HINGE FOR A ROOF WINDOW AND ROOF WINDOW WITH A SET OF HINGES
20240209665 ยท 2024-06-27
Inventors
Cpc classification
International classification
Abstract
In the roof window, each hinge of (1010) of the set of hinges comprises a frame hinge part (1030), a sash hinge part (1040), and a movement supporting assembly comprising guiding means including a linkage mechanism with at least two links (1050, 1060) providing connection between the sash hinge part and the frame hinge part. The links (1050, 1060) of the linkage mechanism are connected to each other in a bearing axle (1055). One or more joints between the links and the frame and sash hinge parts comprises a sliding joint (1056, 1062) cooperating with a guide track (1036, 1045) and another joint may be a sliding joint or a hinged joint (1051, 1061). One or both of the guide tracks (1036, 1045) may comprise a curved portion.
Claims
1. A hinge for a roof window with a stationary primary frame having a plurality of frame members including at least two opposing side members, and at least one secondary frame including a sash having a plurality of sash members including at least two opposing side members, said hinge being configured to be connected to the stationary primary frame, and to the secondary frame sash to define a hinge axis of the roof window, said hinge comprising a frame hinge part, a sash hinge part, and a movement supporting assembly comprising guiding means configured to allow the sash hinge part to assume an angle relative to the frame hinge part substantially around said hinge axis during an opening movement from a closed position to an open position and during a closing movement from the open position to the closed position, the guiding means comprising a linkage mechanism including at least two links providing a connection between the sash hinge part and the frame hinge part, each link of the at least two links being connected to at least one of the frame hinge part and the sash hinge part at a joint and the at least two links being connected to each other, the frame hinge part comprising a base plate defining a hinge plane substantially perpendicular to the hinge axis of the roof window and the sash hinge part comprising a base plate substantially parallel to the base plate of the frame hinge part, the at least two links of the linkage mechanism are connected to each other by a bearing axle, that the at least two links comprise a sash link providing a connection between the bearing axle and the frame hinge part, and a frame link providing a connection between the bearing axle and the sash hinge part, and that at least one of the joints between the links and the frame and sash hinge parts comprises a sliding joint cooperating with a guide track and at least one other joint of said joints is selected from the group comprising a sliding joint and a hinged joint, and wherein said guide track comprises at least one curved portion.
2. The A hinge according to claim 1, wherein the guide track is provided in the frame hinge part and/or in the sash hinge part.
3. The A hinge according to claim 1, wherein the frame link is connected to the sash hinge part in a sliding joint and/or the sash link is connected to the frame hinge part in a sliding joint cooperating with a respective guide track provided in the respective sash hinge part or frame hinge part.
4. The hinge according to claim 1, wherein the guide track is provided in the base plate of the respective sash hinge part or frame hinge part.
5. The hinge according to claim 1, wherein the one guide track is provided in a respective link of the linkage mechanism.
6. The hinge according to claim 5, wherein the guide track is provided in the sash link and/or the frame link, and the sliding joint is provided on a hinge part, preferably on the frame hinge part and/or the sash hinge part.
7. The hinge according to claim 1, wherein the sliding joint comprises a pin, axle and/or a sliding block, said sliding block being connected to an engagement part.
8. The hinge according to claim 1, wherein the frame link is connected to the frame hinge part in a hinged joint and/or the sash link is connected to the sash hinge part in a hinged joint.
9. (canceled)
10. The hinge according to claim 1, wherein the guide track comprises at least two portions forming an angle relative to each other.
11. The hinge according to claim 10, wherein said at least two portions form an angle of 135? to 170? relative to each other.
12. The hinge according to claim 1, wherein a force transmission device is provided for exerting lifting assistance to the movement of the sash relative to the frame during opening of the roof window in the mounted condition of the hinge, and wherein said force transmission device is provided with biasing means selected from the group comprising leaf springs, torsion springs and tension/compression springs.
13. The hinge according to claim 12, wherein the force transmission device comprises at least one pick-up connected to the frame hinge part and/or the sash hinge part in a hinged joint and configured to act on the sliding joint, either directly or via a separate pick-up link.
14. The hinge according to claim 12, wherein the biasing means of the force transmission device comprise at least one leaf spring acting directly on the sliding joint or, on an engagement part connected to the sliding block of the sliding joint.
15. The hinge according to claim 1, wherein the hinge comprises a braking device acting on at least one element of the movement supporting assembly over at least a part of the opening and/or closing movement, and that the braking device comprises at least one friction element.
16. A roof window having a set of the hinges of claim 1, the roof window comprising: a stationary primary frame having a plurality of frame members including at least two opposing side members, at least one secondary frame including a sash having a plurality of sash members including at least two opposing side members, and the set of the hinges being connected to the stationary primary frame, and to the sash to define a hinge axis of the roof window, the frame hinge part of each hinge of the set of the hinges being connected to one of said frame side members of the stationary primary frame, and the sash hinge part of each hinge of the set of the hinges being connected to one of said sash side members.
17. A hinge for a roof window with a stationary primary frame having a plurality of frame members including at least two opposing side members, and at least one secondary frame including a sash having a plurality of sash members including at least two opposing side members, said hinge being configured to be connected to one of the stationary primary frame and an intermediate frame and said hinge further being configured to be connected to the secondary frame sash to define a hinge axis of the roof window, said hinge comprising a frame hinge part, a sash hinge part, and a movement supporting assembly comprising guiding means configured to allow the sash hinge part to assume an angle relative to the frame hinge part substantially around said hinge axis during an opening movement from a closed position to an open position and during a closing movement from the open position to the closed position, the guiding means comprising a linkage mechanism including at least two links providing a connection between the sash hinge part and the frame hinge part, each link of the at least two links being connected to at least one of the frame hinge part and the sash hinge part at a joint and the at least two links being connected to each other, the frame hinge part comprising a base plate defining a hinge plane substantially perpendicular to the hinge axis of the roof window and the sash hinge part comprising a base plate substantially parallel to the base plate of the frame hinge part, the at least two links of the linkage mechanism are connected to each other by a bearing axle, that the at least two links comprise a sash link providing a connection between the bearing axle and the frame hinge part, and a frame link providing a connection between the bearing axle and the sash hinge part, and that at least one of the joints between the links and the frame and sash hinge parts comprises a sliding joint cooperating with a guide track and at least one other joint of said joints is selected from the group comprising a sliding joint and a hinged joint, and wherein said guide track comprises at least one curved portion.
18. A roof window having a set of the hinges of claim 17, the roof window comprising: a stationary primary frame having a plurality of frame members including at least two opposing side members, at least one secondary frame including a sash having a plurality of sash members including at least two opposing side members, and the set of the hinges being connected to one of the stationary primary frame and the intermediate frame and the set of the hinges being further connected to the sash to define a hinge axis of the roof window, the frame hinge part of each hinge of the set of the hinges being connected to one of said frame side members of the stationary primary frame or to side members of the intermediate frame, and the sash hinge part of each hinge of the set of the hinges being connected to one of said sash side members.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0016] In the following description, embodiments of the invention will be described with reference to the drawings, in which
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DESCRIPTION OF EMBODIMENTS
[0032] In the following, embodiments of the inventive hinge and roof window will be described in further detail. When referring to the Figures, the terms up, down, upwards, downwards, top and bottom are taken relative to how the figures are displayed. A front view is taken from the hinge and viewing towards the frame. A view from behind is therefore taken as viewed from the frame towards the hinge. A longitudinal direction is, if nothing else is mentioned, longitudinal along the length of a member. It is to be understood that the arrangement shown in a horizontal orientation is not the normal orientation as the window is installed in an inclined roof.
[0033] Throughout the description of embodiments, reference will be made to a hinge carrying reference numerals 10; 110; 210; 710; 910; 1010; 1110. The hinge 10 shown in its mounted condition in a roof window is representative for all embodiments, and any one of the hinges 110; 210; 710; 910; 1010; 1110 may thus be put in the place of the hinge 10 shown in
FIG. 1
[0034] Initially, reference is made to
[0035] In a manner known per se, the window comprises a sash 2 carrying a glazing in the form of a pane 3 and a primary stationary frame 1. The window is intended to be built into a surface, which is inclined with respect to the horizontal, typically a roof, and the window will in the following be referred to as roof window. At a position between the top and centre of the window, there is a hinge connection between the frame 1 and the sash 2. The frame 1 and sash 2 are each formed by four members of which one frame side member 1a and one sash side member 2a are indicated. The sash 2 is openable with respect to the frame 1, as the sash 2 may be moved from a closed position, in which e.g. the sash side member 2a is substantially parallel with the frame side member 1a, to an open position, in which the sash side member 2a forms an angle with the frame side member 1a. During this movement the sash 2 rotates about a hinge axis a situated at the hinge connection. As indicated in
[0036] To protect the interior and the components of the window itself and to ascertain weather-proof transition to the surrounding roofing, the roof window comprises a covering, including flashing members (not shown), cladding and covering elements of which a frame side covering element 1b and sash side covering element 2b are shown.
[0037] From a closed position, the user operates the operating device of the window. The operating device typically comprises a handle (not shown) connected with the sash bottom member and/or, as a shown here, an operating and locking assembly 4 including a ventilation flap at the sash top member with a lock mechanism to interact with a striking plate on the frame top member. The force, and hence moment, exerted by the user operating the operating device, is transferred to the hinge 10 which in turn exerts a moment on the sash 2, and the moment resulting from the weight of the sash 2 and pane 3 is overcome, along with any frictional forces present. All in all, the opening operation entails that the sash 2 is moved from a closed position to an open position as represented by
FIGS. 2 to 12
[0038] Referring now first to
[0039] In
[0040] Turning now to
[0041] The frame hinge part 130 and the sash hinge part 140 comprise fastening means which can be for example pins or spigots 133, 143, or any type of threaded fastening means, for fastening to the frame side member 1a and sash side member 2a, respectively. The spigots 133, 143 are fixed on the receiver element 132 and the base plate 141 of the sash hinge part 140, respectively, such that sash-side spigots 143 protrude through the distance piece 142. The receiver element 132 is fastened to the frame side member 1a either in the supply condition or in a first step of installation, and the remaining components of the hinge 110 including the base plate 131 of the frame hinge part 130 are all connected to the sash 2.
[0042] Due to the configuration of the hinge 110, the sash link 150 and the frame link 160 are provided connected with each other by means of the bearing axle 155, and thus form a coherent structure constituting the remaining components of the hinge 110.
[0043] Following correct positioning of the remaining components of the hinge 110 relative to the frame side member 1a with the receiver element 132, the base plate 131 of the frame hinge part 130 is brought into connection with the receiver element 132 in that a base plate rivet 131a is brought into engagement with a receiver element slot 132a.
[0044] The frame hinge part 130 and the sash hinge part 140 are furthermore provided with holding clips 134, 144 for connecting the covering elements 1b, 2b of the frame and sash side members 1a, 2a.
[0045] It is noted that during the entire opening and closure movement, the respective planes of the base plates 131, 141 of the frame hinge part 130 and the sash hinge part 140 are at all times kept substantially parallel, thus avoiding transverse movements perpendicular to the hinge plane as defined by the base plates 131, 141.
[0046] In order to render the necessary movement between the parts of the hinge possible, each hinge comprises a movement supporting assembly. The movement supporting assembly comprises guiding means configured to allow the sash hinge part 140 to assume an angle relative to the frame hinge part 130 substantially around the hinge axis a during an opening movement from a closed position to an open position and during a closing movement from the open position to the closed position. In the type of hinge according to the invention, the guiding means comprise a linkage mechanism including at least two links 150, 160 providing connection between the sash hinge part 140 and the frame hinge part 130, and each link is connected to at least one of the frame hinge part and the sash hinge part at a joint and connected to each other as will be described in the following for the first embodiment.
[0047] According to the invention, the linkage mechanism comprises two links, namely a sash link 150 and a frame link 160 providing connection between the sash hinge part 140 and the frame hinge part 130.
[0048] The frame link 160 is connected to the sash hinge part 140 in a sliding joint 162. The sliding joint 162 cooperates with a guide track 145. Here, the guide track 145 is provided in the sash hinge part 140, more specifically in the base plate 141 of the sash hinge part 140. The sliding joint may in principle comprise a pin or an axle, but is here formed as a sliding block 163. The sliding block 163 is connected to an engagement part 164. Suitable materials of the components of the sliding joint, and of other components of the hinge, are given in Applicant's above-mentioned WO 2017/076416 A1. The sliding connection may also include a pin and/or an axle, either alone or in combination with the sliding block.
[0049] The sash link 150 is connected to the frame hinge part 130 by means of an additional link 165 via a hinged joint 153. In turn, the additional link 165 is connected to the frame hinge part 130 at a hinged joint 166 located eccentrically relative to the hinged joint 153 forming the connection between the sash link 150 and the additional link 165.
[0050] The sash link 150 and the frame link 160 are connected to each other in a bearing axle 155.
[0051] Furthermore, the frame link 160 is connected to the frame hinge part 130 in a hinged joint 161, and the sash link 150 is connected to the sash hinge part 140 in a hinged joint 151.
[0052] A force transmission device 170 is provided for exerting lifting assistance to the movement of the sash 2 relative to the frame 1 during opening of the roof window in the mounted condition of the hinge 110. The force transmission device 170 is provided with biasing means, which in general may be selected from the group comprising leaf springs, torsion springs and tension/compression springs. In the embodiment shown, the biasing means is a tension spring 172. The tension spring 172 is connected to the base plate 141 of the sash hinge part 140 and acts on a pick-up 171 connected to the sash hinge part 140 in a hinged joint 173 such that the pick-up 171 acts on the sliding joint 162, at the engagement part 164 thereof.
[0053] Finally, the hinge 110 comprises a braking device 180 acting on an element of the movement supporting assembly over a part of the opening and/or closing movement. In its most simple form, the braking device 180 comprises a friction element configured to provide a frictional force on a link of the linkage mechanism and/or at a joint between the linkage mechanism and the frame hinge part.
[0054] In the shown first embodiment, the braking device 180 comprises a friction element in the form of a friction disc 181, biased by a plate spring 182 acting on the sash link 150 via a washer 183. The friction disc 181 is provided between the sash link 150 and the additional link 165. The friction disc 181 is made of a suitable material which is able to apply a braking force on the sash link 150 and consequently on the entire linkage mechanism. The person skilled in the art is aware of materials which are able to withstand wear over long periods of time, for instance suitable plastic materials.
[0055] Turning now to
[0056] From the closed position shown in
FIGS. 13 to 16
[0057] Turning now to the remaining Figures of the drawings, it is again noted that elements having the same or analogous function are denoted by the same reference numerals as in the first embodiment, to which 100, 200 . . . has been added. Only differences will be described in detail.
[0058] In a second embodiment, the force transmission device 270 of the hinge 210 comprises a pick-up 271 connected to the sash hinge part 240 in a hinged joint 273 and configured to act on the sliding joint 262 via a separate pick-up link 274. This provides for an alternative set-up of the force transmission device 270.
FIGS. 17 to 18
[0059] In an alternative embodiment, a guide track 752 is provided in the sash link 750, and the sliding joint 735 is provided on the frame hinge part 730 of the hinge 710.
[0060] The friction element of the braking device 780 comprises two squeeze blocks 781, 782. The squeeze blocks 781, 782 are provided in connection with the sliding joint 735 and interact with the sash link 750 at the guide track 752 therein. Alternatively, a single squeeze block may be provided. The provision of squeeze blocks has proven to function well as an alternative braking solution.
[0061] A leaf spring 772 acts directly on the sliding joint 762. Specifically, the leaf spring 772 acts on the engagement part 764 connected to the sliding block 763 of the sliding joint 762. The leaf spring 772 is formed substantially as an S-shaped hook.
[0062] The force transmission device 770 comprises an engagement portion 772a of the leaf spring 772, as well as a first fastening protrusion 775a and a second fastening protrusion 775 b. The leaf spring 772 attaches to the two protrusions 775a and 775b.
FIGS. 19 to 21
[0063] In a still further embodiment shown in
[0064] The frame link 960 is connected to the frame hinge part 930 in a hinged joint 961. The sash link 950 is connected to the sash hinge part 940 in a hinged joint 951.
[0065] A guide track 952, 967 is provided in the sash link 950 and the frame link 960, respectively. A sliding joint 935 is provided on the frame hinge part 930 and the sash hinge part 940.
FIGS. 22 to 23
[0066] In an alternative embodiment, two guide tracks 1045, 1036 are provided on the sash hinge part 1040 and the frame hinge part 1030. Each of the tracks 1045, 1036 comprises a curved portion.
[0067] The sash link 1050 comprises a hinged joint 1051 and a sliding joint 1056. The two links 1050, 1060 of the linkage mechanism are connected to each other in the bearing axle 1055. The sliding joints 1056, 1062 cooperate with the guide tracks 1036, 1045.
[0068] The force transmission device 1070 is biased by the spring 1072. An additional link 1065 is connected with the frame link 1060. The force transmission device 1070 comprises a pick-up 1071 connected to the frame hinge part, which is configured to act on the sliding joint 1062.
FIGS. 24 to 25
[0069] In a still further embodiment, two guide tracks 1145, 1136 are provided on the sash hinge part 1140 and the frame hinge part 1130. Each of the tracks 1145, 1136 comprises a curved portion.
[0070] The two links 1150, 1160 of the linkage mechanism are connected to each other in the bearing axle 1155. The sash link 1150 comprises a hinged joint 1151 and a sliding joint 1156. The sliding joints 1156, 1162 cooperate with the guide tracks 1136, 1145.
[0071] In this embodiment, the two links 1150, 1160 have a substantially triangular shape. Each guide track thus comprises at least two portions forming an angle relative to each other, for instance an angle of 135? to 170? relative to each other
Non-Shown Embodiments
[0072] The hinge of the embodiments described in the above is also applicable in roof windows which are top-hinged during normal operation and which pivots for cleaning. It is understood that in such a roof window, the stationary frame 1 constitutes a primary frame, and the sash 2 functions as a first secondary frame and an intermediate frame functions as a second secondary frame. The intermediate frame is fastened to the stationary frame at a top mounting fitting and the sash is hinged at the top of the roof window, via the intermediate frame to the stationary frame, to render the roof window top-hinged during normal operation. The sash is also pivotally connected to the intermediate frame in order to be able to rotate the sash to provide access to the exterior of the pane, for instance for cleaning purposes. To that end, the intermediate frame is provided with a frame hinge part of the hinge and the sash with the counterpart sash hinge part.
[0073] The invention is not limited to the embodiments shown and described in the above, but various modifications and combinations may be carried out.
LIST OF REFERENCE NUMERALS
[0074] 1 frame [0075] 1a frame side member [0076] 1b frame side covering element [0077] 2 sash [0078] 2a sash side member [0079] 2b sash side covering element [0080] 3 pane [0081] 4 operating and locking assembly [0082] ? hinge axis [0083] 10 hinge [0084] 110 hinge [0085] 130 frame hinge part [0086] 131 base plate [0087] 131a base plate rivet [0088] 132 receiver element [0089] 132a receiver element slot [0090] 133 spigot [0091] 134 holding clip [0092] 140 sash hinge part [0093] 141 base plate [0094] 142 distance piece [0095] 143 spigot [0096] 144 holding clip [0097] 145 guide track [0098] 150 sash link [0099] 151 hinged joint (to base plate 141) [0100] 153 hinged joint (to additional link 165) [0101] 155 bearing axle [0102] 160 frame link [0103] 161 hinged joint (to base plate 131) [0104] 162 sliding joint (to guide track 145) [0105] 163 sliding block [0106] 164 engagement part [0107] 165 additional link [0108] 166 hinged joint of friction link 165 (to base plate 131) [0109] 170 force transmission device [0110] 171 pick-up [0111] 172 spring [0112] 173 hinged joint [0113] 180 braking device [0114] 181 friction disc [0115] 182 plate spring [0116] 183 washer [0117] 210 hinge [0118] 230 frame hinge part [0119] 240 sash hinge part [0120] 245 guide track [0121] 250 sash link [0122] 251 hinged joint [0123] 255 bearing axle [0124] 260 frame link [0125] 261 hinged joint (to base plate 231) [0126] 262 sliding joint (to guide track 245) [0127] 263 sliding block [0128] 270 force transmission device [0129] 271 pick-up [0130] 272 spring [0131] 273 hinged joint [0132] 274 pick-up link [0133] 280 braking device [0134] 710 hinge [0135] 730 frame hinge part [0136] 735 sliding joint [0137] 740 sash hinge part [0138] 745 guide track [0139] 750 sash link [0140] 751 hinged joint [0141] 752 guide track (to sliding joint 735) [0142] 755 bearing axle [0143] 760 frame link [0144] 761 hinged joint [0145] 762 sliding joint (to guide track 745) [0146] 763 sliding block [0147] 764 engagement part [0148] 770 force transmission device [0149] 772 leaf spring [0150] 772a engagement portion of leaf spring [0151] 775a first fastening protrusion [0152] 775b second fastening protrusion [0153] 780 braking device [0154] 781 first squeeze block [0155] 782 second squeeze block [0156] 910 hinge [0157] 930 frame hinge part [0158] 935 sliding joint [0159] 940 sash hinge part [0160] 946 sliding joint [0161] 950 sash link [0162] 951 hinged joint [0163] 952 guide track (to sliding joint 935) [0164] 955 bearing axle [0165] 960 frame link [0166] 961 hinged joint [0167] 967 guide track (to sliding joint 946) [0168] 970 force transmission device [0169] 972a leaf spring [0170] 972b leaf spring [0171] 975 protrusion [0172] 1010 hinge [0173] 1030 frame hinge part [0174] 1036 guide track [0175] 1040 sash hinge part [0176] 1045 guide track [0177] 1050 sash link [0178] 1051 hinged joint [0179] 1056 sliding joint (to guide track 1036) [0180] 1055 bearing axle [0181] 1060 frame link [0182] 1061 hinged joint [0183] 1062 sliding joint (to guide track 1045) [0184] 1065 additional link [0185] 1070 force transmission device [0186] 1071 pick-up [0187] 1072 spring [0188] 1073 hinged joint [0189] 1110 hinge [0190] 1130 frame hinge part [0191] 1136 guide track [0192] 1140 sash hinge part [0193] 1145 guide track [0194] 1150 sash link [0195] 1151 hinged joint [0196] 1156 sliding joint (to guide track 1136) [0197] 1155 bearing axle [0198] 1160 frame link [0199] 1161 hinged joint [0200] 1162 sliding joint (to guide track 1145)