COLOR-CHANGER
A color-changer includes an output-channel having an outlet for paint material, and paint-supply-channels leading to the output-channel. The paint-supply channels are each respectively switchable by a corresponding first valve component. The first valve components are pilotable by a pressured fluid which is conducted through a corresponding pressure-line each having a corresponding inlet. One common, switchable pressure-supply-outlet is alternatively connectable with one of the inlets of the pressure-lines so that at most one of the corresponding first valve components is switchable at the same time. The present disclosure also provides a method for determining the leakage of the first valve component of the color-changer.
1 . A color-changer, comprising:
an output-channel having an outlet for paint material;
a plurality of paint-supply-channels leading to the output channel;
a plurality of first valve-means for switching a corresponding one of the paint-supply-channels, respectively;
a plurality of pressure lines each having a corresponding inlet, the pressure lines each respectively leading to one of the first valve-means, which are each respectively pilotable by a pressurized fluid which is conducted through a corresponding one of the pressure lines, respectively;
one switchable pressure-supply-outlet which is configured to be alternatively connectable with one of the inlets of the pressure-lines, so that at most only one of the corresponding first valve-means is switchable at the same time;
a second valve-means at the outlet of the output-channel; and
a plunger configured to apply a predetermined pressure-force into the output-channel filled with paint material, a position of the plunger being determinable.
2 . The color-changer according to claim 1 , wherein a group of the inlets of the pressure-lines are arranged along a circular path, and the pressure-supply-outlet is pivotable along a corresponding circular path, such that a selection of a corresponding one of the inlets of the pressure-lines to be connected with the pressure-supply-outlet is realizable by a corresponding rotary movement of the pressure-supply-outlet.
3 . The color-changer according to claim 1 , wherein a group of the inlets of the pressure-lines are arranged along a linear path, and the pressure-supply-outlet is moveable along a corresponding linear path, such that a selection of a corresponding one of the inlets of the pressure-lines to be connected with the pressure-supply-outlet is realizable by a corresponding linear movement of the pressure-supply-outlet.
4 . The color-changer according to claim 1 , comprising:
a solvent-supply-channel leading to the output-channel; and
a third valve-means for switching the solvent-supply-channel.
5 . The color-changer according to claim 2 , comprising:
a solvent-supply-channel leading to the output-channel; and
a third valve-means for switching the solvent-supply-channel.
6 . The color-changer according to claim 3 , comprising:
a solvent-supply-channel leading to the output-channel; and
a third valve-means for switching the solvent-supply-channel.
7 . The color-changer according to claim 1 , comprising:
a pressure-sensor configured to determine a pressure within the output-channel.
8 . The color-changer according to claim 5 , comprising:
a pressure-sensor configured to determine a pressure within the output-channel.
9 . The color-changer according to claim 6 , comprising:
a pressure-sensor configured to determine a pressure within the output-channel.
10 . A method for determining a leakage of valves of a color-changer, wherein the color changer includes:
an output-channel having an outlet for paint material;
a plurality of paint-supply-channels leading to the output channel and connected to corresponding paint-supply-lines;
a plurality of first valves for switching a corresponding one of the paint-supply-channels, respectively;
a plurality of pressure lines each having a corresponding inlet, the pressure lines each respectively leading to one of the first valves, which are each respectively pilotable by a pressurized fluid which is conducted through a corresponding one of the pressure lines, respectively;
one switchable pressure-supply-outlet which is configured to be alternatively connectable with one of the inlets of the pressure-lines, so that at most only one of the corresponding first valves is switchable at the same time;
a second valve at the outlet of the output-channel; and
a plunger configured to apply a predetermined pressure-force into the output-channel filled with paint material, a position of the plunger being determinable, and
wherein the method comprises:
closing all first and second valves so that the output-channel is completely closed;
applying, by the plunger, a constant pressure force into the output-channel filled by paint material;
observing a position of the plunger; and
generating, by at least one processor of a computer processing device, a warning signal in case of a drift of the position of the plunger.
11 . The method according to claim 10 , wherein the color-changer includes a solvent-supply-channel leading to the output-channel, and a third valve for switching the solvent-supply-channel.
12 . A method for determining a leakage of valves of a color-changer, wherein the color changer includes:
an output-channel having an outlet for paint material;
a plurality of paint-supply-channels leading to the output channel and connected to corresponding paint-supply-lines, the paint-supply-lines being operated with a first pressure;
a plurality of first valves for switching a corresponding one of the paint-supply-channels, respectively;
a plurality of pressure lines each having a corresponding inlet, the pressure lines each respectively leading to one of the first valves, which are each respectively pilotable by a pressurized fluid which is conducted through a corresponding one of the pressure lines, respectively;
one switchable pressure-supply-outlet which is configured to be alternatively connectable with one of the inlets of the pressure-lines, so that at most only one of the corresponding first valves is switchable at the same time;
a second valve at the outlet of the output-channel;
a solvent-supply-line leading to the output-channel, the solvent-supply-line being operated with a second pressure, the second pressure being higher than the first pressure;
a third valve for switching the solvent-supply-line;
a plunger configured to apply a predetermined pressure-force into the output-channel filled with paint material, a position of the plunger being determinable; and
a pressure-sensor configured to determine a pressure within the output-channel; and
wherein the method comprises:
closing all first and second valves;
opening the third valve so that a pressure within the output-channel corresponds to the pressure of the solvent-supply-line;
closing the third valve so that the output-channel is completely closed;
observing the pressure within the output-channel by the pressure sensor; and
generating, by a processor of a computer processing device, a warning signal in case of a drift of the observed pressure.