Fitting

The building fixture with anti-detachment members secures shoji screens by compressing and deforming to maintain engagement, addressing frame bending and thermal deformation issues, ensuring the screen remains in place and preventing rattling.

JP2026021647APending Publication Date: 2026-02-10LIXIL CORP
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Patent Information

Application Number
JP2025203209
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-11-25
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

Shoji screens can come off the frame due to frame bending, poor construction, or thermal deformation caused by direct sunlight, leading to engagement issues and rattling.

Method used

A building fixture with an upper and lower frame and vertical frames, featuring grooves and anti-detachment members that compress and deform to secure the shoji screen ends, ensuring engagement even when the screen moves or deforms.

Benefits of technology

Prevents the shoji screen from coming off the frame by maintaining engagement, providing airtightness, and preventing rattling, while allowing easy installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide fittings capable of preventing a sash from coming off from a frame body by maintaining an engagement state between the sash and an upper frame even if the sash moves downward or a position of an upper sash bar of the sash is lowered.SOLUTION: A frame body having an upper frame, a lower frame, and left and right vertical frames, the upper frame and the lower frame each having a groove portion; And an upper latching member that is provided on an upper end surface of the sash so as to protrude upward and prevents the sash from coming off the upper frame, wherein the upper latching member is compressed and deformed when the upper end portion of the sash is pressed against an inner bottom surface of the groove portion of the upper frame, and the upper latching member can return to an original state when the pressing is released.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present disclosure relates to building materials. [Background technology]

[0002] Conventionally, there is known a fitting in which the upper and lower parts of a shoji screen are stored and supported in a Kendon style in rail grooves provided in the upper and lower frames, and the shoji screen is not supported by the left and right vertical frames (see, for example, Patent Document 1). In this fitting, a stopper member that protrudes into the rail groove of the lower frame is provided at the fixed part of the handle of the lower rail of the shoji screen to prevent the shoji screen from coming off the lower frame when it is lifted up due to vertical shaking caused by an earthquake. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2018-184709 Summary of the Invention [Problem to be solved by the invention]

[0004] The inventor further investigated other causes of the shoji screen coming off the frame, other than the case where it comes off the lower frame due to vertical shaking caused by an earthquake. As a result, it was found that if the lower frame is bent due to poor construction of the frame, the shoji screen may move downward, releasing the engagement between the shoji screen and the upper frame, causing the shoji screen to come off the frame.

[0005] Furthermore, because direct sunlight generally shines on fittings from outside the room and penetrates primarily around the lower periphery of the fittings, thermal deformation can occur, causing the lower rail of a shoji screen to shrink in the viewing direction. Furthermore, when the heat of direct sunlight softens the lower rail, the weight of the glass and other surface materials contained within the shoji screen can cause the lower rail to bend, deforming the screen and reducing its vertical dimension. When the vertical dimension of the shoji screen decreases, the position of the upper rail of the shoji screen drops, changing the engagement between the screen and the frame, which can cause the screen to rattle or come off the frame.

[0006] Therefore, the inventor discovered the problem of preventing the shoji from coming off the frame by maintaining the engagement between the shoji and the upper frame even if the shoji moves downward or the position of the upper rail of the shoji drops. [Means for solving the problem]

[0007] The building fixture disclosed herein comprises a frame body having an upper frame, a lower frame, and left and right vertical frames, with grooves in each of the upper and lower frames; a shoji screen having a surface material on the inside of a frame body having upper slats, lower slats, and left and right vertical frames, and held in the upper and lower frames by having its upper and lower ends inserted into the grooves, respectively; and an upper anti-detachment member that protrudes upward from the upper end surface of the shoji screen and prevents the shoji screen from coming off the upper frame, wherein the upper anti-detachment member is compressed and deformed when the upper end of the shoji screen is pressed against the inner bottom surface of the groove in the upper frame, and is capable of returning to its original state when the pressing force is released. [Brief explanation of the drawings]

[0008] [Figure 1] This is a front view of the building fixture seen from inside the room. [Figure 2] FIG. 2 is a longitudinal cross-sectional view taken along line AA in FIG. [Figure 3] FIG. 2 is a cross-sectional view taken along line BB in FIG. [Figure 4] This is an enlarged perspective view showing the lower part of the interior side of the building material. [Figure 5] FIG. 2 is an enlarged perspective view of the upper end of the shoji screen. [Figure 6] This is a vertical cross-sectional view showing how a shoji screen is attached to a frame of a building fixture. [Figure 7] 10A and 10B are diagrams showing the state in which the upper anti-detachment member is pressed and deformed. [Figure 8] 10A and 10B are diagrams showing the steady state of the upper anti-detachment member after the pressing force is released. [Figure 9] FIG. 2 is an enlarged perspective view of the upper end of the shoji screen. [Figure 10] FIG. 10 is an enlarged vertical cross-sectional view showing how the shoji screen shown in FIG. 9 is attached to an upper frame. [Figure 11] FIG. 10 is an enlarged vertical cross-sectional view showing the state in which the shoji screen shown in FIG. 9 has been completely attached to the frame. [Figure 12] FIG. 2 is an enlarged perspective view of the upper end of the shoji screen. [Figure 13] FIG. 2 is an enlarged perspective view of the upper end of the shoji screen. [Figure 14] 14 is an enlarged perspective view of an upper anti-detachment member of the shoji screen shown in FIG. 13. FIG. [Figure 15] FIG. 2 is an enlarged perspective view of the upper end of the shoji screen. [Figure 16] FIG. 16 is an enlarged vertical cross-sectional view showing an upper part of the fitting having the shoji screen shown in FIG. [Figure 17] FIG. 17 is a vertical cross-sectional view of the upper anti-detachment member shown in FIG. [Figure 18] FIG. 18 is a vertical cross-sectional view taken along line CC in FIG. [Figure 19] This is an enlarged vertical cross-sectional view showing the upper part of a fitting having a shoji screen. DETAILED DESCRIPTION OF THE INVENTION

[0009] Each embodiment of the fittings of the present disclosure will be described in detail below with reference to the drawings. The fittings in the embodiments are shown as a fixed window 1. The fixed window 1 is a so-called fixed window, and is attached to the inside of a frame 101 provided along the inner periphery of a rectangular opening 100 in the building frame. The fixed window 1 does not open or close the opening 100 except when the shoji screen 3 is removed for cleaning or the like.

[0010] FIG. 1 is a front view of a fixed window 1 as seen from the indoor side. In the following figures, the X1 direction indicates the outdoor side of the fixed window 1, and the X2 direction indicates the indoor side of the fixed window 1. Another window (not shown), such as a fixed window or sliding window, may be attached inside the frame 101 on the outdoor side of the fixed window 1. This creates a double-glazed window inside the frame 101, further improving thermal insulation and soundproofing. The fixed window 1 of this embodiment can be retrofitted to the indoor side of an existing window (not shown).

[0011] The fixed window 1 comprises a frame 2 provided inside the frame 101, a shoji screen 3 housed inside the frame 2, a lower stop member 4, and an upper stop member 5. The frame 2 is formed by framing an upper frame 21, a lower frame 22, and left and right vertical frames 23, 23 in a rectangular shape. The shoji screen 3 is removably fitted inside the frame 2. The lower stop member 4 and upper stop member 5 are both members that prevent the shoji screen 3 from coming off the frame 2.

[0012] The upper frame 21 of the frame body 2 is integrally extruded from a resin material. The upper frame 21 has a first hollow portion 211 with a rectangular cross-section and hollow structure located on the outdoor side, a second hollow portion 212 with a rectangular cross-section and hollow structure located on the indoor side, and a flat base portion 213 that connects the upper ends of the first hollow portion 211 and the second hollow portion 212. The first hollow portion 211, the second hollow portion 212, and the base portion 213 extend over the entire length of the upper frame 21 in the extension direction. The first hollow portion 211 and the second hollow portion 212 protrude downward from the base portion 213 at the same height.

[0013] The first hollow portion 211 and the second hollow portion 212 are arranged parallel to each other and spaced apart in the indoor / outdoor direction. As a result, a groove portion 214 is formed between the first hollow portion 211, the second hollow portion 212 and the base portion 213, spanning the entire length of the upper frame 21 in the extension direction. The groove portion 214 is open downward and accommodates the upper end of the shoji screen 3. The base portion 213 forms the inner bottom surface of the groove portion 214.

[0014] The lower end of the first hollow portion 211 is provided with a sealing portion 215 that protrudes toward the inside of the room and elastically contacts the outside surface of the shoji screen 3. The lower end of the second hollow portion 212 is provided with a fin portion 216 that protrudes toward the outside of the room and elastically contacts the inside surface of the shoji screen 3. The upper frame 21 is fixed to the upper inner surface of the frame 101 with screws (not shown) that pass through the base portion 213.

[0015] The lower frame 22 of the frame body 2 is integrally extruded from a resin material. The lower frame 22 has a first hollow portion 221 having a hollow structure with a rectangular cross section and located on the outdoor side, a second hollow portion 222 having a hollow structure with a rectangular cross section and located on the indoor side, and a flat base portion 223 connecting the lower ends of the first hollow portion 221 and the second hollow portion 222. The first hollow portion 221, the second hollow portion 222, and the base portion 223 extend over the entire length of the extension direction of the lower frame 22. In this embodiment, the first hollow portion 221 and the second hollow portion 222 protrude upward from the base portion 223 at the same height, but they do not necessarily have to protrude at the same height.

[0016] The first hollow portion 221 and the second hollow portion 222 are arranged parallel to each other and spaced apart in the indoor / outdoor direction. As a result, a groove portion 224 is formed between the first hollow portion 221, the second hollow portion 222 and the base portion 223, spanning the entire length of the lower frame 22 in the extension direction, similar to the upper frame 21. The groove portion 224 opens upward and accommodates the lower end of the shoji screen 3. The base portion 223 forms the inner bottom surface of the groove portion 224.

[0017] A sealing portion 225 is integrally formed at the upper end of the first hollow portion 221, protruding toward the inside of the room and elastically contacting the outside surface of the shoji screen 3. A fin portion 226 is integrally formed at the upper end of the second hollow portion 222, protruding toward the outside of the room and elastically contacting the inside surface of the shoji screen 3. The lower frame 22 is fixed to the lower inner surface of the frame 101 by screws (not shown) that pass through the base portion 223.

[0018] 2, a plurality of resin liners 227 that support the lower end of the shoji screen 3 are provided at predetermined intervals inside the groove 224 of the lower frame 22. The liners 227 are formed in a block shape and have a height slightly lower than the height of the first hollow portion 221 and the second hollow portion 222 of the lower frame 22. Therefore, the lower end surface of the shoji screen 3 accommodated in the groove 224 of the lower frame 22 is placed on the upper surface of the liners 227, and is positioned slightly lower than the upper end surfaces of the first hollow portion 221 and the second hollow portion 222 of the lower frame 22.

[0019] The vertical frames 23 of the frame body 2 are each integrally extruded from a resin material into a substantially L-shape. The vertical frames 23 extend vertically between the upper frame 21 and the lower frame 22. The vertical frames 23 have base portions 231 extending a predetermined width along the vertical direction of the frame 101, exterior wall portions 232 extending at a substantially right angle from the exterior ends of the base portions 231 toward the inside of the frame 101, and abutment pieces 233 extending at a substantially right angle from the interior ends of the exterior wall portions 232 toward the interior.

[0020] The contact pieces 233, 233 are formed narrower than the base plate parts 231, 241 so as to come into contact with the exterior surface of the shoji screen 3. Sealing parts 234, 234 that elastically come into contact with the exterior surface of the shoji screen 3 are integrally formed at the tips of the contact pieces 233, 233. The vertical frames 23, 23 are fixed to the inner surfaces of the left and right sides of the frame 101 by screws (not shown) that pass through the base plate parts 231, 231, respectively.

[0021] The shoji screen 3 is constructed by fitting a surface material 34 such as glass through a glazing channel 341 inside a rectangular frame body 30 made up of an upper frame 31, a lower frame 32, and left and right vertical frames 33, 33. The surface material may be double-glazed glass made up of two sheets of glass. In the case of double-glazed glass, it is held in place by a retaining member made of soft PVC attached to the frame body.

[0022] As shown in Fig. 2, the upper and lower crosspieces 31 and 32 are each made up of a metal core 311, 321, resin cover materials 312, 322 that cover the outside and inside surfaces of the core, and resin upper and lower cover materials 313 and 323 that are attached to the upper and lower end surfaces of the resin cover materials 312, 322. As shown in Figs. 3 and 5, the vertical stiles 33, 33 are each made up of a metal core 331, 331, resin cover materials 332, 332 that cover the outside of the core, and end cover materials 333, 333 that cover the upper and lower end surfaces of the vertical stiles 33, 33, respectively.

[0023] As shown in FIG. 1, the shoji screen 3 has a vertically-hung structure in which an upper sash 31 and a lower sash 32 are arranged between left and right vertical frames 33. Specifically, the left and right vertical frames 33 extend over the entire length of the shoji screen 3 in the vertical direction. The upper sash 31 and the lower sash 32 are arranged between the left and right vertical frames 33, and connect the upper ends and lower ends of the vertical frames 33, respectively. End cover materials 333 on the upper and lower end faces of the vertical frames 33 are arranged flush with the upper end cover material 313 of the upper sash 31 and the lower end cover material 323 of the lower sash 32, respectively. A roughly U-shaped handle 35 is attached to the center of the interior-facing surface of the lower sash 32.

[0024] The lower anti-slip member 4 is the same member as the conventional one, and is positioned between one of the pair of bases 351, 351 of the handle 35 and the interior side surface 32a of the lower rail 32 of the shoji screen 3, as shown in Figures 1, 2 and 4.

[0025] As shown in FIG. 4 , the lower retaining member 4 includes a retaining portion 41, which is a vertically elongated rectangular metal or resin case; a locking tongue 42 made of a metal plate housed inside the retaining portion 41; and a vertically elongated hole 43 that penetrates from the retaining portion 41 to the locking tongue 42. The locking tongue 42 is formed as a long plate that is longer in the vertical direction than the retaining portion 41. Approximately the upper half of the locking tongue 42 is inserted into the retaining portion 41. Approximately the lower half of the locking tongue 42 protrudes from the retaining portion 41 into the groove 224 of the lower frame 22. Because the upper end surface 41 a of the retaining portion 41 is closed, the locking tongue 42 inside the retaining portion 41 does not move upward. The corners of the locking tongue 42 protruding from the retaining portion 41 are rounded.

[0026] The lower anti-removal member 4 is attached to the indoor surface 32a of the lower rail 32 with a fixing screw 44. More specifically, the lower anti-removal member 4 is positioned between the indoor surface 32a of the lower rail 32 of the shoji screen 3 before it is attached to the frame 2 and the base 351 of the handle 35. The lower anti-removal member 4 is temporarily fixed by loosely fitting the fixing screw 44 that attaches the base 351 into the screw insertion hole of the base 351. At this time, the lower anti-removal member 4 has been moved upward so that the shank 431 (see FIG. 2) of the fixing screw 44 is positioned at the lower end of the elongated hole 43 so as not to interfere with the insertion of the lower end of the shoji screen 3 into the groove 224 of the bottom frame 22. Therefore, the lower anti-removal member 4 is temporarily fixed in a position higher than the final installation position.

[0027] As will be described later, after the shoji screen 3 is fitted into the frame body 2 using the Kendon method, the lower anti-detachment member 4 is slid downward along the elongated hole 43. As a result, the locking tongue 42 is inserted into the groove 224 of the lower frame 22 through the gap between the second hollow portion 222 of the lower frame 22 and the lower rail 32 of the shoji screen 3, as shown in FIG. 2 . The locking tongue 42 in the groove 224 protrudes downward beyond the lower-end cover material 323 of the lower rail 32 of the shoji screen 3 and is positioned between the liner 227 and the second hollow portion 222 of the lower frame 22. The lower end 42a of the locking tongue 42 is close to the base portion 223 of the lower frame 22. Then, by tightening the fixing screw 44, the lower anti-detachment member 4 is sandwiched between the lower rail 32 and the base 351 of the handle 35 and fixed to the lower rail 32. Since the shaft 431 of the fixing screw 44 is disposed at the upper end of the elongated hole 43, the locking tongue 42 in the holding portion 41 does not move downward.

[0028] By attaching the lower stopper member 4 to the lower rail 32 of the shoji screen 3, even if the shoji screen 3 moves upward due to vertical shaking caused by an earthquake, the locking tongue 42 remains engaged with the groove 224 of the lower frame 22. This prevents the lower end of the shoji screen 3 from coming off the lower frame 22.

[0029] Next, the upper anti-detachment member 5 will be described with reference to Figures 1, 2 and 5. The upper anti-detachment member 5 is attached to the upper surface 313a of the upper end cover material 313 of the upper rail 31 of the shoji screen 3. The upper surface 313a of the upper end cover material 313 is the upper end surface of the shoji screen 3. The upper anti-detachment member 5 protrudes upward from the upper surface 313a of the upper end cover material 313 towards the base portion 213 in the groove portion 214 of the upper frame 21. Two upper anti-detachment members 5 are provided at the upper end of the shoji screen 3, spaced apart in the left-right direction, but the number of upper anti-detachment members 5 can be increased or decreased as appropriate depending on the size of the shoji screen 3.

[0030] In a steady state where it is not being pressed, the upper anti-slip member 5 protrudes at a predetermined height from the upper surface 313a of the upper end cover material 313 of the shoji screen 3. As will be described later, when the upper end of the shoji screen 3 is inserted into the groove 214 of the upper frame 21 by the Kendon method and pressed against the base plate 213, which is the inner bottom surface of the groove 214, the upper anti-slip member 5 is compressed and deformed, and can return to its original state when the pressing force is released.

[0031] The upper anti-detachment member 5 has a pair of plate-like members 51, 51 arranged in a roughly V-shape when viewed from the indoor / outdoor direction, and a fixing portion 52 arranged between the pair of plate-like members 51, 51. The upper anti-detachment member 5 is fixed at the fixing portion 52 to the upper surface 313a of the upper end cover material 313 with fixing members 52a such as screws or rivets. The plate-like member 51 is compressed and easily elastically deformed when pressed against the base plate portion 213, and can return to its original steady state when the pressing force is released. The plate-like member 51 makes it easy to build the compressible and returnable upper anti-detachment member 5 into the shoji screen 3. The plate-like member 51 may be a metal plate or a resin plate.

[0032] The pair of plate-like members 51, 51 are formed integrally with the fixed portion 52 so as to protrude obliquely upward from the fixed portion 52 to both sides in the longitudinal direction of the upper crosspiece 31. The longitudinal direction of the upper crosspiece 31 is the width direction of the shoji screen 3 shown in Figure 1. The tip portions 51a, 51a of each plate-like member 51, 51 are each smoothly curved slightly downward.

[0033] Next, a method for inserting the shoji screen 3 into the frame body 2 using the Kendon method will be described. As shown in Fig. 6, the shoji screen 3 is inserted into the groove 214 of the upper frame 21 and the groove 224 of the lower frame 22 from the inside of the room using the Kendon method. That is, first, with the upper end of the shoji screen 3 tilted toward the outside of the room, the upper end of the shoji screen 3 is inserted deep into the groove 214 of the upper frame 21. When the shoji screen 3 is inserted deep into the groove 214, as shown in Fig. 7, the tip ends 51a, 51a of the pair of plate-like members 51, 51 abut against the base plate 213, which is the inner bottom surface of the groove 214. Because the tip ends 51a, 51a are smoothly curved downward, damage to the base plate 213 is suppressed.

[0034] When the upper end of the shoji screen 3 is pressed further toward the base plate 213, the upper anti-detachment member 5 is compressed and elastically deforms so that the plate-like members 51, 51 open outward. This reduces the height of the upper anti-detachment member 5. Therefore, there is no risk that the upper anti-detachment member 5 will interfere with the insertion of the shoji screen 3 into the groove 214, and the shoji screen 3 can be inserted deep into the groove 214.

[0035] After inserting the shoji screen 3, the lower end of the shoji screen 3 is moved toward the outside of the room and aligned with the groove 224 of the lower frame 22. Then, the shoji screen 3 is lowered and the lower end of the shoji screen 3 is inserted into the groove 224 of the lower frame 22. As a result, the upper and lower ends of the shoji screen 3 are accommodated in the grooves 214 and 224, respectively, and the shoji screen 3 is fitted and held in place between the upper frame 21 and the lower frame 22. The vertical frames 23 abut the sealing portions 234 against the vertical stiles 33 of the shoji screen 3 from the outside of the room, thereby restricting the position of the shoji screen 3 on the outside. The vertical frames 23 only abut the sealing portions 234 on the outside surface of the shoji screen 3, and do not hold the shoji screen 3 in place. The sealing portion 215 and fin portion 216 of the upper frame 21 abut against the upper end of the shoji screen 3 from the outside and inside of the room, respectively, thereby ensuring airtightness, preventing the upper end of the shoji screen 3 from rattling, and blocking the intrusion of dust and other foreign matter from outside. The sealing portion 225 and fin portion 226 of the lower frame 22 abut against the lower end of the shoji screen 3 from the outside and inside of the room, respectively, thereby ensuring airtightness, preventing the lower end of the shoji screen 3 from rattling, and blocking the intrusion of dust and other foreign matter from outside.

[0036] When the shoji screen 3 is attached to the frame 2, the pressure on the upper anti-detachment member 5 is released. As shown in Figure 8, the released upper anti-detachment member 5 returns to its original, steady state and protrudes a predetermined height from the upper surface 313a of the upper-end cover material 313 within the groove 214. The upward-protruding upper anti-detachment member 5 in the steady state increases the engagement of the upper end of the shoji screen 3 with the upper frame 21. Therefore, even if the shoji screen 3 moves downward or the position of the upper crosspiece 31 of the shoji screen 3 drops, the engagement between the groove 214 and the shoji screen 3 is maintained, preventing the shoji screen 3 from coming off the frame 2. Because the plate-like member 51 protrudes obliquely upward along the length of the upper crosspiece 31, the plate-like member 51 can support the load across its width when the upper end of the shoji screen 3 moves in a direction away from the interior of the room. This effectively prevents the upper end of the shoji screen 3 from coming off the upper frame 21.

[0037] In the steady state, the tip ends 51 a, 51 a of the upper anti-detachment member 5 are in contact with the base plate portion 213 in the groove portion 214 , but they do not necessarily have to be in contact with the base plate portion 213 .

[0038] The inclination direction of plate-shaped member 51 of upper anti-detachment member 5 may be arranged in the indoor-outdoor direction as shown in Fig. 9. Plate-shaped member 51 of upper anti-detachment member 5 shown in Fig. 9 protrudes obliquely upward from the outdoor side toward the indoor side on upper surface 313a of upper end cover material 313. Plate-shaped member 51 is provided with through-holes 51b through which fixing members 52a are inserted.

[0039] In the case of this upper anti-detachment member 5, as shown in Figure 10, when the upper end of the shoji screen 3 is pressed against the base plate portion 213, the plate-like member 51 elastically deforms to overlap the fixing portion 52, reducing the height dimension. When the pressure on the upper anti-detachment member 5 is released, as shown in Figure 11, the upper anti-detachment member 5 returns to its original steady state, protruding at a predetermined height from the upper surface 313a of the upper end cover material 313 within the groove portion 214. Therefore, the same effect as above can be obtained.

[0040] The plate-like member 51 of this upper anti-detachment member 5 protrudes diagonally upward from the outside toward the inside of the room, so the direction in which the shoji screen 3 is pushed toward the groove 214 coincides with the direction in which the plate-like member 51 falls. Therefore, the upper anti-detachment member 5 can be smoothly deformed when the upper end of the shoji screen 3 is pushed into the groove 214. The tip 51a of the plate-like member 51 with the highest protrusion is positioned inside the room, so a large vertical distance can be secured to maintain the engagement between the shoji screen 3 and the upper frame 21.

[0041] The plate-like member 51 of the upper anti-detachment member 5 may protrude in a mountain-like shape from the upper surface 313a of the upper end cover material 313 of the shoji screen 3 along the length of the upper rail 31. As shown in FIG. 12, the plate-like member 51 of the upper anti-detachment member 5 is formed in a mountain-like shape that protrudes diagonally upward from the fixed portion 52 toward one side of the length of the upper rail 31, and then extends diagonally downward toward the tip 51a. The tip 51a side is a free end that is not fixed. The mountain-like plate-like member 51 may be formed with a smoothly continuous curved surface along the length of the upper rail 31.

[0042] In the case of the upper anti-detachment member 5 that protrudes in a mountain-like shape, when pressed, the tip 51a moves along the length of the upper crosspiece 31, elastically deforming relative to the fixed portion 52, thereby reducing the height dimension. When the pressure on the upper anti-detachment member 5 is released, the upper anti-detachment member 5 returns to its original, steady state and protrudes a predetermined height from the upper surface 313a of the upper end cover material 313 within the groove 214. This achieves the same effect as above. When pressed, the mountain-shaped plate member 51 elastically deforms while moving along the length of the upper crosspiece 31, so it is easily compressed by being pressed. Therefore, the upper end of the shoji screen 3 can be easily inserted into the groove 214 with little pressing force.

[0043] The upper anti-detachment member 5 is not limited to being provided on the upper rail 31 of the shoji screen 3. The upper anti-detachment member 5 may be provided on the upper end of the vertical stile 33, as shown in FIG. 13. The upper anti-detachment member 5 shown in FIG. 13 is made of a resin end cover material 333 on the upper end side of the vertical stile 33 of the shoji screen 3. The end cover material 333 is a member that connects the vertical stile 33 and the upper rail 31. The upper anti-detachment member 5 made of the end cover material 333 is attached to the upper end surface of the vertical stile 33 by means of mounting legs 333b. This upper anti-detachment member 5 may also be attached to the upper end surfaces of the left and right vertical stiles 33, 33 of the shoji screen 3, respectively.

[0044] The plate-like member 51 of the upper anti-detachment member 5 is made of resin and is formed integrally with the upper surface 333a of the end cover material 333. The upper surface 333a of the end cover material 333 is the upper end surface of the shoji screen 3. The plate-like member 51 protrudes diagonally upward from the outer longitudinal edge of the upper rail 31 on the upper surface 333a of the end cover material 333, toward the inside of the upper rail 31. The same effect as above can be obtained when an upper anti-detachment member 5 is provided at the upper end of the stile 33. Because this upper anti-detachment member 5 is formed integrally with the end cover material 333 of the stile 33, it is low cost, and the upper anti-detachment member 5 can be easily provided on the shoji screen 3 by simply attaching the end cover material 333 to the stile 33.

[0045] The inclination direction of the plate-shaped member 51 formed integrally with the upper surface 333a of the end cover material 333 may be such that it protrudes diagonally upward from the inside of the upper rail 31 outward in the lengthwise direction, or such that it protrudes diagonally upward from the outside edge of the upper surface 333a toward the inside of the room.

[0046] 15 to 18 show an upper anti-removal member 6 which is different from the above-described upper anti-removal member 5 having a plate-like member 51. This upper anti-removal member 6 has a movable member 61, a base member 62 which attaches the movable member 61 to the upper surface 313a of the upper end cover material 313, and a plurality of springs 63 which elastically support the movable member 61 within the base member 62.

[0047] The movable member 61 has a T-shaped cross section and includes an upper plate 611 that extends along the length of the upper rail 31 and is parallel to the upper surface 313a of the upper end cover material 313, and legs 612 that protrude downward from the center of the upper plate 611 in the indoor / outdoor direction. The legs 612 are provided over the entire length of the upper plate 611 in the longitudinal direction. The lower ends of the legs 612 have locking portions 613, 613 that protrude toward the outside and inside of the room, respectively. A plurality of spring mounting holes 614 are formed in the lower end surfaces of the legs 612 at intervals along the length. The movable member 61 may be made of metal or resin.

[0048] The base member 62 is disposed inside the upper rail 31 along the longitudinal direction of the upper rail 31, and is formed in the shape of a container having an opening 621 that opens toward the upper surface 313a of the upper end cover material 313. A pair of parallel support walls 622, 622 extending upward along the longitudinal direction of the base member 62 are provided on the upper surface of the base member 62. The opening 621 is formed between the pair of support walls 622, 622.

[0049] The distance between the pair of support walls 622, 622 is equal to or greater than the width of the legs 612 of the movable member 61 in the indoor / outdoor direction, but is smaller than the width of the locking portions 613, 613 at the lower ends of the legs 612 in the indoor / outdoor direction, and is also smaller than the width of the base member 62 in the indoor / outdoor direction. Therefore, step portions 623, 623 are formed between the opening 621 and the inside of the base member 62.

[0050] The base member 62 accommodates the legs 612 of the movable member 61 so as to be sandwiched between a pair of support walls 622, 622 and movable in the vertical direction. The vertical movement of the movable member 61 is smoothly supported by the pair of support walls 622, 622. When the movable member 61 moves upward, the locking portions 613 at the lower ends of the legs 612 come into contact with and are locked against steps 623, 623 in the base member 62. This restricts the upward position of the movable member 61.

[0051] The springs 63 are attached in the spring attachment holes 614. The lower ends of the springs 63 rest on the bottom surface 62a inside the base member 62. In a steady state where the springs 63 are not compressed, the movable member 61 protrudes most upward from the upper surface 313a of the upper end cover material 313 of the shoji screen 3, separating the upper panel 611 from the upper surface 313a of the upper end cover material 313. The springs 63 are not limited to coil springs, and may be leaf springs or the like.

[0052] When this upper anti-detachment member 6 is pressed, the spring 63 is compressed, and the movable member 61 moves downward toward the inside of the base member 62. In other words, the movable member 61 deforms so that its protruding height decreases. When the pressure on the upper anti-detachment member 6 is released, the spring 63 expands, and the movable member 61 returns to its normal state in which it protrudes furthest above the upper surface 313a of the upper end cover material 313. With the upper anti-detachment member 6 returned to its normal state, the upper end of the shoji screen 3 is more firmly attached to the upper frame 21, so even if the shoji screen moves downward, there is no risk of the shoji screen 3 coming off the upper frame 21. Because the movable member 61 itself does not deform, it is highly effective in preventing the upper end of the shoji screen 3 from coming off the upper frame 21.

[0053] 19 also shows an upper anti-removal member 7, which is different from the above-mentioned upper anti-removal member 5 having a plate-like member 51. This upper anti-removal member 7 has a cylindrical member 71 made of resin that can be elastically deformed when compressed. The cylindrical member 71 protrudes upward from the upper end surface of the shoji screen 3.

[0054] The tubular member 71 is made of a resin material such as nylon and is formed into a cylindrical shape with both ends open in the longitudinal direction. The lower surface of the tubular member 71 is provided with a pair of engaging legs 72, 72 that are inserted into and engage with mounting holes 312b formed in the upper surface 312a of the resin cover material 312 of the upper rail 31 of the shoji screen 3. The tubular member 71 is attached to the upper surface 312a of the resin cover material 312, so that it also serves as the upper end cover material for the upper rail 31.

[0055] The tubular member 71 has an outer shell 711 formed in a rectangular shape when viewed longitudinally, and a single wall 712 that divides the interior of the outer shell 711 in the vertical direction. Because the tubular member 71 is hollow, when pressed when inserting the shoji screen 3 into the groove 214 using the Kendon method, it is compressed and easily elastically deforms, and when the pressure is released, it easily returns to its normal state. The upper end of the shoji screen 3 is more firmly attached to the upper frame 21 by the tubular member 71 that has returned to its normal state, so even if the shoji screen 3 drops downward, there is no risk of the shoji screen 3 coming off the upper frame 21. Because the tubular member 71 can be extruded longitudinally, a low-cost upper anti-detachment member 7 can be easily formed.

[0056] The upper anti-removal member 7 may be attached to the upper surface 312a of the resin cover material 312 of the upper rail 31 with fixing members such as screws or rivets. The upper anti-removal member 7 may be glued to the upper surface 312a of the resin cover material 312 of the upper rail 31. The upper anti-removal member 7 may be provided over the entire length of the upper rail 31, or multiple short upper anti-removal members may be provided at intervals along the length of the upper rail 31. The cross-sectional shape of the outer shell portion 711 is not limited to a rectangular shape and may be a circular shape, semicircular shape, or the like. The outer shell portion 711 may not have any internal wall portion 712, or two or more wall portions 712 may be provided. The upper anti-removal member 7 may be provided on the upper end surface of the vertical frame 33. The cylindrical member 71 may be provided on the upper end surface of the shoji screen 3 so that the openings at both ends face the interior and exterior directions.

[0057] The fixed window 1, which is a fixture shown in the above embodiment, has the following effects: The fixed window 1 has a frame body 2 having an upper frame 21, a lower frame 22, and left and right vertical frames 23, 23, with grooves 214, 224 in the upper frame 21 and lower frame 22, respectively, a shoji screen 3 having an upper crosspiece 31, a lower crosspiece 32, and left and right vertical frames 33, 33, with a face material 34 on the inside of the frame body 30, and whose upper and lower ends are inserted into the grooves 214, 224, respectively, to be held in the upper frame 21 and lower frame 22, and upper stopper members 5, 6, 7 that protrude upward from the upper end surface of the shoji screen 3 and prevent the shoji screen 3 from coming off the upper frame 21. The upper anti-detachment members 5, 6, and 7 are compressed and deformed when the upper end of the shoji screen 3 is pressed against the base plate 213, which is the inner bottom surface of the groove 214 of the upper frame 21, and can return to their original state when the pressure is released. Thus, the upper anti-detachment members 5, 6, and 7, which protrude upward in a steady state, increase the engagement of the upper end of the shoji screen 3 with the upper frame 21. Even if the shoji screen 3 moves downward or the position of the upper rail 31 of the shoji screen 3 drops for some reason, the engagement between the groove 214 and the shoji screen 3 can be maintained. Therefore, the shoji screen 3 is prevented from coming off the frame 2. When the upper end of the shoji screen 3 is inserted into the groove 214 of the upper frame 21, the upper anti-detachment members 5, 6, and 7 are pressed and their height dimensions are reduced, so there is no risk that the upper anti-detachment members 5, 6, and 7 will interfere with the insertion of the shoji screen 3 into the groove 214.

[0058] If the upper anti-slip member 5 has an elastically deformable plate-like member 51 that protrudes from the upper end surface of the shoji screen 3 toward the base plate portion 213, which is the inner bottom surface of the groove portion 214 of the upper frame 21, a compressible and reversible upper anti-slip member 5 can be easily constructed on the shoji screen 3.

[0059] When the plate-like member 51 protrudes diagonally upward from the upper end surface of the shoji screen 3 along the length of the upper sash 31, the load exerted when the upper end of the shoji screen 3 moves in a direction away from the inside of the room can be supported by the plate-like member 51 in the width direction of the board, which is highly effective in preventing the upper end of the shoji screen 3 from coming off the upper frame 21.

[0060] When the plate-like member 51 protrudes obliquely upward from the outside of the upper end face of the shoji screen 3 toward the inside of the room, the direction in which the shoji screen 3 is pushed toward the groove 214 coincides with the direction in which the plate-like member 51 falls. Therefore, when the upper end of the shoji screen 3 is pushed into the groove 214, the upper anti-detachment member 5 can be smoothly deformed. Because the tip 51a of the plate-like member 51 with the highest protrusion height is positioned on the inside of the room, a large vertical distance can be secured to maintain the engagement between the shoji screen 3 and the upper frame 21.

[0061] If the plate-like member 51 protrudes in a mountain-like shape from the upper end surface of the shoji screen 3 along the length of the upper crosspiece 31, it will elastically deform while moving along the length of the upper crosspiece 31 when pressed, and will therefore be easily compressed by pressing. Therefore, the upper end of the shoji screen 3 can be easily inserted into the groove 214 with little pressing force.

[0062] The upper stopper member 6 has a movable member 61 that is movable up and down. The movable member 61 itself does not elastically deform, so it is highly effective in preventing the upper end of the shoji screen 3 from coming off the upper frame 21.

[0063] The upper anti-detachment member 7 has an elastically deformable resin cylindrical member 71. The cylindrical member 71 can be extruded in the length direction, so the upper anti-detachment member 7 can be easily formed at low cost. [Explanation of symbols]

[0064] 1 FIX window (door and fixture), 2 frame body, 21 upper frame, 213 base part (inner bottom surface of groove part), 22 lower frame, 23 vertical frame, 3 shoji screen, 30 frame body, 31 upper sash, 313a upper surface (upper end surface of shoji screen), 32 lower sash, 33 vertical frame, 333a upper surface (upper end surface of shoji screen), 34 surface material, 5 upper stopper member, 51 plate-shaped member, 6 upper stopper member, 61 movable member, 7 upper stopper member, 71 cylindrical member

Claims

[Claim 1] a frame body having an upper frame, a lower frame, and left and right vertical frames, with grooves in the upper frame and the lower frame; A shoji screen has a surface material on the inside of a frame body having an upper crosspiece, a lower crosspiece, and left and right vertical crosspieces, and is held in the upper frame and the lower frame by inserting the upper end and the lower end into the grooves, respectively; An upper stopper member is provided on the upper end surface of the shoji screen so as to protrude upward and prevent the shoji screen from coming off the upper frame, The upper anti-slip member is a fixture that is compressed and deformed when the upper end of the shoji screen is pressed against the inner bottom surface of the groove portion of the upper frame, and can return to its original state when the pressure is released.

Citation Information

Patent Citations

  • Sash, sash, come-off prevention member and mounting method of sash

    JP2018184709A