Artificial intelligence interaction device

By introducing alternating interactive components and a holographic projector into the artificial intelligence interactive device, the switching between 2D and 3D interfaces was realized, solving the problem of a single interactive interface and improving the convenience and interactivity of the interaction.

CN121364784APending Publication Date: 2026-01-20JIANGSU OPEN UNIVERSITY (THE CITY VOCATIONAL COLLEGE OF JIANGSU)
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Patent Information

Application Number
CN202511588596.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-03
Publication Date
2026-01-20

AI Technical Summary

Technical Problem

Existing AI interactive devices only have a single interactive interface, resulting in a limited interaction method and poor interactivity.

Method used

Alternating interactive components are used, including a first interactive interface and a second interactive interface. The alternating display of the two is achieved through a driving component, and 3D projection interaction is performed in conjunction with a holographic projector.

Benefits of technology

It enables switching between 2D and 3D interactive interfaces, improving the convenience and efficiency of human-computer interaction, enhancing interactivity and fun, and adapting to various usage scenarios and needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

An artificial intelligence interaction device disclosed by the present invention comprises an alternate interaction assembly, a device body, a shell and a holographic projector, the front end of the device body is provided with a display port, the alternate interaction assembly is installed in the device body, and the alternate interaction assembly comprises a first interaction interface, a second interaction interface, a frame and a driving assembly. The first interaction interface, the second interaction interface and the driving assembly are installed in the device body through the frame, the driving assembly is used for driving the first interaction interface and the second interaction interface to alternately appear at the display port, a shell is arranged on the front end face of the device body, and a holographic projector is arranged in the shell. The projection end of the holographic projector extends out of the upper end of the shell and faces the display opening. According to the invention, the first interaction interface can be driven to the display port for 2D interaction through the driving assembly, the second interaction interface can be driven to the display port to replace the first interaction interface, 3D projection interaction is carried out in cooperation with a holographic projector, and the problem that an artificial intelligence interaction device is only provided with a single interaction interface is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of interactive devices, in particular to an artificial intelligence interactive device. BACKGROUND

[0002] Artificial intelligence is abbreviated as AI, which is a new technical science of researching and developing a theory, method, technology and application system for simulating, extending and expanding human intelligence. The artificial intelligence interactive device, also known as a human-computer interaction device, is a device for interaction between a person and a computer. That is, through a set of instructions, an action or an answer is completed according to the relevant information of the dialogue, and at the same time, the interactive device is provided with a display screen, which can display the dialogue interaction linkage to realize the communication and interaction between a person and a computer.

[0003] In the prior art, most of the conventional artificial intelligence interactive devices adopt a traditional hard contact mode between a fingertip and a screen for interaction linkage, and only a single interactive interface is provided, and only a traditional 2D interface can be provided, so that the interaction mode is single and the interactivity is poor.

[0004] Therefore, an artificial intelligence interactive device is needed to solve the problem of the single interactive interface of the conventional artificial intelligence interactive device. SUMMARY

[0005] In view of the deficiencies in the prior art, the present application provides an artificial intelligence interactive device to solve the problem of the single interactive interface of the conventional artificial intelligence interactive device.

[0006] To achieve the above-mentioned purpose, the following technical solutions are adopted: An artificial intelligence interactive device comprises an alternate interaction assembly, a device body, a shell and a holographic projector. A display opening is formed in the front end face of the device body. The alternate interaction assembly is installed inside the device body. The alternate interaction assembly comprises a first interactive interface, a second interactive interface, a frame and a driving assembly. The first interactive interface, the second interactive interface and the driving assembly are installed inside the device body through the frame. The driving assembly is used to drive the first interactive interface and the second interactive interface to appear alternately in the display opening. The device body is further provided with a shell located below the display opening. The shell is provided with a holographic projector. The projection end of the holographic projector extends from the upper end of the shell and faces the display opening.

[0007] To optimize the above-mentioned technical solutions, the following specific measures are taken: Further, the frame comprises a bottom plate and two side plates. The bottom plate is vertically arranged inside the device body. The left and right ends of the front end face of the bottom plate are respectively fixedly provided with vertical side plates. Two vertical guide plates are symmetrically arranged on the front end face of the bottom plate between the two side plates. A vertical fixed plate is arranged between the two guide plates. The driving assembly comprises a driving motor, a driving shaft, two first synchronous wheels, two second synchronous wheels and two synchronous belts, the driving shaft is rotatably arranged between the two side plates and at the lower end of the bottom plate, the driving motor is used for connecting and driving the driving shaft to rotate, a first synchronous wheel is fixedly sleeved on the driving shaft between each side plate and the adjacent guide plate, a second synchronous wheel is rotatably arranged between each side plate and the adjacent guide plate at the upper end of the bottom plate, the first synchronous wheel and the second synchronous wheel on the same side are connected through the synchronous belt, the first interaction interface and the second interaction interface are fixedly connected with the belt surfaces at the front end and the rear end of the synchronous belt respectively, the first interaction interface is wider than the second interaction interface at the connection position of the synchronous belt, and the first interaction interface and the second interaction interface are located at the upper end and the lower end respectively.

[0008] Further, the first interaction interface comprises a first interaction display screen and a connecting frame, the connecting frame is fixedly arranged on the left and right sides of the rear end surface of the first interaction display screen, a first connecting hole is formed in the connecting frame, and the front half of the belt surface of the synchronous belt is partially located in the first connecting hole and fixedly connected with the connecting frame.

[0009] Further, a first sliding groove is formed in the front end surface of the side plate, vertical second guide rods are fixedly arranged in the first sliding grooves on the left and right sides, the first interaction interface further comprises a first linkage plate, two first linkage plates are further fixedly arranged on the left and right sides of the rear end surface of the first interaction display screen and outside the second guide rods, through holes are formed in the first linkage plates, and the first interaction display screen is slidably connected to the second guide rods through the through holes.

[0010] Further, the second interaction interface comprises a second interaction display screen and a mounting plate, the second interaction display screen is mounted on the front side of the mounting plate, a horizontal base is fixedly arranged on the rear end surface of the mounting plate, side frames are fixedly connected on the left and right sides of the rear end surface of the base, second connecting holes are formed in the side frames, and the lower half of the belt surface of the synchronous belt is partially located in the second connecting holes and fixedly connected with the side frames.

[0011] Further, a connecting seat is fixedly arranged on the upper end of the rear end surface of the second interaction display screen, fixed blocks are fixedly arranged on the left and right sides of the upper end of the front end surface of the mounting plate, a rotating shaft is rotatably arranged between the two fixed blocks, the connecting seat is fixedly sleeved on the outer side of the rotating shaft, fixed rods are hingedly connected on the left and right sides of the lower end of the rear end surface of the second interaction display screen, the fixed rods are movably arranged through the mounting plate and connected to the two ends of the guide rollers, and the guide rollers are slidably arranged in the movable grooves.

[0012] Further, the active groove is internally provided with an annular groove, and a guide wheel is arranged at the middle of the outer side of the guide roller, and the guide roller is slidingly connected in the annular groove through the guide wheel.

[0013] Further, the front end face of each of the two guide plates is provided with a second sliding groove, a vertical first guide rod is fixedly arranged in each of the second sliding grooves on the left and right sides, and a second linkage plate is arranged on the left and right sides of the rear end face of the mounting plate, and the second linkage plates on the left and right sides are located between the side frames on the left and right sides.

[0014] Further, the device body is internally provided with a lifting pump and a disinfectant container connected with the lifting pump, an outer box is fixedly arranged at the front end of the device body and at the side edge of the shell, a plurality of atomizing nozzles are arranged at the top of the inner side of the outer box, the atomizing nozzles are connected with the lifting pump through liquid spraying pipes, a collecting box is slidingly arranged at the bottom of the inner side of the outer box, and a layer of baffle with holes is arranged above the collecting box on the inner side of the outer box.

[0015] Further, four hollow bottom columns are arranged at the bottom of the outer side of the device body, a bottom plate is slidingly arranged above the bottom end in the device body, a connecting column is fixedly arranged at the midpoint of the upper end face of the bottom plate, a threaded rod is connected with the upper end face of the connecting column, a worm gear is rotatably arranged in the device body, the threaded rod is threadedly connected with the inner side of the worm gear at the upper end of the outer wall, an adjusting rod is rotatably arranged at one side of the rear end face of the device body, a worm is fixedly arranged at the end of the adjusting rod in the device body, the worm is engaged with the worm gear, and a bottom wheel is arranged at each of the four corner positions of the bottom plate corresponding to the bottom columns.

[0016] The beneficial effects of the present application are: The device of the present application is provided with an alternating interaction assembly, a device body, a shell and a holographic projector, in use, the first interaction interface is used as a 2D interaction interface, the second interaction interface is used as a 3D interaction interface, and the display port is used to display the first interaction interface or the second interaction interface, so that the first interaction interface can be driven to the display port by the driving assembly for 2D interaction, and the second interaction interface can be driven to the display port as needed to replace the first interaction interface, and 3D projection interaction can be performed in cooperation with the holographic projector, thereby solving the problem that the conventional artificial intelligence interaction device only has a single interaction interface.

[0017] This invention features two sets of interactive interfaces, enhancing the convenience and efficiency of human-computer interaction. The alternating positions of the first and second interactive interfaces are achieved through the operation of a synchronous belt, resulting in a smoother user experience and improved continuity of use. Furthermore, the use of a holographic projector to project information from the second interactive interface diversifies the human-computer interaction experience, allowing users to operate and receive information more intuitively in three-dimensional space and participate more deeply in the process. This increases the device's fun and interactivity, while saving space without requiring additional physical space. The different interactive interfaces can adapt to various usage scenarios and needs, providing users with more functional options and flexibility. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of an artificial intelligence interactive device proposed in this invention; Figure 2 This is a schematic diagram of the alternating interaction components of an artificial intelligence interaction device proposed in this invention; Figure 3 This is a schematic diagram of the framework of an artificial intelligence interactive device proposed in this invention; Figure 4 This is a schematic diagram of the structure of the first interactive interface of an artificial intelligence interactive device proposed in this invention; Figure 5 This is a schematic diagram of the structure of the second interactive interface of an artificial intelligence interactive device proposed in this invention. Figure 1 ; Figure 6 This is a schematic diagram of the structure of the second interactive interface of an artificial intelligence interactive device proposed in this invention. Figure 2 ; Figure 7 This is a schematic diagram of the installation of the bottom wheel of an artificial intelligence interactive device proposed in this invention.

[0019] Label: 1, alternating interactive components; 2, device body; 3, light shield; 4, holographic projector; 5, shell; 6, inductor; 7, No. 1 sliding groove; 8, movable groove; 9, No. 2 sliding groove; 10, No. 1 guide rod; 11, through hole; 12, bottom column; 13, adjusting rod; 14, worm; 15, worm wheel; 16, threaded rod; 17, connecting column; 18, bottom plate; 19, bottom wheel; 20, hole; 21, liquid injection pipe; 22, outer box; 23, collection box; 101, first interactive interface; 10101, first interactive display screen; 10102, No. 1 connecting hole; 10103, connecting frame; 10104, No. 1 linkage plate; 102, second interactive interface; 10201, connecting spring; 10202, second interactive display screen; 10203, connecting seat; 10204, fixed block; 10205, mounting plate; 10206, guide wheel; 10207, guide roller; 10208, fixed rod; 10209, No. 2 linkage plate; 102010, side frame; 102011, No. 2 connecting hole; 102012, base; 103, frame; 10301, bottom plate; 10302, side plate; 104, fixed plate; 105, drive shaft; 106, guide plate; 107, drive assembly; 10701, No. 1 synchronous wheel; 10702, synchronous belt; 10703, No. 2 synchronous wheel; 108, drive motor; 109, No. 2 guide rod. DETAILED DESCRIPTION

[0020] The application will be further described in detail in conjunction with the drawings.

[0021] As shown in the drawings Figure 1 An artificial intelligence interactive device according to an embodiment of the present application includes alternating interactive components 1, a device body 2, a shell 5, and a holographic projector 4. The front end of the device body 2 is provided with a display opening. The alternating interactive components 1 are installed inside the device body 2. The alternating interactive components 1 include a first interactive interface 101, a second interactive interface 102, a frame 103, and a drive assembly 107. The first interactive interface 101, the second interactive interface 102, and the drive assembly 107 are installed inside the device body 2 through the frame 103. The drive assembly 107 is used to drive the first interactive interface 101 and the second interactive interface 102 to appear alternately in the display opening. The front end of the device body 2 is also provided with the shell 5 located below the display opening. The shell 5 is provided with the holographic projector 4. The projection end of the holographic projector 4 extends from the upper end of the shell 5 and faces the display opening.

[0022] This invention, through the alternating interactive component 1, device body 2, outer shell 5, and holographic projector 4, utilizes a first interactive interface 101 as a 2D interactive interface and a second interactive interface 102 as a 3D interactive interface during use. The first interactive interface 101 or the second interactive interface 102 is displayed through a display port. This allows the first interactive interface 101 to be driven to the display port for 2D interaction via the driving component 107, and also enables the second interactive interface 102 to be driven to the display port to replace the first interactive interface 101 as needed, and to perform 3D projection interaction in conjunction with the holographic projector 4. This solves the problem of conventional artificial intelligence interactive devices having only a single interactive interface.

[0023] As attached Figure 2 and attached Figure 3 As shown, in a specific embodiment based on the above, the frame 103 includes a base plate 10301 and two side plates 10302. The base plate 10302 is vertically arranged inside the device body 2. The left and right ends of the front end face of the base plate 10302 are respectively fixed with vertical side plates 10302. The front end face of the base plate 10302 and located between the two side plates 10302 are also symmetrically arranged with two vertical guide plates 106. A vertical fixing plate 104 is also provided between the two guide plates 106. Drive assembly 107 includes drive motor 108, drive shaft 105, two first synchronous pulleys 10701, two second synchronous pulleys 10703, and two synchronous belts 10702. Drive shaft 105 is rotatably disposed between two side plates 10302 and located at the lower end of bottom plate 10301. Drive motor 108 is used to connect to and drive drive shaft 105 to rotate. A first synchronous pulley 10701 is fixedly sleeved on drive shaft 105 located between each side plate 10302 and the adjacent guide plate 106. A second synchronous pulley 10703 is rotatably disposed between each side plate 10302 located at the upper end of bottom plate 10301 and the adjacent guide plate 106. 0703, the first synchronous pulley 10701 and the second synchronous pulley 10703 on the same side are connected by a synchronous belt 10702. The first interactive interface 101 and the second interactive interface 102 are fixedly connected to the front and rear ends of the synchronous belt 10702, respectively. The connection between the first interactive interface 101 and the synchronous belt 10702 is wider than the connection between the second interactive interface 102 and the synchronous belt 10702. The first interactive interface 101 and the second interactive interface 102 are located at the upper and lower ends, respectively. The fixed plate 104 is provided with a movable groove 8 that runs through the left and right sides and gradually tilts backward from top to bottom. The second interactive interface 102 is slidably connected to the movable groove 8.

[0024] Therefore, in use, the drive motor 108 drives the synchronous belt 10702 to move, carrying the first interactive interface 101 downwards. Simultaneously, the second interactive interface 102 moves upwards along the movable slot 8. When it reaches the middle, the second interactive interface 102 is positioned behind the first interactive interface 101, shifting out of alignment. Then, the second interactive interface 102 gradually moves upwards and forwards along the movable slot 8 until it reaches the display opening, thus completing the replacement of the first interactive interface 101 with the second interactive interface 102. When it needs to be replaced back with the first interactive interface 101, simply reverse the movement of the synchronous belt 10702. In this design, the connection between the first interactive interface 101 and the synchronous belt 10702 is wider than the connection between the second interactive interface 102 and the synchronous belt 10702, preventing interference between their movements.

[0025] In this design, the drive motor 108 is installed on the lower side of the outer wall of the frame 103, and a drive shaft 105 is fixedly installed at the output end of the drive motor 108 for rotational drive. In this design, the synchronous belt 10702 has a certain degree of elasticity, which can meet the needs of slight forward and backward displacement of the second interactive interface 102.

[0026] As attached Figure 4 As shown, the first interactive interface 101 includes a first interactive display screen 10101 and a connecting frame 10103. The connecting frame 10103 is fixedly installed on the left and right sides of the rear end face of the first interactive display screen 10101. A first connecting hole 10102 is opened on the connecting frame 10103. A portion of the front half of the synchronous belt 10702 is located in the first connecting hole 10102 and is fixedly connected to the connecting frame 10103.

[0027] The side panel 10301 has a sliding groove 7 on its front end face. Vertical guide rods 109 are fixedly installed in the sliding grooves 7 on both sides. The first interactive interface 101 also includes a linkage plate 10104. Two linkage plates 10104 are fixedly installed on the left and right sides of the rear end face of the first interactive display screen 10101 and on the outside of the linkage plates 10104 on both sides. Each linkage plate 10104 has a through hole 11. The first interactive display screen 10101 is slidably connected to the guide rods 109 through the through holes 11.

[0028] Specifically, when the synchronous belt 10702 moves, since its front end is fixedly connected with the connecting frame 10103, when the connecting frame 10103 moves, the first interactive display screen 10101 at the upper end will move, since the two first linkage plates 10104 at the lower end of the first interactive display screen 10101 are slidably sleeved on the second guide rod 109 through the through hole 11, that is, the first linkage plate 10104 slides on the second guide rod 109, that is, the whole first interactive interface 101 moves at the upper end.

[0029] As shown in FIGS. 1 and 2, in another specific embodiment based on the above, the second interactive interface 102 comprises a second interactive display screen 10202 and a mounting plate 10205, the second interactive display screen 10202 is installed on the front side of the mounting plate 10205, a horizontal base 102012 is fixedly arranged on the rear end surface of the mounting plate 10205, two side frames 102010 are fixedly connected on the left and right sides of the rear end surface of the base 102012, two second connecting holes 102011 are formed on the two side frames 102010, and the lower half of the surface of the synchronous belt 10702 is located in the second connecting holes 102011 and is fixedly connected with the side frames 102010. Figure 5 Figure 6 As shown in FIGS. 1 and 2, in another specific embodiment based on the above, the second interactive interface 102 comprises a second interactive display screen 10202 and a mounting plate 10205, the second interactive display screen 10202 is installed on the front side of the mounting plate 10205, a horizontal base 102012 is fixedly arranged on the rear end surface of the mounting plate 10205, two side frames 102010 are fixedly connected on the left and right sides of the rear end surface of the base 102012, two second connecting holes 102011 are formed on the two side frames 102010, and the lower half of the surface of the synchronous belt 10702 is located in the second connecting holes 102011 and is fixedly connected with the side frames 102010.

[0030] In the present scheme, the outer walls of the two fixed rods 10208 between the second interactive display screen 10202 and the mounting plate 10205 can be connected with springs 10201 as needed, which facilitates auxiliary reset and buffering. In the present scheme, the fixed rod 10208 is slidably sleeved on the mounting plate 10205, and the mounting plate 10205 does not interfere with the movement of the fixed rod 10208.

[0031] In the present scheme, the outer walls of the two fixed rods 10208 between the second interactive display screen 10202 and the mounting plate 10205 can be connected with springs 10201 as needed, which facilitates auxiliary reset and buffering. In the present scheme, the fixed rod 10208 is slidably sleeved on the mounting plate 10205, and the mounting plate 10205 does not interfere with the movement of the fixed rod 10208.

[0032] In the present scheme, the outer walls of the two fixed rods 10208 between the second interactive display screen 10202 and the mounting plate 10205 can be connected with springs 10201 as needed, which facilitates auxiliary reset and buffering. In the present scheme, the fixed rod 10208 is slidably sleeved on the mounting plate 10205, and the mounting plate 10205 does not interfere with the movement of the fixed rod 10208.

[0033] ​The front end face of the two guide plates 106 is provided with a second sliding groove 9, and a vertical first guide rod 10 is fixedly arranged in the second sliding groove 9 on the left and right sides. The mounting plate 10205 is provided with a second linkage plate 10209 on the left and right sides of the rear end face, and the second linkage plate 10209 is located between the side frames 102010 on the left and right sides. The mounting plate 10205 is slidably connected to the first guide rod 10 through the second linkage plate 10209.

[0034] Specifically, when the driving motor 108 drives the driving shaft 105 at the output end to rotate, the outerly connected first synchronous wheel 10701 rotates, and then the synchronous belt 10702 moves. Since the belt surface on the lower side of the synchronous belt 10702 is fixedly connected to the side frame 102010, the synchronous belt 10702 drives the side frame 102010 to move synchronously when the synchronous belt 10702 moves. The side frame 102010 is fixed to the mounting plate 10205, so that the mounting plate 10205 also moves. The mounting plate 10205 is provided with a fixed rod 10208 penetratingly arranged thereon. The guide roller 10207 connected to the lower end of the fixed rod 10208 is slidably arranged in the movable groove 8 on the fixed block 10204. The guide wheel 10206 on the outer side of the guide roller 10207 is slidably connected to the annular groove in the movable groove 8. The fixed rod 10208 is installed on the second interactive display screen 10202. The connecting seat 10203 at the lower end of the second interactive display screen 10202 is rotatably arranged on the fixed block 10204 on the left and right sides of the mounting plate 10205. The movable groove 8 is inclined, so that when the mounting plate 10205 moves with the synchronous belt 10702, the guide roller 10207 moves in the movable groove 8 and pulls the fixed rod 10208 to drive the second interactive display screen 10202 to tilt and overturn. Since the height of the second interactive display screen 10202 is lower than that of the first interactive display screen 10101 and is in an up-down staggered structure with the first interactive display screen 10101, the position of the two is alternately replaced when moving.

[0035] In another specific embodiment based on the above, the device body 2 is provided with a lifting pump and a disinfectant container connected to the lifting pump. An outer box 22 is fixedly arranged at the front end of the device body 2 and on the side of the shell 5. A plurality of atomizing nozzles are arranged on the inner top of the outer box 22. The atomizing nozzles are connected to the lifting pump through a liquid spraying pipe 21. A collection box 23 is slidably arranged on the inner bottom of the outer box 22. A layer of baffle with holes 20 is arranged on the inner side of the outer box 22 and above the collection box 23.

[0036] In the scheme, the infrared sensor or trigger button can be set as needed. In use, the palm is inserted into the outer box 22 to trigger the built-in infrared sensor. At this time, the lifting pump in the device body 2 is started, and the liquid spray pipe 21 connected with the lifting pump guides the disinfectant liquid into the outer box 22. Since the inner top end face of the outer box 22 is fixedly provided with a plurality of atomizing nozzles, and the liquid spray pipe 21 is connected with the plurality of atomizing nozzles, at this time, the liquid spray pipe 21 sprays the disinfectant liquid to contact the palm, which facilitates the user to reduce the cross infection of the virus carried when knocking the touch screen, and the collection box 23 facilitates unified cleaning.

[0037] In another specific embodiment based on the above, the device body 2 is fixedly provided with a light shield 3 at the upper end position of the front end face, and an opening is formed at the lower end position of the light shield 3. A plurality of sensors 6 are arranged in a rectangular array at the upper end of the shell 5 located at the projection end of the holographic projector 4.

[0038] In the scheme, the upper light shield 3 can play a certain auxiliary shading effect to ensure the visibility during holographic projection; the shell 5 plays a protection effect on the internal elements; the holographic projector 4 uses the interference and diffraction of light to make the virtual image in the air. The holographic projector 4 is connected with the second interactive display screen 10202 and the control mainboard arranged in the device body 2. The control mainboard controls the imaging of the holographic projector 4, and projects the picture of the second interactive display screen 10202 through the holographic projector 4. The arrangement of the sensors 6 makes the alternating current signal of the sensors 6 be blocked when there is an object between the plurality of sensors 6, and then feedbacks the electric signal to prompt the passage of the object. The sensors 6 are electrically connected with the second interactive display screen 10202, and the uniformly arranged sensors 6 are symmetrically arranged, and the symmetric sensors 6 are arranged in pairs. The sensors 6 are arranged in a horizontal and vertical arrangement to form a sensing network, which covers the projection picture of the holographic projector 4. When someone puts his finger on the corresponding position of the projection, the sensor 6 confirms the position of the finger through the horizontal and vertical coordinates of the sensing network, and feeds back the coordinate position to the second interactive display screen 10202. The second interactive display screen 10202 receives the signal, compares the projection and transmits it to the control mainboard. The control mainboard confirms the projection position, and then realizes the non-contact operation.

[0039] As shown in FIG. 8, the device body 2 is provided with a plurality of sensors 6 arranged in a horizontal and vertical arrangement. The sensors 6 are electrically connected with the second interactive display screen 10202. Figure 7As shown, in another specific embodiment based on the above, the device body 2 has four hollow bottom columns 12 on the outside bottom, and a bottom plate 18 is slidably arranged above the bottom end inside the device body 2, a connecting column 17 is fixedly arranged at the midpoint of the upper end surface of the bottom plate 18, a threaded rod 16 is connected to the upper end surface of the connecting column 17, a worm gear 15 is rotatably installed inside the device body 2, the outer wall of the threaded rod 16 is threadedly connected to the inside of the worm gear 15, an adjusting rod 13 is rotatably arranged on one side of the rear end surface of the device body 2, a worm 14 is fixedly arranged at the end of the adjusting rod 13 inside the device body 2, the worm 14 is engaged with the worm gear 15, and a bottom wheel 19 is installed at the corresponding position of the four corners of the bottom plate 18 at the lower end surface.

[0040] In this way, in use, the adjusting rod 13 at the rear end is twisted and rotated, the adjusting rod 13 drives the worm 14 at the front end to rotate, the worm 14 drives the worm gear 15 to rotate, and the threaded rod 16 inside the worm gear 15 moves axially, the threaded rod 16 moves up and down as needed and causes the connecting column 17 at the lower end to move up and down, since the connecting column 17 is fixedly connected to the bottom plate 18 at the lower end, the bottom plate 18 is limited inside the device body 1 and cannot rotate, so that it can only move up and down, and the bottom wheel 19 at the lower end is moved up and down, when the bottom wheel 19 is stored inside the column 12, the column 12 is in contact with the ground, thereby avoiding the sliding displacement of the bottom wheel 19, and when it is necessary to carry and use, the bottom wheel 19 is moved downward to protrude from the column 12, thereby completing the rapid carrying and pushing use.

[0041] One specific embodiment of the application is as follows: In use, control buttons are arranged on one side of the outer wall of the device body 2 as needed, the control buttons are divided into three keys of opening, switching and closing, when the switching key is pressed, the driving motor 108 is started to drive the driving shaft 105 at the output end to rotate, then the No. 1 synchronous wheel 10701 outside the driving shaft 105 is rotated, since the No. 1 synchronous wheel 10701 and the No. 2 synchronous wheel 10703 are connected by the synchronous belt 10702, the No. 2 synchronous wheel 10703 is rotated, since the first interactive interface 101 and the second interactive interface 102 are connected to the upper and lower belt surfaces of the synchronous belt 10702 respectively and are in a staggered manner, the first interactive interface 101 and the second interactive interface 102 are quickly and alternately replaced when the synchronous belt 10702 moves.

[0042] Specifically, during normal use, the first interactive interface 101 is located at the display port at the front of the device body 2. At this time, the user can click on the first interactive display screen 10101 to interact with the machine. When the start / stop button is pressed, the internal drive motor 108 starts, driving the drive shaft 105 to rotate. The rotation of the drive shaft 105 drives the two first synchronous pulleys 10701 to rotate, which in turn drives the two second synchronous pulleys 10703 to rotate via the synchronous belt 10702. Since the connecting frame 10103 at the lower end of the first interactive interface 101 is fixedly connected to the belt surface at the front end of the synchronous belt 10702, the second interactive interface... The side frame 102010 at the lower end of the surface 102 is fixedly connected to the belt surface at the rear end of the synchronous belt 10702, and the first interactive interface 101 and the second interactive interface 102 are misaligned, so that when the synchronous belt 10702 is running, the first interactive interface 101 and the second interactive interface 102 will alternate positions, causing the second interactive interface 102 to be located at the display port; then, the second interactive display screen 10202 of the second interactive interface 102 is holographically projected by the holographic projector 4 located inside the outer shell 5 at the front end of the device body 2, and the user can perform holographic projection-type human-computer interaction operation.

[0043] This invention designs a human-computer interaction experience by combining a traditional interactive interface with a projection interactive interface based on holographic technology, thereby achieving diversity in the human-computer interaction experience. This allows users to operate and receive information more intuitively in three-dimensional space, enabling them to participate more deeply in the operation process and increasing the fun and interactivity of the device.

[0044] It should be noted that the terms such as "upper", "lower", "left", "right", "front", and "back" used in the invention are only for clarity of description and are not intended to limit the scope of the invention. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of the invention.

[0045] The above are merely preferred embodiments of the present invention. The scope of protection of the present invention is not limited to the above embodiments. All technical solutions falling within the scope of the present invention's concept are within the scope of protection of the present invention. It should be noted that those skilled in the art will understand that various changes, modifications, substitutions, refinements, and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and these variations should be considered within the scope of protection of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An artificial intelligence interactive device, characterized in that: The utility model relates to an interactive display device, including alternate interaction component (1), device body (2), shell (5) and holographic projector (4), device body (2) front end face is provided with show mouth, alternate interaction component (1) is installed in device body (2) inside, and alternate interaction component (1) includes first interaction interface (101), second interaction interface (102), frame (103) and drive assembly (107), first interaction interface (101), second interaction interface (102) and drive assembly (107) are installed in device body (2) inside through frame (103), and drive assembly (107) is used to drive first interaction interface (101) and second interaction interface (102) alternately appear in show mouth, and device body (2) front end face is also equipped with the shell (5) located below show mouth, the shell (5) is equipped with holographic projector (4) in, and the projection end of holographic projector (4) is stretched out from the upper end of shell (5) and is towards show mouth.

2. The artificial intelligence interactive device of claim 1, wherein: The frame (103) includes a bottom plate (10301) and two side plates (10302), the bottom plate (10302) is vertically arranged in the device body (2), and the left and right ends of the front end face of the bottom plate (10302) are fixedly provided with vertical side plates (10302), respectively, the front end face of the bottom plate (10302) and between the two side plates (10302) are also symmetrically provided with two vertical guide plates (106), and a vertical fixed plate (104) is further arranged between the two guide plates (106). The drive assembly (107) includes a drive motor (108), a drive shaft (105), two first synchronous wheels (10701), two second synchronous wheels (10703) and two synchronous belts (10702), the drive shaft (105) is rotatably arranged between the two side plates (10302) and located at the lower end of the bottom plate (10301), the drive motor (108) is used for connecting and driving the drive shaft (105) to rotate, a first synchronous wheel (10701) is fixedly sleeved on the drive shaft (105) between each side plate (10302) and the adjacent guide plate (106), a second synchronous wheel (10703) is rotatably arranged between each side plate (10302) and the adjacent guide plate (106) on the upper end of the bottom plate (10301), the first synchronous wheel (10701) and the second synchronous wheel (10703) on the same side are connected by the synchronous belt (10702), the first interaction interface (101) and the second interaction interface (102) are fixedly connected with the front end and the rear end of the belt surface of the synchronous belt (10702), respectively, the first interaction interface (101) is wider than the second interaction interface (102) at the connection position of the synchronous belt (10702), and the first interaction interface (101) and the second interaction interface (102) are located at the upper end and the lower end, respectively, the fixed plate (104) is provided with a movable groove (8) that is left-right through and gradually inclined from top to bottom, and the second interaction interface (102) is slidably connected with the movable groove (8).

3. The artificial intelligence interactive device of claim 2, wherein: The first interaction interface (101) comprises a first interaction display screen (10101) and a connecting frame (10103), the left and right sides of the rear end surface of the first interaction display screen (10101) are fixedly provided with the connecting frame (10103), a first connecting hole (10102) is formed in the connecting frame (10103), and the front half of the belt surface of the synchronous belt (10702) is located in the first connecting hole (10102) and is fixedly connected with the connecting frame (10103).

4. The artificial intelligence interactive device of claim 3, wherein: A first sliding groove (7) is formed in the front end surface of the side plate (10301), a second guide rod (109) vertically arranged is fixedly arranged in the first sliding groove (7) on the left and right sides, the first interaction interface (101) further comprises a first linkage plate (10104), two first linkage plates (10104) are further fixedly arranged on the left and right sides of the rear end surface of the first interaction display screen (10101) and outside the first linkage plates (10104) on the left and right sides, a through hole (11) is formed in the first linkage plate (10104), and the first interaction display screen (10101) is slidably connected to the second guide rod (109) through the through hole (11).

5. The artificial intelligence interactive device of claim 2, wherein: The second interaction interface (102) comprises a second interaction display screen (10202) and a mounting plate (10205), the second interaction display screen (10202) is mounted on the front side of the mounting plate (10205), a horizontal base (102012) is fixedly arranged on the rear end surface of the mounting plate (10205), side frames (102010) are fixedly connected on the left and right sides of the rear end surface of the base (102012), second connecting holes (102011) are formed in the side frames (102010), and the lower half of the belt surface of the synchronous belt (10702) is located in the second connecting holes (102011) and is fixedly connected with the side frames (102010).

6. The artificial intelligence interactive device of claim 5, wherein: A connecting seat (10203) is fixedly arranged on the upper end of the rear end surface of the second interaction display screen (10202), fixed blocks (10204) are fixedly arranged on the left and right sides of the upper end of the front end surface of the mounting plate (10205), a rotating shaft is rotatably arranged between the two fixed blocks (10204), the connecting seat (10203) is fixedly sleeved on the outer side of the rotating shaft, fixed rods (10208) are hingedly arranged on the left and right sides of the lower end of the rear end surface of the second interaction display screen (10202), the fixed rods (10208) are arranged through the mounting plate (10205) and connected to the two ends of the guide roller (10207), and the guide roller (10207) is slidably arranged in the movable groove (8).

7. The artificial intelligence interactive device of claim 6, wherein: An annular groove is formed in the movable groove (8), a plurality of guide wheels (10206) are arranged on the middle of the outer side of the guide roller (10207), and the guide roller (10207) is slidably connected in the annular groove through the guide wheels (10206).

8. The artificial intelligence interactive device of claim 5, wherein: The front end face of each of the two guide plates (106) is provided with a second sliding groove (9), and a vertical first guide rod (10) is fixedly arranged in each of the second sliding grooves (9) on the left and right sides, and a second linkage plate (10209) is arranged on the left and right sides of the rear end face of the mounting plate (10205), and the second linkage plates (10209) on the left and right sides are located between the side frames (102010) on the left and right sides, and the mounting plate (10205) is slidably connected to the first guide rod (10) through the second linkage plates (10209).

9. The artificial intelligence interactive device of claim 1, wherein: The device body (2) is internally provided with a lifting pump and a disinfectant container connected with the lifting pump, an outer box (22) is fixedly arranged on the front end of the device body (2) and at the side of the shell (5), a plurality of atomizing nozzles are arranged on the inner top of the outer box (22), the atomizing nozzles are connected with the lifting pump through a liquid spraying pipe (21), a collecting box (23) is slidably arranged on the inner bottom of the outer box (22), and a layer of baffle with holes (20) is arranged on the inner side of the outer box (22) and above the collecting box (23).

10. The artificial intelligence interactive device of claim 1, wherein: The device body (2) is internally provided with a lifting pump and a disinfectant container connected with the lifting pump, an outer box (22) is fixedly arranged on the front end of the device body (2) and at the side of the shell (5), a plurality of atomizing nozzles are arranged on the inner top of the outer box (22), the atomizing nozzles are connected with the lifting pump through a liquid spraying pipe (21), a collecting box (23) is slidably arranged on the inner bottom of the outer box (22), and a layer of baffle with holes (20) is arranged on the inner side of the outer box (22) and above the collecting box (23). The device body (2) is internally provided with a lifting pump and a disinfectant container connected with the lifting pump, an outer box (22) is fixedly arranged on the front end of the device body (2) and at the side of the shell (5), a plurality of atomizing nozzles are arranged on the inner top of the outer box (22), the atomizing nozzles are connected with the lifting pump through a liquid spraying pipe (21), a collecting box (23) is slidably arranged on the inner bottom of the outer box (22), and a layer of baffle with holes (20) is arranged on the inner side of the outer box (22) and above the collecting box (23).