Container processing machine and method for delivering containers to and/or removing them from a container processing machine
US-10106388-B2 · Oct 23, 2018 · US
US9908766B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9908766-B2 |
| Application number | US-201515305844-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 13, 2015 |
| Priority date | Apr 29, 2014 |
| Publication date | Mar 6, 2018 |
| Grant date | Mar 6, 2018 |
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A processing station of a container-processing machine includes an electromagnetic linear drive that raises and lowers a container carrier. The linear drive includes a tubular guide element having a stack of magnets extending through it. This guide element guides the motion of a guided element that has coils. Current through these coils generates a magnetic field that interacts with the field from the tubular guide's magnets. This interaction yields a force that can raise the carrier.
Opening claim text (preview).
Having described the invention, and a preferred embodiment thereof, what I claim as new, and secured by Letters Patent is: 1. An apparatus comprising a container-processing machine for processing containers, wherein said container-processing machine includes a rotor and a plurality of processing stations, wherein said rotor is configured to rotate about a vertical axis, wherein said processing stations are disposed around a periphery of said rotor, wherein each processing station includes a container carrier, an electromagnetic linear drive, a lift, magnets, and an electrically-conductive coil, wherein said lift comprises said electromagnetic linear drive, wherein said lift raises and lowers said container carrier, wherein said lift comprises a guided section and a guiding section, wherein said guiding section and said guided section are displaceable relative to each other, wherein displacement of said guiding section and said guided section relative to each other guides motion of said container carrier, wherein said guiding section comprises a tubular guide, wherein an accommodating space extends through said tubular guide, wherein said magnets are disposed in said accommodating space, wherein said guiding section, said guided section, said magnets, and said electrically-conductive coil cooperate to define said electromagnetic linear drive for raising and lowering said container carrier. 2. The apparatus of claim 1 , wherein said guided section surrounds at least a section of said tubular guide, and wherein, as a result, said tubular guide guides axial motion of said guided section and axial motion of said container carrier. 3. The apparatus of claim 1 , wherein said tubular guide is secured to said rotor. 4. The apparatus of claim 1 , wherein said guiding section has a circular cross-section. 5. The apparatus of claim 1 , wherein said tubular guide has a polygonal cross-section. 6. The apparatus of claim 1 , wherein said electrically-conductive coil is provided along said guided section. 7. The apparatus of claim 1 , wherein guided section is configured to sense a magnetic field. 8. The apparatus of claim 1 , wherein said guided section is configured to sense temperature. 9. The apparatus of claim 1 , wherein said electrically-conductive coil is cast into plastic. 10. The apparatus of claim 1 , wherein said processing station further comprises a temperature sensor, wherein said guided section comprises a plastic layer that forms a slide layer opposite said tubular guide, and wherein said plastic layer surrounds said temperature sensor. 11. The apparatus of claim 1 , wherein said container-processing machine further comprises an electrical controller, wherein said electrical controller is configured to cause electric current to flow through said electrically-conductive coil so as to exert a force that urges said container carrier upward. 12. The apparatus of claim 1 , further comprising an electrical controller, wherein said container-processing machine further comprises a magnetic-field sensor that provides, to said electrical controller, information indicative of a position of said container carrier, and wherein, in response, said electrical controller controls current in said electrically-conductive coil so as to correct said position. 13. The apparatus of claim 1 , further comprising an electrical controller, wherein said container-processing machine further comprises a magnetic-field sensor that provides, to said electrical controller, information indicative of a contact pressure between said container and said processing station. 14. The apparatus of claim 1 , further comprising a controller and a magnetic-field sensor, wherein said controller is configured to receive, from said magnetic-field sensor, information indicative of a loading change on said container carrier, and wherein said controller is further configured to control current flow through said electrically-conductive coil in response to said information. 15. The apparatus of claim 1 , further comprising a controller and a magnetic-field sensor, wherein said controller is configured to receive, from said magnetic-field sensor, information indicative of a mass of said container during container processing. 16. The apparatus of claim 1 , further comprising a temperature sensor and a controller configured to receive, from said temperature sensor, information indicative of a temperature of said electrically-conductive coil. 17. A method comprising processing containers, wherein processing containers comprises using a container-processing machine that has a rotatable rotor having a periphery along which processing stations are provided, said processing stations each including a lift having a container carrier, a guiding element that comprises a tubular guide, and a guided element, said tubular guide having magnets in an accommodating space formed within said tubular guide, said method comprising causing generation of a magnetic field that interacts with a magnetic field of said magnets in said tubular guide so as to raise said container carrier, wherein causing generation of said magnetic field comprises allowing current to flow through an electrically-conductive coil that is coupled to said guided element.
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