CN112242095A - Display device - Google Patents

Display device Download PDF

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Publication number
CN112242095A
CN112242095A CN201910653346.4A CN201910653346A CN112242095A CN 112242095 A CN112242095 A CN 112242095A CN 201910653346 A CN201910653346 A CN 201910653346A CN 112242095 A CN112242095 A CN 112242095A
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China
Prior art keywords
display device
display panel
flexible display
guide rail
layer
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Granted
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CN201910653346.4A
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Chinese (zh)
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CN112242095B (en
Inventor
林益生
叶佳俊
林冠峄
萧博友
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Yuan Tai Technology Industry Co ltd
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Yuan Tai Technology Industry Co ltd
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Priority to CN202211386715.6A priority Critical patent/CN115578937A/en
Priority to CN201910653346.4A priority patent/CN112242095B/en
Publication of CN112242095A publication Critical patent/CN112242095A/en
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Publication of CN112242095B publication Critical patent/CN112242095B/en
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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • G09F9/30Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements
    • G09F9/301Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements flexible foldable or roll-able electronic displays, e.g. thin LCD, OLED
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/165Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on translational movement of particles in a fluid under the influence of an applied field
    • G02F1/166Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on translational movement of particles in a fluid under the influence of an applied field characterised by the electro-optical or magneto-optical effect
    • G02F1/167Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on translational movement of particles in a fluid under the influence of an applied field characterised by the electro-optical or magneto-optical effect by electrophoresis
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/165Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on translational movement of particles in a fluid under the influence of an applied field
    • G02F1/1675Constructional details
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/165Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on translational movement of particles in a fluid under the influence of an applied field
    • G02F1/1675Constructional details
    • G02F1/16753Structures for supporting or mounting cells, e.g. frames or bezels
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/165Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on translational movement of particles in a fluid under the influence of an applied field
    • G02F1/1675Constructional details
    • G02F1/16755Substrates

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  • Physics & Mathematics (AREA)
  • Nonlinear Science (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • Molecular Biology (AREA)
  • Theoretical Computer Science (AREA)
  • Engineering & Computer Science (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)
  • Liquid Crystal (AREA)
  • Electroluminescent Light Sources (AREA)

Abstract

The invention discloses a display device, which comprises a flexible display panel, a sealant and a first reinforcing structure. The flexible display panel comprises a lower substrate, an upper substrate and a display medium layer positioned between the lower substrate and the upper substrate. The lower substrate and the upper substrate are respectively provided with an edge area. The center line of the flexible display panel is parallel to the short sides of the flexible display panel. The sealant is positioned between the edge area of the lower substrate and the edge area of the upper substrate. The first reinforcing structure is positioned between the sealant, the edge area of the lower substrate and the edge area of the upper substrate. The center line of the flexible display panel passes through the first reinforcing structure, and the elastic modulus of the first reinforcing structure is larger than that of the sealant. When the display device is bent, the edge regions of the lower substrate and the upper substrate are stable at the position close to the central line, and the strain generated by bending can be dispersed on the two opposite sides of the display device, so that the situations of single-side dislocation and delamination can be avoided.

Description

Display device
Technical Field
The present invention relates to a display device, and more particularly, to a display device having a flexible display panel.
Background
In the market of various consumer electronic products nowadays, flexible display panels have been widely used as display screens of electronic products, such as electronic paper. The display medium layer of the flexible display panel is mainly composed of electrophoretic liquid and white and black particles mixed in the electrophoretic liquid. By applying voltage to the display medium layer, the white and black particles can be driven to move, so that each pixel region can display black, white or gray scale respectively. Because the flexible display panel achieves the purpose of displaying by utilizing incident light (such as sunlight or indoor ambient light) to irradiate the display medium layer and reflect, a backlight source is not needed, and the power consumption can be saved.
However, when the display device having the flexible display panel is bent, a misalignment may occur between an inner rim edge and an outer rim edge of the display device due to a thickness of the display device itself. That is, the layers of the inner race are indented more than the layers of the outer race. If the misalignment occurs only on one side of the display device, stress strain is likely to accumulate, which leads to delamination.
Disclosure of Invention
The present invention is directed to a display device, in which the edge regions of a lower substrate and an upper substrate are stable at positions close to a central line, and strain generated by bending can be dispersed at two opposite sides of the display device, thereby avoiding the occurrence of single-side dislocation and delamination.
According to an embodiment of the present invention, a display device includes a flexible display panel, a sealant and a first reinforcing structure. The flexible display panel comprises a lower substrate, an upper substrate and a display medium layer positioned between the lower substrate and the upper substrate. The lower substrate and the upper substrate are respectively provided with an edge area. The center line of the flexible display panel is parallel to the short sides of the flexible display panel. The sealant is positioned between the edge area of the lower substrate and the edge area of the upper substrate. The first reinforcing structure is positioned between the sealant, the edge area of the lower substrate and the edge area of the upper substrate. The center line of the flexible display panel passes through the first reinforcing structure, and the elastic modulus of the first reinforcing structure is larger than that of the sealant.
In an embodiment of the invention, the first reinforcing structure is a heat-curable adhesive or a light-curable adhesive.
In one embodiment of the present invention, the elastic modulus of the first reinforcing structure is in the range of 3GPa to 4 GPa.
In an embodiment of the present invention, the display device further includes an upper protection layer and an adhesive layer. The adhesive layer is located between the upper protection layer and the upper substrate.
In an embodiment of the invention, the display device further includes a second reinforcing structure. The second reinforcing structure is located between the upper protective layer, the adhesive layer and the edge region of the upper substrate, and the center line of the flexible display panel passes through the second reinforcing structure.
In an embodiment of the present invention, the display device further includes a lower protection layer and an adhesive layer. The adhesive layer is located between the lower protective layer and the lower substrate.
In an embodiment of the invention, the display device further includes a second reinforcing structure. The second reinforcing structure is located between the edge regions of the lower protective layer, the adhesive layer and the lower substrate, and the center line of the flexible display panel passes through the second reinforcing structure.
In an embodiment of the invention, the display device has an air gap, the air gap is located between the edge region of the lower substrate, the display medium layer, the edge region of the upper substrate, and the adhesive layer, and an extending direction of the air gap is parallel to the center line.
In an embodiment of the invention, the display device further includes a support member. The supporting member is located in the air gap and on the edge region of the lower substrate.
In an embodiment of the present invention, the display device further includes a first guide rail and a plurality of second guide rails. The center line of the flexible display panel passes through the first guide rail. The second guide rails are pivoted with each other, two of the second guide rails are pivoted on two opposite sides of the first guide rail, the flexible display panel is contained in the first guide rail and the second guide rail, and the hardness of the first guide rail is greater than that of the second guide rail.
In one embodiment of the present invention, the first guide rail is made of metal, and the second guide rail is made of rubber.
In an embodiment of the invention, the display device further includes a second reinforcing structure. The second reinforcing structure is located between the first guide rail and the flexible display panel.
In the above embodiments of the present invention, since the center line of the flexible display panel passes through the first reinforcing structure, and the elastic modulus of the first reinforcing structure is greater than the elastic modulus of the sealant, when the display device is bent, the edge regions of the lower substrate and the upper substrate are more stable at the position adjacent to the center line. Therefore, the strain generated by bending can be dispersed on the two opposite sides of the display device, and the situations of single-side dislocation and delamination can be avoided.
According to an embodiment of the present invention, a display device includes a flexible display panel, an upper protection layer, a first adhesive layer, a lower protection layer and a second adhesive layer. The flexible display panel comprises a lower substrate, an upper substrate and a display medium layer positioned between the lower substrate and the upper substrate, wherein the central line of the flexible display panel is parallel to the short side of the flexible display panel. The first adhesive layer is located between the upper protection layer and the upper substrate. The second adhesive layer is located between the lower protective layer and the lower substrate, wherein the viscosity or elasticity of at least one of the first adhesive layer and the second adhesive layer close to the central line is larger than the viscosity or elasticity of the first adhesive layer and the second adhesive layer far away from the central line.
In an embodiment of the invention, the upper protection layer has a concave portion or a convex portion contacting the first adhesive layer, and a center line of the flexible display panel passes through the concave portion or the convex portion.
In an embodiment of the invention, the upper substrate has a concave portion or a convex portion contacting the first adhesive layer, and a center line of the flexible display panel passes through the concave portion or the convex portion.
In an embodiment of the invention, the lower protection layer has a concave portion or a convex portion contacting the second adhesive layer, and a center line of the flexible display panel passes through the concave portion or the convex portion.
In an embodiment of the invention, the display device has an air gap, the air gap is located between the edge region of the lower substrate, the display medium layer, the edge region of the upper substrate, and the first adhesive layer, and an extending direction of the air gap is parallel to the center line.
In an embodiment of the invention, the display device further includes a support member. The supporting member is located in the air gap and on the edge region of the lower substrate.
In an embodiment of the present invention, the display device further includes a first guide rail and a plurality of second guide rails. The center line of the flexible display panel passes through the first guide rail. The second guide rails are pivoted with each other, two of the second guide rails are pivoted on two opposite sides of the first guide rail, the flexible display panel is contained in the first guide rail and the second guide rail, and the hardness of the first guide rail is greater than that of the second guide rail.
In one embodiment of the present invention, the first guide rail is made of metal, and the second guide rail is made of rubber.
In an embodiment of the invention, the display device further includes a reinforcing structure. The reinforcing structure is located between the first guide rail and the flexible display panel.
In the above embodiments of the present invention, the first adhesive layer or the second adhesive layer near the center line of the flexible display panel has a higher viscosity or elasticity than the first adhesive layer or the second adhesive layer far from the center line of the flexible display panel, so that the upper protective layer and the lower protective layer are more stable at the position near the center line when the display device is bent. Therefore, the strain generated by bending can be dispersed on the two opposite sides of the display device, and the situations of single-side dislocation and delamination can be avoided.
According to an embodiment of the present invention, a display device includes a flexible display panel, an upper protection layer, a first adhesive layer, a lower protection layer and a second adhesive layer. The flexible display panel comprises a lower substrate, an upper substrate and a display medium layer positioned between the lower substrate and the upper substrate, wherein the central line of the flexible display panel is parallel to the short side of the flexible display panel. The first adhesive layer is located between the upper protection layer and the upper substrate. The second adhesive layer is located between the lower protective layer and the lower substrate. At least one of the upper protective layer, the upper substrate and the lower protective layer is provided with a concave part or a convex part, the concave part or the convex part is contacted with one of the first adhesive layer and the second adhesive layer, and the central line passes through the concave part or the convex part.
In an embodiment of the invention, the display device has an air gap, the air gap is located between the edge region of the lower substrate, the display medium layer, an edge region of the upper substrate, and the first adhesive layer, and an extending direction of the air gap is parallel to the central line.
In an embodiment of the invention, the display device further includes a support member. The supporting member is located in the air gap and on the edge region of the lower substrate.
In an embodiment of the present invention, the display device further includes a first guide rail and a plurality of second guide rails. The center line of the flexible display panel passes through the first guide rail. The second guide rails are pivoted with each other, two of the second guide rails are pivoted on two opposite sides of the first guide rail, the flexible display panel is contained in the first guide rail and the second guide rail, and the hardness of the first guide rail is greater than that of the second guide rail.
In one embodiment of the present invention, the first guide rail is made of metal, and the second guide rail is made of rubber.
In an embodiment of the invention, the display device further includes a reinforcing structure. The reinforcing structure is located between the first guide rail and the flexible display panel.
In the above embodiments of the present invention, since the upper passivation layer, the upper substrate and the lower passivation layer may have a concave portion or a convex portion, and the concave portion or the convex portion may contact the first adhesive layer and the second adhesive layer and pass through the center line, when the display device is bent, the positions of the concave portion or the convex portion of the upper passivation layer, the upper substrate and the lower passivation layer may contact more adhesive layers than other areas, so that the positions of the upper passivation layer, the upper substrate and the lower passivation layer adjacent to the center line are more stable. Therefore, the strain generated by bending can be dispersed on the two opposite sides of the display device, and the situations of single-side dislocation and delamination can be avoided.
According to an embodiment of the present invention, a display device includes a flexible display panel, a first rail, a plurality of second rails, and a reinforcing structure. The flexible display panel has a center line parallel to a short side of the flexible display panel. The center line of the flexible display panel passes through the first guide rail. The second guide rails are pivoted with each other, and two of the second guide rails are pivoted on two opposite sides of the first guide rail. The flexible display panel is accommodated in the first guide rail and the second guide rail, wherein the hardness of the first guide rail is greater than that of the second guide rail. The reinforcing structure is located between the first guide rail and the flexible display panel.
In one embodiment of the present invention, the first guide rail is made of metal, and the second guide rail is made of rubber.
In an embodiment of the invention, the display device has an air gap, the air gap is located between the edge region of the lower substrate, the display medium layer, the edge region of the upper substrate, and the first adhesive layer, and an extending direction of the air gap is parallel to the center line.
In an embodiment of the invention, the display device further includes a support member. The supporting member is located in the air gap and on the edge region of the lower substrate.
In the above embodiments of the present invention, since the hardness of the first guide rail through which the center line passes is greater than that of the second guide rail, and the reinforcing structure is located between the first guide rail and the flexible display panel, when the display device is bent, the display device is more stable at a position adjacent to the center line. Therefore, the strain generated by bending can be dispersed on the two opposite sides of the display device, and the situations of single-side dislocation and delamination can be avoided.
Drawings
Fig. 1 is a top view of a display device according to an embodiment of the invention.
FIG. 2 is a cross-sectional view of the display device of FIG. 1 along line 2-2.
FIG. 3 is a cross-sectional view of the display device of FIG. 1 taken along line 3-3.
FIG. 4 is a cross-sectional view of the display device of FIG. 1 taken along line 4-4.
FIG. 5 is a cross-sectional view of a display device according to an embodiment of the invention, the cross-sectional position of which is the same as that of FIG. 4.
Fig. 6 is a side view of a display device according to an embodiment of the invention.
FIG. 7 is a cross-sectional view of the display device of FIG. 6 taken along line 7-7.
FIG. 8 is a cross-sectional view of the display device of FIG. 6 taken along line 8-8.
FIG. 9 is a top view of a display device according to an embodiment of the invention.
FIG. 10 is a cross-sectional view of the display device of FIG. 9 taken along line 10-10.
FIG. 11 is a top view of a display device according to an embodiment of the invention.
FIG. 12 is a cross-sectional view of the display device of FIG. 11 taken along line 12-12.
Fig. 13 is a top view of a display device according to an embodiment of the invention.
FIG. 14A is a top view of a display device according to an embodiment of the invention.
FIG. 14B is a cross-sectional view of the display device of FIG. 14A along the centerline L.
FIG. 15A is a top view of a display device according to an embodiment of the invention.
Fig. 15B shows a cross-sectional view of the display device of fig. 15A along the center line L.
Description of the main reference numerals:
100. 100a, 100b, 100c, 100d, 100e, 100 f-display device, 110 a-flexible display panel, 112a, 112 b-lower substrate, 113-edge region, 114-upper substrate, 115-edge region, 116 a-display medium layer, 120-sealant, 130a, 130b, 130 c-reinforcement structure, 140a, 140 b-upper protective layer, 150a, 150b, 150c, 150 d-adhesive layer, 160a, 160 b-lower protective layer, 170-support, 180 a-first guide, 180 b-second guide, 192a, 192 b-concave part, 194-convex part, 2-2, 3-3, 4-4, 7-7, 8-8, 10-10-line segment, A1, A2, A3-area, D, D1, D2-direction, G-air gap, L-center line, O1, O2-opening, S1, S2-containing space.
Detailed Description
In the following description, numerous implementation details are set forth in order to provide a thorough understanding of various embodiments of the invention. It should be understood, however, that these implementation details are not to be interpreted as limiting the invention. That is, in some embodiments of the invention, such implementation details are not necessary. In addition, for the sake of simplicity, some conventional structures and elements are shown in the drawings in a simple schematic manner.
Fig. 1 is a top view of a display device 100 according to an embodiment of the invention. FIG. 2 is a cross-sectional view of the display device 100 of FIG. 1 along line 2-2. FIG. 3 is a cross-sectional view of the display device 100 of FIG. 1 along line 3-3. Referring to fig. 1 to fig. 3, the display device 100 includes a flexible display panel 110, a sealant 120 (e.g., sealant), and a reinforcing structure 130. The flexible display panel 110 includes a lower substrate 112, an upper substrate 114, and a display medium layer 116 disposed between the lower substrate 112 and the upper substrate 114. The lower substrate 112 may be made of Polyimide (PI) and has a thin film transistor array (TFT array). Dielectric layer 116 is shown to comprise a colloid and microcapsules having charged particles. Display medium layer 116 may be used to reflect incident light. The charged particles are, for example, black and white particles, but not limited thereto. In addition, the colloid may be a Pressure Sensitive Adhesive (PSA).
The lower substrate 112 and the upper substrate 114 respectively have an edge region 113 and an edge region 115, and the edge regions 113 and 115 can be regarded as peripheral package regions of the flexible display panel 110. The sealant 120 is located between the edge region 113 of the lower substrate 112 and the edge region 115 of the upper substrate 114. The center line L of the flexible display panel 110 is parallel to the short side of the flexible display panel 110, in other words, the center line L is perpendicular to the long side of the flexible display panel 110. In the present embodiment, the reinforcing structure 130 is provided in a region close to the center line L. The reinforcing structure 130 has a modulus of elasticity greater than that of the sealant 120, still has sealing properties, and can be another sealant. The reinforcing structure 130 is located between the sealant 120, the edge region 113 of the lower substrate 112 and the edge region 115 of the upper substrate 114. The center line L of the flexible display panel 110 passes through the reinforcing structure 130, and the elastic modulus (Young's modulus) of the reinforcing structure 130 is greater than that of the sealant 120.
In the present embodiment, the reinforcing structure 130 may be a heat-curable adhesive or a photo-curable adhesive, which has high viscosity and high elasticity. The elastic modulus of the reinforcing structure 130 may be in the range of 3GPa to 4GPa, while the elastic modulus of the sealant 120 is below about 1 GPa. The display device 100 (or the flexible display panel 110) may be bent or rolled along the long side. When the display device 100 is bent, the edge area 113 of the lower substrate 112 and the edge area 115 of the upper substrate 114 are stable at the position adjacent to the center line L. Thus, the strain caused by bending can be dispersed on two opposite sides of the display device 100 (e.g., the upper and lower short sides of fig. 1), thereby avoiding the occurrence of single-edge dislocation and delamination. In this context, the term "bending" includes coiling, as previously described.
In addition, in the present embodiment, the display device 100 further includes an upper protection layer 140, an adhesive layer 150a and a reinforcing structure 130 a. The adhesive layer 150a is located between the upper passivation layer 140 and the upper substrate 114. The reinforcement structure 130a is located between the upper protection layer 140, the adhesive layer 150a and the edge region 115 of the upper substrate 114, and the central line L of the flexible display panel 110 passes through the reinforcement structure 130 a. Similarly, the display device 100 may further include a lower protection layer 160, an adhesive layer 150b and a reinforcing structure 130 b. The adhesive layer 150b is located between the lower passivation layer 160 and the lower substrate 112. The reinforcement structure 130b is located between the lower protection layer 160, the adhesive layer 150b and the edge region 113 of the lower substrate 112, and the central line L of the flexible display panel 110 passes through the reinforcement structure 130 b. The material of the reinforcing structures 130a and 130b may be the same as the material of the reinforcing structure 130. The adhesive layers 150a, 150b may be an Optical Clear Adhesive (OCA) or a Pressure Sensitive Adhesive (PSA), but are not limited thereto. When the display device 100 is bent, the positions of the upper passivation layer 140 and the lower passivation layer 160 near the center line L are stable, and the strain generated by the bending can be dispersed on two opposite sides (e.g., the upper and lower short sides of fig. 1) of the display device 100 to avoid the single-edge dislocation and delamination.
It is to be understood that the connection, materials and functions of the elements described above will not be repeated and are described in detail.
In the above design, the interlayer stability is improved in the central area of the long side of the display device 100, and in the following description, the design for improving the interlayer stability in the short side of the display device 100 will be described.
FIG. 4 illustrates a cross-sectional view of the display device 100 of FIG. 1 along line 4-4. Referring to fig. 1 and 4, the display device 100 has an air gap G. The air gap G is located between the edge region 113 of the lower substrate 112, the display medium layer 116, the edge region 115 of the upper substrate 114, and the adhesive layer 150a, and the extending direction of the air gap G is parallel to the central line L. The lower substrate 112 at the short side of the display device 100 protrudes the display medium layer 116 and the upper substrate 114 for the upper passivation layer 140 to be attached by the adhesive layer 150 a. That is, a portion of the edge region 113 of the lower substrate 112 is not covered by the display medium layer 116 and the upper substrate 114. Thus, when the display device 100 is bent, the air gap G allows the upper passivation layer 140 and the flexible display panel 110 to generate a slight displacement, thereby preventing the interlayer displacement from concentrating to the region of the display device 100 adjacent to the center line L and causing delamination.
FIG. 5 is a cross-sectional view of the display device 100 according to the embodiment of the invention, the cross-sectional position of which is the same as that of FIG. 4. The difference from the embodiment of fig. 4 is that the display device 100 of fig. 5 further includes a support member 170. The supporting member 170 is located in the air gap G and on the edge region 113 of the lower substrate 112. The support 170 is disposed along the length direction of the air gap G. In manufacturing the display device 100 of fig. 5, the supporting member 170 may be disposed on a short side of the lower substrate 112 to define a predetermined space. Thus, when the upper passivation layer 140 is pressed and bonded by the adhesive layer 150a, the bonding position of the adhesive layer 150a is closer to the side of the lower substrate 112 due to the support member 170, and a space is left to form the air gap G. In the present embodiment, the supporting member 170 may be an elongated polyethylene terephthalate (PET) tape or a Polyimide (PI) tape, but is not limited thereto.
Fig. 6 shows a side view of the display device 100a according to an embodiment of the invention. FIG. 7 is a cross-sectional view of the display device 100a of FIG. 6 along line 7-7. FIG. 8 is a cross-sectional view of the display device 100a of FIG. 6 along line 8-8. Referring to fig. 6 to 8, the display device 100a includes a first rail 180a, a plurality of second rails 180b, and the display device 100 of fig. 1. The first guide rail 180a and the second guide rail 180b may be mounted to the cabinet. The first guide rail 180a and the second guide rail 180b cover the bottom surface and the side surface of the display device 100, and at least partially extend to the top surface of the display device 100. The first rail 180a and the second rail 180b respectively have accommodating spaces S1 and S2 therein for accommodating the display device 100 including the flexible display panel 110 (see fig. 3). The first guide rail 180a and the second guide rail 180b respectively have an opening O1 and an opening O2, the opening O1 communicates with the accommodating space S1, and the opening O2 communicates with the accommodating space S2. When the display device 100 is rolled in the direction D, it can move along the receiving space S2 of the second rail 180 b. The opening O1 of the first rail 180a and the opening O2 of the second rail 180b expose a display area of the top surface of the display device 100 for a user to view.
In addition, the display device 100a further includes a reinforcing structure 130 c. The reinforcing structure 130c is located between the first guide rail 180a and the display device 100. In more detail, referring to fig. 3, the reinforcing structure 130c is located between the first rail 180a and the upper protection layer 140 and between the first rail 180a and the lower protection layer 160. In other words, the reinforcing structure 130c is located between the first guide rail 180a and the flexible display panel 110. In the present embodiment, the first guide rail 180a is disposed at a position where the center line L (see also fig. 1) passes. The second guide rails 180b are pivotally connected to each other, and two of the second guide rails 180b are pivotally connected to two opposite sides of the first guide rail 180a and are not passed by the central line L. The first guide rail 180a has a hardness greater than that of the second guide rail 180 b. For example, the first guide rail 180a may be made of metal (e.g., stainless steel), and the second guide rail 180b may be made of rubber.
The reinforcing structure 130c can be adhered to the display device 100. When the display device 100a is rolled in the direction D, the display device 100 in the accommodating space S1 cannot move, and only the display device 100 in the accommodating space S2 can move along the second guide rail 180 b. At the fully unfolded length 1/2 of the display device 100a (i.e., the position where the center line L passes), the reinforcing structure 130c may fix the upper protective layer 140 and the lower protective layer 160 in the first guide rail 180 a. This fixing means restricts the relative positions of the upper protective layer 140 and the lower protective layer 160 in the first guide rail 180a from being completely unchanged regardless of whether the display device 100a is unfolded or rolled. In this way, when the upper protection layer 140 and the lower protection layer 160 are displaced between layers due to bending, the displacement is only towards two short sides (i.e. the left and right sides in fig. 6) of the display device 100. In the present embodiment, the material of the reinforcing structure 130c may be resin (Epoxy), but is not limited thereto.
Since the hardness of the first guide rail 180a through which the center line L passes is greater than that of the second guide rail 180b, and the reinforcing structure 130c is located between the first guide rail 180a and the display device 100 including the flexible display panel 110 (see fig. 3), the position adjacent to the center line L is stable when the display device 100a is bent. Thus, the strain generated by bending can be dispersed on the two opposite sides of the display device 100a, thereby avoiding the occurrence of single-edge dislocation and delamination.
FIG. 9 is a top view of a display device 100b according to an embodiment of the invention. FIG. 10 is a cross-sectional view of the display device 100b of FIG. 9 along line 10-10. Referring to fig. 9 and 10, the display device 100b includes a flexible display panel 110, an upper protection layer 140, an adhesive layer 150c, a lower protection layer 160, and an adhesive layer 150 d. The flexible display panel 110 includes a lower substrate 112, an upper substrate 114 and a display medium layer 116 a. The difference between the embodiments of fig. 1 and fig. 3 is that the viscosity or elasticity of at least one of the adhesive layers 150c and 150D gradually increases toward the directions D1 and D2 of the center line L of the flexible display panel 110, and the reinforcement structures 130, 130a, and 130b are omitted.
In the present embodiment, the center line L passes through the area a1, so the viscosity or elasticity of the adhesive layer 150c (or the adhesive layer 150d) in the area a1 is greater than that of the adhesive layer 150c (or the adhesive layer 150d) in the area a2, and the viscosity or elasticity of the adhesive layer 150c (or the adhesive layer 150d) in the area a2 is greater than that of the adhesive layer 150c (or the adhesive layer 150d) in the area A3. The number of the above-mentioned regions is not intended to limit the present invention. In the manufacturing process, at least one of the adhesive layer 150c and the adhesive layer 150d may be processed by gradient curing. For example, if the adhesive layers 150c and 150d are thermal curing or Ultraviolet (UV) curing adhesives, and the areas a1 through which the center line L passes are cured with higher energy (high power or long time) to cure the adhesive layers 150c and 150d, the adhesive properties or elasticity of the adhesive layers 150c and 150d in the areas adjacent to the center line L (e.g., the areas a1) are higher than those of the two sides (e.g., the areas A3), so that the display device 100b is preferentially displaced toward the two sides (e.g., the upper and lower short sides of fig. 9) when being bent.
Since the viscosity or elasticity of the adhesive layers 150c and 150d can gradually increase toward the center line L of the flexible display panel 110, the positions of the upper protective layer 140 and the lower protective layer 160 adjacent to the center line L are more stable when the display device 100b is bent. Thus, the strain caused by bending can be dispersed on the opposite sides of the display device 100b (e.g., the upper and lower short sides of fig. 9), thereby avoiding the occurrence of single-edge dislocation and delamination.
FIG. 11 is a top view of a display device 100c according to an embodiment of the invention. FIG. 12 is a cross-sectional view of the display device 100c of FIG. 11 along the line 12-12. Referring to fig. 11 and 12, the display device 100c includes the flexible display panel 110, an upper protection layer 140a, an adhesive layer 150a, a lower protection layer 160a, and an adhesive layer 150 b. The flexible display panel 110 includes a lower substrate 112, an upper substrate 114 and a display medium layer 116. In the present embodiment, the upper passivation layer 140a, the adhesive layer 150b and the lower passivation layer 160a all have a recess 192, the recess 192 of the upper passivation layer 140a and the recess 192 of the lower passivation layer 160a contact the adhesive layers 150a and 150b, respectively, and the center line L passes through the recess 192.
When the upper protection layer 140a and the lower protection layer 160a are respectively attached to the flexible display panel 110, the area of the upper protection layer 140a and the area of the lower protection layer 160a adjacent to the center line L have a larger attachment area, which can improve the stability. In addition, the interlayer strain generated when the display device 100c is bent (or rolled) may encounter geometric resistance of the concave portions 192 of the upper and lower protective layers 140a and 160a in the region adjacent to the center line L. Therefore, the interlayer strain can only move to two sides (such as the upper and lower short sides in fig. 11), and delamination caused by the interlayer strain concentrating to one side is avoided.
Fig. 13 is a top view of a display device 100d according to an embodiment of the invention. The display device 100d includes an upper passivation layer 140a, an adhesive layer 150a, a lower passivation layer 160a and an adhesive layer 150b, and the flexible display panel 110 of fig. 11. The difference from the embodiment of fig. 11 is that the upper passivation layer 140a, the adhesive layer 150a, the lower passivation layer 160a and the adhesive layer 150b of the display device 100d all have a protrusion 194, and the central line L passes through the protrusion 194. The convex portions 194 of the upper passivation layer 140a and the convex portions 194 of the lower passivation layer 160a contact the adhesive layers 150a and 150b, respectively, and the center line L passes through the convex portions 194. Such a design may also have the same effect as the recess 192 of fig. 11 described above.
FIG. 14A is a top view of a display device 100e according to one embodiment of the invention. FIG. 14B illustrates a cross-sectional view of the display device 100e of FIG. 14A along the centerline L. Referring to fig. 14A and 14B, the display device 100e includes an upper protection layer 140a, an adhesive layer 150a, a lower protection layer 160a, an adhesive layer 150B and the flexible display panel 110. In the present embodiment, the upper substrate 114 and the display medium layer 116 are recessed from the lower substrate 112a, in other words, the lower substrate 112a protrudes from the upper substrate 114 and the display medium layer 116. In this way, the edges of the upper substrate 114 and the display medium layer 116 may form the recess 192a together, and the central line L passes through the recess 192 a. In the present embodiment, the adhesive layer 150a sequentially contacts the adhesive layer 150b, the lower substrate 112a, and the upper substrate 114 from outside to inside, so that an additional attachment area is increased, and geometric resistance is formed in the vicinity of the center line L when the display device 100e is wound. Therefore, the inter-layer strain can only move to two sides (such as the upper and lower short sides of fig. 14), and delamination caused by the inter-layer strain concentrating to one side is avoided.
FIG. 15A shows a top view of a display device 100f according to an embodiment of the invention. Fig. 15B shows a cross-sectional view of the display device of fig. 15A along the center line L. Referring to fig. 15A and 15B, the display device 100f includes an upper protection layer 140a, an adhesive layer 150a, a lower protection layer 160a, an adhesive layer 150B and a flexible display panel 110 a. The difference between the embodiments shown in fig. 14A and 14B is that the edges of the upper substrate 114 and the display medium layer 116 of the flexible display panel 110a are substantially aligned with the edges of the lower substrate 112B. In this way, the edges of the upper substrate 114, the display medium layer 116 and the lower substrate 112b can form the recess 192b together, and the central line L passes through the recess 192 b. In the present embodiment, the adhesive layer 150a sequentially contacts the adhesive layer 150b and the upper substrate 114 from outside to inside, so that an additional attaching area is increased, and geometric resistance is formed in the vicinity of the center line L when the display device 100f is wound. Therefore, the inter-layer strain can only move to two sides (such as the upper and lower short sides of fig. 15), and delamination caused by the inter-layer strain concentrating to one side is avoided.
The display device of the present invention can use the components and structures of the above embodiments independently or in combination, depending on the needs of the designer.
While the foregoing is directed to embodiments of the present invention, other and further embodiments of the invention may be devised without departing from the basic scope thereof, and the scope thereof is determined by the claims that follow.

Claims (31)

1. A display device, comprising:
the flexible display panel comprises a lower substrate, an upper substrate and a display medium layer positioned between the lower substrate and the upper substrate, wherein the lower substrate and the upper substrate are respectively provided with an edge region, and the central line of the flexible display panel is parallel to the short side of the flexible display panel;
the sealant is positioned between the edge area of the lower substrate and the edge area of the upper substrate; and
the first reinforcing structure is positioned between the marginal areas of the lower substrate and the upper substrate, wherein the central line passes through the first reinforcing structure, and the elastic modulus of the first reinforcing structure is greater than that of the sealant.
2. The display device according to claim 1, wherein the first reinforcing structure is a heat-curable adhesive or a light-curable adhesive.
3. The display device according to claim 1, wherein the elastic modulus of the first reinforcing structure is in a range of 3GPa to 4 GPa.
4. The display device of claim 1, further comprising:
an upper protective layer; and
and the adhesive layer is positioned between the upper protective layer and the upper substrate.
5. The display device of claim 4, further comprising:
and the second reinforcing structure is positioned among the upper protective layer, the adhesive layer and the edge region of the upper substrate, and the central line of the flexible display panel passes through the second reinforcing structure.
6. The display device of claim 1, further comprising:
a lower protective layer; and
and the adhesive layer is positioned between the lower protective layer and the lower substrate.
7. The display device of claim 6, further comprising:
and the second reinforcing structure is positioned among the lower protective layer, the adhesive layer and the edge region of the lower substrate, and the central line of the flexible display panel passes through the second reinforcing structure.
8. The display device according to claim 4, wherein the display device has an air gap, the air gap is located between the edge region of the lower substrate, the display medium layer, the edge region of the upper substrate and the adhesive layer, and the extending direction of the air gap is parallel to the center line.
9. The display device of claim 8, further comprising:
and the support is positioned in the air gap and on the edge region of the lower substrate.
10. The display device of claim 1, further comprising:
a first guide rail, wherein the centerline of the flexible display panel passes through the first guide rail; and
the flexible display panel is accommodated in the first guide rail and the second guide rails, wherein the hardness of the first guide rail is greater than that of the second guide rails.
11. The display device according to claim 10, wherein the first rail is made of metal, and the plurality of second rails are made of rubber.
12. The display device of claim 10, further comprising:
and the second reinforcing structure is positioned between the first guide rail and the flexible display panel.
13. A display device, comprising:
the flexible display panel comprises a lower substrate, an upper substrate and a display medium layer positioned between the lower substrate and the upper substrate, wherein the central line of the flexible display panel is parallel to the short side of the flexible display panel;
an upper protective layer;
the first adhesive layer is positioned between the upper protective layer and the upper substrate;
a lower protective layer; and
the second viscose layer is located the lower protective layer with between the infrabasal plate, wherein be close to the central line position first viscose layer with the stickness or the elasticity of at least one of them of second viscose layer are greater than and keep away from the stickness or the elasticity of central line position.
14. The display device according to claim 13, wherein the upper protective layer has a concave portion or a convex portion contacting the first adhesive layer, and the center line of the flexible display panel passes through the concave portion or the convex portion.
15. The display device according to claim 13, wherein the upper substrate has a concave portion or a convex portion contacting the first adhesive layer, and the center line of the flexible display panel passes through the concave portion or the convex portion.
16. The display device according to claim 13, wherein the lower protective layer has a concave portion or a convex portion contacting the second adhesive layer, and the center line of the flexible display panel passes through the concave portion or the convex portion.
17. The display device according to claim 13, wherein the display device has an air gap, the air gap is located between the edge region of the lower substrate, the display medium layer, the edge region of the upper substrate and the first adhesive layer, and the extending direction of the air gap is parallel to the center line.
18. The display device of claim 17, further comprising:
and the support is positioned in the air gap and on the edge region of the lower substrate.
19. The display device of claim 13, further comprising:
a first guide rail, wherein the centerline of the flexible display panel passes through the first guide rail; and
the flexible display panel is accommodated in the first guide rail and the second guide rails, wherein the hardness of the first guide rail is greater than that of the second guide rails.
20. The display device according to claim 19, wherein the first rail is made of metal, and the plurality of second rails are made of rubber.
21. The display device of claim 19, further comprising:
and the reinforcing structure is positioned between the first guide rail and the flexible display panel.
22. A display device, comprising:
the flexible display panel comprises a lower substrate, an upper substrate and a display medium layer positioned between the lower substrate and the upper substrate, wherein a central line of the flexible display panel is parallel to a short side of the flexible display panel;
an upper protective layer;
the first adhesive layer is positioned between the upper protective layer and the upper substrate;
a lower protective layer; and
and the second adhesive layer is positioned between the lower protective layer and the lower substrate, at least one of the upper protective layer, the upper substrate and the lower protective layer is provided with a concave part or a convex part, the concave part or the convex part is contacted with one of the first adhesive layer and the second adhesive layer, and the central line passes through the concave part or the convex part.
23. The display device according to claim 22, wherein the display device has an air gap, the air gap is located between the edge region of the lower substrate, the display medium layer, the edge region of the upper substrate and the first adhesive layer, and the extending direction of the air gap is parallel to the center line.
24. The display device of claim 23, further comprising:
and the support is positioned in the air gap and on the edge region of the lower substrate.
25. The display device of claim 22, further comprising:
a first guide rail, wherein the centerline of the flexible display panel passes through the first guide rail; and
the flexible display panel is accommodated in the first guide rail and the second guide rails, wherein the hardness of the first guide rail is greater than that of the second guide rails.
26. The display device according to claim 25, wherein the first guide rail is made of metal, and the plurality of second guide rails are made of rubber.
27. The display device of claim 25, further comprising:
and the reinforcing structure is positioned between the first guide rail and the flexible display panel.
28. A display device, comprising:
a flexible display panel having a center line parallel to a short side of the flexible display panel;
a first guide rail, wherein the centerline of the flexible display panel passes through the first guide rail;
the flexible display panel is accommodated in the first guide rail and the second guide rails, wherein the hardness of the first guide rail is greater than that of the second guide rails; and
and the reinforcing structure is positioned between the first guide rail and the flexible display panel.
29. The display device according to claim 28, wherein the first rail is made of metal, and the plurality of second rails are made of rubber.
30. The display device according to claim 28, wherein the display device has an air gap, the air gap is located between the edge region of the lower substrate, the display medium layer, the edge region of the upper substrate and the first adhesive layer, and the extending direction of the air gap is parallel to the center line.
31. The display device of claim 30, further comprising:
and the support is positioned in the air gap and on the edge region of the lower substrate.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113539094A (en) * 2021-07-14 2021-10-22 武汉华星光电半导体显示技术有限公司 Display panel and display device

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102183858A (en) * 2010-12-15 2011-09-14 友达光电股份有限公司 Flexible display panel
US20150004345A1 (en) * 2013-06-26 2015-01-01 Industrial Technology Research Institute Adhesive Structure With Hybrid Adhesive Layer
CN106652802A (en) * 2017-02-27 2017-05-10 上海天马微电子有限公司 Foldable display device
CN107578707A (en) * 2017-10-20 2018-01-12 上海天马微电子有限公司 Flexible display panels and display device
CN109377887A (en) * 2018-12-19 2019-02-22 武汉天马微电子有限公司 Flexible display panels and display device
CN208753324U (en) * 2018-09-25 2019-04-16 云谷(固安)科技有限公司 OLED display
CN109830184A (en) * 2019-02-22 2019-05-31 京东方科技集团股份有限公司 A kind of electroluminescence display panel and preparation method thereof, display device
KR20190070740A (en) * 2017-12-13 2019-06-21 엘지디스플레이 주식회사 Foldable display device

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102183858A (en) * 2010-12-15 2011-09-14 友达光电股份有限公司 Flexible display panel
US20150004345A1 (en) * 2013-06-26 2015-01-01 Industrial Technology Research Institute Adhesive Structure With Hybrid Adhesive Layer
CN106652802A (en) * 2017-02-27 2017-05-10 上海天马微电子有限公司 Foldable display device
CN107578707A (en) * 2017-10-20 2018-01-12 上海天马微电子有限公司 Flexible display panels and display device
KR20190070740A (en) * 2017-12-13 2019-06-21 엘지디스플레이 주식회사 Foldable display device
CN208753324U (en) * 2018-09-25 2019-04-16 云谷(固安)科技有限公司 OLED display
CN109377887A (en) * 2018-12-19 2019-02-22 武汉天马微电子有限公司 Flexible display panels and display device
CN109830184A (en) * 2019-02-22 2019-05-31 京东方科技集团股份有限公司 A kind of electroluminescence display panel and preparation method thereof, display device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113539094A (en) * 2021-07-14 2021-10-22 武汉华星光电半导体显示技术有限公司 Display panel and display device

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