Operating panel of an elevator
The design of the hook component and hook receiving component solves the problem of increased component number in the elevator control panel, realizes the fixation and temporary support of the main body, and simplifies the installation and maintenance process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-05-27
- Publication Date
- 2026-03-27
AI Technical Summary
The existing elevator control panel requires multiple components when fixing the main body, which increases the number of components.
The design employs hook components and hook-supporting components. Through the cooperation of hook plates and hook-supporting plates, the main body is fixed and temporarily supported, reducing the number of components.
The main body is fixed and temporarily supported with fewer parts, which improves the ease of installation, simplifies the maintenance process, reduces the number of parts, and improves the ease of installation of the control panel.
Smart Images

Figure CN114763232B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to an operation panel of an elevator. BACKGROUND
[0002] Patent Literature 1 discloses an operation panel of an elevator. According to the operation panel, fixation and temporary support of a main body can be achieved with a small number of components.
[0003] PRIOR ART DOCUMENTS
[0004] PATENT LITERATURE
[0005] Patent Literature 1: Japanese Patent Application Publication No. 2016-16937 SUMMARY
[0006] PROBLEMS TO BE SOLVED BY THE INVENTION
[0007] However, in the operation panel described in Patent Literature 1, a component different from the component that fixes the main body is required when the main body is temporarily held. Therefore, the number of components of the operation panel increases.
[0008] The present application has been achieved in order to solve the above problem. An object of the present application is to provide an operation panel of an elevator that can achieve fixation and temporary support of a main body with a small number of components.
[0009] MEANS FOR SOLVING THE PROBLEM
[0010] The operation panel of an elevator of the present application includes a main body that forms an outer shape, a hook component that is provided to a rear portion of the main body and has a first hook piece that extends rearward of the main body and a second hook piece that extends downward of the main body from an end portion of the first hook piece on a side opposite to the main body, and a hook receiving component that is provided to a structure and has a first hook receiving piece and a second hook receiving piece that extends upward of the structure from an end portion of the first hook receiving piece on a side opposite to the structure, the first hook receiving piece being provided with a gap between the structure and extending forward of the structure, the operation panel of an elevator being capable of achieving a fixation state in which the main body is fixed by receiving the second hook piece between the structure and the first hook receiving piece in a state in which the first hook piece is disposed directly above the first hook receiving piece, and a support state in which the main body is supported by supporting the hook component from below with the hook receiving component.
[0011] EFFECT OF THE INVENTION
[0012] According to the present invention, the hook receiving member fixes the main body by housing the second hook piece between the structure and the first hook receiving piece with the first hook piece positioned directly above it. The hook receiving member supports the main body from below by supporting the hook member. Therefore, the fixation and temporary support of the main body can be achieved with a smaller number of parts. Attached Figure Description
[0013] Figure 1 This is a side view of the elevator control panel in Implementation Method 1.
[0014] Figure 2 This is an exploded perspective view of the elevator control panel in Implementation Method 1.
[0015] Figure 3 This is a side view used to illustrate the installation operation of the elevator control panel in Embodiment 1.
[0016] Figure 4 This is a side view of a first modified example of the elevator control panel in Embodiment 1.
[0017] Figure 5 This is a side view of a second variation of the elevator control panel in Embodiment 1.
[0018] Figure 6 This is an exploded perspective view of the elevator control panel in Implementation Method 2.
[0019] Figure 7 This is a side view used to illustrate the wiring work of the elevator control panel in Embodiment 2.
[0020] Figure 8 This is a perspective view of a key part of the elevator control panel in implementation method 3.
[0021] Figure 9 This is a side view used to illustrate the wiring work of the elevator control panel in Embodiment 3.
[0022] Figure 10 This is an exploded perspective view of the key part of the elevator control panel in embodiment 4.
[0023] Figure 11 This is a side view illustrating the new operation of the device for the elevator control panel in Embodiment 4.
[0024] Label Explanation
[0025] 1: operation panel; 2: main body; 2a: opening portion; 3: hook member; 3a: first hook piece; 3b: second hook piece; 3c: cutout; 3d: cutout; 4: connection connector; 5: metal plate; 6: hook receiving member; 6a: first hook receiving piece; 6b: second hook receiving piece; 6c: third hook receiving piece; 7: hanging member; 8: mounting member; 8a: threaded hole; 9: mounting member; 9a: first piece; 9b: second piece; 9c: cutout; 9d: long hole; 9e: hole; 10: upper screw; 11: lower screw; 12: device. DETAILED DESCRIPTION
[0026] Embodiments are described with reference to the drawings. Like or equivalent parts are designated with like reference numerals in the various figures. Repeated description of like or equivalent parts may be simplified or omitted.
[0027] Embodiment 1
[0028] Figure 1 is a side view of an operation panel of an elevator in Embodiment 1.
[0029] In Figure 1 , the operation panel 1 is provided to a wall W of a landing of an elevator. For example, the operation panel 1 is provided so as to be able to register a landing call and a destination call when operated. For example, the operation panel 1 is provided with a main body 2, a hook member 3, a connection connector 4, a metal plate 5, and a hook receiving member 6. In addition, the operation panel 1 can not be provided to the wall W, but can be provided to a structure such as a frame that forms an entrance of a landing of an elevator, a structure provided for mounting the operation panel 1, and the like.
[0030] The main body 2 constitutes an outer shape of the operation panel 1. For example, the main body 2 is formed in a rectangular parallelepiped shape. The main body 2 has an electronic component, a device, and the like, not shown, built therein.
[0031] The hook member 3 is fixed to a rear portion of the main body 2. The hook member 3 is provided with a first hook piece 3a and a second hook piece 3b. The first hook piece 3a extends toward the rear of the main body 2. The first hook piece 3a extends in a width direction of the main body 2. The second hook piece 3b extends downward from an end portion of the first hook piece 3a on a side opposite to the main body 2. The second hook piece 3b extends in the width direction of the main body 2.
[0032] The connection connector 4 is provided to the rear portion of the main body 2. The connection connector 4 is provided below the hook member 3. The connection connector 4 is fixed to the main body 2. The connection connector 4 is electrically connected to the electronic component. The connection connector 4 is electrically connected to an external wire.
[0033] For example, the metal plate 5 is formed in a rectangular shape. The metal plate 5 is fixed to the wall W of the landing.
[0034] The hook receiving component 6 is fixed to the metal plate 5. The hook receiving component 6 includes a first hook receiving piece 6a and a pair of second hook receiving pieces 6b. A gap is formed between the first hook receiving piece 6a and the metal plate 5. The first hook receiving piece 6a extends forward toward the wall W. The first hook receiving piece 6a extends along the width direction of the wall W. The pair of second hook receiving pieces 6b extends upward toward the wall W from the end of the first hook receiving piece 6a on the side opposite to the wall W. The pair of second hook receiving pieces 6b extends along the width direction of the wall W. The pair of second hook receiving pieces 6b are formed spaced apart in the width direction of the wall W.
[0035] The second hook piece 3b can be inserted from above into the gap between the first hook receiving piece 6a and the wall W.
[0036] Next, use Figure 2 The key parts of the operation panel 1 will be explained.
[0037] Figure 2 This is an exploded perspective view of the elevator control panel in Implementation Method 1.
[0038] like Figure 2 As shown, the hook component 3 has a pair of cuts 3c. The pair of cuts 3c are formed on the side of the main body 2 of the first hook piece 3a. The pair of cuts 3c are formed at intervals in the width direction of the main body 2.
[0039] In the hook receiving component 6, a pair of second hook receiving pieces 6b are respectively provided with a pair of cutouts 3c. The pair of second hook receiving pieces 6b are provided with a spacing equal to the spacing between the pair of cutouts 3c. The pair of second hook receiving pieces 6b can be simultaneously inserted into the pair of cutouts 3c from below to above.
[0040] Next, use Figure 3 The installation process of control panel 1 will be explained.
[0041] Figure 3 This is a side view used to illustrate the installation operation of the elevator control panel in Embodiment 1. Figure 3 (a) shows the state before the main body 2 is installed on the wall W. Figure 3 (b) shows the support state of the operating panel 1. Figure 3 (c) shows the fixed state of the operation panel 1.
[0042] like Figure 3 As shown in (a), the operator fixes the metal plate 5 to the wall W.
[0043] Then, the operator lifts the main body 2, and while maintaining the second hook plate 3b above the first hook receiving plate 6a, moves the main body 2 downwards. The result is as follows: Figure 3As shown in (b), at a position closer to the wall W than the pair of second hook receiving pieces 6b, the second hook piece 3b is supported from below by the first hook receiving piece 6a. The main body 2 can swing around the contact point between the second hook piece 3b and the first hook receiving piece 6a. The main body 2 can swing in its own depth direction. Even if the main body 2 moves away from the wall W, the second hook piece 3b will touch the second hook receiving piece 6b, preventing the main body 2 from detaching from the wall W. In this state, the operator uses one hand to pull the lower part of the main body 2 away from the wall W to widen the gap between the lower part of the main body 2 and the wall W, and connects the external wire to the connector 4.
[0044] After that, as Figure 3 As shown in (c), the operator moves the main body 2 downwards while pressing it inwards. At this time, the second hook piece 3b is housed between the wall W and the first hook receiving piece 6a with the first hook piece 3a positioned directly above it. Although not shown, a pair of second hook receiving pieces 6b are housed in a pair of cutouts 3c. The first hook piece 3a is supported from below by the first hook receiving piece 6a by being positioned directly above it. As a result, the main body 2 is prevented from moving downwards. The second hook piece 3b is housed between the wall W and the first hook receiving piece 6a, thereby being clamped between the wall W and the first hook receiving piece 6a in the depth direction of the main body 2. As a result, the main body 2 is restricted from moving in its own depth direction. A pair of second hook receiving pieces 6b are respectively housed in a pair of cutouts 3c, thereby clamping one of the pair of second hook receiving pieces 6b and the hook component 3 in the width direction of the main body 2 by the other. As a result, the main body 2 is restricted from moving in its own width direction. In this way, the main body 2 is fixed. As a result, the main body 2 is prevented from detaching from the wall W.
[0045] With the operating panel 1 fixed, the weight of the main body 2 generates a torque centered on the contact point between the first hook piece 3a and the first hook receiving piece 6a. Through this torque, the upper part of the second hook piece 3b is pressed against the wall W-side end of the first hook receiving piece 6a, which forms a gap with the wall W. The lower part of the second hook piece 3b is pressed towards the wall W. As a result, the swinging of the main body 2 is restricted.
[0046] When performing maintenance on the control panel 1, the operator maintains the main body 2 from behind the control panel 1, just as during the installation of the control panel 1, by supporting the control panel 1. After the maintenance of the main body 2 is completed, the operator fixes the control panel 1 in a fixed position, just as during the installation of the control panel 1, thus ending the maintenance work on the control panel 1.
[0047] According to the above-described embodiment 1, the hook receiving member 6 fixes the main body 2 by receiving the second hook piece 3b between the wall W and the first hook receiving piece 6a in a state where the first hook piece 3a is disposed directly above the first hook receiving piece 6a. The hook receiving member 6 supports the main body 2 by supporting the hook member 3 from below. Specifically, the first hook receiving piece 6a supports the main body 2 by supporting the second hook piece 3b from below. Thus, the fixation and temporary support of the main body 2 can be achieved with a small number of components.
[0048] Further, in the fixed state of the operation panel 1, a couple of forces centered on the contact point of the first hook piece 3a and the first hook receiving piece 6a is generated due to the weight of the main body 2. By this couple of forces, the upper portion of the second hook piece 3b is pressed to the end portion of the first hook receiving piece 6a on the wall W side which forms a gap with the wall W. The lower portion of the second hook piece 3b is pressed to the wall W side. Thus, the swing of the main body 2 can be limited.
[0049] Further, in the supported state of the operation panel 1, the main body 2 can swing. At this time, if the main body 2 moves in a direction away from the wall W, the second hook piece 3b hits the second receiving piece and prevents the main body 2 from being detached from the wall W. Thus, the main body 2 can be prevented from being detached from the wall W, and the gap between the main body 2 and the wall W can be enlarged. As a result, the maintenance of the device or the like of the main body 2 can be easily performed from the back side of the main body 2.
[0050] Thus, the installation workability or the like of the operation panel 1 can be improved. Therefore, the workman can perform these operations by one person. For example, the installation of the main body 2 and the wiring can be performed by one person.
[0051] Further, in the supported state where the movement of the main body 2 is limited, the external wiring can be connected to the connection connector 4 by lifting the main body 2 with one hand. At this time, even if the main body 2 is not detached from the wall W, the external wiring can be easily connected to the connection connector 4. As a result, the external wiring can be prevented from being bitten by the main body 2 or the like when the main body 2 is fixed.
[0052] In addition, the number of the second hook receiving pieces 6b is not limited. In the fixed state of the operation panel 1, one of the second hook receiving pieces 6b and the first hook piece 3a can be sandwiched by the other in the width direction of the main body 2. For example, one of the second hook receiving pieces 6b can be inserted through one hole portion formed in the first hook piece 3a in the fixed state of the operation panel 1, and thus the second hook receiving piece 6b can be sandwiched by the first hook piece 3a. Further, in the fixed state of the operation panel 1, it is only necessary to limit the movement of the hook member 3 in the width direction of the main body 2. For example, it is only necessary to limit the movement of the second hook piece 3b in the width direction of the main body 2 by sandwiching the second hook piece 3b by the hook receiving member 6.
[0053] Furthermore, the number of cuts 3c is not limited. With the operating disc 1 fixed, one of the second hook receiving piece 6b and the first hook piece 3a needs to be clamped by the other in the width direction of the main body 2. For example, if the first hook piece is clamped by a pair of second hook receiving pieces 6b, no cuts are needed. Furthermore, with the operating disc 1 fixed, it is sufficient to restrict the movement of the hook member 3 in the width direction of the main body 2. For example, it is sufficient to restrict the movement of the hook member 3 in the width direction of the main body 2 simply by having the second hook piece 3b clamped by the hook receiving piece 6b.
[0054] In addition, cutout 3c can also be a hole.
[0055] Next, use Figure 4 This describes the first variation of the operation panel 1.
[0056] Figure 4 This is a side view of a first modified example of the elevator control panel in Embodiment 1.
[0057] like Figure 4 As shown, with the operating panel 1 supported, the first hook piece 3a is supported from below by the second hook receiving piece 6b. At this time, through the force couple generated by the weight of the main body 2, the second hook piece 3b is pressed against the wall W side of the second hook receiving piece, and the portion of the main body 2 lower than the hook member 3 is pressed against the wall W side. As a result, the posture of the main body 2 is maintained in a state where the upper part of the main body 2 is farther away from the wall W than the lower part of the main body 2.
[0058] According to the first variation described above, the first hook piece 3a is supported from below by the second hook receiving piece 6b. Through the force couple generated by the weight of the main body 2, the second hook piece 3b is pressed against the wall W side of the second hook receiving piece 6b, and the portion of the main body 2 lower than the hook member 3 is pressed against the wall W side, thereby maintaining the posture of the main body 2 such that the upper part of the main body 2 is further away from the wall W than the lower part of the main body 2. Therefore, wiring operations can be easily performed by the operator. Maintenance can be easily performed by the operator. For example, even if the connector 4 is not fixed to the main body 2, external wires can be easily connected to the connector 4.
[0059] Next, use Figure 5 This describes the second variation of the operation panel 1.
[0060] Figure 5 This is a side view of a second variation of the elevator control panel in Embodiment 1.
[0061] like Figure 5 As shown, in the second variation of the operating panel 1, the metal plate 5 and the hook receiving component 6 are integrally formed by bending a plate-shaped material.
[0062] According to the above-described second modification example, the metal plate 5 and the hook receiving member 6 are integrally formed by bending one plate-shaped material. Therefore, the metal plate 5 and the hook receiving member 6 can be easily manufactured.
[0063] Embodiment 2
[0064] Figure 6 is an exploded perspective view of the operation panel of the elevator in Embodiment 2. In addition, the same reference numerals are attached to portions that are the same as or equivalent to those of Embodiment 1. The description of the portions is omitted.
[0065] As Figure 6 shown, the hook member 3 is provided with a pair of cutouts 3d. The pair of cutouts 3d is formed in the lower portion of the second hook piece 3b. The pair of cutouts 3d is formed at the same interval as the pair of hook receiving members 6.
[0066] The hook receiving member 6 has a pair of third hook receiving pieces 6c. The pair of third hook receiving pieces 6c extends from the upper side end portion of the second hook receiving piece 6b toward the wall W side.
[0067] Next, the support state of the operation panel 1 is described with reference to Figure 7
[0068] Figure 7 is a side view for describing the wiring work of the operation panel of the elevator in Embodiment 2.
[0069] As Figure 7 shown, the worker lifts the main body 2 and moves the main body 2 toward the wall W side so that the pair of cutouts 3d respectively receives the pair of hook receiving members 6. Thereafter, the worker moves the main body 2 downward in a state where the second hook piece 3b is farther from the wall W than the first hook receiving piece 6a. At this time, by a couple of forces generated by the weight of the main body 2, the second hook piece 3b is pressed toward the wall W structure side of the pair of third hook receiving pieces 6c and is pressed toward the main body 2 side of the first hook receiving piece 6a. As a result, the posture of the main body 2 is maintained in a state where the lower portion of the main body 2 is farther from the wall W than the upper portion of the main body 2.
[0070] According to the above-described Embodiment 2, in the support state of the operation panel 1, by a couple of forces generated by the weight of the main body 2, the second hook piece 3b is pressed toward the wall W structure side of the pair of third hook receiving pieces 6c and is pressed toward the main body 2 side of the first hook receiving piece 6a, and thereby the posture of the main body 2 is maintained in a state where the lower portion of the main body 2 is farther from the wall W than the upper portion of the main body 2. Therefore, the worker can easily perform the wiring work. The worker can easily perform the maintenance. For example, even if the connection connector 4 is not fixed to the main body 2, the external wire can be easily connected to the connection connector 4.
[0071] Embodiment 3
[0072] Figure 8 is a perspective view of a key portion of the operation panel of the elevator in Embodiment 3. In addition, the same reference numerals are affixed to portions that are the same as or equivalent to those of Embodiment 1. The description of this portion is omitted.
[0073] As shown in Figure 8 , at the rear of the main body 2, the hanger 7 is provided at a position lower than the hook member 3. The one end side of the hanger 7 is rotatably attached to the main body 2. By rotating the hanger 7, the other end side of the hanger 7 moves in the depth direction of the main body 2. By rotating the hanger 7, the other end side of the hanger 7 moves in the up-down direction of the main body 2. By rotating the hanger 7, the other end side of the hanger 7 moves between a position higher than the one end side and a position further to the rear of the main body 2 than the one end side.
[0074] Next, the wiring work is described using Figure 9 .
[0075] Figure 9 is a side view for describing the wiring work of the operation panel of the elevator in Embodiment 3.
[0076] As shown in Figure 9 , when the wiring work is performed, the worker makes the operation panel 1 into a supported state, pulls the lower portion of the main body 2 away from the wall W with one hand and supports it, and rotates the hanger 7 with the other hand to support the other end side of the hanger 7 toward the wall W side on the metal plate 5. As a result, the posture of the main body 2 is maintained in a state in which the lower portion of the main body 2 is farther from the wall W than the upper portion of the main body 2. In this state, the worker freely uses both hands to connect the external wire to the connection connector 4.
[0077] According to Embodiment 3 described above, in the supported state of the operation panel 1, the one end side of the hanger 7 is attached to one of the main body 2 and the wall W, and the other end side of the hanger 7 is pressed toward the other of the main body 2 and the wall W by the couple generated from the weight of the main body 2, and thereby the posture of the main body 2 is maintained in a state in which the lower portion of the main body 2 is farther from the wall W than the upper portion of the main body 2. Therefore, the worker can easily perform the wiring work. The worker can easily perform the maintenance. For example, even if the connection connector 4 is not fixed to the main body 2, the external wire can be easily connected to the connection connector 4.
[0078] In addition, the hanger 7 can be attached to the wall W side. The hanger 7 can be provided from the rear. By rotating the hanger 7, the other end side of the hanger 7 can move in the width direction of the main body 2. The hanger 7 can not be rotatably attached. As long as the worker supports the lower portion of the main body 2 with one hand and attaches the hanger 7 between the main body 2 and the wall W with the other hand, the wiring work and other maintenance can be more easily performed by the worker using both hands in these cases.
[0079] Embodiment 4
[0080] Figure 10 is an exploded perspective view of a key portion of the operation panel of the elevator in Embodiment 4. In addition, the same reference numerals are affixed to portions that are the same as or equivalent to those of Embodiment 2. The description of this portion is omitted.
[0081] As shown in Figure 10 , a mount 8 is provided at the rear of the main body 2. The mount 8 is provided below the hook member 3. The mount 8 extends toward the rear of the main body 2. The mount 8 extends in the up-and-down direction of the main body 2. An opening portion 2a is provided at the rear of the main body 2. The opening portion 2a is adjacent to the mount 8. The mount 8 has a pair of threaded holes 8a. The pair of threaded holes 8a are spaced apart from each other in the up-and-down direction of the main body 2. The center axes of the pair of threaded holes 8a extend in the width direction of the main body 2.
[0082] The mounting member 9 has a first piece 9a and a second piece 9b. The second piece 9b extends from the end of the first piece 9a in a direction perpendicular to the first piece 9a.
[0083] The first piece 9a has a cutout 9c and an elongated hole 9d. The cutout 9c and the elongated hole 9d are formed spaced apart in a direction parallel to the second piece 9b. The cutout 9c opens upward at the upper portion of the first piece 9a. The elongated hole 9d extends to the end of the first piece 9a on the second piece 9b side.
[0084] The second piece 9b has a hole 9e. The hole 9e of the second piece 9b is continuous with the elongated hole 9d of the first piece 9a.
[0085] The upper screw 10 has a first shaft body as a threaded portion and a first head portion. The first shaft body of the upper screw 10 is temporarily fastened to the threaded hole of the upper portion of the mount 8 from the opening portion side, and the first head portion is opposite the opening portion. The center axis of the first shaft body extends in the width direction of the main body 2. The lower screw 11 has a second shaft body as a threaded portion and a second head portion. The second shaft body of the lower screw 11 is temporarily fastened to the threaded hole of the lower portion of the mount 8 from the opening portion side, and the second head portion is opposite the opening portion. The center axis of the second shaft body extends in the width direction of the main body 2.
[0086] Next, the addition of the device 12 is described. Figure 11 The addition of the device 12 is described.
[0087] Figure 11 is a side view for describing the addition of the device of the operation panel of the elevator in Embodiment 4.
[0088] As shown in Figure 11As shown in (a) of FIG. 9, the hanging member 7 is attached in the same manner as in Embodiment 2 when the work of arranging the device 12 newly attached to the operation panel 1 inside the main body 2 is performed after the operation panel 1 is attached. Thereafter, the worker attaches the device 12 to the side of the second piece 9b of the attachment member 9 opposite to the first piece 9a. Thereafter, the worker moves the attachment member 9 upward from the lower side to the upper side of the rear side of the main body 2, thereby bringing the device 12 into opposition to the opening portion 2a and bringing the first shaft body of the upper screw 10 into engagement with the cutout 9c of the attachment member 9.
[0089] Next, as shown in (b) of FIG. 9, the worker rotates the attachment member 9 toward the main body 2 with the first shaft body as the center of rotation, thereby moving the device inside the main body 2 through the opening portion and bringing the second shaft body of the lower screw 11 into engagement with the long hole 9d through the hole 9e of the attachment member 9. The worker supports the attachment member 9 with one hand and inserts a fastening tool such as a screwdriver into the rear side of the main body 2 from the side of the main body 2 to fasten at least one of the upper screw 10 and the lower screw 11. As a result, the attachment member 9 is fixed to the main body 2 in a state where the device 12 is arranged inside the main body 2. Figure 11
[0090] According to Embodiment 3 described above, the attachment member 9 is engaged with the first shaft body and rotated about the first shaft body, thereby arranging the device 12 inside the main body 2. Therefore, it is possible to easily attach the device 12 inside the main body 2 from the gap between the main body 2 and the wall W.
[0091] In addition, the attachment member 9 is engaged with the first shaft body and rotated about the first shaft body, thereby bringing the second shaft body into engagement with the long hole 9d of the attachment member 9. Therefore, it is possible to restrict the upward and downward movement of the attachment member 9 with respect to the main body 2.
[0092] In addition, in the supported state, at least one of the upper screw 10 and the lower screw 11 is fastened by a fastening tool inserted into the gap between the main body 2 and the wall W when the attachment member 9 is engaged with the first shaft body and the second shaft body, thereby fixing the attachment member 9. Therefore, it is possible to easily fix the attachment member 9 to the main body 2 by the upper screw 10 or the lower screw 11.
[0093] Furthermore, the material of the attachment member 8 is not limited. At least one of the upper screw 10 and the lower screw 11 can be a pin.
Claims
1. An elevator control panel, comprising: The main body, which forms the outer outline; A hook component, disposed at the rear of the main body, having a first hook extending rearward of the main body and a second hook extending downward of the main body from an end of the first hook on the side opposite to the main body; and A hook-receiving component, disposed on a structure, has a first hook-receiving piece and a second hook-receiving piece extending upward from the end of the first hook-receiving piece on the side opposite to the structure. The first hook-receiving piece forms a gap with the structure and extends forward toward the structure. The elevator control panel can be in the following states: a fixed state, in which the first hook piece is positioned directly above the first hook receiving piece, and the main body is fixed by housing the second hook piece between the structure and the first hook receiving piece; and a supported state, in which the main body is supported by supporting the hook component from below using the hook receiving component.
2. The elevator control panel according to claim 1, wherein, In the supported state, the main body is supported from below by using the first hook receiving piece to support the second hook piece.
3. The elevator control panel according to claim 2, wherein, The elevator's control panel has a hanging component. In the supported state, one end of the hanging member is mounted on one side of the main body and the structure. Through the force couple generated by the weight of the main body, the other end of the hanging member is pressed towards the other side of the main body and the structure, thereby maintaining the posture of the main body in a state where the lower part of the main body is farther away from the structure than the upper part of the main body.
4. The elevator control panel according to claim 2, wherein, The hook receiving component has a third hook receiving piece extending from the upper end of the second hook receiving piece toward the structure. In the supported state, the second hook plate is pressed against the end of the third hook receiving plate on the structural side by a force couple generated by the weight of the main body, and the second hook plate is pressed against the end of the first hook receiving plate on the main body side, thereby maintaining the posture of the main body in a state where the lower part of the main body is farther away from the structure than the upper part of the main body.
5. The elevator control panel according to claim 1, wherein, In the supported state, the first hook piece is supported from below by the second hook piece at a position above the first hook receiving piece, thereby supporting the main body.
6. The elevator control panel according to claim 5, wherein, In the supported state, the second hook piece is pressed against the end of the second hook receiving piece on the structural side by a couple generated by the weight of the main body, and the portion of the main body lower than the hook component is pressed against the structural side, thereby maintaining the posture of the main body in a state where the upper part of the main body is farther away from the structural body than the lower part of the main body.
7. The elevator control panel according to any one of claims 1 to 6, wherein, The elevator's control panel is equipped with: A first shaft, disposed at the rear of the main body and extending along the width direction of the main body; and The mounting component has the device mounted on it and is capable of engaging with the first shaft. In the supported state, the mounting component engages with the first shaft and rotates about the first shaft, thereby positioning the device inside the main body.
8. The elevator control panel according to claim 7, wherein, The elevator control panel includes a second shaft, which is located at the rear of the main body and extends along the width of the main body at a distance from the first shaft in the vertical direction. In the supported state, the mounting component engages with the first shaft and rotates about the first shaft as an axis, thereby engaging the second shaft with the mounting component.
9. The elevator control panel according to claim 8, wherein, At least one of the first shaft and the second shaft constitutes a screw, the screw having a head at its end. In the supported state, when the mounting component is engaged with the first shaft and the second shaft, the screws are tightened using a fastening tool inserted into the gap between the main body and the structure, thereby fixing the mounting component.
Citation Information
Patent Citations
Control board for renewal
JP2016016937A
Control board for elevator
JP2015221696A
Rapid access display housing
US20200329570A1