The present invention relates to a frameless window, in particular a mobile window for motor vehicles. The present invention also relates to a process for manufacturing said window. The window comprises a pane of glazing material such as a sheet of glass.
A frameless window is a window in which the pane is not surrounded by a frame for at least a significant part of the time during normal use. One example which is particularly relevant is that of a frameless window for a door of a motor vehicle, especially the front door of a sports car such as a coupe, convertible or other vehicle lacking a B pillar. A B pillar is the bodywork member which separates the front windows from the rear windows of a vehicle. In a vehicle door having a frameless window, no window frame is provided in the door itself, so when the door is open, the pane extends upwards from the door without lateral support. However, when the door is shut, the pane is received against seals in the vehicle bodywork, and is normally surrounded by such bodywork, and to that extent the window may not be regarded as entirely frameless.
It will be appreciated that, given the lack of lateral support for the pane, it is important to achieve precise positioning of the pane relative to the door, so that the pane comes into sealing contact with the bodywork seals when the door is shut. The lower edge of the pane is held in members known as holders, which generally have a U-shaped configuration, and may be bonded to the pane.
WO 01/98613 discloses a process and an apparatus for manufacturing frameless windows which comprise a glass pane, the lower edge of which is fixed by means of adhesives in the slot of one or more holders. These windows, already provided with said holders, are arranged onto a work-table in a substantially horizontal position. A portion of these holders is removed when the windows lie on the work-table, so as to compensate the shape variations of the glass pane with respect to its nominal shape. These shape variations can also be compensated by slightly modifying the mutual position of the pane with respect to the holders by exploiting the minimum gap which is comprised in the slot between the pane and the holders for applying the adhesives between them.
Similar windows and manufacturing arrangements are also disclosed in DE 4340363, FR 2762350 and WO 2004/016894.
However, in all the above mentioned known windows, the possibility of compensating the shape variations of the glass pane is very low since the high precision and the short manufacturing times required for mounting the window do not allow to employ holders with relatively wide slots.
It is therefore an object of the present invention to manufacture frameless windows by compensating in a simple and fast manner their shape variations with respect to the nominal shape. Said object is achieved with a window and a process, the main features of which are disclosed in claims 1 and 9, respectively, while other features are disclosed in the remaining claims.
The invention further relates to a window comprising a pane of sheet glazing material and one or more holders bonded to the pane, each holder having an elongate slot, characterised in that the lower edge of the pane is bonded in position in the slot by a first adhesive applied locally to part of the slot and a second adhesive applied to the slot adjacent the first adhesive. Preferably the first adhesive is applied close to one or both ends of the slot. Application of the adhesive may be direct to the slot, or adhesive may be applied to the pane first, and hence indirectly to the slot.
Thanks to the holders with relatively wide slots which are partially filled with a first adhesive having a high elastic modulus and a short cure time, the window according to the present invention can be assembled quickly, since said adhesive can keep the glass pane in the correct position with respect to the holders also when their slot is much wider than the thickness of the pane. After the application of the first adhesive, the slots can be filled with a second adhesive which completes the structural union between the pane and the holders. This second adhesive can have a lower elastic modulus and a longer cure time, since it can be applied when the holders are already fixed to the pane. The viscosity of the second adhesive is preferably lower than the viscosity of the first adhesive, so as to simplify the application of the second adhesive, since the latter can be poured in a liquid form in the slots of the holders without leaking, because it is contained laterally by the layers of the first adhesive already cured.
The process according to the present invention can be carried out by means of a particular system which simplifies and speeds up the manufacture of the window according to the present invention. In particular, said system comprises a first apparatus for applying the first adhesive and a second apparatus for applying the second adhesive, so as to manufacture the windows in two distinct steps for optimizing the manufacturing times and costs.
Further advantages and features of the window and the process according to the present invention will become clear to those skilled in the art from the following detailed and non-limiting description of an embodiment thereof with reference to the attached drawings, wherein:
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The first adhesive 4 is a hotmelt polyurethane adhesive, while the second adhesive 5 is a two-component polyurethane adhesive which can be applied at room temperature. The viscosity and the elastic modulus of the first adhesive 4 are higher than the viscosity and the elastic modulus, respectively, of the second adhesive 5, while the cure time of the first adhesive 4 is shorter than the cure time of the second adhesive 5.
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Number | Date | Country | Kind |
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06425847 | Dec 2006 | EP | regional |
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PCT/EP2007/064178 | 12/19/2007 | WO | 00 | 6/17/2009 |
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WO2008/074819 | 6/26/2008 | WO | A |
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