Rotary lifting socket
By introducing a rotatable rotating block and locking structure into the riser socket, the problem of limited usage range of traditional riser sockets is solved, enabling convenient use of the socket in any direction and improving the user experience.
Patent Information
- Application Number
- CN202520065717.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-10
AI Technical Summary
Traditional pop-up power strips have limited usability; users can only conveniently connect devices from the side where the power strip module is located, while operating from the other side is inconvenient.
Design a rotary lifting socket with a rotatable rotating block installed on the lifting block. The rotating block is equipped with functional components. The rotating block can be raised and lowered synchronously or its direction adjusted in both aligned and misaligned states. Combined with a stop mechanism and a locking structure, stability and flexibility are ensured.
It improves the flexibility and applicability of the socket, making it more convenient for users to use in any direction, thus enhancing the user experience and efficiency.
Smart Images

Figure CN223729081U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of lifting socket, specifically relates to a rotary lifting socket. BACKGROUND
[0002] Lifting socket is a modern power management solution, widely used in home, office and industrial environment. With the progress of science and technology and the improvement of people's life quality, the traditional fixed socket can no longer meet the demand of flexibility and beauty. The design of lifting socket aims to solve this contradiction, and provides more flexible and safe power selection through telescopic structure.
[0003] The traditional lifting socket includes a shell and a lifting block that can move up and down, and the lifting block is provided with a socket module. However, the lifting socket of this structure limits the user's use range when in use, and the user usually needs to connect from the side where the socket module is located, which is more convenient to use at this time, and if the user needs to operate from the other side without socket installation, it is more troublesome to use at this time. SUMMARY
[0004] The utility model aims at overcoming the shortcomings and deficiencies of prior art, and provides a rotary lifting socket.
[0005] The technical scheme adopted by the utility model is as follows: the application provides a rotary lifting socket, which comprises a shell, a lifting block provided on the shell and a driving mechanism, a rotating block is rotationally arranged on the lifting block, a functional part is arranged on the rotating block, the rotating block has a first state of being aligned with the lifting block and a second state of being staggered with the lifting block when the rotating block rotates, and the rotating block can be lifted along with the lifting block when the rotating block is in the first state.
[0006] In some embodiments, one end of the rotating block is provided with a first rotating part, the same end of the lifting block is provided with a second rotating part, and the rotating block and the lifting block are rotationally connected through the first rotating part and the second rotating part.
[0007] In some embodiments, a gear mechanism is further included, which is used to make the rotating block have a gear effect when rotating.
[0008] In some embodiments, the first rotating part is a connecting column arranged at one end of the rotating block, the second rotating part is a connecting channel arranged at one end of the lifting block, the connecting column is inserted into the connecting channel to form a rotating connection, the gear mechanism comprises a gear track arranged on the rotating block and located at the outer periphery of the connecting column, a gear pin arranged on the lifting block and slidingly arranged towards the gear track, and a first spring arranged between the gear pin and the lifting block, under the action of the first spring, the gear pin abuts against the gear track.
[0009] In some embodiments, the end of the connecting column is provided with elastic clamping arms, the connecting column is inserted into the connecting channel and clamped by the elastic clamping arms and the connecting channel.
[0010] In some embodiments, the first rotating part and the second rotating part are a connecting column and a connecting channel, the connecting column is inserted into the connecting channel to form a rotating connection, the connecting column is provided with a channel connecting the inner cavity of the rotating block and the inner cavity of the lifting block, the lifting block is provided with a first through hole connecting the inner cavity of the shell, and the shell is provided with a second through hole connecting the outside.
[0011] In some embodiments, a rotating locking structure is further included, the rotating locking structure enables the rotating block to have a first locking state and a first unlocking state, when the rotating block is in the first state, it is also in the first locking state, so that it cannot freely rotate, when the rotating block is in the second state, it is also in the first unlocking state, so that it can freely rotate.
[0012] And / or, a lifting locking structure is further included, the lifting locking structure enables the lifting block to have a second locking state and a second unlocking state, under the action of the driving mechanism, the lifting block has a working state of extending into the inner cavity of the shell and a closing state of retracting into the inner cavity of the shell, when the lifting block is in the working state, it is also in the second locking state, so that it cannot freely lift, when the lifting block is in the closing state and lifting, it is also in the second unlocking state, so that it can freely lift.
[0013] In some embodiments, a locking mechanism is further included, the locking mechanism enables the rotating block to have a third locking state and a third unlocking state and the lifting block to have a fourth locking state and a fourth unlocking state, under the action of the driving mechanism, the lifting block has a working state of extending into the inner cavity of the shell and a closing state of retracting into the inner cavity of the shell.
[0014] When the rotating block is in the first state, it is also in the third locking state, so that it cannot freely rotate, when the rotating block is in the second state, it is also in the third unlocking state, so that it can freely rotate.
[0015] When the rotating block is in the first state, the lifting block is in the fourth unlocking state, and the lifting block can freely lift.
[0016] When the rotating block is in the second state, the lifting block is in the fourth locking state, and the lifting block cannot freely lift.
[0017] In some embodiments, the locking mechanism comprises a locking piece, the shell is provided with a lifting locking portion, the locking piece is slidably arranged on the lifting block towards the lifting locking portion, one end of the locking piece close to the lifting locking portion is provided with a first locking end matched with the lifting locking portion, a second spring is arranged between the other end of the locking piece and the lifting block, one side of the rotating block close to the lifting block is provided with a rotating locking portion, the locking piece is provided with a second locking end matched with the rotating locking portion towards the rotating locking portion, the lifting block is provided with a linkage hole for the second locking end to pass through, the second locking end is slidably arranged in the linkage hole, and at least one side of the rotating locking portion is provided with a locking track.
[0018] When the rotating block is in the first state, the second locking end is inserted into the rotating locking portion to limit the rotation of the rotating block, and the first locking end is located outside the lifting locking portion.
[0019] When the end of the rotating block provided with the rotating locking portion is lifted to make the second locking end disengage from the rotating locking portion, the rotating block can be freely rotated, and under the action of the second spring, the first locking end is inserted into the lifting locking portion to limit the lifting of the lifting block.
[0020] When the rotating block is rotated from the second state to the first state, the second locking end moves along the locking track, so that the second locking end moves backward and is reinserted into the rotating locking portion, and the first locking end exits the lifting locking portion.
[0021] In some embodiments, the lifting block is provided with a functional piece, and / or the shell, the lifting block and the rotating block are all matched with an elongated shape.
[0022] The utility model discloses the beneficial effects are as follows: the utility model discloses through introducing rotary type lifting socket, successfully solved the problem that the use range of traditional lifting socket is limited. Specifically, the rotating block is installed on the lifting block, and the functional piece is arranged on the rotating block. When the rotating block is in the first state aligned with the lifting block, the rotating block can be lifted synchronously with the lifting block. When the rotating block is in the second state of misalignment, the user can adjust the direction of the functional piece as needed, so that the functional piece always faces the user, greatly improving the flexibility and applicability of the socket, making the user use more convenient in any direction, thereby improving the overall use experience and efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, under the premise of not paying the creative labor, according to these drawings, other drawings obtained still belong to the scope of the utility model.
[0024] Figure 1 is a schematic view of a rotating type lifting socket in the second state of the utility model;
[0025] Figure 2 is a sectional view of a rotating type lifting socket in the first state of the utility model Figure 1 ;
[0026] Figure 3 is an exploded sectional view of the lifting block and the rotating block of the utility model;
[0027] Figure 4 is a sectional view of a rotating type lifting socket in the first state of the utility model Figure 2 ;
[0028] Figure 5 is a schematic view of the rotating block of the utility model;
[0029] Figure 6 is a partial schematic view of the locking mechanism of the utility model;
[0030] Figure 7 is a schematic view of the lifting block of the utility model;
[0031] Figure 8 is a schematic view of a rotating type lifting socket in the working state of the utility model;
[0032] Figure 9 is a schematic view of a rotating type lifting socket in the closed state of the utility model. DETAILED DESCRIPTION
[0033] The following description provides specific applications and requirements of the present specification, in order to enable those skilled in the art to manufacture and use the contents of the present specification. Various local modifications of the disclosed embodiments are obvious to those skilled in the art, and the general principles defined herein can be applied to other embodiments and applications without departing from the spirit and scope of the present specification. Therefore, the present specification is not limited to the shown embodiments, but is consistent with the widest range of claims.
[0034] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the orientation or positional relationship indicated by the terms "longitudinal", "transverse", "radial", "length", "width", "thickness", "upper", "lower", "left", "right", "front", "rear", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is based on the orientation or positional relationship shown in the drawings, and these terms are mainly used to better describe the present application and its embodiments, and are not intended to limit the indicated devices, elements or components to have a particular orientation or to be constructed and operated in a particular orientation.
[0035] Secondly, the terms "first", "second" and similar words do not represent any order, quantity or importance, but are only used to distinguish different components, and should not be understood as limiting the embodiments of the present application.
[0036] In addition, the terms "mount", "set", "provided with", "connected", "connected" should be broadly understood. For example, it can be fixedly connected, detachably connected, or integrally constructed; it can be mechanically connected, or electrically connected; it can be directly connected, or indirectly connected through an intermediate medium, or it can be the internal communication between two devices, elements or components.
[0037] For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.
[0038] With regard to the drawings of the present application, it should be clearly understood that the drawings are for illustrative and descriptive purposes only, and are not intended to limit the scope of the present application. It should also be understood that the drawings are not drawn to scale.
[0039] The conventional lifting socket includes a shell and a lifting block that can move up and down, and a socket module is installed on the lifting block. However, this design has limitations when in use: users can usually only conveniently connect devices from the side where the socket module is located. If the user needs to operate from the other side where there is no socket installation, it will be less convenient and limited, affecting the use experience and flexibility.
[0040] Based on this problem, as Figures 1 to 9 shown, a rotating lifting socket is provided in the present specification, which includes a shell 1, a lifting block 2 provided in the shell 1, and a driving mechanism 3, wherein the driving mechanism 3 is used to realize the lifting and self-locking of the lifting block 2, and can refer to the lifting socket in the prior art, which generally includes pneumatic and electric types.
[0041] A common type of drive mechanism 3 includes a drive element 30 and a self-locking assembly. The drive element 30 is used to drive the lifting block 2 to rise and fall. The self-locking assembly includes a locking rod 31 and a self-locking element 32, one of which is disposed on the lifting block 2 and the other is disposed on the outer shell 1. The drive element 30 is preferably a pneumatic piston rod. The drive element 30 and the self-locking assembly cooperate to achieve the following: when the lifting block 2 is pressed back into the inner cavity of the outer shell, the self-locking assembly locks the lifting block 2 to prevent it from rising. When the lifting block 2 is pressed again, the self-locking assembly unlocks, and the lifting block 2 rises under the drive of the drive element 30.
[0042] Specifically, such as Figure 4 As shown in the attached figure, the locking rod 31 is located at the lower part of the lifting block 2, and the self-locking member 32 is located at the bottom of the inner cavity. When the lifting block 2 is pressed back into the inner cavity, the locking rod 31 and the self-locking member 32 form a lock. When the lifting block 2 is pressed again, the self-locking member 32 releases the lock on the locking rod 31, and the lifting block 2 rises under the drive of the driving member 30. The self-locking member 32 is a push-type self-locking device, such as a beetle door suction rebound self-locking device.
[0043] As a key solution to the problem, a rotating block 4 is rotatably mounted on the lifting block 2. The rotating block 4 is equipped with functional components 5, such as a socket interface, USB interface, and wireless charging module. The rotating block 4 has two states: a first state aligned with the lifting block 2 and a second state offset from the lifting block 2. When the rotating block 4 is in the first state, it can rise and fall synchronously with the lifting block 2. This design, by introducing a rotating lifting socket, successfully solves the problem of limited usability of traditional lifting sockets. Specifically, the lifting block 2 is equipped with a rotatable rotating block 4, which has functional components 5. When the rotating block 4 is in the first state aligned with the lifting block 2, it can rise and fall synchronously with the lifting block 2. When the rotating block 4 is in the second state offset from the lifting block 2, the user can adjust the direction of the functional components as needed, ensuring that the components always face the user. This greatly improves the flexibility and applicability of the socket, making it more convenient for users to use from any direction, thereby improving the overall user experience and efficiency.
[0044] It should be understood that there are multiple possible structures for the rotating block 4, specifically:
[0045] In some embodiments, the center of the rotating block 4 is rotatably disposed at the center of the lifting block 2.
[0046] In some embodiments, there are two rotating blocks 4, which are respectively hinged to both ends of the rotating block 4.
[0047] In some embodiments, one end of the rotating block 4 is provided with a first rotating part 40, and the same end of the lifting block 2 is provided with a second rotating part 20. The rotating block 4 and the lifting block 2 are rotationally connected through the first rotating part 40 and the second rotating part 20. Generally, this structure is preferred. When the functional part 5 is installed on the rotating block 4, the restriction is small, and the rotating block 4 can make the socket have a wider use range in the transverse space after rotation.
[0048] In addition, the lifting block 2 is provided with a functional part 5, which is generally arranged on the upper end face of the lifting block 2. After the rotating block 4 rotates, the lifting block 2 can form an installation surface with good integrity and a large area to install the functional part 5.
[0049] In order to improve the hand feeling when the rotating block 4 rotates and avoid the rotating block 4 from rotating randomly, a gear position mechanism 6 is specially arranged in the lifting socket. The gear position mechanism 6 is used to make the rotating block 4 have a gear position effect when rotating. The gear position effect can make the user obtain clear feedback when adjusting the direction of the socket. This not only simplifies the operation process, but also enhances the user's control of the state of the socket and improves the overall use experience.
[0050] In some embodiments, the first rotating part 40 is a connecting column 400 arranged at one end of the rotating block 4, and the second rotating part 20 is a connecting channel 200 arranged at one end of the lifting block 2. The connecting column 400 is inserted into the connecting channel 200 to form a rotating connection. The gear position mechanism 6 includes a gear position track 60 arranged on the rotating block 4 and located outside the connecting column 400, a gear position pin 61 arranged on the lifting block 2 and slidingly arranged towards the gear position track 60, and a first spring 62 arranged between the gear position pin 61 and the lifting block 2. The lifting block 2 is provided with a mounting hole for slidingly arranging the gear position pin 61. Under the action of the first spring 62, the gear position pin 61 abuts against the gear position track 60. The elastic force provided by the first spring 62 ensures that the gear position pin 61 always maintains contact with the gear position track 60. When rotated to a specific angle, it is automatically clamped and positioned to prevent accidental movement or rotation during use, thereby improving the stability of the operation.
[0051] Secondly, through the cooperation of the gear position track 60 and the gear position pin 61, the rotating block 4 can realize accurate angle positioning during rotation. The user can easily adjust the rotating block 4 to a preset angle, and keep it stable during use.
[0052] Among them, as shown in Figure 5 The gear position track 60 includes a plurality of convex blocks circumferentially arranged outside the connecting column 400. The edges of the convex blocks are arranged in an arc shape. Meanwhile, the abutting end of the gear position pin 61 is arranged in a dome shape. In this way, the rotating block 4 rotates more smoothly, has less wear, and is less likely to have a jerky feeling.
[0053] In some embodiments, the lifting block 2, the driving mechanism 3 and the rotating block 4 are arranged in the mounting cavity which is formed on the integral shell 1. Compared with the conventional lifting socket shell, the shell is generally composed of multiple parts to solve the fixing with the desktop and the installation of the internal parts, which makes the production and assembly complex and increases the cost of the product. In the present lifting socket, the mounting cavity is directly formed on the integral shell, which ensures the assembly of the product, reduces the assembly requirement of multiple parts, thereby reducing the complexity in the production process, improving the structural integrity and stability of the product, reducing the loosening or misalignment problem caused by the assembly of multiple parts, and the integrated design also reduces the cost.
[0054] In some embodiments, the shell 1 is provided with a mounting port 10 which is detachably provided with a guide block 100, for example, the guide block 100 is tightly inserted into the mounting port 10, and the sidewall of the lifting block 2 and the rotating block 4 is provided with a guide groove 21 along the lifting direction, one end of the guide block 100 extends into the guide groove 21 through the mounting port 10. In this way, the lifting range of the lifting block 2 can be effectively limited to avoid disengagement with the shell 1, while providing a precise linear guide to improve the stability and accuracy of the movement of the lifting block 2 and the rotating block 4 during lifting, ensuring smooth movement of the lifting block 2 along the predetermined path, and reducing the possibility of lateral swing or deviation.
[0055] Secondly, the detachable design of the guide block 100 and the mounting port 10 does not affect the installation of the lifting block 2 and other parts into the mounting cavity.
[0056] In some embodiments, a fixing member 8 is further sleeved on the shell 1, the top of the shell 1 is provided with an upper convex disc part 101, the fixing member 8 is provided with a lower convex disc part 80, the outer wall of the shell 1 is provided with a plurality of clamping grooves 102 which are arranged at intervals along the height direction, the fixing member 8 is provided with a resilient clamping arm 81 which is provided with a clamping protrusion matched with the clamping groove 102. In this way, the shell 1 and the desktop can be fixed by the fixing member 8, and the desktop is firmly clamped between the upper convex disc part 101 and the lower convex disc part 80, which can adapt to desktops of various thicknesses.
[0057] In some embodiments, the end of the connecting column 400 is provided with a resilient clamping arm 401, the connecting column 400 is inserted into the connecting channel 200 and clamped by the resilient clamping arm 401 and the connecting channel 200. With this structure, the rotating block 4 and the lifting block 2 are convenient to assemble, and the rotating block 4 and the lifting block 2 are convenient to assemble into the mounting cavity formed by the shell 1.
[0058] In some embodiments, the first rotating part 40 and the second rotating part 20 are a connecting column 400 and a connecting channel 200, respectively, the connecting column 400 is inserted into the connecting channel 200 to form a rotating connection, the connecting column 400 is provided with a channel 4000 for connecting the inner cavity of the rotating block 4 and the inner cavity of the lifting block 2, the lifting block 2 is provided with a first through hole 2000 for connecting the inner cavity of the shell 1, and the shell 1 is provided with a second through hole 1000 for connecting the outside, as shown in Figure 4 The channel 4000, the first through hole 2000, and the second through hole 1000 form a wiring path for the functional element 5 on the lifting block 2 and the functional element 5 on the rotating block 4, without affecting the normal rotation of the rotating block 4.
[0059] It should be understood that the functional element 5 on the lifting block 2 and the functional element 5 on the rotating block 4 can be arranged on one face or multiple faces.
[0060] In some embodiments, the top of the rotating block 4 is provided with a wireless charging module.
[0061] In some embodiments, a rotating locking structure is further included, which enables the rotating block 4 to have a first locking state and a first unlocking state, when the rotating block 4 is in the first state, it is also in the first locking state, so that it cannot freely rotate, when the rotating block 4 is in the second state, it is also in the first unlocking state, so that it can freely rotate, thus avoiding the rotating block 4 from being randomly rotated when it is in the first state.
[0062] In some embodiments, a lifting locking structure is further included, which enables the lifting block 2 to have a second locking state and a second unlocking state, under the action of the driving mechanism 3, the lifting block 2 has a working state of extending into the inner cavity of the shell 1 and a closing state of retracting into the inner cavity of the shell 1, when the lifting block 2 is in the working state, it is also in the second locking state, so that it cannot freely lift, when the lifting block 2 is in the closing state and during lifting, it is also in the second unlocking state, so that it can freely lift.
[0063] It should be understood that the lifting socket in the present specification can be provided with only the rotating locking structure, or only the lifting locking structure, or both the rotating locking structure and the lifting locking structure.
[0064] In addition, the specific structure of the rotating locking structure and the lifting locking structure can be reasonably arranged by those skilled in the art on the premise of knowing its principle.
[0065] In some embodiments, a locking mechanism 7 is further included, which is equivalent to the comprehensive rotation locking structure and the lifting locking structure, and the two are linked, the locking mechanism 7 makes the rotating block 4 have a third locking state and a third unlocking state, and the lifting block 2 has a fourth locking state and a fourth unlocking state, under the action of the driving mechanism 3, the lifting block 2 has a working state of extending into the cavity of the shell 1 and a closing state of retracting into the cavity of the shell 1; when the rotating block 4 is in the first state, it is also in the third locking state, so that it cannot freely rotate, when the rotating block 4 is in the second state, it is also in the third unlocking state, so that it can freely rotate; when the rotating block 4 is in the first state, the lifting block 2 is in the fourth unlocking state, and the lifting block 2 can freely lift; when the rotating block 4 is in the second state, the lifting block 2 is in the fourth locking state, and the lifting block 2 cannot freely lift.
[0066] Specifically, the locking mechanism 7 includes a locking piece 70, the shell 1 is provided with a lifting locking portion 71, which can be a through hole, a groove, etc., the locking piece 70 is slidably arranged on the lifting block 2 towards the lifting locking portion 71, one end of the locking piece 70 close to the lifting locking portion 71 is provided with a first locking end 72 matched with the lifting locking portion 71, and the other end of the locking piece 70 is provided with a second spring 73 between the other end and the lifting block 2, one side of the rotating block 4 close to the lifting block 2 is provided with a rotating locking portion 74, which can be a through hole, a groove, etc., the locking piece 70 is provided with a second locking end 75 matched with the rotating locking portion 74 towards the rotating locking portion 74, the lifting block 2 is provided with a linkage hole 76 through which the second locking end 75 passes, the second locking end 75 is slidably arranged in the linkage hole 76, and at least one side of the rotating locking portion 74 is provided with a locking track 77. Figure 5 As shown in the figure, the rotating locking portion 74 is provided with a locking track 77 on each side, so that the rotating block 4 does not affect the forward and reverse rotation. Among them, the closer the locking track 77 is to the rotating locking portion 74, the narrower it is.
[0067] When the rotating block 4 is in the first state, the second locking end 75 is inserted into the rotating locking portion 74 to limit the rotation of the rotating block 4, and at the same time, the first locking end 72 is located outside the lifting locking portion 71; when the end of the rotating block 4 provided with the rotating locking portion 74 is lifted to make the second locking end 75 separate from the rotating locking portion 74, the rotating block 4 can freely rotate, and at the same time, under the action of the second spring 73, the first locking end 72 is inserted into the lifting locking portion 71 to limit the lifting of the lifting block 2; when the rotating block 4 rotates from the second state to the first state, the second locking end 75 moves along the locking track 77, so that the second locking end 75 moves backward and reinserts into the rotating locking portion 74, and at the same time, the first locking end 72 exits the lifting locking portion 71.
[0068] In some embodiments, the lifting block 2 is provided with a functional part 5, making full use of the space and providing more interfaces.
[0069] In some embodiments, the shell 1, the lifting block 2 and the rotating block 4 are all adapted to be long strip-shaped, for example, long circular hole-shaped, and such shaped sockets are more suitable for the above structure.
[0070] In some embodiments, the top of the rotating block 4 is provided with a detachable decorative plate, which can be made of leather, wood, stone and metal, and can be adjusted according to the installed table plate. The decorative plate can be connected with the rotating block 4 by buckle connection, magnetic connection, bolt connection, etc.
[0071] In summary, after reading the detailed disclosure, those skilled in the art can understand that the foregoing detailed disclosure can be presented only in the form of examples and can not be limiting. Although it is not explicitly stated here, those skilled in the art can understand that the present application requires to cover various reasonable changes, improvements and modifications of the embodiments. These changes, improvements and modifications are intended to be proposed by the present application and are within the spirit and scope of the exemplary embodiments of the present application.
[0072] In addition, it should be understood that in the foregoing description of the embodiments of the present application, for the purpose of helping to understand one feature, the present application combines various features in a single embodiment, figure or its description for the purpose of simplifying the present application. However, this does not mean that the combination of these features is necessary, and those skilled in the art can well understand one part of the device as a separate embodiment when reading the present application. That is, the embodiments in the present application can also be understood as the integration of multiple secondary embodiments. And the content of each secondary embodiment is also valid when there are less than all the features of a single foregoing disclosed embodiment.
[0073] Finally, it should be understood that the embodiments of the application disclosed herein are illustrative of the principles of the application. Other modified embodiments are also within the scope of the present application. Therefore, the embodiments disclosed in the present application are only examples and not limitations. Those skilled in the art can take alternative configurations according to the embodiments in the present application to implement the application in the present application. Therefore, the embodiments of the present application are not limited to the embodiments precisely described in the application.
Claims
1. A rotary lifting socket comprising a housing (1), a lifting block (2) arranged in the housing (1) and a driving mechanism (3), characterized in that, The rotating block (4) is arranged on the lifting block (2) and rotates, the functional part (5) is arranged on the rotating block (4), the rotating block (4) has a first state of alignment with the lifting block (2) and a second state of misalignment with the lifting block (2), and the rotating block (4) can follow the lifting block (2) to rise and fall when the rotating block (4) is in the first state.
2. A rotary jack socket according to claim 1, wherein One end of the rotating block (4) is provided with a first rotating part (40), and the same end of the lifting block (2) is provided with a second rotating part (20), and the rotating block (4) and the lifting block (2) are rotatably connected through the first rotating part (40) and the second rotating part (20).
3. A rotary jack socket according to claim 2, wherein Further comprising a gear mechanism (6) for making the rotating block (4) have a gear effect when rotating.
4. A rotary jack socket according to claim 3, wherein The first rotating part (40) is a connecting column (400) arranged at one end of the rotating block (4), the second rotating part (20) is a connecting channel (200) arranged at one end of the lifting block (2), the connecting column (400) is inserted into the connecting channel (200) to form a rotating connection, the gear mechanism (6) comprises a gear track (60) arranged on the rotating block (4) and located outside the connecting column (400), a gear pin (61) arranged on the lifting block (2) and slidingly arranged towards the gear track (60), and a first spring (62) arranged between the gear pin (61) and the lifting block (2), under the action of the first spring (62), the gear pin (61) abuts against the gear track (60).
5. A rotary jack socket according to claim 4, wherein The end of the connecting column (400) is provided with an elastic clamping arm (401), the connecting column (400) is inserted into the connecting channel (200) and clamped by the elastic clamping arm (401) and the connecting channel (200).
6. A rotary jack socket according to claim 2, wherein, The first rotating part (40) and the second rotating part (20) are a connecting column (400) and a connecting channel (200), the connecting column (400) is inserted into the connecting channel (200) to form a rotating connection, a channel (4000) is arranged on the connecting column (400) and communicates with the inner cavity of the rotating block (4) and the inner cavity of the lifting block (2), a first through hole (2000) is arranged on the lifting block (2) and communicates with the inner cavity of the shell (1), and a second through hole (1000) is arranged on the shell (1) and communicates with the outside.
7. A rotary jack socket according to claim 2, wherein Further comprising a rotating locking structure, the rotating locking structure makes the rotating block (4) have a first locking state and a first unlocking state, when the rotating block (4) is in the first state, it is also in the first locking state, so that it cannot freely rotate, when the rotating block (4) is in the second state, it is also in the first unlocking state, so that it can freely rotate. And / or, further comprising a lifting locking structure, the lifting locking structure makes the lifting block (2) have a second locking state and a second unlocking state, under the action of the driving mechanism (3), the lifting block (2) has a working state of extending into the inner cavity of the shell (1) and a closing state of retracting into the inner cavity of the shell (1), when the lifting block (2) is in the working state, it is also in the second locking state, so that it cannot freely lift, when the lifting block (2) is in the closing state and lifting, it is also in the second unlocking state, so that it can freely lift.
8. A rotary jack socket according to claim 2, wherein, Further comprising a locking mechanism (7), the locking mechanism (7) makes the rotating block (4) have a third locking state and a third unlocking state, and the lifting block (2) have a fourth locking state and a fourth unlocking state, under the action of the driving mechanism (3), the lifting block (2) has a working state of extending into the inner cavity of the shell (1) and a closing state of retracting into the inner cavity of the shell (1); When the rotating block (4) is in the first state, it is also in the third locking state, so that it cannot freely rotate, when the rotating block (4) is in the second state, it is also in the third unlocking state, so that it can freely rotate; When the rotating block (4) is in the first state, the lifting block (2) is in the fourth unlocking state, and the lifting block (2) can freely lift; When the rotating block (4) is in the second state, the lifting block (2) is in the fourth locking state, and the lifting block (2) cannot freely lift.
9. A rotary jack socket according to claim 8, wherein, The locking mechanism (7) comprises a locking piece (70), the shell (1) is provided with a lifting locking portion (71), the locking piece (70) is slidably arranged on the lifting block (2) towards the lifting locking portion (71), one end of the locking piece (70) close to the lifting locking portion (71) is provided with a first locking end (72) matched with the lifting locking portion (71), and the other end of the locking piece (70) is provided with a second spring (73) between the other end and the lifting block (2), one side of the rotating block (4) close to the lifting block (2) is provided with a rotating locking portion (74), the locking piece (70) is provided with a second locking end (75) matched with the rotating locking portion (74) towards the rotating locking portion (74), the lifting block (2) is provided with a linkage hole (76) through which the second locking end (75) passes, the second locking end (75) is slidably arranged in the linkage hole (76), and at least one side of the rotating locking portion (74) is provided with a locking track (77); When the rotating block (4) is in the first state, the second locking end (75) is inserted into the rotating locking portion (74) to limit the rotation of the rotating block (4), and at the same time, the first locking end (72) is located outside the lifting locking portion (71); When one end of the rotating block (4) provided with the rotating locking portion (74) is lifted to make the second locking end (75) separate from the rotating locking portion (74), the rotating block (4) can freely rotate, and at the same time, under the action of the second spring (73), the first locking end (72) is inserted into the lifting locking portion (71) to limit the lifting of the lifting block (2); When the rotating block (4) rotates from the second state to the first state, the second locking end (75) moves along the locking track (77), so that the second locking end (75) moves backward and reinserts into the rotating locking part (74), and at the same time, the first locking end (72) exits the lifting locking part (71).
10. A rotary jack socket according to any one of claims 1 to 9, wherein The lifting block (2) is provided with a functional part (5), and / or the shell (1), the lifting block (2) and the rotating block (4) are all adapted to be long strips.