Lifting mechanism of vehicle-mounted tea table, vehicle-mounted tea table and vehicle
The height of the vehicle-mounted tea table operating panel is adjustable through the guide components and linear drive components of the lifting mechanism, solving the problem of inconsistent user heights and improving user experience and equipment stability.
Patent Information
- Application Number
- CN202520588520.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-03-31
AI Technical Summary
Traditional in-vehicle tea tables cannot meet the diverse needs of different users. The inconsistent height of users means that the height of the control panel cannot be adjusted, affecting comfort.
The system employs a lifting mechanism, including a guide assembly and a linear drive assembly. The height of the operating table is adjusted through the cooperation of the guide and the sliding mechanism, and the force is balanced to improve stability through the sliding cooperation between the guide and the tea table body.
The height of the control panel can be flexibly adjusted to meet the needs of different users, improve the stability and smoothness of the control panel and tea table body, simplify the structure and reduce the difficulty of assembly and maintenance.
Smart Images

Figure CN223812536U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of vehicle accessories, and particularly relates to a lifting mechanism of a vehicle-mounted tea table, the vehicle-mounted tea table and a vehicle. BACKGROUND
[0002] With the improvement of living standards, people have higher and higher requirements for the comfort of the vehicle environment, and as a result, vehicle-mounted tea tables gradually appear in everyone's field of vision. Specifically, as a tea drinking tool, the vehicle-mounted tea table can meet the basic tea drinking needs of users whether in congested road sections during commuting or during long-distance travel.
[0003] However, the traditional vehicle-mounted tea table usually comprises a tea table body and an operation table, wherein the tea table body can store tea pots, water bottles and the like, and the operation table is fixedly arranged on the tea table body and used for tea brewing operation. In this arrangement, the height of the operation table is constant, but the heights of different users may be different, and accordingly, the height requirements for the operation table are different, thereby causing the vehicle-mounted tea table to be unable to meet the diversified use needs of different users. CONTENT OF THE UTILITY MODEL
[0004] The purpose of the embodiments of the application is to provide a lifting mechanism of a vehicle-mounted tea table, the vehicle-mounted tea table and a vehicle, which can solve the problem that the vehicle-mounted tea table in the related art cannot meet the diversified use needs of different users.
[0005] The embodiments of the application provide a lifting mechanism of a vehicle-mounted tea table, the vehicle-mounted tea table comprising a tea table body and an operation table, and the lifting mechanism comprising:
[0006] at least two guide assemblies, including a first guide assembly and a second guide assembly, the guide assembly comprising a guide piece and a sliding piece which are slidingly fitted along the height direction of the vehicle-mounted tea table, the guide piece of the first guide assembly being connected to the front end of the tea table body, the sliding piece of the first guide assembly being connected to the front end of the operation table, the guide piece of the second guide assembly being connected to the rear end of the tea table body, and the sliding piece of the second guide assembly being connected to the rear end of the operation table;
[0007] a linear driving assembly connected to the tea table body and the operation table, and the linear driving assembly being used to drive the operation table to move along the height direction of the vehicle-mounted tea table.
[0008] In the embodiment of the present application, the linear driving assembly of the lifting mechanism is connected with the tea table body and the operation table, and the linear driving assembly is used to drive the operation table to move along the height direction of the vehicle-mounted tea table. After such arrangement, the operation table is driven by the linear driving assembly to move along the height direction of the vehicle-mounted tea table, so that the height of the operation table can be changed. In this way, the vehicle-mounted tea table can meet the diversified use requirements of different users.
[0009] In addition, in the embodiment of the present application, the guide of the first guide assembly of the lifting mechanism is connected with the front end of the tea table body, the sliding part of the first guide assembly is connected with the front end of the operation table, the guide of the second guide assembly of the lifting mechanism is connected with the rear end of the tea table body, and the sliding part of the second guide assembly is connected with the rear end of the operation table. After such arrangement, the front end of the operation table is in sliding fit with the front end of the tea table body through the first guide assembly, and the rear end of the operation table is in sliding fit with the rear end of the tea table body through the second guide assembly. In this way, the front end and the rear end of the operation table jointly bear the stress, and the front end and the rear end of the tea table body jointly bear the stress. This makes the stress on the operation table and the tea table body more balanced, thereby improving the stability of the operation table and the tea table body.
[0010] Optionally, the guide assembly comprises at least two guides, each of which is arranged side by side along the width direction of the vehicle-mounted tea table, and each of the guides is in sliding fit with the corresponding sliding part along the height direction of the vehicle-mounted tea table. After such arrangement, the operation table and the tea table body have a larger fit area, thereby improving the stability of the movement of the operation table.
[0011] Optionally, the guide assembly further comprises a first mounting part, each of the guides is connected with the first mounting part, and the first mounting part is connected with the tea table body. After such arrangement, each guide is connected to the first mounting part, and then the first mounting part is assembled on the tea table body. This makes the number of components involved in the lifting mechanism as a whole smaller, thereby simplifying the structure of the lifting mechanism and reducing the assembly difficulty of the lifting mechanism.
[0012] Optionally, each of the guides is detachably connected with the first mounting part, and the first mounting part is detachably connected with the tea table body. Such a design allows the guides to be detached from the first mounting part, and allows the first mounting part to be detached from the tea table body, so that the guides and the first mounting part can be replaced, and the maintenance difficulty of the guides and the first mounting part is reduced.
[0013] Optionally, the first mounting part is provided with a first weight-reducing hole. The existence of the first weight-reducing hole reduces the weight of the first mounting part, so that the lifting mechanism as a whole is lighter, which is conducive to reducing the energy consumption of the vehicle.
[0014] Optionally, the guide assembly comprises at least two sliding members, the at least two sliding members are arranged in the height direction of the vehicle-mounted tea table and are in sliding cooperation with the same guide member in the height direction of the vehicle-mounted tea table. In this way, the operation table and the tea table body have a larger cooperation area, so that the movement of the operation table is more stable.
[0015] Optionally, the guide assembly further comprises a second mounting member, each sliding member is connected with the second mounting member, and the second mounting member is used to be connected with the operation table. In this way, each sliding member is connected to the second mounting member, and then the second mounting member is uniformly assembled on the operation table, which also makes the number of components involved in the lifting mechanism as a whole smaller, thereby simplifying the structure of the lifting mechanism and reducing the assembly difficulty of the lifting mechanism.
[0016] Optionally, each sliding member is detachably connected with the second mounting member, and the second mounting member is used to be detachably connected with the operation table. This design allows the sliding member to be detached from the second mounting member, and allows the second mounting member to be detached from the operation table, so that the sliding member and the second mounting member can be replaced, and the maintenance difficulty of the sliding member and the second mounting member is reduced.
[0017] Optionally, the second mounting member is provided with a second weight-reducing hole. The existence of the second weight-reducing hole reduces the weight of the second mounting member, which also makes the lifting mechanism as a whole lighter, thereby reducing the energy consumption of the vehicle.
[0018] Optionally, the linear drive assembly is used to be arranged at the rear end of the operation table and is used to be connected with the rear end of the operation table and the rear end of the tea table body. In this way, the linear drive assembly basically does not occupy the space in front of the operation table and below the operation table, thereby facilitating the arrangement of other devices in front of the operation table and below the operation table.
[0019] Optionally, the linear drive assembly comprises a rotary drive member, a lead screw and a nut, the fixed end of the rotary drive member is used to be fixedly arranged on the tea table body, the nut is used to be fixedly arranged on the operation table, the driving end of the rotary drive member is in transmission connection with the lead screw, and the nut is sleeved on the lead screw and is in threaded connection with the lead screw. The threaded connection transmission is more stable and has higher transmission precision, so that the movement of the operation table is more stable and reliable.
[0020] In a second aspect, the embodiments of the present application further provide a vehicle tea table, which comprises a tea table body, an operation table and the lifting mechanism described above, the guide of the first guide assembly is connected with the front end of the tea table body, the sliding part of the first guide assembly is connected with the front end of the operation table, and the guide of the second guide assembly is connected with the rear end of the tea table body, and the sliding part of the second guide assembly is connected with the rear end of the operation table. The vehicle tea table has the same beneficial effects as the lifting mechanism described above, and will not be repeated here.
[0021] In a third aspect, the embodiments of the present application further provide a vehicle, which comprises the vehicle tea table described above. The vehicle has the same beneficial effects as the vehicle tea table described above, and will not be repeated here. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 The setting mode schematic diagram of the tea table body and the operation table disclosed by the embodiments of the present application;
[0023] Figure 2 For Figure 1 The structure schematic diagram in another perspective;
[0024] Figure 3 The setting mode schematic diagram of the first guide assembly and the second guide assembly disclosed by the embodiments of the present application;
[0025] Figure 4 The structure schematic diagram of the guide assembly disclosed by the embodiments of the present application;
[0026] Figure 5 The structure schematic diagram of the driving assembly disclosed by the embodiments of the present application;
[0027] Figure 6 The setting mode schematic diagram of the guide disclosed by the embodiments of the present application;
[0028] Figure 7 The structure schematic diagram of the first mounting part disclosed by the embodiments of the present application;
[0029] Figure 8 The structure schematic diagram of the second mounting part disclosed by the embodiments of the present application.
[0030] BRIEF DESCRIPTION OF DRAWINGS
[0031] 100- tea table body;
[0032] 200- operation table;
[0033] 300 - guide assembly, 300a - first guide assembly, 300b - second guide assembly, 310 - guide, 320 - slider, 330 - first mounting piece, 331 - first lightening hole, 340 - second mounting piece, 341 - second lightening hole, 342 - first mounting portion, 343 - second mounting portion, 344 - first sub-portion, 345 - second sub-portion, 346 - limiting step;
[0034] 400 - linear drive assembly, 410 - rotary drive piece, 420 - screw rod, 430 - nut;
[0035] 500 - cover shell;
[0036] 610 - teapot, 620 - tea bowl;
[0037] 710 - tea can, 720 - drinking water bottle;
[0038] 800 - connecting seat;
[0039] 900 - mounting seat. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the present application will be clearly described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art belong to the scope of protection of the present application.
[0041] The terms "first", "second", and the like in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are generally a category and do not limit the number of objects, for example, the first object can be one or more. In addition, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / ", generally indicates that the front and rear associated objects are in a "or" relationship.
[0042] The lifting mechanism of the vehicle-mounted tea table, the vehicle-mounted tea table and the vehicle provided by the embodiments of the present application will be described in detail below in combination with the drawings, through specific embodiments and application scenarios.
[0043] Reference is made to Figures 1 to 8As shown, the embodiment of the present application provides a lifting mechanism of a vehicle-mounted tea table, the vehicle-mounted tea table comprising a tea table body 100 and an operation table 200. The tea table body 100 serves as the main part of the vehicle-mounted tea table, which can be used to store tea-making utensils, such as a tea pot 710, a drinking water bottle 720, etc. The operation table 200 is used to perform tea-making operation.
[0044] The lifting mechanism of the vehicle-mounted tea table is used to drive the operation table 200 to move up and down along the height direction of the vehicle-mounted tea table, for example, the direction indicated by the arrow line A. Specifically, the lifting mechanism comprises a linear driving assembly 400 and at least two guide assemblies 300. Figure 1
[0045] The at least two guide assemblies 300 comprise a first guide assembly 300a and a second guide assembly 300b. The guide assembly 300 comprises a guide piece 310 and a sliding piece 320 which are slidingly fitted along the height direction of the vehicle-mounted tea table. Optionally, the guide piece 310 is a guide rail, and the sliding piece 320 is a sliding block, for example, which is provided with a sliding groove. A part of the guide rail is located in the sliding groove and is slidingly fitted with the sliding groove along the height direction of the vehicle-mounted tea table. Specifically, the guide rail is a guide rail with higher precision, and more specifically, for example, an HG series guide rail is selected to serve as the guide rail in the embodiment of the present application. It is also to be noted that the detailed number of the guide assemblies 300 is determined according to actual needs, and the detailed number of the guide assemblies 300 is not limited in the embodiment of the present application.
[0046] The guide piece 310 of the first guide assembly 300a is connected to the front end of the tea table body 100, and the sliding piece 320 of the first guide assembly 300a is connected to the front end of the operation table 200. The guide piece 310 of the second guide assembly 300b is connected to the rear end of the tea table body 100, and the sliding piece 320 of the second guide assembly 300b is connected to the rear end of the operation table 200.
[0047] The front end of the tea table body 100 refers to the end of the tea table body 100 which is directed towards the front of the vehicle, and the rear end of the tea table body 100 refers to the end of the tea table body 100 which is directed towards the rear of the vehicle. The front end and the rear end of the tea table body 100 refer to the opposite ends of the tea table body 100 along the length direction of the tea table body 100, for example, the direction indicated by the arrow line B. Figure 3
[0048] Similarly, the front end of the operation table 200 refers to the end of the operation table 200 which is directed towards the front of the vehicle, and the rear end of the operation table 200 refers to the end of the operation table 200 which is directed towards the rear of the vehicle. The front end and the rear end of the operation table 200 refer to the opposite ends of the operation table 200 along the length direction of the operation table 200, for example, the same as the length direction of the tea table body 100.
[0049] The linear drive assembly 400 is connected to both the tea table body 100 and the operating table 200, and the linear drive assembly 400 is used to drive the operating table 200 to move along the height direction of the vehicle-mounted tea table.
[0050] In this embodiment, the linear drive component 400 of the lifting mechanism is connected to both the tea table body 100 and the operating table 200. The linear drive component 400 drives the operating table 200 to move along the height direction of the vehicle-mounted tea table. With this configuration, the height of the operating table 200 can be changed by driving the operating table 200 to move along the height direction of the vehicle-mounted tea table through the linear drive component 400. In this way, the vehicle-mounted tea table can meet the diverse usage needs of different users.
[0051] In addition, in the embodiment of the application, the guide member 310 of the first guide component 300a of the lifting mechanism is connected to the front end of the tea table body 100, and the sliding member 320 of the first guide component 300a is connected to the front end of the operating table 200. The guide member 310 of the second guide component 300b of the lifting mechanism is connected to the rear end of the tea table body 100, and the sliding member 320 of the second guide component 300b is connected to the rear end of the operating table 200. With this configuration, the front end of the operating table 200 slides with the front end of the tea table body 100 through the first guide component 300a, and the rear end of the operating table 200 slides with the rear end of the tea table body 100 through the second guide component 300b. In this way, the front and rear ends of the operating table 200 and the tea table body 100 share the force, which makes the force on the operating table 200 and the tea table body 100 more balanced, thereby improving the stability of the operating table 200 and the tea table body 100.
[0052] In another embodiment, reference Figure 6 As shown, the guide assembly 300 includes at least two guide members 310. The exact number of guide members 310 depends on actual needs and is not limited in this embodiment. Each guide member 310 is arranged side-by-side along the width direction of the vehicle-mounted tea table, for example, the width direction of the vehicle-mounted tea table is... Figure 6 The direction indicated by the middle arrow C. Each guide member 310 slides in conjunction with a corresponding slider 320 along the height direction of the vehicle-mounted tea table. With this arrangement, the operating table 200 and the tea table body 100 are connected by at least four guide members 310, thus providing a large contact area between the operating table 200 and the tea table body 100, thereby improving the stability of the movement of the operating table 200.
[0053] In other alternative embodiments, the guide assembly 300 may also include only one guide member 310.
[0054] In an alternative embodiment, the number of the guide members 310 in the first guide assembly 300a is the same as the number of the guide members 310 in the second guide assembly 300b, and the number of the sliding members 320 in the first guide assembly 300a is the same as the number of the sliding members 320 in the second guide assembly 300b. The first guide assembly 300a and the second guide assembly 300b are symmetrically arranged, for example, about a plane perpendicular to the length direction of the tea table. In this way, the first guide assembly 300a and the second guide assembly 300b have the same structure, so that the operating table 200 and the tea table body 100 are more balanced in stress, and the stability of the operating table 200 and the tea table body 100 is better.
[0055] In other alternative embodiments, the number of the guide members 310 in the first guide assembly 300a can be different from the number of the guide members 310 in the second guide assembly 300b, and / or the number of the sliding members 320 in the first guide assembly 300a can be different from the number of the sliding members 320 in the second guide assembly 300b.
[0056] It should be noted that, Figures 3 to 6 In the first guide assembly 300a, the number of the sliding members 320 is actually four, Figures 3 to 6 In the first guide assembly 300a, two sliding members 320 are hidden, that is, Figure 3 In the first guide assembly 300a, the structure of the first guide assembly 300a is the same as the structure of the second guide assembly 300b.
[0057] In further embodiments, referring to FIG. 3, Figures 4 to 6 The guide assembly 300 further comprises a first mounting member 330, each guide member 310 is connected to the first mounting member 330, and the first mounting member 330 is used to be connected to the tea table body 100. In this way, each guide member 310 is connected to the first mounting member 330, and then the first mounting member 330 is uniformly assembled on the tea table body 100, which reduces the number of components involved in the lifting mechanism as a whole, thereby simplifying the structure of the lifting mechanism and reducing the assembly difficulty of the lifting mechanism.
[0058] Optionally, referring to FIG. 3, Figure 2 The first guide assembly 300a is covered with a cover 500, for example, the cover 500 is connected to the tea table body 100, and the first mounting member 330 is connected to the cover 500, so as to realize the connection between the first mounting member 330 and the tea table body 100. The cover 500 can block external impact, thereby prolonging the service life of the first guide assembly 300a. In addition, the cover 500 provides a mounting basis for the installation of the first mounting member 330, thereby reducing the installation difficulty of the first mounting member 330.
[0059] Optionally, referring to FIG. 3, Figure 3As shown, the first mounting member 330 corresponding to the second guiding assembly 300b is connected to the tea table body 100 through the mounting seat 900, which provides a connection basis for the connection between the first mounting member 330 and the tea table body 100, thereby reducing the connection difficulty between the first mounting member 330 and the tea table body 100. Further, the first mounting member 330 corresponding to the second guiding assembly 300b is connected to the tea table body 100 through at least two mounting seats 900, so that the connection between them is more reliable.
[0060] As a specific embodiment, the first mounting member 330 is, for example, a first mounting plate.
[0061] In other optional embodiments, the guiding assembly 300 can also not include the first mounting member 330, but include at least two third mounting members. At this time, the guiding members 310 of the guiding assembly 300 and the third mounting members correspond to each other one by one, and each guiding member 310 is mounted on the tea table body 100 through the corresponding third mounting member.
[0062] In further embodiments, each guiding member 310 is detachably connected with the first mounting member 330, and the first mounting member 330 is detachably connected with the tea table body 100. This design allows the guiding member 310 to be detached from the first mounting member 330, and allows the first mounting member 330 to be detached from the tea table body 100, so that the guiding member 310 and the first mounting member 330 can be replaced, and the maintenance difficulty of the guiding member 310 and the first mounting member 330 is reduced.
[0063] Alternatively, each guiding member 310 is detachably connected with the first mounting member 330 through a first threaded member, and the first mounting member 330 is detachably connected with the tea table body 100 through a second threaded member. After such arrangement, the detachable connection between the guiding member 310 and the first mounting member 330 and between the first mounting member 330 and the tea table body 100 is achieved through threaded connection, and the threaded connection has good connection reliability, so that the connection between the guiding member 310 and the first mounting member 330 and between the first mounting member 330 and the tea table body 100 is more reliable, and the stability of the guiding member 310 and the first mounting member 330 is improved. Of course, the detachable connection between the guiding member 310 and the first mounting member 330 and between the first mounting member 330 and the tea table body 100 can also be achieved through other ways, such as buckle connection or magnetic attraction cooperation.
[0064] Specifically, the first mounting member 330 corresponding to the first guiding assembly 300a is detachably connected with the cover 500 through a second threaded member, and the first mounting member 330 corresponding to the second guiding assembly 300b is detachably connected with the mounting seat 900 through a second threaded member.
[0065] In other alternative embodiments, the guide 310 can be connected to the first mounting member 330 by welding, gluing or other non-detachable means, and the first mounting member 330 can be connected to the tea table body 100 by welding, gluing or other non-detachable means.
[0066] In a further embodiment, as shown in Figure 7 The first mounting member 330 is provided with a first weight-reducing hole 331. The presence of the first weight-reducing hole 331 reduces the weight of the first mounting member 330, so that the overall weight of the lifting mechanism is reduced, which is conducive to reducing the energy consumption of the vehicle.
[0067] Optionally, as shown in Figure 7 The first weight-reducing hole 331 is located in the middle region of the first mounting member 330, for example. In this way, the overall stress of the first mounting member 330 is more balanced, which is conducive to prolonging the service life of the first mounting member 330.
[0068] In other alternative embodiments, the first mounting member 330 can not be provided with the first weight-reducing hole 331.
[0069] In another embodiment, as shown in Figure 5 and Figure 6 The guide assembly 300 includes at least two sliding members 320, which are arranged in the height direction of the vehicle-mounted tea table and are in sliding cooperation with the same guide 310 in the height direction of the vehicle-mounted tea table, that is, one guide 310 corresponds to at least two sliding members 320. In this way, the operation table 200 and the tea table body 100 also have a large cooperation area, so that the movement of the operation table 200 is more stable.
[0070] In other alternative embodiments, the guide assembly 300 can include one sliding member 320.
[0071] In an alternative embodiment, the guide assembly 300 includes at least two guides 310, and each guide 310 corresponds to at least two sliding members 320. Each guide 310 is in sliding cooperation with the corresponding sliding member 320, so as to further increase the cooperation area between the operation table 200 and the tea table body 100, thereby making the movement of the operation table 200 more stable.
[0072] In another embodiment, as shown in Figure 5 , Figure 6 and Figure 8As shown, the guide assembly 300 further comprises a second mounting member 340, and each sliding member 320 is connected to the second mounting member 340, and the second mounting member 340 is configured to be connected to the operation table 200. In this way, each sliding member 320 is connected to the second mounting member 340, and then the second mounting member 340 is assembled to the operation table 200, which also makes the number of components involved in the lifting mechanism as a whole smaller, thereby simplifying the structure of the lifting mechanism and reducing the assembly difficulty of the lifting mechanism.
[0073] As a specific embodiment, the second mounting member 340 is, for example, a second mounting plate.
[0074] In other optional embodiments, the guide assembly 300 can not comprise the second mounting member 340, but comprises at least two fourth mounting members. In this case, the sliding members 320 of the guide assembly 300 and the fourth mounting members correspond to each other, for example, one-to-one, and each sliding member 320 is mounted to the operation table 200 through the corresponding fourth mounting member.
[0075] In further embodiments, each sliding member 320 is detachably connected to the second mounting member 340, and the second mounting member 340 is detachably connected to the operation table 200. This design allows the sliding member 320 to be detached from the second mounting member 340, and the second mounting member 340 to be detached from the operation table 200, so that the sliding member 320 and the second mounting member 340 can be replaced, and the maintenance difficulty of the sliding member 320 and the second mounting member 340 is reduced.
[0076] Optionally, each sliding member 320 is detachably connected to the second mounting member 340 through a third threaded member, and the second mounting member 340 is detachably connected to the operation table 200 through a fourth threaded member. In this way, the detachable connection between the sliding member 320 and the second mounting member 340 and between the second mounting member 340 and the operation table 200 is achieved through threaded connection, and the threaded connection has good connection reliability, so that the connection between the sliding member 320 and the second mounting member 340 and between the second mounting member 340 and the operation table 200 is more reliable, and the stability of the sliding member 320 and the second mounting member 340 is improved. Of course, the detachable connection between the sliding member 320 and the second mounting member 340 and between the second mounting member 340 and the operation table 200 can also be achieved in other ways, for example, through buckle connection or magnetic attraction.
[0077] Optionally, the shape of the second mounting member 340 corresponding to the first guide assembly 300a can be the same as or different from the shape of the second mounting member 340 corresponding to the second guide assembly 300b. Specifically, referring to Figure 6 and Figure 8As shown, the shape of the second mounting member 340 corresponding to the first guiding assembly 300a is different from the shape of the second mounting member 340 corresponding to the second guiding assembly 300b.
[0078] More specifically, referring to Figure 6 As shown, the second mounting member 340 corresponding to the first guiding assembly 300a is located below the operation table 200, for example, and includes a first mounting portion 342 and a second mounting portion 343, both of which are flat structures. The first mounting portion 342 is perpendicular to the height direction of the vehicle-mounted tea table and is used to connect with the bottom end of the operation table 200, and the second mounting portion 343 is perpendicular to the length direction of the vehicle-mounted tea table and is connected with the sliding member 320. In this arrangement, the first mounting member 330 is approximately in the shape of an inverted "L". After this arrangement, the operation table 200 is supported on and connected with the second mounting member 340, which makes the connection between the operation table 200 and the second mounting member 340 more reliable.
[0079] Referring to Figure 6 and Figure 8 As shown, the second mounting member 340 corresponding to the second guiding assembly 300b includes a first sub-portion 344 and a second sub-portion 345, both of which are flat structures. The first sub-portion 344 is used to be arranged on one side of the operation table 200 and is used to be connected with the operation table 200, and the second sub-portion 345 is connected with the sliding member 320. In addition, the first sub-portion 344 and the second sub-portion 345 have different thicknesses, the rear side of the first sub-portion 344 is flush with the rear side of the second sub-portion 345, and the intersection position of the first sub-portion 344 and the second sub-portion 345 forms a limiting step 346 on which the operation table 200 is supported. With this form of the second mounting member 340, the second mounting member 340 is connected with the operation table 200 while also supporting the operation table 200, so that with this form of the second mounting member 340, the connection between the operation table 200 and the second mounting member 340 is more reliable.
[0080] In other alternative embodiments, each sliding member 320 can be connected to the second mounting member 340 in a non-detachable manner such as by welding or gluing, and similarly, the second mounting member 340 can be connected with the operation table 200 in a non-detachable manner such as by welding or gluing.
[0081] In further embodiments, referring to Figure 8 As shown, the second mounting member 340 is provided with a second weight-reducing hole 341. The presence of the second weight-reducing hole 341 reduces the weight of the second mounting member 340, which also makes the entire lifting mechanism lighter, thereby reducing the energy consumption of the vehicle.
[0082] Optionally, referring to Figure 8 As shown in the foregoing, the middle region of the first sub-portion 344 is provided with a second weight-reducing hole 341, so that the first sub-portion 344 is subjected to a more uniform force, which is conducive to prolonging the service life of the second mounting member 340. Furthermore, the sliding member 320 is mounted on the second sub-portion 345, which bears a larger force. The second weight-reducing hole 341 is provided on the first sub-portion 344, and the second weight-reducing hole 341 does not affect the strength of the second sub-portion 345, thereby being conducive to prolonging the service life of the second sub-portion 345.
[0083] In other optional embodiments, the second mounting member 340 can also not be provided with the second weight-reducing hole 341.
[0084] In another embodiment, referring to Figure 5 and Figure 6 As shown in the foregoing, the linear drive assembly 400 is used to be arranged at the rear side of the operation table 200, and is used to be connected to the rear end of the operation table 200 and the rear end of the tea table body 100. In this layout, the linear drive assembly 400 and the second guide assembly 300b are located on the same side of the operation table 200, and the linear drive assembly 400 does not substantially occupy the space in front of the operation table 200 and below the operation table 200, so that other devices can be arranged in front of the operation table 200 and below the operation table 200.
[0085] Of course, in other optional embodiments, the linear drive assembly 400 can also be arranged at a position other than the rear side of the operation table 200, for example, can be arranged at the front side or below the operation table 200.
[0086] In a further embodiment, referring to Figure 5 As shown in the foregoing, the linear drive assembly 400 includes a rotary drive member 410, a lead screw 420, and a nut 430. The fixed end of the rotary drive member 410 is used to be fixedly arranged on the tea table body 100, the nut 430 is used to be fixedly arranged on the operation table 200, the driving end of the rotary drive member 410 is in transmission connection with the lead screw 420, and the nut 430 is sleeved on the lead screw 420 and is in threaded connection with the lead screw 420. The threaded connection transmission is relatively stable and has high transmission accuracy, so that the movement of the operation table 200 is relatively stable and reliable.
[0087] In actual use, for example, the number of rotation turns of the rotary drive member 410 is controlled to control the position of the operation table 200. In addition, the guide member 310 has an upper limit position and a lower limit position, and the position detection device is arranged at the upper limit position and the lower limit position, for example. The position detection device is a position sensor. The position detection device is used to detect whether the sliding member 320 moves to the upper limit position or the lower limit position, so that the sliding member 320 moves in a preset height interval. The space corresponding to the preset height interval is, for example, the space between the upper limit position and the lower limit position.
[0088] Optionally, referring to Figure 5 As shown in the figure, the rotating driving member 410 is, for example, an electric machine or motor. In addition, the second mounting member 340 is, for example, provided with a connecting seat 800, and the nut 430 is fixedly arranged on the connecting seat 800. The connecting seat 800 provides a connecting basis for the connection between the nut 430 and the second mounting member 340, thereby reducing the assembly difficulty of the nut 430. Specifically, the connecting seat 800 is, for example, arranged on the second sub-portion 345 in the foregoing.
[0089] In other optional embodiments, the linear driving assembly 400 can also be a hydraulic cylinder or a pneumatic cylinder.
[0090] In the embodiments of the present application, a vehicle-mounted tea table is also provided, which comprises a tea table body 100, an operation table 200, and the lifting mechanism described in the foregoing, the guide member 310 of the first guide assembly 300a is connected to the front end of the tea table body 100, the sliding member 320 of the first guide assembly 300a is connected to the front end of the operation table 200, the guide member 310 of the second guide assembly 300b is connected to the rear end of the tea table body 100, and the sliding member 320 of the second guide assembly 300b is connected to the rear end of the operation table 200. The vehicle-mounted tea table has the same beneficial effects as the lifting mechanism in the foregoing, and thus will not be described herein again.
[0091] Optionally, the inside of the tea table body 100 is, for example, hollow and formed with an accommodating cavity, the accommodating cavity can accommodate at least part of the operation table 200, and the top end of the tea table body 100 is, for example, provided with an avoiding opening, the avoiding opening is used for the at least part of the operation table 200 to enter or exit the accommodating cavity. After being arranged in this way, at least part of the operation table 200 can be accommodated in the accommodating cavity, in this state, the vehicle-mounted tea table as a whole occupies a smaller space and has better compactness.
[0092] Further, at least part of the first guide assembly 300a, the second guide assembly 300b, and the linear driving assembly 400 in the foregoing are, for example, located in the accommodating cavity, so as to reduce the volume of the vehicle-mounted tea table.
[0093] Optionally, referring to Figure 1 As shown in the figure, the vehicle-mounted tea table further comprises, for example, tea bowls 620, teapots 610, and other tea sets, and the tea sets are, for example, arranged on the operation table 200, so as to facilitate the user to perform tea brewing operation on the operation table 200.
[0094] In the embodiments of the present application, a vehicle is also provided, which comprises the vehicle-mounted tea table described in the foregoing. The vehicle has the same beneficial effects as the vehicle-mounted tea table in the foregoing, and thus will not be described herein again. The vehicle is, for example, a fuel automobile, an electric automobile, or a hybrid electric automobile.
[0095] Optionally, the vehicle comprises first and second rear-row seats arranged side by side along the width direction of the vehicle body, and the vehicle tea table is located between the first and second rear-row seats.
[0096] The embodiments of the present application are described above with reference to the accompanying drawings, but the present application is not limited to the specific embodiments described above, which are merely illustrative but not restrictive, and a person of ordinary skill in the art can make many forms under the inspiration of the present application without departing from the purpose of the present application and the scope protected by the claims.
Claims
1. A lifting mechanism of a vehicle-mounted tea table, the vehicle-mounted tea table comprising a tea table body (100) and an operation table (200), characterized in that, The lifting mechanism comprises: At least two guide assemblies (300), wherein the guide assemblies (300) comprise guide pieces (310) and sliding pieces (320) which are slidingly fitted along the height direction of the vehicle-mounted tea table, the guide piece (310) of the first guide assembly (300a) is connected to the front end of the tea table body (100), the sliding piece (320) of the first guide assembly (300a) is connected to the front end of the operation table (200), the guide piece (310) of the second guide assembly (300b) is connected to the rear end of the tea table body (100), and the sliding piece (320) of the second guide assembly (300b) is connected to the rear end of the operation table (200); A linear driving assembly (400) is connected to the tea table body (100) and the operation table (200), and the linear driving assembly (400) is used to drive the operation table (200) to move along the height direction of the vehicle-mounted tea table.
2. The lifting mechanism of claim 1, wherein, The guide assembly (300) comprises at least two guide pieces (310), and each guide piece (310) is arranged side by side along the width direction of the vehicle-mounted tea table, and each guide piece (310) is slidingly fitted with a corresponding sliding piece (320) along the height direction of the vehicle-mounted tea table.
3. The lifting mechanism of claim 2, wherein, The guide assembly (300) further comprises a first mounting piece (330), each guide piece (310) is connected to the first mounting piece (330), and the first mounting piece (330) is connected to the tea table body (100).
4. The lifting mechanism of claim 3, wherein, Each guide piece (310) is detachably connected to the first mounting piece (330), and the first mounting piece (330) is detachably connected to the tea table body (100). The first mounting piece (330) is provided with a first weight-reducing hole (331).
5. The lift mechanism of claim 1, wherein, The guide assembly (300) comprises at least two sliding pieces (320), and the at least two sliding pieces (320) are arranged at intervals along the height direction of the vehicle-mounted tea table and are slidingly fitted with the same guide piece (310) along the height direction of the vehicle-mounted tea table.
6. The lifting mechanism of claim 5, wherein, The guide assembly (300) further comprises a second mounting piece (340), each sliding piece (320) is connected to the second mounting piece (340), and the second mounting piece (340) is connected to the operation table (200).
7. The lifting mechanism of claim 6, wherein, Each sliding piece (320) is detachably connected to the second mounting piece (340), and the second mounting piece (340) is detachably connected to the operation table (200). The second mounting piece (340) is provided with a second weight-reducing hole (341).
8. The lift mechanism of claim 1, wherein, The linear driving assembly (400) is arranged at the rear side of the operation table (200) and is connected to the rear end of the operation table (200) and the rear end of the tea table body (100). And / or, the straight line driving assembly (400) comprises a rotary driving piece (410), a screw rod (420) and a nut (430), a fixed end of the rotary driving piece (410) is used for being fixed on the tea table body (100), the nut (430) is used for being fixed on the operation table (200), a driving end of the rotary driving piece (410) is in transmission connection with the screw rod (420), the nut (430) is sleeved on the screw rod (420) and is in threaded connection with the screw rod (420).
9. A vehicle-mounted tea station, characterized by comprising: The tea table comprises a tea table body (100), an operation table (200) and the lifting mechanism of any one of claims 1-8, the guide piece (310) of the first guide assembly (300a) is connected with the front end of the tea table body (100), the sliding piece (320) of the first guide assembly (300a) is connected with the front end of the operation table (200), the guide piece (310) of the second guide assembly (300b) is connected with the rear end of the tea table body (100), and the sliding piece (320) of the second guide assembly (300b) is connected with the rear end of the operation table (200).
10. A vehicle characterized by comprising: The vehicle-mounted tea table comprises the vehicle-mounted tea table of claim 9.