Inkjet print head protection by scanning and moire analysis
US-9160892-B1 · Oct 13, 2015 · US
US9815307B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9815307-B2 |
| Application number | US-201615166312-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 27, 2016 |
| Priority date | Sep 16, 2015 |
| Publication date | Nov 14, 2017 |
| Grant date | Nov 14, 2017 |
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A method for avoiding collisions in a digital inkjet printing machine, a method and a device for actuator-based lifting movement of inkjet heads. A sensor/camera monitors the sheets as they travel towards the inkjet heads. In order to avoid collisions, the inkjet heads are raised and lowered again individually and in an oscillation-optimized manner when a defective sheet is detected. The machine does not need to be stopped in the event of defective sheets. Advantageously, rejects can thus be reduced and the performance of the machine can be exploited better.
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The invention claimed is: 1. A method for avoiding collisions of sheets with inkjet heads in a printing machine, the method comprising: providing a transport element being a sheet-carrying cylinder formed with a plurality of sheet support surfaces and channels arranged there between; transporting sheets on the transport element past a plurality of inkjet heads disposed above the transport element for printing the sheets; monitoring the position of a respective sheet upstream of the inkjet heads in a transport direction; evaluating a measured result from the position monitoring for detecting a defective sheet; when a defective sheet is detected, raising a respective inkjet head before the defective sheet reaches the inkjet head; and raising and lowering a respective inkjet head while a channel adjoining a defective sheet is passing the respective inkjet head. 2. The method for avoiding collisions according to claim 1 , which comprises: selectively raising and lowering each respective inkjet head with at least one actuator; and following the raising step, lowering a respective inkjet head in each case after the defective sheet has passed the inkjet head. 3. The method for avoiding collisions according to claim 1 , which further comprises, following the raising step: lowering a respective inkjet head while the defective sheet is still passing the inkjet head, wherein the respective inkjet head had been raised in the raising step to such an extent that a collision would also be avoided during the lowering. 4. The method for avoiding collisions according to claim 1 , wherein the evaluating step comprises determining defect sizes and the raising step comprises defining a travel distance for raising the inkjet head based on the defect sizes. 5. The method for avoiding collisions according to claim 4 , wherein the determining step comprises classifying the defect sizes. 6. The method for avoiding collisions according to claim 4 , which comprises lifting and lowering the inkjet head with an actuator being a servomotor driven by a machine control system by way of an oscillation-optimized control profile. 7. The method for avoiding collisions according to claim 1 , wherein the transport element is a jetting cylinder. 8. A method for avoiding collisions of sheets with inkjet heads in a printing machine, the method comprising: transporting sheets on a transport element past a plurality of inkjet heads disposed above the transport element for printing the sheets; monitoring the position of a respective sheet upstream of the inkjet heads in a transport direction; evaluating a measured result from the position monitoring for detecting a defective sheet and determining defect sizes; when a defective sheet is detected, raising a respective inkjet head before the defective sheet reaches the inkjet head, and defining a travel distance for raising the inkjet head based on the defect sizes. 9. A method for actuator-based lifting movement of an inkjet head, the method comprising: providing an actuator assigned to the inkjet head and a machine control system for activating the actuator; implementing an oscillation-optimized and inkjet-printing-optimized movement profile, in order to limit oscillations of the inkjet head and to limit pressure fluctuations in the ink supply of the inkjet head, wherein a control profile is stored in the machine control system; and selectively lifting the inkjet head by activating the actuator assigned to the inkjet head with the machine control system in accordance with the control profile. 10. The method according to claim 9 , wherein a plurality of control profiles for a family of movement profiles are stored, and wherein respective movement profile maintains defined maximum acceleration limiting values. 11. A device for actuator-based lifting movement of an inkjet head in order to change the spacing of the inkjet head from a printing material transport path of printing materials, the device comprising: an actuator; a mechanism for converting a rotational drive movement of the actuator into a translational movement of the inkjet head, said mechanism being a coupler mechanism with a coupler, a lever and a drive shaft; and a compensation system for compensating for a weight of the inkjet head and for bracing the inkjet head against a machine frame of the device. 12. The device for actuator-based lifting movement according to claim 11 , wherein said compensation system for compensating for the weight of the inkjet head is a spring system having at least one tension spring or at least one compression spring, and/or said spring system has a setting device for adjusting a spring tension. 13. The method for avoiding collisions according to claim 8 , wherein the transport element is a sheet-carrying cylinder formed with a plurality of sheet support surfaces and channels arranged there between, and the method further comprises raising and lowering a respective inkjet head while a channel adjoining a defective sheet is passing the respective inkjet head.
comprising a plurality of print heads placed around a drum · CPC title
responsive to breakage or exhaustion of paper or approach of bottom of paper · CPC title
Drives, motors, controls or automatic cut-off devices for the entire printing mechanism · CPC title
with print gap adjustment mechanisms · CPC title
Bodily-movable mechanisms for print heads or carriages movable towards or from paper surface · CPC title
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