IP Library › Granted Patent US 11,879,382
Granted Patent B2
US 11,879,382 · App. 17/950,678 · Granted Jan 23, 2024

Explosion relief valve with annular flame arrestor

Inventors: Michael Kafka (Troy, PA); Merle Eiffert (Troy, PA)
Assignee: Penn-Troy Manufacturing Inc.
F02B77/10F01M13/0405F16K17/0413F02M35/10262
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,879,382
App. No.
17/950,678
Granted
Jan 23, 2024
Kind
B2
Abstract

An explosion relief valve for a crankcase of an engine includes a carrier plate, a cap, and an annular flame arrestor. The carrier plate includes a valve plate that has a sinuous shape for redirecting flame back into the engine. The flame arrestor includes a plurality of layers of smooth metal sheets, with each layer having a pattern of apertures that is different in size and spacing than the pattern of apertures of its adjacent layer. The apertures of each layer are partially, and only partially, aligned with the perforations of its adjacent layers. The layers are laid flush against each other to minimize or eliminate air space between the layers, leaving only the air channels existing between the apertures of the metal sheet layers as passageways for exhaust gases to be released from the valve.

Claims (42)

1. An explosion relief valve for a crankcase, the valve comprising:

a carrier plate having an outer perimeter, a lower surface, an upper surface opposite the lower surface, and an inner circumference that defines a valve inlet extending through the carrier plate from the lower surface to the upper surface;

a cap including an outer perimeter and a lower surface;

an annular flame arrestor extending from the upper surface of the carrier plate to the lower surface of the cap, the annular flame arrestor being coaxially aligned with the carrier plate and the cap;

a gasket positioned against the upper surface of the carrier plate and around the valve inlet of the carrier plate; and

a valve plate having a perimeter, a lower surface, and an upper surface opposite the lower surface, the lower surface of the valve plate being positioned against the gasket proximate to the valve inlet such that the valve plate covers the valve inlet;

a valve spring located between the lower surface of the cap and the upper surface of the valve plate, the valve spring being compressed to bias the valve plate against the gasket;

wherein the valve plate has a central trough portion, an outer trench portion, a medial crest portion located between the outer trench portion and the central trough portion, and an outer lip portion that engages the gasket, the central trough portion being positioned lower than the medial crest portion.

2. The explosion relief valve of claim 1 , wherein the central trough portion and the outer trench portion of the valve plate are coplanar.

3. The explosion relief valve of claim 1 , wherein the central trough portion is located in a plane lower than that of the outer trench portion.

4. The explosion relief valve of claim 1 ,

wherein the flame arrestor comprises a plurality of metal sheet layers, each of the plurality of metal sheet layers having smooth first and second surfaces such that the first surface of one metal sheet layer is flush against the second surface of an adjacent metal sheet layer.

5. The explosion relief valve of claim 4 , wherein the plurality of metal sheets consists of alternating layers of two different metal sheets.

6. The explosion relief valve of claim 5 , wherein one metal sheet of the two different metal sheets forms the outermost layer and the innermost layer of the plurality of metal sheet layers.

7. The explosion relief valve of claim 4 , wherein the plurality of metal sheets includes a first metal sheet having a first repeating pattern of apertures and a second metal sheet having a second repeating pattern of apertures.

8. The explosion relief valve of claim 7 , wherein the first metal sheet and the second metal sheet abut each other and form a coil shape with a plurality of revolutions corresponding to the plurality of metal sheet layers.

9. The explosion relief valve of claim 8 , wherein the first repeating pattern of apertures includes at least one aperture having a first diameter, and the second repeating pattern of apertures includes at least one aperture having a second diameter, wherein the first diameter is smaller than the second diameter.

10. The explosion relief valve of claim 9 , wherein the first metal sheet forms an outermost layer and an innermost layer of the plurality of metal sheet layers of the flame arrestor.

11. The explosion relief valve of claim 7 , wherein each aperture of the first and second repeating patterns of apertures has a circumference, each aperture of the first repeating pattern of apertures is spaced away from adjacent apertures from circumference to circumference by a first spacing, and each aperture of the second repeating pattern of apertures is spaced away from adjacent apertures from circumference to circumference by a second spacing, the first spacing being larger than the second spacing.

12. The explosion relief valve of claim 1 , wherein the lower surface of the valve plate is convex in the central trough portion.

13. The explosion relief valve of claim 1 , wherein the valve plate is formed from a single rigid part.

14. An explosion relief valve for a crankcase, the valve comprising:

a carrier plate having an outer perimeter, a lower surface, an upper surface opposite the lower surface, and an inner circumference that defines a valve inlet extending through the carrier plate from the lower surface to the upper surface;

a cap including an outer perimeter and a lower surface;

an annular flame arrestor extending from the upper surface of the carrier plate to the lower surface of the cap, the annular flame arrestor being coaxially aligned with the carrier plate and the cap;

a gasket positioned against the upper surface of the carrier plate and around the valve inlet of the carrier plate; and

a valve plate having a perimeter, a lower surface, and an upper surface opposite the lower surface, the lower surface of the valve plate being positioned against the gasket proximate to the valve inlet such that the valve plate covers the valve inlet;

a valve spring that is positioned and adapted to bias the valve plate against the gasket;

wherein the valve plate has a central trough portion, an outer lip portion, and an outer trench portion located between the central trough portion and the outer lip portion, the outer lip portion engaging the gasket, wherein no other portion of the valve plate extends lower than the central trough portion.

15. The explosion relief valve of claim 14 , wherein the central trough portion is coplanar with the outer trench portion.

16. The explosion relief valve of claim 14 , wherein the valve plate further comprises a medial crest located between the outer trench portion and the central portion.

17. The explosion relief valve of claim 16 , wherein the central trough portion is located lower than the medial crest portion.

18. The explosion relief valve of claim 14 , wherein the lower surface of the valve plate is convex in the central trough portion.

19. The explosion relief valve of claim 14 , wherein the valve plate is formed from a single rigid part.

20. An explosion relief valve for a crankcase, the valve comprising:

a carrier plate having an outer perimeter, a lower surface, an upper surface opposite the lower surface, and an inner circumference that defines a valve inlet extending through the carrier plate from the lower surface to the upper surface;

a cap including an outer perimeter and a lower surface;

an annular flame arrestor extending from the upper surface of the carrier plate to the lower surface of the cap, the annular flame arrestor being coaxially aligned with the carrier plate and the cap;

a gasket positioned against the upper surface of the carrier plate and around the valve inlet of the carrier plate; and

a valve plate having a perimeter, a lower surface, and an upper surface opposite the lower surface, the lower surface of the valve plate being positioned against the gasket proximate to the valve inlet such that the valve plate covers the valve inlet;

a valve spring that is positioned and adapted to bias the valve plate against the gasket;

wherein the valve plate has a central trough portion, an outer lip portion, and an outer trench portion located between the central trough portion and the outer lip portion, the outer lip portion engaging the gasket, wherein the lower surface of the valve plate is convex in the central trough portion.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2025
From: PENN-TROY MANUFACTURING, INC.
To: IEP TECHNOLOGIES, LLC
Reel/Frame 070058/0877 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2022
From: KAFKA, MICHAEL; EIFFERT, MERLE
To: PENN-TROY MANUFACTURING INC.
Reel/Frame 061186/0302 →
Continuity (3)
Continuation 16770430
Continuation 15832343 · Dec 5, 2017
Related Publication 20230018625A1 · Jan 19, 2023