Elevator and elevator manufacturing method
A bending mechanism in the blocking member allows for easy and efficient fixation within the elevator shaft, addressing the inefficiencies of existing methods and reducing labor hours.
Patent Information
- Application Number
- JP2024160582
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-08-13
- Estimated Expiration
- 2044-09-18
AI Technical Summary
Existing methods for fixing a blocking member in the landing equipment arrangement section of an elevator shaft are labor-intensive and inefficient, particularly when using brackets attached to a flat bar inside the elevator shaft.
A flat-plate-shaped blocking member with a bending portion along a horizontal direction is used, allowing it to be bent and unfolded to avoid structures within the elevator shaft, facilitating easy fixation to the landing equipment arrangement section.
The solution enables efficient and time-saving fixation of the blocking member, reducing labor hours and preventing mortar leakage into the elevator shaft.
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Figure 0007722545000001_ABST
Abstract
Description
[Technical Field]
[0001] The present specification relates to an elevator and a method for manufacturing an elevator. [Background technology]
[0002] Conventionally, for example, an elevator has a shaft through which an elevator car ascends and descends, and a plurality of landings where passengers get on and off. The platform is constructed by installing a three-sided frame, platform door, platform opening / closing device, etc. in an opening in the building's frame. Furthermore, the hall is equipped with hall equipment such as a hall operating device for calling the elevator car and a display device for displaying the direction of travel and the current position of the elevator car. The landing fixture is installed by cutting out a rectangular (C-shaped) part of the opening, or by fixing a landing fixture box to the landing fixture arrangement section, which is a rectangular hole that penetrates the landing wall outside the opening. The landing equipment box may be fixed by welding to the rebar protruding from the landing equipment arrangement area, by a bracket attached to the wall on the elevator shaft side of the landing equipment arrangement area, or by a bracket attached to a flat bar extended from the steel frame inside the elevator shaft. After the landing equipment box is fixed, the gap between the landing equipment box and the landing equipment arrangement portion is filled with mortar. At this time, to prevent the injected mortar from leaking into the elevator shaft, a steel plate (blocking member) may be fixed with anchor bolts from the elevator shaft side before the mortar is injected. Incidentally, when the blocking member is welded to the rebar protruding from the landing equipment arrangement section, the hoistway side of the cutout or hole is generally smooth, so it is possible to position the blocking member so as to block the landing equipment arrangement section and fix it in place with anchor bolts. However, when the blocking member is fixed by a bracket attached to a flat bar extended from a steel frame inside the elevator shaft, the bracket and flat bar get in the way, and it takes time and effort to fix the blocking member so as to block the landing equipment arrangement area, resulting in an increase in labor hours. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 11-343078 Summary of the Invention [Problem to be solved by the invention]
[0004] Therefore, the object is to provide an elevator in which a blocking member can be easily fixed to the inside of the hoistway in the landing equipment arrangement section, and to provide a method for manufacturing an elevator in which a blocking member can be easily fixed to the inside of the hoistway in the landing equipment arrangement section. [Means for solving the problem]
[0005] [1] The elevator is a hoistway having a plurality of landings; A landing wall that separates the landing and the elevator shaft; The landing wall has an opening that forms an entrance / exit, A landing device arrangement portion is provided by cutting out a part of the opening into a rectangular shape, or by penetrating the landing wall outside the opening into a rectangular hole, The upper and lower ends of the landing equipment box arranged inside the landing equipment arrangement section are fixed by fixing pieces extending from a predetermined structure inside the elevator shaft, The landing equipment arrangement section is closed from the elevator shaft side by a flat-plate-shaped closing member, The blocking member has a bent portion along a first horizontal direction at approximately the center in the vertical direction of the blocking member so that the blocking member can be bent to avoid the structure and be placed from the elevator shaft side of the landing equipment arrangement section.
[0006] [2] The elevator in [1] above is The bending portion is a groove or a slit. The following configuration is also possible.
[0007] [3] The elevators in [1] or [2] above are: The blocking member has a notch portion into which the fixing piece is inserted when the blocking member is fixed from the elevator shaft side of the landing equipment arrangement section, The following configuration is also possible.
[0008] [4] The elevator in [3] above is The cutout portion is formed by cutting a part of the flat plate-shaped closing member along a cutout cutting guide portion that is provided along a predetermined shape so that the part can be separated. The following configuration is also possible.
[0009] [5] The elevator manufacturing method is a hoistway having a plurality of landings; A landing wall that separates the landing and the elevator shaft; The landing wall has an opening that forms an entrance / exit, A landing device arrangement portion is provided by cutting out a part of the opening into a rectangular shape, or by penetrating the landing wall outside the opening into a rectangular hole, a step of fixing upper and lower ends of the landing equipment box arranged inside the landing equipment arrangement section by fixing pieces extending from a predetermined structure inside the elevator shaft; a step of bending a flat-plate-shaped blocking member that blocks the elevator hall device arrangement section from the elevator shaft side at a bending portion that is provided along a first horizontal direction at approximately the center in the up-down direction; a step of avoiding the structure and unfolding the bent portion of the blocking member bent on the hoistway side in a planar shape so as to be along the hoistway side of the landing equipment arrangement section; a step of fixing the blocking member to the elevator shaft side of the landing wall; Equipped with. [Brief explanation of the drawings]
[0010] [Figure 1] 1 is a schematic perspective view of an entire elevator according to an embodiment; [Figure 2]1A is a front view of an elevator hall from the hoistway side before the installation of the blocking member according to the embodiment, showing the opening shape according to one embodiment, and FIG. 1B is a front view of an elevator hall from the hoistway side before the installation of the blocking member according to the embodiment, showing the opening shape according to one embodiment, and FIG. [Figure 3] FIG. 10 is a front view of the closing member according to the embodiment; [Figure 4] A front view (a) of an elevator hall from the hoistway side after the installation of the blocking member according to the embodiment shows the opening shape according to one embodiment, and (b) shows the opening shape according to another embodiment. [Figure 5] 10A and 10B are diagrams illustrating a manufacturing method of an elevator according to the embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0011] In each drawing, the dimensions of the components may be enlarged or reduced relative to the actual dimensions, for example, to facilitate understanding, and the dimensional ratios between the drawings may not be consistent. Note that in each drawing, for example, to facilitate understanding, some of the components may be omitted.
[0012] Terms including ordinal numbers such as "first" and "second" are used to describe various components, but these terms are used only to distinguish one component from another, and the components are not particularly limited by these terms. The number of components including ordinal numbers is not particularly limited, and may be, for example, one. Furthermore, the ordinal numbers used in the following specification and drawings may differ from the ordinal numbers described in the claims.
[0013] As shown in FIG. 1, the elevator 1 may include, for example, an elevator car (hereinafter simply referred to as "car") 3 for people (passengers) to ride in, a car rope 5 connected to the car 3, a counterweight 4 connected to the car rope 5, a hoisting machine 6 that drives the car rope 5 to move the car 3 and the counterweight 4 in the vertical direction D3 within the hoistway 2, and a control device 7 that controls the drive of the hoisting machine 6.
[0014] In each figure, the first direction D1 is the first horizontal direction D1, the second direction D2 is the second horizontal direction D2 which is a horizontal direction perpendicular to the first horizontal direction D1, and the third direction D3 is the up-down direction D3 which is perpendicular to each of the horizontal directions D1 and D2, and is the lifting direction in which the car 3 and the counterweight 4 rise and fall.
[0015] In addition, the elevator 1 in this embodiment is configured so that the hoisting machine 6 is placed inside a machine room provided above the elevator shaft 2, but this is not limited to such a configuration, and for example, the hoisting machine 6 may be placed inside the elevator shaft 2.
[0016] The elevator 1 has, for example, two or more landings 8 where the car 3 lands and where passengers get on and off, as in this embodiment. The landing 8 is partitioned into the elevator shaft 2 and the landing 8 by a landing wall 20, and landing fixtures 9 such as controls and displays may be installed on the landing wall 20. The landing fixture 9 may also be composed of a landing fixture faceplate 9a equipped with a button switch and a display, and a landing fixture box 9b (see FIG. 5).
[0017] As shown in FIGS. 1 to 5, in the landing wall 20 of the landing 8, for example, as in this embodiment, an opening 10 is opened to communicate between the elevator shaft 2 and the landing 8, and an entrance / exit is formed by a landing door 22, a jamb 23, a landing opening / closing device (not shown), and the like. As shown in FIG. 2(a), the opening 10 may have a landing fixture arrangement section 11a that is formed by cutting out a part of the vertical side in a rectangular shape to store a landing fixture box 9b. Furthermore, as shown in FIG. 2(b), the opening 10 may have a landing fixture arrangement section 11b that is a rectangular hole that penetrates the landing wall 20 on the outside of the opening 10. Hereinafter, unless there is a need to particularly distinguish between them, the landing fixture arrangement section 11a and the landing fixture arrangement section 11b will be collectively referred to as the landing fixture arrangement section 11.
[0018] FIG. 3 is a front view of a blocking member 12 that blocks the hoistway 2 side of the landing fixture arrangement section 11 to prevent mortar from leaking into the hoistway 2 when the periphery of the landing fixture box 9b is filled with mortar after the landing fixture box 9b is fixed to the landing fixture arrangement section 11. The blocking member 12 is in the shape of a rectangular flat plate and is made of, for example, a flat plate of iron or stainless steel. The blocking member 12 has fixing holes 16 for fixing to the landing wall 20 on the hoistway 2 side with anchor bolts or the like. In FIG. 3, there are eight fixing holes 16, but there may be seven or fewer or nine or more fixing holes.
[0019] Furthermore, the blocking member 12 may have, for example, a width-adjusting cutting guide portion 15 for adjusting the width to match the width of the landing equipment arrangement portion 11. The width-adjusting cutting guide portion 15 may be a slit that connects parts, or may be a V-groove. When the width of the landing equipment arrangement portion 11 is narrow, the width of the blocking member 12 in the first horizontal direction D1 is narrowed by breaking off the part outside the width-adjusting cutting guide portion 15 with a tool such as nippers or pliers.
[0020] Furthermore, the blocking member 12 may have, for example, a notch cutting guide portion 14 for forming a notch portion 21 that avoids a fixing piece 18 that fixes a landing equipment box 9b described below. As a result, for example, when a notch portion 21 that avoids the fixing piece 18 is needed, the notch cutting guide portion 14 is broken off with a tool such as nippers or pliers to form the notch portion 21. On the other hand, for example, when the landing equipment box 9b is fixed to a rebar inside the landing equipment arrangement section 11 by welding and the hoistway 2 side of the landing equipment arrangement section 11 is smooth, the original rectangular blocking member 12 closes the hoistway 2 side of the landing equipment arrangement section 11 without breaking it off with the notch cutting guide portion 14.
[0021] Furthermore, the blocking member 12 may have a bent portion 13 along the first horizontal direction D1, for example, at approximately the center in the up-down direction D3. The bent portion 13 may be bent into a V-shape at the bent portion 13, and may be able to unfold from the V-shape and return to a flat plate shape. The bent portion 13 may be slit-processed so that a portion of the bent portion 13 is connected, or may be V-grooved.
[0022] FIG. 4 is a front view of the landing 8 of the elevator 1 after the installation of the blocking member 12, as seen from the hoistway 2 side. The landing fixture box 9b, the fixing piece 18, and the structure 17 are omitted from FIG. 4. For example, the opening 10 may be blocked by the blocking member 12 from the hoistway 2 side of the landing fixture arrangement section 11a, as shown in FIG. 4(a). In FIG. 4(a), the outer side of the width-adjusting cutting guide portion 15 of the blocking member 12 is broken off, and the blocking member 12 is fixed in a narrowed state so that one side of the blocking member 12 does not protrude into the opening 10. Also, in FIG. 4(a), the blocking member 12 is broken off at the notched cutting guide portion 14, and a notched portion 21 is formed in the blocking member 12 to avoid interference with the fixing piece 18.
[0023] Also, for example, the opening 10 may be closed by a blocking member 12 from the elevator shaft 2 side of the landing equipment arrangement section 11b, as shown in Fig. 4(b). In Fig. 4(b), the blocking member 12 is fixed in its original rectangular shape without breaking off the outer side of the width adjustment cutting guide section 15. Also, similar to the landing equipment arrangement section 11a, in order to avoid interference with the fixing piece 18, the blocking member 12 is broken off at the notched cutting guide section 14, and a notched section 21 is formed.
[0024] Here, a method for manufacturing an elevator using the blocking member 12 will be described with reference to FIG.
[0025] In the left diagram of Fig. 5, the landing fixture 9 is attached to the landing fixture arrangement section 11 of the landing wall 20. First, the landing fixture box 9b is fixed inside the landing fixture arrangement section 11. The landing fixture box 9b is fixed by fixing pieces 18 extending from a structure 17. The structure 17 is, for example, a strip-shaped plate, and in this embodiment, the structure 17 is provided at two locations, above the landing fixture arrangement section 11 and below the landing fixture arrangement section 11, extending from the steel frame or the like constituting the hoistway 2 along the first horizontal direction D1 so as to face the landing wall 20 with a gap therebetween.
[0026] In this embodiment, the fixing piece 18 has an L-shaped cross section, and one side of the L-shape is fixed to the structure 17, and the other side inserted into the landing equipment arrangement section 11 is fixed to the upper and lower ends of the landing equipment box 9b. The fixing piece 18 may be fixed to the structure 17 by screws or welding, for example, and may be fixed to the landing equipment box 9b by bolts. The width dimension of the fixing piece 18 in the first horizontal direction is a width dimension that fits within the width of the cutout portion 21 of the blocking member 12 in the first horizontal direction.
[0027] Thereafter, the hall fixture face plate 9a is fixed to the hall fixture box 9b, and the hall fixture face plate 9a is attached so as to be placed on the hall wall 20.
[0028] Next, as shown in the central diagram of Figure 5, the bent portion 13 of the blocking member 12, which has been broken off at the notch cutting guide portion 14 to form the notch portion 21, is bent into a U-shape to form the blocking member 12a shown in the right diagram of Figure 5.
[0029] Next, as shown in the right diagram of Figure 5, the blocking member 12a bent into a dogleg shape at the bending portion 13 is brought close to the landing wall 20 on the hoistway 2 side of the landing equipment arrangement section 11, avoiding the structure 17, and then unfolded into the state of a flat blocking member 12b, and the fixing hole 16 is fixed with a fixing member 19, and the hoistway 2 side of the landing equipment arrangement section 11 is blocked by the blocking member 12.
[0030] The gap between the hall fixture arrangement portion 11 and the hall fixture box 9b can be filled with mortar by removing the hall fixture face plate 9a from the hall fixture box 9b and injecting mortar from the hall side.
[0031] As described above, the elevator 1 in this embodiment has the following features: a hoistway (2) having a plurality of landings (8); A landing wall 20 that separates the landing 8 from the elevator shaft 2; The landing wall 20 has an opening 10 that forms an entrance and exit, A landing device arrangement portion 11 is provided, which is a rectangular cutout of a part of the opening 10 or a rectangular hole that penetrates the landing wall 20 outside the opening 10, The upper and lower ends of the landing equipment box 9b arranged inside the landing equipment arrangement section 11 are fixed by fixing pieces 18 extending from a predetermined structure 17 inside the elevator shaft 2, The landing equipment arrangement section 11 is closed from the elevator shaft 2 side by a flat plate-shaped closing member 12, The blocking member 12 is provided with a bending portion 13 along a first horizontal direction D1 at approximately the center in the vertical direction D3 of the blocking member 12 so that the blocking member 12 can be bent to avoid the structure 17 and be arranged from the elevator shaft 2 side of the landing equipment arrangement section 11. This configuration is preferable.
[0032] According to this configuration, the blocking member 12 is bent in a V-shape in the vertical direction D3. As a result, even if structures 17 are arranged above and below the hoistway 2 side of the opening 10, by bending the blocking member 12 in a V-shape when fixing the blocking member 12, it is possible to move the blocking member 12 close to the landing wall 20 on the hoistway 2 side of the opening 10 while avoiding interference between the blocking member 12 and the structures 17, and then unfold the blocking member 12 into a flat plate shape again, thereby fixing the blocking member 12 to the landing wall 20.
[0033] In addition, the elevator 1, as in this embodiment, The bending portion 13 is a groove or a slit. This configuration is preferable.
[0034] According to this configuration, the blocking member 12 can be easily bent into a V-shape at the bending portion 13, and then unfolded into a flat plate without breaking at the bending portion 13. As a result, even if structures 17 are arranged above and below the hoistway 2 side of the opening 10, by bending the blocking member 12 into a V-shape when fixing the blocking member 12, it is possible to bring the blocking member 12 close to the landing wall 20 on the hoistway 2 side of the opening 10 while avoiding interference between the blocking member 12 and the structures 17, and then unfold the blocking member 12 into a flat plate again, and fix the blocking member 12 to the landing wall 20.
[0035] In addition, the elevator 1, as in this embodiment, The blocking member 12 has a notch 21 into which the fixing piece 18 is inserted when the blocking member 12 is fixed from the elevator shaft 2 side of the landing equipment arrangement section 11. This configuration is preferable.
[0036] According to this configuration, the blocking member 12 has the cutout portion 21, into which the fixing piece 18 is inserted, on at least one side in the up-down direction D3. As a result, when the blocking member 12 is fixed to the landing wall 20, the fixing piece 18 is inserted into the cutout portion 21, and interference between the blocking member 12 and the fixing piece 18 can be prevented.
[0037] In addition, the elevator 1, as in this embodiment, The cutout portion 21 is formed by cutting a part of the flat plate-shaped closing member 12 along a cutout cutting guide portion 14 provided along a predetermined shape so that the part can be separated. This configuration is preferable.
[0038] According to this configuration, the blocking member 12 can take two types of forms: a state without the cutout portion 21, and a state with the cutout portion 21 formed. As a result, for example, if the landing equipment box 9b is fixed by welding to a rebar inside the landing equipment arrangement section 11, there is no fixing piece 18, and there are no parts protruding on the hoistway 2 side of the landing equipment arrangement section 11, it becomes possible to block the hoistway 2 side of the landing equipment arrangement section 11 with the flat blocking member 12 without a cutout, and it is possible to reduce leakage of mortar towards the hoistway 2 side.
[0039] In addition, the manufacturing method of the elevator 1, as in this embodiment, a hoistway (2) having a plurality of landings (8); A landing wall 20 that separates the landing 8 from the elevator shaft 2; The landing wall 20 has an opening 10 that forms an entrance and exit, A landing device arrangement portion 11 is provided, which is a rectangular cutout of a part of the opening 10 or a rectangular hole that penetrates the landing wall 20 outside the opening 10, a step of fixing upper and lower ends of the landing equipment box 9b arranged inside the landing equipment arrangement section 11 by fixing pieces 18 extending from a predetermined structure 17 inside the elevator shaft 2; a step of bending a flat blocking member 12 that blocks the elevator hall fixture arrangement portion 11 from the elevator shaft 2 side at a bending portion 13 provided along a first horizontal direction D1 at approximately the center in the vertical direction D3; a step of avoiding the structure 17 and unfolding the bent portion 13 of the blocking member 12 bent on the hoistway 2 side in a planar shape to be along the hoistway 2 side of the landing equipment arrangement portion 11; a step of fixing the blocking member 12 to the elevator shaft 2 side of the landing wall 20; Equipped with This configuration is preferable.
[0040] According to this configuration, the blocking member 12 can be easily bent into a dogleg shape at the bend 13, and then unfolded into a flat plate shape without breaking at the bend 13. As a result, even if structures 17 are arranged above and below the hoistway 2 side of the opening 10, by bending the blocking member 12 into a dogleg shape when fixing the blocking member 12, it is possible to bring the blocking member 12 close to the landing wall 20 on the hoistway 2 side of the opening 10 while avoiding interference between the blocking member 12 and the structures 17, and then unfold the blocking member 12 into a flat plate shape again, and fix the blocking member 12 to the landing wall 20.
[0041] The elevator 1 and the manufacturing method for the elevator 1 are not limited to the configurations of the above-described embodiments, and are not limited to the above-described effects. Furthermore, the elevator 1 and the manufacturing method for the elevator 1 can be modified in various ways without departing from the spirit of the present invention. For example, it is possible to arbitrarily select one or more of the configurations and methods according to the various modified examples described below and adopt them in the configurations and methods according to the above-described embodiments.
[0042] (A) The elevator 1 according to the above embodiment is configured to have a notch cutting guide portion 14 for cutting the blocking member 12 to form the notch portion 21. However, the elevator 1 is not limited to such a configuration.
[0043] For example, the blocking member 12 may have a configuration in which it does not have the notch cutting guide portion 14, but has the notch portion 21 in advance. The blocking member 12 having such a configuration may be used as a dedicated product when the upper and lower ends of the landing equipment box 9b arranged inside the landing equipment arrangement portion 11 are fixed by fixing pieces 18 extending from a predetermined structure 17 inside the hoistway 2.
[0044] (B) In addition, in the elevator 1 according to the above embodiment, the blocking member 12 has a plurality of fixing holes 16 for fixing the blocking member 12 to the landing wall 20, a width-adjusting cutting guide portion 15 for adjusting the width of the blocking member 12 in the first horizontal direction D1, and a notched cutting guide portion 14. However, the elevator 1 is not limited to such a configuration.
[0045] For example, the blocking member 12 may have a wiring hole for pulling out the communication line and the power line from the hall equipment box 9b and wiring them inside the hoistway 2.
[0046] According to this configuration, the landing fixture 9 can be connected to the wiring in the elevator shaft 2 by drawing out the communication lines and power supply lines from the wiring hole and then filling the landing fixture arrangement section 11 with mortar.
[0047] (C) In addition, in the elevator 1 according to the above embodiment, the blocking member 12 has a configuration in which the inner bending portion 13 is a groove or a slit. However, the elevator 1 is not limited to such a configuration. For example, the bending portion 13 may be configured to be bendable by a hinge. (D) For example, the order of execution of each step, such as the operations, procedures, steps, and stages, in the methods and apparatuses shown in the claims, specifications, and drawings, can be implemented in any order, as long as the result of a previous step is not used in a subsequent step. For example, even if a description is made using "first," "next," etc. for convenience, it does not mean that execution must be performed in that order. [Explanation of symbols]
[0048] DESCRIPTION OF SYMBOLS 1... elevator, 2... hoistway, 3... elevator car, 4... counterweight, 5... car rope, 6... hoisting machine, 7... control device, 8... landing, 9... landing equipment, 9a... landing equipment face plate, 9b... landing equipment box, 10... opening, 11, 11a, 11b... landing equipment arrangement section, 12... blocking member, 13... bending section, 14... notched cutting guide section, 15... width adjustment cutting guide section, 16... fixing hole, 17... structure, 18... fixing piece, 19... fixing member, 20... landing wall, 21... notched section, 22... landing door, 23... three-sided jamb, D1... first horizontal direction, D2... second horizontal direction, D3... up and down direction
Claims
1. a hoistway having a plurality of landings; A landing wall that separates the landing and the elevator shaft; The landing wall has an opening that forms an entrance / exit, A landing device arrangement portion is provided by cutting out a part of the opening into a rectangular shape, or by penetrating the landing wall outside the opening into a rectangular hole, The upper and lower ends of the landing equipment box arranged inside the landing equipment arrangement section are fixed by fixing pieces extending from a predetermined structure inside the elevator shaft, The landing equipment arrangement section is closed from the elevator shaft side by a flat-plate-shaped closing member, The elevator has a bending portion provided along a first horizontal direction at approximately the center of the blocking member in the vertical direction so that the blocking member can be bent to avoid the structure and be placed from the hoistway side of the landing equipment arrangement section.
2. 2. The elevator according to claim 1, wherein the bent portion is a groove or a slit.
3. 3. The elevator according to claim 1, wherein the blocking member has a notch into which the fixing piece is inserted when the blocking member is fixed from the hoistway side of the landing equipment arrangement section.
4. 4. The elevator according to claim 3, wherein the cutout portion is formed by cutting a part of the flat plate-shaped blocking member along a cutout cutting guide portion provided along a predetermined shape so that the part can be separated.
5. a hoistway having a plurality of landings; A landing wall that separates the landing and the elevator shaft; The landing wall has an opening that forms an entrance / exit, A landing device arrangement portion is provided by cutting out a part of the opening into a rectangular shape, or by penetrating the landing wall outside the opening into a rectangular hole, a step of fixing upper and lower ends of the landing equipment box arranged inside the landing equipment arrangement section by fixing pieces extending from a predetermined structure inside the elevator shaft; a step of bending a flat-plate-shaped blocking member that blocks the landing equipment arrangement section from the elevator shaft side at a bending portion that is provided along a first horizontal direction at a substantially central portion in the up-down direction; a step of avoiding the structure and unfolding the bent portion of the blocking member bent on the hoistway side in a planar shape so as to be along the hoistway side of the landing equipment arrangement section; a step of fixing the blocking member to the elevator shaft side of the landing wall; A method for manufacturing an elevator comprising:
Citation Information
Patent Citations
Floor indicating apparatus installed in entrance of elevator
JP1977055142A
Platform side floor indicator of elevator
JP1977088950A
The elevator motor fixing device for landing instrument -
JP1985154363U
Hall button fitting structure for elevator
JP1999255444A
Positioning tool and positioning method of constituting member of elevator
JP2010036997A