Locking and unlocking mechanism for shared products and alpenstock renting and selling cabinet
By combining a control motor assembly with a hollow positioning shell, a movable seat, rotating parts, and translational parts, efficient locking and unlocking of shared products is achieved, solving the problem of high cost of dual-motor structures.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HANGZHOU DIANDIAN TECH CO LTD
- Filing Date
- 2026-02-14
- Publication Date
- 2026-05-01
AI Technical Summary
The locking and unlocking mechanisms using dual-motor structures in existing shared equipment are costly.
A locking and unlocking mechanism is adopted, which realizes two actions of locking and unlocking through a control motor assembly. It includes a combination of a hollow positioning shell, a movable seat, a rotating part, a translating part and an elastic part. The insertion, locking and removal of the shared product are realized by switching different states of the control motor assembly.
It reduces the cost of locking and unlocking mechanisms and enables efficient locking and unlocking operations.
Smart Images

Figure CN121963356A_ABST
Abstract
Description
A locking and unlocking mechanism for shared products and a trekking pole rental and sales cabinet Technical Field
[0001] This invention relates to the field of rental and sales equipment, specifically to a locking and unlocking mechanism for shared products and a trekking pole rental and sales cabinet. Background Technology
[0002] Scenic areas often set up shared equipment to share devices. In order to lock the devices and make electrical connections, two motors are usually set up to operate them separately. This dual-motor structure is relatively expensive. Summary of the Invention
[0003] To address the aforementioned problems, this invention proposes a locking and unlocking mechanism for shared products and a trekking pole rental and sales cabinet.
[0004] The technical solution adopted in this invention is as follows:
[0005] A locking and unlocking mechanism for a shared product, the shared product having a circuit structure, the outer wall of the shared product having a positioning groove and an electrical connection groove connected to the circuit structure; the locking and unlocking mechanism includes: a hollow positioning shell, the side wall of the hollow positioning shell having a first through hole and a second through hole; a movable seat, slidably mounted in the hollow positioning shell, capable of sliding along the length direction of the hollow positioning shell; a first elastic member, disposed between the hollow positioning shell and the movable seat, for giving the movable seat a tendency to move towards one side of the hollow positioning shell; and a rotating member, rotatably mounted on the hollow positioning shell, the rotating member having a first working end and a first controlled end, the first working end having a positioning block corresponding to the first through hole. The positioning block has a guide surface that mates with the shared product. The first controlled end has a first pressure-bearing part and a second pressure-bearing part. The rotating member has a first state and a second state. In the first state, the positioning block passes through the first through hole and is used to engage with the positioning groove of the shared product. In the second state, the positioning block rotates outward from the first through hole, and the rotating member will not engage with the positioning groove of the shared product. A second elastic member is disposed between the rotating member and the hollow positioning shell to give the rotating member a tendency to rotate towards the first state. A translation member is slidably mounted on the hollow positioning shell. The translation member has a second working end and a second controlled end. The second working end has a wiring terminal, and the second controlled end has... The third pressure-bearing part, the translation member has a third state and a fourth state. In the third state, the terminal block does not pass through the second through hole into the hollow positioning shell. In the fourth state, the terminal block passes through the second through hole into the hollow positioning shell for insertion into the electrical connection slot of the shared product. A third elastic member is disposed between the translation member and the hollow positioning shell to give the translation member a tendency to slide towards the third state. A control motor assembly has a control member fixed on its output shaft. The control member cooperates with the first pressure-bearing part, the second pressure-bearing part, and the third pressure-bearing part. The control member has an initial state, a locked state, a first unlocked state, and a second unlocked state. The system has three states: a locked state, a first unlocked state, and a second unlocked state. The first unlocked state rotates a set angle x around direction A relative to the initial state; the second unlocked state rotates a set angle y around direction B relative to the initial state; and the second unlocked state rotates a set angle z around direction B relative to the initial state, where z is greater than y. Directions A and B are opposite. When the control component is in the initial state, as the shared product is gradually inserted into the hollow positioning shell, the shared product drives the movable seat to move away from the hollow positioning shell. Under the guidance of the positioning block, the shared product drives the rotating component to rotate outwards. When the shared product moves down to the set position, the positioning block aligns with the positioning groove. Under the action of the second elastic component, the rotating component rotates towards the first state, and the positioning block passes through the first through hole and engages in the positioning groove of the shared product.When the control component is in the locked state, it presses against the first pressure-bearing part, keeping the rotating component in the first state. Simultaneously, the control component presses against and pushes the third pressure-bearing part to move, causing the translational component to switch from the third state to the fourth state, allowing the wiring terminal to pass through the second through hole and be inserted into the electrical connection slot of the shared product. When the control component switches from the locked state to the first unlocked state, it no longer presses against the translational component. Under the action of the third elastic element, the translational component switches from the fourth state to the third state, and the wiring terminal disengages from the electrical connection slot. When the control component continues to rotate, switching from the first unlocked state to the second unlocked state, it presses against the second pressure-bearing part, causing the rotating component to overcome the elastic force of the second elastic element and rotate to the second state. The positioning block disengages from the positioning slot. At this time, under the action of the first elastic element, the movable seat moves towards the hollow positioning shell side, causing the shared product to pop out of the hollow positioning shell.
[0006] The locking and unlocking mechanism of this application achieves two actions—locking and unlocking—through a control motor assembly.
[0007] In practical applications, shared products can include various devices such as hiking poles and umbrellas.
[0008] In one embodiment of the present invention, the rotating member and the translating member are both located on the outside of the hollow positioning shell; the first pressure-receiving part and the second pressure-receiving part are opposite to each other and spaced apart, the first pressure-receiving part and the second pressure-receiving part form an opening, the third pressure-receiving part is located at the opening, the control member is an eccentric member, and the control member is in the space enclosed by the first pressure-receiving part, the second pressure-receiving part and the third pressure-receiving part.
[0009] In one embodiment of the present invention, the rotating member is L-shaped and includes a first part and a second part arranged perpendicularly to each other. The end of the second part closer to the first part is rotatably mounted on a hollow positioning shell. The positioning block is located in the first part, and the end of the second part away from the first part is the first controlled end.
[0010] In one embodiment of the present invention, the second part has a strip-shaped hole, and the hollow positioning shell has a limiting protrusion extending into the strip-shaped hole. The strip-shaped hole and the limiting protrusion are used to limit the rotation angle of the rotating member.
[0011] In one embodiment of the present invention, the translation member is L-shaped and includes a third part and a fourth part arranged perpendicularly to each other. The fourth part is slidably mounted on the hollow positioning shell. The wiring terminal is located in the third part, and the end of the fourth part away from the third part is the second controlled end.
[0012] In one embodiment of the present invention, the movable seat has a limiting rib that mates with the bottom of the shared product.
[0013] Setting limit ribs can better cooperate with shared products and prevent swaying during movement.
[0014] In one embodiment of the present invention, a guide rod structure is provided between the movable seat and the hollow positioning shell.
[0015] In one embodiment of the present invention, the first elastic element is a tension spring, a spring, or a torsion spring; the second elastic element is a tension spring, a spring, or a torsion spring; and the third elastic element is a tension spring, a spring, or a torsion spring.
[0016] This application also discloses a trekking pole rental and sales cabinet, including a cabinet body with a plurality of mounting holes arranged in an array. The mounting holes are provided with the locking and unlocking mechanism for shared products described above. The shared product is a shared trekking pole, which includes an adjustable pole assembly and a housing mounted on the pole assembly. The housing contains the circuit structure, and the positioning groove and electrical connection groove are both provided on the outer side wall of the housing.
[0017] In one embodiment of the invention, the movable seat has a clearance hole through which the rod assembly passes.
[0018] The beneficial effects of the present invention are: the locking and unlocking mechanism of this application realizes the locking and unlocking of two actions through a control motor assembly. Attached Figure Description
[0019] Figure 1 is a schematic diagram of a trekking pole rental and sales counter; Figure 2 is a schematic diagram of shared trekking poles; Figure 3 is a schematic diagram of shared trekking poles from another angle; Figure 4 is an enlarged view of point A in Figure 2; Figure 5 is an enlarged view of point B in Figure 2; Figure 6 is an enlarged view of point C in Figure 3; Figure 7 is an enlarged view of point D in Figure 3; Figure 8 is an exploded view of the lower part of the shared trekking pole; Figure 9 is an exploded view of the lower part of the shared trekking pole from another angle; Figure 10 is a schematic diagram of a cushioning sleeve with a notch; Figure 11 is a schematic diagram of one type of shared trekking pole; Figure 12 is a schematic diagram after the shell and pole assembly are separated; Figure 13 is an enlarged view of point E in Figure 11; Figure 14 is an enlarged view of point F in Figure 12; Figure 15 is a partial structural schematic diagram of a shared trekking pole; Figure 16 is a schematic diagram after the shared trekking pole and cultural and creative products are separated; Figure 17 is a schematic diagram of the shared trekking pole and cultural and creative products combined. Figure 18 is a schematic diagram of the combination of shared hiking poles and another cultural and creative product; Figure 19 is a schematic diagram of the control component locking and unlocking mechanism in the initial state; Figure 20 is a schematic diagram of the control component locking and unlocking mechanism from another angle in the initial state; Figure 21 is a schematic diagram of the locking and unlocking mechanism when the shared hiking pole is inserted into the empty compartment but not fully inserted; Figure 22 is a schematic diagram of the locking and unlocking mechanism when the shared hiking pole is inserted into the empty compartment and the positioning block is embedded in the positioning slot; Figure 23 is a schematic diagram of the control component switching to the locked state in the state of Figure 22; Figure 24 is a schematic diagram of the control component rotating and the translation component switching to the third state in the state of Figure 23; Figure 25 is a schematic diagram of the control component continuing to rotate and the rotating component switching to the second state; Figure 26 is a schematic diagram of the rotating component, the translation component, and the electrical connection slot.
[0020] The figures are labeled as follows: 1. Cabinet; 11. Mounting hole; 2. Locking / unlocking mechanism; 21. Hollow positioning shell; 211. First through hole; 212. Second through hole; 22. Movable seat; 221. Limiting rib; 222. Clearance hole; 223. Guide rod structure; 23. First elastic element; 24. Rotating element; 24a. First part; 24b. Second part; 24b1. Strip hole; 241. First working end; 2411. Positioning block; 24111. Guide. Surface; 242, First controlled end; 2421, First pressure-bearing part; 2422, Second pressure-bearing part; 25, Second elastic element; 26, Translation element; 26a, Third part; 26b, Fourth part; 261, Second working end; 2611, Terminal block; 262, Second controlled end; 2621, Third pressure-bearing part; 27, Third elastic element; 28, Control motor assembly; 281, Control element; 29, Opening; 3, Shared trekking pole; 31, Pole assembly; 311, Separation 3111, Rod tip; 3112, First anti-dislodgement hole; 3113, Fixing hole; 32, Buffer sleeve; 321, Second anti-dislodgement hole; 322, Notch; 33, Fastening assembly; 331, Fixing bolt; 3311, Socket hexagonal groove; 332, Nut; 34, Housing; 34a, First housing; 34b, Second housing; 341, Earphone compartment; 342, Compartment cover; 3421, Positioning part; 343, Connector; 344, Sliding block; 3451, Electrical connection groove 3452, Positioning groove; 3453, Display screen; 3454, Control button; 346, Recessed opening; 347, Mounting structure; 3471, Threaded hole; 3472, Partition; 3473, Limiting space; 3474, Operating space; 3475, Second through hole; 3476, Mounting screw; 34761, Embossed stripes; 35, Handle; 351, Control switch; 4, Cultural and creative products; 41, Connecting part; 411, First through hole; 42, Display part. Detailed Implementation
[0021] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0022] In the description of this application, it should be noted that the terms "inner" and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product is in use. They are used only for the convenience of describing this application and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application. Furthermore, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0023] In the description of this application, it should also be noted that, unless otherwise expressly specified and limited, the terms "setup" and "connection" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0024] The present invention will now be described in detail with reference to the accompanying drawings.
[0025] As shown in Figure 1, this embodiment provides a trekking pole rental and sales cabinet, which includes a cabinet body 1 and a shared product, namely a shared trekking pole 3. The cabinet body 1 has multiple mounting holes 11 arranged in an array, and a locking and unlocking mechanism 2 for the shared product is provided at the mounting holes 11.
[0026] In other embodiments, the locking and unlocking mechanism 2 can also be used for other shared products and is not limited to trekking poles.
[0027] As shown in Figures 2 and 4, the shared hiking pole 3 includes an adjustable pole assembly 31 and a housing 34 mounted on the pole assembly 31. The housing 34 has a circuit structure (not shown in the figure), and the outer wall of the housing 34 has a positioning groove 3452 and an electrical connection groove 3451 connected to the circuit structure.
[0028] As shown in Figures 19-26, the locking and unlocking mechanism 2 for shared products in this embodiment includes: a hollow positioning shell 21, the side wall of which has a first through hole 211 and a second through hole 212; a movable seat 22, slidably installed in the hollow positioning shell 21, capable of sliding along the length direction of the hollow positioning shell 21, the movable seat 22 having an avoidance hole 222 for the rod assembly 31 to pass through; a first elastic member 23, disposed between the hollow positioning shell 21 and the movable seat 22, for causing the movable seat 22 to have a tendency to move towards one side of the hollow positioning shell 21; and a rotating member 24, rotatably installed on the hollow positioning shell 21, the rotating member 24 having a first working end 241 and a first controlled end 242, the first working end 241 having... There is a positioning block 2411 corresponding to the first through hole 211. The positioning block 2411 has a guide surface 24111 that cooperates with the shared product. The first controlled end 242 has a first pressure-bearing part 2421 and a second pressure-bearing part 2422. The rotating member 24 has a first state and a second state. In the first state, the positioning block 2411 passes through the first through hole 211 and is used to engage in the positioning groove 3452 of the shared product. In the second state, the positioning block 2411 rotates outward from the first through hole 211, and the rotating member 24 will not engage in the positioning groove 3452 of the shared product. A second elastic member 25 is disposed between the rotating member 24 and the hollow positioning shell 21 to enable the rotating member 24 to move towards the first state. The rotational movement trend; the translation member 26, slidably mounted on the hollow positioning shell 21, the translation member 26 has a second working end 261 and a second controlled end 262, the second working end 261 has a terminal 2611, the second controlled end 262 has a third pressure part 2621, the translation member 26 has a third state and a fourth state, in the third state the terminal 2611 does not pass through the second through hole 212 into the hollow positioning shell 21, in the fourth state the terminal 2611 passes through the second through hole 212 into the hollow positioning shell 21 for insertion into the electrical connection slot 3451 of the shared product; the third elastic member 27 is provided between the translation member 26 and the hollow positioning shell 21. Between, a translation member 26 is used to have a tendency to slide towards the third state; a control motor assembly 28 is used, and a control member 281 is fixed on the output shaft of the control motor assembly 28. The control member 281 is used to cooperate with the first pressure-bearing part 2421, the second pressure-bearing part 2422 and the third pressure-bearing part 2621; the control member 281 has an initial state (Fig. 20), a locked state (Fig. 23), a first unlocked state (Fig. 24) and a second unlocked state (Fig. 25). In the locked state, the initial state is rotated by a set angle x around the A direction. In the first unlocked state, the initial state is rotated by a set angle y around the B direction. In the second unlocked state, the initial state is rotated by a set angle z around the B direction. z is greater than y. The A direction is opposite to the B direction.As shown in Figures 19 and 20, when the control component 281 is in the initial state, as the shared product is gradually inserted into the hollow positioning shell 21, the shared product drives the movable seat 22 to move away from the hollow positioning shell 21. Under the action of the guide surface 24111 of the positioning block 2411, the shared product drives the rotating component 24 to rotate outward (see Figure 21). When the shared product moves down to the set position, the positioning block 2411 aligns with the positioning groove 3452. Under the action of the second elastic component 25, the rotating component 24 rotates to the first state, and the positioning block 2411 passes through the first through hole 211 and is inserted into the positioning groove 3452 of the shared product (see Figure 22). When the control component 281 switches from the initial state to the locked state (see Figures 22 and 23), the control component 281 presses the first pressure part 2421 to keep the rotating component 24 in the first state. At the same time, the control component 281 presses and pushes the third pressure part 2621 to move, causing the translation component 26 to switch from the third state. When switching to the fourth state, the terminal 2611 passes through the second through hole 212 and is inserted into the electrical connection slot 3451 of the shared product. As shown in Figures 23 and 24, when the control member 281 switches from the locked state to the first unlocked state, the control member 281 no longer presses against the translation member 26. Under the action of the third elastic member 27, the translation member 26 switches from the fourth state to the third state (see Figure 24), and the terminal 2611 disengages from the electrical connection slot 3451. As shown in Figures 24 and 25, when the control member 281 continues to rotate from the first unlocked state to the second unlocked state, the control member 281 presses against the second pressure part 2422, causing the rotating member 24 to overcome the elastic force of the second elastic member 25 and rotate to the second state. The positioning block 2411 disengages from the positioning slot 3452. At this time, under the action of the first elastic member 23, the movable seat 22 moves towards the hollow positioning shell 21, causing the shared product to pop out of the hollow positioning shell 21 (see Figure 25).
[0029] The locking and unlocking mechanism 2 of this application achieves two actions of locking and unlocking through a control motor assembly 28.
[0030] As shown in Figures 20-26, in this embodiment, the rotating member 24 and the translating member 26 are both located on the outside of the hollow positioning shell 21; the first pressure-bearing part 2421 and the second pressure-bearing part 2422 are arranged opposite to each other and spaced apart, the first pressure-bearing part 2421 and the second pressure-bearing part 2422 form an opening 29, the third pressure-bearing part 2621 is located at the opening 29, the control member 281 is an eccentric member, and the control member 281 is in the space enclosed by the first pressure-bearing part 2421, the second pressure-bearing part 2422 and the third pressure-bearing part 2621.
[0031] As shown in Figure 26, in this embodiment, the rotating member 24 is L-shaped and includes a first part 24a and a second part 24b arranged perpendicularly to each other. The end of the second part 24b close to the first part 24a is rotatably mounted on the hollow positioning shell 21. The positioning block 2411 is located in the first part 24a, and the end of the second part 24b away from the first part 24a is the first controlled end 242.
[0032] As shown in Figures 20 and 26, in this embodiment, the second part 24b has a strip hole 24b1, and the hollow positioning shell 21 has a limiting protrusion (not shown in the figure) extending into the strip hole 24b1. The strip hole 24b1 and the limiting protrusion are used to limit the rotation angle of the rotating member 24.
[0033] As shown in Figure 26, in this embodiment, the translation member 26 is L-shaped and includes a third part 26a and a fourth part 26b arranged perpendicularly to each other. The fourth part 26b is slidably mounted on the hollow positioning shell 21. The wiring terminal 2611 is located in the third part 26a, and the end of the fourth part 26b away from the third part 26a is the second controlled end 262.
[0034] As shown in Figure 19, in this embodiment, the movable seat 22 has a limiting rib 221 that cooperates with the bottom of the shared product.
[0035] Setting the limit rib 221 allows for better integration with shared products and prevents swaying during movement.
[0036] As shown in Figure 20, in this embodiment, there is a guide rod structure 223 between the movable seat 22 and the hollow positioning shell 21.
[0037] In practical applications, the first elastic element 23 can be a tension spring, a spring, or a torsion spring; the second elastic element 25 can be a tension spring, a spring, or a torsion spring; and the third elastic element 27 can be a tension spring, a spring, or a torsion spring. As shown in Figure 20, in this embodiment, all elastic elements are tension springs.
[0038] As shown in Figures 2 to 9, the shared hiking pole 3 of this embodiment also includes a fastening component 33 and a buffer sleeve 32. The pole body component 31 includes multiple branch poles 311, and the lower end of the lowest branch pole 311 is fixed with a pole tip 3111. The side wall of the lowest branch pole 311 has a first anti-disengagement hole 3112, and the upper side wall of the buffer sleeve 32 has a second anti-disengagement hole 321 corresponding to the first anti-disengagement hole 3112. The upper end of the buffer sleeve 32 is used to fit into the lower end of the lowest branch pole 311, and the fastening component 33 is used to pass through the corresponding first anti-disengagement hole 3112 and second anti-disengagement hole 321 to fix the buffer sleeve 32 on the lowest branch pole 311.
[0039] Compared to traditional trekking poles, the trekking pole of this application has a first anti-detachment hole 3112 formed on the lowest branch 311 and a second anti-detachment hole 321 formed on the buffer sleeve 32. The fastening component 33 can reliably limit the two, effectively preventing the user from removing the buffer sleeve 32 by hand and ensuring that the buffer sleeve 32 is still present when the shared trekking pole 3 is returned.
[0040] In practice, the scenic area manages the buffer sleeves 32 in a unified manner. For example, when there is ice or snow, staff can be arranged to remove all the buffer sleeves 32.
[0041] As shown in Figures 5, 7, 8 and 9, in this embodiment, the fastening assembly 33 includes a fixing bolt 331 and a nut 332 that cooperate with each other.
[0042] In this embodiment, there are two first anti-detachment holes 3112, which are evenly distributed relative to the axis of the split rod 311, and two second anti-detachment holes 321, which are evenly distributed relative to the axis of the buffer sleeve 32.
[0043] In this embodiment, both second anti-disengagement holes 321 are countersunk holes. One second anti-disengagement hole 321 is used for the nut 332 to be inserted, and the other anti-disengagement hole is used for the head of the fixing bolt 331 to be inserted.
[0044] The countersunk hole design prevents the head of the fixing bolt 331 and the nut 332 from protruding outwards, and the fastening component 33 has little impact on the appearance.
[0045] In this embodiment, the nut 332 is a hexagonal nut 332, one of which is a second anti-disengagement hole 321, which is a hexagonal countersunk hole. After the nut 332 is inserted into the hexagonal countersunk hole, it is fixed to the buffer sleeve 32 in the circumferential direction. The head of the fixing bolt 331 has an internal hexagonal groove 3311, or the head of the fixing bolt 331 has a special groove.
[0046] The internal hex socket 3311, especially the irregularly shaped socket design, means that users cannot remove the fixing bolt 331 without special tools.
[0047] In other embodiments, as shown in FIG10, the sidewall of the buffer sleeve 32 has multiple sets of recesses 322 spaced vertically apart. The recesses 322 create deformation space, allowing the buffer sleeve 32 to deform more effectively and providing better cushioning. In practical applications, there may be two sets of recesses 322, evenly distributed about the axis of the buffer sleeve 32.
[0048] In other embodiments, the pole assembly 31 can be a conventional folding pole assembly 31, or a conventional telescopic pole assembly 31, with different individual poles 311 nested and connected to each other. In practical applications, the structure of a conventional telescopic trekking pole can be adopted. Specifically, stepped positioning can be achieved using elastic pins, or stepless positioning can be achieved using a rotating lock. To reduce the learning curve and ensure safety, a structure with stepped positioning using elastic pins is preferred.
[0049] In this embodiment, the tip of the staff 3111 is made of tungsten steel.
[0050] As shown in Figures 11 to 14, the housing 34 also has an earphone compartment 341 and a cover 342 for opening and closing the earphone compartment 341. The earphone compartment 341 is used to install earphones, which are used to connect to the circuit structure inside the housing 34 via wired or wireless means.
[0051] The shared hiking stick 3 of this application integrates a circuit structure through a housing 34, and the housing 34 has an earphone compartment 341 for accommodating earphones. The earphones are connected to the circuit structure in the housing 34 via wired or wireless means. The shared hiking stick 3 can realize the dual functions of hiking stick and earphones, and users do not need to rent earphones separately.
[0052] As shown in Figure 14, in this embodiment, the housing 34 is fixed to one of the branch rods 311.
[0053] As shown in Figure 14, in this embodiment, the branch rod 311 used to fix the housing 34 has at least one fixing hole 3113. The housing 34 is fitted onto the corresponding branch rod 311 and is fixed to the branch rod 311 by a connector 343 that passes through the fixing hole 3113. The fixing hole 3113 and the connector 343 can reliably fix the housing 34 onto the branch rod 311.
[0054] As shown in Figure 14, in this embodiment, there are multiple fixing holes 3113, which are spaced apart vertically.
[0055] As shown in Figure 14, in this embodiment, the cross-section of the split rod 311 is a regular polygon, and the housing 34 includes a first split shell 34a and a second split shell 34b connected to each other. Both the first split shell 34a and the second split shell 34b have an inner sidewall that is adapted to the outer sidewall of the split rod 311.
[0056] Compared to a circular cross-section design, this arrangement reduces the stress on the connector 343, allowing the housing 34 to be reliably fixed to the branch rod 311. In practical applications, preferably, the first housing 34a and the second housing 34b are connected and fixed by fasteners.
[0057] As shown in Figure 13, in this embodiment, one end of the compartment cover 342 is rotatably mounted on the housing 34, and the other end has a positioning part 3421. The housing 34 has a sliding block 344, which is used to cooperate with the positioning part 3421 to lock or unlock the positioning part 3421. In practical application, preferably, the positioning part 3421 has a hole, and the sliding block 344 can drive a component that can move into or out of the hole in the positioning part 3421. In this way, the locking and unlocking of the compartment cover 342 can be achieved by the sliding block 344.
[0058] In this embodiment, the circuit structure includes a rechargeable power supply.
[0059] As shown in Figure 15, this embodiment also includes a handle 35, which is fixed above the uppermost branch rod 311.
[0060] As shown in Figure 15, in this embodiment, a control switch 351 is embedded at the upper end of the handle 35, and the control switch 351 is wirelessly connected to the circuit structure.
[0061] As shown in Figures 6 and 13, in this embodiment, the circuit structure includes a display screen 3453 and control buttons 3454, and the outer wall of the housing 34 has a positioning groove 3452 and an electrical connection groove 3451 connected to the circuit structure.
[0062] The shared hiking stick 3 of this application is used in conjunction with the shared cabinet. Specifically, the positioning groove 3452 is used to cooperate with the positioning block 2411 of the shared cabinet, and the positioning block 2411 can position the housing 34. The electrical connection groove 3451 is used to connect with the terminal block 2611 of the shared cabinet, so that the circuit structure inside the housing 34 is connected with the control circuit of the shared cabinet to realize the charging and communication functions.
[0063] As shown in Figures 15 to 18, the shared hiking stick 3 of this embodiment can be equipped with cultural and creative products 4. The outer wall of the shell 34 of the shared hiking stick 3 has a recess 346, and the recess 346 has an installation structure 347. The cultural and creative products 4 all have a connecting part 41 and a display part 42. The installation structure 347 is used to detachably install the connecting part 41 of the cultural and creative products 4.
[0064] Traditional hiking poles have a limited range of styles. This application allows for the detachable installation of cultural and creative products 4 by setting up an installation structure 347. This means that different types of cultural and creative products 4 can be selected to combine with the shared hiking poles 3 to achieve different visual effects.
[0065] In practical use, a sales counter for cultural and creative products 4 is also placed next to the shared hiking pole 3 equipment. There are many different kinds of cultural and creative products 4. The connecting parts 41 of different kinds of cultural and creative products 4 are the same, but the display parts 42 are different. Users can purchase the corresponding cultural and creative products 4 according to their own preferences. After purchasing, they can install them on the shell 34 of the shared hiking pole 3, which effectively increases the fun of hiking poles. Moreover, the detachable design allows users to take the cultural and creative products 4 home when returning the hiking poles after playing.
[0066] As shown in Figures 15 to 18, in this embodiment, the connecting portion 41 has a first through hole 411; the mounting structure 347 includes: a threaded hole 3471, disposed on the bottom wall of the recess 346; a partition 3472, located inside the recess 346, corresponding to the bottom wall of the recess 346, the partition 3472 divides the recess 346 into a limiting space 3473 and an operating space 3474, the partition 3472 has a second through hole 3475 corresponding to the threaded hole 3471; and a mounting screw 3476, one end of which is used to pass through the second through hole 3475 and then screwed onto the threaded hole 3471; when the cultural and creative product 4 is installed in the housing 34, the connecting portion 41 is inserted into the limiting space 3473, the first through hole 411 and the second through hole 3475 are aligned, and the mounting screw 3476 passes through the second through hole 3475 and the first through hole 411 in sequence and then screws onto the threaded hole 3471.
[0067] In this embodiment, there are multiple types of cultural and creative products 4, and the installation structure 347 can be selected to cooperate with one of the cultural and creative products 4.
[0068] As shown in Figures 17 and 18, in this embodiment, there are two recesses 346, which are respectively located on the left and right sides of the housing 34.
[0069] The symmetrical structure allows for the display of two cultural and creative products, such as the display of different animal ears, including but not limited to rabbit ears, pig ears, etc.
[0070] As shown in Figure 15, in this embodiment, the head of the mounting screw 3476 is located in the operating space 3474, and the sidewall of the head of the mounting screw 3476 has raised and recessed stripes 34761. The design of the raised and recessed stripes 34761 can increase the friction and facilitate the rotation of the mounting screw 3476.
[0071] The above description is merely a preferred embodiment of the present invention and does not limit the scope of patent protection of the present invention. Any equivalent structural transformations made based on the description and drawings of the present invention, whether directly or indirectly applied to other related technical fields, are similarly included within the scope of protection of the present invention.
Claims
1. A locking and unlocking mechanism for shared products, characterized in that, The shared product has a circuit structure, and the outer wall of the shared product has a positioning groove and an electrical connection groove connected to the circuit structure. The locking and unlocking mechanism includes: a hollow positioning shell, the sidewall of which has a first through hole and a second through hole; a movable seat, slidably mounted in the hollow positioning shell and capable of sliding along the length of the hollow positioning shell; a first elastic member, disposed between the hollow positioning shell and the movable seat, for giving the movable seat a tendency to move towards one side of the hollow positioning shell; and a rotating member, rotatably mounted on the hollow positioning shell, the rotating member having a first working end and a first controlled end, the first working end having a positioning block corresponding to the first through hole, the positioning block having a guide surface that cooperates with the shared product, and the first controlled end having a first pressure-bearing part and a second pressure-bearing part. The rotating member has a first state and a second state. In the first state, the positioning... A block passes through the first through hole to engage with the positioning slot of the shared product. In the second state, the rotating member rotates outward from the first through hole, preventing the rotating member from engaging with the positioning slot of the shared product. A second elastic member is disposed between the rotating member and the hollow positioning shell, giving the rotating member a tendency to rotate towards the first state. A translation member is slidably mounted on the hollow positioning shell. The translation member has a second working end and a second controlled end. The second working end has a terminal block, and the second controlled end has a third pressure-bearing part. The translation member has a third state and a fourth state. In the third state, the terminal block does not pass through the second through hole into the hollow positioning shell. In the fourth state, the terminal block passes through the second through hole. A through-hole enters the hollow positioning shell for insertion into the electrical connection slot of the shared product; a third elastic element is disposed between the translational element and the hollow positioning shell to give the translational element a tendency to slide towards the third state; a control motor assembly has a control element fixed on its output shaft, the control element being used to cooperate with the first pressure-bearing part, the second pressure-bearing part, and the third pressure-bearing part; the control element has an initial state, a locked state, a first unlocked state, and a second unlocked state. In the locked state, it rotates a set angle x relative to the initial state about direction A; in the first unlocked state, it rotates a set angle y relative to the initial state about direction B; in the second unlocked state, it rotates a set angle z relative to the initial state about direction B, where z is greater than y, and directions A and B are opposite. When When the control component is in its initial state, as the shared product is gradually inserted into the hollow positioning shell, the shared product drives the movable seat to move away from the hollow positioning shell. Under the guidance of the positioning block, the shared product drives the rotating component to rotate outward. When the shared product moves down to the set position, the positioning block aligns with the positioning groove. Under the action of the second elastic component, the rotating component rotates to the first state, and the positioning block passes through the first through hole and is inserted into the positioning groove of the shared product. When the control component is in the locked state, the control component presses the first pressure part to keep the rotating component in the first state. At the same time, the control component presses and pushes the third pressure part to move, causing the translation component to switch from the third state to the fourth state, so that the wiring terminal passes through the second through hole and is inserted into the electrical connection groove of the shared product.When the control component switches from the locked state to the first unlocked state, the control component no longer presses against the translation component. Under the action of the third elastic component, the translation component switches from the fourth state to the third state, and the wiring terminal disengages from the electrical connection slot. When the control component continues to rotate and switches from the first unlocked state to the second unlocked state, the control component presses against the second pressure part, causing the rotating component to overcome the elastic force of the second elastic component and rotate to the second state. The positioning block disengages from the positioning slot. At this time, under the action of the first elastic component, the movable seat moves towards the hollow positioning shell, causing the shared product to pop out of the hollow positioning shell.
2. The locking and unlocking mechanism for shared products as described in claim 1, characterized in that, The rotating and translating components are both located on the outside of the hollow positioning shell; the first and second pressure-bearing parts are opposite to each other and spaced apart, forming an opening, and the third pressure-bearing part is located at the opening; the control component is an eccentric component, and the control component is located in the space enclosed by the first, second, and third pressure-bearing parts.
3. The locking and unlocking mechanism for shared products as described in claim 1, characterized in that, The rotating component is L-shaped and includes a first part and a second part that are perpendicular to each other. The end of the second part closer to the first part is rotatably mounted on the hollow positioning shell. The positioning block is located in the first part, and the end of the second part away from the first part is the first controlled end.
4. The locking and unlocking mechanism for shared products as described in claim 3, characterized in that, The second part has a strip-shaped hole, and the hollow positioning shell has a limiting protrusion extending into the strip-shaped hole. The strip-shaped hole and the limiting protrusion are used to limit the rotation angle of the rotating part.
5. The locking and unlocking mechanism for shared products as described in claim 1, characterized in that, The translation component is L-shaped and includes a third part and a fourth part arranged perpendicularly to each other. The fourth part is slidably mounted on the hollow positioning shell. The wiring terminal is located in the third part, and the end of the fourth part away from the third part is the second controlled end.
6. The locking and unlocking mechanism for shared products as described in claim 1, characterized in that, The movable seat has a limiting rib that mates with the bottom of the shared product.
7. The locking and unlocking mechanism for shared products as described in claim 1, characterized in that, A guide rod structure is provided between the movable seat and the hollow positioning shell.
8. The locking and unlocking mechanism for shared products as described in claim 1, characterized in that, The first elastic element is a tension spring, a spring, or a torsion spring; the second elastic element is a tension spring, a spring, or a torsion spring; and the third elastic element is a tension spring, a spring, or a torsion spring.
9. A trekking pole rental and sales cabinet, characterized in that, The device includes a cabinet having a plurality of mounting holes arranged in an array, wherein the mounting holes are provided with a locking and unlocking mechanism for a shared product as described in any one of claims 1 to 8; the shared product is a shared hiking pole, which includes an adjustable pole assembly and a housing mounted on the pole assembly, wherein the housing contains the circuit structure, and the positioning groove and the electrical connection groove are both disposed on the outer side wall of the housing.
10. The trekking pole rental and sales cabinet as described in claim 9, characterized in that, The movable seat has clearance holes for the rod assembly to pass through.