Process for cold rolling an aluminum product and related cold rolling plant

US11779980B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11779980-B2
Application numberUS-202017601688-A
CountryUS
Kind codeB2
Filing dateApr 8, 2020
Priority dateApr 9, 2019
Publication dateOct 10, 2023
Grant dateOct 10, 2023

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Abstract

Official abstract text for this publication.

A process of cold rolling an aluminum product, e.g. a strip, which crosses at least one rolling stand, wherein a lubricant is applied to the strip close to said at least one rolling stand by means of a plurality of applying means, said lubricant comprising an emulsion of oil and water. A related rolling plant is also described.

First claim

Opening claim text (preview).

The invention claimed is: 1. A process of cold rolling a product made of aluminum; or aluminum alloys; through at least one rolling stand, wherein a lubricant is applied to the product in proximity of said at least one rolling stand by means of a plurality of first applying means, said lubricant comprising an emulsion of oil and water; the process comprising: wherein Δv=v.sub.s-v.sub.r is a difference between the feeding speed, v.sub.s, of the rolled product; measured at an output of the at least one rolling stand, and the peripheral speed, v.sub.r, of the working rolls of said at least one rolling stand, measured during a rolling operation, and Δv.sub.0=v.sub.s0-v.sub.r0 is a theoretical value of said difference, each time the relation [(Δv*v.sub.r0)/(v.sub.r*Δv.sub.0)]−1<L, where L is equal to a value between 0.0005 and 0.002, is not met, providing only oil to the aluminum product upstream of said at least one rolling stand in a product feeding direction by a plurality of second applying means until said relation is met again. 2. The process according to claim 1 , wherein L=0.001. 3. The process according to claim 1 , wherein said feeding speed, v.sub.s, of the rolled product is continuously measured by means of first sensors thus generating first data; wherein said peripheral speed, v.sub.r, of the working rolls is continuously measured by means of second sensors thus generating second data; and wherein a control system continuously receives said first data and said second data, determines whether said relation is met, and, if said relation is not met, actuates the plurality of second applying means. 4. The process according to claim 1 , wherein said emulsion of oil and water is contained in a first tank which supplies the plurality of first applying means and wherein said emulsion is mixed. 5. A cold rolling plant for rolling aluminum or aluminum alloy comprising: at least one rolling stand; a plurality of first applying means arranged close to said at least one rolling stand and adapted to inject an emulsion of oil and water on the product; first sensors for detecting first data, said first data being values of the feeding speed, v.sub.s, of the rolled product exiting the at least one rolling stand; second sensors for detecting second data, said second data being values of the peripheral speed, v.sub.r, of the working rolls of said at least one rolling stand; a plurality of second applying means arranged close to said at least one rolling stand and adapted to inject only oil on the product; a control system adapted to: receive said first data and said second data, calculate the difference Δv=v.sub.s-v.sub.r, determine if the relation [(Δv*v.sub.r0)/(v.sub.r*Δv.sub.0)]−1<L is met, Δv.sub.0=v.sub.s0-v.sub.r0 being the theoretical value of said difference and L being equal to a value between 0.0005 and 0.002, and, if said relation is not met, actuate said plurality of second applying means. 6. The plant according to claim 5 , wherein there are provided: a first tank adapted to contain said emulsion and supply the plurality of first applying means by means of a first dosing device; a second tank adapted to contain only oil and supply the plurality of second applying means by a second dosing device. 7. The plant according to claim 5 , wherein drying means are provided, placed downstream of the at least one rolling stand, considering the product feeding direction; and upstream of a winding reel and adapted to remove water from the rolled product. 8. The plant according to claim 5 , wherein the at least one rolling stand is reversible rolling stands, both said plurality of first applying means and said plurality of said second applying means are arranged at both sides of said rolling stand along the product feeding direction both above and below a product feeding plane. 9. The plant according to of claim 5 , wherein the at least one rolling stand is at least two rolling stands, placed one after the other, both said plurality of first applying means and said plurality of second applying means are arranged only at product input side of each rolling stand both above and below a product feeding plane. 10. The plant according to claim 5 , wherein said plurality of second applying means are arranged in a position which is proximal to the working rolls of the rolling stand but is distal from a product feeding plane, while said first applying means are arranged in a position which is distal from the working rolls but is proximal to the product feeding plane. 11. The plant according to claim 5 , wherein said plurality of second applying means are arranged in a position which is distal from the working rolls of the rolling stand but is proximal to a product feeding plane, while said first applying means are arranged in a position which is proximal to the working rolls but is distal from the product feeding plane.

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What does patent US11779980B2 cover?
A process of cold rolling an aluminum product, e.g. a strip, which crosses at least one rolling stand, wherein a lubricant is applied to the strip close to said at least one rolling stand by means of a plurality of applying means, said lubricant comprising an emulsion of oil and water. A related rolling plant is also described.
Who is the assignee on this patent?
Danieli Off Mecc
What technology area does this patent fall under?
Primary CPC classification B21B45/0251. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Oct 10 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).