Turnover endoscope, door assembly and cabinet body
By flipping the rotating shaft assembly and the damping rod connection of the inner mirror structure, the problem of the rotating mirror being easily damaged by impact and inconvenient to use is solved, and the stable flipping and multi-position use of the mirror assembly are achieved to meet the needs of different users.
Patent Information
- Application Number
- CN202422494453.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-10-15
AI Technical Summary
Existing rotating mirrors are easily damaged by impact and are inconvenient to use, especially for people with myopia, pregnant women and the elderly, as the mirror is far away from the human body and it is difficult to see clearly.
It adopts a flip inner mirror structure, connecting the mirror assembly through a rotating shaft assembly and a damping rod to provide rotational damping to prevent shaking and difficulty in stopping. The mirror assembly is positioned by an adsorption piece to achieve use in multiple positions.
It effectively prevents the mirror assembly from shaking and hitting, solves the problem of difficulty in stopping, and provides multiple usage positions to meet the needs of different users.
Smart Images

Figure CN223365200U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a mirror body installation structure, and more particularly to a flip inner mirror, a door assembly and a cabinet body. Background Art
[0002] To accommodate a variety of mirror usage scenarios, existing technologies have adopted multifunctional rotating mirrors. However, these mirrors are difficult to stop and are easily damaged by impact. Furthermore, most mirrors are currently installed at the sink. Because the sink is located in front of the sink, the mirror is far from the human body, making it difficult to see clearly. This is very inconvenient for people with myopia, pregnant women, and the elderly. Utility Model Content
[0003] The embodiment of the utility model provides a flip interior mirror, a door assembly and a cabinet body, which can prevent the mirror assembly from shaking and causing collisions and difficulty in stopping.
[0004] An embodiment of the present utility model also provides a flip endoscope, comprising: a rotating shaft assembly, comprising a first connecting shaft, and at least one second connecting shaft connected to at least one axial end of the first connecting shaft; the first connecting shaft and the second connecting shaft are connected by a damping rod and can rotate relative to each other; a mirror assembly, connected to the first connecting shaft, and the damping rod can provide relative rotational damping of the first connecting shaft and the second connecting shaft to provide rotational damping of the mirror assembly.
[0005] In an exemplary embodiment, the mirror assembly includes a mirror body and a frame arranged around the mirror body, and the first connecting shaft and the frame on a lateral side of the mirror body are installed separately or formed as one piece.
[0006] In an exemplary embodiment, the flip endoscope further includes a mounting seat connected to the second connecting shaft, the mounting seat and the second connecting shaft are installed separately or integrally, and the mounting seat is configured to be fixedly mounted to the first mounting base.
[0007] In an exemplary embodiment, the flip endoscope further comprises one or more adsorption members provided on at least one of the mounting seat and the mirror assembly and capable of adsorbing the mounting seat and the mirror assembly to each other.
[0008] In an exemplary embodiment, the damping rod can be adjusted in height along the axial direction to adjust the pressing force between the first connecting shaft and the second connecting shaft, thereby adjusting the magnitude of the rotational damping;
[0009] The first connecting shaft is provided with a first mounting hole extending along its axial direction, and the second connecting shaft is provided with a second mounting hole extending along its axial direction; the damping rod is installed in the first mounting hole and passes through the first mounting hole, extends into the second mounting hole and is threadedly connected to the second mounting hole to adjust the height.
[0010] In an exemplary embodiment, the damping rod includes a head portion and a rod portion having a diameter smaller than that of the head portion, wherein the head portion is provided with an operating hole for operating a tool;
[0011] The second mounting hole includes an upper hole section and a lower hole section with a diameter smaller than that of the upper hole section; the head is accommodated and stopped in the upper hole section, and the rod extends from the lower hole section to the second mounting hole to connect the first connecting shaft and the second connecting shaft.
[0012] In an exemplary embodiment, the flip endoscope also includes a first damping gasket that is sleeved on the outer wall of the damping rod and axially located between the first connecting shaft and the second connecting shaft, and a second damping gasket that is sleeved on the outer wall of the damping rod and located between the bottom of the head of the damping rod and the bottom of the upper hole section of the first mounting hole.
[0013] In an exemplary embodiment, the damping rod is made of metal, and the first damping washer and the second damping washer are made of plastic.
[0014] An embodiment of the present application further provides a door assembly, comprising: a door panel body, and the flip inner mirror as described in any of the above embodiments, wherein the door panel body has a first side and a second side opposite to each other in a transverse direction, the first side being configured to be rotatably mounted to a second mounting base, and the second side being connected to a second connecting shaft of the flip inner mirror;
[0015] The flip inner mirror includes a first position state in which it overlaps with the door panel body and a second position state in which it is unfolded relative to the door panel body.
[0016] In an exemplary embodiment, the door panel body includes a panel body and a mirror body provided on a front side of the panel body, and the flip inner mirror is provided on a rear side of the panel body.
[0017] The present application also provides a cabinet, comprising: a cabinet body, and one or more door assemblies as described in any of the above embodiments that can cover the cabinet body, wherein a first side of a door panel body of the door assembly is rotatably connected to the cabinet body;
[0018] The door panel body includes a first position state for covering the cabinet body and a second position state for unfolding relative to the cabinet body. In the first position state, the flip inner mirror of the door assembly overlaps the inner side surface of the door panel body and is hidden between the door panel body and the cabinet body.
[0019] In an exemplary embodiment, the cabinet further comprises one or more adsorption members provided on at least one of the door panel body and the cabinet body and capable of adsorbing the door panel body and the cabinet body to each other.
[0020] The mirror assembly of the flip mirror of the present embodiment can be rotated by the rotating shaft assembly, thereby enabling the flip mirror to be stored and used in various positions. At the same time, the damping rod of the present embodiment can provide rotational damping for the first connecting shaft and the second connecting shaft, thereby preventing the mirror assembly from shaking, causing collisions, and difficulty in stopping.
[0021] Other features and advantages of the present invention will be described in the following description, and in part will become apparent from the description, or understood by practicing the present invention. The purpose and other advantages of the present invention can be achieved and obtained through the structures particularly pointed out in the description and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The accompanying drawings are used to provide a further understanding of the technical solution of the present invention and constitute a part of the specification. Together with the embodiments of the present application, they are used to explain the technical solution of the present invention and do not constitute a limitation on the technical solution of the present invention.
[0023] Figure 1 This is a three-dimensional view of a flip endoscope according to an embodiment of the present invention;
[0024] Figure 2 for Figure 1 Another angle of view;
[0025] Figure 3 This is a front view of the flip endoscope according to an embodiment of the present utility model;
[0026] Figure 4 for Figure 3 A magnified view of point A;
[0027] Figure 5 A three-dimensional view of a mirror assembly in a first position state according to an embodiment of the present invention;
[0028] Figure 6 A three-dimensional view of the mirror assembly in the second position state according to an embodiment of the present invention;
[0029] Figure 7 A three-dimensional view of a first use state of an embodiment of the present utility model;
[0030] Figure 8 A three-dimensional view of a second usage state of an embodiment of the present utility model;
[0031] Figure 9 This is a three-dimensional view of the third usage state of an embodiment of the utility model.
[0032] Figure markings: flip endoscope-1; rotating shaft assembly-10; mirror assembly-11; first connecting shaft-101; second connecting shaft-102; damping rod-103; mounting seat-13; mirror body-110; frame-111; first mounting hole-1010; second mounting hole-1020; head-1030; rod-1031; operating hole-1032; adsorption part-14; first damping gasket-15; second damping gasket-16; door assembly-200; door panel body-2; cabinet body-300; cabinet body-3; hinge-4. DETAILED DESCRIPTION
[0033] In order to make the purpose, technical solution and advantages of the present invention more clear, the embodiments of the present invention will be described in detail below with reference to the accompanying drawings. It should be noted that, in the absence of conflict, the embodiments and features in the embodiments of the present application can be combined with each other in any way.
[0034] like Figure 1-Figure 4 As shown, an embodiment of the present invention provides a flip endoscope 1 , comprising: a rotating shaft assembly 10 and a mirror assembly 11 .
[0035] like Figure 4 As shown, the rotation shaft assembly 10 includes a first connecting shaft 101 and at least one second connecting shaft 102 connected to at least one axial end of the first connecting shaft 101. The first connecting shaft 101 and the second connecting shaft 102 are connected by a damping rod 103 and are relatively rotatable. The mirror assembly 11 is connected to the first connecting shaft 102. The damping rod 103 axially compresses the first connecting shaft 102 and the second connecting shaft 102, thereby providing relative rotation damping between the first connecting shaft 102 and the second connecting shaft 102, thereby providing rotation damping for the mirror assembly 11.
[0036] The mirror assembly 11 of the flip endoscope 1 of the present embodiment of the present invention can be rotated by the rotating shaft assembly 10, thereby enabling the flip endoscope 1 to be stored and used in various positions. At the same time, the damping rod 103 of the present embodiment of the present invention can provide rotational damping for the first connecting shaft 101 and the second connecting shaft 102, thereby preventing the mirror assembly 11 from shaking, causing collisions, and difficulty in stopping.
[0037] In one exemplary embodiment, one of the first connecting shaft 101 and the second connecting shaft 102 is a fixed shaft and the other is a rotating shaft. In another exemplary embodiment, both the first connecting shaft 101 and the second connecting shaft 102 may be rotating shafts. In this embodiment, the first connecting shaft 101 is a rotating shaft and the second connecting shaft 102 is a fixed shaft.
[0038] like Figure 2 As shown, the flip endoscope 1 further includes a mounting base 13 connected to the second connecting shaft 102. The mounting base 13 and the second connecting shaft 102 are mounted separately or integrally. The mounting base 13 is configured to be fixedly mounted to a first mounting base, which can be a mirror body, a wall, a cabinet, or the like.
[0039] like Figure 2 As shown, the flip endoscope 1 of the present embodiment further includes one or more adsorption members 14 disposed on at least one of the mounting base 13 and the mirror assembly 11, capable of adsorbing the mounting base 13 and the mirror assembly 11 to each other. In this embodiment, the adsorption members 14 are disposed on the mounting base 13 and, when the planes of the mirror assembly 11 and the mounting base 13 are nearly aligned (in an overlapping state), adsorb the mirror assembly 11 in place, preventing the mirror assembly 11 from rebounding. The adsorption members 13 may be magnetic elements, self-adhesive suction cups, or the like.
[0040] The first connecting shaft 101 shown in the present embodiment is a continuous long section, but a two-section design may be employed in other embodiments. Furthermore, the second connecting shaft 102 and the damping rod 103 in this embodiment each comprise two sections, each of which is assembled to the ends of the first connecting shaft 101 via corresponding damping rods 103, thereby providing a stable structure.
[0041] like Figure 1 、 Figure 2 As shown, the mirror assembly 11 of the present embodiment includes a mirror body 110 and a frame 111 disposed around the mirror body 110. The first connecting shaft 101 and the frame 111 on a lateral side of the mirror body 110 are separately mounted, fixedly connecting the mirror body 110 to the first connecting shaft 101. Of course, in other embodiments, the first connecting shaft 101 and the frame 111 on one side of the mirror body 110 can also be integrally formed, which is not limited here. The outer corners of the mirror body 110 in this embodiment are curved, which is both aesthetically pleasing and safe.
[0042] The frame 111 can be a mirror frame for mounting the mirror body 110, or a decorative strip attached to the mirror body 110 using glue or adhesive. In an exemplary embodiment (not shown), the mirror assembly 11 can include a mirror frame and a mirror body mounted on the frame. The mirror frame and the first connecting shaft 101 can be mounted separately or integrally, and the mirror body 110 can be mounted on the frame by bonding or embedding.
[0043] In this embodiment, the height of the damping rod 103 can be adjusted axially to adjust the size of the clamping force of the first connecting shaft 101 and the second connecting shaft 102, thereby adjusting the size of the relative rotation damping of the first connecting shaft 101 and the second connecting shaft 102. This makes it easy to readjust the insufficient or excessive clamping force after installation, and can also be readjusted after the flip endoscope 1 is worn out due to long-term use, resulting in a reduction or disappearance of the damping, thereby avoiding economic losses caused by replacing parts.
[0044] like Figure 4 As shown, the first connecting shaft 101 is provided with a first mounting hole 1010 extending along its axial direction, and the second connecting shaft 102 is provided with a second mounting hole 1020 extending along its axial direction. The damping rod 103 is mounted in the first mounting hole 1010 and extends through the first mounting hole 1010, extends into the second mounting hole 1020, and is threadedly connected to the second mounting hole 1020 for height adjustment.
[0045] The first mounting hole 1010 is a through hole and a countersunk hole, including an upper hole section and a lower hole section (not numbered, refer to FIG. Figure 4 ); The second mounting hole 1020 is a through hole or a blind hole.
[0046] like Figure 4 As shown, the damping rod 103 includes a head 1030 and a rod portion 1031 having a smaller diameter than the head 1030. The head 1030 is stopped at the second connecting shaft 102, and the rod portion 1031 connects the first connecting shaft 101 and the second connecting shaft 102. The head 1030 of the damping rod 103 is received and stopped at the upper hole section, and the rod portion 1031 extends from the lower hole section to the second mounting hole 1020 to connect the first connecting shaft 101 and the second connecting shaft 102. The damping rod 103 includes an operating hole 1032 provided in the head 1030, which allows an operator to use a tool to cooperate with the operating hole 1032 to rotate the damping rod 103 to adjust the height of the damping rod 103. The damping rod 310 of the embodiment of the present application adopts a screw, and the operating hole 1032 is hexagonal in shape, which is convenient for rotation using a tool.
[0047] In this embodiment, the damping rod 103 and the second connecting shaft 102 are threadedly connected. Therefore, when the rotational damping needs to be adjusted, the magnitude of the rotational damping can be adjusted by rotating the damping rod 103. Of course, the second connecting shaft 102 and the damping rod 103 can also be adjusted in height using other structures, such as by providing locking pins at different positions to achieve height adjustment, which is not limited here.
[0048] The damping rod 103 of this embodiment can, firstly, connect the first connecting shaft 101 and the second connecting shaft 102; secondly, provide a compressive force between the first connecting shaft 101 and the second connecting shaft 102, thereby providing rotational damping between the first connecting shaft 101 and the second connecting shaft 102; and thirdly, adjust the magnitude of the relative rotational damping between the first connecting shaft 101 and the second connecting shaft 102. Furthermore, the damping rod 103 of this embodiment is entirely concealed within the first connecting shaft 101 and the second connecting shaft 102, thereby enhancing the overall appearance of the inverted endoscope 1.
[0049] like Figure 4 As shown, the flip endoscope 1 of the embodiment of the utility model further includes a first damping gasket 15 which is sleeved on the outer wall of the damping rod 103 and axially located between the first connecting shaft 101 and the second connecting shaft 102, and a second damping gasket 16 which is sleeved on the outer wall of the damping rod 103 and located between the bottom of the head 1030 of the damping rod 103 and the bottom of the upper hole section of the first mounting hole 1010.
[0050] During installation, the damping rod 103 presses against the first damping washer 15 and the second damping washer 16, thereby compressing the first connecting shaft 101 and the second connecting shaft 102. In this embodiment, the damping rod 103 is made of metal, while the first damping washer 15 and the second damping washer 16 are made of a plastic material with a certain degree of friction. Of course, the damping rod 103 can also be made of other materials such as plastic, and this is not limited here.
[0051] The inward-folding endoscope 1 of this embodiment, through the provision of the first damping washer 15 and the second damping washer 16, can, firstly, prevent the damping rod 103 from directly pressing against the first and second connecting shafts 101, 102, thereby damaging the damping rod 103 or the first and second connecting shafts 101, 102; secondly, it can increase the damping of the relative rotation between the first and second connecting shafts 101, 102; and thirdly, it can be directly replaced if damaged, at low cost.
[0052] like Figure 5 、 Figure 6 As shown, the present invention also provides a door assembly 200, comprising: a door panel body 2, and a flip-up inner mirror 1 as described in any of the above embodiments. The door panel body 2 has a first side and a second side that are laterally opposed to each other. The first side is configured to be rotatably mounted to a second mounting base, and the second side is connected to a second connecting shaft 102 of the flip-up inner mirror 1, thereby enabling relative rotation between the flip-up inner mirror 1 and the door panel body 2.
[0053] The flip inner mirror 1 includes a first position state that overlaps with the door panel body 2 (see Figure 5 ) and the second position state relative to the door panel body 2 (refer to Figure 6 The second mounting base can be a wall or a cabinet (see Figure 7-Figure 9) etc. The door panel body 2 in this embodiment includes a panel body and a mirror body provided on the front of the panel body, and the flip inner mirror 1 is provided on the back of the panel body. The mirror body can be mounted on the panel body by bonding or screwing. The flip inner mirror 1 and the door panel body 2 of the door assembly 200 of the present invention can realize a variety of usage modes by changing the position state, for example: single mirror usage (see Figure 5 ), the flip inner mirror 1 and the door panel body 2 are unfolded on the same plane to form an extended plane mirror, the folding mirror is used (not shown), the mirror is used in a translation manner (see Figure 6 In addition, the damping rod 103 of the embodiment of the present invention can provide relative rotation damping between the flip inner mirror 1 and the door panel body 2, thereby preventing the flip inner mirror 1 from shaking and causing collision with the door panel body 2, and preventing the flip inner mirror 1 from having difficulty in stopping.
[0054] like Figure 7-Figure 9 As shown, the present invention further provides a cabinet 300, comprising: a cabinet body 3, and one or more door assemblies 200 as described in any of the above embodiments, which can cover the cabinet body 3, wherein the first side of the door panel body 2 is rotatably connected to the cabinet body 3. In this embodiment, the first side of the door panel body 2 is connected to the cabinet body 3 using a hinge 4.
[0055] In this embodiment, the two door assemblies 200 serve as the double doors of the cabinet body 3 . When the mirror does not need to be used at a close distance, the two door assemblies 200 can serve as doors to cover or open the cabinet body 3 .
[0056] Among them, the door panel body 2 of the door assembly 200 can be appropriately raised and extended out of the two ends of the cabinet body 3 in the height direction. The upper end can be used to install the flip end mirror 1, and the lower end below the flip end mirror 1 can be installed with a storage box, thereby avoiding the faucet while making full use of the space between the cabinet body 3 and the basin, so that both mirroring and storage can be achieved.
[0057] The rotating shaft assembly 10 and the frame 111 of the flip endoscope 1 of this embodiment are both cut from aluminum alloy profiles, and the size can be customized according to needs, which is convenient for matching the size of the user's cabinet body 3 cabinet door (door panel body 2). It is easy to install and only requires 4 screws to lock it on the cabinet door according to the user's height. The user can control the width direction position (depth direction when open) of the flip endoscope 1 locked to the door panel body 2 according to the depth of the basin of the cabinet body 300 to facilitate washing and makeup.
[0058] The door panel body 2 of this embodiment includes a first position state (refer to FIG. Figure 7 ) and the second position state relative to the cabinet body 3 (refer to Figure 8In the first position, the flip mirror 1 of the door assembly 200 is overlapped with the inner side of the door panel body 2 and hidden between the door panel body 2 and the cabinet body 3. In the second position, the flip mirror 1 can be overlapped with the inner side of the door panel body 2 (see Figure 8 ), it can also be unfolded relative to the door panel body 2 to achieve the extension and translation of the mirror surface, which is convenient for users to use.
[0059] When the door assembly 200 is in the first use state (cabinet door closed state), each door assembly 200 can be used as a long-distance mirror, and the two door assemblies 200 can be connected to form a large mirror, and the flip inner mirror 1 is completely hidden on the inner side of the door panel body 2 (see FIG. Figure 7 When the door assembly 200 is in the second use state (the cabinet door is open), the user can take out and put items (see Figure 8 When the door assembly 200 is in the third use state (mirror translation state), the user can bend the door panel body 2, and the door panel body 2 rotates relative to the cabinet body 3. When the flip mirror 1 is further bend, the flip mirror 1 rotates and unfolds relative to the door panel body 2, and the distance between the flip mirror 1 and the user is shortened to a position corresponding to the user's face (generally rotated to a 90-degree position relative to the door panel body 2). The user can use the mirror at close range (see FIG. Figure 9 ).
[0060] The cabinet 300 of this embodiment further includes one or more adsorbents (not shown) disposed on at least one of the door panel body 2 and the cabinet body 3 and capable of adsorbing the door panel body 2 and the cabinet body 3 to each other, thereby preventing the door panel body 2 from rebounding or colliding with the cabinet body 3. The adsorbents may be magnetic elements, self-adhesive suction cups, etc.
[0061] The door assembly 200 of this embodiment is thin and lightweight, occupying no internal space within the cabinet 300. It is suitable for small bathroom cabinets and small-sized bathrooms. The door assembly 200 of this embodiment is easy to install, requiring no additional components and can be conveniently installed at the rear end of the door panel. The door assembly 200 of this embodiment can be adjusted to adjust the rotational damping.
[0062] The door assembly 200 of this embodiment does not affect the original function of the bathroom cabinet product in assisting with makeup and washing. The cabinet product is beautiful and elegant, and can be installed on the door assembly 200 while storing items, so as to maximize the storage space for looking in the mirror. In the description of this utility model, it should be noted that the terms "upper", "lower", "one side", "the other side", "one end", "the other end", "side", "relative", "four corners", "periphery", "'mouth'-shaped structure", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing "this" utility model and simplifying the description, and do not indicate or imply that the structure referred to has a specific orientation, is constructed and operated in a specific orientation, and therefore should not be understood as limiting the utility model.
[0063] In the description of the embodiments of the present invention, unless otherwise expressly specified or limited, the terms "connection," "direct connection," "indirect connection," "fixed connection," "installation," and "assembly" should be understood in a broad sense. For example, they may refer to a fixed connection, a detachable connection, or an integral connection. The terms "installation," "connection," and "fixed connection" may refer to a direct connection, an indirect connection through an intermediate medium, or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0064] Although the embodiments disclosed in the present invention are as described above, the contents described are merely embodiments adopted to facilitate understanding of the present invention and are not intended to limit the present invention. Any person skilled in the art to which the present invention belongs may make any modifications and changes in the form and details of the implementation without departing from the spirit and scope disclosed in the present invention. However, the scope of patent protection of the present invention shall still be defined by the attached claims.
Claims
1. A flip endoscope, characterized in that: include: A rotating shaft assembly comprising a first connecting shaft and at least one second connecting shaft connected to at least one axial end of the first connecting shaft; The first connecting shaft and the second connecting shaft are connected via a damping rod and can rotate relative to each other; The mirror assembly is connected to the first connecting shaft, and the damping rod can provide relative rotation damping between the first connecting shaft and the second connecting shaft to provide rotation damping of the mirror assembly.
2. The inverted endoscope according to claim 1, characterized in that: The mirror assembly includes a mirror body and a frame arranged around the mirror body. The first connecting shaft and the frame on one side of the mirror body are installed separately or formed in one piece.
3. The invertible endoscope according to claim 1, characterized in that: It also includes a mounting seat connected to the second connecting shaft, the mounting seat and the second connecting shaft are installed separately or formed as one piece, and the mounting seat is configured to be fixedly installed with the first mounting base.
4. The invertible endoscope according to claim 3, characterized in that: It also includes one or more adsorption members which are provided on at least one of the mounting seat and the mirror assembly and can adsorb the mounting seat and the mirror assembly to each other.
5. The invertible endoscope according to any one of claims 1 to 4, characterized in that: The damping rod can be adjusted in height along the axial direction to adjust the pressing force between the first connecting shaft and the second connecting shaft, thereby adjusting the magnitude of the rotational damping; The first connecting shaft is provided with a first mounting hole extending along its axial direction, and the second connecting shaft is provided with a second mounting hole extending along its axial direction; the damping rod is installed in the first mounting hole and passes through the first mounting hole, extends into the second mounting hole and is threadedly connected to the second mounting hole to adjust the height.
6. The invertible endoscope according to claim 5, characterized in that: The damping rod comprises a head portion and a rod portion with a diameter smaller than that of the head portion, wherein the head portion is provided with an operating hole for operating a tool; The second mounting hole includes an upper hole section and a lower hole section with a diameter smaller than that of the upper hole section; the head is accommodated and stopped in the upper hole section, and the rod extends from the lower hole section to the second mounting hole to connect the first connecting shaft and the second connecting shaft.
7. The invertible endoscope according to claim 6, characterized in that: It also includes a first damping gasket that is sleeved on the outer wall of the damping rod and axially located between the first connecting shaft and the second connecting shaft, and a second damping gasket that is sleeved on the outer wall of the damping rod and located between the bottom of the head of the damping rod and the bottom of the upper hole section of the first mounting hole.
8. The inverted endoscope according to claim 7, characterized in that: The damping rod is made of metal, and the first damping washer and the second damping washer are made of plastic.
9. A door assembly, characterized in that: include: A door panel body, and a flip inner mirror according to any one of claims 1 to 8, wherein the door panel body has a first side and a second side opposite to each other in a transverse direction, the first side being configured to be rotatably mounted on a second mounting base, and the second side being connected to a second connecting shaft of the flip inner mirror; The flip inner mirror includes a first position state in which it overlaps with the door panel body and a second position state in which it is unfolded relative to the door panel body.
10. The door assembly according to claim 9, wherein: The door panel body includes a panel body and a mirror body arranged on the front side of the panel body, and the flip inner mirror is arranged on the back side of the panel body.
11. A cabinet, characterized in that: include: A cabinet body, and one or more door assemblies according to claim 10 that can cover the cabinet body, wherein a first side of a door panel body of the door assembly is rotatably connected to the cabinet body; The door panel body includes a first position state for covering the cabinet body and a second position state for unfolding relative to the cabinet body. In the first position state, the flip inner mirror of the door assembly overlaps the inner side surface of the door panel body and is hidden between the door panel body and the cabinet body.
12. The cabinet according to claim 11, characterized in that: It also includes one or more adsorption members which are arranged on at least one of the door panel body and the cabinet body and can adsorb the door panel body and the cabinet body to each other.