EP1422186B1 - Door of elevator - Google Patents
Door of elevator Download PDFInfo
- Publication number
- EP1422186B1 EP1422186B1 EP01958576A EP01958576A EP1422186B1 EP 1422186 B1 EP1422186 B1 EP 1422186B1 EP 01958576 A EP01958576 A EP 01958576A EP 01958576 A EP01958576 A EP 01958576A EP 1422186 B1 EP1422186 B1 EP 1422186B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- speed
- door
- closing
- opening
- plate portion
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
Links
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B66—HOISTING; LIFTING; HAULING
- B66B—ELEVATORS; ESCALATORS OR MOVING WALKWAYS
- B66B13/00—Doors, gates, or other apparatus controlling access to, or exit from, cages or lift well landings
- B66B13/30—Constructional features of doors or gates
- B66B13/303—Details of door panels
Definitions
- This invention relates to an elevator door apparatus having a fire prevention structure.
- Fig. 5 is a front view showing an example of a conventional elevator landing door apparatus
- Fig. 6 is a sectional view taken along line VI-VI of Fig. 5
- Fig. 7 is a sectional view taken along line VII-VII of Fig. 6
- Fig. 8 is a perspective view of a main portion of a lower speed door shown in Fig. 1 .
- a landing entrance 1 is formed by a jamb 2 constituting a framework.
- the jamb 2 has a first vertical frame 3, a second vertical frame 4 opposed to the first vertical frame 3, and an upper frame 5 arranged between the upper ends of the first and second vertical frames 3 and 4.
- the landing entrance 1 is opened and closed by a lower speed door 6 and a higher speed door 7.
- the lower speed door 6 is reciprocated in the width direction (i.e., to the right and left as seen in Fig. 5 ) of the entrance 1.
- the higher speed door 7 is reciprocated at a higher speed than and parallel to the lower speed door 6 such that when the entrance is opened, it reaches the opened-door position substantially at the same time as the lower speed door 6, and that when the entrance is closed, it reaches the closed-door position substantially at the same time as the lower speed door 6.
- a landing sill 8 for guiding the movement of the lower end portions of the lower speed door 6 and the higher speed door 7.
- the lower speed door 6 has a lower-speed-side plate portion 6a, a lower-speed-closing-side end portion 6b constituting a forward end at the time of a door closing operation, and a lower-speed-opening-side end portion 6c constituting a forward end at the time of a door opening operation.
- the higher speed door 7 has a higher-speed-side plate portion 7a, a higher-speed-closing-side end portion 7b constituting a forward end at the time of a door closing operation, and a higher-speed-opening-side end portion 7c constituting a forward end at the time of a door opening operation.
- the first vertical frame 3 is equipped with a vertical-frame-side opposing portion 3a opposed to the lower-speed-side plate portion 6a and extending continuously in the height direction.
- the upper frame 5 is equipped with first and second upper-frame-side opposing portions 5a and 5b respectively opposed to the lower-speed-side and higher-speed-side plate portions 6a and 7a at the time of a door closing operation.
- the lower-speed-opening-side end portion 6c is folded into an L-shape so that the vertical-frame-side opposing portion 3a may be situated between it and the front surface of the lower-speed-side plate portion 6a at the time of a door closing operation.
- the lower-speed-closing-side end portion 6b is also folded into an L-shape that is reverse to the lower-speed-opening-side end portion 6c so that it may be opposed to the back surface of the lower-speed-side plate portion 6a.
- the higher-speed-opening-side end portion 7c is folded into an L-shape so that the lower-speed-closing-side end portion 6b may be situated between it and the front surface of the higher-speed-side plate portion 6a and the higher-speed-closing-side end portion 7b is folded in a direction reverse to the higher-speed-opening-side end portion 7c so that it may be opposed to the back surface of the higher-speed-side plate portion 7a.
- a lower-speed-side-upper-portion fire prevention member 9 Fixed to the front surface of the upper end portion of the lower-speed-side plate portion 6a by welding is a lower-speed-side-upper-portion fire prevention member 9 with a Z-shaped section arranged such that the first upper-frame-side opposing portion 5a is situated between it and the lower-speed-side plate portion 6a at the time of a door closing operation.
- a higher-speed-side-upper-portion fire prevention member 10 fixed to the front surface of the upper end portion of the higher-speed-side plate portion 7a by welding is a higher-speed-side-upper-portion fire prevention member 10 with a Z-shaped section arranged such that the second upper-frame-side opposing portion 5b is situated between it and the higher-speed-side plate portion 7a at the time of a door closing operation.
- An upper reinforcing member 11 is fixed to the back surface of the upper end portion of the lower-speed-side plate portion 6a by welding.
- a similar upper reinforcing member 11 is also fixed to the back surface of the upper end portion of the higher-speed-side plate portion 7a by welding.
- a cutout 6d In the upper end portion of the lower-speed-closing-side end portion 6b, there is provided a cutout 6d for avoiding interference with the higher-speed-side-upper-portion fire prevention member 10.
- a hanger case 12 is fixed to the upper frame 5.
- a suspension mechanism and a driving mechanism for the lower speed door 6 and the higher speed door 7 are not shown and a description thereof will be omitted.
- the lower-speed-opening-side end portion 6c is opposed to the vertical-frame-side opposing portion 3a
- the higher-speed-opening-side end portion 7c is opposed to the lower-speed-closing-side end portion 6b
- the lower-speed-side-upper-portion fire prevention member 9 is opposed to the first upper-frame-side opposing portion 5a
- the higher-speed-side-upper-portion fire prevention member 10 is opposed to the second upper-frame-side opposing portion 5b, thus forming a so-called rabbet structure. Due to this structure, the gaps around the lower speed door 6 and the higher speed door 7 are closed to thereby obtain the requisite fire prevention performance.
- the lower-speed-opening-side end portion 6c engages with the vertical-frame-side opposing portion 3a
- the higher-speed-opening-side end portion 7c engages with the lower-speed-closing-side end portion 6b
- the lower-speed-side-upper-portion fire prevention member 9 engages with the first upper-frame-side opposing portion 5a
- the higher-speed-side-upper-portion fire prevention member 10 engages with the second upper-frame-side opposing portion 5b, whereby preventing detachment of the lower speed door 6 and the higher speed door 7.
- a fire prevention structure for the above conventional door apparatus is described, for example, in the European Uniform Code EN81.
- JP-A-09156857 describes an elevator apparatus comprises a lower-speed door, a higher-speed door and a framework.
- the lower-speed door has a side plate portion, an upper end portion, a closing side end portion and an opening side end portion.
- the higher-speed door has a side plate portion, an upper end portion, a closing side end portion and an opening side end portion.
- the framework comprises a first vertical frame equipped with an opposing portion, a second vertical frame opposed to the first vertical frame and an upper frame equipped with first and second opposing portions which forms the entrance.
- JP-A-2001199660 describes door bodies of an elevator which can be opened and closed.
- An L-shaped section is fixed to the door body by means of rivets or welding.
- An elevator door apparatus comprises: a lower speed door which has a lower-speed-side plate portion, a lower-speed-side upper end portion, a lower-speed-closing-side end portion constituting a forward end at the time of a door closing operation, and a lower-speed-opening-side end portion constituting a forward end at the time of a door opening operation, and which is reciprocated in the width direction of an entrance; a higher speed door which has a higher-speed-side plate portion, a higher-speed-side upper end portion, a higher-speed-closing-side end portion constituting a forward end at the time of a door closing operation, and a higher-speed-opening-side end portion constituting a forward end at the time of a door opening operation, which is reciprocated in parallel with and faster than the lower speed door, and which is placed in layers with the lower speed door and accommodated in a door pocket at the time of door opening; and a framework which has a first vertical frame equipped with a vertical-frame
- An advantage obtainable with embodiments of the present invention is to provide an elevator door apparatus which can secure a sufficient degree of strength without having to weld reinforcing members to thereby facilitating production, and on which gap dimension adjustment can be easily conducted.
- Fig. 1 is a sectional view of an elevator landing door apparatus according to an embodiment of this invention
- Fig. 2 is a sectional view taken along the line II-II of Fig. 1
- Fig. 3 is an exploded perspective view showing a main portion of the lower speed door of Fig. 1
- Fig. 4 is a development view showing a main portion of the lower speed door of Fig. 3 .
- a landing entrance 1 is formed by a jamb 2 constituting a framework.
- the jamb 2 has a first vertical frame 3, a second vertical frame 4 opposed to the first vertical frame 3, and an upper frame 5 arranged between the upper ends of the first and second vertical frames 3 and 4.
- the landing entrance 1 is opened and closed by a lower speed door 21 and a higher speed door 22.
- the lower speed door 21 is reciprocated in the width direction (i.e., to the right and left as seen in Fig. 1 ) of the entrance 1.
- the higher speed door 22 is reciprocated at a higher speed than and parallel to the lower speed door 21 such that when the entrance is opened, it reaches the opened-door position substantially at the same time as the lower speed door 21, and that when the entrance is closed, it reaches the closed-door position substantially at the same time as the lower speed door 21.
- the higher speed door 22 overlaps the back side of the lower speed door 21 and is accommodated in a door pocket 23.
- a landing sill 8 for guiding the movement of the lower end portions of the lower speed door 21 and the higher speed door 22.
- the lower speed door 21 has a lower-speed-side plate portion 21a, a lower-speed-side upper end portion 21b, a lower-speed-closing-side end portion 21c constituting a forward end at the time of a door closing operation, and a lower-speed-opening-side end portion 21d constituting a forward end at the time of a door opening operation.
- the higher speed door 22 has a higher-speed-side plate portion 22a, a higher-speed-side upper end portion (not shown), a higher-speed-closing-side end portion 22c constituting a forward end at the time of a door closing operation, and a higher-speed-opening-side end portion 22d constituting a forward end at the time of a door opening operation.
- the first vertical frame 3 is equipped with a vertical-frame-side opposing portion 3a opposed to the lower-speed-side plate portion 21a and extending continuously in the height direction.
- the upper frame 5 is equipped with first and second upper-frame-side opposing portions 5a and 5b respectively opposed to the lower-speed-side and higher-speed-side plate portions 21a and 22a at the time of a door closing operation.
- the lower-speed-closing-side end portion 21c has a lower-speed-closing-side end surface 24a extending at right angles with respect to the lower-speed-side plate portion 21a, and a lower-speed-closing-side folded portion 24b extending perpendicularly from the lower-speed-closing-side end surface 24a and opposed to the back surface of the lower-speed-side plate portion 21a and the front surface of the higher-speed-side plate portion 22a.
- the lower-speed-opening-side end portion 21d has a lower-speed-opening-side end surface 25a extending at right angles with respect to the lower-speed-side plate portion 21a, and a lower-speed-opening-side folded portion 25b extending perpendicularly from the lower-speed-opening-side end surface 25a and opposed to the back surface of the lower-speed-side plate portion 21a. Further, the dimension of the lower-speed-opening-side end surface 25a as measured in the direction perpendicular to the opening/closing direction of the lower speed door 21 (the vertical direction in Fig. 1 ) is smaller than that of the lower-speed-closing-side end surface 24a.
- the higher-speed-closing-side end portion 22c has a higher-speed-closing-side end surface 26a extending at right angles with respect to the higher-speed-side plate portion 22a, and a higher-speed-closing-side folded portion 26b extending perpendicularly from the higher-speed-closing-side end surface 26a and opposed to the back surface of the higher-speed-side plate portion 22a.
- the higher-speed-opening-side end portion 22d has a higher-speed-opening-side end surface 27a extending at right angles with respect to the higher-speed-side plate portion 22a, and a higher-speed-opening-side folded portion 27b extending perpendicularly from the higher-speed-opening-side end surface 27a and opposed to the back surface of the higher-speed-side plate portion 22a.
- a lower-speed-side-end-portion fire prevention member 28 with an L-shaped section is attached to the lower-speed-opening-side end surface 25a by a plurality of screws 29.
- the lower-speed-side-end-portion fire prevention member 28 has a lower-speed-side opposing surface 28a arranged such that the vertical-frame-side opposing portion 3a is situated between it and the lower-speed-side plate portion 21a at the time of a door closing operation.
- the lower-speed-opening-side end surface 25a is equipped with a plurality of screw holes 25c to be threadedly engaged with screws 29.
- the lower-speed-side-end-portion fire prevention member 28 is provided with a plurality of elongated holes 28b through which the screws 29 are passed.
- the elongated holes 28b extend thin and narrow in the thickness direction of the lower speed door 21 (the vertical direction in Fig. 1 ). Due to this construction, the gap between the lower-speed-side-end-portion fire prevention member 28 and the vertical-frame-side opposing portion 3a can be adjusted.
- a higher-speed-side-end-portion fire prevention member 30 with an L-shaped section is attached to the higher-speed-opening-side end surface 27a by a plurality of screws (not shown).
- the higher-speed-side-end-portion fire prevention member 30 has a higher-speed-side opposing surface 30a arranged such that the lower-speed-closing-side folded portion 24b is situated between it and the higher-speed-side plate portion 22a at the time of a door closing operation.
- the gap between the higher-speed-side-end-portion fire prevention member 30 and the lower-speed-closing-side folded portion 24b can be adjusted.
- the lower-speed-side upper end portion 21b has a lower-speed-side upper end surface 31a extending at right angles with respect to the lower-speed-side plate portion 21a, and a lower-speed-side upper end folded portion 31b extending perpendicularly from the lower-speed-side upper end surface 31a and opposed to the back surface of the lower-speed-side plate portion 21a.
- the higher-speed-side upper end portion has a higher-speed-side upper end surface (not shown) extending at right angles with respect to the higher-speed-side plate portion 22a, and a higher-speed-side upper end folded portion extending perpendicularly from the higher-speed-side upper end surface and opposed to the back surface of the higher-speed-side plate portion 22a.
- a lower-speed-side-upper-portion fire prevention member 32 Attached to the lower-speed-side upper end surface 31a is a lower-speed-side-upper-portion fire prevention member 32 with an L-shaped section having a first upper opposing surface 32a and arranged such that the first upper-frame-side opposing portion 5a is situated between it and the lower-speed-side plate portion 21a at the time of a door closing operation.
- Through-holes 32b are provided in the vicinity of the central portion and the end portions with respect to the longitudinal direction of the lower-speed-side-upper-portion fire prevention member 32. Further, a pair of nuts 33 communicating with the through-holes 32b in the vicinity of the end portions are fixed to the lower-speed-side-upper-portion fire prevention member 32.
- a screw hole 31c is provided in the central portion with respect to the longitudinal direction of the lower-speed-side upper end surface 31a.
- a pair of elongated holes 31d are provided in the vicinity of the end portions with respect to the longitudinal direction of the lower-speed-side upper end surface 31a.
- a screw 34 is passed through the through-hole 32b and threadedly engaged with the screw hole 31c.
- Screws 35 are passed through the elongated holes 31d and the through-holes 32b and threadedly engaged with the nuts 33.
- the lower-speed-side-upper-portion fire prevention member 32 becomes rotatable around the screw 34, and the mounting position of the lower-speed-side-upper-portion fire prevention member 32 with respect to the lower-speed-side upper end surface 31a can be adjusted from below the lower-speed-side upper end surface 31a.
- screws 35 When screws for a hex wrench are used as the screws 35, the screws 35 situated on the inner side of the lower-speed-side upper end portion 21b can be easily turned.
- a higher-speed-side-upper-portion fire prevention member 36 Mounted to the higher-speed-side upper end surface by means of a plurality of screws (not shown) is a higher-speed-side-upper-portion fire prevention member 36 with an L-shaped section having a second upper opposing surface 36a and arranged such that the second upper-frame-side opposing portion 5b is situated between it and the higher-speed-side plate portion 22a at the time of a door closing operation.
- the mounting structure for the higher-speed-side-upper-portion fire prevention member 36 is the same as that for the lower-speed-side-upper-portion fire prevention member 32, and the mounting position of the higher-speed-side-upper-portion fire prevention member 36 with respect to the higher-speed-side upper end surface can be adjusted from below the higher-speed-side upper end surface.
- a lower-speed-side reinforcing member 37 mounted by screws to the lower-speed-closing-side folded portion 24b and to the lower-speed-side upper end folded portion 31b.
- a higher-speed-side reinforcing member (not shown) connected by screws to the higher-speed-closing-side folded portion 26b and to the higher-speed-side upper end folded portion.
- a hanger case 12 is fixed to the upper frame 5.
- the suspension mechanism and the driving mechanism for the lower speed door 21 and the higher speed door 22 are not shown and a description thereof is omitted.
- the lower-speed-side opposing surface 28a of the lower-speed-side-end-portion fire prevention member 28 is opposed to the vertical-frame-side opposing portion 3a
- the higher-speed-side opposing surface 30a of the higher-speed-side-end-portion fire prevention member 30 is opposed to the lower-speed-closing-side folded portion 24b
- the first upper opposing surface 32a of the lower-speed-side-upper-portion fire prevention member 32 is opposed to the first upper-frame-side opposing portion 5a
- the second upper opposing surface 36a of the higher-speed-side-upper-portion fire prevention member 36 is opposed to the second upper-frame-side opposing portion 5b, thus forming a so-called rabbet structure. Due to this structure, the gaps around the lower speed door 21 and the higher speed door 22 are closed to achieve the requisite fire prevention performance.
- the lower-speed-side opposing surface 28a engages with the vertical-frame-side opposing portion 3a
- the higher-speed-side opposing surface 30a engages with the lower-speed-closing-side folded portion 24b
- the first upper opposing surface 32a engages with the first upper-frame-side opposing portion 5a
- the second upper opposing surface 36a engages with the second upper-frame-side opposing portion 5b, whereby detachment of the lower speed door 21 and the higher speed door 22 is prevented.
- the lower speed door 21 and the higher speed door 22 are of a so-called box bending structure, in which the lower-speed-side upper end portion 21b, the lower-speed-closing-side end portion 21c, the lower-speed-opening-side end portion 21d, the higher-speed-side upper end portion, the higher-speed-closing-side end portion 22c, and the higher-speed-opening-side end portion 22d are all folded to the same side.
- the apparatus can be produced using the same structure, making it possible to obtain a light-weight door at low cost.
- fire prevention members 28, 30, 32, and 36 are members separate from the lower speed door 21 and the higher speed door 22, and their mounting positions with respect to the lower speed door 21 and the higher speed door 22 can be adjusted, so that the adjustment of the gap dimension can be easily conducted.
- the dimension of the lower-speed-opening-side end surface 25a as measured in the direction perpendicular to the opening/closing direction of the lower speed door 21 is shorter than that of the lower-speed-closing-side end surface 24a, so that it is possible to avoid interference between the higher-speed-side-upper-portion fire prevention member 36 and the lower speed door 21.
- the present invention is also applicable to an apparatus using three or more doors. Further, this invention is applicable to a center-opening type door apparatus as long as it accommodates a plurality of doors in layers in a door pocket on either side.
- this invention is applied to a landing door apparatus, this invention is also applicable to a car door apparatus.
Landscapes
- Elevator Door Apparatuses (AREA)
- Special Wing (AREA)
Abstract
Description
- This invention relates to an elevator door apparatus having a fire prevention structure.
-
Fig. 5 is a front view showing an example of a conventional elevator landing door apparatus,Fig. 6 is a sectional view taken along line VI-VI ofFig. 5 ,Fig. 7 is a sectional view taken along line VII-VII ofFig. 6 , andFig. 8 is a perspective view of a main portion of a lower speed door shown inFig. 1 . - In the drawings, a landing entrance 1 is formed by a
jamb 2 constituting a framework. Thejamb 2 has a firstvertical frame 3, a secondvertical frame 4 opposed to the firstvertical frame 3, and anupper frame 5 arranged between the upper ends of the first and secondvertical frames lower speed door 6 and ahigher speed door 7. - The
lower speed door 6 is reciprocated in the width direction (i.e., to the right and left as seen inFig. 5 ) of the entrance 1. Thehigher speed door 7 is reciprocated at a higher speed than and parallel to thelower speed door 6 such that when the entrance is opened, it reaches the opened-door position substantially at the same time as thelower speed door 6, and that when the entrance is closed, it reaches the closed-door position substantially at the same time as thelower speed door 6. - At the bottom of the
lower speed door 6 and thehigher speed door 7, there is provided alanding sill 8 for guiding the movement of the lower end portions of thelower speed door 6 and thehigher speed door 7. - The
lower speed door 6 has a lower-speed-side plate portion 6a, a lower-speed-closing-side end portion 6b constituting a forward end at the time of a door closing operation, and a lower-speed-opening-side end portion 6c constituting a forward end at the time of a door opening operation. Thehigher speed door 7 has a higher-speed-side plate portion 7a, a higher-speed-closing-side end portion 7b constituting a forward end at the time of a door closing operation, and a higher-speed-opening-side end portion 7c constituting a forward end at the time of a door opening operation. - The first
vertical frame 3 is equipped with a vertical-frame-sideopposing portion 3a opposed to the lower-speed-side plate portion 6a and extending continuously in the height direction. Theupper frame 5 is equipped with first and second upper-frame-side opposing portions 5a and 5b respectively opposed to the lower-speed-side and higher-speed-side plate portions - The lower-speed-opening-
side end portion 6c is folded into an L-shape so that the vertical-frame-sideopposing portion 3a may be situated between it and the front surface of the lower-speed-side plate portion 6a at the time of a door closing operation. The lower-speed-closing-side end portion 6b is also folded into an L-shape that is reverse to the lower-speed-opening-side end portion 6c so that it may be opposed to the back surface of the lower-speed-side plate portion 6a. - Similarly, the higher-speed-opening-
side end portion 7c is folded into an L-shape so that the lower-speed-closing-side end portion 6b may be situated between it and the front surface of the higher-speed-side plate portion 6a and the higher-speed-closing-side end portion 7b is folded in a direction reverse to the higher-speed-opening-side end portion 7c so that it may be opposed to the back surface of the higher-speed-side plate portion 7a. - Fixed to the front surface of the upper end portion of the lower-speed-
side plate portion 6a by welding is a lower-speed-side-upper-portionfire prevention member 9 with a Z-shaped section arranged such that the first upper-frame-sideopposing portion 5a is situated between it and the lower-speed-side plate portion 6a at the time of a door closing operation. - Similarly, fixed to the front surface of the upper end portion of the higher-speed-
side plate portion 7a by welding is a higher-speed-side-upper-portionfire prevention member 10 with a Z-shaped section arranged such that the second upper-frame-side opposing portion 5b is situated between it and the higher-speed-side plate portion 7a at the time of a door closing operation. - An upper reinforcing member 11 is fixed to the back surface of the upper end portion of the lower-speed-
side plate portion 6a by welding. A similar upper reinforcing member 11 is also fixed to the back surface of the upper end portion of the higher-speed-side plate portion 7a by welding. In the upper end portion of the lower-speed-closing-side end portion 6b, there is provided acutout 6d for avoiding interference with the higher-speed-side-upper-portionfire prevention member 10. - A
hanger case 12 is fixed to theupper frame 5. A suspension mechanism and a driving mechanism for thelower speed door 6 and thehigher speed door 7 are not shown and a description thereof will be omitted. - In this landing door apparatus, the lower-speed-opening-
side end portion 6c is opposed to the vertical-frame-sideopposing portion 3a, the higher-speed-opening-side end portion 7c is opposed to the lower-speed-closing-side end portion 6b, the lower-speed-side-upper-portionfire prevention member 9 is opposed to the first upper-frame-side opposing portion 5a, and the higher-speed-side-upper-portionfire prevention member 10 is opposed to the second upper-frame-side opposing portion 5b, thus forming a so-called rabbet structure. Due to this structure, the gaps around thelower speed door 6 and thehigher speed door 7 are closed to thereby obtain the requisite fire prevention performance. - When warpage is generated in the lower-speed-
side plate portion 6a and the higher-speed-side plate portion 7a by a fire, the lower-speed-opening-side end portion 6c engages with the vertical-frame-side opposing portion 3a, the higher-speed-opening-side end portion 7c engages with the lower-speed-closing-side end portion 6b, the lower-speed-side-upper-portionfire prevention member 9 engages with the first upper-frame-side opposing portion 5a, and the higher-speed-side-upper-portionfire prevention member 10 engages with the second upper-frame-side opposing portion 5b, whereby preventing detachment of thelower speed door 6 and thehigher speed door 7. - In the conventional landing door apparatus described above, it is necessary to attach the upper reinforcing members 11 to the
lower speed door 6 and thehigher speed door 7 in order to secure a sufficient degree of strength. However, to avoid impairing the design and the fire prevention performance, it is necessary to fix the reinforcing members by welding, not by screws, adhesive or the like. Accordingly, the welding operation requires time and labor, and the removal of welding distortion also requires time and labor. - Further, when stainless steel is used for an artistically designed surface, it is necessary to wrap a design film of stainless steel around the door surface after welding, resulting in a complicated structure and an increase in weight.
- Further, since it is difficult to adjust the gap dimension between the lower-speed-opening-
side end portion 6c and the vertical-frame-sideopposing portion 3a and the gap dimension between the higher-speed-opening-side end portion 7c and the lower-speed-closing-side end portion 6b, it is necessary to prepare and install thelower speed door 6 and thehigher speed door 7 with high precision. Further, since the lower-speed-side- and higher-speed-side-upper-portionfire prevention members side plate portions - A fire prevention structure for the above conventional door apparatus is described, for example, in the European Uniform Code EN81.
-
JP-A-09156857 -
JP-A-2001199660 - An elevator door apparatus according to the present invention comprises: a lower speed door which has a lower-speed-side plate portion, a lower-speed-side upper end portion, a lower-speed-closing-side end portion constituting a forward end at the time of a door closing operation, and a lower-speed-opening-side end portion constituting a forward end at the time of a door opening operation, and which is reciprocated in the width direction of an entrance; a higher speed door which has a higher-speed-side plate portion, a higher-speed-side upper end portion, a higher-speed-closing-side end portion constituting a forward end at the time of a door closing operation, and a higher-speed-opening-side end portion constituting a forward end at the time of a door opening operation, which is reciprocated in parallel with and faster than the lower speed door, and which is placed in layers with the lower speed door and accommodated in a door pocket at the time of door opening; and a framework which has a first vertical frame equipped with a vertical-frame-side opposing portion opposed to the lower-speed-side plate portion, a second vertical frame opposed to the first vertical frame, and an upper frame equipped with first and second upper-frame-side opposing portions respectively opposed to the lower-speed-side and higher-speed-side plate portions at the time of door closing and arranged between the upper end portions of the first and second vertical frames, and which forms an entrance, wherein: the lower-speed-closing-side end portion has a lower speed closing side end surface extending perpendicularly with respect to the lower-speed-side plate portion, and a lower-speed-closing-side folded portion extending perpendicularly from the lower speed closing side end surface and opposed to the back surface of the lower-speed-side plate portion and to the front surface of the higher-speed-side plate portion; the lower-speed-opening-side end portion has a lower-speed-opening-side end surface extending perpendicularly with respect to the lower-speed-side plate portion and shorter than the lower speed closing side end surface, and a lower-speed-opening-side folded portion extending perpendicularly from the lower-speed-opening-side end surface and opposed to the back surface of the lower-speed-side plate portion; the higher-speed-closing-side end portion has a higher speed closing side end surface extending perpendicularly with respect to the higher-speed-side plate portion, and a higher-speed-closing-side folded portion extending perpendicularly from the higher speed closing side end surface and opposed to the back surface of the higher-speed-side plate portion; the higher-speed-opening-side end portion has a higher-speed-opening-side end surface extending perpendicularly with respect to the higher-speed-side plate portion, and a higher-speed-opening-side folded portion extending perpendicularly from the higher-speed-opening-side end surface and opposed to the back surface of the higher-speed-side plate portion; a lower-speed-side-end-portion fire prevention member with an L-shaped section having a lower-speed-side opposing surface arranged such that the vertical-frame-side opposing portion is situated between it and the lower-speed-side plate portion at the time of door closing, is mounted to the lower-speed-opening-side end surface by a plurality of screws; and a higher-speed-side-end-portion fire prevention member with an L-shaped section having a higher-speed-side opposing surface arranged such that the lower-speed-closing-side folded portion is situated between it and the higher-speed-side plate portion at the time of door closing, is mounted to the higher-speed-opening-side end surface by a plurality of screws.
- An advantage obtainable with embodiments of the present invention is to provide an elevator door apparatus which can secure a sufficient degree of strength without having to weld reinforcing members to thereby facilitating production, and on which gap dimension adjustment can be easily conducted.
- To enable a better understanding of the present invention, and to show how the same may be carried out into effect, reference will now be made, by way of example only, to the accompanying drawings, in which:-
-
Fig. 1 is a sectional view of an elevator landing door apparatus according to one example of an embodiment of this invention; -
Fig. 2 is a sectional view taken along the line II-II ofFig. 1 ; -
Fig. 3 is an exploded perspective view showing a main portion of a lower speed door ofFig. 1 ; -
Fig. 4 is a development view showing a main portion of the lower speed door ofFig. 3 ; -
Fig. 5 is a front view showing an example of a conventional elevator landing door apparatus; -
Fig. 6 is a sectional view taken along the line VI-VI ofFig. 5 ; -
Fig. 7 is a sectional view taken along the line VII-VII ofFig. 6 ; and -
Fig. 8 is a perspective view showing a main portion of the lower speed door ofFig. 1 . - A preferred embodiment of this invention will now be described with reference to the drawings.
-
Fig. 1 is a sectional view of an elevator landing door apparatus according to an embodiment of this invention;Fig. 2 is a sectional view taken along the line II-II ofFig. 1 ;Fig. 3 is an exploded perspective view showing a main portion of the lower speed door ofFig. 1 ; andFig. 4 is a development view showing a main portion of the lower speed door ofFig. 3 . - In the drawings, a landing entrance 1 is formed by a
jamb 2 constituting a framework. Thejamb 2 has a firstvertical frame 3, a secondvertical frame 4 opposed to the firstvertical frame 3, and anupper frame 5 arranged between the upper ends of the first and secondvertical frames lower speed door 21 and ahigher speed door 22. - The
lower speed door 21 is reciprocated in the width direction (i.e., to the right and left as seen inFig. 1 ) of the entrance 1. Thehigher speed door 22 is reciprocated at a higher speed than and parallel to thelower speed door 21 such that when the entrance is opened, it reaches the opened-door position substantially at the same time as thelower speed door 21, and that when the entrance is closed, it reaches the closed-door position substantially at the same time as thelower speed door 21. When the entrance is opened, thehigher speed door 22 overlaps the back side of thelower speed door 21 and is accommodated in adoor pocket 23. - At the bottom of the
lower speed door 21 and thehigher speed door 22, there is provided alanding sill 8 for guiding the movement of the lower end portions of thelower speed door 21 and thehigher speed door 22. - The
lower speed door 21 has a lower-speed-side plate portion 21a, a lower-speed-side upper end portion 21b, a lower-speed-closing-side end portion 21c constituting a forward end at the time of a door closing operation, and a lower-speed-opening-side end portion 21d constituting a forward end at the time of a door opening operation. Thehigher speed door 22 has a higher-speed-side plate portion 22a, a higher-speed-side upper end portion (not shown), a higher-speed-closing-side end portion 22c constituting a forward end at the time of a door closing operation, and a higher-speed-opening-side end portion 22d constituting a forward end at the time of a door opening operation. The firstvertical frame 3 is equipped with a vertical-frame-side opposing portion 3a opposed to the lower-speed-side plate portion 21a and extending continuously in the height direction. Theupper frame 5 is equipped with first and second upper-frame-side opposing portions 5a and 5b respectively opposed to the lower-speed-side and higher-speed-side plate portions - The lower-speed-closing-
side end portion 21c has a lower-speed-closing-side end surface 24a extending at right angles with respect to the lower-speed-side plate portion 21a, and a lower-speed-closing-side foldedportion 24b extending perpendicularly from the lower-speed-closing-side end surface 24a and opposed to the back surface of the lower-speed-side plate portion 21a and the front surface of the higher-speed-side plate portion 22a. - The lower-speed-opening-
side end portion 21d has a lower-speed-opening-side end surface 25a extending at right angles with respect to the lower-speed-side plate portion 21a, and a lower-speed-opening-side foldedportion 25b extending perpendicularly from the lower-speed-opening-side end surface 25a and opposed to the back surface of the lower-speed-side plate portion 21a. Further, the dimension of the lower-speed-opening-side end surface 25a as measured in the direction perpendicular to the opening/closing direction of the lower speed door 21 (the vertical direction inFig. 1 ) is smaller than that of the lower-speed-closing-side end surface 24a. - The higher-speed-closing-
side end portion 22c has a higher-speed-closing-side end surface 26a extending at right angles with respect to the higher-speed-side plate portion 22a, and a higher-speed-closing-side foldedportion 26b extending perpendicularly from the higher-speed-closing-side end surface 26a and opposed to the back surface of the higher-speed-side plate portion 22a. - The higher-speed-opening-
side end portion 22d has a higher-speed-opening-side end surface 27a extending at right angles with respect to the higher-speed-side plate portion 22a, and a higher-speed-opening-side foldedportion 27b extending perpendicularly from the higher-speed-opening-side end surface 27a and opposed to the back surface of the higher-speed-side plate portion 22a. - A lower-speed-side-end-portion
fire prevention member 28 with an L-shaped section is attached to the lower-speed-opening-side end surface 25a by a plurality ofscrews 29. The lower-speed-side-end-portionfire prevention member 28 has a lower-speed-side opposing surface 28a arranged such that the vertical-frame-side opposing portion 3a is situated between it and the lower-speed-side plate portion 21a at the time of a door closing operation. - The lower-speed-opening-
side end surface 25a is equipped with a plurality ofscrew holes 25c to be threadedly engaged withscrews 29. The lower-speed-side-end-portionfire prevention member 28 is provided with a plurality ofelongated holes 28b through which thescrews 29 are passed. Theelongated holes 28b extend thin and narrow in the thickness direction of the lower speed door 21 (the vertical direction inFig. 1 ). Due to this construction, the gap between the lower-speed-side-end-portionfire prevention member 28 and the vertical-frame-side opposing portion 3a can be adjusted. - A higher-speed-side-end-portion
fire prevention member 30 with an L-shaped section is attached to the higher-speed-opening-side end surface 27a by a plurality of screws (not shown). The higher-speed-side-end-portionfire prevention member 30 has a higher-speed-side opposing surface 30a arranged such that the lower-speed-closing-side foldedportion 24b is situated between it and the higher-speed-side plate portion 22a at the time of a door closing operation. - As in the case of the lower speed side, the gap between the higher-speed-side-end-portion
fire prevention member 30 and the lower-speed-closing-side foldedportion 24b can be adjusted. - The lower-speed-side upper end portion 21b has a lower-speed-side
upper end surface 31a extending at right angles with respect to the lower-speed-side plate portion 21a, and a lower-speed-side upper end foldedportion 31b extending perpendicularly from the lower-speed-sideupper end surface 31a and opposed to the back surface of the lower-speed-side plate portion 21a. - The higher-speed-side upper end portion has a higher-speed-side upper end surface (not shown) extending at right angles with respect to the higher-speed-
side plate portion 22a, and a higher-speed-side upper end folded portion extending perpendicularly from the higher-speed-side upper end surface and opposed to the back surface of the higher-speed-side plate portion 22a. - Attached to the lower-speed-side
upper end surface 31a is a lower-speed-side-upper-portionfire prevention member 32 with an L-shaped section having a first upper opposingsurface 32a and arranged such that the first upper-frame-side opposing portion 5a is situated between it and the lower-speed-side plate portion 21a at the time of a door closing operation. - Through-
holes 32b are provided in the vicinity of the central portion and the end portions with respect to the longitudinal direction of the lower-speed-side-upper-portionfire prevention member 32. Further, a pair ofnuts 33 communicating with the through-holes 32b in the vicinity of the end portions are fixed to the lower-speed-side-upper-portionfire prevention member 32. - A screw hole 31c is provided in the central portion with respect to the longitudinal direction of the lower-speed-side
upper end surface 31a. A pair ofelongated holes 31d are provided in the vicinity of the end portions with respect to the longitudinal direction of the lower-speed-sideupper end surface 31a. - A
screw 34 is passed through the through-hole 32b and threadedly engaged with the screw hole 31c.Screws 35 are passed through theelongated holes 31d and the through-holes 32b and threadedly engaged with the nuts 33. By loosening thescrews 35, the lower-speed-side-upper-portionfire prevention member 32 becomes rotatable around thescrew 34, and the mounting position of the lower-speed-side-upper-portionfire prevention member 32 with respect to the lower-speed-sideupper end surface 31a can be adjusted from below the lower-speed-sideupper end surface 31a. - When screws for a hex wrench are used as the
screws 35, thescrews 35 situated on the inner side of the lower-speed-side upper end portion 21b can be easily turned. - Mounted to the higher-speed-side upper end surface by means of a plurality of screws (not shown) is a higher-speed-side-upper-portion
fire prevention member 36 with an L-shaped section having a second upper opposing surface 36a and arranged such that the second upper-frame-side opposing portion 5b is situated between it and the higher-speed-side plate portion 22a at the time of a door closing operation. The mounting structure for the higher-speed-side-upper-portionfire prevention member 36 is the same as that for the lower-speed-side-upper-portionfire prevention member 32, and the mounting position of the higher-speed-side-upper-portionfire prevention member 36 with respect to the higher-speed-side upper end surface can be adjusted from below the higher-speed-side upper end surface. - At the upper end of the lower-speed-closing-
side end surface 24a and of the lower-speed-closing-side foldedportion 24b, there is provided acutout 24c for avoiding interference with the higher-speed-side-upper-portionfire prevention member 36. - Mounted to the
lower speed door 21 is a lower-speed-side reinforcing member 37 connected by screws to the lower-speed-closing-side foldedportion 24b and to the lower-speed-side upper end foldedportion 31b. Mounted to thehigher speed door 22 is a higher-speed-side reinforcing member (not shown) connected by screws to the higher-speed-closing-side foldedportion 26b and to the higher-speed-side upper end folded portion. - A
hanger case 12 is fixed to theupper frame 5. The suspension mechanism and the driving mechanism for thelower speed door 21 and thehigher speed door 22 are not shown and a description thereof is omitted. - In this landing door apparatus, the lower-speed-
side opposing surface 28a of the lower-speed-side-end-portionfire prevention member 28 is opposed to the vertical-frame-side opposing portion 3a, and the higher-speed-side opposing surface 30a of the higher-speed-side-end-portionfire prevention member 30 is opposed to the lower-speed-closing-side foldedportion 24b, the first upper opposingsurface 32a of the lower-speed-side-upper-portionfire prevention member 32 is opposed to the first upper-frame-side opposing portion 5a, and the second upper opposing surface 36a of the higher-speed-side-upper-portionfire prevention member 36 is opposed to the second upper-frame-side opposing portion 5b, thus forming a so-called rabbet structure. Due to this structure, the gaps around thelower speed door 21 and thehigher speed door 22 are closed to achieve the requisite fire prevention performance. - If warpage is generated in the lower-speed-
side plate portion 21a and the higher-speed-side plate portion 22a as a result of a fire, the lower-speed-side opposing surface 28a engages with the vertical-frame-side opposing portion 3a, the higher-speed-side opposing surface 30a engages with the lower-speed-closing-side foldedportion 24b, the first upper opposingsurface 32a engages with the first upper-frame-side opposing portion 5a, and the second upper opposing surface 36a engages with the second upper-frame-side opposing portion 5b, whereby detachment of thelower speed door 21 and thehigher speed door 22 is prevented. - Further, the
lower speed door 21 and thehigher speed door 22 are of a so-called box bending structure, in which the lower-speed-side upper end portion 21b, the lower-speed-closing-side end portion 21c, the lower-speed-opening-side end portion 21d, the higher-speed-side upper end portion, the higher-speed-closing-side end portion 22c, and the higher-speed-opening-side end portion 22d are all folded to the same side. Thus, it is only necessary to fasten a small reinforcingmember 37 to a corner portion by a screw, and it is possible to secure a sufficient degree of strength without welding a large reinforcing member, thereby facilitating production and achieving a reduction in cost. - Furthermore, since welding is not adopted, no welding distortion is involved, so that it is possible to assemble the apparatus with high accuracy. This makes it possible to achieve a satisfactory artistic design characteristic even if the coating film for the painting is thin. Further, it is possible to shorten the requisite time for gap adjustment at the time of installment.
- Further, even if stainless steel is used, the apparatus can be produced using the same structure, making it possible to obtain a light-weight door at low cost.
- Further, the
fire prevention members lower speed door 21 and thehigher speed door 22, and their mounting positions with respect to thelower speed door 21 and thehigher speed door 22 can be adjusted, so that the adjustment of the gap dimension can be easily conducted. - Furthermore, the dimension of the lower-speed-opening-
side end surface 25a as measured in the direction perpendicular to the opening/closing direction of thelower speed door 21 is shorter than that of the lower-speed-closing-side end surface 24a, so that it is possible to avoid interference between the higher-speed-side-upper-portionfire prevention member 36 and thelower speed door 21. - While the above example is applied to a two-door-side-opening type apparatus, the present invention is also applicable to an apparatus using three or more doors. Further, this invention is applicable to a center-opening type door apparatus as long as it accommodates a plurality of doors in layers in a door pocket on either side.
- Further, while in the above embodiment this invention is applied to a landing door apparatus, this invention is also applicable to a car door apparatus.
Claims (7)
- An elevator door apparatus comprising:a lower speed door (21) which has a lower-speed-side plate portion (21a), a lower-speed-side upper end portion (21b), a lower-speed-closing-side end portion (21c) constituting a forward end at the time of a door closing operation, and a lower-speed-opening-side end portion (21d) constituting a forward end at the time of a door opening operation, and which is reciprocated in the width direction of an entrance (1);a higher speed door (22) which has a higher-speed-side plate portion (22a), a higher-speed-side upper end portion, a higher-speed-closing-side end portion (22c) constituting a forward end at the time of a door closing operation, and a higher-speed-opening-side end portion (22d) constituting a forward end at the time of a door opening operation, which is reciprocated in parallel with and faster than the lower speed door (21), and which is placed in layers with the lower speed door (21) and accommodated in a door pocket (23) at the time of door opening; anda framework (2) which has a first vertical frame (3) equipped with a vertical-frame-side opposing portion (3a) opposed to the lower-speed-side plate portion (21a), a second vertical frame (4) opposed to the first vertical frame (3), and an upper frame (5) equipped with first and second upper-frame-side opposing portions (5a, 5b) respectively opposed to the lower-speed-side and higher-speed-side plate portions (21a, 22a) at the time of door closing and arranged between the upper end portions of the first and second vertical frames (3,4), and which forms an entrance (1), wherein:characterized bythe lower-speed-closing-side end portion (21c) has a lower speed closing side end surface (24a) extending perpendicularly with respect to the lower-speed-side plate portion (21a), and a lower-speed-closing-side folded portion (24b) extending perpendicularly from the lower speed closing side end surface (24a) and opposed to the back surface of the lower-speed-side plate portion (21a) and to the front surface of the higher-speed-side plate portion (22a);the lower-speed-opening-side end portion (21d) has a lower-speed-opening-side end surface (25a) extending perpendicularly with respect to the lower-speed-side plate portion (21a) and shorter than the lower speed closing side end surface (24a), and a lower-speed-opening-side folded portion (25b) extending perpendicularly from the lower-speed-opening-side end surface (25a) and opposed to the back surface of the lower-speed-side plate portion (21a);the higher-speed-closing-side end portion (22c) has a higher speed closing side end surface (26a) extending perpendicularly with respect to the higher-speed-side plate portion (22a), and a higher-speed-closing-side folded portion (26b) extending perpendicularly from the higher speed closing side end surface (26a) and opposed to the back surface of the higher-speed-side plate portion (22a);the higher-speed-opening-side end portion (22d) has a higher-speed-opening-side end surface (27a) extending perpendicularly with respect to the higher-speed-side plate portion (22a), and a higher-speed-opening-side folded portion (27b) extending perpendicularly from the higher-speed-opening-side end surface (27a) and opposed to the back surface of the higher-speed-side plate portion (22a);a higher-speed-side-end-portion fire prevention member (30) with an L-shaped section having a higher-speed-side opposing surface (30a) arranged such that the lower-speed-closing-side folded portion (24b) is situated between it and the higher-speed-side plate portion (22a), at the time of door closing, is mounted to the higher-speed-opening-side end surface (27a); and
a lower-speed-side-end-portion fire prevention member (28) with an L-shaped section having a lower-speed-side opposing surface (28a) arranged such that the vertical-frame-side opposing portion (3a) is situated between it and the lower-speed-side plate portion (21a) at the time of door closing, being mounted to the lower-speed-opening-side end surface (25a) by a plurality of screws (29),
such that a gap between the lower-speed-side-end-portion fire prevention member (28) and the vertical-frame-side opposing portion (30) can be adjusted, wherein the higher-speed-side-end-portion fire prevention member (30) is mounted to the higher-speed-opening-side end surface (27a) by a plurality of screws - An elevator door apparatus according to claim 1, characterized in that:the lower-speed-side upper end portion has a lower-speed-side upper end surface extending perpendicularly with respect to the lower-speed-side plate portion and a lower-speed-side upper end folded portion extending perpendicularly from the lower-speed-side upper end surface and opposed to the back surface of the lower-speed-side plate portion;the higher-speed-side upper end portion has a higher-speed-side upper end surface extending perpendicularly with respect to the higher-speed-side plate portion and a higher-speed-side upper end folded portion extending perpendicularly from the higher-speed-side upper end surface and opposed to the back surface of the higher-speed-side plate portion;a lower-speed-side-upper-portion fire prevention member with an L-shaped section having a first upper opposing surface arranged such that the first upper-frame-side opposing portion is situated between it and the lower-speed-side plate portion at the time of door closing, is mounted to the lower-speed-side upper end surface by a plurality of screws; anda higher-speed-side-upper-portion fire prevention member with an L-shaped section having a second upper opposing surface arranged such that the second upper-frame-side opposing portion is situated between it and the higher-speed-side plate portion at the time of door closing, is mounted to the higher-speed-side upper end surface by a plurality of screws.
- An elevator door apparatus according to Claim 2, characterized in that a lower-speed-side reinforcing member joined and fastened to the lower-speed-closing-side folded portion and to the lower-speed-side upper end folded portion, is mounted to the lower speed door.
- An elevator door apparatus according to Claim 2, characterized in that a higher-speed-side reinforcing member joined and fastened to the higher-speed-closing-side folded portion and to the higher-speed-side upper end folded portion, is mounted to the higher speed door.
- An elevator door apparatus according to Claim 1, characterized in that the gap between the higher-speed-side-end-portion fire prevention member and the lower-speed-closing-side folded portion can be adjusted.
- An elevator door apparatus according to Claim 2, characterized in that the mounting position of the lower-speed-side-upper-portion fire prevention member with respect to the lower-speed-side upper end surface can be adjusted from below the lower-speed-side upper end surface.
- An elevator door apparatus according to Claim 2, characterized in that the mounting position of the higher-speed-side-upper-portion fire prevention member with respect to the higher-speed-side upper end surface can be adjusted from below the higher-speed-side upper end surface.
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PCT/JP2001/007386 WO2003020630A1 (en) | 2001-08-28 | 2001-08-28 | Door of elevator |
Publications (3)
Publication Number | Publication Date |
---|---|
EP1422186A1 EP1422186A1 (en) | 2004-05-26 |
EP1422186A4 EP1422186A4 (en) | 2010-03-03 |
EP1422186B1 true EP1422186B1 (en) | 2012-05-02 |
Family
ID=11737670
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP01958576A Expired - Lifetime EP1422186B1 (en) | 2001-08-28 | 2001-08-28 | Door of elevator |
Country Status (4)
Country | Link |
---|---|
EP (1) | EP1422186B1 (en) |
JP (1) | JPWO2003020630A1 (en) |
CN (1) | CN1484609A (en) |
WO (1) | WO2003020630A1 (en) |
Families Citing this family (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FI20041156A (en) * | 2004-09-07 | 2006-03-08 | Kone Corp | Elevator arrangement |
JP4957170B2 (en) * | 2006-10-18 | 2012-06-20 | 三菱電機株式会社 | Elevator door equipment |
JP5174897B2 (en) * | 2008-04-25 | 2013-04-03 | 三菱電機株式会社 | Elevator hall entrance / exit equipment |
JP5436159B2 (en) * | 2009-11-18 | 2014-03-05 | 三菱電機株式会社 | Three-way elevator |
JP2014145749A (en) * | 2013-01-30 | 2014-08-14 | Tokyo Electric Power Co Inc:The | Elevator undergoing exposure dose reduction measure |
KR101351071B1 (en) | 2013-07-16 | 2014-01-15 | (주)대원엔지니어링 | Elevator four-door assembly with fireproof construction |
CN106477439A (en) * | 2015-08-24 | 2017-03-08 | 鑫诺电梯有限公司 | One kind has by novel sealing structure opens fire resistant doorsets |
CN105836587A (en) * | 2016-05-30 | 2016-08-10 | 浙江联合电梯有限公司 | Elevator side-opening fire-proof landing door |
WO2020202250A1 (en) * | 2019-03-29 | 2020-10-08 | 三菱電機株式会社 | Elevator landing door and elevator device |
WO2020261327A1 (en) * | 2019-06-24 | 2020-12-30 | 三菱電機株式会社 | Elevator door |
Family Cites Families (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CH607602GA3 (en) * | 1973-11-03 | 1978-09-29 | Watch with alarm device | |
JPS5716490A (en) * | 1980-07-04 | 1982-01-27 | Fujitsu Ltd | Plasma display panel indication control system |
JPH04272086A (en) * | 1991-02-05 | 1992-09-28 | Mitsubishi Electric Corp | Boarding place door for elevator |
JPH04256674A (en) * | 1991-02-05 | 1992-09-11 | Hitachi Building Syst Eng & Service Co Ltd | Centering gauge |
JPH0544974U (en) * | 1991-11-27 | 1993-06-15 | 株式会社東芝 | Elevator hall doors |
JP3139907B2 (en) * | 1994-03-09 | 2001-03-05 | 株式会社東芝 | Entrance / exit device of elevator hall |
JPH0853279A (en) * | 1994-08-09 | 1996-02-27 | Toshiba Corp | Elevator device |
JP2842516B2 (en) * | 1994-12-12 | 1999-01-06 | 三菱電機株式会社 | Elevator entrance and exit smoke suppressors |
JP3384219B2 (en) * | 1995-12-13 | 2003-03-10 | 三菱電機株式会社 | Elevator landing switchgear |
JP3431431B2 (en) * | 1996-12-13 | 2003-07-28 | 三菱電機株式会社 | Elevator door manufacturing method |
JP3538096B2 (en) | 2000-01-12 | 2004-06-14 | 三菱電機株式会社 | Elevator landing door |
-
2001
- 2001-08-28 JP JP2003524903A patent/JPWO2003020630A1/en active Pending
- 2001-08-28 CN CNA01817938XA patent/CN1484609A/en active Pending
- 2001-08-28 WO PCT/JP2001/007386 patent/WO2003020630A1/en active Application Filing
- 2001-08-28 EP EP01958576A patent/EP1422186B1/en not_active Expired - Lifetime
Also Published As
Publication number | Publication date |
---|---|
JPWO2003020630A1 (en) | 2004-12-16 |
EP1422186A4 (en) | 2010-03-03 |
CN1484609A (en) | 2004-03-24 |
WO2003020630A1 (en) | 2003-03-13 |
EP1422186A1 (en) | 2004-05-26 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
EP1422186B1 (en) | Door of elevator | |
GB2369395A (en) | Vehicle door | |
JP2006116997A (en) | Rear gate structure | |
JP5326532B2 (en) | Elevator door equipment | |
KR20170120673A (en) | Elevator control panel | |
JP3002451B1 (en) | Airtight structure of elevator hall | |
TWI709683B (en) | Stiffening arrangement and method | |
JP2780599B2 (en) | Door with elevator window | |
JPH11240683A (en) | Elevator panel door | |
JP2006137585A (en) | Door device of elevator | |
JP4140719B2 (en) | Elevator door equipment | |
JP6735126B2 (en) | Transom structure in toilet booth and method of assembling transom panel | |
JP7553270B2 (en) | Door and window installation structure and construction method thereof | |
JP2000062464A (en) | Full-open chucking mechanism of sliding door | |
JP7498615B2 (en) | Fittings | |
JP2016188072A (en) | Platform door device | |
JP2005008318A (en) | Door device of elevator | |
KR200279175Y1 (en) | Hinge fixation of fire door | |
JP3030184B2 (en) | Opening / closing lid mounting structure | |
JPH0311351Y2 (en) | ||
JPH0747428Y2 (en) | Elevator doors | |
JPH084488Y2 (en) | Mounting hardware on top of wall panel | |
JP2023006402A (en) | Shutter case in shutter device for building and method for assembling shutter case | |
JP2000118928A (en) | Safety device for elevator doorway | |
JP4381730B2 (en) | Elevator door equipment |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
PUAI | Public reference made under article 153(3) epc to a published international application that has entered the european phase |
Free format text: ORIGINAL CODE: 0009012 |
|
17P | Request for examination filed |
Effective date: 20030416 |
|
AK | Designated contracting states |
Kind code of ref document: A1 Designated state(s): AT BE CH CY DE DK ES FI FR GB GR IE IT LI LU MC NL PT SE TR |
|
RAP1 | Party data changed (applicant data changed or rights of an application transferred) |
Owner name: MITSUBISHI DENKI KABUSHIKI KAISHA |
|
A4 | Supplementary search report drawn up and despatched |
Effective date: 20100128 |
|
17Q | First examination report despatched |
Effective date: 20100614 |
|
GRAP | Despatch of communication of intention to grant a patent |
Free format text: ORIGINAL CODE: EPIDOSNIGR1 |
|
GRAS | Grant fee paid |
Free format text: ORIGINAL CODE: EPIDOSNIGR3 |
|
GRAA | (expected) grant |
Free format text: ORIGINAL CODE: 0009210 |
|
AK | Designated contracting states |
Kind code of ref document: B1 Designated state(s): DE GB NL |
|
RBV | Designated contracting states (corrected) |
Designated state(s): DE GB NL |
|
REG | Reference to a national code |
Ref country code: GB Ref legal event code: FG4D |
|
REG | Reference to a national code |
Ref country code: DE Ref legal event code: R096 Ref document number: 60146507 Country of ref document: DE Effective date: 20120628 |
|
REG | Reference to a national code |
Ref country code: NL Ref legal event code: T3 |
|
PLBE | No opposition filed within time limit |
Free format text: ORIGINAL CODE: 0009261 |
|
STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: NO OPPOSITION FILED WITHIN TIME LIMIT |
|
26N | No opposition filed |
Effective date: 20130205 |
|
REG | Reference to a national code |
Ref country code: DE Ref legal event code: R097 Ref document number: 60146507 Country of ref document: DE Effective date: 20130205 |
|
REG | Reference to a national code |
Ref country code: DE Ref legal event code: R084 Ref document number: 60146507 Country of ref document: DE |
|
REG | Reference to a national code |
Ref country code: GB Ref legal event code: 746 Effective date: 20141104 |
|
REG | Reference to a national code |
Ref country code: DE Ref legal event code: R084 Ref document number: 60146507 Country of ref document: DE Effective date: 20141107 |
|
PGFP | Annual fee paid to national office [announced via postgrant information from national office to epo] |
Ref country code: NL Payment date: 20190712 Year of fee payment: 19 |
|
PGFP | Annual fee paid to national office [announced via postgrant information from national office to epo] |
Ref country code: DE Payment date: 20190813 Year of fee payment: 19 |
|
PGFP | Annual fee paid to national office [announced via postgrant information from national office to epo] |
Ref country code: GB Payment date: 20190830 Year of fee payment: 19 |
|
REG | Reference to a national code |
Ref country code: DE Ref legal event code: R119 Ref document number: 60146507 Country of ref document: DE |
|
REG | Reference to a national code |
Ref country code: NL Ref legal event code: MM Effective date: 20200901 |
|
GBPC | Gb: european patent ceased through non-payment of renewal fee |
Effective date: 20200828 |
|
PG25 | Lapsed in a contracting state [announced via postgrant information from national office to epo] |
Ref country code: DE Free format text: LAPSE BECAUSE OF NON-PAYMENT OF DUE FEES Effective date: 20210302 |
|
PG25 | Lapsed in a contracting state [announced via postgrant information from national office to epo] |
Ref country code: GB Free format text: LAPSE BECAUSE OF NON-PAYMENT OF DUE FEES Effective date: 20200828 |
|
PG25 | Lapsed in a contracting state [announced via postgrant information from national office to epo] |
Ref country code: NL Free format text: LAPSE BECAUSE OF NON-PAYMENT OF DUE FEES Effective date: 20200901 |