Projection device

By introducing a first support mechanism and a second support mechanism into the projection device to limit the reel, the problem of easy damage to the curling assembly is solved, flexible adjustment of the reel height and smooth expansion of the curtain sheet are achieved, extending the service life of the equipment and simplifying the structure.

CN114460803BActive Publication Date: 2025-07-08QINGDAO HISENSE LASER DISPLAY CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202011202666.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-11-02
Publication Date
2025-07-08
Estimated Expiration
2040-11-02

AI Technical Summary

Technical Problem

In existing projection equipment, the shaft of the curling assembly is susceptible to the weight and tension force of the roll and the curtain sheet, resulting in easy damage, and the position of the roll is poor, affecting the service life and flexibility of the equipment.

Method used

The first support mechanism and the second support mechanism are used to limit the support, the reel height is adjusted through the guide wheel, and the expansion and closing process of the curtain sheet is optimized in combination with the crimp motor and lifting components to avoid additional power supply systems and control systems.

Benefits of technology

It extends the service life of curling components and projection equipment, improves the flexibility of the reel position, simplifies the structure and control difficulty of lifting components, and enhances the reliability of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN114460803B_ABST
    Figure CN114460803B_ABST
Patent Text Reader

Abstract

An embodiment of the present application discloses a projection device, belonging to the field of projection technology. The projection device includes: an optical engine and a projection screen; the projection screen includes a base, a curling assembly, a lifting assembly, and a screen sheet; the curling assembly includes a reel, a curling motor, a first support mechanism, and a second support mechanism; the curling motor, the first support mechanism, the second support mechanism, and the lifting assembly are fixed on the base, the reel is in transmission connection with the curling motor, the reel is rotatably supported and limited on the first support mechanism and the second support mechanism, the screen sheet is fixedly connected to the reel and the lifting assembly; the first support mechanism and the second support mechanism are used to adjust the height of the reel, the curling motor can control the curling of the screen sheet through the reel, and the lifting assembly can control the unfolding of the screen sheet to receive the light beam emitted by the optical engine. In the embodiment of the present application, by adjusting the height of the reel through the first support mechanism and the second support mechanism, the flexibility of the position of the reel is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The embodiments of the present application relate to the field of projection technology, and in particular, to a projection device. Background Art

[0002] With the continuous development of technology, projection devices are increasingly applied to people's work and life. Currently, projection devices mainly include an optical engine and a projection screen. The projection screen includes a base, a curling component, a lifting component, and a screen sheet. The curling component of the projection screen is rotatably fixed to the side wall of the base through a rotating shaft. The lifting component is fixed to the base. The first side of the screen sheet is fixedly connected to the curling component, and the second side of the screen sheet opposite to the first side is fixedly connected to the lifting component. The curling component can control the curling of the screen sheet to realize the retraction of the screen sheet, and the lifting component can control the unfolding of the screen sheet to receive and reflect the light beam emitted by the optical engine to realize the display of the picture. Summary of the Invention

[0003] The embodiments of the present application provide a projection device, which can improve the reliability and flexibility of the curling component included in the projection device to extend the service life of the projection device. The technical solution is as follows:

[0004] A projection device, the projection device includes:

[0005] An optical engine for emitting a light beam;

[0006] A projection screen, the projection screen includes a base, a curling component, a lifting component, and a screen sheet. The curling component includes a reel, a curling motor, a first support mechanism, and a second support mechanism;

[0007] The curling motor, the first support mechanism, the second support mechanism, and the lifting component are fixed on the base. The reel is in transmission connection with the curling motor. The reel is rotatably supported and limited on the first support mechanism and the second support mechanism. The two opposite sides of the screen sheet are respectively fixedly connected to the reel and the lifting component;

[0008] The first support mechanism and the second support mechanism are used to adjust the height of the reel. The curling motor can drive the reel to rotate to curl the screen sheet, and the lifting component can control the unfolding of the screen sheet to receive the light beam.

[0009] Optionally, the first support mechanism includes a first support frame and a plurality of first guide wheels;

[0010] The first support frame is fixed on the base. The plurality of first guide wheels are fixed on the first support frame. The first end of the reel is rotatably limited on the plurality of first guide wheels, and the positions of the plurality of first guide wheels are adjustable.

[0011] Optionally, the first support frame has a first oblong hole corresponding to the first guide wheel. The first guide wheel is fixedly connected to the first support frame based on the corresponding first oblong hole, and the first guide wheel can move along the length direction of the corresponding first oblong hole.

[0012] Optionally, the height of the first support frame is adjustable.

[0013] Optionally, the output of the coiling motor is in transmission connection with the inner wall of the first end of the reel. The first end of the reel is axially limited on the plurality of first guide wheels.

[0014] Optionally, the first guide wheel has a stepped surface facing the second end of the reel, and the end surface of the first end of the reel abuts against the stepped surface.

[0015] Optionally, the reel has an annular groove, and a part of the first guide wheel is located in the annular groove.

[0016] Optionally, the output shaft of the coiling motor is in transmission connection with the outer wall of the first end of the reel. The first end of the reel is axially and radially limited on the plurality of first guide wheels.

[0017] Optionally, the number of the first guide wheels is two. The two first guide wheels extend into the reel, and the second end of the reel is radially limited on the two second guide wheels.

[0018] Optionally, the second support mechanism includes a second support frame and a plurality of second guide wheels;

[0019] The second support frame is fixed on the base. The plurality of second guide wheels are fixed on the second support frame. The second end of the reel is rotatably supported and limited on the plurality of second guide wheels, and the radial positions of the plurality of second guide wheels are adjustable.

[0020] Optionally, the number of the second guide wheels is three, and the second end of the reel is radially limited on the three second guide wheels.

[0021] Optionally, the centers of the three second guide wheels form an acute triangle. The three second guide wheels surround the reel and abut against the outer wall of the reel.

[0022] The beneficial effects of the technical solution provided by the embodiment of the present application at least include:

[0023] In the embodiments of the present application, while the first support mechanism and the second support structure limit the position of the reel, the support for the reel is achieved. In this way, compared with fixing by a rotating shaft, the problem that the weight of the reel and the tension of the screen act on the rotating shaft, causing the rotating shaft to be easily damaged, is avoided, thereby extending the service life of the curling assembly, that is, extending the service life of the projection device. In addition, the height of the reel can also be adjusted by the first support mechanism and the second support mechanism. In this way, compared with the reel being fixed to the base by a rotating shaft, the flexibility of the position of the reel is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0025] Figure 1 is a schematic structural diagram of a projection device provided by an embodiment of the present application;

[0026] Figure 2 is a schematic structural diagram of an optical engine and a functional component provided by an embodiment of the present application;

[0027] Figure 3 is a schematic structural diagram of a curling assembly provided by an embodiment of the present application;

[0028] Figure 4 is a schematic side view structural diagram of a first support mechanism provided by an embodiment of the present application;

[0029] Figure 5 is a schematic front view structural diagram of a first support mechanism provided by an embodiment of the present application;

[0030] Figure 6 is a schematic structural diagram of a second support mechanism provided by an embodiment of the present application;

[0031] Figure 7 is a schematic structural diagram of a lifting assembly when the screen is unfolded provided by an embodiment of the present application;

[0032] Figure 8 is a schematic structural diagram of a lifting assembly when the screen is retracted provided by an embodiment of the present application.

[0033] REFERENCE MARKS:

[0034] 1: Optical engine; 2: Projection screen; 3: Functional component; 4: Storage part;

[0035] 11: Light source system; 12: Lighting system; 13: Lens system; 14: Heat dissipation component;

[0036] 21: Base; 22: Coiling assembly; 23: Lifting assembly; 24: Screen sheet;

[0037] 221: Reel; 222: Coiling motor; 223: First support mechanism; 224: Second support mechanism;

[0038] 2231: First support frame; 2232: First guide wheel; 2241: Second support frame; 2242: Second guide wheel;

[0039] 231: Lifting frame; 232: Hydraulic rod; 233: Cross beam;

[0040] 2311: First connecting rod; 2312: Second connecting rod;

[0041] 31: Power supply board; 32: Display board;

[0042] 41: First accommodating part; 42: Second accommodating part. Detailed implementation manners

[0043] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the following will further describe the embodiments of the present application in detail with reference to the accompanying drawings.

[0044] Figure 1 Schematically shows a structural diagram of a projection device according to an embodiment of the present application. As Figure 1 shown, the projection device includes: an optical engine 1 for emitting a light beam; a projection screen 2 including a base 21, a coiling assembly 22, a lifting assembly 23, and a screen sheet 24. The coiling assembly 22 is rotatably fixed on the base 21, the lifting assembly 23 is fixed on the base 21, and two opposite sides of the screen sheet 24 are respectively fixedly connected to the coiling assembly 22 and the lifting assembly 23. The coiling assembly 22 and the lifting assembly 23 are used in cooperation to realize the coiling or unfolding of the screen sheet 24. When the screen sheet 24 is unfolded, it receives the light beam emitted by the optical engine 1.

[0045] In the embodiment of the present application, the projection device is a laser ultra-short throw projection device. At this time, the optical engine 1 included in the laser ultra-short throw projection device is an ultra-short throw optical engine 1. Exemplarily, the ultra-short throw optical engine 1 is a DLP (Digital Light Procession) optical engine 1. Since the optical engine 1 is an ultra-short throw optical engine 1, in this way, the distance from the ultra-short throw optical engine 1 to the plane where the screen sheet 24 included in the projection screen 2 is located can be set to a relatively short distance to realize the miniaturized design of the laser projection device.

[0046] Among them, as Figure 2As shown, the specific structures of the light source system 11, the illumination system 12, and the lens system 13 included in the optical engine 1 can refer to the related art, and the embodiments of the present application do not limit this. For example, a red, green, and blue trichromatic solid-state laser is used as the light source system 11, or a solid-state laser is used to excite a fluorescent substance as the light source system 11, or a solid-state laser is combined with an LED (Light-Emitting Diode) light source as the light source system 11. After the trichromatic light beams emitted by the light source system 11 are integrated by the lenses in the illumination system 12, they are irradiated onto the surface of the DMD (Digital Micromirror Device) in the illumination system 12, and then the integrated light beams are rotationally reflected by the DMD to the lens system 13, and then diffused by the lens system 13 and emitted to the screen 24 to form a colorful image on the screen 24. Among them, the DMD is a display chip containing many small mirrors that can be quickly flipped.

[0047] In addition, as Figure 2 shown, the optical engine 1 further includes a heat dissipation component 14 to facilitate heat dissipation of the light source system 11, the illumination system 12, and the lens system 13 through the heat dissipation component 14, and to prevent the heat accumulated inside the light source system 11, the illumination system 12, and the lens system 13 from causing too high a device temperature and affecting the optical performance of the device. For example, the heat dissipation component 14 includes a fan, a liquid cooling device, etc.

[0048] In the embodiments of the present application, as Figure 2 shown, the projection device includes a functional component 3. The functional component 3 is electrically connected to the optical engine 1. The functional component 3 is used to be electrically connected to an external power source, and the optical engine 1 can emit light beams with the cooperation of the functional component 3.

[0049] Among them, as Figure 2 shown, the functional component 3 includes a power supply board 31, a display board 32, and a control main board (not shown in the figure); the power supply board 31 is respectively connected to the optical engine 1, the display board 32, and the control main board. The power supply board 31 is also used to be connected to an external power source. The display board 32 is respectively electrically connected to the optical engine 1 and the control main board. Combining the above explanation of the optical engine 1, the power supply board 31 is electrically connected to the light source system 11 in the optical engine 1, and the display board 32 is electrically connected to the DMD included in the illumination system 12 in the optical engine 1.

[0050] Among them, the power supply board 31 can output a voltage or current drive signal, thereby facilitating power supply to devices such as the display board 32 and the light source system 11 in the optical engine 1, to ensure the normal use of the projection device. The control main board is a television (TV) main board. The plug-in end of the control main board is used to connect external devices such as a computer, a mobile phone, and a USB flash drive. The control main board is used to receive multimedia data transmitted by the external device, decode the multimedia data to obtain a video signal, and then transmit the decoded video signal to the display board 32. Subsequently, the display board 32 converts the received video signal into a drive signal and transmits it to the DMD included in the illumination system 12 in the optical engine 1, so that the DMD board drives the micromirrors on the DMD to deflect based on the drive signal, thereby emitting a light beam from the DMD to the screen 24 to achieve the display of the picture.

[0051] In the embodiment of the present application, the screen 24 included in the projection screen 2 is an optical screen 24, such as a rollable Fresnel optical screen, or a flexible black grid screen. Such a screen 24 has a higher optical gain compared to the traditional screen 24, can restore the brightness and contrast of the light beam as much as possible, and can achieve a high flatness through the stretching of the curling mechanism and the lifting mechanism, so that the picture display effect of the screen 24 is better.

[0052] In the embodiment of the present application, as Figure 1 shown, the projection device further includes a storage part 4. The storage part 4 has a first accommodation part 41 and a second accommodation part 42. The optical engine 1 is fixed in the first accommodation part 41. The first accommodation part 41 has a light transmission area, and the light beam emitted by the optical engine 1 passes through the light transmission area. The base 21 included in the projection screen 2 is fixed in the second accommodation part 42. The second accommodation part 42 has an opening, and the lifting assembly 23 can control the screen 24 to pass through the opening and unfold. In this way, the optical engine 1 and the projection screen 2 can be protected respectively through the first accommodation part 41 and the second accommodation part 42, to avoid displacement or damage under the impact of external objects.

[0053] Optionally, the first accommodation part 41 and the second accommodation part 42 are integrally provided, so as to ensure the integration of the optical engine 1 and the projection screen 2, avoid the relative displacement between the optical engine 1 and the projection screen 2, and thus ensure that the projection screen 2 can receive the light beam emitted by the optical engine 1 safely, to ensure the picture display effect of the screen 24. Of course, the first accommodation part 41 and the second accommodation part 42 are separately provided, which is convenient for the separate handling of the optical engine 1 and the projection screen 2, and the separate maintenance during the later use process.

[0054] Next, the curling assembly 22 will be introduced in detail.

[0055] Figure 3 Illustrates a schematic structural diagram of a curling assembly 22 according to an embodiment of the present application. AsFigure 3 As shown, the curling assembly 22 includes a winding drum 221, a curling motor 222, a first support mechanism 223, and a second support mechanism 224. The curling motor 222, the first support mechanism 223, and the second support mechanism 224 are fixed on the base 21. The winding drum 221 is in transmission connection with the curling motor 222. The winding drum 221 is rotatably supported and limited on the first support mechanism 223 and the second support mechanism 224. The first side of the screen 24 is fixedly connected to the winding drum 221. The first support mechanism 223 and the second support mechanism 224 are used to adjust the height of the winding drum 221. The curling motor 222 can drive the winding drum 221 to rotate to curl the screen 24.

[0056] In the embodiment of the present application, through the support and limitation of the winding drum 221 by the first support mechanism 223 and the second support structure, compared with being fixed by a rotating shaft, it avoids the problem that the weight of the winding drum 221 and the tension of the screen 24 act on the rotating shaft, resulting in easy damage of the rotating shaft, thereby extending the service life of the curling assembly 22, that is, extending the service life of the projection device. In addition, the height of the winding drum 221 can also be adjusted through the first support mechanism 223 and the second support mechanism 224. In this way, compared with the winding drum 221 being fixed to the base 21 by a rotating shaft, the flexibility of the position of the winding drum 221 is improved.

[0057] In the embodiment of the present application, the curling motor 222 is in transmission connection with the first end of the winding drum 221. The first support mechanism 223 is used to support the first end of the winding drum 221. The second support mechanism 224 is used to support the second end of the winding drum 221. And the first support mechanism 223 is used to adjust the height of the first end of the winding drum 221, and the second support mechanism 224 is used to adjust the height of the second end of the winding drum 221.

[0058] In some embodiments, as Figure 4 or Figure 5 shown, the first support mechanism 223 includes a first support frame 2231 and a plurality of first guide wheels 2232. The first support frame 2231 is fixed on the base 21. The plurality of first guide wheels 2232 are fixed on the first support frame 2231. The first end of the winding drum 221 is rotatably limited on the plurality of first guide wheels 2232, and the positions of the plurality of first guide wheels 2232 are adjustable.

[0059] In this way, by adjusting the positions of the plurality of first guide wheels, the height of the winding drum 221 can be adjusted to ensure the flexibility of the height of the first end of the winding drum 221. In addition, while limiting the winding drum 221 by the plurality of first guide wheels, the plurality of first guide wheels 2232 can also support the first end of the winding drum 221.

[0060] Among them, the sizes of the multiple first guide wheels 2232 can be the same or different, as long as they can limit the reel 221 and support the reel 221 at the same time. The embodiments of the present application do not limit this. The multiple first guide wheels 2232 are all metal guide wheels. Of course, the multiple first guide wheels 2232 can also be all plastic guide wheels, so that the wear generated during the rotation of the reel 221 can be reduced through the plastic guide wheels.

[0061] Among them, the material of the plastic guide wheel is a plastic with a self-lubricating effect, such as POM plastic. In this way, the maintenance of the curling assembly 22 during the use of the projection device can be avoided, thus facilitating the use of the user.

[0062] Optionally, the height of the first support frame 2231 is adjustable. In this way, the height of the multiple first guide wheels 2232 can be adjusted by adjusting the height of the first support frame 2231, that is, the positions of the multiple first guide wheels 2232 are adjusted, and then the height of the first end of the reel 221 is adjusted.

[0063] Among them, the height of the multiple first guide wheels 2232 is synchronously adjusted through the first support frame 2231 to adjust the height of the first end of the reel 221. Or the first support frame 2231 has multiple support parts with adjustable heights corresponding to the multiple first guide wheels 2232, so as to facilitate the adjustment of the heights of the multiple first guide wheels 2232 respectively through the multiple support parts to adjust the height of the first end of the reel 221.

[0064] Optionally, as Figure 4 shown, the first support frame 2231 has a first oblong hole 22311 corresponding to the first guide wheel 2232. The first guide wheel 2232 is fixedly connected to the first support frame 2231 based on the corresponding first oblong hole 22311, and the first guide wheel 2232 can move along the length direction of the corresponding first oblong hole 22311.

[0065] Among them, the axial direction of the first guide wheel 2232 has a fixing rod, which passes through the first oblong hole 22311 and is fixed to the first support frame 2231 through a fixing nut. Since the first guide wheel 2232 can move along the length direction of the first oblong hole 22311, that is, the fixing rod can move along the length direction of the first oblong hole 22311, the position of the first guide wheel 2232 can be adjusted to adjust the height of the first end of the reel 221.

[0066] Among them, the length directions of the first oblong holes 22311 corresponding to each first guide wheel 2232 are the same. For example, when the wire is supported by two first guide wheels 2232 at the lower part of the first end of the reel 221, the length directions of the first oblong holes 22311 are both vertical or horizontal directions. Of course, the length directions of the first oblong holes 22311 corresponding to each first guide wheel 2232 can also be different. For example, when the wire is supported by two first guide wheels 2232 at the lower part of the first end of the reel 221, the inclinations of the two first oblong holes 22311 are opposite or away from each other.

[0067] When the length direction of the first oblong hole 22311 is not the vertical direction, the height of the first end of the reel 221 can be adjusted by adjusting the distance between the two first guide wheels 2232.

[0068] It should be noted that the curling motor 222 is movably fixed on the base 21 so that when adjusting the height of the first end of the reel 221, the position of the curling motor 222 can be adjusted, thereby ensuring that the curling motor 222 and the first end of the reel 221 move synchronously.

[0069] For example, the side wall of the base 21 has a second oblong hole, and the curling motor 222 is fixedly connected to the side wall of the base 21 through the second oblong hole, and the curling motor 222 can move along the length direction of the second oblong hole. Of course, the curling motor 222 can also be movably fixed on the base 21 in other ways, and the embodiments of the present application do not limit this.

[0070] In the embodiments of the present application, when limiting one end of the reel 221 by a plurality of first guide wheels, the connection manner between the curling motor 222 and the first end of the reel 221 is different, and the limiting manner is also different.

[0071] Among them, the connection manner between the curling motor 222 and the reel 221 is that the curling motor 222 is in transmission connection with the inner wall of the reel 221, or the curling motor 222 is in transmission connection with the outer wall.

[0072] When the output shaft of the curling motor 222 is in transmission connection with the inner wall of the reel 221, the output shaft of the curling motor 222 is fixedly connected to the inner wall of the reel 221, or connected by means of gear meshing to achieve power transmission. For example, the curling motor 222 is a reel 221 motor. Of course, the curling motor 222 is other types of motors, as long as the transmission connection between the curling motor 222 and the inner wall of the reel 221 can be achieved, and the embodiments of the present application do not limit this.

[0073] When the output shaft of the winding motor 222 is in driving connection with the outer wall of the winding drum 221, the output shaft of the winding motor 222 is connected to the outer wall of the winding drum 221 by means of gear meshing or a conveyor belt to achieve power transmission.

[0074] In some embodiments, the output of the winding motor 222 is in driving connection with the inner wall of the winding drum 221. At this time, the output shaft of the winding motor 222 supports the inner wall of the winding drum 221, so as to realize the radial limit of the first end of the winding drum 221. Therefore, it is only necessary for the plurality of first guide wheels 2232 to limit the first end of the winding drum 221 axially. That is, the output of the winding motor 222 is in driving connection with the inner wall of the winding drum 221, and the first end of the winding drum 221 is axially limited on at least one first guide wheel 2232.

[0075] Among them, at least one of the plurality of first guide wheels 2232 can realize the axial limit of the first end of the winding drum 221. Of course, it is also possible for the plurality of first guide wheels 2232 to limit the first end of the winding drum 221 axially at the same time to ensure the effectiveness of the limit.

[0076] Optionally, as Figure 4 shown, the first guide wheel 2232 has a stepped surface 22321 facing the second end of the winding drum 221, and the end surface of the first end of the winding drum 221 abuts against the stepped surface 22321. In this way, since the first guide wheel 2232 is fixed to the base 21 by the first bracket, when the end surface of the first end of the winding drum 221 abuts against the stepped surface 22321 of the first guide wheel 2232, the axial limit of the first end of the winding drum 221 can be realized to prevent the winding drum 221 from moving away from the second support mechanism 224.

[0077] Optionally, the first end of the winding drum 221 has a stepped surface facing away from its second end, and the side surface of the first guide wheel 2232 abuts against the stepped surface. In this way, since the first guide wheel 2232 is fixed to the base 21 by the first bracket, when the stepped surface of the winding drum 221 abuts against the side surface of the first guide wheel 2232, the axial limit of the first end of the winding drum 221 can be realized to prevent the winding drum 221 from moving away from the second support mechanism 224.

[0078] Optionally, the winding drum 221 has an annular groove, and a part of the first guide wheel 2232 is located in the annular groove. In this way, since the first guide wheel 2232 is fixed to the base 21 by the first bracket, when a part of the first guide wheel 2232 is axially limited in the annular groove, the axial limit of the first end of the winding drum 221 can be realized to prevent the winding drum 221 from moving away from the second support mechanism 224.

[0079] Among them, since the output shaft of the winding motor 222 extends into the first end of the winding drum 221, when limiting the first end of the winding drum 221, in order not to affect the rotation of the winding drum 221 driven by the winding motor 222, the annular groove is located on the outer wall of the first end of the winding drum 221.

[0080] Among them, a part of the body of the first guide wheel 2232 is located in the annular groove to realize the axial limit of the first end of the winding drum 221; of course, the axial limit of the first end of the winding drum 221 can also be realized by other means. Exemplarily, the first guide wheel 2232 has an annular protrusion, and a part of the annular protrusion is located in the annular groove.

[0081] In some other embodiments, the output of the winding motor 222 is in transmission connection with the outer wall of the winding drum 221. At this time, the winding motor 222 does not limit the radial direction of the winding drum 221. Therefore, the plurality of first guide wheels 2232 not only need to limit the axial direction of the winding drum 221, but also need to limit the radial direction of the winding drum 221. That is, the output shaft of the winding motor 222 is in transmission connection with the outer wall of the winding drum 221, and the first end of the winding drum 221 is axially and radially limited on the plurality of first guide wheels 2232.

[0082] Among them, the manner in which the plurality of first guide wheels 2232 limit the first end of the winding drum 221 axially is the same as or similar to that described in the above embodiments, and the embodiments of the present application will not repeat it here.

[0083] It should be noted that when limiting the first end of the winding drum 221 by the above second method, since the output shaft of the winding motor 222 is in transmission connection with the outer wall of the winding drum 221, at this time, the annular groove can be located not only on the outer wall of the first end of the winding drum 221, but also on the inner wall of the first end of the winding drum 221. The embodiments of the present application do not make any limitations in this regard.

[0084] When limiting the first end of the winding drum 221 radially by the plurality of first guide wheels 2232, optionally, the number of the first guide wheels 2232 is two. The two first guide wheels 2232 extend into the winding drum 221, and the first end of the winding drum 221 is radially limited on the two first guide wheels 2232.

[0085] Among them, when limiting the first end of the winding drum 221 radially by the two first guide wheels 2232, the two first guide wheels 2232 respectively support at two end points in the diameter direction of the inner wall of the winding drum 221, and the diameter direction is the horizontal direction or the vertical direction. Of course, it can also be other directions. The embodiments of the present application do not make any limitations in this regard.

[0086] Exemplarily, one first guide wheel 2232 contacts the bottommost part of the inner wall of the winding drum 221, and the other first guide wheel 2232 contacts the topmost part of the inner wall of the winding drum 221.

[0087] Optionally, the number of the first guide wheels 2232 is three, and the first end of the reel 221 is radially limited on the three first guide wheels 2232.

[0088] Exemplarily, the centers of the three first guide wheels 2232 form an acute triangle, and the three first guide wheels 2232 surround and abut against the outer wall of the reel 221, or the three first guide wheels 2232 extend into the first end of the reel 221 and abut against the inner wall of the reel 221. Of course, the three first guide wheels 2232 can also limit the first end of the reel 221 radially in other ways, and the embodiments of the present application do not limit this.

[0089] In some embodiments, as Figure 6 shown, the second support mechanism 224 includes a second support frame 2241 and a plurality of second guide wheels 2242; the second support frame 2241 is fixed on the base 21, the plurality of second guide wheels 2242 are fixed on the second support frame 2241, and the second end of the reel 221 is rotatably supported and limited on the plurality of second guide wheels 2242, and the positions of the plurality of second guide wheels 2242 in the radial direction are adjustable.

[0090] In this way, by adjusting the positions of the plurality of second guide wheels, the height of the reel 221 can be adjusted to ensure the flexibility of the height of the second end of the reel 221. In addition, while limiting the reel 221 by the plurality of second guide wheels, the plurality of second guide wheels 2242 can also support the second end of the reel 221.

[0091] Among them, the sizes and materials of the plurality of second guide wheels 2242 are the same as or similar to those of the plurality of first guide wheels 2232 respectively, and the embodiments of the present application do not limit this. In addition, the adjustment method of the position of the second guide wheel 2242 and the method of limiting the second end of the reel 221 by the second guide wheel 2242 in the radial and axial directions are the same as or similar to those described in the above embodiments, and the embodiments of the present application do not limit this.

[0092] In the embodiments of the present application, the second guide wheel 2242 not only needs to limit the second end of the reel 221 axially, but also needs to limit it radially.

[0093] Among them, when the second guide wheel 2242 limits the second end of the reel 221 axially and radially, the limiting method is the same as or similar to the method of axially and radially limiting the first end of the reel 221 by the plurality of first guide wheels 2232 in the above embodiments, and the embodiments of the present application will not repeat this.

[0094] Exemplarily, as Figure 6As shown, the number of the second guide wheels 2242 is three, and the first end of the drum 221 is radially limited on the three second guide wheels 2242.

[0095] Optionally, the centers of the three second guide wheels 2242 form an acute triangle. The three second guide wheels 2242 surround the drum 221 and abut against the outer wall of the drum 221, or the three second guide wheels 2242 extend into the first end of the drum 221 and abut against the inner wall of the drum 221. Of course, the three second guide wheels 2242 can also radially limit the first end of the drum 221 in other ways, and the embodiments of the present application do not limit this.

[0096] Optionally, as Figure 6 shown, two of the three second guide wheels 2242 are supported below the second end of the drum 221, and the remaining one second guide wheel 2242 presses against the inner wall of the second end of the drum 221.

[0097] Next, the lifting assembly 23 will be introduced in detail.

[0098] In some embodiments, as Figure 7 or Figure 8 shown, the lifting assembly 23 includes a lifting frame 231, a hydraulic rod 232 and a cross beam 233; the first end of the lifting frame 231 and the first end of the hydraulic rod 232 are rotatably connected to the base 21, the second end of the lifting frame 231 is rotatably connected to the cross beam 233, the second end of the hydraulic rod 232 is rotatably connected to the lifting frame 231, and the hydraulic rod 232 can cause the lifting frame 231 to rise to drive the cross beam 233 to rise; two opposite sides of the screen 24 are fixedly connected to the curling assembly 22 and the cross beam 233 respectively, and when the cross beam 233 rises, it drives the screen 24 to unfold to receive the light beam.

[0099] Wherein, when the projection device includes a storage part, the hydraulic rod 232 can cause the lifting frame 231 to rise, so as to drive the cross beam 233 to pass through the opening of the second accommodating part and rise.

[0100] In the embodiment of the present application, when starting up is required, the curling assembly 22 rotates forward to unfold the curtain 24. Since the compression of the hydraulic rod 232 is reduced, the elastic potential energy stored in the hydraulic rod 232 is released. At this time, the hydraulic rod 232 extends. As the hydraulic rod 232 extends, the lifting frame 231 is pushed to rise, thereby promoting the cross beam 233 to rise. At this time, the cross beam 233 drives the curtain 24 to rise until the curtain 24 rises to a predetermined height. At this time, the curling assembly 22 stops rotating, so as to realize the smooth unfolding of the curtain 24 under the tension of the curling assembly 22 on the curtain 24 and the support of the hydraulic rod 232 on the curtain 24. When shutting down, the curling assembly 22 rotates in the reverse direction to retract the curtain 24. At the same time, the curtain 24 drives the cross beam 233 to move downward synchronously. At this time, the height of the lifting frame 231 decreases to compress the hydraulic rod 232 and store elastic potential energy until the curtain 24 drops to a predetermined height. At this time, the curling assembly 22 stops rotating, so as to realize the smooth retraction of the curtain 24 under the tension of the curling assembly 22 on the curtain 24 and the support of the hydraulic rod 232 on the curtain 24. From the above startup and shutdown processes, it can be seen that in the embodiment of the present application, the setting of an additional power supply system and control system is avoided, and the structural complexity of the lifting assembly 23 is reduced.

[0101] Optionally, as Figure 7 shown, the lifting frame 231 includes a first connecting rod 2311 and a second connecting rod 2312; the first end of the first connecting rod 2311 is rotatably connected to the base 21, the first end of the second connecting rod 2312 is rotatably connected to the cross beam 233, and the second end of the first connecting rod 2311 is rotatably connected to the second end of the second connecting rod 2312.

[0102] Among them, as Figure 7 shown, the second end of the hydraulic rod 232 is rotatably connected to the first connecting rod 2311, so as to promote the rotation of the first connecting rod 2311 when the hydraulic rod 232 extends. Furthermore, the first connecting rod 2311 drives the second connecting rod 2312 to rotate synchronously, realizing the rising of the lifting frame 231. When the lifting frame 231 descends, the first connecting rod 2311 and the second connecting rod 2312 rotate to store the elastic potential energy of the hydraulic rod 232 under the compression of the first connecting rod 2311 on the hydraulic rod 232.

[0103] Alternatively, the second end of the hydraulic rod 232 is rotatably connected to the second connecting rod 2312, so as to promote the rotation of the second connecting rod 2312 when the hydraulic rod 232 extends. Furthermore, the second connecting rod 2312 drives the first connecting rod 2311 to rotate synchronously, realizing the rising of the lifting frame 231. When the lifting frame 231 descends, the first connecting rod 2311 and the second connecting rod 2312 rotate to store the elastic potential energy of the hydraulic rod 232 under the compression of the second connecting rod 2312 on the hydraulic rod 232.

[0104] In the embodiments of the present application, the curtain sheet 24 needs to bear the tension force of the curling assembly 22 on the curtain sheet 24 and the supporting force of the hydraulic rod 232 on the curtain sheet 24. In this way, it is easy to damage the curtain sheet 24 under the action of the tension force and the supporting force. Therefore, optionally, the lifting assembly 23 further includes a tension rope. The first end of the tension rope is fixed on the base 21, and the second end of the tension rope is fixedly connected to the cross beam 233. In this way, the elastic force of the tension rope itself can reduce the force that the curtain sheet 24 needs to bear, thereby reducing the possibility of damage to the curtain sheet 24.

[0105] Optionally, in combination with the structure of the curling assembly 22 described above, the curling assembly 22 further includes a tension member. One end of the tension member is fixedly connected to the reel 221, and the other end of the tension member is fixedly connected to the cross beam 233. In this way, the tension member can bear the tension force of the curling assembly 22 on the curtain sheet 24 and the supporting force of the hydraulic rod 232 on the curtain sheet 24, thereby reducing the possibility of damage to the curtain sheet 24.

[0106] Wherein, the tension member is a flexible rope or a steel wire rope, etc., and the embodiments of the present application do not limit this.

[0107] In still other embodiments, the lifting assembly 23 includes a plurality of hydraulic rods 232 and a cross beam 233; the first end of each hydraulic rod 232 is connected to the base 21, the second end of each hydraulic rod 232 is connected to the cross beam 233, and the plurality of hydraulic rods 232 can cause the cross beam 233 to rise; the two opposite sides of the curtain sheet 24 are respectively fixedly connected to the curling assembly 22 and the cross beam 233, and when the cross beam 233 rises, it drives the curtain sheet 24 to unfold to receive the light beam.

[0108] Wherein, in the case where the projection device includes a storage part, the hydraulic rod 232 can cause the cross beam 233 to pass through the opening of the second accommodating part and rise.

[0109] In the embodiment of the present application, when starting up is required, the curling component 22 rotates forward to unfurl the curtain 24. Since the compression of the hydraulic rod 232 is reduced, the elastic potential energy stored in the hydraulic rod 232 is released. At this time, the hydraulic rod 232 extends and prompts the cross beam 233 to rise. At this time, the cross beam 233 drives the curtain 24 to rise until the curtain 24 rises to a predetermined height. At this time, the curling component 22 stops rotating, so as to realize the smooth unfolding of the curtain 24 under the tensioning action of the curling component 22 on the curtain 24 and the supporting action of the hydraulic rod 232 on the curtain 24. When shutting down, the curling component 22 rotates in the reverse direction to retract the curtain 24. At the same time, the curtain 24 drives the cross beam 233 to move downward synchronously to compress the hydraulic rod 232 and store elastic potential energy until the curtain 24 is lowered to a predetermined height. At this time, the curling component 22 stops rotating, so as to realize the smooth retraction of the curtain 24 under the tensioning action of the curling component 22 on the curtain 24 and the supporting action of the hydraulic rod 232 on the curtain 24. From the above startup and shutdown processes, it can be seen that in the embodiment of the present application, the setting of an additional power supply system and control system is avoided, and the structural complexity of the lifting component 23 is reduced.

[0110] Wherein, the length direction of each hydraulic rod 232 is perpendicular to the length direction of the cross beam 233. Of course, the length direction of each hydraulic rod 232 is inclined, and the embodiment of the present application does not make any limitation thereto.

[0111] Optionally, the plurality of hydraulic rods 232 at least include a first hydraulic rod and a second hydraulic rod; the first ends of the first hydraulic rod and the second hydraulic rod are both fixed on the base 21, and the second ends of the first hydraulic rod and the second hydraulic rod are both fixedly connected to the cross beam 233. The length direction of each hydraulic rod 232 is perpendicular to the length direction of the cross beam 233.

[0112] Since both ends of the first hydraulic rod are fixedly connected between the base 21 and the cross beam 233, and both ends of the second hydraulic rod are fixedly connected between the base 21 and the cross beam 233, a rectangle can be formed by the first hydraulic rod, the second hydraulic rod, the cross beam 233 and the base 21, which ensures the stability of the lifting component 23 and avoids the possibility of the curtain 24 being skewed.

[0113] Wherein, the performance parameters of the first hydraulic rod are the same as those of the second hydraulic rod, so as to ensure that at any moment, the lengths of the first hydraulic rod and the second hydraulic rod are the same, thereby further ensuring the stability of the lifting component 23.

[0114] Optionally, the plurality of hydraulic rods 232 at least include a first hydraulic rod and a second hydraulic rod; the first ends of the first hydraulic rod and the second hydraulic rod are rotatably connected to the base 21, and the second ends of the first hydraulic rod and the second hydraulic rod are rotatably connected to the cross beam 233.

[0115] Since both ends of the first hydraulic rod are rotatably connected to the base 21 and the cross beam 233 respectively, and both ends of the second hydraulic rod are rotatably connected to the base 21 and the cross beam 233 respectively, in order to allow the cross beam 233 to sway along its own length direction to ensure the stability of the lifting assembly 23, the inclinations of the first hydraulic rod and the second hydraulic rod are opposite to each other, that is, the first hydraulic rod, the second hydraulic rod, the cross beam 233 and the base 21 enclose an inverted trapezoid; or, the inclinations of the first hydraulic rod and the second hydraulic rod are the same, that is, the first hydraulic rod, the second hydraulic rod, the cross beam 233 and the base 21 enclose an upright trapezoid. In this way, through the inclined support of the first hydraulic rod and the second hydraulic rod, it can be ensured that the component forces generated by the first hydraulic rod and the second hydraulic rod in the length direction of the cross beam 233 cancel each other out, thereby avoiding the possibility of the cross beam 233 swaying.

[0116] Alternatively, in some other embodiments, in addition to setting the inclinations of the first hydraulic rod and the second hydraulic rod to be opposite or the same, the lifting assembly 23 further includes a telescopic rod. The first end of the telescopic rod is fixed to the base 21, and the second end of the telescopic rod is fixedly connected to the cross beam 233. The length direction of the telescopic rod is perpendicular to the length direction of the cross beam 233. In this way, since both ends of the telescopic rod are fixedly connected to the cross beam 233 and the base 21 respectively, the cross beam 233 can be prevented from swaying under the limitation of the telescopic rod.

[0117] Among them, the number of telescopic rods can be set as required. For example, the lifting assembly 23 includes two telescopic rods, and the first ends of the two telescopic rods are respectively connected to both ends of the base 21.

[0118] It should be noted that the above settings of the inclinations of the first hydraulic rod and the second hydraulic rod being opposite or the same, and the setting of the telescopic rod can be combined to further avoid the possibility of the cross beam 233 swaying, thereby further ensuring the stability of the lifting assembly 23.

[0119] In the embodiments of the present application, in order to avoid the possibility of the screen 24 being damaged under the action of the tension force of the winding drum 221 and the supporting force of the hydraulic rod 232, optionally, the lifting assembly 23 further includes a tension rope. The first end of the tension rope is fixed to the base 21, and the second end of the tension rope is fixedly connected to the cross beam 233. In this way, the elastic force of the tension rope itself can reduce the force that the screen 24 needs to bear, thereby reducing the possibility of the screen 24 being damaged.

[0120] Optionally, in combination with the structure of the curling component 22 described above, the curling component 22 further includes a tensioning member. One end of the tensioning member is fixedly connected to the winding drum 221, and the other end of the tensioning member is fixedly connected to the cross beam 233. In this way, the tensioning member can bear the tension force of the curling component 22 on the screen 24 and the supporting force of the hydraulic rod 232 on the screen 24, thereby reducing the possibility of damage to the screen 24. Among them, the tensioning member is a flexible rope or a steel wire rope, etc., and the embodiments of the present application do not limit this.

[0121] In the embodiments of the present application, in addition to the structure described above for the lifting component 23, it can also be other structures. That is, after the lifting frames 231 included in the lifting component are respectively connected to the base 21 and the cross beam 223, the lifting frame 221 can drive the cross beam to rise under the promotion of other structures, and the embodiments of the application do not limit this.

[0122] In the embodiments of the present application, by supporting and limiting the winding drum through the first support mechanism and the second support structure, compared with fixing through the rotating shaft, the problem that the weight of the winding drum and the tension force of the screen act on the rotating shaft, causing the rotating shaft to be easily damaged, is avoided, thereby prolonging the service life of the curling component, that is, prolonging the service life of the projection device. In addition, the height of the winding drum can also be adjusted through the first support mechanism and the second support mechanism. In this way, compared with the winding drum being fixed to the base through the rotating shaft, the flexibility of the position of the winding drum is improved. In addition, through the setting of the hydraulic rod, elastic potential energy can be stored when the screen is retracted, and the screen can be unfolded based on the stored elastic potential energy, thereby avoiding the setting of an additional power supply system and control system, and reducing the structural complexity and control difficulty of the lifting component.

[0123] The above are only illustrative embodiments of the embodiments of the present application, and are not intended to limit the embodiments of the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the embodiments of the present application shall be included in the protection scope of the embodiments of the present application.

Claims

1. A projection device, characterized in that, The projection device includes: an optical engine for emitting a light beam; a projection screen including a base, a curling assembly, a lifting assembly, and a screen sheet. The curling assembly includes a reel, a curling motor, a first support mechanism, and a second support mechanism; The curling motor, the first support mechanism, the second support mechanism, and the lifting assembly are fixed on the base. The reel is in transmission connection with the curling motor. The reel is rotatably supported and limited at the tops of the first support mechanism and the second support mechanism. Two opposite side edges of the screen sheet are respectively fixedly connected to the reel and the lifting assembly; The first support mechanism and the second support mechanism are used to adjust the height of the reel. The curling motor can drive the reel to rotate to curl the screen sheet, and the lifting assembly can control the screen sheet to unfold to receive the light beam.

2. The projection device according to claim 1, wherein The first support mechanism includes a first support frame and a plurality of first guide wheels; The first support frame is fixed on the base. The plurality of first guide wheels are fixed on the first support frame. The first end of the reel is rotatably limited on the plurality of first guide wheels, and the positions of the plurality of first guide wheels are adjustable.

3. The projection device according to claim 2, wherein The first support frame has a first oblong hole corresponding to the first guide wheel. The first guide wheel is fixedly connected to the first support frame based on the corresponding first oblong hole, and the first guide wheel can move along the length direction of the corresponding first oblong hole.

4. The projection device according to claim 2, characterized in that, The height of the first support frame is adjustable.

5. The projection device according to any one of claims 2-4, characterized in that, The output of the curling motor is in transmission connection with the inner wall of the first end of the reel. The first end of the reel is axially limited on the plurality of first guide wheels.

6. The projection device according to claim 5, wherein, The first guide wheel has a step surface facing the second end of the reel. The end surface of the first end of the reel abuts against the step surface.

7. The projection device according to claim 5, wherein The reel has an annular groove, and a part of the first guide wheel is located in the annular groove.

8. The projection device according to any one of claims 2-4, characterized in that, The output shaft of the curling motor is in transmission connection with the outer wall of the first end of the reel. The first end of the reel is axially and radially limited on the plurality of first guide wheels.

9. The projection device according to claim 8, characterized in that, The number of the first guide wheels is two. The two first guide wheels extend into the reel, and the second end of the reel is radially limited on the two second guide wheels.

10. The projection device according to claim 2, characterized in that, The second support mechanism includes a second support frame and a plurality of second guide wheels; The second support frame is fixed on the base. The plurality of second guide wheels are fixed on the second support frame. The second end of the reel is rotatably supported and limited on the plurality of second guide wheels, and the radial positions of the plurality of second guide wheels are adjustable.

11. The projection device according to claim 10, characterized in that, The number of the second guide wheels is three. The second end of the reel is radially limited on the three second guide wheels.

12. The projection device according to claim 11, characterized in that, The centers of the three second guide wheels form an acute triangle. The three second guide wheels surround the reel and abut against the outer wall of the reel.

Citation Information

Patent Citations

  • Portable self-supporting manual-lifting screen

    CN101419387A

  • Screen curling roller

    CN210015325U