IP Library › Granted Patent US 10,273,631
Granted Patent B2
US 10,273,631 · App. 15/128,850 · Granted Apr 30, 2019

Method of spraying chemical solution

Inventors: Hiroshi Sekiya (Tokyo, JP); Daisuke Kobayashi (Tokyo, JP); Tomohiko Nagatsuka (Tokyo, JP)
Assignee: MAINTECH CO., LTD.
D21F1/32B08B3/022C09D5/00D21F1/30D21F1/325D21F7/12
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Quick Facts
Patent No.
US 10,273,631
App. No.
15/128,850
Granted
Apr 30, 2019
Kind
B2
Abstract

[TASK] Provided is a method of spraying a chemical solution, the method being capable of efficiently applying a chemical solution to a traveling canvas and sufficiently preventing the adhesion of paper powder and pitch to the canvas. [MEANS OF SOLVING THE PROBLEM] The present invention provides a method of spraying a chemical solution Y, the method comprising spraying the chemical solution Y continuously on a canvas K used in a dry part D of a paper machine by a spraying apparatus 10 while making the canvas K travel, wherein the canvas K is guided to an inside roll IR and an outside roll OR, and wherein the spraying apparatus 10 is disposed upstream from the outside roll OR and between the inside roll IR and the outside roll OR, and the chemical solution Y is sprayed toward the outside roll OR along a travel direction Y 2 of the canvas K.

Claims (19)

1. A method of spraying a chemical solution, the method comprising spraying a chemical solution continuously on a canvas used in a dry part of a paper machine by a spraying apparatus while making the canvas travel,

wherein the canvas is guided to an inside roll and an outside roll, and

wherein the spraying apparatus is disposed upstream from the outside roll and between the inside roll and the outside roll, and the chemical solution is sprayed toward the outside roll along a travel direction of the canvas,

wherein in a case where a distance L (mm) between a point of contact of the canvas with a perpendicular from a nozzle tip of the spraying apparatus to the canvas and a point of contact of the outside roll with the canvas is 80≤L<400, an angle θ formed by a spraying direction of the spraying apparatus and the travel direction of the canvas is 10≤θ≤30 degrees, and

wherein in a case where the distance L (mm) is 400≤L≤5000, the angle θ formed by the spraying direction of the spraying apparatus and the travel direction of the canvas is 30≤θ≤60 degrees,

wherein the spraying apparatus is a scanning type nozzle apparatus that sprays a chemical solution on the canvas while reciprocating in a direction perpendicular to the travel direction of the canvas,

wherein a moving distance H of the nozzle apparatus during one rotation of the canvas and a width W of a portion sprayed on the canvas by the nozzle apparatus satisfy the following relationship:

0.5≤ H/W≤ 12

wherein the moving distance H of the nozzle apparatus is from 15 mm to 1800 mm,

wherein the width W of the sprayed portion by the nozzle apparatus is from 30 to 150 mm,

an overall width of the canvas in a direction perpendicular to the travel direction of the canvas is in a range of 3000 mm to 9000 mm,

an overall length of the canvas in the travel direction of the canvas is in a range of 25000 mm to 90000 mm, and

wherein a time required for one rotation of the canvas is in a range of 1 second to 20 seconds.

2. The method of spraying a chemical solution according to claim 1 , wherein a soil removal apparatus that removes paper powder and pitch having adhered to the canvas is disposed upstream from the spraying apparatus for the canvas, and

the soil removal apparatus is a sliding type high pressure water cleaner, and

a hydraulic pressure of high-pressure water that is sprayed by the sliding type high pressure water cleaner is in a range of 80 kg/cm 2 to 600 kg/cm 2 .

3. The method of spraying a chemical solution according to claim 1 , wherein the chemical solution has a viscosity of not more than 500 cps at 25° C.,

wherein an amount of the chemical solution sprayed is in a range of 0.1 μg/m 2 to 400 μg/m 2 in terms of solid contents, and

a proportion of a residual component contained in the chemical solution is not more than 50% by mass.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2016
From: SEKIYA, HIROSHI; KOBAYASHI, DAISUKE; NAGATSUKA, TOMOHIKO
To: MAINTECH CO., LTD.
Reel/Frame 039847/0917 →
Priority Claims (1)
JP 2014-073054 · Mar 31, 2014 · national
Continuity (1)
Related Publication 20170073895A1 · Mar 16, 2017