to jointly form a through hole 1323; the support base 1 further comprises a fixing member 14, which is pressed against the second sub-wall 1322 and connected with the fixing hole 12a through the through hole 1323. Wherein, the specific connection mode between the fixing member 14 and the fixing hole 12a is not limited here, and the designer can reasonably design according to the actual needs; for example, when the fixing member 14 comprises a screw, the fixing hole 12a corresponds to a threaded hole, and at this time the fixing member 14 and the fixing hole 12a are connected through the locking screw mode; for another example, when the fixing member 14 comprises a bolt, the fixing hole 12a corresponds to a insertion hole, and at this time the fixing member 14 and the fixing hole 12a are connected through the bolt insertion mode. By designing the fixing member 14, the fixing member 14 is pressed against the second sub-wall 1322 and connected with the fixing hole 12a through the through hole 1323, the relative position between the support 12 and the surrounding wall 132 is fixed, and the connection stability of the support 12 can be further improved.
[0042] As shown in the drawings, Figures 2-4 As shown, the cylinder body 131 comprises a first cylinder segment 131a and a second cylinder segment 131b, the first cylinder segment 131a is connected with the base 11, and the second cylinder segment 131b is connected with the end of the first cylinder segment 131a distanced from the base 11; from the end close to the base 11 to the end distanced from the base 11, the inner side cylinder diameter of the first cylinder segment 131a gradually decreases, and the inner side cylinder diameter of the second cylinder segment 131b remains unchanged; the periphery of the at least two surrounding walls 132 is spaced from the inner side cylinder wall surface of the first cylinder segment 131a to form the deformation space.
[0043] Wherein, the first cylinder segment 131a and the second cylinder segment 131b can be but not limited to integrally formed by injection molding or 3D printing.
[0044] By designing the inner side cylinder diameter of the first cylinder segment 131a gradually decreasing from one end close to the base 11 to one end away from the base 11, this tapered structure makes the cylinder 131 have a larger cross-sectional area at the position close to the base 11, so that when the cylinder 131 is subjected to external force, the stress is concentrated in the bottom area of the cylinder 131 with a larger cross-sectional area (i.e. the bottom of the first cylinder segment 131a), which can avoid structural damage of the cylinder 131 due to stress concentration, and significantly improve the structural strength and stability of the cylinder 131. By designing the first cylinder segment 131a into a tapered structure, the periphery of the at least two surrounding walls 132 is spaced from the inner side cylinder wall surface of the first cylinder segment 131a, so as to provide sufficient space for the deformation of the at least two surrounding walls 132. By designing the inner side cylinder diameter of the second cylinder segment 131b to remain unchanged from one end close to the base 11 to one end away from the base 11, when the end of the support member 12 is connected with the cylinder 131, the outer wall surface of the support member 12 and the inner side cylinder wall surface of the second cylinder segment 131b form a surface contact, which can effectively ensure the connection stability between the support member 12 and the cylinder 131.
[0045] As shown in Figure 1 and Figure 5 The base 11 includes a base 111, a turnover member 112 and a lock release assembly 113. The base 111 has a receiving groove 111a. The turnover member 112 is rotationally connected with the base 111 corresponding to the receiving groove 111a, and the turnover member 112 is connected with the cylinder 131. The lock release assembly 113 is installed on at least one of the base 111 and the turnover member 112, and the lock release assembly 113 can be switched between a locked state and a released state; in the locked state, the lock release assembly 113 is used to lock the turnover member 112 to the base 111, so that the turnover member 112 can be accommodated in the receiving groove 111a; in the released state, the lock release assembly 113 is used to release the turnover member 112 from the base 111, so that the turnover member 112 can be rotated to extend out of the receiving groove 111a.
[0046] The base 111 is used as the core support component of the base 11, which is used to carry the turnover member 112 and provide a stable mounting foundation. The base 111 has a receiving groove 111a, which can be formed by extending inwardly from the upper surface of the base 111; here the specific shape of the receiving groove 111a is not limited, and the designer can reasonably design according to the actual needs, and the shape of the receiving groove 111a is adapted to the shape of the turnover member 112.
[0047] The turnover piece 112 is a rotating piece of the base 11, and its main function is to realize the turnover operation of the cylinder 131, so that the support piece 12 connected with the cylinder 131 can also rotate with the cylinder 131, thereby making the support base 1 suitable for different states. The specific structure of the turnover piece 112 is not limited here, and the designer can reasonably design according to actual needs; for example, the turnover piece 112 can be but is not limited to a plate-shaped structure or a box-shaped structure. The specific rotating connection mode between the turnover piece 112 and the base 111 is not limited here, and the designer can reasonably design according to actual needs; for example, the turnover piece 112 can be but is not limited to rotatingly connected with the base 111 through a rotating shaft. The specific connection mode between the cylinder 131 and the turnover piece 112 is not limited here, and the designer can reasonably design according to actual needs; for example, the cylinder 131 can be but is not limited to detachably connected with the turnover piece 112 through at least one of screwing, clamping, or inserting; for another example, the cylinder 131 can be but is not limited to non-detachably connected with the turnover piece 112 through riveting, gluing, welding, injection molding, or 3D printing.
[0048] The lock and release assembly 113 is used as a locking structure of the base 11 and a releasing structure of the base 11, and can be switched between a locked state and a released state to realize the fixation and release of the turnover piece 112; the specific structure of the lock and release assembly 113 will be introduced below.
[0049] It can be understood that the support base 1 has a use state and an idle state; in one case, when the support base 1 is in the use state, the turnover piece 112 is accommodated in the accommodation groove 111a, and when the corresponding support base 1 is in the idle state, the turnover piece 112 is extended out of the accommodation groove; in another case, when the support piece 12 is in the use state, the turnover piece 112 is extended out of the accommodation groove 111a, and when the corresponding support base 1 is in the idle state, the turnover piece 112 is accommodated in the accommodation groove 111a.
[0050] By designing the base 111, the turnover piece 112, and the lock and release assembly 113, the lock and release assembly 113 realizes the fixation and release of the turnover piece 112 by being switched between the locked state and the released state, and the rotation of the turnover piece 112 realizes the turnover operation of the cylinder 131, so that the support piece 12 connected with the cylinder 131 can also rotate with the cylinder 131, thereby making the support piece 12 normally support the object when the support base 1 is in the use state, and making the support piece 12 fold up when the support base 1 is in the idle state for easy accommodation.
[0051] Specifically, the specific structure of the lock and release assembly 113 can be but is not limited to including the following several embodiments.
[0052] AsFigure 1 and Figure 6 As shown in FIG. 1 and FIG. 2, in the first embodiment, the slot wall surface of the receiving slot 111a is provided with a first lock opening 111b; the lock release assembly 113 comprises a lock release piece 1131a and a first elastic piece 1131b. The lock release piece 1131a is installed on the turnover piece 112, and the lock release piece 1131a is used to move away from the first lock opening 111b relative to the turnover piece 112 under the action of an external force, so as to switch the lock release piece 1131a from the locked state to the release state; in the locked state, the lock release piece 1131a is inserted with the first lock opening 111b; in the release state, the lock release piece 1131a is separated from the first lock opening 111b. The two ends of the first elastic piece 1131b respectively abut against the turnover piece 112 and the lock release piece 1131a, and the first elastic piece 1131b is used to be compressed by the lock release piece 1131a in the process of switching the lock release piece 1131a from the locked state to the release state, and the first elastic piece 1131b is also used to release the elastic force to drive the lock release piece 1131a to move towards the first lock opening 111b relative to the turnover piece 112 in the process of recovering the compression, so as to switch the lock release piece 1131a from the release state to the locked state.
[0053] Among them, the lock release piece 1131a is used as a locking piece of the lock release assembly 113 to realize the relative fixing of the position between the turnover piece 112 and the base 111, and the lock release piece 1131a is also used as a releasing piece of the lock release assembly 113 to realize the relative change of the position between the turnover piece 112 and the base 111; here, the specific structure of the lock release piece 1131a is not limited, and the designer can reasonably design according to the actual needs; for example, the lock release piece 1131a can include but is not limited to a lock release block or a lock release lever. Here, the specific installation mode between the lock release piece 1131a and the turnover piece 112 is not limited, and the designer can reasonably design according to the actual needs; for example, the lock release piece 1131a can be connected with the turnover piece 112 in a sliding manner through the cooperation of a sliding block and a sliding groove.
[0054] The lock release piece 1131a can move away from the first lock opening 111b relative to the turnover piece 112 under the action of an external force to switch from the locked state to the release state; when the lock release piece 1131a is in the locked state, the lock release piece 1131a is inserted with the first lock opening 111b, and at this time the turnover piece 112 is accommodated in the receiving slot 111a; when the lock release piece 1131a is in the release state, the lock release piece 1131a is separated from the first lock opening 111b, and at this time the turnover piece 112 can be rotated to extend out of the receiving slot 111a.
[0055] The first elastic element 1131b is compressed to generate elastic force during the process of the locking / unlocking element 1131a switching from the locked state to the unlocked state. Simultaneously, the first elastic element 1131b releases the elastic force during the recovery compression process, causing the locking / unlocking element 1131a to switch from the unlocked state to the locked state. The first elastic element 1131b can be a spring or a sheet spring. Under the action of an external force, the locking / unlocking element 1131a moves away from the first lock opening 111b relative to the flipping element 112, and the first elastic element 1131b is compressed to generate elastic deformation, thereby switching the locking / unlocking element 1131a from the locked state to the unlocked state. Under the action of the elastic restoring force corresponding to the elastic deformation generated by the first elastic element 1131b, the locking / unlocking element 1131a can move relative to the flipping element 112 towards the first lock opening 111b, thereby switching the locking / unlocking element 1131a from the unlocked state to the locked state. In this embodiment, the first elastic element 1131b includes a first spring.
[0056] By designing the locking / unlocking component 1131a and the first elastic component 1131b, the locking / unlocking component 1131a can move relative to the flipping component 112 away from the first lock opening 111b under the action of external force. At this time, the first elastic component 1131b is compressed and generates elastic deformation, and the locking / unlocking component 1131a switches from the locked state to the unlocked state. The flipping component 112 can rotate to extend out of the storage groove 111a. By designing the locking / unlocking component 1131a and the first elastic component 1131b, the locking / unlocking component 1131a can move relative to the flipping component 112 toward the first lock opening 111b under the action of the elastic restoring force corresponding to the elastic deformation generated by the first elastic component 1131b. At this time, the first elastic component 1131b restores its elastic deformation, and the locking / unlocking component 1131a switches from the unlocked state to the locked state. The flipping component 112 can be accommodated in the storage groove 111a.
[0057] like Figures 7-8 As shown, in the second embodiment, the groove wall of the storage slot 111a is provided with a second locking port 111c; the locking and unlocking assembly 113 includes a locking member 1132a and a releasing member 1132b. The locking member 1132a is installed on the flipping member 112; the releasing member 1132b is installed on the flipping member 112 and is movably connected to the locking member 1132a. The releasing member 1132b is used to drive the locking member 1132a to move relative to the flipping member 112 away from the second locking port 111c under the action of external force, so that the locking member 1132a switches from the locked state to the unlocked state; in the locked state, the locking member 1132a is engaged with the second locking port 111c; in the unlocked state, the locking member 1132a is disengaged from the second locking port 111c.
[0058] The locking member 1132a is used as a locking member of the lock release assembly 113 to realize the relative fixing of the position between the turnover member 112 and the base 111. The specific structure of the locking member 1132a is not limited here, and the designer can reasonably design according to actual needs. For example, the locking member 1132a can include but is not limited to a locking block or a locking pin. The specific installation mode between the locking member 1132a and the turnover member 112 is not limited here, and the designer can reasonably design according to actual needs. For example, the locking member 1132a can be connected with the turnover member 112 in a sliding manner through the sliding block and sliding slot cooperation.
[0059] The release member 1132b is used as a releasing member of the lock release assembly 113 to realize the relative change of the position between the turnover member 112 and the base 111. The specific structure of the release member 1132b is not limited here, and the designer can reasonably design according to actual needs. For example, the release member 1132b can include but is not limited to a release block or a release lever. The specific installation mode between the release member 1132b and the turnover member 112 is not limited here, and the designer can reasonably design according to actual needs. For example, the release member 1132b can be connected with the turnover member 112 in a sliding manner through the sliding block and sliding slot cooperation.
[0060] The release member 1132b can drive the locking member 1132a to move away from the second lock opening 111c relative to the turnover member 112 under the action of an external force, so as to switch the locking member 1132a from the locking state to the release state. When the locking member 1132a is in the locking state, the locking member 1132a is inserted into the second lock opening 111c, and at this time the turnover member 112 is accommodated in the accommodation groove 111a. When the locking member 1132a is in the release state, the locking member 1132a is separated from the second lock opening 111c, and at this time the turnover member 112 can be rotated to extend out of the accommodation groove 111a.
[0061] Further, the lock release assembly 113 further includes a second elastic member 1132c and a third elastic member 1132d. The two ends of the second elastic member 1132c respectively abut against the turnover member 112 and the locking member 1132a, and the second elastic member 1132c is used to be compressed by the locking member 1132a in the process of switching the locking member 1132a from the locking state to the release state, and the second elastic member 1132c is also used to release the elastic force to drive the locking member 1132a to move towards the second lock opening 111c relative to the turnover member 112 in the process of recovering the compression, so as to switch the locking member 1132a from the release state to the locking state. The two ends of the third elastic member 1132d respectively abut against the turnover member 112 and the release member 1132b, and the third elastic member 1132d is used to be compressed by the release member 1132b in the process of switching the locking member 1132a from the locking state to the release state, and the third elastic member 1132d is also used to release the elastic force to drive the release member 1132b to move to reset relative to the turnover member 112.
[0062] The second elastic member 1132c is compressed to generate elastic force when the locking member 1132a is switched from the locked state to the released state, and the second elastic member 1132c is released to switch the locking member 1132a from the released state to the locked state. The second elastic member 1132c can be a spring or a piece of elastic. The releasing member 1132b drives the locking member 1132a to move away from the second lock hole 111c under the action of an external force, and the second elastic member 1132c is compressed to generate elastic deformation, so that the locking member 1132a is switched from the locked state to the released state. The locking member 1132a moves towards the second lock hole 111c under the action of the elastic return force corresponding to the elastic deformation of the second elastic member 1132c, so that the locking member 1132a is switched from the released state to the locked state. In the embodiment of the present application, the second elastic member 1132c includes a second spring.
[0063] The third elastic member 1132d is compressed to generate elastic force when the locking member 1132a is switched from the locked state to the released state, and the third elastic member 1132d is released to drive the releasing member 1132b to move relative to the turnover member 112 to reset. The third elastic member 1132d can be a spring or a piece of elastic. The releasing member 1132b pushes the locking member 1132a under the action of an external force, and the third elastic member 1132d is compressed to generate elastic deformation. The releasing member 1132b moves relative to the turnover member 112 to reset under the action of the elastic return force corresponding to the elastic deformation of the third elastic member 1132d. In the embodiment of the present application, the third elastic member 1132d includes a third spring.
[0064] By designing a release element 1132b, a locking element 1132a, a second elastic element 1132c, and a third elastic element 1132d, the release element 1132b compresses the third elastic element 1132d under external force and pushes against the locking element 1132a. The locking element 1132a, under the action of the release element 1132b, compresses the second elastic element 1132c and moves relative to the flipping element 112 away from the second lock opening 111c. At this time, the locking element 1132a switches from the locked state to the unlocked state, and the flipping element 112 can rotate to extend beyond the storage groove 111a. Through the design of the release element 1132b and the locking element 1132a... The second elastic element 1132c and the third elastic element 1132d, the locking element 1132a can move relative to the flipping element 112 toward the second lock opening 111c under the action of the elastic restoring force corresponding to the elastic deformation generated by the second elastic element 1132c, the locking element 1132a pushes the unlocking element 1132b in turn, the unlocking element 1132b moves relative to the flipping element 112 to the reset under the action of the elastic restoring force corresponding to the elastic deformation generated by the third elastic element 1132d, at this time the locking and unlocking element 1131a switches from the unlocked state to the locked state, and the flipping element 112 can be accommodated in the storage groove 111a.
[0065] like Figures 9-10 As shown, in the third embodiment, the flipper 112 is provided with a first positioning hole; the locking / unlocking assembly 113 includes a first mating member 1133a and a first fastener 1133b. The first mating member 1133a is mounted on the base 111 and has a first positioning hole corresponding to the first through hole 112a. The first fastener 1133b passes through the first through hole 112a and is used to connect with the first positioning hole under external force to be in a locked state. The first fastener 1133b is also used to disengage from the first positioning hole under external force to be in an unlocked state.
[0066] The first fastener 1133b cooperates with the first mating part 1133a to achieve relative fixation and relative change of position between the flipper 112 and the base 111. The specific structure of the first fastener 1133b and the first mating part 1133a is not limited here; designers can design them reasonably according to actual needs. For example, when the first fastener 1133b and the first mating part 1133a are connected by a screw, the first fastener 1133b includes a first screw, and the first mating part 1133a includes a first nut. The threaded hole of a nut serves as the first positioning hole mentioned above. In this case, the first screw passes through the first through hole 112a and is threadedly connected to the threaded hole of the first nut under the action of external force. For example, when the first fastener 1133b and the first mating part 1133a are connected by plugging, the first fastener 1133b includes a first pin, and the first mating part 1133a includes a first socket. The socket hole of the first socket serves as the first positioning hole mentioned above. In this case, the first pin passes through the first through hole 112a and is plugged into the socket hole of the first socket under the action of external force. The specific installation method between the first mating part 1133a and the base 111 is not limited here, and the designer can make a reasonable design according to the actual needs. For example, the first mating part 1133a can be detachably and fixedly connected to the base 111 by at least one of the following methods: screwing, snap-fitting, or plugging. Alternatively, the first mating part 1133a can also be non-detachably and fixedly connected to the base 111 by riveting, welding, gluing, injection molding, or 3D printing, but not limited to the following methods.
[0067] By designing the first fastener 1133b and the first mating part 1133a, the first fastener 1133b can disengage from the first positioning hole under external force to be in an unlocked state. At this time, the flipping part 112 can rotate to extend out of the storage groove 111a. By designing the first fastener 1133b and the first mating part 1133a, the first fastener 1133b can connect with the first positioning hole under external force to be in a locked state. At this time, the flipping part 112 can be accommodated in the storage groove 111a.
[0068] like Figures 11-12 As shown, in the fourth embodiment, the wall surface of the storage slot 111a is provided with a second through hole 111d, and the locking / unlocking assembly 113 includes a second mating member 1134a and a second fastener 1134b. The second mating member 1134a is mounted on the flipping member 112 and has a second positioning hole corresponding to the second through hole 111d. The second fastener 1134b passes through the second through hole 111d and is used to connect with the second positioning hole under external force to be in a locked state. The second fastener 1134b is also used to disengage from the second positioning hole under external force to be in an unlocked state.
[0069] The second fastener 1134b cooperates with the second mating part 1134a to achieve relative fixation and relative change of position between the flipper 112 and the base 111. The specific structure of the second fastener 1134b and the second mating part 1134a is not limited here; designers can design them reasonably according to actual needs. For example, when the second fastener 1134b and the second mating part 1134a are connected by a screw, the second fastener 1134b includes a second screw, and the second mating part 1134a includes a second nut. The threaded hole of the second nut serves as the second positioning hole mentioned above. In this case, the second screw passes through the second through hole 111d and is threadedly connected to the threaded hole of the second nut under external force. Alternatively, when the second fastener 1134b and the second mating part 1134a are connected by a plug-in connection, the second fastener 1134b includes a second pin, and the second mating part 1134a includes a second socket. The socket hole serves as the second positioning hole mentioned above. In this case, the second pin passes through the second through hole 111d and is plugged into the socket hole of the second socket under external force. The specific installation method between the second mating part 1134a and the flipping part 112 is not limited here; designers can design it reasonably according to actual needs. For example, the second mating part 1134a can be detachably fixedly connected to the flipping part 112 by at least one of the following methods: screwing, snap-fitting, or plugging. Alternatively, the second mating part 1134a can also be non-detachably fixedly connected to the flipping part 112 by riveting, welding, gluing, injection molding, or 3D printing, but not limited to these methods.
[0070] By designing the second fastener 1134b and the second mating part 1134a, the second fastener 1134b can disengage from the second positioning hole under external force to be in an unlocked state. At this time, the flipping part 112 can rotate to extend out of the storage groove 111a. By designing the second fastener 1134b and the second mating part 1134a, the second fastener 1134b can connect with the second positioning hole under external force to be in a locked state. At this time, the flipping part 112 can be accommodated in the storage groove 111a.
[0071] like Figure 4 As shown, the edge of the flip member 112 is provided with a buckle 112b, and the groove wall of the storage groove 111a is provided with a slot (not shown in the figure) corresponding to the buckle 112b. When the flip member 112 is accommodated in the storage groove 111a, the buckle 112b engages with the slot, thus achieving double fixation of the position between the flip member 112 and the base 111, which can further improve the connection stability between the flip member 112 accommodated in the storage groove 111a and the base 111.
[0072] Of course, such as Figures 13-14As shown, the end surface of the support piece 12 is provided with a fixing hole 12a; the base 11 can include a base 111, a counterweight plate 114 and a locking piece 115; the top surface of the base 111 is provided with a first through hole 111e; the counterweight plate 114 is arranged in the interior of the base 111, and the counterweight plate 114 is provided with a second through hole 114a corresponding to the first through hole 111e; the locking piece 115 passes through the second through hole 114a, the first through hole 111e and is connected with the fixing hole 12a, so as to position the support piece 12 on the base 111, and the second sub-wall 1322 is pressed and combined between the support piece 12 and the base 111. Wherein, the specific connection mode between the locking piece 115 and the fixing hole 12a is not limited here, and the designer can reasonably design according to the actual needs; for example, when the locking piece 115 includes a screw, the fixing hole 12a corresponds to a threaded hole, and at this time, the locking piece 115 and the fixing hole 12a are connected by locking the screw; for another example, when the locking piece 115 includes a latch, the fixing hole 12a corresponds to a plug hole, and at this time, the locking piece 115 and the fixing hole 12a are connected by inserting the latch. The locking piece 115 can be switched between a locking state and an unlocking state, in the locking state, the locking piece 115 is connected with the fixing hole 12a to position the support piece 12 on the base 111, in the unlocking state, the locking piece 115 is separated from the fixing hole 12a to release the support piece 12 from the base 111. By designing the base 111, the counterweight plate 114 and the locking piece 115, the locking piece 115 is switched between the locking state and the unlocking state to realize the fixing and releasing of the support piece 12, when the support base 1 is in a use state, the support piece 12 is positioned on the base 111, so that the support piece 12 can normally support the object, when the support base 1 is in an idle state, the support piece 12 is released from the base 111, so that the support piece 12 can be folded up for storage. By designing the counterweight plate 114, the support base 1 is not prone to tilting, and the locking piece 115 passes through the second through hole 114a, which can effectively improve the connection stability between the support piece 12 and the base 111. By designing the second sub-wall 1322 to be pressed and arranged between the support piece 12 and the base 111 when the support piece 12 is positioned on the base 111, the relative position between the connecting piece 13 and the base 111 is fixed, which can further improve the connection stability of the support piece 12.
[0073] Of course, as Figure 6 , Figure 8 , Figure 10 , Figure 12 and Figure 14As shown in the drawings, the base 11 can further include a non-slip pad 116 arranged at the bottom of the counterweight plate 114. The material of the non-slip pad 116 can be, but is not limited to, rubber or silicone, etc. The non-slip pad 116 can be detachably connected with the counterweight plate 114 by at least one of screwing, clamping or inserting, etc. so as to replace the worn non-slip pad 116 later. By designing the non-slip pad 116, the stability of the support base 1 placed on the ground can be further improved.
[0074] Please refer to Figure 15 As shown in the drawings, in a second aspect, the present application provides an electronic device 2, which comprises a device body 21 and the above-mentioned support base 1, and the device body 21 is connected with the support 12 as the above-mentioned object.
[0075] The specific connection mode between the device body 21 and the support 12 is not limited herein, and the designer can reasonably design according to actual needs; for example, the device body 21 can be detachably connected with the support 12 by at least one of screwing, clamping or inserting, etc.; for another example, the device body 21 can also be non-detachably connected with the support 12 by riveting, welding, gluing, injection molding or 3D printing, etc. The device body 21 as the above-mentioned object can be, but is not limited to, a small device such as a fan or a sound equipment, and different device bodies 21 are assembled with the support base 1 through the support 12 to form different electronic devices 2.
[0076] Based on the electronic device 2 in the embodiment of the present application, the above-mentioned support base 1 can play a good supporting role on the device body 21 as the object.
[0077] Please refer to Figures 16-17 As shown in the drawings, in a third aspect, the present application provides a selfie device 3, which comprises a lamp body 31 and the above-mentioned support base 1, and the lamp body 31 is connected with the support 12 as the above-mentioned object.
[0078] The specific connection mode between the lamp body 31 and the support 12 is not limited herein, and the designer can reasonably design according to actual needs; for example, the lamp body 31 can be detachably connected with the support 12 by at least one of screwing, clamping or inserting, etc.; for another example, the lamp body 31 can also be non-detachably connected with the support 12 by riveting, welding, gluing, injection molding or 3D printing, etc. The lamp body 31 as the above-mentioned object can be, but is not limited to, a small lamp such as a light supplementing lamp or a flash lamp, and different lamp bodies 31 are assembled with the support base 1 through the support 12 to form different selfie devices 3.
[0079] Based on the selfie device 3 in the embodiment of the present application, the support base 1 can play a good supporting role on the lamp body 31 as an object.
[0080] The same or similar reference signs in the drawings of the present embodiment correspond to the same or similar components; in the description of the present application, it should be understood that the orientations or positional relationships indicated by the terms "upper", "lower", "left", "right" and the like are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore the terms describing the positional relationship in the drawings are only used for exemplary illustration, and cannot be understood as a limitation on the present patent, and for those skilled in the art, the specific meanings of the above terms can be understood according to the specific circumstances.
[0081] The above only describes the preferred embodiments of the present application and is not intended to limit the present application, and any modifications, equivalent replacements and improvements made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A support base, characterized by, A support base for supporting an object, comprising: a base; a support member for supporting the object; a connecting member including a barrel provided on the base, and at least two surrounding walls at least partially located in a barrel cavity of the barrel and spaced apart around a barrel axis of the barrel, an outer periphery of the at least two surrounding walls being spaced apart from an inner barrel wall surface of the barrel to form a deformation space; each of the surrounding walls includes a first sub-wall and a second sub-wall, one end of the first sub-wall being connected to a barrel wall of the barrel, and the first sub-wall extending in a direction parallel to the barrel axis to be arranged in a cantilevered manner, the second sub-wall being bent and connected to the other end of the first sub-wall, when an end portion of the support member is inserted into the barrel cavity of the barrel, the first sub-wall is fitted to a peripheral surface of the support member, and the second sub-wall is fitted to an end surface of the support member.
2. The support base according to claim 1, wherein: the end surface of the support member is provided with a fixing hole, and the second sub-wall of each of the surrounding walls is formed together with an end of the first sub-wall to form a through hole; the support base further comprises a fixing member, the fixing member being pressed against the second sub-wall and connected to the fixing hole through the through hole.
3. Support base according to claim 1 or 2, characterized in that The base includes: a base having a receiving groove; a turnover member rotatably connected to the base corresponding to the receiving groove, and the turnover member being connected to the barrel; a lock release assembly mounted on at least one of the base and the turnover member, the lock release assembly being switchable between a locked state and a released state; in the locked state, the lock release assembly is used to lock the turnover member to the base, so that the turnover member can be accommodated in the receiving groove; in the released state, the lock release assembly is used to release the turnover member from the base, so that the turnover member can be rotated to extend out of the receiving groove.
4. The support pedestal of claim 3, wherein, The groove wall surface of the receiving groove is provided with a first lock opening; the lock release assembly includes: a lock release member mounted on the turnover member, the lock release member being used to move away from the first lock opening relative to the turnover member under the action of an external force, so that the lock release member is switched from the locked state to the released state; in the locked state, the lock release member is inserted into the first lock opening; in the released state, the lock release member is separated from the first lock opening; a first elastic member, both ends of the first elastic member respectively abutting against the turnover member and the lock release member, the first elastic member being used to be compressed by the lock release member in the process of switching the lock release member from the locked state to the released state, and the first elastic member being further used to release elastic force to drive the lock release member to move towards the first lock opening relative to the turnover member in the process of recovering compression, so that the lock release member is switched from the released state to the locked state.
5. The support pedestal of claim 3, wherein, The groove wall surface of the receiving groove is provided with a second lock opening; the lock release assembly includes: a locking member mounted on the turnover member; A release member is mounted on the turnover member and movably connected with the locking member, and is used to drive the locking member to move away from the second locking opening relative to the turnover member under the action of an external force, so as to switch the locking member from the locked state to the release state; in the locked state, the locking member is inserted into the second locking opening; in the release state, the locking member is separated from the second locking opening.
6. The support base according to claim 3, wherein, The turnover member is provided with a first through hole; and the lock release assembly comprises: A first matching member is mounted on the base, and has a first positioning hole corresponding to the first through hole; A first fastener is arranged through the first through hole and is used to be connected with the first positioning hole under the action of an external force to be in the locked state, and is also used to be separated from the first positioning hole under the action of an external force to be in the release state; Or, The slot wall surface of the receiving slot is provided with a second through hole; and the lock release assembly comprises: A second matching member is mounted on the turnover member, and has a second positioning hole corresponding to the second through hole; A second fastener is arranged through the second through hole and is used to be connected with the second positioning hole under the action of an external force to be in the locked state, and is also used to be separated from the second positioning hole under the action of an external force to be in the release state.
7. The support pedestal of claim 1 wherein, The end surface of the support member is provided with a fixing hole; and the base comprises: A base, and a top surface of the base is provided with a first through hole; A counterweight plate is arranged inside the base, and is provided with a second through hole corresponding to the first through hole; A locking member is arranged through the second through hole, the first through hole and the fixing hole, and is connected with the fixing hole to position the support member on the base, and the second sub-wall is pressed between the support member and the base.
8. An electronic device, comprising: It comprises: The support base according to any one of claims 1-7; A device body is connected with the support member as the object.
9. A selfie device, characterized in that, It comprises: The support base according to any one of claims 1-7; A lamp body is connected with the support member as the object.