IP Library Granted Patent US 10,569,293
Granted Patent B2
US 10,569,293 · App. 15/533,221 · Granted Feb 25, 2020

Doctor blade handling system

Inventors: Raffaele Pozzi (Limbiate, IT); Fiorenzo Zarantonello (Somma Lombardo, IT)
Assignee: IPCO Sweden AB
B05C11/026B05C11/04B08B1/02D21G3/005A24B3/14
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Quick Facts
Patent No.
US 10,569,293
App. No.
15/533,221
Granted
Feb 25, 2020
Kind
B2
Abstract

A doctoring apparatus has a flexible doctor blade advanced longitudinally across a surface being doctored. The doctor blade is feed in a continuous length from a storage cartridge and sequentially supported in a blade holder to apply the blade to a moving surface to be doctored. One or both of a pneumatic blade advancing device and a pneumatically operated clamping system are opened and closed in timed sequence with reciprocation of the blade holder longitudinally shifting the doctor blade in a selected direction across the doctored surface. The pneumatic blade advancing device includes an idler roller and a powered roller that co-operate to indexingly advance the doctor blade along the blade path. The clamping system includes a blade cutter to cut the doctor blade and that drives the cut off end of the doctor blade into a discard container.

Claims (51)

1. A pull through doctor blade handling system, comprising:

means for mounting a supply source for an elongated doctor blade;

a blade holder including a blade back with a seat for releasably holding a portion of the doctor blade;

a pneumatic multi-position cylinder unit including a blade clamp and a blade cutter;

a blade path for the doctor blade, the blade path running from proximate the means for mounting the supply source, through the blade holder, and to the pneumatic multi-position cylinder unit; and

an oscillation system operably connected to the blade holder to translate the blade holder, relative to the blade path, reciprocatingly between a first position and a second position,

wherein, in the first position, the blade holder is operably proximate a portion of a surface to be coated, and

wherein, in the second position, the blade holder is closer to the blade clamp than in the first position.

2. The pull through doctor blade handling system of claim 1 , wherein the pneumatic multi-position cylinder unit includes a first pneumatic cylinder system and a second pneumatic cylinder system, the first pneumatic cylinder system operable to change a position of a blade clamp between an open position and a clamping position and the second pneumatic cylinder system operable to change a position of a blade cutter between an open position and a cutting position.

3. The pull through doctor blade handling system of claim 2 , comprising:

a sensor proximate the blade holder; and

a control unit operably connected to the oscillation system, the pneumatic multi-position cylinder unit and the sensor,

wherein the sensor discriminates between the first position of the blade holder and the second position of the blade holder and operably communicates position information to the control unit,

wherein, based on position information communicated from the sensor, the control unit coordinates operation of the oscillation system, the control blade holder and the pneumatic multi-position cylinder unit:

(i) to move the control blade holder from the first position to the second position,

(ii) to move the doctor blade clamping device to the clamping position,

(iii) to cycle doctor blade cutting device between the open position and the cutting position,

(iv) to move the blade holder from the second position to the first position and

(v) to move the doctor blade clamping device to the open position, and

wherein moving the blade holder from the second position to the first position slidably moves the blade holder from frictionally engaging a first portion of the doctor blade to frictionally engaging a second portion of the doctor blade.

4. The pull through doctor blade handling system according to claim 1 , comprising an electric gear motor controlled by the control unit and connected to the blade holder by a crank throw and a connecting rod, wherein rotation of the electric gear motor moves the control blade holder from the first position to the second position.

5. A pull through doctor blade handling system, comprising:

means for mounting a supply source for an elongated doctor blade;

a blade holder including a blade back with a seat in which a portion of the doctor blade is positioned;

a pneumatic blade advancing device including an idler roller and a powered roller;

a pneumatic multi-position cylinder unit including a blade clamp and a blade cutter;

a blade path for the doctor blade, the blade path running from proximate the means for mounting the supply source, through the blade holder, through the pneumatic blade advancing device and to the pneumatic multi-position cylinder unit; and

a biasing system operably connected to the blade holder to move an edge of the doctor blade seated in the blade holder between a biased position and an unbiased position, wherein, in the biased position, the edge of the doctor blade is in force-exerting contact with a surface to be doctored,

wherein the idler roller and the powered roller are translatable, relative to each other, between a closed position in which surfaces of the idler roller and the powered roller exert a pressure to the doctor blade and an open position in which the surface of at least one of the idler roller and the powered roller is spaced apart from the doctor blade.

6. The pull through doctor blade handling system of claim 5 , further comprising an oscillation system operably connected to the blade holder to translate the blade holder, relative to the blade path, reciprocatingly between a first position and a second position, wherein, in the first position, the blade holder is operably proximate a portion of a surface to be coated, and, in the second position, the blade holder is closer to the blade clamp than in the first position.

7. The pull through doctor blade handling system according to claim 6 , comprising:

a sensor proximate the blade holder; and

a control unit operably connected to the biasing system, the pneumatic blade advancing device, and the pneumatic multi-position cylinder unit and the sensor,

wherein the sensor discriminates between the first position of the blade holder and the second position of the blade holder and operably communicates position information to the control unit, and

wherein, based on position information communicated from the sensor, the control unit coordinates operation of the biasing system, the control blade holder, the pneumatic blade advancing device, and the oscillation system:

(i) to move the biasing system from the biased position to the unbiased position,

(ii) to move the control blade holder from the first position to the second position,

(iii) to move the pneumatic blade advancing device from the open position to the closed position,

(iv) to move the control blade holder from the second position to the first position, and

(v) to move the biasing system from the unbiased position to the biased position.

8. The pull through doctor blade handling system of claim 7 , wherein the control unit also coordinates operation of the pneumatic multi-position cylinder unit to move the doctor blade clamping device to the clamping position, to cycle the doctor blade cutting device between the open position and the cutting position, and to move the doctor blade clamping device to the open position.

9. The pull through doctor blade handling system of claim 7 , wherein the pneumatic blade advancing device in the closed position holds the doctor blade in a stationary position relative to the blade path while the doctor blade slidably moves in the seat of the blade holder as the blade holder moves from the second position to the first position.

10. The pull through doctor blade handling system of claim 5 , wherein the pneumatic multi-position cylinder unit includes a first pneumatic cylinder system and a second pneumatic cylinder system, the first pneumatic cylinder system operable to change a position of a blade clamp between an open position and a clamping position and the second pneumatic cylinder system operable to change a position of a blade cutter between an open position and a cutting position.

11. A doctoring apparatus comprising the pull through doctor blade handling system of claim 1 .

12. The doctoring apparatus of claim 11 , wherein the supply source for the doctor blade is a blade cartridge and the doctor blade is coiled onto the blade cartridge.

13. The doctoring apparatus of claim 12 , further comprising a container below a cutting zone of the blade cutter to collect cut off ends of the doctor blade.

14. The doctoring apparatus of claim 11 , comprising:

a rotating cylinder with first and second axial ends and a circumferential surface,

wherein the doctor blade extends past the first and second axial ends of the rotating cylinder,

wherein the first position of the blade holder is proximate the circumferential surface of the rotating cylinder with the blade holder positioned axially between the first and second axial ends of the rotating cylinder, and

wherein the second position of the blade holder is proximate the circumferential surface of the rotating cylinder with at least a portion of the blade holder positioned axially outside one of the first and second axial ends of the rotating cylinder.

Assignments (4)
CHANGE OF NAME Recorded Aug 23, 2018
From: AKTIEBOLAGET SANDVIK PROCESS SYSTEMS
To: IPCO SWEDEN AB
Reel/Frame 046915/0117 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2018
From: SANDVIK INTELLECTUAL PROPERTY AB
To: AKTIEBOLAGET SANDVIK PROCESS SYSTEMS
Reel/Frame 046611/0398 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2017
From: ZARANTONELLO, FIORENZO
To: SANDVIK INTELLECTUAL PROPERTY AB
Reel/Frame 043860/0260 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2017
From: POZZI, RAFFAELE
To: SANDVIK INTELLECTUAL PROPERTY AB
Reel/Frame 043195/0343 →
Continuity (2)
Provisional Application 62060633 · Oct 7, 2014
Related Publication 20170348723A1 · Dec 7, 2017
Cited By (1)
US 12,240,011