Opening restriction devices and fittings

The opening restriction device for tilt-in windows addresses the issue of increased part count by using a catcher member and biasing mechanism to adjust the stop position, enhancing versatility and reducing parts while ensuring smooth operation.

JP7743370B2Active Publication Date: 2025-09-24YKK AP INC
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Patent Information

Application Number
JP2022091406
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-06-06
Publication Date
2025-09-24
Estimated Expiration
2042-06-06

AI Technical Summary

Technical Problem

Existing tilt-in windows require multiple parts to adjust the slider position for different shoji screen dimensions, increasing complexity and part count.

Method used

An opening restriction device with a slider, link arm, and movable stopper device that includes a catcher member and biasing mechanism, allowing versatile fitting without increasing part count, by using a catcher member that moves relative to the slider and abuts against a protrusion to adjust the stop position.

Benefits of technology

The device improves versatility for various fittings by reducing the number of parts required and ensuring smooth operation, with the catcher member minimizing resistance and preventing elastic deformation during opening and closing.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide an opening restriction device and a fixture which can improve versatility for all fixtures and suppress increase in the number of parts.SOLUTION: An opening restriction device 4 includes a slider 5 provided on the upper stile 31 so as to be able to reciprocate, a link arm 10 that connects the slider 5 to the upper frame, and a movable stopper device 7 that is attached to the upper stile 31 so as to be able to stop the forward movement of the slider 5 in the half-open position; the movable stopper device 7 has a movable stopper 72, an operating member 74 that operates it, and a torsion spring that energizes the movable stopper 72 from a non-stop position to a stop position. The slider 5 has a catcher member 61 that can move forward and backward, and the catcher member 61 is configured to move the operating member 74 from a first operating position to a second operating position and retreat while in contact with a protruding part 745 during the backward movement of the slider 5.SELECTED DRAWING: Figure 9
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Description

[Technical Field]

[0001] The present invention relates to an opening restriction device that restricts the opening dimension of a sliding screen in a fixture such as a casement window or a sliding window, and to the fixture. [Background technology]

[0002] A known fixture is a tilt-down window, which adjusts the angle at which a shoji screen retracts relative to a window frame (see Patent Document 1). The tilt-down window includes a slider connected to the vertical frame of the window frame via an arm and slidably mounted along the vertical stile of the shoji screen; a movable stopper biased by a spring from a non-stop position where the slider does not abut against the slider to a stop position where the slider abuts against the slider; a movable stopper device attached to the vertical stile and having an operating member for moving the movable stopper from the stop position to the non-stop position against the bias; and a fixed stopper attached to the vertical stile at a position where the slider abuts against the slider after passing the movable stopper. This tilt-down window is configured so that the slider can be selectively abutted against either the movable stopper or the fixed stopper by operating the operating member to position the movable stopper in the stop or non-stop position, and the tilt angle of the shoji screen is greater when the slider abuts against the fixed stopper than when the slider abuts against the movable stopper. In addition, the movable stopper device has a protrusion that protrudes in the direction of the screen screen, which abuts against the slider that moves from the fixed stopper side to the movable stopper side and operates the operating member.When this operating member is operated, the movable stopper is biased by a spring and automatically returns from the non-stop position to the stop position. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2001-279993 Summary of the Invention [Problem to be solved by the invention]

[0004] Incidentally, in the tilt-in window described in Patent Document 1, a slider that is slidably mounted along the vertical stile abuts on a protrusion on a movable stopper device attached to the vertical stile, automatically returning the movable stopper from the non-stop position to the stop position, so the relative positions of the slider and the protrusion must be appropriately positioned. Therefore, in order to appropriately position the slider and the protrusion for each fitting, which has different projected dimensions of the shoji screen, a movable stopper device with a protrusion amount corresponding to the projected dimensions must be set for each fitting, and this setting could increase the number of parts.

[0005] An object of the present invention is to provide an opening restriction device and a fitting that can improve versatility for various fittings and suppress an increase in the number of parts. [Means for solving the problem]

[0006] The opening restriction device of the present invention is an opening restriction device used for a shoji screen that opens and closes toward the inside or outside of the room relative to a frame body, and includes: a slider that is provided on the shoji screen so that it can move forward toward a fully open position of the shoji screen and return toward a fully closed position of the shoji screen in a reciprocating direction in response to the opening and closing movement of the shoji screen; a link arm that has one end rotatably connected to the frame body and the other end connected to the slider; and a movable stopper device that is attached to the shoji screen so that it can stop the forward movement of the slider at a half-open position between the fully open position and the fully closed position. The movable stopper device has a movable stopper that moves between a stop position and a non-stop position relative to the slider that moves forward; an urging part that urges the movable stopper to move to the stop position; and an operating member that operates to move the movable stopper from the stop position to the non-stop position against the urging of the urging part, is configured to be movable in the reciprocating direction between a first operating position on the forward movement side that places the movable stopper in the non-stop position and a second operating position on the return movement side that releases the movable stopper from being placed in the non-stop position, and the slider has a slider body that abuts against the movable stopper in the stop position during the forward movement of the slider, a catcher member that advances and retreats relative to the slider body in a projection direction perpendicular to the reciprocating direction, and a catcher biasing portion that biases the catcher member forward, and the operating member is formed with a protrusion that protrudes so as to be able to abut against the catcher member in the projection direction, and the catcher member is configured to move the operating member from the first operating position to the second operating position while abutting against the protrusion during the return movement of the slider, and retreat against the forward bias of the catcher biasing portion. [Effects of the Invention]

[0007] According to the present invention, it is possible to provide an opening restriction device and fitting that can improve versatility for each fitting and prevent an increase in the number of parts. [Brief explanation of the drawings]

[0008] [Figure 1]1 is a perspective view showing an inward-opening window according to an embodiment of the present invention. [Figure 2] FIG. 2 is a perspective view showing the main parts of the inward-opening window according to the embodiment. [Figure 3] 10A and 10B are explanatory diagrams showing the operation of the inward-opening window according to the embodiment. [Figure 4] FIG. 2 is an explanatory diagram showing a movable stopper device for an inward-opening window according to the embodiment. [Figure 5] FIG. 2 is a perspective view showing the slider of the inward-opening window according to the embodiment. [Figure 6] FIG. 2 is an explanatory diagram showing the slider of the inward-opening window according to the embodiment. [Figure 7] 4 is an explanatory diagram showing the operation of the opening restriction device for an inward-opening window according to the embodiment. FIG. [Figure 8] 10 is an explanatory diagram showing the operation of the opening limiting device for an inward-opening window according to the embodiment in the middle of fully opening. FIG. [Figure 9] 10 is an explanatory diagram showing the operation of the opening limiting device for an inward-opening window according to the embodiment in the middle of fully closing. FIG. DETAILED DESCRIPTION OF THE INVENTION

[0009] [Configuration of this embodiment] Hereinafter, an embodiment of the present invention will be described with reference to the drawings. 1 to 3, an inward-opening window 1 as a fixture according to an embodiment of the present invention separates an indoor space from an outdoor space, and comprises a window frame 2 (frame body), a shoji screen 3 that opens and closes toward the indoor side relative to the window frame 2, and an opening restriction device 4 that restricts the opening dimension of the shoji screen 3 (the opening width of the inward-opening window 1). The shoji screen 3 is connected to the window frame 2 so that it can open and close between a fully closed position shown in Figure 3(A) and a fully open position shown in Figure 3(C), and the opening restriction device 4 is configured to stop the opening movement of the shoji screen 3 at a half-open position between the fully closed and fully open positions. In the following description, the left-right direction of the shoji screen 3 is the X-axis direction (reciprocating movement direction), the up-down direction of the shoji screen 3 is the Y-axis direction, and the projection direction of the shoji screen 3 is the Z-axis direction. The X, Y, and Z-axis directions are perpendicular to each other. In addition, the forward movement direction of the slider 5 (described later) is the +X direction, and the backward movement direction of the slider 5 is the -X direction.

[0010] The window frame 2 is composed of an upper frame 21, a lower frame 22, a hanging vertical frame 23 (the vertical frame on the right side in Figure 1), and a door end vertical frame 24 (the vertical frame on the left side in Figure 1). The shoji screen 3 is composed of an upper frame 31, a lower frame 32, a hanging vertical frame 33 (the vertical frame on the right side in Figure 1), a door end vertical frame 34 (the vertical frame on the left side in Figure 1), and a surface material 35 such as a glass panel, assembled together, and the hanging vertical frame 33 is rotatably connected to the hanging vertical frame 23 via a hinge. The interior portions of the upper frame 31, lower frame 32, hanging vertical frame 33, and door end vertical frame 34 extend outward more than their exterior portions. 2, a rail 312 is formed along the longitudinal direction of the upper frame 31 on the outer peripheral projection surface 311 at the outdoor portion of the upper frame 31, and an extended sight piece 313 is formed on the indoor portion of the upper frame 31, extending upward (toward the outdoor side of the upper frame 31, in the viewing direction of the upper frame 31) from the indoor-side side edge of the outer peripheral projection surface 311. An opening 314 is formed in the extended sight piece 313, through which a movable stopper 72 (see FIG. 4) and a catcher member 61 (see FIGS. 5 and 6), which will be described later, can appear and disappear in the Z-axis direction. The upper frame 21, lower frame 22, hanging vertical frame 23, door end vertical frame 24, upper frame 31, lower frame 32, hanging vertical frame 33 and door end vertical frame 34 may be formed integrally using aluminum extruded profiles or resin extruded profiles, or may be formed from an aluminum-resin composite profile that combines these.

[0011] The opening restriction device 4 includes a slider 5 fitted to a rail 312 so as to be reciprocable in the X-axis direction along the longitudinal direction of the upper frame 31, a link arm 10 having one end rotatably connected to the upper frame 21 and the other end connected to the slider 5, and a movable stopper device 7 attached to the shoji screen 3 so as to stop the forward movement of the slider 5 in the +X direction when the screen is in the half-open position. The slider 5 and the movable stopper device 7 are arranged with the extended sight piece 313 between them in the Z-axis direction.

[0012] As shown in Figure 4, the movable stopper device 7 has a case 71 that is placed in an opening 316 formed in the indoor side sight surface 315 of the upper frame 31 (see Figure 7, etc.) and screwed to the extended sight piece 313, a movable stopper 72 that moves in the X-axis direction between a stop position P1 and a non-stop position P2 relative to the slider 5, a torsion spring 73 as a biasing part that biases the movable stopper 72 to move it from the non-stop position P2 to the stop position P1, and an operating member 74 that operates to move the movable stopper 72 from the stop position P1 to the non-stop position P2 against the bias of the torsion spring 73.

[0013] The case 71 includes an outer case 711 and an inner case (not shown), and the outer case 711 is screwed to the upper frame 31. The outer case 711 is formed with an opening on the outside of the room, and the inner case is inserted into this opening and fixed to the outer case 711. The case 71 is formed with an elongated hole 712 through which an operation knob 742 (described later) is inserted, and the case 71 is also provided with a pair of pins 713 aligned along the Y-axis direction.

[0014] The movable stopper 72 is journaled to the case 71 so as to be rotatable about an axis C along the Y-axis direction between a stop position P1 and a non-stop position P2. One end of the movable stopper 72 is an abutting portion 722 having an abutting surface 721 that abuts against a slider body 51 (described later) of the slider 5 that moves in the +X direction from the fully closed position toward the fully open position, and the other end of the movable stopper 72 is formed as a guided portion 724 on which a guide pin 723 guided by the operating member 74 protrudes in the Y-axis direction, and a shaft portion 726 on which the axis C is located is provided in an intermediate portion 725 between the abutting portion 722 and the guided portion 724 and closer to the guide pin 723.

[0015] One end of the torsion spring 73 is hooked onto the movable stopper 72 at a position closer to the abutment portion 722 than the shaft portion 726, and the other end is hooked onto the case 71 at a position closer to the guided portion 724 than the shaft portion 726, and the torsion portion is wound around the shaft portion 726.

[0016] The operating member 74 is integrally formed with a sliding body 741 placed inside the case 71, an operating knob 742 protruding from the sliding body 741 to the inside of the room through a long hole 712 in the outer case 711, and a guide surface 743 that guides the guide pin 723. The slider 741 is formed with a pair of elongated holes 744 along the X-axis direction through which the pair of pins 713 of the case 71 are inserted, and a protrusion 745 that protrudes toward the outside of the room in the Z-axis direction so as to be able to come into contact with a catcher member 61 (described later) of the slider 5. The slider 741 is arranged within the case 71 so as to be able to slide in the X-axis direction. The protrusion 745 protrudes a predetermined amount from the slider 741, and when the slider 5 passes a position facing the movable stopper device 7 in the X-axis direction, a tip 748 of the protrusion 745 comes into contact with the catcher member 61, causing the catcher member 61 to retreat toward the outside of the room. The tip 748 has a tip engagement surface 746 on the forward movement side along the Z-axis direction, and a tip inclined surface 747 on the backward movement side that is inclined with respect to the X-axis direction so that a position on the backward movement side that is farther away from the tip engagement surface 746 than a position on the tip engagement surface 746 side is farther away from the catcher member 61 toward the inside of the room. The operation knob 742 is disposed so as to be manually operable in the X-axis direction. As shown in Fig. 4, the operation member 74 is disposed at an operation position OP1 (first operation position) on the forward movement side (+X direction side) by manually operating the operation knob 742 in the +X direction, and at an operation position OP2 (second operation position) on the backward movement side (-X direction side) by manually operating the operation knob 742 in the -X direction. Guide surface 743 is inclined with respect to the X-axis direction so that the end on the return movement side in the Z-axis direction is positioned closer to slider 5 (a position outside the room) than the end on the forward movement side, and the end on the return movement side of guide surface 743 is formed as a concave holding portion 743A that holds guide pin 723. Guide pin 723 and guide surface 743 form a guide mechanism, and when operating member 74 is operated to move from operating position OP2 shown in Figure 4(A) to operating position OP1 shown in Figure 4(B), the guide mechanism guides guide pin 723 to move in the -X direction relative to guide surface 743, whereby movable stopper 72 is moved from stop position P1 shown in Figure 4(A) to non-stop position P2 shown in Figure 4(B), and guide pin 723 is held by holding portion 743A. In addition, when the operating member 74 is moved from the operating position OP1 to the operating position OP2, the guide pin 723 disengages from the holding portion 743A, and the guide pin 723 is guided to move in the +X direction relative to the guide surface 743, thereby moving the movable stopper 72 from the non-stop position P2 to the stop position P1. This operating member 74 is configured to be movable in the X-axis direction between a forward operating position OP1 that positions the movable stopper 72 at the non-stop position P2 and a return operating position OP2 that releases the movable stopper 72 from the non-stop position P2.

[0017] The slider 5 reciprocates in the X-axis direction in response to the opening and closing movement of the shoji screen 3 relative to the window frame 2, and can move forward in the +X direction toward the fully open position of the shoji screen 3, and can move backward in the -X direction toward the fully closed position of the shoji screen 3. As shown in Figures 5 and 6, the slider 5 has a slider main body 51 that abuts against a movable stopper 72 located at stop position P1 during forward movement in the +X direction, a catcher member 61 that moves forward and backward relative to the slider main body 51 in the Z-axis direction, and compression coil springs 75 and 76 as biasing members that bias the catcher member 61 forward. The compression coil spring 75 is located on the forward movement side of a recessed portion 63, which will be described later. The compression coil spring 76 is located on the backward movement side of the recessed portion 63, which will be described later. The slider body 51 is formed in a block shape and integrally includes a guided portion 52 formed at the bottom so as to be guided by the rail 312, a groove portion 53 that opens on the side facing the interior of the room and in which the catcher member 61 is disposed, and a pair of spring bearing portions 54 formed on the bottom surface of the groove portion 53. The opening edge portions of the groove portion 53 of the slider body 51 that face each other in the X-axis direction are formed as engaged portions that protrude toward the inside of the opening in the X-axis direction so that a pair of end claw portions 66 (described later) of the catcher member 61 can engage in the Z-axis direction. The pair of spring bearing portions 54 support the exterior portions of the compression coil springs 75, 76 in the Z-axis direction.

[0018] The catcher member 61 integrally comprises a main body 62 formed symmetrically with respect to a virtual straight line A along the Z-axis direction, a recess 63 formed in the central portion of the main body 62 in the X-axis direction, an inclined surface 64 (first inclined surface) and an inclined surface 65 (second inclined surface) formed by extending from the opening edge portions on both sides of the recess 63 in the X-axis direction, a pair of end claw portions 66 formed on both ends of the main body 62 in the X-axis direction, and a spring support portion 67 that supports compression coil springs 75, 76. The recess 63 is recessed toward the exterior side (the retreating side of the catcher member 61) and has a pair of side surfaces 631, 632 facing each other in the X-axis direction, a bottom surface 633 continuous with the exterior-side edges of the side surfaces 631, 632, and a lower surface 634 continuous with the lower edges of the side surfaces 631, 632 and the bottom surface 633. The side surfaces 631, 632 extend along the Y- and Z-axes, the bottom surface 633 extends along the X- and Y-axes, and the lower surface 634 extends along the X- and Z-axes. The side surface 631 is positioned so that it can engage with a tip engagement surface 746 of the protrusion 745 when the slider 5 moves back in the -X direction and disengage when the catcher member 61 moves back. The side surface 632 is positioned so that its interior edge or its peripheral portion slides against a tip inclined surface 747 of the protrusion 745 when the slider 5 moves forward in the +X direction. Inclined surface 64 is continuous with the indoor-side edge of side surface 631 on the forward movement side, and is inclined with respect to the X-axis direction so as to move toward the outdoor side (slider main body 51 side) as it moves away from recess 63 in the +X direction. Inclined surface 65 is continuous with the indoor-side edge of side surface 632 on the backward movement side, and is inclined with respect to the X-axis direction so as to move toward the outdoor side (slider main body 51 side) as it moves away from recess 63 in the -X direction. The pair of end claws 66 are formed to protrude in the X-axis direction so as to be able to engage with the aforementioned engaged portions of the slider body 51 in the Z-axis direction so that the catcher member 61 does not fall out of the groove portions 53 of the slider body 51 when the catcher member 61 is in an advanced state. Note that when the catcher member 61 is retracted, the pair of end claws 66 move away from the aforementioned engaged portions of the slider body 51 toward the outside of the room. The pair of spring receiving portions 67 are formed to protrude from the rear side of the inclined surfaces 64, 65 of the main body 62 toward the exterior, and are disposed at positions spaced apart from the recessed portion 63 in the X-axis direction. The pair of spring receiving portions 67 face the pair of spring receiving portions 54 in the Z-axis direction. Therefore, the compression coil spring 75 received by the spring receiving portions 54, 67 is disposed on the forward movement side with respect to the recess 63, and the compression coil spring 76 received by the spring receiving portions 54, 67 is disposed on the backward movement side with respect to the recess 63. The compression coil springs 75, 76 and the spring receiving portions 54, 67 described above constitute a catcher biasing portion. This catcher member 61 is configured to move the operating member 74 from operating position OP1 to operating position OP2 while abutting against the protrusion 745 when the slider 5 moves back in the -X direction, and to retreat to the outside of the room against the forward force toward the inside of the room by the compression coil springs 75, 76.

[0019] The opening and closing operation of the inward-opening window 1 during normal use will be described below. The opening operation of the inward-opening window 1 from the fully closed position to the half-open position is as follows. The shoji screen 3, which is positioned in the fully closed position shown in Figure 3(A), is moved open toward the room relative to the window frame 2, and the slider 5 moves forward in the +X direction. When the shoji screen 3 is moved open to the half-open position shown in Figure 3(B), the slider 5 moves forward in the +X direction as shown in Figures 7(A) and 7(B), and the forward-movement side surface 511 of the slider body 51 abuts against the abutment portion 722 of the movable stopper 72, which is positioned at stop position P1, and the forward movement of the slider 5 in the +X direction is stopped by the movable stopper 72. This allows the shoji screen 3 to be moved from the fully closed state to the half-open state. To close the inward-opening window 1 from the half-open position to the fully closed position, the sliding door 3, which is positioned in the half-open position, is moved toward the outside of the room, and the slider 5 is moved back in the -X direction to position the sliding door 3 in the fully closed position. In the fully closed position, the sliding door 3 is positioned within the window frame 2 and can be fully closed. In this way, the inward-opening window 1 opens and closes between the fully closed position and the half-open position during normal use. Also, during normal use of the inward-opening window 1, the operating member 74 remains in the operating position OP2.

[0020] The opening and closing operation of the inward-opening window 1 during cleaning will be described below. The opening operation of the inward-opening window 1 from the fully closed position to the half-open position is the same as described above, so a description thereof will be omitted. Next, the operating member 74 is manually operated to move it from operating position OP2 to operating position OP1, and the operation of the cam mechanism described above causes the movable stopper 72 to rotate (move) from stop position P1 to non-stop position P2 against the bias of the torsion spring 73, and the movable stopper 72 is maintained in the non-stop position P2 as shown in Figure 7(C). Next, as shown in Fig. 3(C), the shoji screen 3 is moved to the fully open position, which is located on the +X side of the half-open position. At this time, the catcher member 61, which moves forward in the +X direction, is pressed against the extended sight piece 313 of the upper frame 31 and is in the retracted position as shown in Fig. 8(A), but it temporarily protrudes from the retracted position to the forward position at a position facing the opening 314 of the extended sight piece 313. The protruding catcher member 61 abuts against the protrusion 745, but since the operating member 74, which is located at the operating position OP1, is restricted from further forward movement by the case 71 and does not move, the catcher member 61 moves forward in the +X direction while being pressed against the protrusion 745 and retracts toward the outside of the room in the Z-axis direction against the bias of the compression coil springs 75, 76. Here, the forward moving catcher member 61 has its inclined surface 64 smoothly sliding against the tip inclined surface 747 of the protrusion 745, and tilts while compressing the compression coil spring 75 more than the compression coil spring 76, and retreats in the Z-axis direction. Due to the tilting, the side surface 631 also tilts with respect to the Z-axis, and the recess 63 is oriented to welcome the protrusion 745. As shown in FIG. 8 (B), when the recess 63 reaches the protrusion 745, the compression coil springs 75, 76 restore to a certain extent, and the indoor-side edge or its peripheral portion of the side surface 632 of the recess 63 abuts against the tip inclined surface 747, and further forward movement of the slider 5 causes the indoor-side edge or its peripheral portion of the side surface 632 to smoothly slide against the tip inclined surface 747. Next, as the slider 5 moves forward, the interior edge or its surrounding portion of the side surface 632 is pressed against the inclined tip surface 747, and the catcher member 61 tilts and retreats in the Z-axis direction, compressing the compression coil spring 76 more than the compression coil spring 75. This tilting also tilts the side surface 632 relative to the Z-axis, orienting it to eject the protrusion 745 from the recess 63. After the slider 5 moves forward to eject the protrusion 745 from the recess 63 in the -X direction, the slider 5 moves further forward while the inclined surface 65 of the catcher member 61 slides against the tip 748 of the protrusion 745, and the compression coil springs 75 and 76 return to their original position, positioning the catcher member 61 in the advanced position. In this way, the slider 5 passes the protrusion 745. After passing, the catcher member 61 is again pushed by the extended finger piece as the slider 5 moves forward, retreating to the retreated position.Then, by further moving the slider 5 forward in the +X direction, the shoji screen 3 moves from the half-open position to the fully open position, and can be fully opened. The closing operation of the inward-opening window 1 from the fully open position to the fully closed position is as follows. The shoji screen 3, which is positioned in the fully open position, is moved toward the outside of the room relative to the window frame 2 to close it, and the slider 5 moves back in the -X direction. As the returning slider 5 passes a position facing the movable stopper device 7, the catcher member 61 moves forward from the retracted position to the advanced position in the opening 314, and the inclined surface 65 smoothly slides against the tip 748 of the protrusion 745. At this time, the catcher member 61 tilts while compressing the compression coil spring 76 more than the compression coil spring 75, and the recess 63 is oriented to receive the protrusion 745. When the recess 63 reaches the protrusion 745, the compression coil springs 75 and 76 return to their original positions, and the tip 748 of the protrusion 745 is positioned within the recess 63, as shown in Figure 9 (A), and the side surface 631 of the recess 63 abuts and engages with the tip engagement surface 746 of the protrusion 745. As the slider 5 moves further back, the protrusion 745 moves in the -X direction, and the operating member 74 moves from the operating position OP1 to the operating position OP2, as shown in Figure 9 (B). When the operating member 74 is located at the operating position OP2, the movable stopper 72 is released from its non-stop position P2 and, urged by the torsion spring 73, attempts to move to the stop position P1, pressing against the catcher member 61. At this time, the operating member 74, which is located at the operating position OP2, is prevented from further moving back by the case 71. As the operating member 74 moves back in the -X direction, the catcher member 61 is pressed by the protrusion 745 and retreats toward the outside of the room in the Z-axis direction against the compression coil springs 75 and 76. Furthermore, when the returning slider 5 is located further to the -X direction than the movable stopper 72, the movable stopper 72 rotates to the stop position P1 while being urged by the torsion spring 73, and is again located at the stop position P1. Here, as described above, the returning catcher member 61 moves back while the inclined surface 65 is in sliding contact with the protrusion 745, the protrusion 745 is disposed in the recess 63, and the side surface 631 of the recess 63 abuts the tip engagement surface 746 of the protrusion 745, resulting in an engaged state in the X-axis direction. Thereafter, the catcher member 61 moves back in the Z-axis direction while tilting while compressing the compression coil spring 75 more than the compression coil spring 76 in response to the returning movement of the slider 5. Due to this tilting, the side surface 631 also tilts with respect to the Z-axis direction, and is oriented so as to send the protrusion 745 out of the recess 63.After the slider 5 moves backward, the protrusion 745 is sent out of the recess 63 in the +X direction, and then the inclined surface 64 comes into sliding contact with the protrusion 745 as the slider 5 moves backward, and the inclined surface 65 moves out of the opening 314 in the backward direction, abutting against the extended spot piece 313 and being pushed outward. This causes the catcher member 61 to move backward. Then, as the slider 5 moves further backward in the -X direction, the shoji screen 3 moves to the fully closed position, and can be fully closed. In this way, the inward-opening window 1 opens and closes between the fully closed and fully open positions during cleaning, with the shoji screen 3 placed in the fully open position for cleaning and then placed in the fully closed position after cleaning. Also, when the shoji screen 3 is moved back from the fully open position to the fully closed position and the slider 5 passes the movable stopper device 7, the operating member 74 is moved from the operating position OP1 to the operating position OP2, and the movable stopper 72 automatically returns from the non-stop position P2 to the stop position P1.

[0021] [Variations] In the above embodiment, a recess 63 is formed in the catcher member 61, but this shape is not limited to this, and any shape may be used as long as it abuts against the protrusion 745 when the slider 5 returns, allowing the operating member 74 to move from the operating position OP1 to the operating position OP2, and may be, for example, a convex portion protruding toward the inside of the room. In the above embodiment, the catcher member 61 is formed with inclined surfaces 64, 65, but this is not limited to this. As long as the catcher member 61 can abut against the protrusion 745 and move backward, only one of the inclined surfaces 64, 65 may be formed, or neither of the inclined surfaces 64, 65 may be formed. In the above embodiment, the movable stopper device 7 has a torsion spring 73 as a biasing portion, but this is not limited thereto and it is sufficient that the movable stopper 72 is biased so as to be able to move from the non-stop position P2 to the stop position P1, and for example, a spring portion may be formed in the movable stopper 72 itself. In the above embodiment, a pair of compression coil springs 75, 76 are provided as biasing members and are arranged on both sides of the recess 63 in the X-axis direction, but this is not limited to this. As long as the catcher member 61 is configured to be able to move forward and backward, it may have one biasing member, or it may have three or more biasing members. In the above embodiment, the tip 748 of the protrusion 745 is configured to have a tip engagement surface 746 and a tip inclined surface 747, but this is not limited to this and any configuration is acceptable as long as it can retract the catcher member 61 and move the operating member 74 from the operating position OP1 to the operating position OP2. In the above embodiment, the upper frame 31 has an extending sight piece 313, but if the inward-opening window 1 can be constructed even if this configuration is omitted, the configuration of the extending sight piece 313 may be omitted. In the above embodiment, the movable stopper device 7 side is the indoor side and the slider 5 side is the outdoor side in the Z-axis direction, but this is not limited to this, and the movable stopper device 7 side may be the outdoor side and the slider 5 side may be the indoor side. In the above embodiment, the slider 5 and the movable stopper device 7 are provided on the upper frame 31 of the inward-opening window 1, but this is not limiting and they may also be provided on the lower frame 32, for example. Furthermore, as long as the inward-opening window 1 is configured to be openable and closable, the slider 5 and the movable stopper device 7 may be attached to any one of the upper frame, lower frame or left and right vertical frames of the sliding screen of the window. In the above embodiment, the inward-opening window 1 has been described as a fixture, but other fixtures such as an outward-opening window, an inward-tilting window, an outward-tilting window, a vertical sliding window, and a horizontal sliding window may also be used.

[0022] [Summary of the invention] The opening restriction device of the present invention is an opening restriction device used for a shoji screen that opens and closes toward the inside or outside of the room relative to a frame body, and includes: a slider that is provided on the shoji screen so that it can move forward toward a fully open position of the shoji screen and return toward a fully closed position of the shoji screen in a reciprocating direction in response to the opening and closing movement of the shoji screen; a link arm that has one end rotatably connected to the frame body and the other end connected to the slider; and a movable stopper device that is attached to the shoji screen so that it can stop the forward movement of the slider at a half-open position between the fully open position and the fully closed position. The movable stopper device has a movable stopper that moves between a stop position and a non-stop position relative to the slider that moves forward; an urging part that urges the movable stopper to move to the stop position; and an operating member that operates to move the movable stopper from the stop position to the non-stop position against the urging of the urging part, is configured to be movable in the reciprocating direction between a first operating position on the forward movement side that places the movable stopper in the non-stop position and a second operating position on the return movement side that releases the movable stopper from being placed in the non-stop position, and the slider has a slider body that abuts against the movable stopper in the stop position during the forward movement of the slider, a catcher member that advances and retreats relative to the slider body in a projection direction perpendicular to the reciprocating direction, and a catcher biasing portion that biases the catcher member forward, and the operating member is formed with a protrusion that protrudes so as to be able to abut against the catcher member in the projection direction, and the catcher member is configured to move the operating member from the first operating position to the second operating position while abutting against the protrusion during the return movement of the slider, and retreat against the forward bias of the catcher biasing portion. The opening restriction device of the present invention can perform the following opening and closing operations. First, as the shoji screen moves from the fully closed position to the fully open position, the slider body moves forward and abuts against the movable stopper in the stop position, stopping the forward movement of the slider at the half-open position of the shoji screen. This allows the shoji screen to be changed from the fully closed state to the half-open state. At this time, the operating member is in the second operating position. Next, the operating member is manually operated from the second operating position to the first operating position to place the movable stopper in the non-stop position, and the slider is further moved forward to move the shoji screen from the half-open position to the fully open position, thereby allowing the shoji screen to be fully opened. At this time, the forward-moving catcher member abuts against the protrusion, but since the operating member in the first operating position does not move further forward, the catcher member is pressed against the protrusion and retracts against the catcher biasing member. This prevents elastic deformation of the protrusion. Furthermore, when the shoji screen moves from the fully open position to the fully closed position, the returning catcher member abuts against the protrusion, moving the operating member from the first operating position to the second operating position, releasing the movable stopper from its non-stop position and making it possible to move the movable stopper to the stop position. At this time, the operating member positioned in the second operating position does not move further in the returning direction, so the catcher member is pressed against the protrusion and moves backward against the catcher biasing member. At this time, as before, elastic deformation of the protrusion can be prevented. Subsequently, the slider is further returned to the fully closed position, bringing the shoji screen into a fully closed state. With this configuration, the catcher member, which can move back and forth relative to the slider body, is biased forward by the catcher biasing portion, so the range of settings for the relative positional relationship between the slider and the movable stopper device in the projection direction can be increased within the range in which the catcher member abuts and engages with the protrusion of the movable stopper device.This improves versatility for various fixtures and reduces the number of parts required.

[0023] In the opening restriction device of the present invention, the catcher member has a recess formed on its retracting side, the recess having a pair of side surfaces facing each other in the reciprocating direction, and one of the pair of side surfaces may be configured to engage with the protrusion when the slider returns and to be disengaged by the retraction of the catcher member. With this configuration, the amount of recoil that occurs in the catcher member can be reduced compared to, for example, when a convex portion rather than a concave portion is formed on the catcher member, allowing the shoji screen to move back and forth smoothly and making the slider smaller.

[0024] In the opening restriction device of the present invention, the catcher member has at least one of a first inclined surface on the forward movement side that is continuous with the recess and a second inclined surface on the return movement side that is continuous with the recess, and the at least one inclined surface may be inclined with respect to the reciprocating direction so as to move toward the slider body side as it moves away from the recess side. With this configuration, when the slider has a first inclined surface, even if the first inclined surface abuts against the protrusion during the forward movement of the slider, the protrusion slides along the first inclined surface as the catcher member retracts, thereby minimizing the resistance to the forward movement of the slider, and when the slider has a second inclined surface, even if the second inclined surface abuts against the protrusion during the backward movement of the slider, the catcher member slides along the first inclined surface as the catcher member retracts, thereby minimizing the resistance to the backward movement of the slider. As a result, the catcher member can be smoothly retracted.

[0025] In the opening limiting device of the present invention, the catcher biasing portion may have biasing members that are respectively arranged at a position on the forward movement side and a position on the backward movement side with respect to the recess. With this configuration, when the protrusion slides on the first inclined surface or the second inclined surface, tilting of the catcher member may occur, but compared to the case where, for example, a single biasing member is provided, the catcher member can be stably biased as desired by the biasing members provided at the forward and backward movement positions relative to the recess. Also, tilting of the catcher member may occur when the protrusion provided in the recess tries to come out of the recess due to reciprocating movement, but the catcher member can be stably biased in the same manner as described above.

[0026] In the opening restriction device of the present invention, the protrusion portion may be formed with a tip portion having a tip engagement surface on the forward movement side that is aligned with the projection direction, and a tip inclined surface on the return movement side that is inclined with respect to the reciprocating direction so that a position on the side away from the tip engagement surface than the position on the tip engagement surface side is away from the catcher member. With this configuration, when the slider moves forward, the edge or surrounding portion of the other of the pair of side surfaces of the recess slides along the tip inclined surface described above, allowing the slider to move forward smoothly. On the other hand, when the slider moves back, one side of the recess abuts against the tip engagement surface mentioned above, so a greater moving force is applied to the protrusion than when the edge or its surrounding portion of the other side slides along the tip inclined surface, thereby allowing the operating member to be moved stably from the first operating position to the second operating position by the slider moving back.

[0027] The fitting of the present invention is characterized by comprising a frame body, a shoji screen that opens and closes relative to the frame body toward the inside or outside of the room, and the opening restriction device of the present invention described above. With this configuration, a fixture can be constructed that can achieve the same effects as the opening restriction device described above.

[0028] In the building fixture of the present invention, the shoji screen is composed of an upper frame, a lower frame, left and right vertical frames, and a face material, and the slider is provided so that it can move back and forth on any one of the upper frame, the lower frame, and the left and right vertical frames, and the movable stopper device is attached, and the frame material has an extended sight piece portion that extends toward the outer periphery of the shoji screen in its sight direction, and the slider and the movable stopper device are arranged with the extended sight piece portion between them in the sight direction, and an opening may be formed in the extended sight piece portion so that the movable stopper and the catcher member can appear and disappear in the sight direction. According to this configuration, the movable stopper and catcher member appear and disappear through an opening formed in the extended sight piece of the frame, making it possible to make the protrusion of the operating member and the movable stopper in the non-stop position less noticeable. Furthermore, since the catcher member only needs to protrude toward the protrusion through the opening in the extended sight piece and abut against the protrusion, the slider can be positioned closer to the extended sight piece than when using a slider that does not have a retractable catcher member, and therefore the slider and movable stopper device can be positioned closer to each other in the projection direction. Furthermore, by positioning the slider and movable stopper device closer to each other, the protrusion dimension of the movable stopper device that abuts against the catcher member can be reduced accordingly. [Explanation of symbols]

[0029] 1...Inward-opening window (door), 10...Link arm, 2...Window frame (frame body), 21...Upper frame, 22...Lower frame, 23...Hanging vertical frame (vertical frame), 24...Door end vertical frame (vertical frame), 3...Shoji, 31...Upper frame, 311...Outer peripheral projection surface portion, 312...Rail, 313...Extended sight piece portion, 314, 316...Opening, 315...Sight surface portion, 32...Lower frame, 33...Hanging vertical frame (vertical frame ), 34...door end vertical stile (vertical stile), 35...surface material, 4...opening limiting device, 5...slider, 51...slider body, 511...surface, 52...guided portion, 53...groove portion, 54, 67...spring receiving portion, 61...catcher member, 62...body, 63...recess, 631, 632...side surface, 633...bottom surface, 634...lower surface, 64, 65...inclined surface (first inclined surface, second inclined surface), 66...end claw portion, 7...movable stopper device, 71...case, 711...outer case, 712, 744...long hole, 713...pin, 72...movable stopper, 721...contact surface, 722...contact portion, 723...guide pin, 724...guided portion, 725...middle portion, 726...shaft portion, 73...torsion spring (biasing portion), 74...operating member, 741...sliding body, 742...operating knob, 743...guide surface, 743A...holding portion, 745...projection portion, 746...tip engaging surface, 747...tip inclined surface, 748...tip portion, 75, 76...compression coil spring (biasing member), A...imaginary straight line, C...axis center, OP1, OP2...operating position (first operating position, second operating position), P1...stop position, P2...non-stop position.

Claims

1. An opening restriction device used for a shoji screen that opens and closes to the inside or outside of the room relative to the frame body, A slider provided on the shoji screen so as to be able to move forward toward a fully open position of the shoji screen and to move back toward a fully closed position of the shoji screen in a reciprocating direction in response to the opening and closing movement of the shoji screen; a link arm having one end rotatably connected to the frame and the other end connected to the slider; a movable stopper device attached to the shoji screen so as to be able to stop the forward movement of the slider at a half-open position between the fully open position and the fully closed position; the movable stopper device includes a movable stopper that moves between a stop position and a non-stop position relative to the slider that moves forward, a biasing portion that biases the movable stopper to move it to the stop position, and an operating member that operates to move the movable stopper from the stop position to the non-stop position against the biasing force of the biasing portion, the operating member is configured to be movable in the reciprocating direction between a first operating position on a forward movement side at which the movable stopper is disposed at the non-stop position and a second operating position on a return movement side at which the movable stopper is released from the non-stop position, The slider has a slider body that abuts against the movable stopper that is at the stop position during the forward movement of the slider, a catcher member that advances and retreats relative to the slider body in a projection direction perpendicular to the reciprocating direction, and a catcher biasing portion that biases the catcher member forward, The operating member is formed with a protrusion that protrudes in the projection direction and is capable of contacting the catcher member, The catcher member is configured to move the operating member from the first operating position to the second operating position while abutting against the protrusion portion during the return movement of the slider, and to retreat against the forward biasing force of the catcher biasing portion. An opening limiting device characterized by:

2. The opening limiting device according to claim 1, The catcher member has a recess formed on its retreating side, The recess has a pair of side surfaces that face each other in the reciprocating direction, One of the pair of side surfaces is configured to engage with the protrusion when the slider moves back and to be disengaged when the catcher member moves backward. An opening limiting device characterized by:

3. The opening limiting device according to claim 2, the catcher member has at least one inclined surface of a first inclined surface on a forward movement side that is continuous with the recessed portion and a second inclined surface on a backward movement side that is continuous with the recessed portion, The at least one inclined surface is inclined with respect to the reciprocating direction so as to move toward the slider body side as it moves away from the recess side. An opening limiting device characterized by:

4. The opening limiting device according to claim 3, The catcher biasing portion has biasing members that are respectively disposed at positions on the forward movement side and the backward movement side with respect to the recess. An opening limiting device characterized by:

5. The opening limiting device according to claim 2, The protrusion has a tip end portion having a tip engagement surface on the forward movement side along the projection direction and a tip inclined surface on the backward movement side that is inclined with respect to the reciprocating direction so that a position on the side away from the tip engagement surface is away from the catcher member. An opening limiting device characterized by:

6. A shoji screen that opens and closes toward the inside or outside of a room relative to the frame, and the opening restriction device according to any one of claims 1 to 5. A fixture characterized by:

7. In the fitting according to claim 6, The shoji screen is composed of an upper frame, a lower frame, left and right vertical frames, and a surface material. The slider is provided so as to be able to reciprocate, and the movable stopper device is attached to any one of the upper frame, the lower frame, and the left and right vertical frames; The frame has an extending piece extending toward the outer periphery of the shoji screen in its direction of view, The slider and the movable stopper device are arranged with the extended piece portion therebetween in the projection direction, The extending piece portion has an opening through which the movable stopper and the catcher member can appear and disappear in the projection direction. A fixture characterized by:

Citation Information

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