ClassID:

56833

B41F7/265 - CPC Classification

Classification description:

Rotary lithographic machines; Details; Damping devices using transfer rollers for damping from the inside of the cylinders

Recent Application in this class:
#1
20210323298
2021-10-21

CONDITIONING ROLLERS

#2
20180333737
2018-11-22

CUSTOMIZABLE APPARATUS AND METHOD FOR TRANSPORTING AND DEPOSITING FLUIDS

#3
20160375458
2016-12-29

Customizable apparatus and method for transporting and depositing fluids

#4
20160346805
2016-12-01

Customizable apparatus and method for transporting and depositing fluids

#5
20150343760
2015-12-03

Method for making a customizable apparatus for transporting and depositing fluids

#6
20150343759
2015-12-03

Customizable apparatus and method for printing fluids

#7
20150343758
2015-12-03

Customizable apparatus and method for transporting and depositing fluids

#8
20150343757
2015-12-03

Customizable apparatus and method for printing fluids

#9
20150343482
2015-12-03

Customizable apparatus and method for transporting and depositing fluids

#10
20150343481
2015-12-03

Customizable apparatus and method for transporting and depositing fluids

#11
20150343480
2015-12-03

Customizable apparatus and method for transporting and depositing fluids

#12
20120137967
2012-06-07

Apparatus for the transfer of a fluid to a moving web material

#13
20110011289
2011-01-20

ROTARY LITHOGRAPHIC PRINTING MACHINE

#14
20100126366
2010-05-27

Porous roll with axial zones and method of proving printing liquid to a cylinder in a printing press

#15
20100043884
2010-02-25

Method for the transfer of a fluid to a moving web material

#16
20100012203
2010-01-21

Apparatus for the transfer of a fluid to a moving web material

#17
20090320750
2009-12-31

Apparatus for the transfer of a fluid to a moving web material

#18
20070227374
2007-10-04

Apparatus for the application of a film of dampening solution in printing units of rotary presses

#19
20060193985
2006-08-31

Apparatus and method for the transfer of a fluid to a moving web material