Foldable display device
A foldable display device includes a first frame, a second frame, a rotating shaft assembly, a flexible heat sink and a flexible circuit board. The flexible heat sink and the flexible circuit board passes through the rotating shaft assembly, and the rotating shaft assembly includes a shaft seat, a door plate, a first support plate, and a second support plate. Two opposite ends of the flexible heat sink are connected to the first frame and the second frame, and two opposite ends of a part of the flexible heat sink in the rotating shaft assembly are respectively fastened to a first fastening surface that is of the first support plate and that faces the shaft seat and a second fastening surface that is of the second support plate and that faces the shaft seat.
1 . A foldable display device, comprising:
a first frame;
a second frame, wherein a first side of the first frame and a first side of the second frame are configured to have a flexible display mounted thereon, a second side of the first frame and a second side of the second frame are configured to have an electronic element mounted thereon, the first side of the first frame is opposite to the second side of the first frame, and the first side of the second frame is opposite to the second side of the second frame;
a rotating shaft assembly comprising a housing, a shaft seat mounted on the housing, a door plate mounted on the shaft seat, a first support plate, and a second support plate, wherein the first support plate and the second support plate are distributed on two sides of the door plate, the shaft seat and the housing jointly form an accommodation cavity, the shaft seat comprises an accommodation groove formed thereon, the accommodation groove penetrates through the shaft seat, the shaft seat and the housing jointly form the accommodation cavity at the accommodation groove, a cross beam is further formed on the shaft seat at the accommodation groove, and the cross beam is separated from the housing;
a flexible heat sink, wherein two opposite ends of the flexible heat sink are connected to the first side of the first frame and the first side of the second frame, and two opposite ends of a part of the flexible heat sink in the rotating shaft assembly are respectively fastened to a first fastening surface that is of the first support plate and that faces the shaft seat and a second fastening surface that is of the second support plate and that faces the shaft seat; and
a flexible circuit board, wherein two opposite ends of the flexible circuit board are connected to the second side of the first frame and the second side of the second frame, and the flexible heat sink and the flexible circuit board pass through the rotating shaft assembly,
wherein:
the flexible heat sink and the flexible circuit board are partially received in the accommodation cavity,
a middle segment position of the flexible heat sink is fastened to a surface of the cross beam facing the housing, and
in a process of folding the foldable display device, an end that is of the first support plate and that is close to the door plate and an end that is of the second support plate and that is close to the door plate are configured to move in a direction away from the door plate, and an end that is of the first support plate and that is away from the door plate and an end that is of the second support plate and that is away from the door plate are configured to move closer to each other.
2 . The foldable display device according to claim 1 , wherein:
the flexible heat sink covers the flexible circuit board in the rotating shaft assembly.
3 . The foldable display device according to claim 1 , wherein:
the cross beam extends from a first side wall of the shaft seat near the accommodation groove to a second side wall that is opposite to the first side wall, and is separated from another side wall of the shaft seat near the accommodation groove.
4 . The foldable display device according to claim 3 , wherein
the cross beam and another side wall of the shaft seat near the accommodation groove form a first interval and a second interval, and the flexible heat sink and the flexible circuit board enter the accommodation cavity through the first interval and leave the accommodation cavity through the second interval.
5 . The foldable display device according to claim 1 , wherein
the housing comprises an inner housing surface and a positioning member, the positioning member is fixedly mounted on the inner housing surface and is located in the accommodation cavity, and the cross beam and the positioning member are separated from each other and are jointly located in middle segment positions of the flexible circuit board and the flexible heat sink.
6 . The foldable display device according to claim 5 , wherein
the foldable display device further comprises a buffer member, the buffer member is disposed on the positioning member and is separated from the cross beam, and the buffer member is configured to avoid damage to the flexible circuit board by the positioning member through elastic deformation.
7 . The foldable display device according to claim 1 , further comprising:
a first bracket rotatably connected to the first support plate;
a second bracket rotatably connected to the second support plate, wherein the first bracket and the second bracket are rotatably connected to the shaft seat;
a first synchronization arm slidably connected to the first bracket and rotatably connected to the first bracket;
a second synchronization arm slidably connected to the second bracket and rotatably connected to the second bracket; and
a cam wheel structure disposed on the shaft seat and comprising a concave and convex structure, wherein the first synchronization arm and the second synchronization arm are connected to the cam wheel structure through the concave and convex structure to implement damping of rotation of the first bracket and the second bracket.
8 . A method, comprising:
providing a foldable display device comprising:
a first frame,
a second frame, wherein a first side of the first frame and a first side of the second frame are configured to have a flexible display mounted thereon, a second side of the first frame and a second side of the second frame are configured to have an electronic element mounted thereon, the first side of the first frame is opposite to the second side of the first frame, and the first side of the second frame is opposite to the second side of the second frame,
a rotating shaft assembly comprising a housing, a shaft seat mounted on the housing, a door plate mounted on the shaft seat, a first support plate, and a second support plate, wherein the first support plate and the second support plate are distributed on two sides of the door plate, the shaft seat and the housing jointly form an accommodation cavity, the shaft seat comprises an accommodation groove formed thereon, the accommodation groove penetrates through the shaft seat, the shaft seat and the housing jointly form the accommodation cavity at the accommodation groove, a cross beam is further formed on the shaft seat at the accommodation groove, and the cross beam is separated from the housing,
a flexible heat sink, wherein two opposite ends of the flexible heat sink are connected to the first side of the first frame and the first side of the second frame, and two opposite ends of a part of the flexible heat sink in the rotating shaft assembly are respectively fastened to a first fastening surface that is of the first support plate and that faces the shaft seat and a second fastening surface that is of the second support plate and that faces the shaft seat, and
a flexible circuit board, wherein two opposite ends of the flexible circuit board are connected to the second side of the first frame and the second side of the second frame, and the flexible heat sink and the flexible circuit board pass through the rotating shaft assembly, wherein the flexible heat sink and the flexible circuit board are partially received in the accommodation cavity, and a middle segment position of the flexible heat sink is fastened to a surface of the cross beam facing the housing; and
folding the foldable display device.
9 . The method according to claim 8 , wherein folding the foldable display device comprises moving an end that is of the first support plate and that is close to the door plate and an end that is of the second support plate and that is close to the door plate in a direction away from the door plate.
10 . The method according to claim 9 , further comprising moving an end that is of the first support plate and that is away from the door plate and an end that is of the second support plate and that is away from the door plate closer to each other.
11 . The method according to claim 8 , wherein:
the cross beam extends from a first side wall of the shaft seat near the accommodation groove to a second side wall that is opposite to the first side wall, and is separated from another side wall of the shaft seat near the accommodation groove.
12 . A display device, comprising:
a first frame;
a second frame, wherein a first side of the first frame and a first side of the second frame are configured to have a flexible display mounted thereon, a second side of the first frame and a second side of the second frame are configured to have an electronic element mounted thereon, the first side of the first frame is opposite to the second side of the first frame, and the first side of the second frame is opposite to the second side of the second frame;
a rotating shaft assembly comprising a housing, a shaft seat mounted on the housing, a door plate mounted on the shaft seat, a first support plate, and a second support plate, wherein the first support plate and the second support plate are distributed on two sides of the door plate, the shaft seat and the housing jointly form an accommodation cavity, the shaft seat comprises an accommodation groove formed thereon, the accommodation groove penetrates through the shaft seat, the shaft seat and the housing jointly form the accommodation cavity at the accommodation groove, a cross beam is further formed on the shaft seat at the accommodation groove, and the cross beam is separated from the housing;
a flexible heat sink, wherein two opposite ends of the flexible heat sink are connected to the first side of the first frame and the first side of the second frame, and two opposite ends of a part of the flexible heat sink in the rotating shaft assembly are respectively fastened to a first fastening surface that is of the first support plate and that faces the shaft seat and a second fastening surface that is of the second support plate and that faces the shaft seat; and
a flexible circuit board, wherein two opposite ends of the flexible circuit board are connected to the second side of the first frame and the second side of the second frame, and the flexible heat sink and the flexible circuit board pass through the rotating shaft assembly,
wherein:
the flexible heat sink and the flexible circuit board are partially received in the accommodation cavity,
a middle segment position of the flexible heat sink is fastened to a surface of the cross beam facing the housing.
13 . The display device according to claim 12 , wherein:
the flexible heat sink covers the flexible circuit board in the rotating shaft assembly.
14 . The display device according to claim 12 , wherein:
the cross beam extends from a first side wall of the shaft seat near the accommodation groove to a second side wall that is opposite to the first side wall, and is separated from another side wall of the shaft seat near the accommodation groove.
15 . The foldable display device according to claim 1 , wherein the flexible heat sink is made of a thermally conductive material comprising graphite or carbon fiber.
16 . The foldable display device according to claim 1 , wherein:
in a process of unfolding the foldable display device, the door plate moves in a direction away from the shaft seat to support the flexible display; and
in a process of folding the foldable display device, the door plate moves in a direction close to the shaft seat to cooperate with the first support plate and the second support plate to form an accommodation space for accommodating the flexible display.
17 . The foldable display device according to claim 1 , wherein when the foldable display device is in a flattened state, a support surface of the door plate is flush with a first support surface of the first support plate and a second support surface of the second support plate.
18 . The foldable display device according to claim 7 , wherein the first bracket is fixedly connected to the first frame, and the second bracket is fixedly connected to the second frame.
19 . The foldable display device according to claim 7 , further comprising:
a synchronization apparatus mounted on the shaft seat and rotatably connected to the shaft seat, wherein the first synchronization arm meshes with the synchronization apparatus by using a gear, and the second synchronization arm meshes with the synchronization apparatus by using a gear.
20 . The foldable display device according to claim 7 , further comprising:
a rotating shaft mounted on the shaft seat; and
an elastic member sleeved onto the rotating shaft assembly, wherein the cam wheel structure is sleeved onto the rotating shaft to abut on an end of the elastic member, and the elastic member is configured to provide an opening/closing damping force.