The invention refers to a device and a method for breaking glass panes.
For producing glass panes having a determined shape such as they are e.g. used for rear windows or windshields in automobiles, the raw glass panes are first scribed and then broken. In a manner known in the art, a template corresponding to the desired shape of the pane is used for breaking the pane. To this end, the scribed glass pane is laid on top of the template and then the projecting edge of the glass pane is broken off by means of a breaking wheel or a breaking ball (see e.g. the patent specification EP-A2-1 367 027 to the applicant of the present invention). The disadvantage of this procedure is that a separate template must be manufactured and stored for each desired pane shape, thereby making the production of glass panes having predetermined user-defined contours laborious and expensive.
Based on this prior art, the object of the present invention is to provide a device and a method allowing a simplified production of glass panes having predetermined user-defined contours.
According to a first aspect of the invention this object is accomplished by a device comprising at least one first breaking body that is displaceable along the front side of the glass pane, at least one second breaking body that is displaceable along the back side of the glass pane, and a flexible support that serves for supporting the glass pane and that is arranged between the two breaking bodies.
According to a second aspect of the invention there is provided a method comprising displacing a first breaking body along the front side of the glass pane and a second breaking body along the back side of the glass pane, the breaking bodies being displaced synchronously.
The device and the method of the invention offer the advantage, amongst others, that templates are no longer required for breaking a glass pane and therefore the production of glass panes having user-defined contours is more economical and simpler.
The invention will be explained hereinafter by means of an exemplary embodiment and with reference to figures, where:
The installation illustrated in
Cutting station 45 comprises a cutting bridge 52 that is arranged above conveyor belt 49. Cutting bridge 52 is displaceable in the x direction and provided with a cutting head 53 that is displaceable in the y direction as well as in the vertical z direction and that is rotatable. Cutting bridge 52 and cutting head 53 are moved by a control system 81 that allows a precise displacement of cutting head 53 in space as well as a precise rotation about the vertical axis in order to provide a glass pane with scribing lines of any desired shape. Cutting station 45 further comprises a suction device 54 that can be put through an opening 51 of conveyor belt 49 and affixed to the underside of the glass pane.
Breaking station 46 comprises a breaking device including a first breaking body 71 displaceable along the front side of the glass pane and a second breaking body 72 displaceable along the back side of the glass pane. First breaking body 71 is mounted displaceably in the x direction and in the vertical z direction on a bridge 73 that is displaceable in the y direction. A cross beam 78 having a vertical column 79 with an arm 74 fastened thereto is located between the upper part of conveyor belt 49 moving in the positive y direction and its lower part moving in the negative y direction. Arm 74 is rotatable about column 79, and second breaking body 72 is arranged displaceably along arm 74, as indicated by double arrow 75 in
Synchronizing means that are e.g. integrated in control system 81 are operatively connected to the breaking device in order to displace breaking bodies 71 and 72 in a mutually synchronized manner. A CNC control is for instance suitable as a control system 81 for the controlled displacement of breaking bodies 71 and 72. Alternatively, it would be conceivable, though a little more complicated, to synchronize the movements of the two breaking bodies 71 and 72 by mechanical synchronizing means such as gearwheels and/or rod systems.
The breaking station further comprises holding means 77 for holding the glass pane during the breaking process. In the embodiment shown in
Furthermore, holding means 77 may comprise several suction devices that are adapted to be fixed on the glass pane, and/or a punched design of conveyor belt 79 so as to attach the glass pane firmly to conveyor belt 79 by creating a vacuum.
At the end of breaking station 46, a transfer device 38 is provided which is displaceable in the y direction for taking over and removing the glass pane after the breaking process. The latter is e.g. forwarded to a following processing station for further processing steps such as grinding and/or drilling procedures or to a suitable storage facility for temporary storage.
Breaking station 46 with breaking device 71, 72 need not be arranged next to cutting station 45 but may be free-standing or connected to other stations for further processing of the glass pane, depending on the intended purpose.
The conveyor belt 49 extends between the two breaking bodies 71 and 72 and forms a support 49 for glass pane 90. Support 49 consists of a flexible material that is chosen such as to be capable of carrying the weight of glass pane 90 without major sagging, on one hand, and of giving way when a pressure is exerted on the surface of the glass pane, on the other hand (cf. the following explanation with reference to
For producing glass panes having desired predetermined contours, the following procedure is applied:
The raw glass pane is laid on conveyor belt 49 and held in place by means of suction device 54. The glass pane is scribed according to the predetermined pattern by controlled displacement of cutting head 53.
Scribing lines 92a-92d leading from scribing line 91 to edge 95 of the glass pane are auxiliary scribing lines that serve for dividing trim 94 into different edge portions 94a-94d, thereby facilitating a precise breaking of the glass pane.
Conveyor belt 49 subsequently transfers the scribed glass pane 90 to breaking station 46 where it is held in place by holding means 77. Second breaking body 72 is applied to the underside of support 49 such that, as appears in
After bringing breaking bodies 71 and 72 into contact with the glass pane 90 resp. the support 49, first breaking body 71 is pressed against glass surface 90a with a predetermined force or a predetermined stroke, and the two breaking bodies 71 and 72 are simultaneously displaced along scribing line 91 by means of the synchronizing means. As indicated in
After the separation of first edge portion 94a, the remaining edge portions 94b-94d are successively broken off in an analogous manner by vertical and horizontal displacement of breaking bodies 71 and 72. In the example of
Subsequently, the useful portion 93 of glass pane 90 is taken over by transfer device 38 and removed. Meanwhile, the broken off glass pieces 94a-94d remain on conveyor belt 49. These are carried in the y direction by displacing conveyor belt 49 until they fall into collecting container 84.
Amongst others, the breaking device and the method of the invention offer the following advantages:
For reducing the processing time, it is conceivable to provide a second breaking device similar to first breaking device 71, 72 in order to break off different edge portions of the glass pane simultaneously. In the example of
Although the present invention has been described in relation to particular embodiments thereof, many other variations and modifications and other uses will become apparent to those skilled in the art. It is preferred, therefore, that the present invention be limited not by the specific disclosure herein, but only by the appended claims.
Number | Date | Country | Kind |
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04405645.5 | Oct 2004 | EP | regional |