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CN109746070A - SLAB Super Lab and SLAB Experiment Host Components - Google Patents

SLAB Super Lab and SLAB Experiment Host Components
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Publication number
CN109746070A
CN109746070ACN201910143770.4ACN201910143770ACN109746070ACN 109746070 ACN109746070 ACN 109746070ACN 201910143770 ACN201910143770 ACN 201910143770ACN 109746070 ACN109746070 ACN 109746070A
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China
Prior art keywords
slab
experiment
host
experiment host
bench
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CN201910143770.4A
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Chinese (zh)
Inventor
孔令阔
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Magic Pupil Beijing Technology Co ltd
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Individual
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Abstract

Translated fromChinese

本申请公开了一种SLAB超级实验室及SLAB实验主机组件,涉及实验设备。本申请的SLAB超级实验室包括可拆卸的SLAB实验台和SLAB实验主机组件。SLAB实验台包括基座、成像区域、顶盖、显示器和裸眼3D成像板。SLAB实验主机组件包括SLAB实验主机和遥感手柄。实验室结构简单,造价低,可缩减学校和教培机构实验室建设投入50%以上,真正实现科学实验室搬回家的愿望,真正让科学教育走进千家万户。本申请的SLAB实验主机具有组装状态和拆分状态,在组装状态,方便携带;在拆分状态,SLAB实验主机通过支架立于桌面,通过遥感手柄可无线操作SLAB实验主机中的画面和图像。故实验主机具有便携及方便操作的优点。

The application discloses a SLAB super laboratory and an SLAB experiment host component, and relates to experimental equipment. The SLAB super laboratory of the present application includes a detachable SLAB experimental bench and a SLAB experimental host assembly. The SLAB bench includes a base, imaging area, top cover, display, and a naked-eye 3D imaging plate. The components of the SLAB experiment host include the SLAB experiment host and the remote sensing handle. The laboratory structure is simple and the cost is low, which can reduce the investment in the laboratory construction of schools and education and training institutions by more than 50%. The SLAB experimental host of this application has an assembled state and a disassembled state. In the assembled state, it is easy to carry; in the disassembled state, the SLAB experimental host stands on the desktop through a bracket, and the pictures and images in the SLAB experimental host can be wirelessly operated through the remote sensing handle. Therefore, the experimental host has the advantages of portability and convenient operation.

Description

The super laboratory SLAB and SLAB test host component
Technical field
This application involves a kind of experimental facilities, test host groups more particularly to a kind of super laboratory SLAB and SLABPart.
Background technique
Currently, China, under existing education of science system, there are scientific teacher troop, there is a serious shortage in the supply, scientific experimentation equipment is tightWeight is insufficient, education of science content is irregular, the simple and crude serious problems such as single of experimental facilities.Build making for a research laboratoryFor valence often millions of, this makes education department have a heart but no strength, and thus hinders the universal and development of education of science.In addition, the peopleBetween have the hope for moving research laboratory home.
Therefore, how really to realize the hope that research laboratory moves home, and really education of science is allowed to come into thousand ten thousandWhile family, school and religion wall telephone set structure lab construction investment can be reduced, be current urgent problem to be solved.
Summary of the invention
Aiming to overcome that the above problem or at least being partially solved or extenuate for the application solves the above problems.
According to the one aspect of the application, a kind of super laboratory SLAB is provided, wherein SLAB (English full text:Super Laboratory, Chinese translation: super laboratory), for showing 3D naked eye line holographic projections, comprising:
SLAB experimental bench comprising:
Pedestal is located at bottom, the other parts being used to support in the SLAB experimental bench;
Imaging region, the square space being made of four rod pieces, for showing projection, four rod pieces correspond to the baseFour vertex of square contour in the top surface of seat, four rod pieces are vertical with the top surface and are fixedly connected;
Top cover, the top being covered in four rod pieces are simultaneously firmly connected with it;
Display is arranged at the SLAB experimental bench, for projecting image to be shown in SLAB experiment hostOn naked eye 3D imaging plate;
Naked eye 3D imaging plate, oblique cutting is in the imaging region, for playing naked eye 3D image frame;And
SLAB tests host component, comprising:
SLAB test host, be detachably connected with the SLAB experimental bench, connection when with the SLAB experimental bench connection,The SLAB experiment host has screen, is used as operation interface, needs presentation content to be shown with selection;
Remote sensing handle is detachably connected, for controlling the naked eye in the SLAB experimental bench with SLAB experiment host3D image.
Optionally, SLAB experiment host and the SLAB experimental bench are detachably connected are as follows: the top surface of the pedestalLocate that there is the inclined-plane extended downwardly by top surface, the lower edge on the inclined-plane, which extends to be formed vertically upward, accommodates the SLAB experimentSLAB experiment host is inserted by the mounting portion of host;
The naked eye 3D imaging plate is one piece, and one end of which is fixed at the imaging region front top, the other end is fixedAt the bottom of the imaging region rear end, to form zigzag configuration with the imaging region;
The display is arranged at the top surface of the pedestal, and screen is upward.
Optionally, SLAB experiment host and the SLAB experimental bench are detachably connected are as follows: the top surface of the top coverLocate that there is the inclined-plane extended downwardly by top surface, the lower edge on the inclined-plane, which extends to be formed vertically upward, accommodates the SLAB experimentSLAB experiment host is inserted by the mounting portion of host;
The naked eye 3D imaging plate is one piece, and one end of which is fixed at the imaging region front top, the other end is fixedAt the bottom of the imaging region rear end, to form positive zigzag configuration with the imaging region;
The display is arranged at the bottom surface of the top cover, and screen is downward.
Optionally, SLAB experiment host and the SLAB experimental bench are detachably connected are as follows: the top surface of the pedestalLocate that there is the inclined-plane extended downwardly by top surface, the lower edge on the inclined-plane, which extends to be formed vertically upward, accommodates the SLAB experimentSLAB experiment host is inserted by the mounting portion of host;
The naked eye 3D imaging plate is four pieces, and corresponding to four ends of the imaging region, each naked eye 3D imaging plate isThe vertex of equilateral triangle, each naked eye 3D imaging plate is fixed at the center at the top of the imaging region, each naked eye 3D imagingThe bottom edge of plate is fixed at the bottom that the surely corresponding imaging region is respectively held, to form pyramid knot with the imaging regionStructure;
The display is arranged at the bottom surface of the top cover, and screen is downward.
Optionally, the side-walls of the SLAB experiment host are equipped with hard contact, correspondingly, setting in the SLAB experimental benchThe hard contact of some hard contacts, the SLAB experiment host is contacted with the hard contact of the SLAB experimental bench, by instituteState the display connection in SLAB experiment host and the SLAB experimental bench.
Optionally, it is correspondingly provided with hyaline membrane at four ends of the imaging region, the imaging region is covered in it.
Optionally, the remote sensing handle and SLAB experiment host are detachably connected as slide block type connection structure,
Two sides of the remote sensing handle are correspondingly provided with outwardly projecting sliding block, correspondingly, the SLAB tests hostTwo sides be correspondingly provided with track so that the sliding block can track sliding relatively.
On the other hand the application additionally provides a kind of SLAB experiment host component, comprising:
SLAB test host, for being detachably connected with SLAB experimental bench, connection when with the SLAB experimental bench connection,The SLAB experiment host has screen, is used as operation interface, needs presentation content to be shown, the SLAB experiment master with selectionMachine can be used as host use, and the screen of the SLAB experiment host is also used to show image and picture;
Remote sensing handle is detachably connected, for controlling the naked eye in the SLAB experimental bench with SLAB experiment host3D image is also used to control image and picture in the SLAB experiment host;
Wherein, the SLAB experiment host as host in use, the SLAB experiment host have assembled state withDisassembled form, in assembled state, the SLAB experiment host is portable experiment host, in disassembled form, the SLAB experimentHost stands on desktop by bracket, by remote sensing handle can SLAB described in radio operation test picture and image in host.
Optionally, the remote sensing handle and SLAB experiment host are detachably connected as slide block type connection structure,
Two sides of the remote sensing handle are correspondingly provided with outwardly projecting sliding block, correspondingly, the SLAB tests hostTwo sides be correspondingly provided with track so that the sliding block can track sliding relatively.
Optionally, it is additionally provided with retention system between the remote sensing handle and SLAB experiment host, described in fixedThe installation site of remote sensing handle and SLAB experiment host.
The super laboratory the SLAB of the application includes dismountable SLAB experimental bench and SLAB experiment host component, structureSimply, low cost can reduce school and 50% or more religion wall telephone set structure lab construction investment, and education sector fund, which is significantly increased, to be madeWith rate, the matter of great urgency of educational unit is solved, while can really realize the hope that research laboratory moves home, science is really allowed to be taughtIt educates and comes into huge numbers of families.Therefore, using the application can solve the scientific teacher troop under existing education of science system extremely it is deficientWeary, scientific experimentation equipment wretched insufficiency, education of science content are irregular, the simple and crude serious problems such as single of experimental facilities.
The SLAB experiment host of the application includes dismountable SLAB experiment host and remote sensing handle, with assembled stateAnd disassembled form is convenient for carrying in assembled state;In disassembled form, SLAB tests host and stands on desktop by bracket, by distantFeel handle can radio operation SLAB experiment host in picture and image.Therefore has the advantages that portable and facilitate operation.
According to the accompanying drawings to the detailed description of the specific embodiment of the application, those skilled in the art will be moreAbove-mentioned and other purposes, the advantages and features of the application are illustrated.
Detailed description of the invention
Some specific embodiments of the application are described in detail by way of example and not limitation with reference to the accompanying drawings hereinafter.Identical appended drawing reference denotes same or similar part or part in attached drawing.It should be appreciated by those skilled in the art that theseWhat attached drawing was not necessarily drawn to scale.In attached drawing:
Fig. 1 is the schematic diagram according to the super laboratory SLAB of the application one embodiment;
Fig. 2 is the schematic diagram according to the super laboratory SLAB of the application another embodiment;
Fig. 3 is the schematic diagram according to the super laboratory SLAB of the application another embodiment;
Fig. 4 is the schematic installation diagram that host is tested according to the SLAB of the application one embodiment;
Fig. 5 is the schematic parts explosion of the experiment host of SLAB shown in Fig. 4.
Each symbol indicates that meaning is as follows in figure:
The super laboratory 100 SLAB,
10 SLAB experimental benches,
11 pedestals, 12 imaging regions, 13 top covers, 14 naked eye 3D imaging plates, the hard contact of 15 SLAB experimental benches, 16 peacesDress portion, 17 displays,
20 SLAB test host component,
21 SLAB experiment host, the hard contact of 22 SLAB experiment host, 23 tracks, 24 remote sensing handles, 25 sliding blocks, 26Retention system, 27 screens.
Specific embodiment
Fig. 1 is the schematic diagram according to the super laboratory SLAB of the application one embodiment.Fig. 2 is according to this ShenPlease another embodiment the super laboratory SLAB schematic diagram.Fig. 3 is according to another embodiment of the applicationThe schematic diagram in the super laboratory SLAB.
As shown in Figure 1, present embodiments providing a kind of super laboratory 100 SLAB referring also to Fig. 2-Fig. 3, whereinSLAB (English full text: Super Laboratory, Chinese translation: super laboratory), for showing 3D naked eye line holographic projections.Super 100 generality of laboratory of SLAB may include: SLAB experimental bench 10 and SLAB experiment host component 20.SLAB experimental bench 10It may include: pedestal 11, imaging region 12, top cover 13, display 17 and naked eye 3D imaging plate 14.Pedestal 11 is located at bottom, usesOther parts in the support SLAB experimental bench 10.The square space that imaging region 12 is made of four rod pieces, is used forShow projection, four rod pieces correspond to four vertex of square contour in the top surface of the pedestal 11, four rod pieces and the topFace is vertical and is fixedly connected.Top that top cover 13 is covered in four rod pieces is simultaneously firmly connected with it.Display 17 is arrangedAt the SLAB experimental bench 10, for image to be shown in SLAB experiment host 21 to be projected naked eye 3D imaging plate 14On.Display 17 includes decoder, can show the image of arbitrary format.14 oblique cutting of naked eye 3D imaging plate is in the imaging region 12It is interior, for playing naked eye 3D image frame.SLAB experiment host component 20 includes: SLAB experiment host 21 and remote sensing handle 24.SLAB experiment host 21 be detachably connected with the SLAB experimental bench 10, connection when and 10 connection of SLAB experimental bench, instituteStating SLAB experiment host 21 has screen 27, is used as operation interface, needs presentation content to be shown with selection.Remote sensing handle 24 withThe SLAB experiment host 21 is detachably connected, for controlling the naked eye 3D image in the SLAB experimental bench 10.
More specifically, naked eye 3D imaging plate 14 adds 3D imaging film to form by transparent imaging plate.
Super 100 working principle of laboratory of SLAB: referring to Fig. 1, SLAB experiment host and SLAB experimental bench 10 can be splitCombination.The remote sensing handle 24 of SLAB experiment host two sides is laid down first, SLAB experiment host 21 can expose two wood side-guides, sliding railThe slotting mating insertion of grain formed with 10 front lower section mounting portion 16 of SLAB experimental bench.Hard contact in 10 slot of SLAB experimental benchIt can be contacted with hard contact in SLAB experiment 21 liang of wood side-guides of host, SLAB tests host and the success of 10 connection of SLAB experimental bench.After SLAB tests host and 10 successful connection of SLAB experimental bench, the display 17 of 10 lower section of SLAB experimental bench, which can test SLAB, to be ledImage to be shown projects on top naked eye 3D imaging plate 14 in machine 21, and naked eye 3D imaging plate 14 is presented naked eye 3D to user and drawsFace picture, user need the naked eye 3D image gone in control SLAB experimental bench 10 by the remote sensing handle 24 in hand, carry out relatedExperiment and study, and then reach and should have good result.
The super laboratory 100 the SLAB of the application includes that dismountable SLAB experimental bench 10 and SLAB test host component20, structure is simple, low cost, can reduce school and 50% or more religion wall telephone set structure lab construction investment, education is significantly increasedField rate of utilization of funds solves the matter of great urgency of educational unit, while can really realize the hope that research laboratory moves home, veryJust education of science is allowed to come into huge numbers of families.Therefore, it can solve the scientific teacher under existing education of science system using the applicationThere is a serious shortage in the supply for troop, scientific experimentation equipment wretched insufficiency, education of science content are irregular, the simple and crude sternnesses such as single of experimental facilitiesProblem.
In addition, experiment is done there are security risk in traditional laboratory, misoperation can bring actual bodily harm to experimenter.ExampleSuch as, the explosion of alcolhol burner bring is blown out.And the application is used, when blowing out alcolhol burner, the super laboratory 100 SLAB can be simulatedTrue explosion scene out enables experimenter to have true visual impression and experience sense, due to being that simulated scenario therefore will notIt really explodes, sensual injury will not be brought to experimenter.Therefore the application really display experiment scene in the case where,The absolutely safety that can guarantee experimenter, solves the trouble and worry of teacher and parent.
As shown in Figure 1, not installing the situation that SLAB tests host 21 for the laboratory SLAB.In the present embodiment, the SLABExperiment host 21 and the SLAB experimental bench 10 are detachably connected are as follows: with from top surface to downward at the top surface of the pedestal 11The inclined-plane stretched, the lower edge on the inclined-plane, which extends to be formed vertically upward, accommodates the mounting portion 16 that the SLAB tests host 21,SLAB experiment host 21 to be inserted.The naked eye 3D imaging plate 14 is one piece, and one end of which is fixed on the imagingsAt 12 front top of region, the other end is fixed at the 12 rear end bottom of imaging region, to be formed with the imaging region 12Zigzag configuration.The display 17 is arranged at the top surface of the pedestal 11, and screen is upward.
As shown in Fig. 2, not installing the situation that SLAB tests host 21 for the laboratory SLAB.In the present embodiment, the SLABExperiment host 21 and the SLAB experimental bench 10 are detachably connected are as follows: with from top surface to downward at the top surface of the top cover 13The inclined-plane stretched, the lower edge on the inclined-plane, which extends to be formed vertically upward, accommodates the mounting portion 16 that the SLAB tests host 21,SLAB experiment host 21 to be inserted.The naked eye 3D imaging plate 14 is one piece, and one end of which is fixed on the imagingsAt 12 front top of region, the other end is fixed at the 12 rear end bottom of imaging region, to be formed with the imaging region 12Positive zigzag configuration.The display 17 is arranged at the bottom surface of the top cover 13, and screen is downward.
As shown in figure 3, installing the situation that SLAB tests host 21 for the laboratory SLAB.In the present embodiment, the SLAB is realTest being detachably connected for host 21 and the SLAB experimental bench 10 are as follows: have at the top surface of the pedestal 11 and extended downwardly by top surfaceInclined-plane, the lower edge on the inclined-plane extends the mounting portion 16 for being formed and accommodating SLAB experiment host 21 vertically upward, withSLAB experiment host 21 is inserted.The naked eye 3D imaging plate 14 is four pieces, corresponding to the imaging region 12Four ends, each naked eye 3D imaging plate 14 are equilateral triangle, and the vertex of each naked eye 3D imaging plate 14 is fixed on the imaging areaAt the center at 12 top of domain, the bottom edge of each naked eye 3D imaging plate 14 is fixed on the bottom that the surely corresponding imaging region 12 is respectively heldAt portion, to form pyramid structure with the imaging region 12.The display 17 is arranged at the bottom surface of the top cover 13,And screen is downward.
Certainly, in other embodiments, the SLAB experiment host component 20 can also be mounted on the SLAB experimental bench10 side.
In the application it is forward and backward, top, bottom orientation be defined on the basis of the attached drawing that reader sees it is forward and backward, top, bottom.
Fig. 4 is the schematic installation diagram that host is tested according to the SLAB of the application one embodiment.Fig. 5 is shown in Fig. 4The schematic parts explosion of SLAB experiment host.
As shown in figure 5, the side-walls of the SLAB experiment host 21 are equipped with hard contact.Correspondingly, referring to Fig. 1 or Fig. 2,The hard contact being equipped in the SLAB experimental bench 10.As shown in figure 3, the hard contact 22 of SLAB experiment host with it is describedThe hard contact 15 of SLAB experimental bench 10 contacts, by the display of SLAB experiment host 21 and the SLAB experimental bench 1017 connection.
As shown in Figure 1, in the present embodiment, being correspondingly provided at four ends of the imaging region 12 referring also to Fig. 2-Fig. 3Hyaline membrane covers on the imaging region 12 in it.
As shown in figure 5, the remote sensing handle 24 is connect with the slide block type that is detachably connected as of SLAB experiment host 21Structure.Two sides of the remote sensing handle 24 are correspondingly provided with outwardly projecting sliding block 25, correspondingly, the SLAB tests host21 two sides are correspondingly provided with track 23, so that the sliding block 25 can the relatively described sliding of track 23.
As shown in figure 4, the present embodiment additionally provides a kind of SLAB experiment host component, comprising: SLAB referring also to Fig. 5Test host 21 and remote sensing handle 24.Remote sensing handle 24 and SLAB experiment host 21 is detachably connected.
Referring to Fig. 1, SLAB experiment host 21 can be used for being detachably connected with SLAB experimental bench 10.Connection when with it is described17 connection of display screen of SLAB experimental bench 10, the SLAB experiment host, which has, to be shielded, and 27, it is used as operation interface, to select to needThe presentation content of display.Display 17 projects image to be shown in SLAB experiment host 21 on naked eye 3D imaging plate 14.Naked eye 3D imaging plate is for playing naked eye 3D image frame.Remote sensing handle 24 is used to control the naked eye in the SLAB experimental bench 103D image.
Referring to Fig. 5, the SLAB experiment host 21 can be used as host use, and the screen 27 of the SLAB experiment host 21 is usedIn display image and picture.Remote sensing handle 24 is used to control the image and picture in the SLAB experiment host 21.Wherein, SLABTesting host 21 has assembled state and disassembled form.In assembled state, the SLAB experiment host 21 is portable experiment masterMachine, it is easy to carry.In disassembled form, the SLAB experiment host 21 stands on desktop by bracket, can nothing by remote sensing handle 24Line operates the picture and image in the SLAB experiment host 21.
The SLAB experiment host of the application includes dismountable SLAB experiment host 21 and remote sensing handle 24, has assemblingState and disassembled form.In assembled state, appearance is convenient for carrying similar to portable game machine.In disassembled form, SLAB experiment masterMachine 21 stands on desktop by bracket, by remote sensing handle 24 can radio operation SLAB test host 21 in picture and image.ThereforeHave the advantages that portable and facilitates operation.
As shown in figure 5, the remote sensing handle 24 is detachably connected as with SLAB experiment host 21 in the present embodimentSlide block type connection structure.Two sides of the remote sensing handle 24 are correspondingly provided with outwardly projecting sliding block 25, correspondingly, describedTwo sides of SLAB experiment host 21 are correspondingly provided with track 23, so that the sliding block 25 can the relatively described sliding of track 23.
In other embodiments, the remote sensing handle 24 can also be with the SLAB being detachably connected for host 21 of experimentCassette connection or hinge connection.
As shown in figure 5, being additionally provided with maintenance between the remote sensing handle 24 and SLAB experiment host 21 in the present embodimentStructure 26, for fixing the installation site of the remote sensing handle 24 and SLAB experiment host 21.Retention system 26 can beThe structure of clamp and elastic slice composition, can also be other structures commonly used in the prior art.
It should be noted that unless otherwise indicated, technical term or scientific term used in this application should be this ShenIt please the ordinary meaning that is understood of one of ordinary skill in the art.
In the description of the present application, it is to be understood that term " center ", " longitudinal direction ", " transverse direction ", " length ", " width "," thickness ", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom" "inner", "outside", " up timeThe orientation or positional relationship of the instructions such as needle ", " counterclockwise ", " axial direction ", " radial direction ", " circumferential direction " be orientation based on the figure orPositional relationship is merely for convenience of description the application and simplifies description, rather than the device or element of indication or suggestion meaning mustThere must be specific orientation, be constructed and operated in a specific orientation, therefore should not be understood as the limitation to the application.
In addition, term " first ", " second " etc. are used for description purposes only, it is not understood to indicate or imply relatively importantProperty or implicitly indicate the quantity of indicated technical characteristic.In the description of the present application, the meaning of " plurality " is two or more,Unless otherwise specifically defined.
In this application unless specifically defined or limited otherwise, term " installation ", " connected ", " connection ", " fixation " etc.Term shall be understood in a broad sense, for example, it may be being fixedly connected, may be a detachable connection, or integral;It can be mechanical connectIt connects, is also possible to be electrically connected;It can be directly connected, can also can be in two elements indirectly connected through an intermediaryThe interaction relationship of the connection in portion or two elements.It for the ordinary skill in the art, can be according to specific feelingsCondition understands the concrete meaning of above-mentioned term in this application.
In this application unless specifically defined or limited otherwise, fisrt feature in the second feature " on " or " down " can be withIt is that the first and second features directly contact or the first and second features pass through intermediary mediate contact.Moreover, fisrt feature existsSecond feature " on ", " top " and " above " but fisrt feature be directly above or diagonally above the second feature, or be merely representative ofFirst feature horizontal height is higher than second feature.Fisrt feature can be under the second feature " below ", " below " and " below "One feature is directly under or diagonally below the second feature, or is merely representative of first feature horizontal height less than second feature.
The preferable specific embodiment of the above, only the application, but the protection scope of the application is not limited thereto,Within the technical scope of the present application, any changes or substitutions that can be easily thought of by anyone skilled in the art,Should all it cover within the scope of protection of this application.Therefore, the protection scope of the application should be with scope of protection of the claimsSubject to.

Claims (10)

Translated fromChinese
1.一种SLAB超级实验室,用于展示3D裸眼全息投影,其特征在于,包括:1. a kind of SLAB super laboratory, is used for showing 3D naked eye holographic projection, it is characterized in that, comprise:SLAB实验台,其包括:SLAB test bench, which includes:基座,位于底部,用于支撑所述SLAB实验台中的其他零件;A base, located at the bottom, used to support other parts in the SLAB test bench;成像区域,是由四个杆件组成的方形空间,用于展示投影,四个杆件对应于所述基座的顶面中方形轮廓的四个顶点,四个杆件与所述顶面垂直并固定连接;The imaging area is a square space composed of four rods for displaying projection, the four rods correspond to the four vertices of the square outline in the top surface of the base, and the four rods are perpendicular to the top surface and fixed connection;顶盖,覆盖在所述四个杆件中的顶端并与其固定连接;a top cover, covering the top ends of the four rods and being fixedly connected with them;显示器,布置在所述SLAB实验台处,用于将SLAB实验主机中要显示的影像投射到裸眼3D成像板上;A display, arranged at the SLAB experimental bench, used for projecting the image to be displayed in the SLAB experimental host onto the naked-eye 3D imaging board;裸眼3D成像板,斜插在所述成像区域内,用于播放裸眼3D影像画面;及A naked-eye 3D imaging board, inserted obliquely in the imaging area, and used for playing a naked-eye 3D image; andSLAB实验主机组件,包括:SLAB experiment host components, including:SLAB实验主机,与所述SLAB实验台可拆卸连接,在连接时与所述SLAB实验台联通,所述SLAB实验主机具有屏幕,用做操作界面,以选择需要显示的影像内容;The SLAB experiment host is detachably connected to the SLAB experiment bench, and communicates with the SLAB experiment bench when connected, and the SLAB experiment host has a screen, which is used as an operation interface to select the image content to be displayed;遥感手柄,与所述SLAB实验主机可拆卸连接,用于控制所述SLAB实验台中的裸眼3D影像。The remote sensing handle is detachably connected to the SLAB experiment host, and is used to control the naked-eye 3D image in the SLAB experiment bench.2.根据权利要求1所述的SLAB超级实验室,其特征在于,所述SLAB实验主机与所述SLAB实验台的可拆卸连接为:所述基座的顶面处具有由顶面向下延伸的斜面,所述斜面的下边角处垂直向上延展形成容纳所述SLAB实验主机的安装部,以将所述SLAB实验主机插入其中;2. SLAB super laboratory according to claim 1, is characterized in that, the detachable connection of described SLAB experiment host and described SLAB experiment bench is: the top surface of described base has a downward extending from the top surface. an inclined plane, the lower corner of the inclined plane extends vertically upward to form a mounting part for accommodating the SLAB experiment host, so that the SLAB experiment host is inserted therein;所述裸眼3D成像板为一块,其一端固定在所述成像区域前端顶部处,另一端固定在所述成像区域后端底部处,以与所述成像区域形成倒Z形结构;The naked eye 3D imaging plate is a piece, one end of which is fixed at the top of the front end of the imaging area, and the other end is fixed at the bottom of the rear end of the imaging area, so as to form an inverted Z-shaped structure with the imaging area;所述显示器布置在所述基座的顶面处,且屏幕向上。The display is arranged at the top surface of the base with the screen facing upwards.3.根据权利要求1所述的SLAB超级实验室,其特征在于,所述SLAB实验主机与所述SLAB实验台的可拆卸连接为:所述顶盖的顶面处具有由顶面向下延伸的斜面,所述斜面的下边角处垂直向上延展形成容纳所述SLAB实验主机的安装部,以将所述SLAB实验主机插入其中;3. SLAB super laboratory according to claim 1, is characterized in that, the detachable connection of described SLAB experiment host and described SLAB experiment bench is: the top surface of described top cover has a downward extending from the top surface. an inclined plane, the lower corner of the inclined plane extends vertically upward to form a mounting part for accommodating the SLAB experiment host, so that the SLAB experiment host is inserted therein;所述裸眼3D成像板为一块,其一端固定在所述成像区域前端顶部处,另一端固定在所述成像区域后端底部处,以与所述成像区域形成正Z形结构;The naked-eye 3D imaging plate is a piece, one end of which is fixed at the top of the front end of the imaging area, and the other end is fixed at the bottom of the rear end of the imaging area, so as to form a positive Z-shaped structure with the imaging area;所述显示器布置在所述顶盖的底面处,且屏幕向下。The display is arranged at the bottom surface of the top cover with the screen downward.4.根据权利要求1所述的SLAB超级实验室,其特征在于,所述SLAB实验主机与所述SLAB实验台的可拆卸连接为:所述基座的顶面处具有由顶面向下延伸的斜面,所述斜面的下边角处垂直向上延展形成容纳所述SLAB实验主机的安装部,以将所述SLAB实验主机插入其中;4. SLAB super laboratory according to claim 1, is characterized in that, the detachable connection of described SLAB experiment host and described SLAB experiment bench is: the top surface of described base has a downward extending from the top surface. an inclined plane, the lower corner of the inclined plane extends vertically upward to form a mounting part for accommodating the SLAB experiment host, so that the SLAB experiment host is inserted therein;所述裸眼3D成像板为四块,对应于所述成像区域的四个端,每一裸眼3D成像板为正三角形,每一裸眼3D成像板的顶点固定在所述成像区域顶部的中心处,每一裸眼3D成像板的底边固定在定对应的所述成像区域各端的底部处,以与所述成像区域形成金字塔形结构;There are four naked-eye 3D imaging plates, corresponding to the four ends of the imaging area, each naked-eye 3D imaging plate is an equilateral triangle, and the vertex of each naked-eye 3D imaging plate is fixed at the center of the top of the imaging area, The bottom edge of each naked-eye 3D imaging plate is fixed at the bottom of each end of the corresponding imaging area, so as to form a pyramid structure with the imaging area;所述显示器布置在所述顶盖的底面处,且屏幕向下。The display is arranged at the bottom surface of the top cover with the screen downward.5.根据权利要求1所述的SLAB超级实验室,其特征在于,所述SLAB实验主机的侧壁处设有金属触点,相应的,所述SLAB实验台中设有的金属触点,所述SLAB实验主机的金属触点与所述SLAB实验台的金属触点接触,以将所述SLAB实验主机与所述SLAB实验台中的显示器联通。5. SLAB super laboratory according to claim 1, is characterized in that, the side wall of described SLAB experiment host is provided with metal contact, correspondingly, the metal contact provided in described SLAB experiment table, described The metal contacts of the SLAB experiment host are in contact with the metal contacts of the SLAB experiment bench, so as to communicate the SLAB experiment host with the display in the SLAB experiment bench.6.根据权利要求1所述的SLAB超级实验室,其特征在于,所述成像区域的四个端处对应设有透明膜,以将所述成像区域罩在其内。6 . The SLAB super laboratory according to claim 1 , wherein four ends of the imaging area are correspondingly provided with transparent films to cover the imaging area therein. 7 .7.根据权利要求1-6中任一项所述的SLAB超级实验室,其特征在于,所述遥感手柄与所述SLAB实验主机的可拆卸连接为滑块式连接结构,7. SLAB super laboratory according to any one of claims 1-6, is characterized in that, the detachable connection of described remote sensing handle and described SLAB experiment host is a slider-type connection structure,所述遥感手柄的两个侧部对应设有向外突出的滑块,相应的,所述SLAB实验主机的两个侧部对应设有轨道,以使得所述滑块可相对所述轨道滑动。Two sides of the remote sensing handle are correspondingly provided with sliders protruding outward, and correspondingly, two sides of the SLAB experiment host are correspondingly provided with rails, so that the sliders can slide relative to the rails.8.一种SLAB实验主机组件,其特征在于,包括:8. A SLAB experiment host assembly, characterized in that, comprising:SLAB实验主机,用于与SLAB实验台可拆卸连接,在连接时与所述SLAB实验台联通,所述SLAB实验主机具有屏幕,用做操作界面,以选择需要显示的影像内容,所述SLAB实验主机可作为主机使用,所述SLAB实验主机的屏幕还用于显示图像和画面;The SLAB experiment host is used for detachable connection with the SLAB experiment bench, and communicates with the SLAB experiment bench when connected. The SLAB experiment host has a screen, which is used as an operation interface to select the image content to be displayed. The SLAB experiment The host can be used as a host, and the screen of the SLAB experiment host is also used to display images and pictures;遥感手柄,与所述SLAB实验主机可拆卸连接,用于控制所述SLAB实验台中的裸眼3D影像,还用于控制所述SLAB实验主机中的图像和画面;A remote sensing handle, detachably connected to the SLAB experiment host, used to control the naked-eye 3D image in the SLAB experiment bench, and also used to control the images and pictures in the SLAB experiment host;其中,在所述SLAB实验主机作为主机使用时,所述SLAB实验主机具有组装状态和拆分状态,在组装状态,所述SLAB实验主机为便携式实验主机,在拆分状态,所述SLAB实验主机通过支架立于桌面,通过遥感手柄可无线操作所述SLAB实验主机中的画面和图像。Wherein, when the SLAB experiment host is used as a host, the SLAB experiment host has an assembled state and a disassembled state. In the assembled state, the SLAB experiment host is a portable experiment host, and in the disassembled state, the SLAB experiment host The pictures and images in the SLAB experiment host can be operated wirelessly through the stand on the desktop and through the remote sensing handle.9.根据权利要求8所述的SLAB实验主机组件,其特征在于,所述遥感手柄与所述SLAB实验主机的可拆卸连接为滑块式连接结构,9. SLAB experiment host assembly according to claim 8, is characterized in that, the detachable connection of described remote sensing handle and described SLAB experiment host is a slider type connection structure,所述遥感手柄的两个侧部对应设有向外突出的滑块,相应的,所述SLAB实验主机的两个侧部对应设有轨道,以使得所述滑块可相对所述轨道滑动。Two sides of the remote sensing handle are correspondingly provided with sliders protruding outward, and correspondingly, two sides of the SLAB experiment host are correspondingly provided with rails, so that the sliders can slide relative to the rails.10.根据权利要求8或9所述的SLAB实验主机组件,其特征在于,所述遥感手柄与所述SLAB实验主机之间还设有固位结构,用于固定所述遥感手柄与所述SLAB实验主机的安装位置。10. The SLAB experiment host assembly according to claim 8 or 9, wherein a retaining structure is also provided between the remote sensing handle and the SLAB experimental host for fixing the remote sensing handle and the SLAB The installation location of the experimental host.
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