IP Library › Granted Patent US 11,882,984
Granted Patent B1
US 11,882,984 · App. 18/193,983 · Granted Jan 30, 2024

Vacuum conduit attachment tools

Inventors: Matthew A. Williams (Bridgeton, MO); Devdatta Namdev Shingate (Pune, IN); Bo Shi (Olivette, MO); Christopher Burch (St. Louis, MO); Vikas Mahadev Jadhav (Pune, IN); Douglas C. Schultz (Glen Carbon, IL); Rahul Shrihari Doke (Pune, IN)
Assignee: Emerson Electric Co.
A47L9/242A47L9/02A47L5/36
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Quick Facts
Patent No.
US 11,882,984
App. No.
18/193,983
Granted
Jan 30, 2024
Kind
B1
Abstract

A vacuum attachment tool includes a hollow body extending from a first end to a second end and defining a flow path, and a conduit connector disposed at the second end of the hollow body. The conduit connector includes an inner collar having an inner diameter sized to receive a first vacuum conduit having a first diameter, and an outer collar having an inner diameter sized to receive a second vacuum conduit having a second diameter greater than the first diameter. The outer collar is formed separately from the inner collar and is coupled to the inner collar.

Claims (37)

1. A vacuum attachment tool comprising:

a hollow body extending from a first end to a second end and defining a flow path; and

a conduit connector disposed at the second end of the hollow body, wherein the conduit connector comprises:

an inner collar having an inner diameter sized to receive a first vacuum conduit having a first diameter, the inner collar comprising a deflectable tab comprising a plurality of teeth operable to engage a locking mechanism of the first vacuum conduit; and

an outer collar having an inner diameter sized to receive a second vacuum conduit having a second diameter greater than the first diameter, the outer collar formed separately from the inner collar and coupled to the inner collar.

2. The vacuum attachment tool of claim 1 , wherein the outer collar is coupled to the inner collar by a press-fit connection that hermetically seals the flow path.

3. The vacuum attachment tool of claim 1 , wherein the inner collar comprises an inner surface, wherein the outer collar comprises an inner surface, and wherein at least one of the inner surface of the inner collar and the inner surface of the outer collar is radially tapered.

4. The vacuum attachment tool of claim 1 , wherein the inner collar comprises an outer surface and at least one rib positioned on the outer surface.

5. The vacuum attachment tool of claim 4 , wherein the outer collar comprises at least one locking finger operable to engage the at least one rib of the inner collar to couple the outer collar to the inner collar.

6. The vacuum attachment tool of claim 4 , wherein the outer collar comprises an inner surface and at least one rib positioned on the inner surface of the outer collar, the at least one rib of the outer collar operable to engage the at least one rib of the inner collar when the outer collar is coupled to the inner collar.

7. The vacuum attachment tool of claim 6 , wherein at least one rib of the outer collar includes at least one crushing rib that comprises a crushing portion operable to engage the at least one rib of the inner collar and deform when the outer collar is coupled to the inner collar.

8. The vacuum attachment tool of claim 7 , wherein engagement of the crushing portion of the at least one crushing rib of the outer collar with the at least one rib of the inner collar when the outer collar is coupled to the inner collar inhibits movement of the outer collar relative to the inner collar.

9. The vacuum attachment tool of claim 1 , wherein the inner collar comprises an outer cuff and an inner cuff, wherein the outer cuff has an inner diameter sized to receive the first vacuum conduit having the first diameter, and wherein the inner cuff has an inner diameter sized to receive a third vacuum conduit having a third diameter smaller than the first diameter.

10. The vacuum attachment tool of claim 1 , wherein the inner collar includes an outer surface and at least one alignment rib positioned on the outer surface, and wherein the outer collar includes an inner surface and at least one alignment rib positioned on the inner surface.

11. The vacuum attachment tool of claim 10 , wherein the at least one alignment rib of the inner collar and the at least one alignment rib of the outer collar engage one another when the outer collar is coupled to the inner collar to align the outer collar relative to the inner collar and to restrict rotation of the outer collar relative to the inner collar after the outer collar is coupled to the inner collar.

12. The vacuum attachment tool of claim 1 , wherein the outer collar is welded to the inner collar via spin welding.

13. The vacuum attachment tool of claim 1 , wherein the inner collar includes at least one thread, wherein the outer collar includes at least one thread, and wherein the outer collar is coupled to the inner collar via engagement of the at least one thread of the outer collar with the at least one thread of the inner collar.

14. A method of assembling a vacuum attachment tool including a hollow body extending from a first end to a second end and including a vacuum conduit connector disposed at the second end, the method comprising:

positioning an outer collar of the conduit connector relative to an inner collar of the conduit connector such that the inner and outer collars are co-axial, wherein the inner collar has an inner diameter sized to receive a first vacuum conduit having a first diameter, wherein the inner collar includes a deflectable tab including a plurality of teeth operable to engage a locking mechanism of the first vacuum conduit, and wherein the outer collar has an inner diameter sized to receive a second vacuum conduit having a second diameter greater than the first diameter;

moving the outer collar relative to the inner collar such that the inner collar is received within the outer collar; and

coupling the outer collar to the inner collar.

15. The method of claim 14 , wherein coupling the outer collar to the inner collar comprises engaging at least one locking finger positioned on an inner surface of the outer collar with at least one rib positioned on an outer surface of the inner collar.

16. The method of claim 14 , wherein coupling the outer collar to the inner collar comprises one of threading the outer collar to the inner collar or spin welding the inner collar to the outer collar.

17. A vacuum attachment tool comprising:

a hollow body formed circumferentially about a central axis, wherein the hollow body extends from a first end to a second end and defines a flow path; and

a conduit connector disposed at the second end of the hollow body, wherein the conduit connector comprises:

an inner collar formed about the central axis and including:

a radial inner surface having an inner diameter sized to receive a first vacuum conduit having a first diameter;

a radial outer surface;

a deflectable tab including a first plurality of teeth operable to engage a locking mechanism of the first vacuum conduit, wherein at least one tooth of the first plurality of teeth includes a first portion and a second portion spaced circumferentially from the first portion by a recess; and

a first plurality of ribs positioned on the radial outer surface of the inner collar, the first plurality of ribs including at least one alignment rib; and

an outer collar formed separately from and coupled to the inner collar, the outer collar including:

a radial inner surface having an inner diameter sized to receive a second vacuum conduit having a second diameter greater than the first diameter;

a radial outer surface;

a second plurality of teeth positioned on the radial outer surface of the outer collar and operable to engage a locking mechanism of the second vacuum conduit;

a plurality of locking fingers operable to engage at least one rib of the first plurality of ribs of the inner collar to couple the outer collar to the inner collar; and

a second plurality of ribs positioned on the radial inner surface of the outer collar, at least one rib of the second plurality of ribs including a crushing portion operable to engage the first plurality of ribs of the inner collar via the crushing portion when the outer collar is coupled to the inner collar, the second plurality of ribs further including at least one alignment rib, wherein the at least one alignment rib of the second plurality of ribs is operable to engage the at least one alignment rib of the first plurality of ribs when the outer collar is coupled to the inner collar, wherein engagement of the alignment ribs aligns the outer collar relative to the inner collar and restricts rotation of the outer collar relative to the inner collar.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2023
From: SCHULTZ, DOUGLAS C.; DOKE, RAHUL SHRIHARI
To: EMERSON ELECTRIC CO.
Reel/Frame 064895/0453 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2023
From: WILLIAMS, MATTHEW A.; SHINGATE, DEVDATTA NAMDEV; SHI, BO; BURCH, CHRISTOPHER; JADHAV, VIKAS MAHADEV
To: EMERSON ELECTRIC CO.
Reel/Frame 064090/0973 →
Cited By (2)
US 1,119,140 US 1,126,517