Methods for transferring discrete articles
US-9227794-B2 · Jan 5, 2016 · US
US9428343B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9428343-B2 |
| Application number | US-201514588478-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 2, 2015 |
| Priority date | Jan 2, 2015 |
| Publication date | Aug 30, 2016 |
| Grant date | Aug 30, 2016 |
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An apparatus for transferring an article from a first carrier moving at a first speed to a second carrier moving at a second speed is provided. The apparatus comprises a programmable motor and a carrier member operably engaged with the programmable motor. The carrier member comprises a housing comprising a wall defining an interior space and an outer surface configured to receive the article from the first carrier in a receiving zone and configured to deposit the article onto the second carrier in an application zone. The carrier member comprises a support member comprising carbon fiber at least partially positioned within the interior space of the housing and connected with a portion of the wall. The programmable motor is configured to move the outer surface of the carrier member at a third speed through the receiving zone and at a fourth speed through the application zone.
Opening claim text (preview).
What is claimed is: 1. An apparatus for transferring one or more articles from a first carrier moving at a first speed to a second carrier moving at a second speed that is different than the first speed, the apparatus comprising: a programmable motor, a carrier member operably engaged with the programmable motor, the carrier member comprising: a housing comprising a wall defining an interior space and an outer surface configured to receive the one or more articles from the first carrier in a receiving zone and configured to deposit the one or more articles onto the second carrier in an application zone; and a support member comprising carbon fiber at least partially positioned within the interior space of the housing and connected with a portion of the wall; wherein the programmable motor is configured to move the outer surface of the carrier member at a third speed through the receiving zone and at a fourth speed through the application zone; and a motor control system for the programmable motor, wherein the motor control system and the programmable motor define an excitation frequency, wherein the carrier member defines a natural frequency, and wherein the natural frequency is at least 1.1 times greater than or at least 1.1 times less than the excitation frequency. 2. The apparatus of claim 1 , wherein the natural frequency is at least 1.2 times greater than or at least 1.2 times less than the excitation frequency. 3. The apparatus of claim 1 , wherein the housing comprises aluminum. 4. The apparatus of claim 1 , comprising a channel defined between a portion of the support member and the outer surface. 5. The apparatus of claim 4 , comprising a fluid port in the outer surface that is in fluid communication with the channel, wherein the fluid port is configured to provide a fluid pressure to an article being transferred. 6. The apparatus of claim 1 , comprising a transfer member engaged with the carrier member and the programmable motor. 7. The apparatus of claim 6 , wherein the programmable motor rotates the transfer member about an axis of rotation. 8. The apparatus of claim 7 , wherein the transfer member rotates the carrier member about the axis of rotation. 9. The apparatus of claim 1 , wherein the third speed is substantially equal to the first speed, and wherein the fourth speed is substantially equal to the second speed. 10. The apparatus of claim 1 , wherein the programmable motor comprises a programmable rotary motor. 11. The apparatus of claim 1 , wherein the programmable motor comprises a programmable linear motor. 12. An apparatus for transferring one or more articles from a first carrier to a second carrier, the apparatus comprising: a first programmable motor; a second programmable motor; a first carrier member operably engaged with the first programmable motor, wherein the first programmable motor is configured to rotate the first carrier member in an orbital path, the first carrier member comprising: a housing comprising a wall defining an interior space and an outer surface configured to receive the one or more articles from the first carrier in a receiving zone and configured to deposit the one or more articles onto the second carrier in an application zone; and a support member comprising carbon fiber at least partially positioned within the interior space of the housing and attached to a portion of the wall; a second carrier member operably engaged with the second programmable motor, wherein the second programmable motor is configured to rotate the second carrier member in the orbital path, the second carrier member comprising: a housing comprising a wall defining an interior space and an outer surface configured to receive the one or more articles from the first carrier in the receiving zone and configured to deposit the one or more articles onto the second carrier in the application zone; and a support member comprising carbon fiber at least partially positioned within the interior space of the housing and attached to a portion of the wall; wherein the first and second carrier members are located at least partially between the first and second programmable motors; and a motor control system for the first programmable motor, wherein the motor control system and the first programmable motor define an excitation frequency, wherein the first carrier member defines a natural frequency, and wherein the natural frequency is at least 1.1 times greater than or at least 1.1 times less than the excitation frequency. 13. The apparatus of claim 12 , wherein the first carrier member defines a natural frequency, and wherein the natural frequency is at least 1.2 times greater than or at least 1.2 times less than the excitation frequency. 14. The apparatus of claim 12 , wherein the first programmable motor or the second programmable motor comprises a programmable rotary motor. 15. The apparatus of claim 12 , wherein the first programmable motor or the second programmable motor comprises a programmable linear motor. 16. The apparatus of claim 12 , comprising: a channel defined between a portion of the support member and the outer surface of the first carrier member; a fluid source in fluid communication with the channel; and a fluid port in the outer surface of the first carrier member and in fluid communication with the channel. 17. An apparatus for transferring one or more articles from a first carrier to a second carrier, the apparatus comprising: a first programmable motor; a second programmable motor, a first transfer member operably engaged with the first programmable motor, a second transfer member operably engaged with the second programmable motor, wherein the first and second transfer members are generally aligned with respect to a common axis; a first carrier member connected with the first transfer member, wherein the first transfer member is configured to guide the first carrier member in an orbital path, the first carrier member comprising: a housing comprising a wall defining an interior space and an outer surface configured to receive the one or more articles from the first carrier in a receiving zone and configured to deposit the one or more articles onto the second carrier in an application zone; and a support member comprising carbon fiber positioned at least partially within the interior space of the housing and connected with a portion of the wall; a second carrier member connected with the second transfer member, wherein the second transfer member is configured to guide the second carrier member in the orbital path, the second carrier member comprising: a housing comprising a-wall defining an interior space and an outer surface configured to receive the one or more articles from the first carrier in the receiving zone and configured to deposit the one or more articles onto the second carrier in the application zone; and a support member comprising carbon fiber at least partially positioned within the interior space of the housing and connected with a portion of the wall; and a motor control system for the first programmable motor, wherein the motor control system and the first programmable motor define an excitation frequency, wherein each carrier member defines a natural frequency, and wherein the natural frequency is at least 1.1 times greater than or at least 1.1 times less than the excitation frequency. 18. The apparatus of claim 17 , wherein the natural frequency is at least 1.2 times greater than or at least 1.2 times less than the excitation frequency. 19. The app
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