Ceiling
By designing a movable ceiling, the service life and safety issues of charging stations such as smart lawn mowers when exposed outdoors are solved, and effective shielding and safety protection of charging stations are achieved.
Patent Information
- Application Number
- CN202421766741.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-06-10
- Filing Date
- 2024-07-24
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-24
AI Technical Summary
Charging stations for self-propelled devices such as smart lawn mowers are exposed outdoors, which can easily affect their service life and are unsafe to charge in bad weather.
A ceiling is designed including a bracket, a movable connecting shed body and a locking mechanism. The shed body may cover the charging station in the first state and rotate in the second state away from the charging station. The locking mechanism enables locking and unlocking of the shed and bracket through the locking seat and locking hook.
The ceiling effectively shields the charging station, protects it from the influence of the external environment, improves the safety and service life of charging, and is simple and convenient to operate.
Smart Images

Figure CN222835450U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electric tools, in particular to a ceiling. Background Art
[0002] Charging stations for self-propelled equipment such as smart lawn mowers are often set up outdoors to facilitate charging and docking of the equipment at any time. However, due to long-term unprotected exposure outdoors, the service life of the charging station is easily affected, and the surface is covered with dust or rain, which affects the appearance or performance. In addition, when the smart lawn mower encounters bad weather such as rain while charging, it may affect the safety of charging. Therefore, it is necessary to develop a sun shed that is convenient for covering the charging station. Utility Model Content
[0003] The utility model aims to provide a ceiling to solve the problems of the prior art.
[0004] In order to solve the above technical problems, the embodiment of the utility model provides a ceiling, including:
[0005] Bracket;
[0006] A shed body, the shed body is movably connected to the bracket and is configured to rotate relative to the bracket between a first state and a second state;
[0007] In the first state, the canopy covers the top of the charging station; in the second state, the canopy rotates to be away from the top of the charging station; and
[0008] A locking mechanism, the locking mechanism comprising:
[0009] a lock seat, the lock seat being connected to one of the bracket or the shelf body and having a lock hole; and
[0010] A locking hook is connected to the bracket or the other of the shed body, and the locking hook is configured to be locked into the locking hole to lock the shed body and the bracket and to be moved out of the locking hole to unlock the bracket and the shed body.
[0011] In one embodiment, the locking mechanism comprises:
[0012] A locking frame connected to the bracket;
[0013] A reset member, the reset member is connected to the bracket and is configured to drive the locking hook to lock into the locking hole;
[0014] The locking hook is slidably connected to the locking frame.
[0015] In one embodiment, the locking mechanism comprises a lock box, the lock box is connected to the bracket and has a side plate and two end plates arranged opposite to each other, and the side plate is provided with a slide groove;
[0016] The lock frame is located in the lock box and its two ends are respectively connected to the two end plates of the lock box;
[0017] The locking hook comprises:
[0018] A sleeve, the sleeve is sleeved outside the lock frame and is slidably connected to the lock frame;
[0019] a sliding portion, one end of which is connected to the sleeve, and the other end of which extends from the slide groove to the outside of the lock box; and
[0020] A lock hook body, wherein one end of the sliding portion located outside the lock box is connected to the lock hook body, and the lock hook body can be moved into or out of the lock hole; the lock hook body is connected to one end of the sliding portion located outside the lock box and can be moved into or out of the lock hole;
[0021] The reset element is a spring sleeved on the lock frame and located between the sleeve and the lock box.
[0022] In one embodiment, the lock hook further comprises a shift block, which is connected to the sleeve and exposed outside the lock box. Moving the shift block can drive the lock hook body to move into or out of the lock hole.
[0023] In one embodiment, the locking mechanism also includes two limit partitions, which are arranged at intervals along the length direction of the lock frame and connected to the inner wall of the lock box. The two limit partitions are located at both ends of the shift block to limit the moving distance of the shift block.
[0024] In one embodiment, the limiting partition is connected to the side plate and is provided with an escape opening for avoiding the sleeve.
[0025] In one embodiment, a mounting groove is provided at the top of the bracket, and a moving groove is provided on the side wall of the mounting groove;
[0026] The lock box is connected to the side wall of the mounting groove;
[0027] The shift block is located in the moving groove.
[0028] In one embodiment, the side wall of the installation slot is provided with a screw hole column; the lock box is provided with a connecting column sleeved on the screw hole column;
[0029] The screw hole column and the connecting column are connected by bolts.
[0030] In one embodiment, the support comprises:
[0031] Two support members, the two support members are spaced apart from each other; and
[0032] A shelf, the bottom end of which is connected to the top end of the support member, the top end of which is inclined and extends away from the vertical direction and is provided with the locking hook;
[0033] The shed body comprises:
[0034] A main shielding area, wherein the lock seat is provided at the end of the main shielding area close to the scaffold;
[0035] Two side shielding areas, the two side shielding areas are located at two wings of the main shielding area, and the ends of the two side shielding areas close to the supporting member respectively exceed the ends of the main shielding area close to the shelf and are rotatably connected to the bottom end of the shelf;
[0036] In the first state, the main shielding area covers the top of the charging station;
[0037] In the second state, the main shielding area is rotated to be away from the charging station.
[0038] In one embodiment, the ceiling further includes a reinforcing mechanism, which is connected to the bracket and / or the shed body and is used to strengthen the strength of the bracket and / or the shed body.
[0039] The present invention uses a locking mechanism to lock the shed body and the bracket. When the shed body needs to be rotated to the second state, the bracket and the shed body can be unlocked and separated by opening the locking mechanism, which is simple to operate and convenient for opening or fixing the roof. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] Figure 1 It is a schematic diagram of the overall structure of the ceiling of the utility model in the second state.
[0041] Figure 2 It is a schematic diagram of the overall structure of the ceiling of the utility model in the first state.
[0042] Figure 3 It is a three-dimensional diagram of a ceiling in one embodiment of the utility model.
[0043] Figure 4 yes Figure 3 A partial enlarged view of area A in the embodiment shown.
[0044] Figure 5 It is a three-dimensional diagram of a ceiling in one embodiment of the utility model.
[0045] Figure 6 yes Figure 5 A partial enlarged view of area B in the illustrated embodiment.
[0046] Figure 7 yes Figure 1 A perspective view of the shelf in the illustrated embodiment.
[0047] Figure 8 yes Figure 7 A partial enlarged view of region C in the illustrated embodiment.
[0048] Fig. 9 yes Figure 1 A perspective view of the locking mechanism in the illustrated embodiment.
[0049] Fig.10 yes Fig. 9 Exploded view of the locking mechanism in the illustrated embodiment.
[0050] Fig.11 yes Figure 1 A perspective view of the bracket in the illustrated embodiment.
[0051] Fig.12 yes Fig.11 A partial enlarged view of region D in the illustrated embodiment.
[0052] Fig.13 yes Figure 1 A perspective view of the shelf in the illustrated embodiment.
[0053] Fig.14 yes Fig.13 A partial enlarged view of area E in the illustrated embodiment.
[0054] Fig.15 yes Fig.13 A partial enlarged view of region F in the illustrated embodiment.
[0055] Fig.16 yes Fig.13 A partial enlarged view of region H in the illustrated embodiment.
[0056] Fig.17 yes Figure 1 A perspective view of the bracket in the illustrated embodiment.
[0057] Fig.18 yes Fig.17 Section view along line AA.
[0058] Fig.19 yes Fig.18 A partial enlarged view of region G in the illustrated embodiment. DETAILED DESCRIPTION
[0059] In order to make the purpose, technical scheme and advantages of the utility model clearer, the various embodiments of the utility model will be described in detail below with reference to the accompanying drawings. However, it can be understood by those skilled in the art that in the various embodiments of the utility model, many technical details are provided in order to enable readers to better understand the present application. However, even without these technical details and various changes and modifications based on the following embodiments, the technical schemes claimed for protection in the claims of the present application can be implemented.
[0060] Unless the context requires otherwise, throughout the specification and claims, the word "comprise" and variations such as "include" and "have" should be construed in an open, inclusive sense, ie, should be interpreted as "including, but not limited to."
[0061] The following will be combined with the accompanying drawings to describe the various embodiments of the present invention in detail, so as to more clearly understand the purpose, characteristics and advantages of the present invention. It should be understood that the embodiments shown in the accompanying drawings are not intended to limit the scope of the present invention, but are only intended to illustrate the essential spirit of the technical solution of the present invention.
[0062] References throughout the specification to "one embodiment" or "an embodiment" indicate that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment. Thus, the appearances of "in one embodiment" or "in an embodiment" in various places throughout the specification are not necessarily all referring to the same embodiment. Furthermore, the particular features, structures, or characteristics may be combined in any manner in one or more embodiments.
[0063] As used in this specification and the appended claims, the singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise. It should be noted that the term "or" is generally employed in its sense including "and / or" unless the context clearly dictates otherwise.
[0064] In the following description, in order to clearly demonstrate the structure and working mode of the utility model, many directional words will be used for description, but the words "front", "back", "left", "right", "outside", "inside", "outward", "inward", "up", "down", etc. should be understood as convenient terms and should not be understood as restrictive terms.
[0065] The utility model relates to a ceiling 100, which is mainly used as a charging station for charging an intelligent robot. Figure 1 As shown, the canopy 100 includes a bracket 2 and a canopy body 1. The bracket 2 is placed on a reliable contact surface such as the ground or lawn, or is used to be detachably connected to the charging station and support the canopy body 1. The canopy body 1 is used to cover the top of the charging station for shading, rain, snow and wind protection, etc. The canopy body 1 is usually made of a light and strong material, such as aluminum, but is not limited thereto.
[0066] The shed 1 is connected to the bracket 2 through a connecting mechanism 3 and can rotate relative to the bracket 2 within a specific angle range, which is limited to the fully closed angle and the maximum opening angle of the shed 1, wherein the fully closed angle ≤ the rotation angle ≤ the maximum opening angle. At the fully closed angle, the shed 1 is in the first state. At the maximum opening angle, the shed 1 is in the second state. The shed 1 rotates relative to the bracket 2 with the connecting mechanism 3 as the rotation axis to achieve the effect of switching between the first state and the second state.
[0067] The direction in which the shelf body 1 switches from the first state to the second state is defined as "rear", and the direction in which the shelf body 1 switches from the second state to the first state is defined as "front".
[0068] When the shed 1 is placed above the charging station, the shed 1 is in the first state, where the shed 1 covers the charging station and the lawn mower that returns to the station for charging, providing shade and rain protection during charging, thereby improving the safety of charging. When the charging station needs maintenance, the presence of the roof will affect the convenience of operation, and at this time, the shed 1 is switched to the second state, where the shed 1 is rotated backward to a position above the charging station, away from the charging station, exposing the charging station below.
[0069] The shed 1 comprises a main shielding area 12 and two side shielding areas 11. The main shielding area 12 is used to cover the charging station. In the first state, the main shielding area 12 covers the top of the charging station. In the second state, the main shielding area 12 rotates to be away from the top of the charging station.
[0070] The side shielding areas 11 are located at the two wings of the main shielding area 12, and can be used to prevent rain, snow and wind. The ends of the two side shielding areas 11 close to the bracket 2 are respectively beyond the ends of the main shielding area 12 close to the bracket 2 and are rotatably connected to the bracket 2 through the two connecting mechanisms 3. That is, the ends of the two side shielding areas 11 close to the bracket 2 and the end of the main shielding area 12 close to the bracket 2 enclose a U-shaped opening.
[0071] The two side shielding areas 11 are inwardly buckled relative to the main shielding area 12 to form an arc surface with a certain curvature. In one embodiment, the side shielding area 11 and the main shielding area 12 are integrally formed. In one embodiment, the side shielding area 11 and the main shielding area 12 are independent of each other, and each part is connected and fixed by a connection method such as bolts. The utility model does not limit the specific shape and connection method of the side shielding area 11 and the main shielding area 12.
[0072] Each of the connection mechanisms 3 includes an articulated seat assembly 31 and an articulated shaft assembly adapted thereto, and the articulated seat assembly 31 can rotate relative to the articulated shaft assembly. The articulated shaft assembly is connected to one of the side shielding area 11 or the bracket 2, and the articulated seat assembly 31 is connected to the other of the side shielding area 11 or the bracket 2, and the articulated shaft assembly is rotatably connected to the articulated seat assembly 31, so that the bracket 2 and the shed body 1 can rotate relative to each other.
[0073] exist Figure 4 In the illustrated embodiment, the hinge shaft assemblies of the two connection mechanisms 3 are respectively connected to the two sides of the side shielding areas 11 facing the bracket 2, that is, located on the inner wall of the side shielding area 11, and the two hinge seat assemblies 31 are located at the bottom of the side shielding area 11. The two hinge seat assemblies 31 are respectively connected to the outer walls of the bracket 2 on both sides along the first direction X, and the two hinge seat assemblies 31 are respectively rotatably connected to the two hinge shaft assemblies, so that the shelf body 1 can rotate relative to the bracket 2.
[0074] Furthermore, if Figure 3 and Figure 4 As shown, each of the articulated seat components 31 includes a lower half shaft seat 314 and an upper half shaft seat 311 assembled therewith, the lower half shaft seat 314 is connected to the outer wall of the bracket 2 along the first direction X, and the upper half shaft seat 311 and the lower half shaft seat 314 are detachably connected and assembled to form an axis hole. The articulated shaft component includes a pin 32, one end of which is connected to the inner wall of the side shielding area 11, and the other end extends into the axis hole and can rotate in the axis hole.
[0075] Further, continue to refer to Figure 3 and Figure 4 The lower half-axle seat 314 includes a lower shaft hole plate 3141, a lower connecting plate 3142 and a plug-in portion 3143, wherein the lower shaft hole plate 3141 is an arc-shaped plate open toward the top, and the lower connecting plate 3142 is connected to one side of the lower shaft hole plate 3141, and the plug-in portion 3143 is connected to the other side of the lower connecting plate 3142, that is, the lower shaft hole plate 3141 is located between the lower connecting plate 3142 and the plug-in portion 3143.
[0076] The upper half shaft seat 311 includes an upper shaft hole plate 3111, an upper connecting plate 3112 and an inserting plate 3113. The upper shaft hole plate 3111 is an arc-shaped plate that is open toward the top and is assembled with the lower shaft hole plate 3141 to form the shaft hole. The upper connecting plate 3112 is connected to one side of the upper shaft hole plate 3111, and the inserting plate 3113 is connected to the other side of the upper shaft hole plate 3111, that is, the upper shaft hole plate 3111 is located between the upper connecting plate 3112 and the inserting plate 3113.
[0077] The upper connecting plate 3112 and the lower connecting plate 3142 may be fixedly connected by bolts and nuts or other methods.
[0078] The plug-in portion 3143 has a plug-in slot 3144 , and one end of the plug-in plate 3113 is connected to the upper shaft hole plate 3111 , and the other end is provided with an insert piece 3114 , which can be inserted into the plug-in slot 3144 .
[0079] During installation, the plug plate 3113 is first inserted into the plug slot 3144, and then the bolts and nuts between the upper connecting plate 3112 and the lower connecting plate 3142 are tightened to achieve a fixed connection.
[0080] Optionally, the plug-in portion 3143 includes a slot body 3145 connected to the lower shaft hole plate 3141 and a rear stop plate 3146 connected to the slot body 3145. The slot body 3145 is "L"-shaped, one section of which is connected to the lower shaft hole plate 3141, and the other section is bent and extended in the vertical direction and is provided with the above-mentioned plug-in slot 3144. The rear stop plate 3146 is connected to the top of the slot body 3145 and is plate-shaped.
[0081] The inner wall of the shelf body 1 is provided with a rear limit abutment plate 33. Figure 6 As shown, in the second state, the rear limit abutment plate 33 is located behind the pin shaft 32 and its lower surface abuts against the upper surface of the rear limit plate 3146, so that the center of gravity of the shed body 1 is located behind the axis of the pin shaft 32, and reliable positioning is achieved by relying on the deadweight of the shed body 1 without flipping forward.
[0082] Further, refer to Figure 6 and Fig.14 The upper surface of the rear limit abutment plate 33 is provided with a plurality of first ridges 34 arranged at intervals to increase the strength of the rear limit abutment plate 33 .
[0083] The bracket 2 includes two support members and a shelf 23. The two support members are spaced apart in a first direction, and are used to connect to the charging station or the ground and support the shelf 23. The bottom end of the shelf 23 is connected to the top end of the support member, and the top end extends in a direction deviating from the vertical direction and tilted toward the front end. That is, the shelf 23 is tilted as a whole, with the top end facing forward and the bottom end facing backward. In the first state, the rear end of the shed body 1 is connected to the shelf 23.
[0084] Furthermore, if Figure 1 As shown, each of the support members includes a base 21 and a support body 22 extending in a vertical direction. The support body 22 is substantially columnar and has a top end connected to the shelf 23 and a bottom end connected to the base 21 .
[0085] One end of the base 21 is connected to the bottom end of the support body 22, and the other end extends toward the front end. The base 21 is connected to the charging station or against the ground. The base 21 is used to increase the contact area between the support body 22 and the contact surface to achieve a stable placement effect.
[0086] exist Figure 1 In the illustrated embodiment, one end of the base 21 of the two support members is connected to the support body 22, and the other end is offset from the front, and the distance between the two support bodies 22 gradually increases from front to back, forming an "eight" shape to increase the stability of the support member. In other embodiments, one end of the base 21 is connected to the support body 22, and the other end can extend toward the rear end or other directions, without limiting the specific shape of the base 21. Preferably, the base 21 and the support body 22 are integrally formed to increase the stability of the support member.
[0087] Alternatively, if Figure 5 , Figure 6 and Figure 8 As shown, the pin shaft 32 extends along the first direction and includes a first section 321 and a second section 322 connected to each other along its axial direction, the first section 321 is connected to the shelf body 1 and is provided with a plurality of second ridges 323 on the radial outer side for limiting and improving the shear resistance of the pin shaft 32. The number of the second ridges 323 is at least one. The second section 322 matches the size of the shaft hole and is located in the shaft hole.
[0088] Alternatively, if Figure 4 As shown, the hinge seat assembly 31 includes a protrusion 315 , and the protrusion 315 is located between the outer wall of the bracket 2 and the upper shaft hole plate 3111 and abuts against the upper shaft hole plate 3111 .
[0089] Since the outer wall of the support body 22 is not a plane and has a certain curvature, directly installing the upper shaft hole plate 3111 may not fit tightly, so a protrusion 315 is provided between the outer wall of the support body 22 and the upper shaft hole plate 3111, and the contact surface between the protrusion 315 and the upper shaft hole plate 3111 is a plane, which can effectively solve the problem of not fitting tightly and reduce the noise caused by unstable installation. In other words, there is an installation gap between the upper shaft hole plate 3111 and the outer wall of the bracket 2, and the protrusion 315 can fill the installation gap to reduce the noise caused by unstable installation.
[0090] Furthermore, one of the two protrusions 315 is connected to the top surface of the lower connecting plate 3142 and is located at a tangent position of the lower shaft hole plate 3141, and the other is connected to the top surface of the slot body 3145 close to the lower shaft hole plate 3141 and is also located at a tangent position of the lower shaft hole plate 3141. That is, the width of the lower half shaft seat 314 along the axis direction of the pin shaft 32 is greater than the width of the upper half shaft seat 311 along the axis direction of the pin shaft 32, that is, the width from the lower half shaft seat 314 to the bracket 1 is greater than the width from the upper half shaft seat 311 to the bracket 1, that is, the inner side of the lower half shaft seat 314 exceeds the inner side of the upper half shaft seat 311, that is, the width of the lower connecting plate 3142, the lower shaft hole plate 3141, and the slot body 3145 of the lower half shaft seat 314 along the axis direction of the pin shaft 32 is greater than the upper connecting plate 3112, the upper shaft hole plate 3111 and the plug plate 3113, and the protrusion 315 is connected to the top surface of the lower connecting plate 3142 and the slot body 3145 and is located near the bracket 2. Preferably, the two protrusions 315 are symmetrically arranged and the outer sides are respectively against the upper shaft hole plate 3111.
[0091] Preferably, the protrusion 315 is formed integrally with the lower shaft hole plate 3141. In other embodiments, the protrusion 315 can be disposed in the installation gap between the upper shaft hole plate 3111 and the outer wall of the bracket 2 in various ways.
[0092] In other embodiments, only one protrusion 315 may be provided, and the protrusion 315 may be located on the lower connecting plate 3142 or may be connected to the slot body 3145 .
[0093] exist Figure 4 and Figure 5 In the embodiment shown, both the lower shaft hole plate 3141 and the upper shaft hole plate 3111 have semicircular plates, and the two are assembled to form a circular shaft hole. In other embodiments, one of the upper shaft hole plate 3111 and the lower shaft hole plate 3141 is a minor arc and the other is a major arc, as long as they complement each other to form a circular shaft hole.
[0094] The ends of the two side shielding areas 11 close to the bracket 2 and the end of the main shielding area 12 close to the bracket 2 enclose a U-shaped opening, and the overall contour of the two sides and the top of the shelf 23 is defined as the outer contour of the shelf 23, which is also U-shaped and fits the U-shaped opening of the shelf body 1. In the first state, the outer contour of the shelf 23 is located in the U-shaped opening of the shelf body 1.
[0095] As a preferred solution, the outer contour of the shelf 23 is provided with a protruding front limit plate 35, such as Figure 3 As shown, the inner wall of the U-shaped opening of the shed body 1 is provided with a raised stop bar along the edge contour. In the first state, the top surface of the front limit plate 35 abuts against the bottom surface of the raised stop bar, so that the shed body 1 is completely closed.
[0096] It is understandable that the front stop plate 35 can be disposed on both sides or the top of the shelf 23, or can be disposed on both sides and the top of the shelf 23. The raised stop bar can be disposed at any position in the U-shaped opening of the shelf 23, and the raised stop bar 13 does not need to completely match the front stop plate 35, as long as it partially matches.
[0097] Preferably, the shelf 23 is provided with a transparent window 231. Fig.11 As shown, the transparent window 231 may be a glass window, which facilitates observation of the charging station.
[0098] As an optional solution, the canopy 1 can also be foldable or retractable, and the canopy 1 is configured to cover the top of the charging station in the first state. In the second state, the canopy 1 does not cover the charging station. Optionally, the canopy 1 is composed of multiple baffles, and the multiple baffles are respectively connected in a retractable manner through a telescopic frame. In other embodiments, the canopy 1 can also be configured in other foldable or retractable ways.
[0099] When the shed body 1 is in the first state, the bracket 2 and the shed body 1 are reliably locked by the locking mechanism 4. When it is necessary to switch to the second state, the locking mechanism 4 is unlocked and can be rotated to the second state.
[0100] exist Figure 2 , Fig.10 and Fig.11 In the embodiment of the present invention, the locking mechanism 4 includes a locking seat 41 and a locking hook 42. The locking seat 41 is connected to one of the bracket 2 or the shed body 1 and has a locking hole 411. The locking hook 42 is connected to the other of the bracket 2 or the shed body 1. When the shed body 1 is in the first state, the locking hook 42 can be locked into the locking hole 411 to lock the shed body 1 and the bracket 2. When the shed body 1 needs to be rotated to the second state, the locking hook 42 needs to be moved out of the locking hole 411 to unlock and separate the bracket 2 and the shed body 1.
[0101] In one embodiment, the locking hook 42 is a block connected to the shelf 23 of the bracket 2, while the locking seat 41 is connected to the shelf body 1, and the locking hole 411 is a slot for accommodating the buckle.
[0102] exist Figure 2 , Fig. 9 , Fig.10 and Fig.15 In the embodiment shown in FIG. 1 , two lock seats 41 are arranged at intervals along the first direction and are respectively connected to the end of the shed body 1 close to the shelf frame 23 , that is, the locking area 123 of the shed body 1 , which will be described in detail below. Each lock seat 41 is provided with a lock hole 411 .
[0103] The locking mechanism 4 further includes a lock box 43, a lock frame 44 and a reset member.
[0104] The lock box 43 is connected to the top of the shelf 23 and includes two end plates 431 spaced apart along the first direction and at least one side plate 432 extending along the first direction. The two ends of the side plate 432 are respectively connected to the two end plates 431 and are provided with two slide grooves 4321.
[0105] exist Figure 1 In the embodiment shown, the top of the shelf 23 is provided with a mounting groove, which is formed by a depression at one end of the shelf 23 away from the supporting body 22 and is open downward, and has a rear side wall, and the top and front of the mounting groove are both open sides. The lock box 43 is installed in the mounting groove and the side plate 432 of the lock box 43 is located on the upper side of the mounting groove, that is, the side plate 432 is exposed above the mounting groove.
[0106] In addition, if Fig.17 , Fig.18 and Fig.19 As shown, the rear side wall of the installation slot is provided with a screw hole column 47 extending toward the front. The rear of the lock box 43 is in an open state and aligned with the rear side wall of the installation. The lock box 43 also includes a front side plate 433, which is located in front of the lock box 43 and is arranged opposite to the rear side wall of the installation slot. The front side plate 433 is provided with a connecting column 46, which is located in the lock box 43 and is tubular. The connecting column 46 extends along the rear and can be sleeved outside the connecting column 46. The screw hole columns 47 are respectively provided with screw holes, and the screw hole columns 47 and the connecting columns 46 can be connected by bolts to achieve the connection between the lock box 43 and the shelf 23.
[0107] The lock frame 44 is rod-shaped and extends along the first direction. The lock frame 44 is horizontally mounted in the lock box 43 and two ends of the lock frame 44 are respectively connected to two end plates 431 of the lock box 43 .
[0108] The lock hook 42 includes a sleeve 423, two sliding parts 422 and two lock hook bodies 421. The sleeve 423 is sleeved outside the lock frame 44 and can move along the length direction of the lock frame 44, that is, along the first direction. One end of the two sliding parts 422 is respectively connected to the sleeve 423 and the other end extends from the two sliding grooves 4321 of the side plate 432 to the outside of the lock box 43. Fig. 9 and 10 In the illustrated embodiment, the sliding portion 422 is a disc-like cam-shaped structure. In other embodiments, the sliding portion 422 may also be a columnar shape or other shapes.
[0109] The two lock hook bodies 421 extend along the first direction respectively, and one end is connected to one end of the two sliding parts 422 outside the lock box 43 respectively, and the other end is used to move into or out of the lock hole 411. The lock hook body 421 is adapted to the lock hole 411, that is, the lock hook body 421 can be hooked with the lock seat 41, so as to limit the shelf body 1 from rotating.
[0110] The push sliding portion 422 can drive the two locking hook bodies 421 to move along the first direction, so that the locking hook bodies 421 move into or out of the locking holes 411 of the two locking seats 41 , thereby controlling the hooking and separation of the locking hook bodies 421 and the locking seats 41 .
[0111] The reset member is a spring 45 sleeved on the lock frame 44 and located between the sleeve 423 and the lock box 43. Fig. 9 In the illustrated embodiment, the reset member is located between one end of the sleeve 423 away from the lock hook body 421 inserted into the lock hole 411 and the end plate 431 of the lock box 43, and can apply a certain thrust to the sleeve 423 to facilitate the lock hook body 421 to move into the lock hole 411. In other embodiments, the reset member can also be located between the other end of the sleeve 423 and the other end plate 431 of the lock box 43 and connected to the sleeve 423 and the lock box 43, and the reset member has a pulling force on the sleeve 423, which can pull the sleeve 423 to move, thereby locking the lock hook body 421 into the lock hole 411. In other embodiments, the reset member can also adopt a magnetic attraction method, where two magnets are respectively arranged on the end plate 431 of the lock box 43 and the sleeve 423, and the two magnets are attracted or repelled to drive the lock hook body 421 to move into the lock hole 411.
[0112] Preferably, the lock hook 42 further comprises a shifting block 424, and the shifting block 424 is connected to the sleeve 423. A movable groove is provided on the rear side wall of the installation groove, and the movable groove is connected to the installation groove. The shifting block 424 is exposed to the rear of the lock box 43 and is located in the movable groove, and the shifting block 424 can move in the movable groove.
[0113] When the lock hook body 421 needs to be moved out of the lock hole 411 , the shifting block 424 can be moved to drive the lock hook body 421 to move out of the lock hole 411 .
[0114] It should be understood that in some embodiments, the reset member is not provided, and the shifting block 424 needs to be moved to move the lock hook body 421 out of the lock hole 411 or into the lock hole 411. In other embodiments, the shifting block 424 is not provided, and the lock hook body 421 can be moved out of the lock hole 411 or into the lock hole 411 by moving the sleeve 423. In this case, the sleeve 423 needs to be exposed outside the lock box 43 for easy operation.
[0115] Optionally, in some embodiments, only one lock seat 41 is connected to the shelf body 1 , and only one lock hook body 421 that is locked into the lock seat 41 is disposed on the sleeve 423 .
[0116] Optionally, the locking mechanism 4 also includes two limit partitions 48, which are arranged at intervals along the length direction of the lock frame 44 and connected to the side plate 432 of the lock box 43, and the two limit partitions 48 are located at both ends of the shift block 424 to limit the moving distance of the shift block 424.
[0117] Furthermore, the limiting partition 48 is connected to the side plate 432 and is provided with an avoidance opening 481 , which can facilitate the sleeve 423 to pass through, and the avoidance opening 481 is used to avoid the movement path of the sleeve 423 on the lock frame 44 .
[0118] In one embodiment, a stop block 49 is provided on the sliding portion 422, and the stop block 49 is used to limit the length of the lock hook body 421 connected to the sliding portion 422 protruding out of the slide groove 4321, so as to facilitate the alignment of the lock hook body 421 and the lock seat 41, especially when there are two lock hooks 42, to ensure that the hooking positions of the two lock hooks 42 are consistent.
[0119] The projection of the shelf 23 in the vertical direction partially overlaps with the charging station, and the overlapping position covers the charging interface below. Even when the shelf 1 is in the second state, that is, the shelf 1 is in the open state, the shelf 23 can also cover and protect the charging interface.
[0120] The ceiling also includes a reinforcing mechanism, which is connected to the bracket 2 and the shed body 1, and is used to strengthen the strength of the bracket 2 and the shed body 1. Of course, in some embodiments, the reinforcing mechanism can also be only provided on the bracket 2 or the shed body 1. It should be understood that in some embodiments, the shed body 1 and the bracket 2 are fixedly connected, and the reinforcing mechanism of the utility model can also be used.
[0121] exist Figure 1 , Figure 2 and Fig.11 In the embodiment shown, the two support members are spaced apart along the first direction, and the reinforcing mechanism includes a first reinforcing assembly 7, which includes a bottom metal sheet 71 extending along the first direction, and the two ends of the bottom metal sheet 71 are respectively connected to the two support members. The first reinforcing assembly 7 is used to strengthen the strength of the bracket 2 to prevent compression deformation during use. The first reinforcing assembly 7 can be arranged on the base 21 or the support body 22. Fig.12 In the illustrated embodiment, two ends of the bottom metal sheet 71 are connected to the supporting bodies 22 of the two supporting members through two fixing seats 73 respectively.
[0122] Specifically, the two fixing seats 73 are respectively connected to the bottom ends of the supporting bodies 22 of the two supporting members, and the bottom surface of each fixing seat 73 is respectively provided with a screw hole, and the bottom metal sheet 71 can be attached to the bottom surface and is provided with a connection hole corresponding to the screw hole. During installation, the bottom metal sheet 71 is pressed on the screw hole, and the connection hole on it is aligned with the screw hole, and is tightened and fixed by bolts. Of course, in other embodiments, the bottom metal sheet 71 can also be connected to the fixing seat 73 in other ways.
[0123] Preferably, the bottom surfaces of the two supporting bodies 22 are respectively provided with first alignment grooves 74, and the first alignment grooves 74 are formed by recessing a preset depth on one side of the supporting bodies 22 that is opposite to each other. The plane of the bottom metal sheet 71 is perpendicular to the horizontal direction, and both ends are respectively inserted into the first alignment grooves 74 of the two supporting bodies 22. The first alignment grooves 74 are used to align the bottom metal sheet 71 before installation, making installation easier.
[0124] Both ends of the bottom metal sheet 71 are respectively provided with connecting terminals 72 located outside the first alignment groove 74. The connecting terminals 72 are preferably integrally formed with the bottom metal sheet 71 and are provided with connecting holes aligned with the screw holes of the fixing seat 73. The connecting terminals 72 can be connected to the fixing seat 73 by bolts.
[0125] Furthermore, a second alignment groove 75 is further provided at the bottom end of the support body 22, and the second alignment groove 75 is used to position the connection terminal 72. Specifically, a portion of the connection terminal 72 matches the inner wall of the second alignment groove 75 and is located in the second alignment groove 75. During installation, only a portion of the connection terminal 72 needs to be installed in the second alignment groove 75, so that the connection hole on the connection terminal 72 and the screw hole on the fixing seat 73 can be aligned, and then the bolts can be tightened.
[0126] In some embodiments, a positioning column 76 is disposed at the bottom end of the support body 22. The positioning column 76 is in a rectangular tube shape and is disposed next to the connection terminal 72, and a notch is disposed at one corner of the positioning column 76, which is the second alignment groove 75. The connection terminal 72 is in a rectangular sheet shape and one corner of the connection terminal 72 is located in the notch of the positioning column 76, and the adjacent two sides of the connection terminal 72 abut against the two sides of the notch formed by the positioning column 76.
[0127] Since the connecting terminal 72 is provided with a connecting hole that needs to be connected to the screw hole, a hole of a certain size needs to be reserved. The second alignment groove 75 achieves alignment by positioning a corner of the connecting terminal 72. This alignment method can maximize the reduction of the area required for alignment without occupying the layout position of the connecting hole.
[0128] exist Fig.11 and 12In the illustrated embodiment, the positioning column 76 is a hollow column. It should be understood that in other embodiments, the positioning column 76 may also be a solid column, and the inner wall of the notch may be adapted to a corner of the connecting terminal 72 .
[0129] Optionally, the reinforcing mechanism includes a second reinforcing assembly 8, which includes a main metal sheet 81, and the main metal sheet 81 is connected to the main shielding area 12, and is used to strengthen the strength of the shed body 1 to prevent compression deformation in bad weather or other operating environments. The second reinforcing assembly 8 is mainly connected to the bending part, supporting part or connecting part of the shed body 1, so as to enhance the bending resistance of the shed body 1 and prevent deformation.
[0130] In one embodiment, the main metal sheet 81 is installed at the maximum curvature position of the main shielding area 12. Figure 1 and Fig.13 In the embodiment shown, the main shielding area 12 includes a main shielding area 121, a bending area 122 and a locking area 123 connected in sequence. In the first state, the main shielding area 121, the bending area 122 and the locking area 123 are arranged in sequence from front to back. The bending area 122 is formed by bending the end of the main shielding area 121 close to the shelf 23 toward the shelf 23.
[0131] The locking area 123 is connected to the end of the bending area 122 away from the main shielding area 121, and the two lock seats 41 are respectively connected to the locking area 123. In the first state, the locking area 123 is locked with the top of the shelf 23, and the main shielding area 121 covers the top of the charging station. In the second state, the locking area 123 is unlocked and separated from the shelf 23, and the main shielding area 121 is away from the top of the charging station.
[0132] The bending area 122 is the location of the maximum curvature of the main shielding area 12, and the main metal sheet 81 extends along the first direction and is connected to the bending area 122 to enhance the strength of the bending area 122 and prevent it from bending and deforming. It should be understood that in other embodiments, if the main shielding area 12 has other bending areas 122, the main metal sheet 81 can also be installed at other bending areas 122.
[0133] The two ends of the main metal sheet 81 are bent to form two main plug-in parts 82, and the main shielding area 12 is provided with a main plug-in groove 124 plugged into the main plug-in part 82 at the corresponding position. The main metal sheet 81 is provided with a connecting hole, and the bolt connects the main metal sheet 81 to the main shielding area 12 through the connecting hole.
[0134] Optionally, the second reinforcement assembly 8 includes two top mounting seats 83, such as Figure 7As shown, the two top mounting seats 83 are arranged at intervals along the first direction and are respectively connected to the bending area 122 of the main shielding area 12, and each top mounting seat 83 is provided with a screw hole. The main metal sheet 81 is provided with a connecting hole, which is aligned with the screw hole of the top mounting seat 83, and the main metal sheet 81 can be connected to the top mounting seat 83 by bolts. In some other embodiments, screw holes can also be directly provided in the main shielding area 12, and the main metal sheet 81 can be directly connected to the main shielding area 12 by bolts.
[0135] The number of the top mounting seats 83 may also be three, four or more, without limiting the specific number of the bottom mounting seats.
[0136] Furthermore, the bending area 122 is provided with two main plug-in slots 124, which are respectively formed by the bottom surface depression of the bending area 122, and the two ends of the main metal sheet 81 are respectively bent to form two main plug-in parts 82, and the two main plug-in parts 82 are respectively located in the two main plug-in slots 124. The two top mounting seats 83 are located between the two main plug-in slots 124.
[0137] In one embodiment, in the first state, the main shielding area 12 includes a main shielding plate and a plurality of main reinforcing ribs 125 located below the main shielding plate, wherein two of the main reinforcing ribs 125 are located in the bending area 122 and are respectively recessed to form the two main plug-in slots 124. In other words, the main plug-in slots 124 are formed by the recess of the bottom surface of the main reinforcing rib 125, and the main metal sheet 81 is attached to the bottom surface of the main reinforcing rib 125.
[0138] Furthermore, at least a portion of the main reinforcing ribs 125 is in a honeycomb shape, while another portion may be in a strip shape or other shapes, and the main plug-in slot 124 is formed by the depression of two honeycomb-shaped main reinforcing ribs 125 .
[0139] In one embodiment, the second reinforcing component 8 further includes a side metal sheet 84 , wherein the side metal sheet 84 is connected to the side shielding area 11 , and the side metal sheet 84 can enhance the strength of the side shielding area 11 .
[0140] In some embodiments, the side shielding area 11 also includes a bent portion in a bent state, and as a preferred solution, the side metal sheet 84 is connected to the bent portion.
[0141] exist Figure 1 In the illustrated embodiment, the side shielding area 11 includes an integrally formed side shielding area 111 and a supporting area 112 , wherein the side shielding area 111 is connected to two wings of the main shielding area 12 , and the side shielding area 111 is used for shading light and rain.
[0142] The support area 112 is beyond the end of the main shielding area 12 close to the shelf 23 and is rotatably connected to both sides of the shelf 23 along the first direction. The support area 112 is used to support the side shielding area 111 and the main shielding area 12, and needs to bear a large load. Therefore, as a preferred solution, the side metal sheet 84 is connected to the support area 112 to prevent the support area 112 from being compressed and deformed, and to ensure the strength of the support area 112 to support the entire shed 1.
[0143] Furthermore, the inner side of the support area 112 close to the shelf 23 is also bent inward so that a portion of the support area 112 forms a bent portion, and the side metal sheet 84 is preferably connected to the bent portion.
[0144] Specifically, the bent portion is provided with a side mounting seat 86 having a screw hole, and the side metal sheet 84 also has a connecting hole, and the side metal sheet 84 and the side mounting seat 86 can be connected by bolts.
[0145] Preferably, the side shielding area 11 is further provided with a plurality of side reinforcing ribs 113, and the plurality of side reinforcing ribs 113 are used to strengthen the strength of the side shielding area 11. The plurality of side reinforcing ribs 113 can be evenly distributed in the side shielding area 11, or can be distributed as needed. For example, the support area 112 is provided with at least a plurality of side reinforcing ribs 113, and the bending portion of the support area 112 is provided with at least two spaced side reinforcing ribs 113, and a portion of the two side reinforcing ribs 113 is recessed to form a side plug-in groove 116. The two ends of the side metal sheet 84 are respectively bent to form a side plug-in portion 85, such as Fig.16 As shown, the two side plug-in portions 85 are located in the two side plug-in grooves 116 . The side mounting seat 86 is located between the two side plug-in grooves 116 and connected to the side metal sheet 84 .
[0146] Furthermore, if Figure 5 As shown, the plurality of side reinforcing ribs 113 located in the support area 112 are arranged at intervals in the transverse direction, and these side reinforcing ribs 113 are defined as transverse reinforcing ribs 114, wherein two transverse side reinforcing ribs 113 span the bending area 122 and form side plug-in grooves 116. The other three side reinforcing ribs 113 are located between the two side reinforcing ribs 113 provided with the side plug-in grooves 116, and the two ends of the other three side reinforcing ribs 113 are respectively abutted against the two side reinforcing ribs 113, that is, the extension direction of the side reinforcing ribs 113 is perpendicular to the extension direction of the transverse reinforcing ribs 114 and arranged at intervals, and the three side reinforcing ribs 113 are defined as longitudinal reinforcing ribs 115.
[0147] After the two ends of the side metal sheet 84 are inserted into the two insertion grooves 3144, they cover a longitudinal reinforcing rib 115 located in the middle. The two side mounting seats 86 are located on the extension path of the longitudinal reinforcing rib 115 in the middle. The side insertion grooves 116 are used to accommodate the side insertion portions 85 and position the connection holes of the side metal sheet 84 so that they are aligned with the screw holes of the side mounting seats 86, thereby facilitating the installation of bolts and reducing the weight of the shed body 1.
[0148] Preferred embodiments of the present invention have been described in detail above, but it should be understood that aspects of the embodiments can be modified, if necessary, to employ aspects, features and concepts of the various patents, applications and publications to provide further embodiments.
[0149] These and other changes can be made to the embodiments in light of the above detailed description.In general, in the claims, the terms used should not be considered limited to the specific embodiments disclosed in the specification and the claims, but should be construed to include all possible embodiments along with the full scope of equivalents to which these claims are entitled.
[0150] Those skilled in the art will appreciate that the above-mentioned embodiments are specific examples for implementing the present invention, and in actual applications, various changes may be made thereto in form and detail without departing from the spirit and scope of the present invention.
Claims
1. A ceiling, characterized in that: include: Bracket; A shed body, the shed body is movably connected to the bracket and is configured to rotate relative to the bracket between a first state and a second state; In the first state, the shed covers the top of the charging station; In the second state, the shed body rotates to an upper position away from the charging station; as well as A locking mechanism, the locking mechanism comprising: A lock seat, the lock seat is connected to one of the bracket or the shelf body and has a lock hole; as well as A locking hook is connected to the bracket or the other of the shed body, and the locking hook is configured to be locked into the locking hole to lock the shed body and the bracket and to be moved out of the locking hole to unlock the bracket and the shed body.
2. The ceiling according to claim 1, characterized in that: The locking mechanism comprises: A locking frame connected to the bracket; A reset member, the reset member is connected to the bracket and is configured to drive the locking hook to lock into the locking hole; The locking hook is slidably connected to the locking frame.
3. The ceiling according to claim 2, characterized in that: The locking mechanism comprises a lock box, which is connected to the bracket and has a side plate and two end plates arranged opposite to each other, and the side plate is provided with a slide groove; The lock frame is located in the lock box and its two ends are respectively connected to the two end plates of the lock box; The locking hook comprises: A sleeve, the sleeve is sleeved outside the lock frame and is slidably connected to the lock frame; a sliding portion, one end of which is connected to the sleeve, and the other end of which extends from the slide groove to the outside of the lock box; and A lock hook body, wherein one end of the sliding portion located outside the lock box is connected to the lock hook body, and the lock hook body can be moved into or out of the lock hole; The reset element is a spring sleeved on the lock frame and located between the sleeve and the lock box.
4. The ceiling according to claim 3, characterized in that: The lock hook further comprises a shifting block, which is connected to the sleeve and exposed outside the lock box. The shifting block can be moved to drive the lock hook body to move into or out of the lock hole.
5. The ceiling according to claim 4, characterized in that: The locking mechanism also includes two limit baffles, which are arranged at intervals along the length direction of the lock frame and connected to the inner wall of the lock box. The two limit baffles are located at both ends of the shift block and are used to limit the moving distance of the shift block.
6. The ceiling according to claim 5, characterized in that: The limiting partition is connected to the side plate and is provided with an escape opening for escaping the sleeve.
7. The ceiling according to claim 4, characterized in that: The top of the bracket is provided with a mounting groove, and the side wall of the mounting groove is provided with a moving groove; The lock box is connected to the side wall of the mounting groove; The shift block is located in the moving groove.
8. The ceiling according to claim 7, characterized in that: The side wall of the installation slot is provided with a screw hole column; the lock box is provided with a connecting column sleeved on the screw hole column; The screw hole column and the connecting column are connected by bolts.
9. The ceiling according to claim 1, characterized in that: The support comprises: Two support members, the two support members are spaced apart from each other; and A shelf, the bottom end of which is connected to the top end of the support member, the top end of which is inclined and extends away from the vertical direction and is provided with the locking hook; The shed body comprises: A main shielding area, wherein the lock seat is provided at the end of the main shielding area close to the scaffold; Two side shielding areas, the two side shielding areas are located at two wings of the main shielding area, and the ends of the two side shielding areas close to the supporting member respectively exceed the ends of the main shielding area close to the shelf and are rotatably connected to the bottom end of the shelf; In the first state, the main shielding area covers the top of the charging station; In the second state, the main shielding area is rotated to be away from the charging station.
10. The ceiling according to claim 1, characterized in that: The ceiling further comprises a reinforcing mechanism, which is connected to the support and / or the shed body and is used to strengthen the strength of the support and / or the shed body.