The present disclosure relates to a louver blind structure mounted within a double glazed sealed window unit. More particularly but not exclusively, the present disclosure relates louver structure including an actuator for causing louvers of a louver blind structure to pivot between closed and opened positions.
Louver blind structures are well known in the art. These structures are located within the inner chamber of a window unit and include a plurality of louver members or slat members which are equally spaced and horizontally disposed. The louver member can pivot from a vertical position slightly overlapping one another to form a uniform vertical surface that blocks light from streaming therethrough. The louver members can also be pivoted into a horizontal position in order to let light pass between adjacent and spaced apart louver members.
A drawback of conventional louver blind structure is that they are thick and large structures and thus cannot be positioned in smaller or thinner window structures. This larger structure is a result of cumbersome actuation systems for pivoting the louver members.
It is an object of the present disclosure to provide a louver blind structure.
It is an object of the present disclosure to provide louver blind structure in a double glazed window unit
It is an object of the present disclosure to provide a kit for a louver blind structure.
In accordance with an aspect of the present disclosure, there is provided a louver blind structure comprising:
In an embodiment, the elongated member is movably mounted to the frame.
In an embodiment, the frame comprises frame members, the actuator being mounted to one of the frame member. In an embodiment, the elongated member is movably mounted to the one frame member. In an embodiment, the one frame member comprises a channel for receiving the elongated member therein, the elongated member being movable within the channel. In an embodiment, the one frame member comprises a main longitudinal body and an auxiliary longitudinal body mounted thereto for defining the channel therebetween. In an embodiment, the main body defines the outer side of the one frame member and wherein the auxiliary body defines the inner side of the one frame member. In an embodiment, the actuator is mounted on the outer side and protrudes through the main body so as to engage the elongated member within the channel.
In an embodiment, the one frame member comprises a lateral side frame member. In an embodiment, the elongated member is movable between upward and downward directions. In an embodiment, when the elongated member is moved upwardly it so engages the louver members as to cause them to pivot to the open position and wherein when the elongated member is moved downwardly it so engages the louver members as to cause them to pivot to the closed position.
In an embodiment, the louver members comprise respective pivot members, the elongated member comprising a plurality of opening, each opening receiving at least a portion of a respective pivot member. In an embodiment, each respective member is positioned at a the longitudinal end of the louver member. In an embodiment, movement of the elongated member so interferes with the pivot members as to impart a pivot movement thereto, thereby, causing a corresponding pivot of the louver members.
In an embodiment, the actuator engages the elongated member. In an embodiment, the actuator comprises a cam for engaging the elongated member. In an embodiment, the cam comprises a roller for rollingly engaging the louver member. In an embodiment, the elongated member comprises a slot for being engaged by the actuator.
In an embodiment, the actuator provides for moving the elongated member in an upward and downward direction. In an embodiment, the actuator comprises a portion thereof mounted externally of the frame and a portion thereof mounted within the frame. In an embodiment, the actuator comprises a portion thereof mounted internally of the frame. In an embodiment, the actuator portion mounted externally of the frame comprises a control for selectively imparting a movement to the elongated member. In an embodiment, the control comprises a manual control. In an embodiment, the manual control comprises a gear. In an embodiment, the control comprises a motor. In an embodiment, the control actuates a gear assembly for imparting a movement to the elongated member. In an embodiment, the actuator portion mounted internally of the frame engages the elongated member.
In an embodiment, the frame comprises a rectangular configuration.
In an embodiment, the louver blind structure comprises a pair of window panels mounted to the frame with the plurality of the louver members being positioned therebetween.
In accordance with an aspect of the present disclosure, there is provided kit for a louver blind structure including a frame and a plurality of louver members pivotally mounted at each longitudinal end thereof to the frame so as to pivot between open and closed positions, the kit comprising
In accordance with a non restrictive illustrative embodiment of, there is provided a louver blind structure including: an actuator assembly mounted to at least one side of the structure; and an elongated member is in a slidable relationship with the at least one side of the structure thereby vertically movable relative the at least side, the elongated member interfering with the louver members so as to cause a relative pivot when being moved; wherein the actuator assembly selectively actuates the elongated member to causing the louver members to pivot between opened and closed positions.
In an embodiment the louver blind structure comprises: four interrelated sides defining a generally rectangular configuration, louver members extending between lateral sides of the structure being pivotally mounted thereto; a vertically movable element including openings for receiving a portion of the louver blind members therethrough and being mounted to the inner side of at least one lateral side structure; an actuator assembly comprising an external portion that is mounted to the external side of the at least one lateral side structure and including a protruding portion mounted through the at least one lateral side structure for engaging the vertically movable member, the external portion of the actuator assembly comprising an external actuator element for actuating an internal actuator element which provides for causing the vertical movement of the elongated, the vertical movement of this elongated side structure provides for moving the louver blind members between closed and opened positions.
Other objects, advantages and features of the present invention will become more apparent upon reading of the following non-restrictive description of illustrative embodiments thereof, given by way of example only with reference to the accompanying drawings.
In the appended drawings:
Generally stated, in accordance with an embodiment, the present description provides a louver blind structure with an actuator mounted thereto for moving an elongated member also mounted to the structure. The elongated member engages the louver members of the blind structure so as to pivot them between closed and open positions. A pair of window panels can be mounted to the structure to enclose the louver members therebetween.
Turning to
The proximal circular gear element 18 receives a longitudinal gear rod 20. This gear rod 20 includes a circular base portion 22, with a flat part 23, fitted within a corresponding opening 24 of gear element 18 so as to rotate therewith. The base portion 22 is dependent from a ring structure 25 that rests on the gear element 18. The gear rod 20 includes a head portion 26 that is inserted within a tubular structure 28 formed within and extending from the cover 30 which is sealingly mountable to the base 12 via fasters 29 and mutually corresponding apertures 31.
The head portion 26 is mounted within the opening 32 of a second or distal circular gear element 34 slidably mounted to the tubular structure 28 and having a protruding element or cam 36 protruding therefrom. A roller 35 is rollingly mounted about the cam 36. A fastener 37 connects the gear rod 20 to the distal gear element 34. A ring seal 39 is positioned within a ring indenture 41 formed about the tubular structure 28.
As shown in
With respect to
With respect to
Turning to
With reference to
It should be noted that the operational communication between the actuator 10 the louvers 54 is completely sealed. Thus all the openings mentioned herein in order to provide for this operational communication are sealed so as to isolate and seal the chamber defined by the frame 40 and the window panels 50 and 52 from the external environment.
The blade 72 includes at least one slot 78 for receiving the cam 36 with its roller 35 therein.
The blade 72 also includes openings 80 defining jagged rims 82 through which the pivot elements 74 are positioned.
With reference to
The louver members 54 can pivot from a first generally vertical position, shown in
In operation, when the louver members 54 are in the closed position, actuation of the worm gear 16 causes the proximal base gear 18 to rotate thereby rotating therewith the rod gear 20 which in turn rotates the distal gear 34. As such the cam 36 acts on the blade 72 via slot 78. More specifically the cam 36 is moved upwardly and hence, the roller 35 rolls along the inner rim of the slot 78 from one end thereof shown in
As the blade 72 moves upwardly, the rims 82 of the openings 80 interfere with the wing members 86 causing the pivots 74 to turn thereby pivoting their corresponding louver members 54 from the closed position (
When the worm gear 16 is turned in the opposite direction this will result in the cam 36 pushing the blade 72 downwardly from the initial upwards position shown in
Therefore, the worm gear 16 acts as control for the gear assembly which ultimately provides for the cam 36 to act on blade 72. Of course, this control need not be manual it can also be motorized.
With respect to
Turning to
The various features described herein can be combined in a variety of ways within the context of the present description so as to provide still other embodiments. It is to be understood that the present description is not limited in its application to the details of construction and parts illustrated in the accompanying drawings and described hereinabove. The description is capable of other embodiments and of being practiced in various ways. It is also to be understood that the phraseology or terminology used herein is for the purpose of description and not limitation. Hence, although the present description has been provided hereinabove by way of non-restrictive illustrative embodiments thereof, it can be modified, without departing from the scope, spirit and nature of the appended claims.
The present application claims priority on U.S. Provisional Patent Application No. 61/272,239 filed on Sep. 3, 2009 and incorporated herein by reference in its entirety.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CA2010/001396 | 9/3/2010 | WO | 00 | 3/5/2012 |
Publishing Document | Publishing Date | Country | Kind |
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WO2011/026245 | 3/10/2011 | WO | A |
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