System and method for heating gas in a continuous focused path within an electric heating unit
US-12109546-B1 · Oct 8, 2024 · US
US11065596B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11065596-B2 |
| Application number | US-201816640764-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 16, 2018 |
| Priority date | Aug 23, 2017 |
| Publication date | Jul 20, 2021 |
| Grant date | Jul 20, 2021 |
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The invention relates to a metal anchoring mesh intended to be secured to a metal wall of a chamber of a fluid catalytic cracking unit, in order to form cells ( 64 ). Said metal anchoring mesh comprises a plurality of wavy elementary parts ( 12, 14 ) connected successively together, forming cylindrical surfaces that are able to respectively define said cells, said cylindrical surfaces each having a central axis of symmetry A, the wavy elementary parts ( 12,14 ) each having protruding tongues ( 42′, 44 ′), said protruding tongues being able to extend respectively inside said cells ( 64 ). Said tongues ( 42′, 44 ′) extend along a length less than a quarter of the distance d that extends between said cylindrical surface and said central axis of symmetry A of said cylindrical surface.
Opening claim text (preview).
The invention claimed is: 1. A metal anchoring mesh to be secured to a metal wall of a vessel of a fluid catalytic cracking unit to form cells able to receive an anti-erosion coating protecting the metal wall, the metal anchoring mesh comprising: a plurality of corrugated elementary components successively joined together to form cylindrical surfaces able respectively to define the cells, the cylindrical surfaces each having a central axis of symmetry A, the corrugated elementary components of the plurality of corrugated elementary components each having projecting tongues, the projecting tongues being able to extend respectively into the cells, wherein the corrugated elementary components have stapling orifices and stapling tabs so that the corrugated elementary components can be successively joined together; wherein the tongues extend over a length less than one quarter of the distance d extending between the cylindrical surface and the central axis of symmetry A of the cylindrical surface. 2. The metal anchoring mesh of claim 1 , wherein the tongues extend over a length less than one fifth of the distance d extending between the cylindrical surface and the central axis of symmetry A of the cylindrical surface. 3. The metal anchoring mesh of claim 1 , wherein the corrugated elementary components advantageously have oblong slots extending between two opposite ends, whereas the tongues extend respectively from one of the opposite ends of oblong slot as far as a tongue free end. 4. The metal anchoring mesh of claim 3 , wherein the tongues extend over a length shorter than the length of the oblong slots. 5. The metal anchoring mesh of claim 3 , wherein the tongue free end is rounded. 6. The metal anchoring mesh of claim 1 , wherein the corrugated elementary components have corrugations of isosceles trapezoidal shape. 7. The metal anchoring mesh of claim 6 , wherein the corrugations of each of the corrugated elementary components exhibit, in alternation, stapling orifices and stapling tabs. 8. The metal anchoring mesh of claim 1 , wherein the corrugated elementary components extend longitudinally. 9. The metal anchoring mesh of claim 1 , wherein the tongues are created in the corrugated elementary components by cutting and bending.
Apparatus characterised by being constructed of material selected for its chemically-resistant properties · CPC title
Details of the reactor · CPC title
of metal (B32B15/01 takes precedence) · CPC title
Corrosion inhibitor · CPC title
according to "fluidised-bed" technique (B01J8/20 takes precedence) · CPC title
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