The present invention generally relates to a screen device to be mounted on an opening of a building for such purposes as insect prevention, light shielding, and heat insulation, and in particular to a mechanism for use in the screen device in which a screen held at one end thereof by a screen frame can be opened and closed with a movable stile that can be translated by means of a wire or wires extending through the screen, the mechanism relying on a single wire arranged in multiple rows extending through the screen to enable translational movement of the movable stile.
Patent Document 1 discloses a screen device with an expandable and contractible folding screen that can be opened and closed with a movable stile that is moved by a translation mechanism including two wires. One end of each of the wires is fastened to one of upper and lower areas of one of the side frame members of the screen frame to which one end of the screen is fastened. The wires extend through the screen along its expansion/contraction direction, one wire is then guided upward and the other wire is guided downward within the movable stile, the wires are respectively redirected at upper and lower ends of the movable stile, are guided along upper and lower lateral frames to upper and lower ends of a receiving frame member facing the movable stile, and fastened at the other end thereto.
Another known type of translation mechanism relies on a single wire instead of two.
In this type of screen device with an expandable and contractible folding screen, a wire should extend through an intermediate section as well as through the upper and lower sections of the screen to keep the screen in a stably stretched state without bulging or the like. In the screen device disclosed by Patent Document 1, an intermediate wire can also be extended between the upper and lower wires.
When the intermediate wire is provided, means for absorbing the change in length of the intermediate wire is also required, because the length of each wire extending through the screen varies when the screen width changes in accordance with the movement of the movable stile. In such a case, a plurality of wires should be provided as shown in FIGS. 4 to 6 of Patent Document 1, and the individual wires should be adjusted in length relative to each other. This would lead to a complicated structure that supposes time-consuming assembly, difficult installation adjustment, and troublesome maintenance in case the screen is damaged or the wires should require replacement.
Patent Document 1: Japanese unexamined patent application publication No. JP-A-H05-179875
A technical problem of the present invention is to provide a screen device having a translation mechanism that is simpler in structure and at the same time assures easier assembly and installation adjustment than that used in the above screen device in which any number of intermediate wires may be extended.
Another technical problem of the present invention is to provide a screen device having a translation mechanism with the wire extending only through the screen and the fixing plates fastened thereto, without extending through the screen frame members, thereby facilitating the replacement of the screen.
To solve the above problems, the present invention is characterized in that, in a screen device including a screen frame to be mounted on an opening of a building, an expandable and contractible folding screen connected at one end thereof to a side frame member of the screen frame and at the other end thereof to a movable stile that is guided along the screen frame so as to be capable of being opened and closed, and a translation mechanism for enabling translational movement of the movable stile, the translation mechanism relies on a single wire including three or more segments that are arranged in rows extending through the screen in its expansion/contraction direction. The wire segments are then redirected upward or downward at an inlet to the movable stile, and guided along the length of the movable stile, among which at least one wire segment selected out of those guided upward and at least one wire segment selected out of those guided downward are redirected in upper and lower areas, respectively, of the movable stile, and guided along either lateral frame member of the screen frame toward an opposite frame member facing the movable stile, so that the wire segments along the lateral frame members constitute an adjustment means that can absorb changes in length of the wire segments extending through the screen in accordance with the movement of the movable stile. Both ends of the wire are connected to the side frame member, the opposite frame member, either lateral frame member near the side or opposite frame member, or to the movable stile. The attitude of the movable stile is kept constrained by the wire at any position to which the movable stile is moved.
In a screen device in a preferred embodiment of the present invention, the wire is connected only at both ends thereof to the side frame member, the opposite frame member, either lateral frame member near the side or opposite frame member, or to the movable stile. Alternatively, the wire may be connected at both ends thereof and at an intermediate point or points that are not displaced relative to the side frame member or movable stile in its longitudinal direction, to the side frame member or movable stile.
In the screen device in another preferred embodiment of the present invention, the adjustment means may be configured in such a manner that the wire segments that are arranged in rows extending through the screen, then redirected at an inlet to the movable stile, and guided along the length of the movable stile are all redirected in the upper and lower areas of the movable stile and guided along the lateral frames of the screen frame toward the opposite frame member facing the movable stile, so the wire is stretched between the movable stile and the opposite frame member the same number of times as the number of wire segments arranged in rows between the side frame member and the movable stile. The wire segments that are not fastened to the opposite frame member are turned back.
In this configuration, the wire segments not fastened on the opposite frame member side are wound around a deflector that is pivotally supported on the opposite frame member or lateral frame member with its axis held in the direction in which the wire is turned back, so the wire segment twisted by its reciprocating motion becomes untwisted.
In the screen device in another preferred embodiment of the present invention, the adjustment means is configured so that some of the wire segments that are arranged in rows extending through the screen, then redirected at the inlet to the movable stile, and guided along the length of the movable stile are redirected in the upper and lower areas of the movable stile and guided along the lateral frame members toward the opposite frame member facing the movable stile, while the remaining wire segments are connected to the above wire segments so that the wire segments along the lateral frame members can absorb changes in length of the wire segments extending through the screen in accordance with the movement of the movable stile.
In the screen device in another preferred embodiment of the present invention, one end of the screen is detachably fastened to the side frame member of the screen frame with a fixing plate attached to that end of the screen therebetween. The screen and the movable stile are detachably guided along the lateral frame members of the screen frame. The wire segments extending through the screen are fastened to or turned back through the fixing plate, without extending through the side frame member. Both ends of the wire are detachably connected. The wire segments that are not fastened to the opposite frame member side are wound around a deflector that is detachably mounted thereon. In this configuration, the screen can be demounted together with the movable stile from the screen frame. If the other end of the screen is detachably fastened to the movable stile with a fixing plate attached to that end of the screen therebetween and the wire segments extending through the screen between the side frame member and the movable stile are fastened to or turned back through the fixing plates without extending through the side frame member and the movable stile, it is possible to demount only the screen from the screen frame.
In the screen device of the present invention described above, the translation mechanism for the movable stile relies on a single wire extending through the screen, so the translation mechanism can be configured simply by extending the wire through the screen and fastening both ends of the wire. This simplifies the assembly and installation adjustment of the screen device. The wire of the translation mechanism extends only through the screen and the fixing plates attached thereto, without extending through the screen frame members, so the screen can be replaced simply by demounting the screen, together with the wire, from the screen frame.
The screen 1 is formed of a foldable mosquito net for example. With multiple parallel pleats provided, the screen 1 is accordion-foldable so as to be expandable and contractible. To detachably fasten both ends of the screen to the movable stile 15 and the side frame member 11 of the screen frame 10 respectively, plastic fixing plates 2, 3 are fixedly attached to both ends of the screen 1 with adhesive tape. The means for attaching the fixing plates 2, 3 is not limited to adhesive tape and any other means may be used. To detachably fasten the fixing plates 2, 3, the fixing plate 2 is fit into a narrow slit-like mounting groove 11a provided in the side frame member 11 of the screen frame 10 and the fixing plate 3 is fit into a narrow slit-like mounting groove 15a provided in the movable stile 15. The fixing plates 2, 3 may have some flexibility so as to be press fit into the narrow slit-like mounting grooves 11a, 15a, respectively, or simple spring fasteners, screws, or the like may be used instead to detachably fasten the fixing plates 2, 3.
The movable stile 15, to which the fixing plate 3 on one end of the screen 1 is connected, has upper and lower ends that are slidably guided along the upper and lower lateral frame members 12, 13 of the screen frame 10. Desirably, the upper and lower ends of the movable stile 15 can easily be detached from the screen frame when a wire 5 of the translation mechanism for the movable stile is partially disconnected and the movable stile 15 is tilted for example in the screen stretching plane. If the wire 5 can easily be disconnected from the movable stile 15 mounted on the screen frame 10, the movable stile 15 need not necessarily be easily demountable from the screen frame 10.
For translational movement of the movable stile 15, this screen device is provided with a translation mechanism that continuously maintains the attitude of the movable stile 15 so as to stabilize the translational movement of the movable stile 15. This translation mechanism includes a single wire 5 arranged in the screen frame in three or more rows extending through the screen 1 in its expansion/contraction direction and serves to prevent the screen 1 from slacking or being swayed by wind for example.
More specifically, in this embodiment, as can be seen from the schematic drawings in
The wire 5 having one end thereof fastened to the lateral frame member 13 or to the connected piece 13a is guided to the lower area of the movable stile 15, then guided upward along the fixing plate 3 fastened to the movable stile 15, without being introduced into the movable stile 15 itself, then passes through a guide hole 3a provided in the fixing plate 3 near the upper end of the screen 1, extends through the screen 1, and is drawn out of the screen through a guide hole 2a in the fixing plate 2 fastened to the side frame member 11. The wire 5 drawn out to the rear of the fixing plate 2 is introduced through a guide hole 2b in the fixing plate 2 to an intermediate section of the screen 1, extends toward the movable stile 15, then guided through a guide hole 3b in the fixing plate 3 fastened to the movable stile 15, redirected upward along the length of the movable stile 15, without being introduced into the movable stile 15 itself, and is guided above the upper end of the movable stile 15 toward the opposite frame member 14.
A deflector 7 is provided on the lateral frame member 12 itself near the upper end of the opposite frame member 14, or on the connected piece 12a detachable from the lateral frame member 12 to turn back the wire 5 without fastening it thereto. The deflector 7 around which the wire 5 is wound includes a deflector body 7a, a pivot member 7b, and a roller 7c. The axis of the pivot member 7b is held in the direction in which the wire 5 extends. The wire 5 is wound around the roller 7c. The pivot member 7b is rotatably supported in a downward projection of the upper lateral frame member 12. The deflector 7 may be provided on the opposite frame member 14 with its pivot member 7b rotatably supported. The pivotal motion of the deflector 7 effectively serves to automatically untwist the wire 5 that is twisted by its reciprocation around the deflector 7. Alternatively, a support shaft 12b for turning back the wire 5 may be provided on the detachably connected piece 12a forming a part of the upper lateral frame member 12 as shown in
The wire 5 that is turned back by the deflector 7 returns toward the upper end of the movable stile 15, passes above the upper end of the movable stile 15, is redirected downward, guided along the fixing plate 3, without being introduced into the movable stile 15, and is introduced through a guide hole 3c located below the guide hole 3b to another intermediate section of the screen. Then, the wire 5 passes through a guide hole 2c in the fixing plate 2 fastened to the side frame member 11 to the rear of the fixing plate 2. The wire 5 is then introduced through a guide hole 2d in the fixing plate 2 to a lower section of the screen 1, extends toward the movable stile 15, passes through a guide hole 3d in the fixing plate 3 fastened to the movable stile 15, and is redirected upward along the length of the movable stile 15. Then, the wire 5 passes above the upper end of the movable stile 15, is redirected toward the opposite frame member 14 without being introduced into the movable stile 15 itself, and is connected at its leading end to the roller 7c of the deflector 7 with a fastener 5a (see
Desirably, the guide holes 2a to 2d and 3a to 3d provided in the fixing plates 2, 3 are small holes each provided with a plastic eyelet having a low friction with respect to the wire 5, although the guide holes 2a to 2d and 3a to 3d are not limited to this structure and may be formed in the fixing plates 2, 3 made of a synthetic resin.
In the screen device having the above structure, the screen 1 to be replaced is demounted from the screen frame 10 as follows. First, both ends of the wire 5 are disconnected, together with the connected pieces 12a, 13a, from the lateral frame members 12, 13 as illustrated in
Also in the embodiment shown in
Other configurations and actions in the embodiment shown in
In both embodiments shown in
A replacement screen 1 is provided for the user in the form of the screen assembly 20, so the user can replace the screen assembly 20 simply by fastening both fixing plates 2, 3 of the new screen 1 to the movable stile 15 and the side frame member 11 of the screen frame 10 from which the screen assembly is removed in advance and then connecting to the lateral frame members 12, 13 the connected pieces 12a, 13a to which both ends of the wire 5 have been connected.
These embodiments have configurations substantially identical to that shown in
More specifically, in
In the embodiments shown in
In the screen devices in the embodiments described above, the movement of the movable stile 15 causes the width of the screen 1 to vary and the length of the wire segments arranged in rows through the screen to vary accordingly, so the length of each segment of the wire 5 should be adjusted by means for absorbing changes in length of the wire segments, particularly when the wire 5 is arranged in multiple rows. For this adjustment, an adjustment means is configured in such a manner that the segments of the wire 5 that are arranged in rows extending through the screen 1, introduced into the movable stile 15, and guided upward or downward are all redirected in the upper and lower areas of the movable stile 15, and guided along the lateral frame members 12, 13 toward the opposite frame member 14 so that the wire 5 is stretched between the movable stile 14 and the opposite frame member 14 the same number of times as the number of rows extending between the side frame member 11 and the movable stile 15. The adjustment means is not limited to this configuration.
Since some of the wire segments arranged in rows through the screen, redirected at the inlet to the movable stile, and guided along the length of the movable stile 15 move at the same speed along the length of the movable stile 15 when the movable stile 15 moves, another adjustment configuration can be adopted in which some of the wire segments guided along the length of the movable stile 15 are redirected in the upper and lower areas of the movable stile 15, and guided along the lateral frame members 12, 13 of the screen frame 10 toward the opposite frame member 14, while the remaining wire segments moving at the same speed are connected to those wire segments redirected in the upper and lower areas of the movable stile so that the wire segments along the lateral frame members 12, 13 can absorb changes in the length of the wire segments extending through the screen in accordance with the movement of the movable stile 15.
Number | Date | Country | Kind |
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2004-380739 | Dec 2004 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2005/023889 | 12/27/2005 | WO | 00 | 6/28/2007 |
Publishing Document | Publishing Date | Country | Kind |
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WO2006/070796 | 7/6/2006 | WO | A |
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