Folded sealing blade for a coating applicator
09925555 · 2018-03-27
Assignee
Inventors
Cpc classification
B05C11/025
PERFORMING OPERATIONS; TRANSPORTING
F16J15/3252
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
D21H23/36
TEXTILES; PAPER
B05C11/041
PERFORMING OPERATIONS; TRANSPORTING
B05C3/18
PERFORMING OPERATIONS; TRANSPORTING
B05C9/04
PERFORMING OPERATIONS; TRANSPORTING
B05C11/045
PERFORMING OPERATIONS; TRANSPORTING
B05C1/083
PERFORMING OPERATIONS; TRANSPORTING
B05C11/048
PERFORMING OPERATIONS; TRANSPORTING
B05C11/042
PERFORMING OPERATIONS; TRANSPORTING
B05C1/0813
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16J15/3252
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/3284
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A sealing blade includes opposite elongated edges (30, 31) and between them a flat (32) and which is adaptable to a blade holder (17) arranged in a coating applicator (25) of a coating device (21) and into contact with a moving surface (11). The sealing blade has a contact surface (33), which may be arranged against the moving surface and which is 5-15% of the width (W) of the sealing blade (10).
Claims
1. A structure for sealing an upstream side of an application chamber of a coating applicator of a coating device in a paper or board coating applicator wherein the structure is arranged to directly engage a moving roll surface of an applicator roll; said moving roll surface defines a direction in which the moving roll surface of the applicator roll moves, so that a portion of the structure slides on the moving roll surface, the structure comprising: a metal sealing blade having a width defined between a back edge and a front edge which form opposite edges of the metal sealing blade, and between the back edge and the front edge, are two opposite blade sides which form: a first blade surface having portions which form a contact surface which directly engages the moving roll surface, and an opposed second blade surface having portions opposite the contact surface; at least one first fold formed in the metal sealing blade between the back edge and the front edge, said contact surface and said first fold are formed in the metal sealing blade before said metal sealing blade is installed in the blade holder such that initial tension has been removed from the metal sealing blade before being installed in the blade holder or before said metal sealing blade contacts the moving roll surface; wherein the first fold formed in the metal sealing blade is arranged to reduce tension in the metal sealing blade such that sharpening of the front edge is reduced: wherein the first fold which divides the first blade surface into first a part terminating at the back edge and a second part terminating at the front edge; wherein the metal sealing blade has a fastening area adjacent the back edge; said contact surface includes a surface area for arrangement in direct contact with the moving roll surface, said surface area for arrangement in direct contact with the moving roll surface is located between a tip of the metal sealing blade and said first fold of the metal sealing blade; wherein the back edge is arranged, along with the fastening area, to be mounted to a blade holder in the coating applicator of the coating device; and wherein portions of the first blade surface second part form the contact surface so the contact surface extending from the front edge toward the first fold. wherein the contact surface is arranged to lie along the moving roll surface of the applicator roll so that at least a portion of the contact surface forms a seal with the moving roll surface and the metal sealing blade extends along the moving roll surface in the direction in which the roll surface moves: said contact surface includes a flat surface area or a curved surface arranged to directly contact with the moving roll surface: wherein the portions of the second blade surface opposite the contact surface form part of the application chamber.
2. The structure of claim 1 wherein the metal sealing blade is formed of a stainless spring steel.
3. The structure of claim 2 wherein the metal sealing blade is formed of type 1.4301 stainless spring steel having a thickness between 0.254-0.381 mm and the width being 100-130 mm.
4. The structure of claim 1 wherein the portion of the contact surface in contact with the moving roll surface is 5-15% of the width of the metal sealing blade.
5. The structure of claim 1 wherein portions of the metal sealing blade form flow openings through the metal sealing blade which pass through the contact surface; and wherein a majority of the contact surface is between the front edge and the flow openings.
6. The structure of claim 5 wherein the portions of the metal sealing blade forming flow openings through the metal sealing blade are arranged so that when the metal sealing blade is in contact with the moving roll surface the flow openings are at least partially separated from the moving roll surface.
7. The structure of claim 5 wherein the flow openings define a top edge toward the back edge, and the top edge of the flow openings define a distance from the front edge of the metal sealing blade which is 15-50 mm.
8. The structure of claim 1 wherein the metal sealing blade fastening area has portions of the metal sealing blade which define fastening holes through which fasteners may pass to mount the metal sealing blade to the blade holder.
9. The structure of claim 1 wherein the moving roll surface has a curvature and the first blade surface second part which terminates at the front edge is formed to the curvature of the moving roll surface.
10. The structure of claim 1 wherein the first blade surface second part which terminates at the front edge has a second fold between the first fold and the front edge which divides the first blade surface into two parts such that one of said parts which terminates at the front edge is tangent to the moving roll surface.
11. The structure of claim 1 wherein the first blade surface second part is formed so as to conform to the roll surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention, which is not restricted to the embodiments presented below, is described in more detail by making reference to the drawings, in which:
(2)
(3)
(4)
(5)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(6)
(7)
(8) The sealing blade 10 presses against the surface 11 of the application roll 11 and prevents, the coating from flowing in an uncontrolled manner against the direction of rotation of the roll 11 and prevents the access of air, which is carried with the rotating roll 11, into the application chamber 20. A metering rod 15 is placed at a distance from the sealing blade 10, which metering rod 15 is pressed against the application roll 11, but which metering rod 15 is suspended hydrodynamically at a distance from the surface 11 of the roll 11 by a film transferred onto the rotating roll 11. The thickness of the film transferred onto the surface 11 of the roll 11 is adjusted by changing the loading of the metering rod 15. The distance between the sealing blade 10 and the metering rod 15 forms an application distance, and the application chamber 20 is hence limited by the girder 12, sealing blade 10, metering rod 15 and application roll 11. The ends of the application chamber 20 are sealed in the case according to the embodiment by means of flexible seals 19, which limit the width of the area to be coated. The coating is fed into the application chamber 20 through nozzles 18 from a main tube 13 located inside the girder 12 and extending over the entire width of the coating applicator 25.
(9)
(10) The sealing blade 10 is arranged, so that it may be placed in a blade holder 17 arranged on a coating applicator 25 of a coating device 21 so that the blade contacts with the moving surface 11. For mounting, the sealing blade 10 includes a fastening area 37 adjacent to first elongated edge 31, i.e., the back edge, from which fastening area 37 the sealing blade 10 is adapted to be fastened to the blade holder 17. In the fastening area 37, there may be for example die-cut fasteners holes 31b, which ensure the fastening of the blade 10 to the holder 17. The second elongated edge 30, i.e., the front edge, is opposite to this first edge 31 mounted in elongated holder 17. The front edge 30 includes a tip 38, which is arranged against the moving surface 11.
(11) A contact surface 33, best shown in
(12) By arranging the contact surface 33 in the sealing blade 10, it can be brought into contact with the moving surface 11 more reliably over a larger area and especially over its flat 32, than merely by contacting the moving surface 11 along its elongated edge 30. Moreover, the contact surface 33 is in the sealing blade 10 already formed before it is installed in the blade holder 17, and it is not formed only when loading the blade 10 against the moving surface 11. In other words, it can be said that initial tension has been removed from the blade 10 when it is installed in its blade holder 17. This makes the contact between the flat 32 of the blade 10 and the moving surface 11 very reliable, and at the same time the sharpening of the tip 38 of the blade 10 is reduced.
(13) According to one embodiment, flow openings 34, 34.1-34.3 may be adapted in the flat 32 of the sealing blade 10. Some examples of their locations have been presented in
(14) According to one embodiment, the contact surface 33 may be arranged in the sealing blade 10 for example so that the flat 32 of the sealing blade 10 is divided into two or more areas 35.1-35.3, of which the contact surface 33 is formed in at least one area 35.1, in other words on one side of the flat 32. In
(15) According to the embodiments presented in
(16)
(17) The distance D of the top edge of the flow openings 34, in other words that of the edge closest to the tip 38 of the blade 10, from the elongated edge 30 of the sealing blade 10, which edge 30 is equipped with the tip 38, may be for example 15-50 mm. The sealing blade 10 may be for example of spring steel type 1.4301, and its material thickness may be for example 0.254-0.381 mm and total width W for example 100-130 mm.
(18) As presented above, the sealing blade 10 according to the invention is no longer a planar item known from prior art. Instead, its front edge 30 is deviated from the planar surface. The deviation may be accomplished for example by means of one or more angle folds in the longitudinal L direction of the blade 10. The folds may be located in the width W direction of the blade 10 at a distance of 5-15% from the tip 38 of the blade 10, which tip 38 is an edge 30 opposite to the edge 31 on the side of the blade holder 17. Another alternative presented for example in
(19) It is to be understood that the above description and the related FIGS. are only intended to illustrate the present invention. The invention is hence not only restricted to the above-presented embodiments or the embodiments defined in the claims, but several different variations and adaptations of the invention will also be obvious to a professional in the field, which variations and adaptations are possible within the inventive idea defined by the enclosed claims.