IP Library Granted Patent US 11,935,690
Granted Patent B1
US 11,935,690 · App. 18/377,873 · Granted Mar 19, 2024

Inductor for reactor of waste treatment device

Inventors: Mikhail Aleksandrovich Meshchaninov (Zhukovskiy, RU); Dmitrii Yanovich Agasarov (Krasnodar, RU)
Assignees: Mikhail Aleksandrovich Meshchaninov; Dmitrii Yanovich Agasarov; Anton Viktorovich Sergeev
H01F27/29B01J19/087B01J19/088
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Quick Facts
Patent No.
US 11,935,690
App. No.
18/377,873
Granted
Mar 19, 2024
Kind
B1
Abstract

Electrode/inductor for devices for disposing waste by plasma-chemical destruction method, the inductor located between the electrode and conductive surfaces of the cavity with gaps towards them. The inductor is formed by two truncated regular pyramids with bottom bases located in one plane and top bases located in another plane. The pyramids are rotated relative to each other around their common axis. In all or some of side facet planes of the pyramids, metal side facet plates are located, that are connected to metal plates of the upper and bottom bases located in planes of the upper and bottom bases with gaps between lateral edges of adjacent side facet plates. An electrode of the inductor is placed along the common axis of the pyramids. The inductor electrode is connected to the metal plates of the upper and bottom bases and protrudes beyond the top base towards the reactor electrode.

Claims (22)

1. An inductor for a reactor of a waste treatment device, comprising:

two truncated regular pyramids having bottom bases located in one plane and top bases located in another plane, the two truncated regular pyramids rotated relative to each other around a common axis of the two truncated regular pyramids,

wherein metal side facet plates are located in all or some of side facet planes of the two truncated regular pyramids,

the metal side facet plates connected to metal plates of the respective top and bottom bases located in planes of the top and bottom bases so that gaps exist between lateral edges of adjacent metal side facet plates; and

an inductor electrode located along the common axis of the two truncated regular pyramids,

wherein the inductor electrode is connected to the metal side facet plates of the top and bottom bases and protrudes beyond the top base towards a reactor electrode.

2. The inductor of claim 1 , wherein the two truncated regular pyramids are rotated around the common axis by an angle so as each side rib of one of the two truncated regular pyramid is located at equal distances from two adjacent side ribs of the other of the two truncated regular pyramid.

3. The inductor of claim 1 , wherein a lower end of the inductor electrode protrudes beyond the bottom base, and the lower end of the inductor electrode is sharpened.

4. The inductor of claim 1 , wherein the two truncated regular pyramids have equal radii of inscribed circles of the bottom bases of the truncated pyramids and have different radii of inscribed circles of the top bases of the two truncated regular pyramids.

5. The inductor of claim 1 , wherein places of connection of the metal side facet plates to the bottom base are interleaved.

6. The inductor of claim 1 , wherein the metal side facet plates are trapezoids.

7. The inductor of claim 1 , wherein upper ribs of the metal side facet plates are located along a circle that is coaxial with the inductor electrode.

8. The inductor of claim 1 , wherein upper ribs of the metal side facet plates are next but one connected to the top base plate along two circles that are coaxial with the inductor electrode.

9. The inductor of claim 1 , wherein the top base is a rectangle shifted towards an input opening of the reactor and away from the common axis of the two truncated regular pyramids, and

wherein the top base plate has holes and ribs directed to the bottom base.

10. The inductor of claim 1 , wherein the bottom base plate has holes and ribs directed away from the top base.

11. An inductor, comprising:

two truncated pyramids having bottom bases located in one plane and top bases located in another plane, the two truncated pyramids rotated relative to each other around a common axis,

wherein metal side facet plates are located in side facet planes of the two truncated pyramids,

the metal side facet plates connected to metal plates of the respective top and bottom bases located in planes of the top and bottom bases so that gaps exist between lateral edges of adjacent metal side facet plates; and

an inductor electrode located along the common axis,

wherein the inductor electrode is connected to the metal side facet plates of the top and bottom bases and protrudes beyond the top base.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2023
From: MESHCHANINOV, MIKHAIL ALEKSANDROVICH
To: AGASAROV, DMITRII YANOVICH; MESHCHANINOV, MIKHAIL ALEKSANDROVICH; SERGEEV, ANTON VIKTOROVICH
Reel/Frame 065158/0205 →
Priority Claims (1)
RU 2023111617 · May 4, 2023 · national
Continuity (1)
Continuation PCTRU2023000236 · Aug 3, 2023