The present application is a national stage of and claims priority of International patent application Serial No. PCT/EP2016/062270, filed May 31, 2016, and published in English as WO 2017/207028, the content of which is hereby incorporated by reference in its entirety.
The invention relates to an open roof construction for a vehicle. The open roof construction includes a roof opening in a stationary roof part and a rollo assembly positioned below the roof opening intended for covering the roof opening. The rollo assembly comprises a rollo screen and a winding shaft. The rollo screen includes a rollo screen edge which is attached to a stationary member of the open roof construction. The opposite edge is formed by an operating beam which is movable parallel to the roof opening in first and second directions in correspondence with the amount of rollo screen being wound on or off the winding shaft. The rollo screen has two longitudinal edges which, when the rollo screen is wound off, are brought into engagement with holding members extending alongside the longitudinal edges of the roof opening.
In a known open roof construction, a sunscreen includes a visible portion and a non-visible portion above it. The visible portion is stationary with respect to the sides of the roof opening and the non-visible portion can be unwound at one end and reversed into the visible portion on the opposite end. Thus, the visible portion is stationary, but the length of it varies to open and close the rollo screen. Because of such a stationary position of the rollo screen edge of the visible portion, any connections there also have a stationary position to the stationary part of the open roof construction. This has a positive effect on the life span and reliability of these connections, while allowing to simplify the design of these connections.
The open roof construction includes a roof opening in a stationary roof part and a rollo assembly positioned below the roof opening intended for covering the roof opening. The rollo assembly comprises a rollo screen and a winding shaft. The rollo screen includes a rollo screen edge which is attached to a stationary member of the open roof construction. The opposite edge is formed by an operating beam which is movable parallel to the roof opening in first and second directions in correspondence with the amount of rollo screen being wound on or off the winding shaft. The rollo screen has two longitudinal edges which, when the rollo screen is wound off, are brought into engagement with holding members extending alongside the longitudinal edges of the roof opening. The holding members each comprise at least a holding groove having an elongated entrance opening, an edge area near each longitudinal edge of the rollo screen being insertable into the respective holding groove together with a locking member, preferably an elongated locking member, clamping the rollo screen in the holding groove, the locking member. The edge area of the rollo screen and the holding groove have a shape and/or dimension preventing the locking member from unintentially leaving the holding groove through the entrance opening.
Due to this, preferably separate, locking member it is possible to hold the edge of the rollo screen in a reliable manner due to it being clamped in the holding groove.
The entrance opening of the holding groove may be more narrow than the holding groove, such that the locking member is locked within the holding groove when the locking member and the edge area of the rollo screen are inserted in the holding groove. This is an easy way to hold the locking member and therefore the edge area of the rollo screen in the holding groove.
In an embodiment, the operating beam is provided with a displacer acting on at least one of the locking member and holding groove to enable the locking member to enter and exit the holding groove together with the edge area of the rollo screen, wherein at least one of the edge area of the rollo screen, the locking member and the holding groove may be resiliently deformable to enable the locking member to enter and exit the holding groove.
The elastic deformation force, which may thus be provided either by the edge area of the rollo screen, the locking member and/or the holding groove, generally together with friction forces is sufficient to hold the edge area of the rollo screen in a reliable manner.
Each longitudinal edge area may extend into the holding groove through the entrance opening, around the locking member and then out of the holding groove again.
To provide a further means to hold the edge area of the rollo screen, a stop member may be provided at or near the longitudinal edges of the rollo screen and may be adapted to cooperate with the locking member to ensure the rollo screen remains locked in the holding groove.
In one embodiment the elongated locking member is stationary in longitudinal direction with respect to the holding groove, wherein the operating beam is adapted to accommodate the locking member when it exits the holding groove in case the operating beam is moved to wind the rollo screen on the winding shaft.
Thus, when the elongated locking member is out of use, it can be accommodated in the operating beam such that it is not visible and still under control.
In another embodiment in which the elongated locking member is stationary in longitudinal direction with respect to the holding groove, the stationary part is provided with an accommodating groove parallel to the holding groove to accommodate the locking member when it exits the holding groove in case the operating beam is moved to wind the rollo screen on the winding shaft.
In still another embodiment in which the elongated locking member is stationary in longitudinal direction with respect to the holding groove, either the operating beam or the stationary part is provided with a winding pulley to accommodate the locking member when it exits the holding groove in case the operating beam is moved to wind the rollo screen on the winding shaft.
In said embodiment in which the locking member is stationary in longitudinal direction with respect to the holding groove, but is movably attached to the stationary part next to the respective holding groove so as to be movable between a position within the holding groove and a position next to the holding groove, the operating beam or a part moving with it being provided with a displacer acting on the locking member to move it between both positions when the operating beam is moved to wind or unwind the rollo screen.
The operating beam may be provided with a member to hold the respective longitudinal edge of the rollo screen when the edge area is pushed into the holding groove. Such member ensures that the rollo screen is stretched from the inside when it is urged into the holding groove.
The holding member of the operating beam may be a cam clamping the rollo screen positioned laterally outside the holding groove, which is a very simple means.
The longitudinal edges of the rollo screen may also each be provided with a stop member to keep the respective longitudinal edge of the rollo screen substantially stationary in lateral direction when the edge area is pushed into the holding groove. This stop member may at least be one of a strip, cable and/or edge reinforcement.
In another embodiment, the stop member is positioned substantially within the edge area and includes two spaced strips such that they are positioned in the holding groove with the locking member between them.
Said locking member may be an elongated element which may be constructed as a solid steel or a twisted steel cable or wire, or a rod made of rubber-like material or plastic, such as nylon or PMMA. This depends for example whether it must be elastically deformable or not.
The locking member may for example be of circular or trapezium-shaped cross section.
If the entrance opening of the holding groove is on the upper side thereof, and thus the rollo screen will be stretched at substantially 90 degrees, it is easier to hold the edge area of the rollo screen into the holding groove, than if the entrance opening is at the lateral side thereof.
If it is the holding groove that is elastically deformable, the holding groove may be at least partly defined by a flexible free standing groove wall which is configured to bend when the locking member is entering or exiting the holding groove.
The invention further relates to a rollo assembly intended for use in an open roof construction.
Hereinafter the invention will be elucidated while referring to the drawings, in which:
Referring firstly to
A rollo assembly 4, here acting as a sunscreen assembly, is positioned below said roof opening 1 (although it is noted that parts of such a rollo assembly 4 also may be located below the stationary roof part 2). The rollo assembly 4 comprises a rollo screen 5 and a winding shaft 6 for the rollo screen 5 which is rotatable around a (horizontal transverse) stationary axis of rotation 7. The rollo screen 5, starting from the winding shaft 6, firstly extends substantially in a first direction D1, next around a reversal member 8 and finally back in an opposite second direction D2 and ends at a rollo screen edge 9 which is attached to a stationary member 10 of the open roof construction.
The reversal member 8 is movable in parallel to said first and second directions D1, D2 in correspondence with the amount of rollo screen 5 being wound on or off said winding shaft 6. For achieving the required translational movement of the reversal member 8 it has two opposite ends and the rollo screen 5 has two longitudinal edge areas 11 (
It is possible that the winding shaft 6 is provided with a spring member (such as an internal coiled spring) biasing the winding shaft 6 in a direction for winding the rollo screen 5. As a result the rollo screen is always kept taut, irrespective the position of the reversal member 8.
The reversal member 8 may comprises a rotatable cylindrical member which will rotate in accordance with the rollo screen 5 moving around it when the reversal member 8 is displaced. In the illustrated embodiment shown here, the reversal member is a non-rotating member providing or defining a low friction surface intended for engaging and guiding the rollo screen 5.
The reversal member 8 further may be provided with a cover member 16 which hides the part of the rollo screen 5 extending around the reversal member 8 from view.
The guides 12 are used for supporting the rollo screen 5 and keeping it in a desired position.
In order to keep the edge area 11 in the holding groove 17, there is provided a locking element 24, which in this case is an elongated cable, rope, wire or cord-like element having a length larger than the length of the holding groove 17. The cross-section of the locking element 24 is of the same shape as that of the holding groove 17 and is such that it fits easily into the holding groove 17 when it is lined with the edge area 11 of the rollo screen 5, but only fits through the entrance opening 18 of the holding groove if either the edge area 11, the entrance opening 18 or the locking element 24 itself is elastically deformed, i.e. bent or compressed. This prevents the locking element from leaving the holding groove 17 unintentionally and also causes the locking element 24 to clamp the edge area 11 of the rollo screen 5 to the wall of the holding groove when pulling forces are exerted on the rollo screen. Thus, if the rollo screen 5 is stretched when the edge area 11 is urged into the holding groove 17, this stretching force will help the locking element to clamp and thus hold the edge area 11 in the holding groove 17. Means may be provided to ensure that the rollo screen is stretched, which will be shown and discussed later on.
The material of locking element 24 may be chosen taking several variables in consideration: friction with various contacted parts like edge area 11, buckle resistance, flexibility, compressibility etc. Possible configurations are: solid steel cable, twisted steel cable or wire, nylon, rubber-like or PMMA cable. A 2 mm PMMA cable appears useful. To achieve compressibility, not only the material is decisive, also the construction of the cable, such as a hard core with a compressible cladding, a compressible core with a hard but flexible cladding, a hollow core with a flexible cladding etc.
Locking element displacing means are provided in the form of a nose-shaped inserting element 25 (rotatable or not) to force the locking element 24 through the entrance opening 18 into the holding groove 17 and a wedge or finger-shaped removing element 26 lifting and forcing the locking element 24 out of the holding groove 17 again. The forces exerted by these elements on locking element 24 is much larger and directed differently compared to the stretching force exerted by the rollo screen 5. The finger-shaped removing element 26 is mounted closer to the rollo screen displacer 22 than the nose-shaped inserting element 25. The removing element 26 for locking element 24 also acts as rollo screen displacer 22 for edge area 11 of rollo screen 5 as it holds edge area down just before locking element 24 is inserted into holding groove 17. If disk-shaped element 23 is not present (see
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To further improve the locking function of edge area 11 of rollo screen 5, it can be provided with 2 additional strips 41, 42 acting as stop members and as shown in
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The invention is not limited to the embodiments described before, which may be varied widely within the scope of the invention as defined by the appending claims. For example, it would be possible to provide a rollo assembly without a reversal member. The winding shaft is then arranged at the position of the reversal member, so that the winding shaft moves when the rollo screen is wound or unwound. The locking element could also be non-stationary and move with reversal member 8. In this case, the excess length of the locking element created when opening, i.e. winding the rollo screen comes out of the holding groove at a position near the winding shaft.
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/EP2016/062270 | 5/31/2016 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2017/207028 | 12/7/2017 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
1370500 | Jones | Mar 1921 | A |
1459155 | Ioor | Jun 1923 | A |
1673326 | Goldsmith | Jun 1928 | A |
3017927 | Demko | Jan 1962 | A |
4649981 | Bibeau | Mar 1987 | A |
5117892 | Murray | Jun 1992 | A |
5934353 | Buhr | Aug 1999 | A |
6179373 | Bohm et al. | Jan 2001 | B1 |
6394173 | Enssle | May 2002 | B2 |
6942003 | Thompson | Sep 2005 | B2 |
7114766 | Becher et al. | Oct 2006 | B2 |
7114767 | Grimm et al. | Oct 2006 | B2 |
7793702 | Biewer et al. | Sep 2010 | B2 |
7971626 | Renz | Jul 2011 | B2 |
8955575 | Glasl et al. | Feb 2015 | B2 |
9090147 | Nellen et al. | Jul 2015 | B2 |
10173503 | Ten-Jet-Foei | Jan 2019 | B2 |
20050225122 | Becher et al. | Oct 2005 | A1 |
20050225123 | Grimm et al. | Oct 2005 | A1 |
20060027347 | Boehm et al. | Feb 2006 | A1 |
20070175603 | Lin | Aug 2007 | A1 |
20080179021 | Biewer et al. | Jul 2008 | A1 |
20090145559 | Glasl et al. | Jun 2009 | A1 |
20100170645 | Lin | Jul 2010 | A1 |
20110146921 | Nellen et al. | Jun 2011 | A1 |
20110227371 | Nellen et al. | Sep 2011 | A1 |
20160347156 | Ten-Jet-Foei | Dec 2016 | A1 |
Number | Date | Country |
---|---|---|
2700152 | May 2005 | CN |
1721216 | Jan 2006 | CN |
102004028882 | Jan 2006 | DE |
202006015107 | Jan 2007 | DE |
102013207920 | Oct 2014 | DE |
1588880 | Oct 2005 | EP |
1616737 | Jan 2006 | EP |
1953018 | Aug 2008 | EP |
1378077 | Nov 1964 | FR |
2006053520 | May 2006 | WO |
2010022769 | Mar 2010 | WO |
Entry |
---|
International Search Report dated Feb. 27, 2017 for corresponding International Application No. PCT/EP2016/062270, filed May 31, 2016. |
Written Opinion of the International Searching Authority dated Feb. 27, 2017 for corresponding International Application No. PCT/EP2016/062270, filed May 31, 2016. |
Written Opinion of the International Searching Authority dated Dec. 13, 2018, for corresponding International Application No. PCT/EP2016/062270, filed May 31, 2016. |
Communication from the European Patent Office for European Patent Application No. 116726310.2, dated Nov. 11, 2020. |
Number | Date | Country | |
---|---|---|---|
20190291546 A1 | Sep 2019 | US |