WO2018014508A1 - 全息投影盒 - Google Patents

全息投影盒 Download PDF

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Publication number
WO2018014508A1
WO2018014508A1 PCT/CN2016/112247 CN2016112247W WO2018014508A1 WO 2018014508 A1 WO2018014508 A1 WO 2018014508A1 CN 2016112247 W CN2016112247 W CN 2016112247W WO 2018014508 A1 WO2018014508 A1 WO 2018014508A1
Authority
WO
WIPO (PCT)
Prior art keywords
plate
side plate
holographic projection
tablet
projection box
Prior art date
Application number
PCT/CN2016/112247
Other languages
English (en)
French (fr)
Inventor
米晓林
Original Assignee
深圳市中数创意文化传媒技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市中数创意文化传媒技术有限公司 filed Critical 深圳市中数创意文化传媒技术有限公司
Publication of WO2018014508A1 publication Critical patent/WO2018014508A1/zh

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Classifications

    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B21/00Projectors or projection-type viewers; Accessories therefor
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer

Definitions

  • the present invention relates to the field of optical engineering technology, and in particular, to a holographic projection box.
  • holographic projection devices or devices used in combination with handheld terminals there are relatively few holographic projection devices or devices used in combination with handheld terminals on the market; and the holographic projection devices or devices used in combination with tablet terminals do not specifically design an embedded structure for different tablet sizes, so that the tablet is not embedded.
  • a primary object of the present invention is to provide a holographic projection cassette that is intended to accommodate the use of tablets of different sizes.
  • the holographic projection box of the present invention is used in combination with a tablet computer, and the holographic projection box comprises a box body and a plurality of supporting cover plates placed on the top surface of the box body; each of the supporting cover plates is provided.
  • An embedded recess; each of the embedded recesses is provided with the tablet having a corresponding size, and the slot bottom of the recess is provided with an opening for projecting an image of a screen of the tablet;
  • the top surface of the tablet is adapted to accommodate the use of the tablet of different sizes by placing the support cover corresponding to the size of the tablet.
  • the box body comprises a bottom plate, a back plate connected to the bottom plate, a left side plate and a right side plate; the left side plate and the right side plate are disposed on opposite ends of the back plate; a first protrusion is disposed on both ends of the back plate connected to the left side plate and the right side plate, and the left side plate and the right side plate are correspondingly disposed with the first protrusion
  • the first jack that fits.
  • the left side plate and the right side plate are respectively provided with a second protrusion
  • the support cover plate is correspondingly provided with a second insertion hole adapted to the second protrusion
  • the bottom plate is provided with a first folding plate, a second folding plate, a third folding plate and a fourth folding plate which are sequentially connected and have the same width on one end away from the back plate; through the first folding plate
  • the folding between the second folding plate, the third folding plate and the fourth folding plate forms a three-dimensional protrusion with the bottom plate;
  • the holographic projection box further comprises an imaging film, and one end of the imaging film is defined by the The joint between the three-dimensional protrusion and the bottom plate.
  • the length of the third flap is greater than the length of the first flap, and the length of the fourth flap is equal to or greater than the sum of the lengths of the bottom panel and the second flap;
  • the four-folded plate forms a cavity with the bottom plate; the left side plate and the right side plate are provided with a locking plate that can be inserted into the cavity at an end away from the connection with the supporting cover plate. .
  • the left side plate and the right side plate are provided with a fixing strip at an end connected to the bottom plate, and the fixing strip is disposed adjacent to the three-dimensional protrusion.
  • the left side plate and the right side plate are provided with a first light shielding strip at an end opposite to the fixing strip, and the first light shielding strip abuts the supporting cover plate.
  • the left side panel and the right side panel are provided with a second light shielding strip on the same end surface of the first light shielding strip, and the second light shielding strip is disposed adjacent to the backing plate; The other end is defined on the seam formed by the second light shielding strip and the support cover.
  • the holographic projection box further comprises a plurality of the background plates placed in the casing, the same end of the plurality of background plates being hingedly integrated, and the background plate is provided with a flip bar; the left side A gap is provided on the plate surface of the plate and the right side plate for the movement of the page turning bar.
  • the left side plate is a right angle trapezoidal plate, and the left side plate is connected to the support cover at a position of an acute angle thereof.
  • the holographic projection box is further provided with a function identification card for interacting with the tablet computer; an end of the bottom plate connected to the first flap is provided with an identification card board, the identification card board An identification area for placing the function identification card is provided.
  • the gap is provided with a limiting block that can define a longitudinal displacement of the page turning rod, and the limiting block is located near the upper and lower ends of the gap.
  • the void is disposed in an arcuate void that coincides with a flipping trajectory of the background panel.
  • a magnet block is disposed on each of said background plates.
  • the technical solution of the present invention is used by placing a supporting cover plate on the top surface of the box body, and there are a plurality of supporting cover plates, each supporting cover plate is provided with an embedded groove for a tablet of a corresponding size; the holographic projection box passes A support cover corresponding to the size of the tablet used is placed on the top surface of the case, and the support cover is detachably connected to the case.
  • a convenient holographic projection box can be used in combination with different sized tablet computers without affecting the projection imaging effect.
  • FIG. 1 is a schematic structural view of a backboard and a bottom plate according to an embodiment of a holographic projection box of the present invention
  • FIG. 2 is a schematic structural view of a backboard, a bottom panel, and a left side panel according to an embodiment of the holographic projection box of the present invention
  • FIG. 3 is a schematic structural view of a casing of an embodiment of a holographic projection box of the present invention.
  • FIG. 4 is a schematic structural view of the folding plate of the casing of the embodiment of the holographic projection box of the present invention.
  • Figure 5 is a front structural view of Figure 4.
  • FIG. 6 is a schematic structural view showing the mounting of a box body, a fixing strip, a first light shielding strip and a second light shielding strip according to an embodiment of the holographic projection box of the present invention
  • FIG. 7 is a schematic structural view showing the installation of a box body and a supporting cover plate according to an embodiment of the holographic projection box of the present invention
  • FIG. 8 is a schematic structural view showing the mounting of a box body and a supporting cover plate according to another embodiment of the holographic projection box of the present invention.
  • FIG. 9 is a schematic structural view showing a mounting between a box body and a supporting cover plate and a second light shielding strip according to still another embodiment of the holographic projection box of the present invention.
  • Figure 10 is an overall perspective view of an embodiment of a holographic projection box of the present invention.
  • Figure 11 is a right side view of Figure 10;
  • FIG. 12 is a schematic structural view of a background plate according to an embodiment of a holographic projection box of the present invention.
  • FIG. 13 is a schematic structural view of an identification card board and a function identification card according to an embodiment of a holographic projection box of the present invention
  • Figure 14 is a schematic view showing the structure of three sizes of support covers of the holographic projection box of the present invention.
  • first, second, and the like in the present invention are used for the purpose of description only, and are not to be construed as indicating or implying their relative importance or implicitly indicating the number of technical features indicated.
  • features defining “first” or “second” may include at least one of the features, either explicitly or implicitly.
  • the technical solutions between the various embodiments may be combined with each other, but must be based on the realization of those skilled in the art, and when the combination of the technical solutions is contradictory or impossible to implement, it should be considered that the combination of the technical solutions does not exist. It is also within the scope of protection required by the present invention.
  • the invention proposes a holographic projection box.
  • FIG. 1 is a schematic structural view of a back plate and a bottom plate according to an embodiment of a holographic projection box of the present invention
  • FIG. 2 is a structure of a back plate, a bottom plate and a left side plate according to an embodiment of the holographic projection box of the present invention
  • 3 is a schematic structural view of a casing of an embodiment of a holographic projection box of the present invention
  • FIG. 4 is a schematic structural view of a folding frame of a casing of an embodiment of the holographic projection box of the present invention
  • FIG. 6 is a schematic structural view showing the mounting of the box body and the fixing strip, the first light shielding strip and the second light shielding strip according to an embodiment of the holographic projection box of the present invention
  • FIG. 7 is an embodiment of the holographic projection box of the present invention
  • FIG. 8 is a schematic structural view showing the mounting of the casing and the supporting cover plate according to another embodiment of the holographic projection box of the present invention
  • FIG. 9 is still another embodiment of the holographic projection box of the present invention
  • FIG. 10 is a perspective view of an embodiment of the holographic projection box of the present invention
  • FIG. 11 is a right side view of FIG. 10
  • FIG. 13 is a holographic projection cassette identification card panel and a functional schematic structural embodiment of an identification card of the invention
  • FIG. 14 is a schematic structural support cover three sizes of holographic projection cassette of the present invention.
  • the holographic projection box is used in combination with the tablet computer 10.
  • the holographic projection box comprises a box body 100 and a plurality of supporting cover plates 200 placed on the top surface of the box body 100;
  • Each of the support covers 200 is provided with an embedded recess 210;
  • each of the embedded recesses 210 is placed with a tablet 10 of a corresponding size, and the slot bottom of the recess 210 is provided with an opening 211 for projecting an image of the screen of the tablet 10;
  • the body 100 is placed on its top surface by a support cover 200 corresponding to the size of the tablet 10 to accommodate the application of the tablet 10 of different sizes.
  • a top surface of the holographic projection box is placed in combination with a supporting cover 200 corresponding to the size of the tablet 10; in this embodiment, the holographic projection box is used.
  • the support cover 200 is preferably provided in three sizes, namely a support cover 200a, a support cover 200b, and a support cover 200c, and has a common length and width of 19.7 cm*14.8 cm, a thickness of 9.4 mm, a length and a width of 19.7 cm*14.8 cm, and a thickness of 7.5.
  • the size of the embedded recess 210 in each of the support covers 200 is adapted to the size of the above three common tablet computers 10;
  • the support cover plate 200a is suitable for each generation of tablet computers having a length and width of 19.7 cm*14.8 cm and a thickness of 9.4 mm.
  • the support cover plate 200b is a generation of tablet computers suitable for a length and width of 19.7 cm*14.8 cm and a thickness of 7.5 mm.
  • the plate 200a and the support cover 200c are commonly applied to generations of tablets having a length and width of 20 cm * 13.4 cm and a thickness of 7.2 mm; of course, in other embodiments, the insertion groove 210 is further To set the size of other species were common tablet.
  • the support cover 200a is placed on the case 100; when the tablet is 19.7 cm*14.8 cm in length and width
  • the support cover 200b is placed on the box body 100; when the tablet computer is a generation of a tablet computer having a length and a width of 20 cm * 13.4 cm and a thickness of 7.2 mm, the support cover is first used.
  • the 200a is placed on the casing 100, and the supporting cover 200c is placed in the fitting groove 210 on the supporting cover 200a for common use.
  • the volume of the support cover 200c is set to coincide with the insertion groove 210 of the support cover 200a, so that it is convenient to save the material of the support cover 200 without separately providing a plate that covers the case 100.
  • an opening 211 is provided on the support cover 200.
  • the size of the opening 211 is preferably the same as the size of the screen of the tablet 10.
  • the imaging area of the holographic projection box is greatly increased in the space, thereby improving the imaging effect.
  • the imaging end of the holographic projection box may be a transparent film or a transparent plastic plate.
  • an application program for supporting the holographic projection is installed, and the application program has the function of adjusting the brightness of the brightness of the playing image, without setting a lighting device in the holographic projection box. Used to adjust the holographic projection light.
  • the support cover 200 is detachably coupled to the casing 100.
  • the detachable connection between the support cover 200 and the casing 100 may be a plug or a snap fit.
  • the holographic projection box is further provided with a function identification card 510 for interactive use with the application. In order to facilitate the user to correctly and quickly place the function identification card 510 at a position where the tablet 10 is scanned, an identification card is placed.
  • the board 500 is disposed on an end of the bottom plate 110 connected to the first flap 150, and an identification area 501 is disposed on a surface of the identification card 500 facing the tablet computer 10; thus, when the user places the corresponding required function identification card 510 On the identification area 501 on the identification card board 500, at this time, the application controls the front camera of the tablet computer 10 to face downward, and scans the identification area 501 of the function identification card 510, and recognizes the recognized function identification card 510. The image content is converted into corresponding instructions to complete a complete interactive process.
  • the holographic projection box in this embodiment mainly uses a group of children over 5 years old, and in order to increase the interest of the children in the product, a colorful pattern is arranged on the outer wall of the box body 100.
  • both the function identification card 510 and the identification card board 500 are made of a single powder paper material.
  • the technical solution of the present invention is used by placing the supporting cover 200 on the top surface of the casing 100, and there are a plurality of supporting covers 200, and each supporting cover 200 is provided with an embedded groove for the tablet 10 of the corresponding size.
  • the holographic projection box is used by placing the support cover 200 corresponding to the size of the tablet 10 used on the top surface of the casing 100, and detachably connecting the support cover 200 to the casing 100.
  • Such a convenient holographic projection box can be used in combination with a tablet 10 of different sizes without affecting the projection imaging effect.
  • the case 100 includes a bottom plate 110, a back plate 120 connected to the bottom plate 110, a left side plate 130 and a right side plate 140; the left side plate 130 and the right side plate 140 are disposed on the back plate 120.
  • the two ends of the back plate 120 are respectively disposed on the two ends connected to the left side plate 130 and the right side plate 120, and the left side plate 130 and the right side plate 140 are correspondingly disposed with the first convex portion.
  • the first jack 131 (141) is adapted to be 121.
  • the box body 100 is divided into a plurality of panels, and the panel has a bottom plate 110, a back plate 120, a left side plate 130 and a right side plate 140, which can be used when used elsewhere.
  • the bottom plate 110 and the back plate 120 are integrally formed, that is, a plate is formed into a bottom plate 110 and a back plate by a folding operation.
  • the housing 100 is assembled into a box 100 which is an adjacent rectangular box with an open surface, and the support cover 200 is placed on the top surface of the box 100; During use, the tablet 10 is placed on the embedding recess 210 on the support cover 200, and the user can view images or video projected from the tablet from the front opening of the case 100.
  • first protrusions 121 are disposed on one end of the back plate 120 connected to the left side plate 130 and the right side plate 140.
  • the first protrusion 121 is a small plate and can be disposed in various shapes.
  • a first insertion hole 131 (141) is disposed on one end of the left side plate 130 and the right side plate 140 and the back plate 120.
  • the first insertion hole The hole 131 (141) is engaged with the first protrusion 121, that is, the first insertion hole 131 (141) is a strip hole having a width corresponding to the thickness of the first protrusion 121. In this way, the connection of the back plate 120 to the left side plate 130 and the right side plate 140 is completed by the first protrusion 121 being inserted into the first insertion hole 131 (141).
  • the left side panel 130 and the right side panel 140 are each provided with a second protrusion 132 (142).
  • the second protrusion 132 (142) is a small plate and can be disposed in various shapes;
  • the support cover 200 is correspondingly provided with a second insertion hole 201 adapted to the second protrusion 132 (142), that is,
  • the second insertion hole 201 is a strip-shaped hole having a width that coincides with the thickness of the second protrusion 132 (142). In this way, the second protrusion 132 (142) can be inserted into the second insertion hole 201, and the assembly of the support cover 200 and the left side plate 130 and the right side plate 140 can be completed.
  • the bottom plate 110 is provided with a first flap 150 , a second flap 160 , a third flap 170 , and a fourth flap 180 which are sequentially connected and have the same width at an end remote from the back panel 120 .
  • the holographic projection box further comprises an image forming film 300, One end of the image forming film 300 is defined at a seam between the solid protrusion 101 and the bottom plate 110.
  • a limiting structure that is, the three-dimensional protrusion 101 is disposed; and the three-dimensional protrusion 101 is connected by the first folding plate 150 and the second folding plate 160 which are sequentially connected to the bottom plate 110.
  • the third flap 170 and the fourth flap 180 are folded. Referring to FIG. 4 , the first flap 150 , the second flap 160 , the third flap 170 , and the fourth flap 180 are pressed from front to back . The crease is rolled up so that one end of the image forming film 300 can be abutted at the seam between the solid protrusion 101 and the bottom plate 110.
  • the convex plate is disposed on the end faces of the first flap 150 and the second flap 160 facing the left side panel 130 and the right side panel 140, and the first side flap 130 and the right side panel 140 are corresponding to the first fold
  • the position of the plate 150 and the second folding plate 160 is provided with a socket for inserting the protruding plate; thus, the folding between the protruding plates can be enhanced by the insertion between the protruding plate and the socket. firmness.
  • the length of the third flap 170 is greater than the length of the first flap 150, and the length of the fourth flap 180 is equal to or greater than the sum of the lengths of the bottom panel 110 and the second flap 160;
  • the four-fold plate 180 and the bottom plate 110 form a cavity 102;
  • the left side plate 130 and the right side plate 140 are provided with a locking plate 133 (163) that can be inserted into the cavity 102 at an end away from the connection with the supporting cover plate 200. ).
  • a new cavity 102 space can be created.
  • the cavity 102 is inserted into the latching plate 133 (143) at the bottom end of the left side plate 130 and the right side plate 140, and the bottom plate 110 and the left side plate 130 and the right side plate 140 are directly fixed.
  • the left side plate 130 and the right side plate 140 are provided with a fixing strip 103 at one end connected to the bottom plate 110 , and the fixing strip 103 is disposed adjacent to the three-dimensional protrusion 101 .
  • the left side plate 130 and the right side plate 140 are provided with an insertion hole for the fixing strip 103 to be connected to the end of the bottom plate 110 to facilitate the connection of the fixing strip 103 to the left side plate 130 and the right side plate 140; and the fixing strip 103
  • the displacement of the left side plate 130 and the right side plate 140 on the bottom plate 110 can be defined, thereby lifting the left side plate 130 and the right side plate 140 and
  • the connection of the bottom plate 110 serves to reinforce the structure of the casing 100.
  • the left side plate 130 and the right side plate 140 are provided with a first light shielding strip 104 at an end opposite to the fixing strip 103 , and the first light shielding strip 104 abuts against the support cover 200 .
  • the tablet 10 when the tablet 10 is playing an image or video, it is easy to see a picture from a portion of the screen of the tablet 10 near the back panel 120 from the front opening of the box 100, and the screen and image film 300 on the screen.
  • the user not only causes the user to feel dizzy during the viewing process, but also reduces the imaging effect of the imaging film 300; therefore, the left side plate 130 and the right side plate 140 are provided with the first end opposite to the fixing bar 103.
  • a light-shielding strip 104 that blocks the image from the tablet computer 10 (ie, the source of play) and enhances the imaged three-dimensionality of the holographic projection box.
  • the first light shielding strip 104 can also reinforce the structure of the casing 100.
  • the left side plate 130 and the right side plate 140 are mounted on the same end surface of the first light shielding strip 104 .
  • the second light shielding strip 105 is disposed adjacent to the back plate 120.
  • the second light-shielding strip 105 is preferably provided with two sizes, namely a second light-shielding strip 105a and a second light-shielding strip 105b; and the length and width are 19.7 cm*14.8 cm, the thickness is 7.5 mm, and the length and width are 20 cm*.
  • a 13.4 cm thick 7.2 mm sized tablet computer with reference to Figures 7 and 8, when a tablet having a length and width of 19.7 cm * 14.8 cm and a thickness of 7.5 mm is used, the second light blocking strip 105a is used; referring to Fig. 9, when used When a tablet having a length of 20 cm * 13.4 cm and a thickness of 7.2 mm is used, the second shading strip 105a and the second shading strip 105b are used.
  • the tablet computer 10 plays an image or video
  • it is mounted on the tablet 10 at a position close to the back panel 120 to emit light.
  • the second light blocking is set.
  • the strip 105, the light emitted from the tablet 10 is lowered through the second light-shielding strip 105, the second light-shielding strip 105 can block the most concentrated place of the light emitted from the tablet computer 10, and the light emitted from the lower side of the second light-shielding strip 105 can be
  • the imaging film 300 is provided with a light source; on the one hand, the light can be blocked from being reflected into the eyes of the user, and on the other hand, the light can be collected to provide the imaging film 300 with brightness for adjusting the imaged image, thereby improving the imaging effect of the holographic projection box.
  • the second light-shielding strip is disposed to abut against the support cover 200, that is, there is no gap between the second light-shielding strip 105 and the support cover 200, thereby improving the sealing property of the second light-shielding strip 105 and the support cover 200. Effectively block the light from shining out.
  • the other end of the image forming film 300 is defined on the seam formed by the second light shielding strip 105 and the support cover 200. As such, the imaging film 300 can adjust the imaging angle by the insertion position between the second light shielding strip 105 and the left side plate 130 and the right side plate 140, that is, the other end of the imaging film 300 is held by the second light shielding strip 105 and the support cover.
  • the played image or video is not easily distorted.
  • the holographic projection box further includes a plurality of background plates 400 placed in the casing 100, and the same ends of the plurality of background plates 400 are hingedly integrated, that is,
  • the plurality of background plates 400 form a structure of a book; thus, the free movement between the plurality of background plates 400 is facilitated; and the background plates 400 are each provided with a three-dimensional model that can be formed by a folding operation, the three-dimensional model and the holographic projection box
  • the playback image or video is a companion product, and the background image is added to the image or video imaged on the imaging film 300 to form a more stereoscopic picture.
  • the background board 400 is provided with a flipping lever 401, which can be disposed on opposite ends of the background panel 400 or A single page turning rod 401 is inserted through the background plate 400 having a thickness; and the left side plate 130 and the right side plate 140 are provided with a gap 134 (144) for the movement of the page turning rod 401.
  • the gap 134 (144) is preferably disposed in an arcuate gap that coincides with the flipping trajectory of the background panel 400. The arrangement is such that the effect of the externally penetrated light on the imaging of the holographic projection box is reduced, and the flipping rod 401 is conveniently arranged.
  • the voids 134 (144) may also be arranged in a rectangular shape.
  • the gap 134 (144) is provided with a limiting block that can define the longitudinal displacement of the page turning rod 401, and the limiting hole is located near the upper and lower ends of the gap 134 (144), that is, when the page is needed.
  • the page turning lever 401 of the book page can fix the position in the longitudinal direction by the limiting block. In this way, the user can control the switching between the plurality of background plates 400 by the flap 401 by the gap 134 of the left side plate 130 and the gap 144 of the right side plate 140.
  • the page turning bar 401 can be disposed in different colors or patterns to facilitate the user to recognize the content of the different background boards 400; referring to FIG. 12, preferably, in order not to affect the use between the plurality of background boards 400, in each background A magnet block is disposed in the plate 400, so that the background plate 400 can be pasted through the magnet block, and can be easily separated; thus, when a certain background plate 400 needs to be used, the background plate 400 can be opened without using it.
  • the background plate 400 is integrally bonded by the magnet of the magnet block.
  • the background panel 400 preferably uses white cardboard, the contents of the background panel 400 are printed with colored soy ink, and the cover is made of a recyclable gray board.
  • the left side panel 130 is coupled to the support cover 200 at its acute angular position.
  • the structure of the left side plate 130 and the right side plate 140 are identical, that is, the left side plate 130 and the right side plate 140 form an inverted right angle trapezoidal plate on the holographic projection box, and the left side plate 130 and the right side plate 140 The acute angular position is adjacent to the front opening side of the casing 100.
  • the identification light in the tablet 10 is more easily transmitted to the function identification card 510 on the identification card board 500, completing the identification interaction.
  • the left side plate 130 and the right side plate 140 are arranged in an inverted right-angled trapezoid shape, which also allows the user to see a clearer picture within the effective viewing distance.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Holo Graphy (AREA)

Abstract

一种全息投影盒,全息投影盒与平板电脑(10)结合使用;全息投影盒包括盒体(100)及多个放置于盒体(100)顶面的支撑盖板(200);各个支撑盖板(200)设有嵌入凹槽(210);各个嵌入凹槽(210)放置有与其对应尺寸的平板电脑(10),且嵌入凹槽(210)的槽底设有供平板电脑(10)的屏幕投射图像的开口(211);盒体(100)在其顶面通过放置与平板电脑(10)尺寸对应的支撑盖板(200),以便适应不同尺寸的平板电脑的应用。

Description

全息投影盒
技术领域
本发明涉及光学工程技术领域,特别涉及一种全息投影盒。
背景技术
目前市面上与手持终端结合用的全息投影设备或装置相对较少;而利用平板电脑终端结合用的全息投影设备或装置,没有专门针对不同的平板电脑的尺寸设计嵌入结构,使得平板电脑嵌入不合适尺寸的全息投影设备或装置后存在缝隙,从缝隙中透入的光线影响显示源及成像端的成像画面,出现成像画面断层。
发明内容
本发明的主要目的是提供一种全息投影盒,旨在适应不同尺寸的平板电脑使用。
为实现上述目的,本发明提出的全息投影盒,用于与平板电脑结合使用,全息投影盒包括盒体及多个放置于所述盒体顶面的支撑盖板;各个所述支撑盖板设有嵌入凹槽;各个所述嵌入凹槽放置有与其对应尺寸的所述平板电脑,且所述嵌入凹槽的槽底设有供所述平板电脑的屏幕投射图像的开口;所述盒体在其顶面通过放置与所述平板电脑尺寸对应的所述支撑盖板,以便适应不同尺寸的所述平板电脑的应用。
优选地,所述盒体包括底板、与所述底板连接的背板、左侧板和右侧板;所述左侧板和所述右侧板设置在所述背板相对的两端上;所述背板在与所述左侧板和所述右侧板连接的两端上均设有第一凸起,所述左侧板和所述右侧板对应设有与所述第一凸起适配的第一插孔。
优选地,所述左侧板和所述右侧板上均设有第二凸起,所述支撑盖板上对应设有与所述第二凸起适配的第二插孔。
优选地,所述底板在远离所述背板的一端上设置有依次连接且宽度一致的第一折板、第二折板、第三折板及第四折板;通过所述第一折板、所述第二折板、第三折板及第四折板之间的折叠与所底板形成一立体凸起;所述全息投影盒还包括一成像膜,所述成像膜的一端限定于所述立体凸起与所述底板之间的接缝处上。
优选地,所述第三折板的长度大于所述第一折板的长度,所述第四折板的长度等于或大于所述底板与所述第二折板的长度之和;所述第四折板与所述底板形成一空腔;所述左侧板、所述右侧板在远离与所述支撑盖板连接的一端上均设有可插接于所述空腔中的卡接板。
优选地,所述左侧板和所述右侧板在与所述底板连接的一端上架设有固定条,所述固定条靠近所述立体凸起设置。
优选地,所述左侧板和所述右侧板在与所述固定条相对的一端上架设有第一遮光条,且所述第一遮光条与所述支撑盖板抵接。
优选地,所述左侧板和所述右侧板在与所述第一遮光条同一端面上架设有第二遮光条,所述第二遮光条靠近所述背板设置;所述成像膜的另一端限定于所述第二遮光条与所述支撑盖板形成的接缝上。
优选地,所述全息投影盒还包括放置在所述盒体内的多个所述背景板,多个背景板的同一端铰接于一体,且所述背景板设有翻页杆;所述左侧板和所述右侧板的板面上均设有供所述翻页杆活动的空隙。
优选地,所述左侧板为直角梯形板,所述左侧板在其锐角的位置与所述支撑盖板连接。
优选地,所述全息投影盒还设置有用于与所述平板电脑交互使用的功能识别卡牌;所述底板与所述第一折板连接的一端上设有识别卡板,所述识别卡板设有用于放置所述功能识别卡牌的识别区域。
优选地,所述空隙中设有可限定翻页杆纵向位移的限位块,所述限位块位于靠近所述空隙上下两端端末的位置。
优选地,所述空隙设置呈与所述背景板的翻动轨迹一致的弧形空隙。
优选地,在每个所述背景板上设置有一磁铁块。
本发明技术方案通过采用在盒体的顶面放置支撑盖板进行使用,而支撑盖板有多个,每个支撑盖板设有供相应尺寸的平板电脑放置的嵌入凹槽;全息投影盒通过在盒体的顶面放置与使用的平板电脑尺寸对应的支撑盖板使用,并将支撑盖板与盒体拆卸连接。如此方便全息投影盒与不同尺寸的平板电脑结合使用,不影响投影成像效果。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本发明全息投影盒的一实施例的背板及底板的结构示意图;
图2为本发明全息投影盒的一实施例的背板、底板及左侧板的结构示意图;
图3为本发明全息投影盒的一实施例的盒体的结构示意图;
图4为本发明全息投影盒的一实施例的盒体的折板折叠后的结构示意图;
图5为图4的正面结构图;
图6为本发明全息投影盒的一实施例的盒体与固定条、第一遮光条及第二遮光条安装的结构示意图;
图7为本发明全息投影盒的一实施例的盒体与支撑盖板安装的结构示意图;
图8为本发明全息投影盒的另一实施例的盒体与支撑盖板安装的结构示意图;
图9为本发明全息投影盒的又一实施例的盒体与支撑盖板、第二遮光条之间安装的结构示意图;
图10为本发明全息投影盒的一实施例的整体立体图;
图11为图10的右视图;
图12为本发明全息投影盒一实施例的背景板的结构示意图;
图13为本发明全息投影盒一实施例的识别卡板与功能识别卡牌的结构示意图;
图14为本发明全息投影盒三种尺寸的支撑盖板的结构示意图。
附图标号说明:
标号 名称 标号 名称
100 盒体 200 支撑盖板
200a 第一种尺寸的支撑盖板 200b 第二种尺寸的支撑盖板
200c 第三种尺寸的支撑盖板 210 嵌入凹槽
211 开口 110 底板
120 背板 130 左侧板
140 右侧板 131(141) 第一插孔
121 第一凸起 201 第二插孔
132(142) 第二凸起 160 第二折板
150 第一折板 180 第四折板
170 第三折板 300 成像膜
101 立体凸起 133(143) 卡接板
102 空腔 104 第一遮光条
103 固定条 105 第二遮光条
105a 第一种尺寸的第二遮光条 105b 第二种尺寸的第二遮光条
400 背景板 401 翻页杆
134(144) 空隙 500 识别卡板
501 识别区域 10 平板电脑
510 功能识别卡牌
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明的一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
需要说明,本发明实施例中所有方向性指示(诸如上、下、左、右、前、后……)仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,在本发明中涉及“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本发明要求的保护范围之内。
本发明提出一种全息投影盒。
参照图1至14,图1为本发明全息投影盒的一实施例的背板及底板的结构示意图;图2为本发明全息投影盒的一实施例的背板、底板及左侧板的结构示意图;图3为本发明全息投影盒的一实施例的盒体的结构示意图;图4为本发明全息投影盒的一实施例的盒体的折板折叠后的结构示意图;图5为图4的正面结构图;图6为本发明全息投影盒的一实施例的盒体与固定条、第一遮光条及第二遮光条安装的结构示意图;图7为本发明全息投影盒的一实施例的盒体与支撑盖板安装的结构示意图;图8为本发明全息投影盒的另一实施例的盒体与支撑盖板安装的结构示意图;图9为本发明全息投影盒的又一实施例的盒体与支撑盖板、第二遮光条之间安装的结构示意图;图10为本发明全息投影盒的一实施例的整体立体图;图11为图10的右视图;图12为本发明全息投影盒一实施例的背景板的结构示意图;图13为本发明全息投影盒一实施例的识别卡板与功能识别卡牌的结构示意图;图14为本发明全息投影盒三种尺寸的支撑盖板的结构示意图。
在本发明实施例中,参照图7至图10,该全息投影盒用于与平板电脑10结合使用,全息投影盒包括盒体100及多个放置于盒体100顶面的支撑盖板200;各个支撑盖板200设有嵌入凹槽210;各个嵌入凹槽210放置有与其对应尺寸的平板电脑10,且嵌入凹槽210的槽底设有供平板电脑10的屏幕投射图像的开口211;盒体100在其顶面通过放置与平板电脑10尺寸对应的支撑盖板200,以便适应不同尺寸的平板电脑10的应用。
为了适应不同尺寸的平板电脑10与该全息投影盒结合使用,将全息投影盒的顶面放置一与平板电脑10尺寸对应的支撑盖板200进行结合使用;在本实施例中,全息投影盒的支撑盖板200优选设置三种尺寸,分别为支撑盖板200a、支撑盖板200b、支撑盖板200c,以常用的长宽19.7厘米*14.8厘米厚度9.4毫米、长宽19.7厘米*14.8厘米厚度7.5毫米及长宽20厘米*13.4厘米厚度7.2毫米等尺寸平板电脑为例,每种支撑盖板200内的嵌入凹槽210大小尺寸与以上三种常见平板电脑10的尺寸适应;参照图14为例,支撑盖板200a适用于长宽19.7厘米*14.8厘米厚度9.4毫米尺寸的各代平板电脑,支撑盖板200b为适用于长宽19.7厘米*14.8厘米厚度7.5毫米尺寸的各代平板电脑,支撑盖板200a和支撑盖板200c共同适用于长宽20厘米*13.4厘米厚度7.2毫米尺寸的各代平板电脑;当然,在其他实施例中,该嵌入凹槽210还可以设置呈其他种类的常见平板电脑的尺寸。具体地,当平板电脑为长宽19.7厘米*14.8厘米厚度9.4毫米尺寸的各代平板电脑时,采用支撑盖板200a放置于盒体100上使用;当平板电脑为长宽19.7厘米*14.8厘米厚度7.5毫米尺寸的各代平板电脑时,采用支撑盖板200b放置于盒体100上使用;当平板电脑为长宽20厘米*13.4厘米厚度7.2毫米尺寸的各代平板电脑时,先将支撑盖板200a放置于盒体100上,再将支撑盖板200c放置在支撑盖板200a上的嵌入凹槽210中共同使用。在本实施例中,支撑盖板200c的体积设置成刚好与支撑盖板200a的嵌入凹槽210一致,如此方便节省支撑盖板200的材料,无需另外设置一与盒体100盖合的板块。
为了让平板电脑10中的播放的图像可以投射在盒体100内,在支撑盖板200上设置一开口211,该开口211的面积大小优选与平板电脑10的屏幕的面积大小一致,在有限的空间内极大地增大全息投影盒的成像面积,从而提升成像效果。在本实施例中,全息投影盒的成像端可以采用透明膜或透明塑料板。优选地,在本实施例中使用的平板电脑10内均安装有全息投影配套使用的应用程式,该应用程式具备有播放图像配套的调节亮光亮度的功能,无需在全息投影盒中设置一灯光装置用以调节全息投影亮光。为了方便支撑盖板200在盒体100上更换,支撑盖板200拆卸连接于盒体100上,支撑盖板200与盒体100的拆卸连接方式可以是插接或卡扣扣合。参照图13,全息投影盒还设置一功能识别卡牌510与该应用程式交互使用,为了方便用户将功能识别卡牌510能正确而快速地放置在让平板电脑10扫描的位置,放置一识别卡板500在底板110与所述第一折板150连接的一端上,识别卡板500面向平板电脑10的一板面上设有一识别区域501;如此当用户将相应需要的功能识别卡牌510放置在识别卡板500上的识别区域501上,此时应用程式控制平板电脑10的前置摄像头朝下,并对功能识别卡牌510的识别区域501进行扫描,将识别到的功能识别卡牌510的图像内容转换为相应的指令,完成一个完整交互过程。优选地,本实施例中的全息投影盒主要使用群体为5岁以上的小朋友,为了增加小朋友对产品的兴趣,因此在盒体100的外壁上设有色彩斑斓的图案。在本实施例中,功能识别卡牌510和识别卡板500均采用单粉纸材料制成。
本发明技术方案通过采用在盒体100的顶面放置支撑盖板200进行使用,而支撑盖板200有多个,每个支撑盖板200设有供相应尺寸的平板电脑10放置的嵌入凹槽210;全息投影盒通过在盒体100的顶面放置与使用的平板电脑10尺寸对应的支撑盖板200使用,并将支撑盖板200与盒体100拆卸连接。如此方便全息投影盒与不同尺寸的平板电脑10结合使用,不影响投影成像效果。
进一步地,参照图1至图3,盒体100包括底板110、与底板110连接的背板120、左侧板130和右侧板140;左侧板130和右侧板140设置在背板120相对的两端上;背板120在与左侧板130和右侧板120连接的两端上均设有第一凸起121,左侧板130和右侧板140对应设有与第一凸起121适配的第一插孔131(141)。
具体地,为了让全息投影盒方便携带,将盒体100分设多个板块,这些板块有底板110、背板120、左侧板130和右侧板140,当需要带到其他地方使用时,可通过拆卸操作将板块分离,节省装载板块的盒子或包装袋的空间;为了加快盒体100的组装,将底板110和背板120为一体成型结构,即一板块通过折叠操作形成底板110和背板120;如此,底板110和背板120无需再增加部件进行固定;左侧板130和右侧板140位于背板120相对的两端上,且该两端与连接底板110的一端相邻;如此,通过这些板块组装围设成一盒体100,该盒体100是相邻的两个面为敞口的矩形盒体,位于盒体100的顶面敞口上放置有该支撑盖板200;在使用过程中,将平板电脑10放置在支撑盖板200上的嵌入凹槽210上,用户可从位于盒体100的正面敞口上观看从平板电脑上投射下来的图像或视频。为了方便左侧板130和右侧板140在背板120上的安装,因此在背板120与左侧板130、右侧板140连接的一端上设置一个或多个第一凸起121,该第一凸起121为一小板块,可设置呈各种形状;另外在左侧板130和右侧板140与背板120连接的一端上设置第一插孔131(141),该第一插孔131(141)与第一凸起121适配卡接,即第一插孔131(141)为宽度与第一凸起121的厚度一致的条形孔。如此,通过第一凸起121插接在第一插孔131(141),即可完成背板120与左侧板130、右侧板140的连接。
参考图4至图8,为了方便左侧板130和右侧板140与支撑盖板200之间的安装操作,因此左侧板130和右侧板140上均设有第二凸起132(142),该第二凸起132(142)为一小板块,可设置呈各种形状;支撑盖板200上对应设有与第二凸起132(142)适配的第二插孔201,即第二插孔201为宽度与第二凸起132(142)的厚度一致的条形孔。如此,可通过第二凸起132(142)插接在第二插孔201中,即可完成支撑盖板200与左侧板130、右侧板140的组装。
参考图1、2及图4,底板110在远离背板120的一端上设置有依次连接且宽度一致的第一折板150、第二折板160、第三折板170及第四折板180;通过第一折板150、第二折板160、第三折板170及第四折板180之间的折叠与底板110板形成一立体凸起101;全息投影盒还包括一成像膜300,成像膜300的一端限定于立体凸起101与底板110之间的接缝处上。
为了让成像膜300能反射平板电脑10播放的图像或视频,设置一限位结构即立体凸起101;而立体凸起101由与底板110依次连接的第一折板150、第二折板160、第三折板170及第四折板180折叠形成的,参照图4,具体是将第一折板150、第二折板160、第三折板170及第四折板180从前至后按折痕卷起,如此成像膜300的一端可抵持在立体凸起101与底板110之间的接缝处。优选地,在第一折板150和第二折板160面对左侧板130和右侧板140的端面上设置凸起板块,并在左侧板130和右侧板140在对应第一折板150和第二折板160的位置上设有供凸起板块插接的插孔;如此,可通过凸起板块与插孔之间的插接,提升增强这几个折板之间的折叠牢固度。
参照图1、2、4及10,第三折板170的长度大于第一折板150的长度,第四折板180的长度等于或大于底板110与第二折板160的长度之和;第四折板180与底板110形成一空腔102;左侧板130、右侧板140在远离与支撑盖板200连接的一端上均设有可插接于空腔102中的卡接板133(143)。在以上所述的几个折板形成的立体凸起101的基础上,通过设置第三折板170与第一折板150的长度不一致,如此可创造出一个新的空腔102空间,利用该空腔102与左侧板130、右侧板140底端的卡接板133(143)插接一起,直接将底板110与左侧板130、右侧板140固定好。
参照图6及图7,左侧板130和右侧板140在与底板110连接的一端上架设有固定条103,固定条103靠近立体凸起101设置。左侧板130、右侧板140在其与底板110连接的一端上设置供固定条103插接的插孔,方便固定条103与左侧板130、右侧板140的连接;而固定条103通过架设在左侧板130和右侧板140与底板110连接的一端上,可限定左侧板130、右侧板140在底板110上的位移,从而提升左侧板130、右侧板140与底板110的连接,达到加固盒体100结构的作用。
参照图6至10,左侧板130和右侧板140在与固定条103相对的一端上架设有第一遮光条104,且第一遮光条104与支撑盖板200抵接。
具体地,当平板电脑10在播放图像或视频时,我们很容易从盒体100的正面开口看到来自平板电脑10靠近背板120的部分屏幕上的画面,而屏幕上的画面与成像膜300的画面相反,不但会造成用户在观看过程中容易产生晕眩感觉,而且降低成像膜300的成像效果;因此左侧板130和右侧板140在其与固定条103相对的一端上架设有第一遮光条104,该第一遮光条104可阻挡来自于平板电脑10(即播放源)的画面,提升全息投影盒的成像立体感。从另一方面,该第一遮光条104还可以加固盒体100结构。
参照图6至图10,为了更好地加固左侧板130、右侧板140与支撑盖板200的连接,左侧板130和右侧板140在与第一遮光条104同一端面上架设有第二遮光条105,第二遮光条105靠近背板120设置。
在本实施例中,第二遮光条105优选设有两种尺寸,分别为第二遮光条105a、第二遮光条105b;以使用长宽19.7厘米*14.8厘米厚度7.5毫米及长宽20厘米*13.4厘米厚度7.2毫米等尺寸平板电脑为例,参照图7和图8,当使用长宽19.7厘米*14.8厘米厚度7.5毫米尺寸的平板电脑时,使用第二遮光条105a;参照图9,当使用长宽20厘米*13.4厘米厚度7.2毫米尺寸的平板电脑时,则使用第二遮光条105a和第二遮光条105b。
当平板电脑10在播放图像或视频时,安装在平板电脑10上靠近背板120的位置进行发光,为了避免用户从正面观看成像膜300反射出的画面受该灯光影响,因此设置一第二遮光条105,从平板电脑10发出的光经由该第二遮光条105下来,第二遮光条105可遮挡从平板电脑10发出光的最聚集的地方,且从第二遮光条105下方射出的灯光可为成像膜300提供光源;如此一方面可以阻挡该灯光反射到用户的眼睛中,另一方面也可以聚集灯光为成像膜300提供调节成像画面的亮度,提升全息投影盒的成像效果。且该第二遮光条设置成与支撑盖板200抵接,即第二遮光条105的与支撑盖板200之间不存在缝隙,如此提升第二遮光条105与支撑盖板200的密封性,有效阻挡灯光透出。另外成像膜300的另一端限定于第二遮光条105与支撑盖板200形成的接缝上。如此,成像膜300可通过第二遮光条105与左侧板130、右侧板140之间的插接位置调节成像角度,即成像膜300的另一端顶持在第二遮光条105与支撑盖板200形成的接缝上;在本实施例中,成像膜300与底板110的夹角角度优选设置为45度,因为这个角度里成像膜300与支撑盖板200之间的成像效果是最佳的,播放出的图像或视频不容易失真。
参照图6及图10至12,为了增加全息投影盒的成像更立体,全息投影盒还包括放置在盒体100内的多个背景板400,多个背景板400的同一端铰接于一体,即多个背景板400形成一本书的结构;如此,可方便多个背景板400之间的自由活动;且背景板400均设有可通过折叠操作形成的立体模型,该立体模型与全息投影盒的播放图像或视频为配套产品,背景板加上在成像膜300成像的图像或视频,形成一个更立体的画面。为了方便用户根据不同的播放图像或视频,切换与其配套的背景板400,因此在背景板400设有翻页杆401,该翻页杆401可设置在背景板400板面相对的两端上或直接一根翻页杆401贯穿具有厚度的背景板400中;左侧板130和右侧板140上均设有供翻页杆401活动的空隙134(144)。在本实施例中,空隙134(144)优选设置呈与背景板400的翻动轨迹一致的弧形空隙,如此设置既可减少外界透入的光对全息投影盒成像的影响,又方便翻动杆401的活动;当然在其他实施例中,空隙134(144)还可以设置呈矩形。优选地,该空隙134(144)中设有可限定翻页杆401纵向位移的限位块,该限位孔位于靠近空隙134(144)上下两端端末的位置,即当需要用到该书页时,该书页的翻页杆401可通过限位块固定纵向方向的位置。如此,可让用户通过左侧板130的空隙134、右侧板140的空隙144,抓取翻页杆401控制多个背景板400之间的切换。优选地,翻页杆401可设置呈不同的颜色或图案,方便用户辨认不同背景板400的内容;参照图12,优选地,为了不影响多个背景板400之间的使用,在每个背景板400中都设置一磁铁块,让背景板400通过磁铁块可粘贴,也可轻松分离;如此当某一背景板400需要用到的时候,将该背景板400翻开,而不需要用的背景板400因为磁铁块的磁性粘牢于一体。在本实施例中,背景板400优选采用白卡纸,背景板400中的内容采用彩色大豆油墨印刷,封皮采用可再生灰板制成。
参照图10、11及13,左侧板130在其锐角的位置与支撑盖板200连接。在本实施例中,左侧板130与右侧板140的结构一致,即左侧板130和右侧板140在全息投影盒上形成倒直角梯形板,且左侧板130和右侧板140的锐角位置与盒体100的正面开口一面相邻,如此,让平板电脑10中的识别灯光更容易发射至识别卡板500上的功能识别卡牌510上,完成识别交互工作。从另一方面看,左侧板130、右侧板140设置成倒直角梯形的形状,也可让用户在有效观看距离内看到更清晰的画面。
以上所述仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是在本发明的发明构思下,利用本发明说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本发明的专利保护范围内。

Claims (14)

  1. 一种全息投影盒,用于与平板电脑结合使用,其特征在于,包括盒体及多个放置于所述盒体顶面的支撑盖板;各个所述支撑盖板设有嵌入凹槽;各个所述嵌入凹槽放置有与其对应尺寸的所述平板电脑,且所述嵌入凹槽的槽底设有供所述平板电脑的屏幕投射图像的开口;所述盒体在其顶面通过放置与所述平板电脑尺寸对应的所述支撑盖板,以便适应不同尺寸的所述平板电脑的应用。
  2. 如权利要求1所述的全息投影盒,其特征在于,所述盒体包括底板、与所述底板连接的背板、左侧板和右侧板;所述左侧板和所述右侧板设置在所述背板相对的两端上;所述背板在与所述左侧板和所述右侧板连接的两端上均设有第一凸起,所述左侧板和所述右侧板对应设有与所述第一凸起适配的第一插孔。
  3. 如权利要求2所述的全息投影盒,其特征在于,所述左侧板和所述右侧板上均设有第二凸起,所述支撑盖板上对应设有与所述第二凸起适配的第二插孔。
  4. 如权利要求2所述的全息投影盒,其特征在于,所述底板在远离所述背板的一端上设置有依次连接且宽度一致的第一折板、第二折板、第三折板及第四折板;通过所述第一折板、所述第二折板、第三折板及第四折板之间的折叠与所底板形成一立体凸起;所述全息投影盒还包括一成像膜,所述成像膜的一端限定于所述立体凸起与所述底板之间的接缝处上。
  5. 如权利要求4所述的全息投影盒,其特征在于,所述第三折板的长度大于所述第一折板的长度,所述第四折板的长度等于或大于所述底板与所述第二折板的长度之和;所述第四折板与所述底板形成一空腔;所述左侧板、所述右侧板在远离与所述支撑盖板连接的一端上均设有可插接于所述空腔中的卡接板。
  6. 如权利要求5所述的全息投影盒,其特征在于,所述左侧板和所述右侧板在与所述底板连接的一端上架设有固定条,所述固定条靠近所述立体凸起设置。
  7. 如权利要求6所述的全息投影盒,其特征在于,所述左侧板和所述右侧板在与所述固定条相对的一端上架设有第一遮光条,且所述第一遮光条与所述支撑盖板抵接。
  8. 如权利要求7所述的全息投影盒,其特征在于,所述左侧板和所述右侧板在与所述第一遮光条同一端面上架设有第二遮光条,所述第二遮光条靠近所述背板设置;所述成像膜的另一端限定于所述第二遮光条与所述支撑盖板形成的接缝上。
  9. 如权利要求8所述的全息投影盒,其特征在于,所述全息投影盒还包括放置在所述盒体内的多个背景板,多个所述背景板的同一端铰接于一体,且所述背景板设有翻页杆;所述左侧板和所述右侧板的板面上均设有供所述翻页杆活动的空隙。
  10. 如权利要求9所述的全息投影盒,其特征在于,所述左侧板为直角梯形板,所述左侧板在其锐角的位置与所述支撑盖板连接。
  11. 如权利要求10所述的全息投影盒,其特征在于,所述全息投影盒还设置有用于与所述平板电脑交互使用的功能识别卡牌;所述底板与所述第一折板连接的一端上设有识别卡板,所述识别卡板设有用于放置所述功能识别卡牌的识别区域。
  12. 如权利要求11所述的全息投影盒,其特征在于,所述空隙中设有可限定翻页杆纵向位移的限位块,所述限位块位于靠近所述空隙上下两端端末的位置。
  13. 如权利要求12所述的全息投影盒,其特征在于,所述空隙设置呈与所述背景板的翻动轨迹一致的弧形空隙。
  14. 如权利要求13所述的全息投影盒,其特征在于,在每个所述背景板上设置有一磁铁块。
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