Hinge for a roof window, and a roof window including a set of hinges
10287809 ยท 2019-05-14
Assignee
Inventors
Cpc classification
E05F1/1246
FIXED CONSTRUCTIONS
E05D7/086
FIXED CONSTRUCTIONS
E05D3/186
FIXED CONSTRUCTIONS
E05D7/085
FIXED CONSTRUCTIONS
E05D7/082
FIXED CONSTRUCTIONS
International classification
E04B7/18
FIXED CONSTRUCTIONS
E05D7/082
FIXED CONSTRUCTIONS
E05D7/086
FIXED CONSTRUCTIONS
E05D7/085
FIXED CONSTRUCTIONS
Abstract
The hinge (10) is intended for a roof window having a frame and a sash, and has a frame hinge part (100) and a sash hinge part (200) configured to assume an angle relative to the frame hinge part (100). Each hinge part (100, 200) has a base plate (110, 210) with a guide track (112, 212) and a link (120, 220), the links (120, 220) being connected to each other at a bearing axle (123). Each link (120, 220) has a first hinged joint (121, 221) to the respective base plate (110, 210) and a sliding joint (122, 222) slidably received in the guide track (212, 112) in the base plate (210, 110) of the other hinge part (200, 100). A pick-up element (130, 230) is connected to the base plate (110, 210) in a second hinged joint (131, 231) and is biased by a spring (140, 240) to act on the sliding joint (222, 122) in the guide track (112, 212), for instance within a predefined angle interval.
Claims
1. A hinge (10) for a roof window having a frame and a sash, said hinge comprising: a frame hinge part (100) and a sash hinge part (200) configured to assume an angle relative to the frame hinge part (100), the frame hinge part (100) and the sash hinge part (200) each comprising a base plate (110, 210) with a guide track (112, 212) and a link (120, 220), the links (120, 220) being connected to each other at a bearing axle (123), each link (120, 220) including a first hinged joint (121, 221) to the respective base plate (110, 210) and a sliding joint (122, 222) slidably received in the guide track (212, 112) of the base plate (210, 110) of the other hinge part (200, 100), characterized in that at least one hinge part (100, 200) is provided with a pick-up element (130, 230; 135) biased by a spring (140, 240) to act on a selected part of the hinge (10), said selected part of the hinge (10) being the sliding joint (222, 122) of the other hinge part (200, 100) in the guide track (112, 212), the pick-up element (130, 230) is connected to the base plate (110, 210) in a second hinged joint (131, 231) and acts on the sliding joint (222, 122) of the other hinge part (200, 100), and the pick-up element (130, 230) acts on the sliding joint (222, 122) only within a predefined angle interval.
2. A hinge according to claim 1, wherein the spring is integrated in the pick-up element (135).
3. A hinge according to claim 1, wherein the frame hinge part (100) and the sash hinge part (200) are both provided with a pick-up element (130, 230).
4. A hinge according to claim 3, wherein each pick-up element (130, 230) is provided with a curved surface (2303; 1303) facing the sliding joint (222, 122) of the other hinge part (200, 100).
5. A hinge according to claim 4, wherein the curved surface (1303) comprises an apex point (1304), a first inclined portion (1305), at least one groove point (1306), and a second inclined portion (1307).
6. A hinge according to claim 4, wherein each pick-up element (130, 230) is provided with a recess (2302; 1302) for cooperating with the spring (140, 240) and an opening (1301) for cooperating with the second hinged joint (131, 231).
7. A hinge according to claim 6, wherein each pick-up element (130, 230) is substantially L-shaped and the second hinged joint (131, 231) is provided at the intersection between the legs of the L-shape, the recess (2302) for cooperating with the spring (140, 240) being provided at one leg of the L-shape and the curved surface (2303) facing the sliding joint (222, 122) of the other hinge part (200, 100) on the other.
8. A hinge according to claim 6, wherein each pick-up element (130, 230) is formed as a substantially longitudinal element and the second hinged joint (131, 231) is provided at one end and the recess (1302) for cooperating with the spring (140, 240) at the other, the curved surface (2303) facing the sliding joint (122) of the other hinge part (100) being provided at a top edge between the ends of the pick-up element (130, 230).
9. A hinge according to claim 1, wherein each link (120, 220) is formed as an angular element with an apex and two legs, the bearing axle (123) being provided at the apex and the first hinged joint (121, 221) being provided at one leg, and the sliding joint (122, 222) at the other leg.
10. A hinge according to claim 1, wherein the sliding joint (222) comprises a pin (2221) connected to a substantially rectangular block (2222) slidably received in the guide track (112) of the other hinge part (100) and a wheel (2223) interacting with the curved surface (1303) of the pick-up element (130).
11. A hinge according to claim 10, wherein the wheel (2223) of the sliding joint (222) and/or the curved surface (1303) of the pick-up element (130) is/are provided with force transmitting means, preferably as a toothed gear or a rack-and-pinion transmission.
12. A hinge according to claim 1, wherein the sliding joint (222, 122) comprises two components, where the first component is a block (222a) which is preferably made of a POM/PTFE composite, and the second component is a block (222b), which is preferably made of PA6 with fibre glass reinforcement.
13. A hinge according to claim 1, wherein at least one of the frame hinge part (100) and the sash hinge part (200) comprises a mounting plate (101, 201) for connection to the base plate (110, 210) by means of connection means (104, 204).
14. A hinge according to claim 13, wherein the connection means (104) of the frame hinge part (100) is releasable such that the mounting plate (101) is adapted to be fastened separately to the frame of the roof window and the remaining components of the hinge including the base plate (110) are adapted to be connected to the mounting plate (101) in a subsequent operation.
15. A hinge according to claim 1, wherein the pick-up element (130) is provided with a curved surface (132) to interact with a straight portion (142) of the spring (140), the pick-up element (130) being preferably provided with a recess (133) to accommodate an end portion (143) of the spring (140).
16. A hinge according to claim 1, wherein a stop (125) is provided on one or both links (120, 220) to interact with a well-defined surface (2205) on the other link (220, 120).
17. A roof window, comprising: a frame (1) having a top member, a bottom member and two side members (la) defining a frame plane, a sash (2) having a top member, a bottom member and two side members (2a), said sash carrying a pane (3) and defining a sash plane, said set of hinges (10) defining a hinge axis (?) of the window; and, a set of hinges, at least one hinge of said set of hinges including a frame hinge part (100) and a sash hinge part (200) configured to assume an angle relative to the frame hinge part (100), the frame hinge part (100) and the sash hinge part (200) each comprising a base plate (110, 210) with a guide track (112, 212) and a link (120, 220), the links (120, 220) being connected to each other at a bearing axle (123), each link (120, 220) including a first hinged joint (121, 221) to the respective base plate (110, 210) and a sliding joint (122, 222) slidably received in the guide track (212, 112) in the base plate (210, 110) of the other hinge part (200, 100), at least one hinge part (100, 200) is provided with a pick-up element (130, 230; 135) biased by a spring (140, 240) to act on a selected part of the hinge (10), said selected part of the hinge (10) being the sliding joint (222, 122) of the other hinge part (200, 100) in the guide track (112, 212), that the pick-up element (130, 230) is connected to the base plate (110, 210) in a second hinged joint (131, 231) and acts on the sliding joint (222, 122) of the other hinge part (200, 100), and that the pick-up element (130, 230) acts on the sliding joint (222, 122) only within a predefined angle interval.
18. A roof window according to claim 17, wherein a plurality of pick-up elements (130; 130; 130; 130; 230) is provided, each pick-up element of said plurality having a curved surface (1303) comprising an apex point (1304), a first inclined portion (1305), at least one groove point (1306), and a second inclined portion (1307), and wherein the curved surface (1303) has a configuration adapted to a specific range of roof inclinations.
19. A roof window according to claim 17, wherein the hinge axis (?) is located between a centre axis and the top of the roof window, in the interval ? to ? of the distance between the centre axis and the top.
20. A roof window according to claim 17, wherein the sash is connected to an intermediate frame by said set of hinges, said intermediate frame being connected to the frame via a top hinge connection, allowing the sash to rotate with the intermediate frame about a hinge axis at the top, and to pivot relative to the intermediate frame.
21. A roof window according to claim 17, in which the set of hinges comprises a total of 1 to 8 pick-up elements.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The invention will be described in more detail below by means of non-limiting examples of embodiments and with reference to the schematic drawing, in which
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DETAILED DESCRIPTION OF THE INVENTION
(16) In the following, embodiments of the inventive hinge generally designated 10 will be described in further detail. For reference, a window with a prior art hinge 10 is shown in
(17) In a manner known per se, the window comprises a sash 2 carrying a glazing in the form of a pane 3 and a 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 hinge connection in
(18) 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 arrangement, including flashing members (not shown) and cladding elements of which a frame side cladding element 1b and sash side cladding element 2b are shown.
(19) Other parts of the roof window not described in the present application but which are nevertheless directly applicable also to the roof window according to the invention include auxiliary equipment such as a lifting device for assisting the movement of the sash 2 from the closed position to an open position described in the above-mentioned EP applications.
(20) 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 an operating and locking assembly including a ventilation flap at the sash top member with a lock mechanism to interact with a striking plate on the frame top member. As will be described in further detail below, the hinge 10 exerts a moment on the sash 1, and in combination with the force, and hence moment, exerted by the user operating the operating device, the moment resulting from the weight of the sash 1 and pane 3 is overcome, along with any frictional forces present. All in all, the opening operation entails that the sash 1 is moved from a closed position to an open position as represented by
(21) Referring now to
(22) The hinge 10 comprises a frame hinge part 100 and a sash hinge part 200 configured to assume an angle relative to the frame hinge part 100. The hinge 10 forms part of a set of hinges, of which the frame hinge part 100 of each hinge 10 is configured to be fastened to the frame side member 1a of the frame 1 of the roof window by fastening means 102, at a location chosen to provide the desired position of the hinge axis ?, and the sash hinge part 200 is correspondingly configured to be fastened to the sash side member 2a. The hinge 10 is shown as it will be positioned in a roof window installed in a roof having an inclination of approximately 40?.
(23) The hinge 10 according to the invention includes a linkage mechanism having a configuration allowing a very accurate control of the force conditions of the kinematic pattern and output force. To that end the frame hinge part 100 and the sash hinge part 200 each comprises a base plate 110, 210 with a guide track 112, 212 and a link 120, 220. The links 120, 220 are connected to each other at a bearing axle 123 (visible in
(24) Each link 120, 220 includes a first hinged joint 121, 221 to the respective base plate 110, 210 and a sliding joint 122, 222 slidably received in the guide track 212, 112 in the base plate 210, 110 of the other hinge part 200, 100. By the term hinged joint is to be understood that the connection is purely or at least mainly rotational. The term sliding joint is utilized to denote that the connection involves a translational movement; however, it is to be understood that the parts are also able to rotate relative to each other. In the embodiment shown, each link 120, 220 is formed as an angular element with an apex and two legs, the bearing axle 123 being provided at the apex and the first hinged joint 121, 221 being provided at one leg, and the sliding joint 122, 222 at the other leg.
(25) According to the general principle underlying the invention, at least one hinge part 100, 200 is provided with a pick-up element 130, 230.
(26) In the embodiment shown, the frame hinge part 100 and the sash hinge part 200 are both provided with a pick-up element 130, 230. The pick-up elements 130, 230 are connected to the respective base plate 110, 210 in a second hinged joint 131, 231 and biased by a spring 140, 240 to act on the sliding joint 222, 122 of the other hinge part 200, 100 in the guide track 112, 212.
(27) In principle, the pick-up element may be formed as any suitable element which is attached to one part of the hinge and applies a force to another part of the hinge, in a way that would not be present if not for the pick-up element. Hence, the pick-up element may, when subjected to a force in one direction, give rise to a force in the same or in another direction, again depending on the mounting in the hinge.
(28) Correspondingly, the spring bias may be accomplished in any suitable way. Typically, the spring will be a tension or compression spring, depending on the mounting. In an alternative embodiment, shown in
(29) Another embodiment is shown in
(30) In one presently preferred embodiment, each sliding joint 222, 122 comprises two components, as seen in
(31) Other examples of modifying the frictional forces in the track 112, 212 include providing the track with one or more narrowed sections.
(32) The pick-up element 130, 230 comprises a defined surface 1305, 2305, which dictates the force-transmitting properties of the pick-up element 130, 230.
(33) In the first and second embodiments shown, the springs 140, 240 are connected to a respective spring hook 105, 205 on the base plate 110 of the frame hinge part 100 and the base plate 210 of the sash hinge part 200, respectively.
(34) Furthermore, in the embodiments shown, each pick-up element 130, 230 is provided with a curved surface 2303, of which only the defined surface 2305 of the pick-up element 230 of the sash hinge part 200 of the first embodiment is indicated in
(35) In the first embodiment, each pick-up element 130, 230 is substantially L-shaped and the second hinged joint 131, 231 is provided at the intersection between the legs of the L-shape, the recess 2302 for cooperating with the spring 140, 240 being provided at one leg of the L-shape and the curved surface 2303 facing the sliding joint 222, 122 of the other hinge part 200, 100 on the other.
(36) With the specific arrangement of the pick-up elements 130, 230 of the first embodiment, the springs 140, 240 are provided as tension coil springs. Referring in particular to
(37) Hence, during the opening movement, the bias of the springs 140, 240 exerts a pushing force on the respective sliding joint 222, 122, and in turn, this force is transmitted into a moment acting on the sash 2 in the opening direction and thereby assists in the opening procedure. This is indicated by the appearance of the springs 140, 240 in
(38) Comparing the position of the sliding joints 122, 222 in the track 212, 112 in
(39) Mounting of the hinge 10 in a roof window may in principle be carried out in any suitable manner. In order to ease the mounting, the specific hinge function is separated from the fastening function in the first embodiment in that at least one of the frame hinge part 100 and the sash hinge part 200 comprises a mounting plate 101, 201 for connection to the base plate 110, 210 by means of connection means 104, 204. In the first embodiment, the mounting plate 201 of the sash hinge part 200 is provided with two spigots 202 and the connection means to the base plate 210 is in the form of rivets 204 to provide a solid and reliable connection. The connection means 104 of the frame hinge part 100 is releasable such that the mounting plate 101 is able to be fastened separately to the frame of the roof window and the remaining components of the hinge including the base plate 110 are then connected to the mounting plate 101 in a subsequent operation. Such a releasable connection is for instance described in Applicant's German utility model DE202005020048U1 and specific reference is made to the description of the embodiment therein. The connection of the frame side cladding element 1b and sash side cladding element 2a is then carried out by introducing appropriate anchoring means into holding clips 103, 203 on the base plates 110, 210.
(40) During mounting of the hinge 10, it is advantageous that the installer maintains control of the components of the roof window such that the sash 2 is at all times prevented from rotating beyond 180?. To this end, the further embodiment shown in
(41) Referring now to
(42) From
(43) The main difference in the second embodiment relative to the first embodiment resides in the configuration of the pick-up element and its connection to the base plate of the frame hinge part 100 and the sash hinge part 200, respectively.
(44) In the second embodiment, each pick-up element 130, 230 is formed as a substantially longitudinal element and the second hinged joint 131, 231 is provided at one end and the recess 1302 for cooperating with the spring 140, 240 at the other, the curved surface 2303 facing the sliding joint 122 of the other hinge part 100 being provided at a top edge between the ends of the pick-up element 130, 230.
(45) Referring in particular to
(46) Alternative profiles of the curved surface 1303 shown in
(47) In a roof window including a set of hinges 10 according to the first or second embodiments described in the above, a plurality of pick-up elements 130; 130; 130; 130 may be provided, wherein the curved surface 1303 has a configuration adapted to a specific range of roof inclinations.
(48) In the hinge 10 of the second embodiment, the pick-up element 130 shown in its mounted position in
(49) Referring to the detailed view of
(50) It should be noted that the above description of preferred embodiments serves only as an example, and that a person skilled in the art will know that numerous variations are possible without deviating from the scope of the claims.