Screen doors and building materials with screen doors
The screen door design with tension applying portions addresses mesh bending issues by allowing adjustable tension, ensuring the mesh remains taut and preventing sagging, thus maintaining the door's appearance.
Patent Information
- Application Number
- JP2021124970
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-07-30
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2041-07-30
AI Technical Summary
Conventional frameless screen doors suffer from mesh bending due to unadjustable tension, leading to a deterioration in appearance.
A screen door design featuring edge members with tension applying portions that contact the mesh from the indoor side, applying tension and providing an elastic restoring force to maintain mesh tension, with the outdoor end of the tension applying portion located outside the fitting groove.
The design allows for adjustable mesh tension, preventing sagging and maintaining the screen door's appearance by elastically deforming to absorb installation variations and suppress sagging.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present disclosure relates to screen doors and screened fittings. [Background technology]
[0002] Conventionally, frameless screen doors with resin attachments on all four peripheries have been known. For example, the screen door described in Patent Document 1 is attached by fitting the attachments into fitting grooves provided in the frame of the fixture.
[0003] Patent Document 1 discloses a screen door having vertical attachments that hold the left and right edges of the screen and fit into fitting grooves in the vertical frame, and horizontal attachments that fit into fitting grooves in the horizontal frame into which the top and bottom edges of the screen are inserted. The screen door is stretched left and right when the vertical attachments fit into the fitting grooves in the vertical frame, and is stretched up and down when the horizontal attachments fit into the fitting grooves in the horizontal frame. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Publication No. 2019-148107 Summary of the Invention [Problem to be solved by the invention]
[0005] If the mesh portion bends after the screen door is attached to the frame, the appearance of the screen door deteriorates because the tension of the mesh portion cannot be adjusted.
[0006] The present disclosure has been made in consideration of the above points, and aims to provide a screen door and a fitting with a screen door that allows the tension of the mesh to be adjusted. [Means for solving the problem]
[0007] The present disclosure relates to a method for manufacturing a door and window fixture, comprising: a rectangular mesh portion having edges extending in a first direction and a second direction perpendicular to each other; a first edge member arranged along the edge of the mesh portion extending in the first direction and attached to the frame body when the mesh portion is fitted into a fitting groove provided in the frame body of a door and window fixture; and a second edge member arranged along the edge of the mesh portion extending in the second direction and attached to the frame body when the mesh portion is fitted into a fitting groove provided in the frame body, wherein at least one of the first edge member and the second edge member has a tension applying portion that contacts the mesh portion from the indoor side and applies tension to the edge side when the mesh portion is fitted into the fitting groove, and the outdoor end of the tension applying portion is located on the outdoor side of the mesh portion pulled out of the fitting groove, and the tension applied by the tension applying portion is applied by the tension applying portion that contacts the mesh portion pulled out of the fitting groove. is in front This is an elastic restoring force toward the edge side that occurs when the screen is elastically deformed in the opposite direction to the edge side. [Brief explanation of the drawings]
[0008] [Figure 1] FIG. 1 is a vertical cross-sectional view showing the structure of the fixture. [Figure 2] FIG. 1 is a cross-sectional view showing the structure of the fixture. [Figure 3] This is a front view of the screen door seen from the indoor side. [Figure 4] 10 is a view showing the state in which the vertical edge member is removed from the fitting groove. FIG. [Figure 5] FIG. 10 is a view showing the state in which the vertical edge member is attached to the fitting groove. [Figure 6] 10 is a view showing the state in which the horizontal edge member is removed from the fitting groove. FIG. [Figure 7] 10 is a view showing the state in which the horizontal edge member is attached to the fitting groove. FIG. [Figure 8] 10A and 10B are diagrams showing how to attach a screen door to a frame. [Figure 9] 10A and 10B are diagrams showing how to attach a screen door to a frame. [Figure 10] 10A and 10B are diagrams showing how to remove the screen door from the frame. DETAILED DESCRIPTION OF THE INVENTION
[0009] Hereinafter, embodiments of the screen door and fittings with screen door of the present disclosure will be described with reference to Figures 1 to 10. The following embodiments show one aspect of the present disclosure, do not limit the disclosure, and can be modified as desired within the scope of the technical concept of the present disclosure. In the following drawings, the scale and number of each structure may differ from the actual structure to make each configuration easier to understand.
[0010] The overall structure of the screen door fitting 1 will be described. As shown in Fig. 1, the screen door fitting 1 comprises a frame 2 that is attached to an opening (not shown) formed in the wall of a building, and a screen 4 that is stretched over the frame 2. In the following description, the screen door fitting 1 will be simply referred to as fitting 1. In other words, fitting 1 corresponds to the screen door fitting 1.
[0011] When the fitting 1 attached to an opening in a building is viewed from the indoor side, the direction that is up and down is referred to as the up-down direction, and the direction that is left and right is referred to as the left-right direction. The up-down direction corresponds to the first direction. The left-right direction corresponds to the second direction. In the fitting 1, the direction that is perpendicular to the left-right direction and runs along the indoor-outdoor direction is called the view direction.
[0012] The fitting 1 is, for example, a composite fitting having a frame 2 made of a metal such as aluminum and a resin such as polyvinyl chloride, and has excellent thermal insulation properties. The frame 2 has a pair of upper and lower frames 21 and 22 arranged opposite each other in the vertical direction and extending in the left-right direction, and as shown in Figure 2, a pair of vertical frames 23 and 24 arranged opposite each other in the left-right direction and extending in the vertical direction. The upper and lower frames 21 and 22 correspond to the second frame. The vertical frames 23 and 24 correspond to the first frame. The vertical frame 23 is arranged on the left side. The vertical frame 24 is arranged on the right side. The upper and lower frames 21 and 22 are connected to the vertical frames 23 and 24, respectively, at both ends in the left-right direction. The frame 2 is assembled in a so-called vertical through-beam configuration, where the vertical frames 23 and 24 are connected to the upper and lower frames 21 and 22, respectively. The material of the pair of upper and lower frames 21 and 22 and the pair of vertical frames 23 and 24 is not particularly limited, and extruded materials using aluminum, resin, etc. can be used.
[0013] The screen door 4 is a frameless screen door in which the end of the mesh portion 41 is directly attached to the frame body 2. The screen door 4 is detachably stretched across the upper frame 21, lower frame 22, and vertical frames 23, 24 of the frame body 2. Specifically, the upper frame 21 and the lower frame 22 have mating grooves 26 formed as recessed grooves on their respective visible surfaces 21a, 22a. The mating grooves 26 extend in the left-right direction. The mating grooves 26 are formed over the entire lengths of the upper frame 21 and the lower frame 22. The vertical frames 23, 24 have mating grooves 25 formed as recesses on their respective visible surfaces 23a, 24a. The mating grooves 25 extend in the up-down direction. The mating grooves 25 are formed over the entire lengths of the vertical frames 23, 24. The mating grooves 25 and the mating grooves 26 are located at the same position in the visible direction and are connected to each other around the four periphery of the frame body 2.
[0014] The screen door 4 is tensioned when its upper and lower edges are detachably fitted into the fitting grooves 26 of the upper frame 21 and the lower frame 22. The screen door 4 is tensioned at its four peripheral edges by its left and right edges being detachably fitted into the fitting grooves 25 of the vertical frames 23 and 24.
[0015] The configuration of the screen door 4 will be described in more detail with reference to Fig. 3. The top and bottom of the screen door 4 shown in Fig. 3 correspond to the top and bottom of the fitting 1 shown in Fig. 1.
[0016] The screen door 4 has a rectangular mesh portion 41, a pair of vertical edge members 42, 42, and a pair of horizontal edge members 43, 43. The pair of vertical edge members 42, 42 extend in the vertical direction. The pair of vertical edge members 42, 42 are arranged on the left and right edges of the mesh portion 41. The vertical edge members 42, 42 correspond to first edge members. The pair of vertical edge members 42, 42 are arranged along the left and right edges of the mesh portion 41 extending in the vertical direction.
[0017] The pair of horizontal edge members 43, 43 extend in the left-right direction. The pair of horizontal edge members 43, 43 are arranged on the upper and lower edges of the mesh portion 41. The horizontal edge members 43, 43 correspond to the second edge members. The pair of horizontal edge members 43, 43 are arranged along the upper and lower edges extending in the left-right direction of the mesh portion 41. The vertical edge member 42 is an attachment that fits into the fitting groove 25 of the vertical frame 23 or vertical frame 24 of the frame body 2. The horizontal edge member 43 is an attachment that fits into the fitting groove 26 of the upper frame 21 or lower frame 22 of the frame body 2.
[0018] The mesh portion 41 has a rectangular mesh main body 411 and a tape portion 412. The tape portion 412 has a locking member 412a and a flexible member 412b. The flexible member 412b is, for example, a flexible cloth material. The flexible member 412b extends from the mesh main body 411 on both sides in the up-down direction and on both sides in the left-right direction. The flexible member 412b extends from the four peripheral edges of the mesh main body 411. The flexible member 412b is, for example, sewn to the mesh main body 411. The flexible member 412b may be glued to the mesh main body 411.
[0019] A plurality of locking members 412a are provided along the outer edge of the flexible member 412b. The locking members 412a are formed thicker than the flexible member 412b. The locking members 412a of the vertical tape portions 412 located on the left and right sides of the net portion 41 are formed over the entire vertical length of the net portion 41. The locking members 412a of the horizontal tape portions 412 located above and below the net portion 41 do not extend over the entire horizontal length of the net portion 41, but rather a predetermined gap is provided between the locking members 412a of the vertical tape portions 412 so that the vertical tape portions 412 can be inserted into the vertical edge member 42, as described below. As an example, the tape portion 412 is formed from a fastener tape half having teeth as the locking members 412a.
[0020] The vertical edge members 42 are attached by engaging with the tape portions 412 on the vertical sides of the mesh portion 41 when the screen door 4 is not attached to the frame body 2 of the fitting 1. The horizontal edge members 43 are separate and do not engage with the mesh portion 41 when the screen door 4 is not attached to the frame body 2 of the fitting 1. Because the horizontal edge members 43 are separate from the mesh portion 41, the mesh portion 41 can be easily rolled up around one of the vertical edge members 42 before being attached to the frame body 2 and after being removed from the frame body 2, thereby reducing packaging. This allows for space savings when storing and transporting the mesh portion 41.
[0021] The configuration of the fitting grooves 25, 26 will be described with reference to Figures 4 and 6. As shown in Figure 4, the vertical fitting groove 25 is a recessed groove capable of accommodating the vertical edge member 42. The inner surface 251a, which is located on the indoor side of the fitting groove 25, has an engaging protrusion 252a that extends along the longitudinal direction and protrudes toward the outdoor side. The inner surface 251b, which is located on the outdoor side of the fitting groove 25, has an engaging protrusion 252b that extends along the longitudinal direction and protrudes toward the indoor side. The pair of engaging protrusions 252a, 252b face each other with a gap between them, narrowing the entrance of the fitting groove 25. The tip surfaces 253a, 253b of the engaging protrusions 252a, 252b are formed in a tapered shape that widens toward the outside of the fitting groove 25. The engaging protrusions 252a, 252b are located at the same position in the depth direction of the fitting groove 25. The depth direction of the fitting groove 25 is the direction in which the vertical edge member 42 is inserted into the fitting groove 25. A bottom surface 254 in the fitting groove 25 is formed as a substantially flat surface.
[0022] As shown in FIG. 6 , the lateral fitting grooves 26 are recessed grooves capable of accommodating the lateral edge members 43. Similar to the fitting groove 25, the inner surface 261a located on the indoor side of the fitting groove 26 has an engaging protrusion 262a extending along the longitudinal direction and protruding toward the outdoor side. The inner surface 261b located on the outdoor side of the fitting groove 26 has an engaging protrusion 262b. The engaging protrusion 262b extends along the longitudinal direction and protrudes toward the indoor side. The pair of engaging protrusions 262a, 262b face each other with a gap between them, narrowing the entrance of the fitting groove 26. The tip surfaces 263a, 263b of the engaging protrusions 262a, 262b are tapered and widen toward the outside of the fitting groove 26. The engaging protrusions 262a, 262b are located at the same position in the depth direction of the fitting groove 26. The depth direction of the fitting groove 26 is the direction in which the horizontal edge member 43 is inserted into the fitting groove 26. A bottom surface 264 in the fitting groove 26 is formed as a substantially flat surface.
[0023] 6 shows the fitting groove 26 arranged on the lower frame 22 side. The fitting groove 26 arranged on the upper frame 21 side has a pair of engagement protrusions 262a, 262b on inner surfaces 261a, 261b, similar to the fitting groove 26 arranged on the lower frame 22 side.
[0024] The positions in the front direction of the inner side surface 251a and the engaging protrusion 252a in the fitting groove 25 are the same as the positions in the front direction of the inner side surface 261a and the engaging protrusion 262a in the fitting groove 26. The cross-sectional shape of the engaging protrusion 252a in the fitting groove 25 is the same as the cross-sectional shape of the engaging protrusion 262a in the fitting groove 26. The positions in the front direction of the inner side surface 251b and the engaging protrusion 252b in the fitting groove 25 are the same as the positions in the front direction of the inner side surface 261b and the engaging protrusion 262b in the fitting groove 26. The cross-sectional shape of the engaging protrusion 252b in the fitting groove 25 is the same as the cross-sectional shape of the engaging protrusion 262b in the fitting groove 26.
[0025] The configuration of the vertical edge member 42 will be explained using Figure 4. The left and right vertical edge members 42 on the vertical side have the same structure except that the cross-sectional shapes perpendicular to the longitudinal direction are symmetrical about an axis extending in the projection direction, so below, only the vertical edge member 42 on the vertical frame 23 side shown in Figure 4 will be explained.
[0026] The vertical edge member 42 is attached to the frame 2 when fitted into the fitting groove 25. The vertical edge member 42 has a pair of side plate portions 421a, 421b, a bottom plate portion 422, arcuate surfaces 423a, 423b, a push-in portion 424, a first protruding plate portion 425, a second protruding plate portion 426, a pair of inner engaging portions 428a, 428b, a first outer engaging portion 429b, a second outer engaging portion 429a, and a tension applying portion 42A.
[0027] The side plate portion 421a extends in the left-right direction and is located on the indoor side of the screen door 4. The side plate portion 421b extends in the left-right direction and is located on the outdoor side of the screen door 4. The pair of side plate portions 421a, 421b are separated by a gap in the front direction. The pair of side plate portions 421a, 421b are arranged parallel to each other. The gap between the pair of side plate portions 421a, 421b is provided over the entire length of the vertical edge member 42. The bottom plate portion 422 extends in the front direction. The bottom plate portion 422 connects the left ends of the pair of side plate portions 421a, 421b. The vertical edge member 42, which includes the pair of side plate portions 421a, 421b and the bottom plate portion 422, is formed into a roughly U-shape in side view that opens to the right. The outer surface from the side plate portion 421a to the bottom plate portion 422 is a smooth arc surface 423a. The outer surface from the side plate portion 421b to the bottom plate portion 422 is a smooth arc surface 423b.
[0028] The push-in portion 424 is used when removing the vertical edge member 42 fitted in the fitting groove 25 from the fitting groove 25. The push-in portion 424 protrudes to the right from the right end of the side plate portion 421a. When the vertical edge member 42 is fitted in the fitting groove 25, the push-in portion 424 protrudes outward from the fitting groove 25 further than the engaging protrusion 252a. The push-in portion 424 has a first portion 424a, a second portion 424b, and a third portion 424c. The first portion 424a inclines toward the exterior as it moves from the right end of the side plate portion 421a toward the outside of the fitting groove 25. When the vertical edge member 42 is fitted in the fitting groove 25, the first portion 424a inclines toward the engaging protrusion 252b as it moves outward from the fitting groove 25 further than the engaging protrusion 252a. The second portion 424b extends from the tip of the first portion 424a in a direction toward the outside of the fitting groove 25. The third portion 424c extends from the tip of the second portion 424b at least toward the indoor side. In this embodiment, the third portion 424c extends from the tip of the second portion 424b toward both the indoor side and the outdoor side.
[0029] Because the pushing portion 424 has the first portion 424a, the area facing the indoor side is longer than in a case where the first portion 424a is not present and the second portion 424b extends from the right end of the side panel portion 421a in a direction toward the outside of the fitting groove 25. When pushing the pushing portion 424 toward the outdoor side from the indoor side, the contact length between the finger and the pushing portion 424 is increased, allowing the pushing portion 424 to be firmly pushed toward the outdoor side. The third portion 424c extending from the tip of the second portion 424b toward the indoor side is longer, and the area facing the inside of the fitting groove 25 is longer. When removing the vertical edge member 42 from the inside to the outside of the fitting groove 25, the contact length between the finger and the pushing portion 424 is increased, allowing the finger to be firmly caught in the pushing portion 424, making it easy to apply force in the removal direction.
[0030] The horizontal length of pushing portion 424, that is, the horizontal length from the left end of first portion 424a to the right end of third portion 424c, is preferably 3 mm or more, and more preferably 5 mm or more. When pushing portion 424 has a horizontal length of 3 mm or more, pushing portion 424 can be firmly pushed from the indoor side to the outdoor side.
[0031] The first protruding plate portion 425 extends from the inner surface of the indoor-side side plate portion 421a toward the outdoor-side side plate portion 421b, forming a first gap 430 along the longitudinal direction between it and the side plate portion 421b. The second protruding plate portion 426 extends from the inner surface of the bottom plate portion 422 toward the first protruding plate portion 425, forming a second gap 431 along the longitudinal direction between it and the first protruding plate portion 425. A space 432 is formed inside the vertical edge member 42, surrounded by the indoor-side side plate portion 421a, the bottom plate portion 422, the first protruding plate portion 425, and the second protruding plate portion 426.
[0032] The width of the second gap 431 between the first protruding plate portion 425 and the second protruding plate portion 426 is large enough to allow the flexible member 412b of the tape portion 412 to be inserted but not allow the locking member 412a to pass through. The locking member 412a of the tape portion 412 on the vertical side of the mesh portion 41 is accommodated in the space 432 from one longitudinal end side of the vertical edge member 42. The locking member 412a is locked to the second protruding plate portion 426 from the indoor side. The flexible member 412b is inserted successively through the second gap 431 and the first gap 430 and pulled out to the outside of the vertical edge member 42. The vertical edge member 42 is attached in an engaged state to the vertical side edge portion of the mesh portion 41.
[0033] The inner engagement portion 428a is located on the outer surface of the intersection between the side plate portion 421a and the arcuate surface 423a and extends along the longitudinal direction. The inner engagement portion 428b is located on the outer surface of the intersection between the side plate portion 421b and the arcuate surface 423b and extends along the longitudinal direction. The inner engagement portions 428a and 428b are located at the same position in the left-right direction. The maximum distance in the front direction between the inner engagement portions 428a and 428b is longer than the minimum distance in the front direction between the engagement protrusions 252a and 252b in the fitting groove 25. The distance between the indoor side surface of the side plate portion 421a and the outdoor side surface of the side plate portion 421b is equal to or less than the minimum distance in the front direction between the engagement protrusions 252a and 252b in the fitting groove 25. When the vertical edge member 42 is inserted into the fitting groove 25, the inner engagement portions 428a, 428b elastically overcome the engagement protrusions 252a, 252b in the fitting groove 25, and when they engage with the engagement protrusions 252a, 252b from the inside of the fitting groove 25, the vertical edge member 42 is held in the fitting groove 25.
[0034] The distance between the leftmost end of the vertical edge member 42 and the inner engaging portions 428a, 428b is shorter than the distance from the bottom surface 254 of the fitting groove 25 to the engaging protrusions 252a, 252b. When the vertical edge member 42 is inserted into the fitting groove 25 and the inner engaging portions 428a, 428b engage with the engaging protrusions 252a, 252b from the inside of the fitting groove 25, the vertical edge member 42 does not come into contact with the bottom surface 254, and the vertical edge member 42 is held within the fitting groove 25 away from the bottom surface 254.
[0035] The second outer engagement portion 429a protrudes indoors from the intersection of the side plate portion 421a and the first portion 424a. The second outer engagement portion 429a extends indoors. The forward position of the tip of the second outer engagement portion 429a is closer to the indoor side than the indoor side surface of the side plate portion 421a. When the vertical edge member 42 is fitted into the fitting groove 25, the indoor-side tip of the second outer engagement portion 429a is located indoors than the tip surface 253a of the engagement protrusion 252a. When the vertical edge member 42 is fitted into the fitting groove 25, the second outer engagement portion 429a can engage with the engagement protrusion 252a from outside the fitting groove 25.
[0036] The first outer engagement portion 429b protrudes toward the exterior from the right end of the side plate portion 421b. The left-right position of the first outer engagement portion 429b is the same as the left-right position of the second outer engagement portion 429a. The first outer engagement portion 429b extends toward the exterior. The front end of the first outer engagement portion 429b is located closer to the exterior than the exterior side surface of the side plate portion 421b. When the vertical edge member 42 is fitted into the fitting groove 25, the outdoor-side front end of the first outer engagement portion 429b is located closer to the exterior than the tip surface 253b of the engagement protrusion 252b. When the vertical edge member 42 is fitted into the fitting groove 25, the first outer engagement portion 429b can engage with the engagement protrusion 252b from outside the fitting groove 25. The entire vertical edge member 42 is made of a hard material. The vertical edge member 42 can be easily fitted into the fitting groove 25 and removed while the influence of temperature, such as hardening at low temperatures, is suppressed.
[0037] When the vertical edge member 42 is fitted into the fitting groove 25 and restricts the position of the net portion main body 411 in the projection direction of the net portion 41 pulled out from the vertical edge member 42, the tensioning portion 42A contacts the net portion 41 from the indoor side and applies tension to the edge portion side. The tensioning portion 42A is provided on the right end side of the third portion 424c of the pushing portion 424. The tensioning portion 42A extends from the third portion 424c to the outdoor side. The outdoor-side tip of the tensioning portion 42A is located on the outdoor side of the first outer engagement portion 429b and is also located on the outdoor side of the net portion 41 pulled out from the fitting groove 25 when the vertical edge member 42 is fitted into the fitting groove 25. The outdoor-side tip of the tensioning portion 42A is located on the indoor side of the inner surface 251b of the vertical frame 23 when the vertical edge member 42 is fitted into the fitting groove 25.
[0038] When the vertical edge member 42 is fitted into the fitting groove 25, the tension applying portion 42A restricts the position of the vertical side in the projection direction on the indoor side relative to the left-right edge of the mesh main body 411, as shown in FIG. 2. When the vertical edge member 42 is fitted into the fitting groove 25, the inner surface 251b restricts the position of the vertical side in the projection direction on the outdoor side relative to the left-right edge of the mesh main body 411, as shown in FIG. 2. The projection direction positions of the left-right edge of the mesh main body 411 are restricted between the tension applying portion 42A and the inner surface 251b. When the vertical edge member 42 is fitted into the fitting groove 25, the tension applying portion 42A is positioned on the indoor side and in the left-right direction more inward than the flexible member 412b of the mesh portion 41, as a whole, in the up-down direction. When tensioning portion 42A is positioned inside flexible member 412b in the left-right direction, tensioning portion 42A visually conceals flexible member 412b, improving the design. Flexible member 412b can also be visually concealed by extending third portion 424c, which is made of a hard material, toward the exterior. If third portion 424c extends toward the exterior, there is a risk that the extended portion of third portion 424c may damage mesh main body 411 during the installation and removal of screen door 4. Soft tensioning portion 42A improves the design without damaging mesh main body 411.
[0039] In one example, the tensioned portion 42A of the vertical edge member 42 is formed using soft polyvinyl chloride. In one example, the vertical edge member 42 is formed using hard polyvinyl chloride except for the tensioned portion 42A. In one example, the tensioned portion 42A has a Shore hardness A of 50 or more and 100 or less. In one example, the vertical edge member 42 except for the tensioned portion 42A has a Shore hardness D of 65 to 85. The tensioned portion 42A is made of a softer material than the vertical edge member 42 except for the tensioned portion 42A. In one example, the vertical edge member 42 is manufactured by molding the vertical edge member 42 except for the tensioned portion 42A using hard polyvinyl chloride, and then molding the tensioned portion 42A using soft polyvinyl chloride. The vertical edge member 42 is a two-color molded body. When the vertical edge member 42 is molded by two-color molding, the vertical edge member 42 can be manufactured efficiently. The vertical edge member 42 may be manufactured by molding the vertical edge member 42 except for the tensioned portion 42A using hard polyvinyl chloride, and then fixing the tensioned portion 42A with an adhesive.
[0040] When the vertical edge member 42 is fitted into the fitting groove 25, the tensioning portion 42A contacts the mesh portion 41 from the indoor side and applies tension to the edge portion. The tensioning portion 42A applies tension to the left-right edge portion of the mesh portion 41 that it is in contact with. Because the tensioning portion 42A is made of soft polyvinyl chloride, as shown in Figure 5, when the vertical edge member 42 is fitted into the fitting groove 25 and the mesh portion 41 is tensioned, the outdoor-side tip elastically deforms, bending inward in the left-right direction as shown by the solid line from the shape before the mesh portion 41 is tensioned, as shown by the two-dot chain line. The left-right inner side is the opposite side to the edge portion of the mesh portion 41. The elastically deformed tensioning portion 42A generates an elastic restoring force toward the left-right edge portion as shown by the arrow in Figure 5. The elastic restoring force of the tensioning portion 42A applies tension to the edge portion of the mesh portion 41. As a result, even if there is sagging or shrinkage of the screen door 4 due to manufacturing variations during installation, the tensioning portion 42A can elastically deform to absorb variations in the installation dimensions of the screen door. If sagging occurs after installation, the tensioning portion 42A can apply tension to the edge side of the mesh portion 41 to suppress the sagging.
[0041] The configuration of the horizontal edge member 43 will be described using Fig. 6. The upper and lower horizontal edge members 43 have the same structure except that the cross-sectional shapes perpendicular to the longitudinal direction are symmetrical about an axis extending in the projection direction, so the following will describe the horizontal edge member 43 on the lower frame 22 side shown in Fig. 6.
[0042] As shown in Figure 4, the locking member 412a is locked to the second projecting plate portion 426 from the indoor side, and the flexible member 412b is pulled outward through the second gap 431 and the first gap 430. The left and right end faces of the horizontal edge member 43 face the vertical edge member 42 fitted in the fitting groove 25.
[0043] The cross-sectional shape of the horizontal edge member 43 perpendicular to the left-right direction is the same as and has the same dimensions as the cross-sectional shape of the vertical edge member 42 perpendicular to the up-down direction shown in Fig. 4. Because the cross-sectional shape of the horizontal edge member 43 perpendicular to the left-right direction is the same as and has the same dimensions as the cross-sectional shape of the vertical edge member 42 perpendicular to the up-down direction, the number of management steps can be reduced, which contributes to cost reduction.
[0044] 6, the horizontal edge member 43 is attached to the lower frame 22 of the frame body 2 when fitted into the fitting groove 26. The horizontal edge member 43 has a pair of side plate portions 521a, 521b, a bottom plate portion 522, arcuate surfaces 523a, 523b, a push-in portion 524, a first protruding plate portion 525, a second protruding plate portion 526, a pair of inner engaging portions 528a, 528b, a first outer engaging portion 529b, a second outer engaging portion 529a, and a tension applying portion 43A.
[0045] The side plate portion 521a extends in the vertical direction and is located on the indoor side of the screen door 4. The side plate portion 521b extends in the vertical direction and is located on the outdoor side of the screen door 4. The pair of side plate portions 521a, 521b are arranged parallel to each other and separated by a gap in the front direction. The gap between the pair of side plate portions 521a, 521b is provided over the entire length of the horizontal edge member 43. The bottom plate portion 522 extends in the front direction. The bottom plate portion 522 connects the lower ends of the pair of side plate portions 521a, 521b. The horizontal edge member 43, which includes the pair of side plate portions 521a, 521b and the bottom plate portion 522, is formed into a generally U-shape in side view that opens upward. The outer surface from the side plate portion 521a to the bottom plate portion 522 is a smooth arc surface 523a. The outer surface from the side plate portion 521b to the bottom plate portion 522 is a smooth arc surface 523b.
[0046] The push-in portion 524 is used when removing the horizontal edge member 43 fitted in the fitting groove 26 from the fitting groove 26. The push-in portion 524 protrudes upward from the upper end of the side plate portion 521a. When the horizontal edge member 43 is fitted in the fitting groove 26, the push-in portion 524 protrudes outward from the fitting groove 26 beyond the engaging protrusion 262a. The push-in portion 524 has a first portion 524a, a second portion 524b, and a third portion 524c. The first portion 524a slopes toward the exterior as it extends from the upper end of the side plate portion 521a toward the outside of the fitting groove 26. When the horizontal edge member 43 is fitted in the fitting groove 26, the first portion 524a slopes toward the exterior as it extends outward from the fitting groove 26 beyond the engaging protrusion 262a. The second portion 524b extends from the tip of the first portion 524a in a direction toward the outside of the fitting groove 25. The third portion 524c extends from the tip of the second portion 524b at least toward the indoor side. In this embodiment, the third portion 524c extends from the tip of the second portion 524b toward both the indoor side and the outdoor side.
[0047] When the pushing portion 524 has the first portion 524a, the area facing the indoor side is longer than when the first portion 524a is not present and the second portion 524b extends from the upper end of the side plate portion 521a in a direction toward the outside of the fitting groove 26. When pushing the pushing portion 524 toward the outdoor side from the indoor side, the contact length between the finger and the pushing portion 524 is increased, allowing the pushing portion 524 to be firmly pushed toward the outdoor side. The third portion 524c extending from the tip of the second portion 524b toward the indoor side is longer, and the area facing the inside of the fitting groove 26 is longer. When removing the horizontal edge member 43 from the inside to the outside of the fitting groove 26, the contact length between the finger and the pushing portion 524 is increased, allowing force to be firmly applied to the pushing portion 524 in the removal direction.
[0048] The vertical length of pushing portion 524, that is, the vertical length from the lower end of first portion 524a to the upper end of third portion 524c, is preferably 3 mm or more, and more preferably 5 mm or more. When pushing portion 524 has a vertical length of 3 mm or more, pushing portion 524 can be firmly pushed into the outdoor side from the indoor side.
[0049] The first protruding plate portion 525 extends from the inner surface of the indoor-side side plate portion 521a toward the outdoor-side side plate portion 521b, forming a first gap 530 along the longitudinal direction between it and the side plate portion 521b. The second protruding plate portion 526 extends from the inner surface of the bottom plate portion 522 toward the first protruding plate portion 525, forming a second gap 531 along the longitudinal direction between it and the first protruding plate portion 525. A space 532 is formed inside the horizontal edge member 43, surrounded by the indoor-side side plate portion 521a, the bottom plate portion 522, the first protruding plate portion 525, and the second protruding plate portion 526.
[0050] The inner engagement portion 528a is located on the outer surface of the intersection between the side plate portion 521a and the arcuate surface 523a and extends along the longitudinal direction. The inner engagement portion 528b is located on the outer surface of the intersection between the side plate portion 521b and the arcuate surface 523b and extends along the longitudinal direction. The inner engagement portions 528a and 528b are located at the same position in the up-down direction. The maximum distance in the front direction between the inner engagement portions 528a and 528b is longer than the minimum distance in the front direction between the engagement protrusions 262a and 262b in the fitting groove 26. The distance between the indoor side surface of the side plate portion 521a and the outdoor side surface of the side plate portion 521b is equal to or less than the minimum distance in the front direction between the engagement protrusions 262a and 262b in the fitting groove 26. When the horizontal edge member 43 is inserted into the fitting groove 26, the inner engagement portions 528a, 528b elastically overcome the engagement protrusions 262a, 262b in the fitting groove 26, and when they engage with the engagement protrusions 262a, 262b from the inside of the fitting groove 26, the horizontal edge member 43 is held in the fitting groove 26.
[0051] The distance between the lowermost end of the horizontal edge member 43 and the inner engagement portions 528a, 528b is shorter than the distance from the bottom surface 264 to the engagement protrusions 262a, 262b within the fitting groove 26. When the horizontal edge member 43 is inserted into the fitting groove 26 and the inner engagement portions 528a, 528b engage with the engagement protrusions 262a, 262b from the inside of the fitting groove 26, the horizontal edge member 43 does not come into contact with the bottom surface 264, and the horizontal edge member 43 is held within the fitting groove 26 away from the bottom surface 264.
[0052] The second outer engagement portion 529a protrudes indoors from the intersection of the side plate portion 521a and the first portion 524a. The second outer engagement portion 529a extends indoors. The forward position of the tip of the second outer engagement portion 529a is closer to the indoor side than the indoor side surface of the side plate portion 521a. When the horizontal edge member 43 is fitted into the fitting groove 26, the indoor-side tip of the second outer engagement portion 529a is located closer to the indoor side than the tip surface 263a of the engagement protrusion 262a. When the horizontal edge member 43 is fitted into the fitting groove 26, the second outer engagement portion 529a can engage with the engagement protrusion 262a from outside the fitting groove 26.
[0053] The first outer engagement portion 529b protrudes toward the exterior from the upper end of the side plate portion 521b. The vertical position of the first outer engagement portion 529b is the same as the vertical position of the second outer engagement portion 529a. The first outer engagement portion 529b extends toward the exterior. The projection position of the tip of the first outer engagement portion 529b is closer to the exterior than the exterior side surface of the side plate portion 521b. When the horizontal edge member 43 is fitted into the fitting groove 26, the outdoor-side tip of the first outer engagement portion 529b is located closer to the exterior than the tip surface 263b of the engagement protrusion 262b. When the horizontal edge member 43 is fitted into the fitting groove 26, the first outer engagement portion 529b engages with the engagement protrusion 262b from outside the fitting groove 26. The entire horizontal edge member 43 is made of a hard material. The horizontal edge member 43 can be easily fitted into the fitting groove 26 and removed while the influence of temperature, such as hardening at low temperatures, is suppressed.
[0054] When the horizontal edge member 43 is fitted into the fitting groove 26 and restricts the projected position of the net portion main body 411 of the net portion 41 pulled out of the fitting groove 26, the tension applying portion 43A contacts the net portion 41 from the indoor side and applies tension to the edge portion side. The tension applying portion 43A is provided on the upper end side of the third portion 524c of the horizontal edge member 43. The tension applying portion 43A extends from the third portion 524c to the outdoor side. The outdoor-side tip of the tension applying portion 43A is located outdoors further than the first outer engagement portion 529b of the horizontal edge member 43 and outdoors further than the net portion 41 pulled out of the fitting groove 26 when the horizontal edge member 43 is fitted into the fitting groove 26. The outdoor-side tip of the tension applying portion 43A is located indoors further than the inner surface 261b on the lower frame 22 side when the horizontal edge member 43 is fitted into the fitting groove 26.
[0055] The position of the outdoor-side tip of the tension applying portion 43A is the same as the position of the outdoor-side tip of the tension applying portion 42A. When the horizontal edge member 43 is fitted into the fitting groove 26, the tension applying portion 43A restricts the position of the indoor-side projection direction on the entire horizontal side relative to the vicinity of the vertical edge of the mesh main body 411, as shown in FIG. 1. When the horizontal edge member 43 is fitted into the fitting groove 26, the inner surface 261b restricts the position of the outdoor-side projection direction on the entire horizontal side relative to the vertical edge of the mesh main body 411. The projection direction position of the vertical edge of the mesh main body 411 is restricted between the tension applying portion 43A and the inner surface 261b.
[0056] The inner surface 251b and the inner surface 261b are positioned in the same direction in the front view. The position of the outdoor-side tip of the tensioning portion 43A is positioned in the same direction as the outdoor-side tip of the tensioning portion 42A. The inner surface 251b, the inner surface 261b, the tensioning portion 42A, and the tensioning portion 43A can align the position of the mesh main body 411 in the front view over the entire vertical and horizontal sides.
[0057] For example, the tensioned portions 43A of the horizontal edge member 43 are formed using soft polyvinyl chloride. For example, the horizontal edge member 43 is formed using hard polyvinyl chloride except for the tensioned portions 43A. For example, the tensioned portions 43A have a Shore hardness A of 50 or more and 100 or less. For example, the horizontal edge member 43 except for the tensioned portions 43A has a Shore hardness D of 65 to 85. The tensioned portions 43A are made of a softer material than the horizontal edge member 43 except for the tensioned portions 43A. For example, the horizontal edge member 43 is manufactured by molding the horizontal edge member 43 except for the tensioned portions 43A using hard polyvinyl chloride, and then molding the tensioned portions 43A using soft polyvinyl chloride. The horizontal edge member 43 is a two-color molded body. When the horizontal edge member 43 is molded using two-color molding, the horizontal edge member 43 can be manufactured efficiently. The horizontal edge member 43 may be manufactured by molding the horizontal edge member 43 except for the tensioned portion 43A using hard polyvinyl chloride, and then fixing the tensioned portion 43A with an adhesive.
[0058] When the horizontal edge member 43 is fitted into the fitting groove 26, the tensioning portion 43A contacts the mesh portion 41 from the indoor side and applies tension to the edge portion. The tensioning portion 43A applies tension to the vertical edge portion of the mesh portion 41 that it is in contact with. Because the tensioning portion 43A is made of soft polyvinyl chloride, as shown in Figure 7, when the horizontal edge member 43 is fitted into the fitting groove 26 and the mesh portion 41 is tensioned, the outdoor-side tip elastically deforms, bending inward in the vertical direction as shown by the solid line from the shape before the mesh portion 41 is tensioned, as shown by the two-dot chain line. The vertical inner side is the opposite side to the edge portion of the mesh portion 41. The elastically deformed tensioning portion 43A generates an elastic restoring force toward the vertical edge portion as shown by the arrow in Figure 7. The elastic restoring force of the tensioning portion 43A is tension applied to the edge portion of the mesh portion 41.
[0059] A method for attaching the screen door 4 to the frame body 2 will be described with reference to Figures 1 to 9. Before attaching the screen door 4 to the frame body 2, as shown in Figure 3, vertical edge members 42 are engaged with and attached to the mesh part 41, and horizontal edge members 43 are separate from the mesh part 41.
[0060] From this state, the vertical edge member 42 is attached to the fitting grooves 25 of the vertical frames 23, 24. Since the method of attaching the vertical edge member 42 to the vertical frames 23, 24 is the same, the method of attaching it to the vertical frame 23 will be described below with reference to Figure 8.
[0061] As shown in FIG. 8, the vertical edge members 42 attached to the mesh portion 41 are inserted into the fitting grooves 25 of the vertical frames 23 with the side panel portions 421a having the push-in portions 424 positioned on the indoor side. While FIG. 8 only illustrates the vertical frame 23 side, the same applies to the vertical frame 24. When inserting the vertical edge members 42 into the fitting grooves 25, the vertical edge members 42 are inserted in the direction of arrow T1 with the push-in portions 424 tilted toward the outdoor side, and the indoor-side inner engagement portions 428b are engaged with the engagement protrusions 252b from the inside of the fitting grooves 25. The inner engagement portions 428a contact the tip surfaces 253a of the engagement protrusions 252a. The push-in portions 424 are then pushed toward the fitting grooves 25, and the vertical edge members 42 are rotated in the clockwise direction of arrow T2 around the point of contact between the inner engagement portions 428b and the engagement protrusions 252b. The inner engaging portion 428a of the vertical edge member 42 elastically overcomes the engaging protrusion 252a and engages with the engaging protrusion 252a from the inside of the fitting groove 25, completing the attachment of the vertical edge member 42 to the fitting groove 25 as shown in Figure 2.
[0062] 6, when the vertical edge member 42 is attached to the fitting groove 25, the horizontal edge of the mesh portion 41 is inserted into the fitting groove 26. Specifically, the locking member 412a is positioned on the indoor side of the bottom surface 264 of the fitting groove 26, the flexible member 412b is positioned on the outdoor side of the bottom surface 264, and the mesh portion main body 411 is pulled out from the fitting groove 26 toward the indoor side, that is, the indoor side, 261b, along the tip surface 263b of the outdoor-side engaging protrusion 262b and the indoor side surface 261b.
[0063] The vertical edge members 42 that fit into the vertical frames 23, 24 are combined vertically with the horizontal edge members 43 that fit into the upper frame 21 and lower frame 22, so the fitting grooves 26 of the upper frame 21 and lower frame 22 restrict the positions at which the horizontal edge members 43 fit between the vertical frames 23, 24. Because the positions at which the horizontal edge members 43 fit are restricted between the vertical frames 23, 24, it is possible to prevent the horizontal edge members 43 from becoming difficult to fit into the fitting grooves 26 of the upper frame 21 and lower frame 22.
[0064] When inserting the vertical edge member 42 into the fitting groove 25, for example, the third portion 424c of the pushing portion 424 is pushed in from the outside. Because the third portion 424c extends from the tip of the second portion 424b toward both the outdoor side and the indoor side, it has a large contact area, allowing the vertical edge member 42 to be pushed in stably. Because the first portion 424a of the pushing portion 424 is inclined toward the outdoor side, the second portion 424b and the third portion 424c are closer to the center in the projection direction, allowing the vertical edge member 42 to be pushed in more stably. When the pushing portion 424 arranged on the indoor side is pushed in, the momentum released from the resistance caused by the inner engaging portion 428a elastically overcoming the engaging protrusion 252a may cause the bottom plate portion 422 to reach the bottom surface 254 of the frame body 2, resulting in deformation, etc. A second outer engaging portion 429a is provided at the base of the pushing portion 424, and when the second outer engaging portion 429a engages with the engaging protrusion 252a from outside the fitting groove 25, the bottom plate portion 422 can be prevented from reaching the bottom surface 254 of the frame body 2.
[0065] When the screen door 4 is subjected to wind pressure from the outdoors, a force is applied to the vertical edge member 42 on the vertical frame 23 side, which rotates the push-in portion 424 side in a direction that moves the push-in portion 424 side toward the indoors within the fitting groove 25. Even in this case, when the second outer engaging portion 429a engages with the engaging protrusion 252a from the outside of the fitting groove 25, the rotation of the push-in portion 424 side can be prevented. The wind pressure causes the outdoor-side inner engaging portion 428b to immediately climb over the outdoor-side engaging protrusion 252b of the fitting groove 25, preventing the vertical edge member 42 from unintentionally coming out of the fitting groove 25.
[0066] At this stage, the horizontal edge members 43 are not attached to the mesh portion 41, so the horizontal edge members 43 do not impair workability, and the vertical edge members 42 can be easily and stably attached to the fitting grooves 25. The hard vertical edge members 42 fit firmly into the fitting grooves 25, preventing the vertical edge members 42 from floating up and becoming detached unintentionally, or preventing the screen door 4 from becoming loose.
[0067] After the vertical edge members 42 are attached to the fitting grooves 25, the horizontal edge members 43 are attached to the fitting grooves 26 of the upper frame 21 and the lower frame 22, as shown in Fig. 6. Since the method of attaching the horizontal edge members 43 to the upper frame 21 and the lower frame 22 is the same, the method of attaching them to the lower frame 22 will be described below with reference to Fig. 6.
[0068] The vertical frames 23, 24 into which the vertical edge member 42 fits are combined vertically with the upper frame 21 and the lower frame 22, with the horizontal edges of the mesh portion 41 inserted into the fitting grooves 26, so the fitting grooves 26 of the horizontal edge member 43 are open and exposed in the vertical direction to the inside of the fitting 1 without interfering with the vertical frames 23, 24. As a result, when the horizontal edge member 43 is inserted into the fitting grooves 26, the installation work can be easily carried out without interfering with the vertical frames 23, 24.
[0069] 9, when inserting the horizontal edge member 43 into the fitting groove 26, similar to the vertical edge member 42, the pushing portion 524 is first tilted toward the outdoor side, and the horizontal edge member 43 is inserted toward the fitting groove 26 in the direction of arrow T3, so that the outdoor-side inner engaging portion 528b engages with the engaging protrusion 262b from the inside of the fitting groove 26. The indoor-side inner engaging portion 528a contacts the tip surface 263a of the engaging protrusion 262a. The pushing portion 524 is further pushed toward the fitting groove 26, and the horizontal edge member 43 is rotated clockwise in the direction of arrow T4 around the point of contact between the inner engaging portion 528b and the engaging protrusion 262b. The inner engaging portion 528a of the horizontal edge member 43 elastically overcomes the engaging protrusion 262a and engages with the engaging protrusion 262a from the inside of the fitting groove 26, completing the attachment of the horizontal edge member 43 to the fitting groove 26 as shown in FIG.
[0070] When inserting the horizontal edge member 43 into the fitting groove 26, for example, the third portion 524c of the pushing portion 524 is pushed into the fitting groove 26 from the outside. The third portion 524c extends from the tip of the second portion 524b toward both the outdoor side and the indoor side, providing a large contact area, allowing the horizontal edge member 43 to be pushed in stably. The first portion 524a of the pushing portion 524 is inclined toward the outdoor side, so the second portion 524b and the third portion 524c are closer to the center in the projection direction, allowing the horizontal edge member 43 to be pushed in more stably. When the pushing portion 524 arranged on the indoor side is pushed in, the momentum released from the resistance generated when the inner engaging portion 528a elastically overcomes the engaging protrusion 262a may cause the bottom plate portion 522 to reach the bottom surface 264 of the frame body 2, potentially resulting in deformation. A second outer engaging portion 529a is provided at the base of the pushing portion 524, and when the second outer engaging portion 529a engages with the engaging protrusion 262a from outside the fitting groove 26, the bottom plate portion 522 can be prevented from reaching the bottom surface 264 of the frame body 2.
[0071] When the screen door 4 is subjected to wind pressure from the outdoors, a force is applied to the horizontal edge member 43 that rotates the push-in portion 524 side in a direction that moves the push-in portion 524 side toward the indoors within the fitting groove 26. When the second outer engaging portion 529a engages with the engaging protrusion 262a from the outside of the fitting groove 26, the rotation of the push-in portion 524 side can be prevented. The wind pressure causes the outdoor-side inner engaging portion 528b to immediately climb over the outdoor-side engaging protrusion 262b of the fitting groove 26, preventing the horizontal edge member 43 from unintentionally coming out of the fitting groove 26.
[0072] As described above, the vertical edge members 42 and horizontal edge members 43 are attached to the frame body 2, and the screen door 4 is then stretched. The horizontal edge members 43 are separate from the mesh part 41 and can be easily fitted into the fitting grooves 26. Therefore, after the vertical edge members 42 are attached to the fitting grooves 25, the mesh part 41 can be easily attached to the fitting grooves 26.
[0073] When the vertical edge members 42 are attached to the frame 2 and the screen door 4 is tensioned, tension is applied to the left-right edge side of the mesh part 41 that is in contact with the tension-applying portions 42A that are bent inward in the left-right direction and elastically deformed, due to the elastic restoring force. When the horizontal edge members 43 are attached to the frame 2 and the screen door 4 is tensioned, tension is applied to the up-down edge side of the mesh part 41 that is in contact with the tension-applying portions 43A that are bent inward in the up-down direction and elastically deformed, due to the elastic restoring force. Tension is applied to the mesh part 41 on both the left-right edge side and the up-down edge side.
[0074] A method for removing the screen door 4 from the fitting groove 26 of the frame body 2 will be described with reference to Figures 1 and 10. The vertical edge member 42 and the horizontal edge member 43 have the same cross-sectional shape, and the method for removing the vertical edge member 42 from the vertical frames 23, 24 is similar to the method for removing the horizontal edge member 43 from the upper frame 21 and the lower frame 22. Therefore, the method for removing the horizontal edge member 43 from the lower frame 22 will be described.
[0075] As shown in Fig. 1, the push-in portion 524 of the horizontal edge member 43 is pushed in the direction of arrow T5 from the indoor side to the outdoor side. The horizontal position at which the push-in portion 524 is pushed is preferably either the left end or the right end. When the push-in portion 524 is pushed in toward the outdoor side, as shown in Fig. 10, the horizontal edge member 43 is rotated counterclockwise in the drawing so that the push-in portion 524 is tilted toward the outdoor side, and the indoor-side inner engagement portion 528a is disengaged from the engagement protrusion 262a.
[0076] If the horizontal edge member 43 does not have the first outer engagement portion 529b on the outdoor side, the arcuate surface 523b and the side plate portion 521b may sink toward the bottom surface 264 of the fitting groove 26 when the pushing portion 524 is pushed toward the outdoor side and the horizontal edge member 43 is rotated counterclockwise. In this case, the tip of the side plate portion 521b may engage with the engagement protrusion 262b from the inside of the fitting groove 26, making it impossible to remove the horizontal edge member 43 from the fitting groove 26. When the pushing portion 524 is pushed toward the outdoor side, the first outer engagement portion 529b on the outdoor side engages with the engagement protrusion 262b from the outside of the fitting groove 26, thereby preventing the horizontal edge member 43 from sinking toward the bottom surface 264 of the fitting groove 26. When the first outer engagement portion 529b engages with the engagement protrusion 262b from the outside of the fitting groove 26, the first outer engagement portion 529b serves as a fulcrum, making it easier for the horizontal edge member 43 to rotate counterclockwise, and effectively transmitting a force in the direction of disengaging the inner engagement portion 528a from the engagement state with the engagement protrusion 262a.
[0077] When the inner engaging portion 528a is released from the engaging protrusion 262a, the pushing portion 524 is further rotated toward the exterior, and the horizontal edge member 43 is pulled up in the direction of arrow T6 outside the fitting groove 26. When the horizontal edge member 43 is pulled up into the fitting groove 26, either the left or right end of the horizontal edge member 43 is released from the fitting groove 26. By pulling the horizontal edge member 43 released from the fitting groove 26 up to either the right or left side, the entire horizontal edge member 43 can be removed from the fitting groove 26.
[0078] According to the fitting 1 of this embodiment, tension is applied to the left-right edge side of the mesh portion 41 that the tension applying portion 42A contacts, and tension is applied to the up-down edge side of the mesh portion 41 that the tension applying portion 43A contacts, so that the tension of the mesh portion 41 can be adjusted even if the mesh portion 41 bends after the screen door 4 is attached to the frame body 2.
[0079] The preferred embodiments of the present disclosure have been described above with reference to the accompanying drawings. It goes without saying that the present disclosure is not limited to these examples. The shapes and combinations of the components shown in the above examples are merely examples, and various modifications can be made based on design requirements, etc., without departing from the spirit and scope of the present disclosure.
[0080] For example, in the above embodiment, the vertical edge member 42 and the horizontal edge member 43 have the same cross-sectional shape, and both the vertical edge member 42 and the horizontal edge member 43 have the tension applying portion 42A and the tension applying portion 43A. However, this is not limited to this configuration, and only one of the vertical edge member 42 and the horizontal edge member 43 may have a tension applying portion.
[0081] In the above embodiment, a configuration has been exemplified in which, before the screen door 4 is attached to the frame body 2, the vertical edge members 42 are engaged with and attached to the mesh portion 41, and the horizontal edge members 43 are separate from the mesh portion 41. However, this configuration is not limited to this, and a configuration in which, before the screen door 4 is attached to the frame body 2, the horizontal edge members 43 are engaged with and attached to the mesh portion 41, and the vertical edge members 42 are separate from the mesh portion 41, may also be used. In this case, it is preferable that the frame body 2 is assembled in a so-called horizontal through horizontal manner, in which the upper frame 21 and the lower frame 22 are attached to the vertical frame 23 and the vertical frame 24, respectively. [Explanation of symbols]
[0082] 1 fitting, 2 frame body, 4 screen door, 21 upper frame, 22 lower frame, 23, 24 vertical frame, 25, 26 fitting groove, 41 mesh part, 42 vertical edge member, 42A, 43A tension applying portion, 43 horizontal edge member, 251a, 251b, 261a, 261b inner surface, 252a, 252b, 262a, 262b engaging protrusion, 411 mesh part main body, 424, 524 pushing portion, 428a, 428b, 528a, 528b inner engaging portion
Claims
1. a rectangular mesh portion having edges extending in a first direction and a second direction perpendicular to each other; A first edge member is arranged along an edge portion of the mesh portion extending in the first direction and is attached to the frame body when fitted into a fitting groove provided in the frame body of the building fixture; a second edge member disposed along an edge portion of the mesh portion extending in the second direction and attached to the frame body when fitted into a fitting groove provided in the frame body; and At least one of the first edge member and the second edge member is a tension applying portion that contacts the mesh portion from the indoor side and applies tension to the edge portion side when the mesh portion is fitted into the fitting groove; an outdoor end of the tension applying portion is located on the outdoor side of the mesh portion pulled out from the fitting groove; The tension applied by the tension applying portion is an elastic restoring force toward the edge portion that occurs when the tension applying portion, which is in contact with the mesh portion pulled out of the fitting groove, elastically deforms in the direction opposite to the edge portion.
2. At least one of the first edge member and the second edge member has a push-in portion that protrudes outward from the fitting groove when fitted into the fitting groove, The tension applying portion extends from a portion of the pushing portion that protrudes outward from the fitting groove toward the exterior. The screen door according to claim 1.
3. The first edge member and the second edge member each have a pair of engaging protrusions that protrude from an inner surface of the fitting groove toward the indoor side and the outdoor side, respectively, and inner engaging portions that engage with the fitting groove from the inside, At least one of the first edge member and the second edge member has a push-in portion that protrudes outward from the fitting groove further than the indoor-side engaging protrusion when fitted into the fitting groove, The tension applying portion is provided in the pushing portion and extends from the pushing portion to the outdoor side. The screen door according to claim 1 or 2.
4. At least one of the first edge member and the second edge member is made of a hard material other than the tension applying portion, The tension applying portion is made of a material softer than the hard material. The screen door according to any one of claims 1 to 3.
5. At least one of the first edge member and the second edge member is a two-color molded body. The screen door according to claim 4.
6. A cross-sectional shape of the first edge member perpendicular to the first direction is the same as a cross-sectional shape of the second edge member perpendicular to the second direction. The screen door according to any one of claims 1 to 5.
7. a rectangular mesh portion having edges extending in a first direction and a second direction perpendicular to each other; A first edge member is arranged along an edge portion of the mesh portion extending in the first direction and is attached to the frame body when fitted into a fitting groove provided in the frame body of the building fixture; a second edge member disposed along an edge portion of the mesh portion extending in the second direction and attached to the frame body when fitted into a fitting groove provided in the frame body; and At least one of the first edge member and the second edge member is a tension applying portion that contacts the mesh portion from the indoor side and applies tension to the edge portion side when the mesh portion is fitted into the fitting groove; The first edge member and the second edge member each have a pair of engaging protrusions that protrude from an inner surface of the fitting groove toward the indoor side and the outdoor side, respectively, and inner engaging portions that engage with the fitting groove from the inside, At least one of the first edge member and the second edge member has a push-in portion that protrudes outward from the fitting groove further than the indoor-side engaging protrusion when fitted into the fitting groove, The tension applying portion is provided in the pushing portion and extends from the pushing portion to the outdoors.
8. A screen door fitting, in which the first edge member and the second edge member of the screen door described in any one of claims 1 to 7 are fitted and attached within fitting grooves provided on the four sides of the frame body of the fitting.
Citation Information
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