Doors and fittings
A biasing member between the cover member and cap ensures consistent contact despite profile errors, preventing gaps and improving attachment efficiency.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2026-03-18
AI Technical Summary
Existing fittings are susceptible to gaps forming between the cap and mating member due to dimensional or assembly errors in the profile.
A biasing member is provided between the cover member and the cap to ensure the cap is biased towards the mating member, mitigating the effects of dimensional or assembly errors.
The biasing member maintains contact between the cap and mating member, preventing gaps even with errors in the profile dimensions or assembly, enhancing appearance quality and ease of attachment.
Smart Images

Figure 2026049324000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a fitting, and relates to a fitting provided with a cover member on the surface and a cap provided between the cover member and a mating member disposed at a position facing the end face of the cover member.
Background Art
[0002] Some fittings are provided with a cover member on the surface facing the interior in the profile. A cap is attached to the end of the cover member to close the gap between the cover member and a mating member such as a picture frame (see, for example, Patent Document 1).
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0004] By the way, the cap of Patent Document 1 is supported by the frame body by fitting to the end of the profile. Therefore, when there are dimensional errors or assembly errors in the profile, there is a concern that a gap may occur between the cap and the mating member.
[0005] In view of the above circumstances, an object of the present invention is to provide a fitting that is not affected by dimensional errors or assembly errors of the profile and can eliminate the gap between the mating member and the cap.
Means for Solving the Problems
[0006] To achieve the above objective, the joinery according to the present invention comprises a profile that includes a cover member, the cover member having a cap between it and a mating member positioned opposite the end of the cover member, and at least one of the cover member and the cap is provided with a biasing member that biases the cap toward the mating member relative to the cover member. [Effects of the Invention]
[0007] According to the present invention, since a biasing member is provided between the cover member and the cap, it is not affected by dimensional errors or assembly errors of the profiled material. Moreover, because the biasing member biases the cap toward the mating member relative to the cover member, there is no concern that a gap will form between the mating member and the cap even if there are dimensional errors or assembly errors in the cover member. [Brief explanation of the drawing]
[0008] [Figure 1] This is a view of a door or window, which is an embodiment of the present invention, as seen from the interior side. [Figure 2] Figure 1 is a vertical cross-sectional view of the joinery shown. [Figure 3] This is a cross-sectional view showing the upper frame portion of the joinery shown in Figure 1. [Figure 4] This is a cross-sectional view showing the lower frame portion of the joinery shown in Figure 1. [Figure 5] Figure 1 is a perspective view of the main components of the joinery shown, as seen from the interior side. [Figure 6] Figure 1 is a perspective view of the door frame's transom as seen from the interior side. [Figure 7] This is an enlarged cross-sectional view showing the main parts of the joinery shown in Figure 1. [Figure 8] Figure 1 is an exploded view of the cover member and cap applied to the joinery shown, as seen from the outside. [Figure 9] Figure 1 shows the caps applicable to the joinery shown in Figure 1. (a) is a perspective view from the cap body side, and (b) is a perspective view from the inner and outer guide parts side. [Figure 10]Figure 1 shows the cover member for the building fixture with the cap attached. (a) is a view from the outside showing the cap body in its closest position to the end face of the cover member, and (b) is a view from the outside showing the cap's hook claws engaged with the engagement surface of the cover member. [Figure 11] Figure 1 shows the main parts of the joinery, with (a) being a cross-sectional view of the joinery itself and (b) being a cross-sectional view of the cap attached to the cover member in contact with the frame. [Figure 12] Figure 1 shows the main parts of the joinery, with (a) being a cross-sectional view with the cap in contact with the frame and (b) being a cross-sectional view with the cover member contracted. [Figure 13] This is a perspective view of the main part of a modified door / window assembly, as seen from the interior side. [Figure 14] Figure 13 shows the main parts of the joinery, with (a) being a cross-sectional view of the joinery itself and (b) being a cross-sectional view of the cap attached to the cover member in contact with the frame. [Modes for carrying out the invention]
[0009] The following describes in detail preferred embodiments of the joinery according to the present invention with reference to the attached drawings. For convenience, the terms "depth direction" and "face direction" may be used below. The depth direction is the direction along the depth of the joinery, as indicated by arrow A in the figure. The surface along the depth direction may be referred to as the depth surface. The face direction is the direction along the vertical direction perpendicular to the depth direction, in the case of a frame that extends horizontally, such as a bottom frame. In the case of a frame that extends vertically, such as a vertical frame, the face direction is the direction along the horizontal direction perpendicular to the depth direction. The surface along the face direction may be referred to as the face surface.
[0010] Figures 1 to 7 show a joinery that is an embodiment of the present invention. The joinery illustrated here is called a stepped window, in which an upper vertical sliding window (window section) and a lower fixed window (window section) are formed inside a single frame 10. The frame 10 is constructed by assembling an upper frame 11, a lower frame 12, and left and right vertical frames 13 around the perimeter, and by stretching a transom (profile) 14 across the left and right vertical frames 13 along the left-right direction.
[0011] A vertical sliding window is constructed by supporting a sash 20 so that it can be opened and closed on an upper frame section 10A, which consists of an upper frame 11, a transom 14, and left and right vertical frames 13. The sash 20 is constructed by attaching an upper frame 22, a lower frame 23, and left and right vertical frames 24 around an upper panel 21 such as double-glazed glass. In the illustrated example, a link mechanism 1 called a friction stay is provided between the upper frame 11 and the upper frame 22, and between the transom 14 and the lower frame 23, respectively, making it possible to open the sash 20 so that it protrudes outwards. A fixed window is constructed by attaching a lower panel 15 such as double-glazed glass to a lower frame section 10B, which consists of a transom 14, a lower frame 12, and left and right vertical frames 13.
[0012] The upper frame 11, lower frame 12, vertical frame 13, and transom 14 that constitute the frame body 10 are each composed of an exterior metal frame section 11A, 12A, 13A, 14A which is an extruded profile made of a metal such as an aluminum alloy, and an interior resin frame section 11B, 12B, 13B, 14B which is an extruded profile made of resin.
[0013] Among these, the metal frame portion 13A of the vertical frame 13 is configured by connecting a metal outer peripheral frame member 13A1 on the outer peripheral side and metal inner peripheral frame members 13A2 and 13A3 on the inner peripheral side. The metal outer peripheral frame member 13A1 is continuous from the upper frame 11 to the lower frame 12 and has the same cross-sectional shape between the upper frame portion 10A and the lower frame portion 10B. In contrast, the metal inner peripheral frame members 13A2 and 13A3 are vertically divided at the blind portion 14 and are configured to have different cross-sectional shapes between the upper frame portion 10A and the lower frame portion 10B. That is, the metal inner peripheral frame member 13A2 of the upper frame portion 10A has a cross-sectional shape corresponding to the vertical sliding window, and the metal inner peripheral frame member 13A3 of the lower frame portion 10B has a cross-sectional shape corresponding to the FIX window. Similarly, the resin frame portion 13B of the vertical frame 13 is vertically divided at the blind portion 14. The upper resin frame member 13B1 of the upper frame portion 10A has a cross-sectional shape corresponding to the vertical sliding window, and the lower resin frame member 13B2 of the lower frame portion 10B has a cross-sectional shape corresponding to the FIX window.
[0014] The resin frame portion 11B of the upper frame 11, the resin frame portion 12B of the lower frame 12, and the resin frame portion 13B of the vertical frame 13 each have outer peripheral mounting plate portions 11a, 12a, and 13a extending in the prospective direction toward the interior of the room. They are connected to the interior picture frame (counterpart member) 2 by screwing a screw member S1 through the outer peripheral mounting plate portions 11a, 12a, and 13a. The picture frame 2 is formed of, for example, a thick plate shaped by wood and is attached to a body (not shown) in a state of protruding into the room more than the outer peripheral mounting plate portions 11a, 12a, and 13a.
[0015] The resin frame portion 14B of the blind 14 is composed of an upper frame cover member 14B1, a lower frame cover member 14B2, and an inner cover member (cover member) 14B3. The upper frame cover member 14B1 is provided on the upper frame portion 10A and is disposed on the indoor side of the shoji 20 disposed at the closed position in the metal frame portion 14A of the blind 14. The lower frame cover member 14B2 is provided on the lower frame portion 10B and is disposed on the indoor side of the lower panel 15 in the metal frame portion 14A of the blind 14. More specifically described, the upper frame cover member 14B1 and the lower frame cover member 14B2 are respectively provided with engaging pieces 14a and cover mounting plate portions 14b, and the metal frame portion 14A of the blind 14 is provided with engaging grooves 14c at portions corresponding to the engaging pieces 14a. The upper frame cover member 14B1 and the lower frame cover member 14B2 are supported by the metal frame portion 14A of the blind 14 by engaging the engaging pieces 14a with the engaging grooves 14c. The cover mounting plate portion 14b is provided so as to project to the indoor side of the metal frame portion 14A of the blind 14, and the position in the prospective direction corresponds to the outer peripheral mounting plate portions 11a, 12a, and 13a.
[0016] The inner cover member 14B3 covers the visible surface of the metal frame portion 14A of the transom 14 that faces the interior of the room, and is provided between the cover mounting plate portion 14b of the upper frame cover member 14B1 and the cover mounting plate portion 14b of the lower frame cover member 14B2. More specifically, as shown in Figure 8, the inner cover member 14B3 is configured to be symmetrical in shape vertically, and has a main cover plate portion 16a, two screw receiving portions 16b, and a back plate portion 16c. The main cover plate portion 16a is a flat plate that extends along the visible direction. The dimensions of the main cover plate portion 16a along the vertical direction are larger than the metal frame portion 14A of the transom 14, and are configured to span the width between the cover mounting plate portion 14b of the upper frame cover member 14B1 and the cover mounting plate portion 14b of the lower frame cover member 14B2. The screw receiving portion 16b extends outward from both the upper and lower edges of the main cover plate portion 16a. In the illustrated example, the screw receiving portion 16b is provided in a hollow shape with openings at both ends. Engaging notches 16d are provided on the opposing inner surfaces of the two screw receiving portions 16b. The engaging notches 16d have a rectangular opening, with the outer circumferential portion forming an engaging surface 16e. The engaging surface 16e is a plane extending in a direction perpendicular to the longitudinal direction of the inner cover member 14B3. The backing plate portion 16c is a flat plate provided parallel to the main cover plate portion 16a at a position on the outside of the main cover plate portion 16a, and is located between the opposing inner surfaces of the two screw receiving portions 16b.
[0017] The inner cover member 14B3 is positioned between the upper frame cover member 14B1 and the lower frame cover member 14B2 by overlapping the cover mounting plate portion 14b of the upper frame cover member 14B1 and the cover mounting plate portion 14b of the lower frame cover member 14B2 onto the screw receiving portion 16b, and then screwing the screw member S2 into the screw receiving portion 16b via the cover mounting plate portion 14b. As described above, the resin frame portion 13B of the vertical frame 13 is divided vertically at the transom 14 by the upper resin frame material 13B1 provided on the upper frame portion 10A and the lower resin frame material 13B2 provided on the lower frame portion 10B. For this reason, the inner cover member 14B3 is positioned so that both end faces face the inner circumference surface 2a of the picture frame 2. The dimensions of the inner cover member 14B3 along its longitudinal side are set so that there is a gap between its end face and the inner circumferential surface 2a of the left and right frames 2. Caps 30 are provided between both end faces of the inner cover member 14B3 and the inner circumferential surface 2a of the frames 2 to close the aforementioned gaps.
[0018] The cap 30 is molded from, for example, resin and is configured to be shared on both the left and right sides of the inner cover member 14B3. As shown in Figure 9, the cap 30 is configured to be symmetrical in shape vertically to correspond to the inner cover member 14B3, and has a cap body 30a, an inner surface guide portion (guide portion) 30b, an outer surface guide portion (guide portion) 30c, and two edge guide portions (guide portions) 30d.
[0019] The cap body 30a is a flat plate shape with dimensions that allow it to be positioned opposite the end face of the inner cover member 14B3. More specifically, the cap body 30a has an intermediate base 31a, two wide sections 31b, two support plate sections 31c, and two narrow sections 31d. The intermediate base 31a is a flat plate shape with a width that allows it to cover the end face of the main cover plate section 16a and the end face of the back plate section 16c. The dimensions of the intermediate base 31a along its vertical axis are configured such that the upper edge overlaps the upper screw receiving section 16b, and the lower edge overlaps the lower screw receiving section 16b. The two wide sections 31b protrude outwards from both the upper and lower ends of the outdoor-side edge of the intermediate base 31a. Each wide section 31b is configured such that its protruding edge toward the outdoor side is positioned approximately midway between the screw receiving sections 16b. The two support plate portions 31c extend outward from the outdoor-facing edge of the wide portion 31b and are positioned between the two screw receiving portions 16b. The two narrow portions 31d extend along the visible direction from the portions located on the indoor side at both the upper and lower ends of the intermediate base portion 31a and are configured to have a width that can cover the end face of the main cover plate portion 16a.
[0020] The inner surface guide portion 30b and the outer surface guide portion 30c extend from both side edges of the cap body 30a so as to be substantially parallel to each other. The inner surface guide portion 30b extends from the portion between the wide portions 31b on the outdoor side edge of the intermediate base portion 31a. The outer surface guide portion 30c extends from the indoor side edges of the intermediate base portion 31a and the narrow portion 31d. The extension dimension of the outer surface guide portion 30c is set to be shorter than that of the inner surface guide portion 30b.
[0021] The edge guide portion 30d extends outward from both the upper and lower edges of the outer surface guide portion 30c, and is configured to be sized to cover the upper and lower edges of the main cover plate portion 16a. The outer peripheral edge of the edge guide portion 30d is connected to the narrow portion 31d.
[0022] The cap 30 also has hook portions 32 on each of the two support plate portions 31c, and notches 33 and leaf spring portions (biasing members) 34 on each of the two wide portions 31b. The hook portions 32 protrude almost horizontally from the upper edge of the upper support plate portion 31c and the lower edge of the lower support plate portion 31c, respectively, in the same direction as the outer surface guide portion 30c. Hook claws 32a are provided at the protruding ends of the hook portions 32. The hook claws 32a are protrusions provided on the surfaces of the hook portions 32 that are on the outer circumference side of each other. The protruding dimensions of the hook claws 32a are configured to gradually increase toward the base end of the hook portion 32. The upper hook claw 32a and the lower hook claw 32a are set so that the mutual width dimension at the tip side is smaller than the mutual distance between the two screw receiving portions 16b, and the mutual width dimension at the base end is larger than the mutual distance between the two screw receiving portions 16b. The distance from the base end of the hook portion 32 to the hook claw 32a is set to be greater than the distance from the end face of the inner cover member 14B3 to the engagement surface 16e. The notch 33 is a square-shaped through hole formed in the portion extending from the intermediate base portion 31a to the wide portion 31b. The leaf spring portion 34 is a rectangular flat plate and protrudes from the inner peripheral edge of the notch 33 in the same direction as the outer surface guide portion 30c. The protruding dimension of the leaf spring portion 34 is set to gradually increase toward the outer circumference. This leaf spring portion 34 can be elastically deformed when an external force is applied, and the protruding dimension from the wide portion 31b can be reduced. In the unloaded state, the leaf spring portion 34 has its maximum protruding dimension from the wide portion 31b, and the distance from the protruding edge to the outer peripheral end face of the hook claw 32a is set to be smaller than the distance from the end face of the inner cover member 14B3 to the engagement surface 16e.
[0023] When the cap 30 described above is inserted between the two screw receiving portions 16b with the outer surface guide portion 30c aligned with the surface of the main cover plate portion 16a, the hook claws 32a come into contact with the screw receiving portions 16b, causing the hook portions 32 to elastically deform toward each other. Subsequently, when the cap 30 is moved further in the insertion direction, as shown in Figure 10, the hook portions 32 return to their original state due to the elastic restoring force when the hook claws 32a pass the engagement surface 16e, so that the hook claws 32a are inserted into the engagement notches 16d. As a result, the hook claws 32a face the engagement surface 16e, and the movement of the cap 30 toward detachment from the inner cover member 14B3 is restricted.
[0024] During this time, the leaf spring portion 34 provided on the cap 30 contacts the end face of the back plate portion 16c against the inner cover member 14B3, and becomes elastically deformed as the hook claw 32a passes the engagement surface 16e. Therefore, when the external force that moves the cap 30 in the insertion direction is removed from the above state, the elastic restoring force of the leaf spring portion 34 biases the cap 30 in the direction of detachment from the inner cover member 14B3, causing the hook claw 32a to contact the engagement surface 16e, and maintaining the state in which the cap 30 is attached to the inner cover member 14B3. As a result, the inner cover member 14B3 with caps 30 attached to both ends can be handled as a single part, which is advantageous in terms of handling.
[0025] In the joinery frame 10 in which the cap 30 is provided on the inner cover member 14B3 as described above, if, for example, the frame 2 is already attached to the building structure, by bringing the cap 30 into contact with the inner circumferential surface 2a of the frame 2, the leaf spring portion 34 will elastically deform appropriately, making it possible to attach the inner cover member 14B3 to the building structure without creating a gap between the inner cover member 14B3 and the frame 2. On the other hand, it is also possible to attach the frame 2 after the joinery is attached to the building structure, in which case, by bringing the frame 2 into contact with the cap 30, the leaf spring portion 34 will elastically deform appropriately, making it possible to attach the frame 2 to both ends of the inner cover member 14B3 without any gaps. The above-mentioned effects can be achieved without being affected even if there are dimensional errors or assembly errors in the inner cover member 14B3 or the cap 30, as the amount of elastic deformation of the leaf spring portion 34 will change appropriately to adjust for these errors. Of course, since the cap 30 does not hold the metal frame portion 14A of the transom 14, it is not affected even if there are dimensional or assembly errors in the metal frame portion 14A. Moreover, when the cap 30 is in contact with the frame 2, the leaf spring portion 34 is elastically deformed, in other words, the leaf spring portion 34 biases the cap 30 toward the frame 2 relative to the inner cover member 14B3. As shown in Figure 12, even if the inner cover member 14B3 shrinks relative to the metal frame portion 14A due to the effects of heat, there is no concern that a gap will form between the frame 2 and the cap 30. That is, if the inner cover member 14B3 shrinks by a dimension d from the state shown in Figure 12(a), the biasing force of the leaf spring portion 34 moves the cap 30 to protrude toward the frame 2 relative to the inner cover member 14B3 each time, so as shown in Figure 12(b), there is no risk of a gap forming between the cap 30 and the frame 2, and the appearance quality is prevented from being compromised. When the cap 30 moves relative to the inner cover member 14B3 due to the biasing force of the leaf spring portion 34, the inner surface guide portion 30b, the outer surface guide portion 30c, and the edge guide portion 30d each act as guides, so the cap 30 moves only along the longitudinal side of the inner cover member 14B3, and problems such as the cap 30 shifting in the transverse direction are not caused.
[0026] In the embodiments described above, an example is shown in which the inner cover member 14B3 disposed on the surface of the transom 14 is the target for attachment of the cap 30, but the present invention is not limited to this. For example, the cover member of the mullion that spans vertically between the upper frame and the lower frame may be the target for attachment of the cap, or other profiles besides transoms and mullions, i.e., the upper frame, lower frame, and vertical frame, may be the target for attachment of the cap. In these cases, the specific shape of the cover member and the specific shape of the cap are not limited to those shown in the embodiments. Also, although a picture frame 2 is given as an example of a mating member, it does not necessarily have to be a picture frame 2, and any other member that is positioned opposite the end of the profile may be used. In this case, it is not necessarily required to attach caps to both ends of the profile. In the above embodiment, when the mating member is the picture frame 2, the outer peripheral mounting plate portion 13a provided on the resin frame portion 13B of the vertical frame 13 is brought into contact with the inner peripheral surface 2a. However, as shown in the modified examples in Figures 13 and 14, the outer peripheral mounting plate portion 13a of the resin frame portion 13B may be placed in the recess 2b provided on the picture frame 2. Furthermore, although a leaf spring portion 34 integrally molded with the cap 30 is shown as an example of a biasing member, it does not need to be integral with the cap 30, nor does it need to be in the shape of a leaf spring. The biasing member may also be provided on the cover member. In this case as well, the biasing member does not necessarily need to be integral with the cover member.
[0027] As described above, the joinery according to the present invention is a joinery in which a profile comprises a cover member, and the cover member is provided with a cap between it and a mating member positioned opposite the end of the cover member, and at least one of the cover member and the cap is provided with a biasing member that biases the cap toward the mating member relative to the cover member. According to this invention, since a biasing member is provided between the cover member and the cap, it is not affected by dimensional errors or assembly errors of the profiled material. Moreover, because the biasing member biases the cap toward the mating member relative to the cover member, there is no concern that a gap will form between the mating member and the cap even if there are dimensional errors or assembly errors in the cover member.
[0028] Furthermore, in the above-described joinery, the present invention is characterized in that the profile is a mullion or transom provided between adjacent window sections, the cover member covers the interior surface of the profile, and the cap is provided between the cover member and a frame provided on the interior side of the frame, with the frame being the mating member. According to this invention, the gap between the cover member, which is installed on the mullion or transom, and the picture frame can be sealed with a cap.
[0029] Furthermore, the present invention is characterized in that, in the above-described joinery, the biasing member is integrally provided with the cap. According to this invention, it is possible to prevent a gap from forming between the mating member and the cap without increasing the number of parts.
[0030] Furthermore, the present invention is characterized in that, in the above-described joinery, the cap has a cap body positioned opposite the end face of the cover member, and a leaf spring portion that extends inclined in a direction gradually approaching the end face of the cover member from the cap body, and functions to bias the cap body toward the mating member by contacting the end face of the cover member. According to this invention, the biasing force of the leaf spring portion provided on the cap maintains the gap member in contact with the mating member.
[0031] Furthermore, the present invention is characterized in that, in the above-described joinery, the cap is provided with a guide portion that guides the relative movement of the cover member along its longitudinal direction. According to this invention, the cap material moves only along the longitudinal side of the cover member because it is guided by the guide portion.
[0032] Furthermore, the present invention is characterized in that, in the above-described joinery, the cap is provided with a hook portion that engages with the cover member when moved toward the mating member, thereby restricting longitudinal movement due to the biasing force of the biasing member. According to this invention, the biasing force of the biasing member keeps the hook portion engaged with the cover member, making it possible to attach the cap to the cover member in advance. [Explanation of Symbols]
[0033] 2 Picture frame, 10 Frame body, 14 Transom, 14B3 Inner cover member, 30 Cap, 30a Cap body, 30b Inner surface guide part, 30c Outer surface guide part, 30d Edge guide part, 32 Hook part, 32a Hook claw, 34 Leaf spring part
Claims
1. The profile is equipped with a cover member, The cover member is a building component in which a cap is provided between it and a mating member positioned opposite the end of the cover member, A building fixture characterized in that at least one of the cover member and the cap is provided with a biasing member that biases the cap toward the mating member relative to the cover member.
2. The aforementioned profile is a mullion or transom installed between adjacent window sections. The cover member covers the surface of the profile that faces indoors, The joinery according to claim 1, characterized in that the cap is provided between the cover member and a frame disposed on the interior side of the frame, with the frame being the mating member.
3. The building fitting according to claim 1, characterized in that the biasing member is provided integrally with the cap.
4. The joinery according to claim 3, characterized in that the cap has a cap body disposed opposite to the end face of the cover member, and a leaf spring portion that extends inclined in a direction gradually approaching the end face of the cover member from the cap body, and functions to bias the cap body toward the mating member by contacting the end face of the cover member.
5. The joinery according to claim 1, characterized in that the cap is provided with a guide portion that guides the relative movement of the cover member along its longitudinal direction.
6. The joinery according to claim 1, characterized in that the cap is provided with a hook portion that engages with the cover member when moved toward the mating member, thereby restricting longitudinal movement due to the biasing force of the biasing member.
Citation Information
Patent Citations
Vertical multiple window sash
JP2001193358A