Device and method for producing a dyed and an undyed plastic melt

US11440221B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11440221-B2
Application numberUS-201716326027-A
CountryUS
Kind codeB2
Filing dateJul 27, 2017
Priority dateAug 17, 2016
Publication dateSep 13, 2022
Grant dateSep 13, 2022

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A device for producing a dyed plastic melt and an undyed plastic melt includes a multi-shaft screw extruder, a first metering installation, a second metering installation, and a control installation for selecting between a first operating mode for producing the dyed plastic melt and a second operating mode for producing the undyed plastic melt. The first metering installation serves for feeding an undyed plastic material through a first infeed opening into a housing of the multi-shaft screw extruder, and the second metering installation serves for feeding at least one color granulate through a second infeed opening into the housing. The plastic material is fed exclusively by way of the first infeed opening such that residual color granulate or dyeing agent contained therein, respectively, which is still located in the second metering installation or in the region of the second infeed opening does not contaminate the undyed plastic melt.

First claim

Opening claim text (preview).

The invention claimed is: 1. A device for producing a dyed plastic melt and an undyed plastic melt, the device comprising: a multi-shaft screw extruder for providing a plastic melt, the multi-shaft screw extruder having a housing, at least two mutually penetrating housing bores configured in the housing, a first infeed opening, a second infeed opening and at least two treatment element shafts disposed so as to be rotatingly drivable in the housing bores, the first infeed opening and the second infeed opening configured to open into the at least two mutually penetrating housing bores; a first metering installation for feeding an undyed plastic material through the first infeed opening into the at least two mutually penetrating housing bores; a second metering installation for feeding at least one color granulate through the second infeed opening into the at least two mutually penetrating housing bores, wherein the second metering installation comprises a first metering unit for feeding the color granulate, and a second metering unit for feeding a cleaning granulate, said first metering unit and said second metering unit opening into the second infeed opening, wherein the second infeed opening is disposed upstream of the first infeed opening in a conveying direction; and a control installation for selecting between a first operating mode for producing the dyed plastic melt and a second operating mode for producing the undyed plastic melt, wherein the control installation is configured such that in a cleaning mode the cleaning granulate is capable of being fed through the second infeed opening into the at least two housing bores via the second metering installation. 2. The device as claimed in claim 1 , wherein the control installation is configured such that: in the first operating mode the undyed plastic material by the first metering installation through the first infeed opening, and the color granulate by the second metering installation through the second infeed opening, are capable of being fed into the at least two mutually penetrating housing bores; and in the second operating mode the undyed plastic material by the first metering installation is capable of being fed through the first infeed opening into the at least two mutually penetrating housing bores. 3. The device as claimed in claim 1 , wherein a gap is defined between the at least two treatment element shafts, and a width of the gap in relation to an external diameter of the at least two treatment element shafts is greater than or equal to 0.003 and less than or equal to 0.05. 4. The device as claimed in claim 1 , wherein the at least two treatment element shafts and a housing internal wall of the housing define a gap, and a width of the gap in relation to an external diameter of the at least two treatment element shafts is greater than or equal to 0.004 and less than or equal to 0.03. 5. The device as claimed in claim 1 , wherein each of the at least two treatment element shafts comprises one shaft to provide at least a plurality of shafts, and kneading elements are rotationally fixed on the shafts between the first infeed opening and the second infeed opening. 6. The device as claimed in claim 1 , wherein each of the at least two treatment element shafts comprises one shaft to provide at least a plurality of shafts, and screw elements are rotationally fixed on the shafts between the first infeed opening and the second infeed opening. 7. The device as claimed in claim 1 , wherein each of the at least two treatment element shafts comprises one shaft to provide at least a plurality of shafts, and screw elements and kneading elements are disposed so as to be rotationally fixed on the shafts downstream of the first infeed opening and the second infeed opening. 8. The device as claimed in claim 1 , wherein a gap is defined between the at least two treatment element shafts, and a width of the gap in relation to an external diameter of the at least two treatment element shafts is greater than or equal to 0.004 and less than or equal to 0.035. 9. The device as claimed in claim 1 , wherein a gap is defined between the at least two treatment element shafts, and a width of the gap in relation to an external diameter of the at least two treatment element shafts is greater than or equal to 0.011 and less than or equal to 0.02. 10. The device as claimed in claim 1 , wherein the at least two treatment element shafts and a housing internal wall of the housing define a gap, and a width of the gap in relation to an external diameter of the at least two treatment element shafts is greater than or equal to 0.005 and less than or equal to 0.025. 11. The device as claimed in claim 1 , wherein the at least two treatment element shafts and a housing internal wall of the housing define a gap, and a width of the gap in relation to an external diameter of the at least two treatment element shafts is greater than or equal to 0.012 and less than or equal to 0.019. 12. A method for producing a dyed and an undyed plastic melt, the method comprising the following method steps: providing a multi-shaft screw extruder having a housing, at least two mutually penetrating housing bores configured in the housing a first infeed opening, a second infeed opening and at least two treatment element shafts rotatingly drivable in the at least two mutually penetrating housing bores, the first infeed opening and the second infeed configured to open into the at least two mutually penetrating housing bores, wherein the second infeed opening is disposed upstream of the first infeed opening in a conveying direction; providing a first metering installation and a second metering installation, wherein the second metering installation comprises a first metering unit configured to feed a color granulate, and a second metering unit configured to feed a cleaning granulate, said first metering unit and said second metering unit opening into the second infeed opening; selecting between a first operating mode for producing the dyed plastic melt and a second operating mode for producing the undyed plastic melt via a control installation, wherein in the first operating mode an undyed plastic material via the first metering installation through the first infeed opening, and the color granulate via the second metering installation through the second infeed opening, are fed into the at least two mutually penetrating housing bores, wherein in the second operating mode the undyed plastic material via the first metering installation is fed through the first infeed opening into the at least two mutually penetrating housing bores, wherein after the production of the dyed plastic melt in the first operating mode the multi-shaft screw extruder is cleaned in a cleaning mode, wherein in the cleaning mode the cleaning granulate is capable of being fed through the second infeed opening into the at least two housing bores via the second metering installation; and operating the multi-shaft screw extruder, the first metering installation and the second metering installation in a selected operating mode. 13. The method as claimed in claim 12 , wherein a gap is defined between the at least two treatment element shafts, and a width of the gap in relation to an external diameter of the at least two treatment element shafts is greater than or equal to 0.003 and less than or equal to 0.05. 14. The method as claimed in claim 12 , wherein the at least two treatment element shafts and a housing internal wall of the housing define a gap, and a width of the gap in relation to an external diameter of the at least two treatment element shafts is greater than or equal to 0.0

Assignees

Inventors

Classifications

  • at several locations, e.g. using several hoppers or using a separate additive feeding · CPC title

  • Drive section, e.g. gearbox, motor or drive fluids · CPC title

  • the other mixing parts being discs perpendicular to the screw axis · CPC title

  • of plasticising units · CPC title

  • Material change · CPC title

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What does patent US11440221B2 cover?
A device for producing a dyed plastic melt and an undyed plastic melt includes a multi-shaft screw extruder, a first metering installation, a second metering installation, and a control installation for selecting between a first operating mode for producing the dyed plastic melt and a second operating mode for producing the undyed plastic melt. The first metering installation serves for feeding…
Who is the assignee on this patent?
Coperion Gmbh
What technology area does this patent fall under?
Primary CPC classification B29B7/603. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Sep 13 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).