VALVE APPLICATION SYSTEM AND METHOD
A valve application system includes a rotary cutter configured to cut individual valves from a valve string. The valve string is configured to be fed between the rotary cutter and a vacuum transfer tool where the rotary cutter is configured to cut the individual valves from the valve string. The valves are configured to be transferred from the vacuum transfer tool to the ultrasonic anvil. A web is configured to be fed between the ultrasonic anvil and the ultrasonic horn where the valves are ultrasonically sealed to the web.
1 . A valve application system, comprising:
a rotary cutter configured to cut individual valves from a valve string;
a vacuum transfer tool, wherein the valve string is configured to be fed between the rotary cutter and the vacuum transfer tool where the rotary cutter is configured to cut the individual valves from the valve string;
an ultrasonic anvil, wherein the valves are configured to be transferred from the vacuum transfer tool to the ultrasonic anvil; and
an ultrasonic horn, wherein a web is configured to be fed between the ultrasonic anvil and the ultrasonic horn where the valves are ultrasonically sealed to the web.
2 . The valve application system of claim 1 , wherein the valves in the valve strings are arranged in a side-by-side configuration.
3 . The valve application system of claim 1 , wherein the rotary cutter, the vacuum transfer tool, the ultrasonic anvil, and the ultrasonic horn are at a common location.
4 . The valve application system of claim 1 , wherein the rotary cutter, the vacuum transfer tool, the ultrasonic anvil, and the ultrasonic horn form a common assembly.
5 . The valve application system of claim 1 , wherein the rotary cutter comprises a first drum, the vacuum transfer tool comprises a second drum, the ultrasonic anvil comprises a third drum, and the ultrasonic horn comprises a fourth drum.
6 . The valve application system of claim 5 , wherein the first drum, the second drum, the third drum, and the fourth drum are configured to rotate.
7 . The valve application system of claim 6 , wherein the first drum rotates in a first direction, the second drum rotates in a second direction in opposition to the first direction, the third drum rotates in a third direction in opposition to the second direction, and the fourth drum rotates in a fourth direction in opposition to the third direction.
8 . The valve application system of claim 7 , wherein the first direction and the third direction are counterclockwise, and wherein the second direction and the fourth direction are clockwise.
9 . The valve application system of claim 1 , wherein the rotary cutter, the vacuum transfer tool, the ultrasonic anvil, and the ultrasonic horn are configured to continually rotate during operation.
10 . A valve application method, comprising:
feeding a valve string between a rotary cutter and a vacuum transfer tool;
cutting, by the rotary cutter, individual valves from the valve string;
transferring the valves from the vacuum transfer tool to an ultrasonic anvil;
feeding a web between the ultrasonic anvil and an ultrasonic horn; and
ultrasonically sealing the valves to the web between the ultrasonic horn and the ultrasonic anvil.
11 . The valve application method of claim 10 , wherein the valves in the valve strings are arranged in a side-by-side configuration.
12 . The valve application method of claim 10 , wherein the rotary cutter, the vacuum transfer tool, the ultrasonic anvil, and the ultrasonic horn are at a common location.
13 . The valve application method of claim 10 , wherein the rotary cutter, the vacuum transfer tool, the ultrasonic anvil, and the ultrasonic horn form a common assembly.
14 . The valve application method of claim 10 , wherein the rotary cutter comprises a first drum, the vacuum transfer tool comprises a second drum, the ultrasonic anvil comprises a third drum, and the ultrasonic horn comprises a fourth drum.
15 . The valve application method of claim 14 , further comprising rotating the first drum, the second drum, the third drum, and the fourth drum.
16 . The valve application method of claim 15 , wherein the first drum rotates in a first direction, the second drum rotates in a second direction in opposition to the first direction, the third drum rotates in a third direction in opposition to the second direction, and the fourth drum rotates in a fourth direction in opposition to the third direction.
17 . The valve application method of claim 16 , wherein the first direction and the third direction are counterclockwise, and wherein the second direction and the fourth direction are clockwise.
18 . The valve application method of claim 10 , further comprising continually rotating the rotary cutter, the vacuum transfer tool, the ultrasonic anvil, and the ultrasonic horn during operation.
19 . A valve application system, comprising:
a rotary cutter configured to cut individual valves from a valve string, wherein the valves in the valve strings are arranged in a side-by-side configuration, and wherein the rotary cutter comprises a first drum configured to rotate in a first direction;
a vacuum transfer tool, wherein the valve string is configured to be fed between the rotary cutter and the vacuum transfer tool where the rotary cutter is configured to cut the individual valves from the valve string, wherein the vacuum transfer tool comprises a second drum configured to rotate in a second direction in opposition to the first direction;
an ultrasonic anvil, wherein the valves are configured to be transferred from the vacuum transfer tool to the ultrasonic anvil, wherein the ultrasonic anvil comprises a third drum configured to rotate in a third direction in opposition to the second direction; and
an ultrasonic horn, wherein a web is configured to be fed between the ultrasonic anvil and the ultrasonic horn where the valves are ultrasonically sealed to the web, wherein the ultrasonic horn comprises a fourth drum configured to rotate in a fourth direction in opposition to the third direction,
wherein the rotary cutter, the vacuum transfer tool, the ultrasonic anvil, and the ultrasonic horn are configured to continually rotate during operation.
20 . The valve application system of claim 19 , wherein the rotary cutter, the vacuum transfer tool, the ultrasonic anvil, and the ultrasonic horn are at a common location.