The present disclosure relates to liquid crystal display (LCD), and particularly to a backlight module.
In a conventional liquid crystal display, white LED is usually used as a backlight source, and a desired LCD backlight can be achieved through a reasonable arrangement of light guide plate and optical film. With increasing demand for high color gamut, high color saturation and energy-saving lamps, current solutions of white light source, high gamut and high color saturation in backlight are achieved by: ultraviolet LED with RGB phosphors; blue LED with RG (red and green) phosphors; blue LED with green LED plus red LED; and the like. Such methods can improve the color gamut, but they are difficult to be implemented and costly. Thus, quantum dot (QD) material is applied to the backlight module, through which, the traditional white LED light source is replaced by high-frequency spectrum light source (such as blue LED). Under irradiation of high-frequency light source, the QD material can be excited to produce different wavelength spectrums. By adjusting the size of the QD material, the color of the synthesized light can be adjusted, thus achieving requirement of backlight in high color gamut LCD display. Thus, how to firmly fix the QD material in the backlight module is an issue needed to be solved currently.
A main object of the present disclosure is to provide a backlight module, which can firmly fix the QD material in the backlight module.
The present disclosure provides a backlight module which includes a lamp strip and a light guide plate, and further includes a quantum dot glass tube and a fixing part, the fixing part being a hollow structure, the quantum dot glass tube being provided in the cavity of the fixing part which is positioned between the lame strip and the light guide plate, one side wall of the fixing part being abutting on the frame of the lamp strip, and the other side wall of the fixing part being engaging with the light guide plate.
Preferably, the side wall facing the lamp strip of the fixing part is provided with a plurality of first recesses arranged in turn, the shape of the first recess is matched with the shape of an LED lamp in the lamp strip, and after the frame of the first recess abuts on the frame of the lamp strip, one LED lamp is correspondingly received in one first recess.
Preferably, the side wall facing the lamp strip of the fixing part is provided with a second recess, the shape of the second recess is matched with the shape of the lamp strip, and after the frame of the second recess abuts on the frame of the lamp strip, the lamp strip is received in the second recess.
Preferably, the side wall facing the lamp strip of the fixing part is provided with a plurality of protrusions at the four corners or the four edges thereof respectively, the height of the protrusion is greater than the thickness of the lamp strip, and the protrusions are abutting on the frame of the lamp strip.
Preferably, the thickness of the light guide plate is reduced along the direction away from the fixing part.
The present disclosure also provides a backlight module which includes a lamp strip and a light guide plate, and further includes a quantum dot glass tube and a fixing part, the fixing part being a hollow structure, the quantum dot glass tube being provided in the cavity of the fixing part which is positioned between the lame strip and the light guide plate, one side wall of the fixing part being abutting on the frame of the lamp strip, and the other side wall of the fixing part being engaging with the light guide plate; the side wall facing the light guide plate of the fixing part is provided with an engaging groove, the width of the engaging groove being coincided with the thickness of the light guide plate, and the edge of the light guide plate being engaging in the engaging groove.
Preferably, the opposite side walls of the engaging groove to form extend position bars toward the cavity of the engaging groove respectively, the edge of the light guide plate is provided with guide slots at positions corresponding to the position bars, and the position bars are matched with the guide slots.
Preferably, the thickness of the light guide plate is reduced along the direction away from the fixing part.
Preferably, the side wall facing the lamp strip of the fixing part is provided with a plurality of first recesses arranged in turn, the shape of the first recess is matched with the shape of an LED lamp in the lamp strip, and after the frame of the first recess abuts on the frame of the lamp strip, one LED lamp is correspondingly received in one first recess.
Preferably, the side wall facing the lamp strip of the fixing part is provided with a second recess, the shape of the second recess is matched with the shape of the lamp strip, and after the frame of the second recess abuts on the frame of the lamp strip, the lamp strip is received in the second recess.
Preferably, the side wall facing the lamp strip of the fixing part is provided with a plurality of protrusions at the four corners or the four edges thereof respectively, the height of the protrusion is greater than the thickness of the lamp strip, and the protrusions are abutting on the frame of the lamp strip.
The present disclosure further provides a backlight module which includes a lamp strip and a light guide plate, and further includes a quantum dot optical film located between the lamp strip and the light guide plate, a side wall facing the quantum dot optical film of the light guide plate is provided with a third recess, and the quantum dot optical film is attached to the edge of the third recess.
Preferably, the third recess is provided with a plurality of folds at the bottom surface thereof.
Preferably, the thickness of the light guide plate is reduced along the direction away from the quantum dot optical film.
Preferably, there is a plurality of the third recesses, and each third recess corresponds to an LED lamp.
Preferably, there is one third recess, and the third recess corresponds to the whole lamp strip.
By means of utilizing the fixing part to place the quantum dot glass tube in the present disclosure, a proper distance is maintained among the lamp strip, the light guide plate and the quantum dot glass tube, and the lamp strip and the light guide plate can be fixed.
The implementations, functional features and advantages of the present disclosure will be further described with reference to embodiments thereof and the accompanying drawings.
It should be appreciate that, the embodiments described herein are only intended to illustrate but not to limit the present disclosure.
Referring to
The backlight module provided in the embodiment includes a lamp strip 10, a light guide plate 20, a quantum dot glass tube 30 and a fixing part 40, in which high-frequency LED light source can be used in the lamp strip 10 and the quantum dot glass tube 30 is designed to place quantum dot (QD) material into the glass tube. The quantum dot glass tube 30 can be a cuboid shape glass tube. Under irradiation of high-frequency LED light source, the QD material in the quantum dot glass tube 30 can be excited to produce spectrums having different colors, thus generates white backlight required by the backlight module.
To keep a proper distance among the lamp strip 10, the light guide plate 20 and the quantum dot glass tube 30, the fixing part 40 is adopted in the embodiment to place the quantum dot glass tube 30 and can fix the lamp strip 10 and the light guide plate 20. A detailed structure is as follows:
The fixing part 40 is a hollow structure, the quantum dot glass tube 30 is provided in the cavity of the fixing part 40 which is positioned between the lamp strip 10 and the light guide plate 20, one side wall of the fixing part 40 abuts on the frame of the lamp strip 10, and the other side wall of the fixing part 40 engages with the light guide plate 20. The side wall facing the light guide plate 20 of the fixing part 40 is provided with an engaging groove 50, the width of the engaging groove 50 is coincided with the thickness of the light guide plate 20, and the edge of the light guide plate 20 is engaging in the engaging groove 50, thus effectively prevent the light guide plate 20 from damage of impacting the quantum dot glass tube 30.
Referring to
Referring to
Referring to
Referring to
Referring to
Referring to
The difference between the backlight module provided in the embodiment and the embodiments shown in
Referring to
What described above are only preferred embodiments of the present disclosure but are not intended to limit the scope of the present disclosure.
Accordingly, any equivalent structural or process flow modifications that are made on basis of the specification and the attached drawings or any direct or indirect applications in other technical fields shall also fall within the scope of the present disclosure.
Number | Date | Country | Kind |
---|---|---|---|
201320560218.3 | Sep 2013 | CN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2014/070831 | 1/17/2014 | WO | 00 |