WATER JET MACHINE FOR CUTTING FLAT GLASS
20200108485 ยท 2020-04-09
Inventors
Cpc classification
B24C9/00
PERFORMING OPERATIONS; TRANSPORTING
B24C3/08
PERFORMING OPERATIONS; TRANSPORTING
International classification
B24C9/00
PERFORMING OPERATIONS; TRANSPORTING
B24C1/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A water jet machine employed in flat glass cutting, with horizontal cutting occurring by means of high pressure water combined with abrasives to perform holes and cutouts in said flat glass sheets, with the large differential, compared to the Water Jet machines existing in the market, to be able to work in automated production line, with feeding of the glass pieces, squaring and automatic referencing, serving in this format to the glass branch with high productivity and standardization of the productive process. According to its function, the water jet machine for flat glass cutting has the purpose of automatically perforating holes, cutouts, over or on glass sheets of various sizes in length, thickness, and width, in particular through the action of positioning tools and functional movements to machining.
Claims
1- Water jet machine for cutting flat glass formed by an input table (2) provided with input conveyor belts (2.1) positioned along its longitudinal path and moved on the X axis, photoelectric sensors (2.2) and sizing ruler (2.3) with respective sensor (2.4), computerized system (3) data store in the supervisory, main car (4) with cutting head (4.1) moved horizontally on the Y axis and vertically on the Z axis and, finally, an output table (5) equipped with output conveyor belts (5.1) located in the equipment's longitudinal position;
2- Water jet machine for cutting flat glass, according to claim 1, characterized by a input conveyor belts (2.1) receiving the glass sheets of a process prior to the processing, carry out their movement and automatic sizing on the sizing ruler (2.3), perform their gathering by means of actuation of photoelectric sensors (2.2) and send said part to the machine input where the second sensor (2.4) causes said belts to collect and move the part to the referencing mechanism of axis responsible for picking the zero point of the part;
3- Water jet machine for cutting flat glass, according to claim 1, characterized in that the machine (1), after starting the cutting process itself, moves the part through the X axis through the input conveyor belts (2.1), while the main car (4) performs the cutting motion on the Y axis and approaches or retreats the cutting head (4.1) on the Z axis, with the combination of these axes and interpolation of movements coordinated via PLC;
4- Water jet machine for cutting flat glass, according to claim 1, characterized by that the machine (1), after cutting all the defined drawings, transfers the part, by means of the input conveyor belts (2.1), to the next conveyor belts called output conveyor belts (5.1), belonging to the outlet table (5).
5- Water jet machine for cutting flat glass, according to claim 1 characterized by use in its carriage (4A), of a second tool referred to as diamond point (4.2), which rotates by electric motor (4.3), is coupled parallel to the cutting head (4.1) and has movement in the Z-axis through the set of blocks (4.4) with rails or linear guides (4.5);
6- Water jet machine for cutting flat glass, according to the claim 1 characterized by the implementation of X-linear movement in the carriage (4A) by inserting a second set of blocks (4.6) with rails or linear guides (4.7) in the upper section of the said carriage (4A);
7- Water jet machine for cutting flat glass, according to claim 1 characterized by the belts used (2.1 and 2.5) being replaced by drive shafts (2.6) equipped with rubber or polymer wheels (2.7) over the entire length of the loading (2A) and unloading (2B) counters, wheels (2.8) fixed along longitudinal rods (2.9) and a clamping set (6) consisting of two drive belts (6.1) and (6.2), with the upper conveyor (6.1) moved vertically by an actuator (6.3);
8- Water jet machine for cutting flat glass, according to claim 1 characterized by the implementation of a second carriage (4B) at the subsequent end of the square section guide base (5); this carriage (4B) is moved linearly in Y by a set of blocks (4.6) with rails or linear guides (4.7) located in its upper section and consists of a diamond point (4.2), which rotates by electric motor (4.3) and linear displacement in X by a set of blocks (4.4) and rails or linear guides (4.5).
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0006] The following description seeks to highlight the proposal at its principle level, without limiting itself to drawings or models of the components, with reference to the following illustrations listed below:
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DETAILED DESCRIPTION OF THE INVENTION
[0017] In accordance with
[0018] The operation of the water jet machine for cutting flat glass (1) is initiated by operation at the input table (2A) which, through its input conveyor belts (2.1), receives the glass plate of a process prior to processing, it is moved and finished with automatic sizing of the part on sizing ruler (2.3) and pick-up by means of actuation of photoelectric sensors (2.2). In this initial stage, the operator recognizes the bar code of the part generated from the drawing made within a dedicated CAD software. The machine, in front of its system, stores the measures of the part, its cutouts and positions in the supervisor. Further, on the inlet conveyor belts (2.1), the part to be bored or sized is sent to the machine input where the second sensor (2.4) causes the conveyors to collect and move the part to the axis referencing mechanism responsible to find the zero point of the part. The machine now starts its cutting process by moving the part through the X axis through the input conveyor belts (2.1) while the main car (4A) carries out the cutting movement on the Y axis and approaches or retreats the cutting head (4.1) in the Z axis, the combination of these axes and interpolation of movements in an efficient and coordinated manner via PLC, taking into account the predefined drawing in the CAD software.
[0019] The cutout is generated by the high pressure of a water pumping intensifier system as of an external unit integrated into the machine, by sending to the cutting head (4.1) an abrasive water jet which cuts the glass sheet. After the machine has cut out all the defined patterns, the part is transferred by the input conveyor belts (2.1) to the next conveyors referred to as output conveyors (2.5) belonging to the output conveyor belts (2B) which can be coupled to another process machine of glass sheet processing.
[0020] In addition to the pattern presented, the waterjet glass cutting machine (1) according to
[0021] Another tool that can be used with the waterjet glass cutting machine (
[0022] As for the loading (2A) and unloading (2B) counters of the glass sheets, the belts used (2.1 and 2.5) can be replaced by drive shafts (2.6) equipped with rubber or polymer wheels (2.7) (detail G of
[0023] Finally, the last tool to be implemented is a second carriage (4B) (
[0024] According to its function, the waterjet glass cutting machine performs the holes, cutouts and reaming in glass sheets of various sizes in length, thickness and width, especially by the action of the positioning tools and functional machining movements (holes and/or cutouts), configured for the main carriage (4A), loading counter (2A) and unloading counter (2B) functions, in particular by positioning and synchronized functional movements during the drilling or cutting process of a specific part, ensuring better performance, precision and productivity of the equipment, dispensing complementary equipment.
[0025] The inventive step must be understood in representative and non-limiting details and may undergo variations and modifications in its execution, provided that these modifications do not change the essence of the equipment.