IP Library Granted Patent US 10,337,628
Granted Patent B2
US 10,337,628 · App. 13/771,553 · Granted Jul 2, 2019

High mass flow check valve aspirator

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Quick Facts
Patent No.
US 10,337,628
App. No.
13/771,553
Granted
Jul 2, 2019
Kind
B2
Abstract

A check valve aspirator is provided including a venturi pipe having a converging section with a converging inlet and a converging outlet, and a diverging section with a diverging inlet and a diverging outlet. The converging outlet is in fluid communication with the diverging inlet. An outlet channel is in fluid communication with the venturi pipe and has an outlet port. A ratio of a diameter of the converging section outlet to a diameter of the outlet port is less than 0.4.

Claims (70)

1. A check valve aspirator comprising:

a venturi pipe having a converging section including a converging wall extending from a converging inlet and terminating at a converging outlet, and a diverging section including a diverging wall starting at a diverging inlet and terminating at a diverging outlet, the converging outlet in fluid communication with the diverging inlet;

a throat disposed between the converging section and the diverging section such that the converging wall is circumferentially spaced apart from the diverging wall where the converging wall terminates at the converging outlet and the diverging wall starts at the diverging inlet, wherein a diameter of the throat is greater than a diameter of the converging outlet and a diameter of the diverging inlet; and

a venturi check valve bowl in fluid communication with the throat;

wherein a ratio of the diameter of the converging outlet to the diameter of the diverging inlet is at least 0.8.

2. A check valve aspirator comprising:

a venturi pipe having a converging section including a converging wall extending from a converging inlet and terminating at a converging outlet, and a diverging section including a diverging wall starting at a diverging inlet and terminating at a diverging outlet, the converging outlet in fluid communication with the diverging inlet;

a throat disposed between the converging section and the diverging section such that the converging wall is circumferentially spaced apart from the diverging wall where the converging wall terminates at the converging outlet and the diverging wall starts at the diverging inlet, wherein a diameter of the throat is greater than a diameter of the converging outlet and a diameter of the diverging inlet; and

a venturi check valve bowl in fluid communication with the throat;

wherein a ratio of a diameter of the converging inlet to the diameter of the converging outlet is less than 3.5.

3. The check valve aspirator of claim 2 wherein the ratio of the diameter of the converging inlet to the diameter of the converging outlet is within a range of 1 to 3.2.

4. A check valve aspirator comprising:

a venturi pipe having a converging section including a converging wall extending from a converging inlet and terminating at a converging outlet, and a diverging section including a diverging wall starting at a diverging inlet and terminating at a diverging outlet, the converging outlet in fluid communication with the diverging inlet;

a throat disposed between the converging section and the diverging section such that the converging wall is circumferentially spaced apart from the diverging wall where the converging wall terminates at the converging outlet and the diverging wall starts at the diverging inlet, wherein a diameter of the throat is greater than a diameter of the converging outlet and a diameter of the diverging inlet; and

a venturi check valve bowl in fluid communication with the throat;

wherein a ratio of the diameter of the diverging inlet to a diameter of the diverging outlet is within a range of 0.5 to 0.9.

5. A check valve aspirator comprising:

a venturi pipe having a converging section including a converging wall extending from a converging inlet and terminating at a converging outlet, and a diverging section including a diverging wall starting at a diverging inlet and terminating at a diverging outlet, the converging outlet in fluid communication with the diverging inlet;

a throat disposed between the converging section and the diverging section such that the converging wall is circumferentially spaced apart from the diverging wall where the converging wall terminates at the converging outlet and the diverging wall starts at the diverging inlet, wherein a diameter of the throat is greater than a diameter of the converging outlet and a diameter of the diverging inlet; and

a venturi check valve bowl in fluid communication with the throat;

wherein the venturi check valve bowl is in fluid communication with the throat through a slot, wherein the slot has a width within a range of 1 mm to 3.5 mm and a length within a range of 3 mm to 6 mm.

6. An internal combustion engine comprising:

an air flow conduit to provide vacuum assist for a subsystem; and

a check valve aspirator in fluid communication with the flow conduit, the check valve aspirator further comprising:

a venturi pipe having a converging section including a converging wall extending from a converging inlet and terminating at a converging outlet, and a diverging section including a diverging wall starting at a diverging inlet and terminating at a diverging outlet, the converging outlet in fluid communication with the diverging inlet;

a throat disposed between the converging section and the diverging section such that the converging wall is circumferentially spaced apart from the diverging wall where the converging wall terminates at the converging outlet and the diverging wall starts at the diverging inlet, wherein a diameter of the throat is greater than a diameter of the converging outlet and a diameter of the diverging inlet; and

a venturi check valve bowl in fluid communication with the throat;

wherein a ratio of the diameter of the converging outlet to a diameter of the diverging section inlet is at least 0.8.

7. An internal combustion engine comprising:

an air flow conduit to provide vacuum assist for a subsystem; and

a check valve aspirator in fluid communication with the flow conduit, the check valve aspirator further comprising:

a venturi pipe having a converging section including a converging wall extending from a converging inlet and terminating at a converging outlet, and a diverging section including a diverging wall starting at a diverging inlet and terminating at a diverging outlet, the converging outlet in fluid communication with the diverging inlet;

a throat disposed between the converging section and the diverging section such that the converging wall is circumferentially spaced apart from the diverging wall where the converging wall terminates at the converging outlet and the diverging wall starts at the diverging inlet, wherein a diameter of the throat is greater than a diameter of the converging outlet and a diameter of the diverging inlet; and

a venturi check valve bowl in fluid communication with the throat;

wherein a ratio of a diameter of the converging inlet to the diameter of the converging outlet is less than 3.5.

8. The internal combustion engine of claim 7 wherein the ratio of the diameter of the converging inlet to the diameter of the converging outlet is within a range of 1 to 3.2.

9. An internal combustion engine comprising:

an air flow conduit to provide vacuum assist for a subsystem; and

a check valve aspirator in fluid communication with the flow conduit, the check valve aspirator further comprising:

a venturi pipe having a converging section including a converging wall extending from a converging inlet and terminating at a converging outlet, and a diverging section including a diverging wall starting at a diverging inlet and terminating at a diverging outlet, the converging outlet in fluid communication with the diverging inlet;

a throat disposed between the converging section and the diverging section such that the converging wall is circumferentially spaced apart from the diverging wall where the converging wall terminates at the converging outlet and the diverging wall starts at the diverging inlet, wherein a diameter of the throat is greater than a diameter of the converging outlet and a diameter of the diverging inlet; and

a venturi check valve bowl in fluid communication with the throat;

wherein a ratio of a diameter of the diverging inlet to a diameter of the diverging outlet is within a range of 0.5 to 0.9.

10. An internal combustion engine comprising:

an air flow conduit to provide vacuum assist for a subsystem; and

a check valve aspirator in fluid communication with the flow conduit, the check valve aspirator further comprising:

a venturi pipe having a converging section including a converging wall extending from a converging inlet and terminating at a converging outlet, and a diverging section including a diverging wall starting at a diverging inlet and terminating at a diverging outlet, the converging outlet in fluid communication with the diverging inlet;

a throat disposed between the converging section and the diverging section such that the converging wall is circumferentially spaced apart from the diverging wall where the converging wall terminates at the converging outlet and the diverging wall starts at the diverging inlet, wherein a diameter of the throat is greater than a diameter of the converging outlet and a diameter of the diverging inlet; and

a venturi check valve bowl in fluid communication with the throat;

wherein the venturi check valve bowl is in fluid communication with the throat through a slot, wherein the slot has a width within a range of 1 mm to 3.5 mm and a length within a range of 3 mm to 6 mm.

11. A check valve aspirator comprising:

a venturi pipe having a converging section including a converging wall extending from a converging inlet and terminating at a converging outlet, and a diverging section including a diverging wall starting at a diverging inlet and terminating at a diverging outlet, the converging outlet in fluid communication with the diverging inlet;

a throat disposed between the converging section and the diverging section such that the converging wall is circumferentially spaced apart from the diverging wall where the converging wall terminates at the converging outlet and the diverging wall starts at the diverging inlet, wherein a diameter of the throat is greater than a diameter of the converging outlet and a diameter of the diverging inlet;

a venturi check valve bowl in fluid communication with the throat; and

an outlet channel in fluid communication with the venturi pipe and having an outlet port, wherein a ratio of a diameter of the converging outlet to a diameter of the outlet port is less than 0.4.

12. The check valve aspirator of claim 11 , wherein the ratio of the diameter of the converging outlet to the diameter of the outlet port is within a range of 0.3 to 0.35.

13. The check valve aspirator of claim 11 further comprising a bypass check valve bowl in fluid communication with the outlet channel, wherein the bypass check valve bowl is positioned at least 20 mm downstream of the diverging outlet.

14. The check valve aspirator of claim 13 , wherein the bypass check valve bowl is positioned within a range of 20 mm to 45 mm downstream of the diverging outlet.

15. The check valve aspirator of claim 13 further comprising a check valve positioned within the bypass check valve bowl, the check valve having a scalloped diaphragm.

16. An internal combustion engine comprising:

an air flow conduit to provide vacuum assist for a subsystem; and

a check valve aspirator in fluid communication with the flow conduit, the check valve aspirator further comprising:

a venturi pipe having a converging section including a converging wall extending from a converging inlet and terminating at a converging outlet, and a diverging section including a diverging wall starting at a diverging inlet and terminating at a diverging outlet, the converging outlet in fluid communication with the diverging inlet;

a throat disposed between the converging section and the diverging section such that the converging wall is circumferentially spaced apart from the diverging wall where the converging wall terminates at the converging outlet and the diverging wall starts at the diverging inlet, wherein a diameter of the throat is greater than a diameter of the converging outlet and a diameter of the diverging inlet;

a venturi check valve bowl in fluid communication with the throat; and

an outlet channel in fluid communication with the venturi pipe and having an outlet port, wherein a ratio of a diameter of the converging outlet to a diameter of the outlet port is less than 0.4.

17. The internal combustion engine of claim 16 , wherein the ratio of the diameter of the converging outlet to the diameter of the outlet port is within a range of 0.3 to 0.35.

18. The internal combustion engine of claim 16 further comprising a bypass check valve bowl in fluid communication with the outlet channel, wherein the bypass check valve bowl is positioned at least 20 mm downstream of the diverging outlet.

19. The internal combustion engine of claim 18 , wherein the bypass check valve bowl is positioned within a range of 20 mm to 45 mm downstream of the diverging outlet.

20. The internal combustion engine of claim 18 further comprising a check valve positioned within the check valve bowl, the check valve having a scalloped diaphragm.

Assignments (15)
RELEASE OF PATENT SECURITY AGREEMENT RECORDED AT REEL/FRAME 053010/0278 Recorded Nov 13, 2025
From: BANK OF AMERICA, N.A.
To: TECHNIPLAS US LLC
Reel/Frame 073558/0115 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 21, 2020
From: NYLONCRAFT, INC.; NYLONCRAFT OF MICHIGAN, LLC; WEIDPLAS NORTH AMERICA, LLC; TECHNIPLAS, LLC
To: TECHNIPLAS US LLC
Reel/Frame 053560/0009 →
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jun 29, 2020
From: U.S. BANK NATIONAL ASSOCIATION, AS COLLATERAL AGENT
To: TECHNIPLAS, LLC; NYLONCRAFT, INC.
Reel/Frame 053082/0278 →
SHORT FORM PATENT SECURITY AGREEMENT Recorded Jun 25, 2020
From: TECHNIPLAS US LLC
To: WILMINGTON SAVINGS FUND SOCIETY, FSB, AS COLLATERAL AGENT
Reel/Frame 053065/0097 →
SECURITY INTEREST Recorded Jun 23, 2020
From: TECHNIPLAS US LLC
To: BANK OF AMERICA, N.A., AS AGENT
Reel/Frame 053010/0278 →
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jun 22, 2020
From: U.S. BANK NATIONAL ASSOCIATION, AS COLLATERAL AGENT
To: TECHNIPLAS, LLC; NYLONCRAFT, INC.
Reel/Frame 053056/0902 →
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jun 22, 2020
From: WILMINGTON SAVINGS FUND SOCIETY, FSB, AS COLLATERAL AGENT
To: TECHNIPLAS, LLC; NYLONCRAFT, INC.
Reel/Frame 053122/0238 →
SHORT FORM PATENT SECURITY AGREEMENT Recorded Apr 21, 2020
From: TECHNIPLAS, LLC; NYLONCRAFT, INC.
To: WILMINGTON SAVINGS FUND SOCIETY, FSB, AS COLLATERAL AGENT
Reel/Frame 052458/0486 →
SECURITY INTEREST Recorded Jun 5, 2015
From: NYLONCRAFT, INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 035832/0375 →
SECURITY INTEREST Recorded May 1, 2015
From: TECHNIPLAS, LLC; TECHNIPLAS FINANCE CORP.; NYLONCRAFT, INC.; DMP EXPORTS, INC.; DMP MONTERREY HOLDINGS LLC; NYLONCRAFT OF MICHIGAN, LLC; WEIDPLAS NORTH AMERICA, LLC; DMP INTERNATIONAL HOLDINGS, LLC
To: U.S. BANK NATIONAL ASSOCIATION
Reel/Frame 035542/0941 →
RELEASE OF SECURITY INTEREST Recorded Apr 30, 2015
From: THE PRIVATEBANK AND TRUST COMPANY
To: NYLONCRAFT, INC; TECHNIPLAS, LLC
Reel/Frame 035540/0450 →
RELEASE OF SECURITY INTEREST Recorded Apr 29, 2015
From: KAYNE CREDIT OPPORTUNITIES FUND (QP), LP
To: NYLONCRAFT, INC.; TECHNIPLAS, LLC
Reel/Frame 035530/0260 →
SECOND LIEN NOTICE OF SECURITY INTEREST Recorded May 13, 2014
From: NYLONCRAFT, INC.
To: KAYNE CREDIT OPPORTUNITIES FUND (QP), LP
Reel/Frame 032890/0408 →
SECURITY INTEREST Recorded May 12, 2014
From: NYLONCRAFT, INC.
To: THE PRIVATEBANK AND TRUST COMPANY
Reel/Frame 032871/0889 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 3, 2013
From: BURNHAM, MATTHEW; SMITH, ANDY; BACKHUS, AMY
To: NYLONCRAFT, INC.
Reel/Frame 030343/0177 →