IP Library › Granted Patent US 10,899,462
Granted Patent B2
US 10,899,462 · App. 15/752,484 · Granted Jan 26, 2021

Anti-torque aft-mounting systems, devices, and methods for turboprop/turboshaft engines

Inventors: Daniel Zameroski (McKean, PA); Gerald Whiteford (Waterford, PA)
Assignee: Lord Corporation
B64D27/26B64D2027/262B64D2027/264B64D2027/266F16F9/10
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Quick Facts
Patent No.
US 10,899,462
App. No.
15/752,484
Granted
Jan 26, 2021
Kind
B2
Abstract

Aft-mounting systems, devices, and methods for turboprop and turboshaft engines include two or more coupling elements 201, 211, 221 that are configured to couple an aft portion of an engine of an aircraft to a support structure of the aircraft. The two or more coupling elements are together configured to react forces generated in a vertical direction and in a lateral direction transverse to the engine but allow substantially unrestricted rotation of the engine with respect to the support structure about an axis of rotation of the engine.

Claims (31)

1. An aircraft engine mount system for attaching an aft portion of an aircraft engine to an aircraft, the aircraft engine mount comprising:

a support structure capable of being attached to the aircraft, the support structure further comprising:

two or more coupling elements capable of pivotably coupling an aft portion of the aircraft engine to the support structure, the two or more coupling elements extending radially inward towards a focal point along an axis of rotation of the aircraft engine;

wherein the two or more coupling elements react forces generated in a vertical direction and in a lateral direction transverse to the aircraft engine; and

wherein the two or more coupling elements are capable of allowing substantially unrestricted rotation of the aircraft engine with respect to the support structure about the axis of rotation of the aircraft engine and are capable of decoupling a roll-moment reaction from the vertical load and the lateral load reaction of the support structure at an aft mounting plane.

2. The aircraft engine mount system of claim 1 , wherein each of the two or more coupling elements is a strut pivotably coupled to the support structure and capable of being coupled to the aft portion of the aircraft engine, wherein each of the struts is pivotable in response to a rotation of the aircraft engine about the axis of rotation.

3. The aircraft engine mount system of claim 2 , wherein each of the struts comprise a flexible element configured to accommodate a change of a length of a respective at least one of the struts when the aircraft engine is moved relative to the support structure.

4. The aircraft engine mount system of claim 2 , wherein each of the struts is oriented substantially along lines between one or more positions on the support structure and the focal point located along the axis of rotation of the aircraft engine.

5. The aircraft engine mount system of claim 1 , comprising a cradle capable of being connected to the aft portion of the aircraft engine, wherein the two or more coupling elements are pivotably coupled to the cradle.

6. The aircraft engine mount system of claim 5 , wherein the cradle comprises an expansion joint configured to accommodate thermal expansion of the aircraft engine.

7. The aircraft engine mount system of claim 1 , wherein each of the two or more coupling elements are pivotably attached to an attachment flange, the attachment flange being mountable to the aircraft engine.

8. An aircraft engine mount system capable of coupling an aircraft engine of to an aircraft, the aircraft engine mount system comprising:

a support structure capable of being attached to the aircraft, the support structure further comprising:

a forward mount comprising two or more forward coupling elements capable of coupling a forward portion of the aircraft engine to the support structure;

an aft mount comprising two or more aft coupling elements capable of pivotably coupling an aft portion of the aircraft engine to the support structure, the two or more coupling elements extending radially inward towards a focal point along an axis of rotation of the aircraft engine;

wherein the two or more aft coupling elements are capable of allowing substantially unrestricted rotation of the aircraft engine with respect to the support structure about the axis of rotation of the aircraft engine and are capable of decoupling a roll-moment reaction from the vertical load and the lateral load reaction of the support structure at an aft mounting plane; and

wherein the forward mount reacts greater than 85% of torque generated by the aircraft engine.

9. The aircraft engine mount system of claim 8 , wherein each of the two or more aft coupling elements is a strut pivotably coupled to the support structure and capable of being coupled to the aft portion of the aircraft engine, wherein each of the struts is pivotable in response to rotation of the aircraft engine about the axis of rotation.

10. The aircraft engine mount system of claim 9 , wherein each of the struts comprises a flexible element configured to accommodate a change of a length of a respective at least one of the struts when the aircraft engine is moved relative to the support structure.

11. The aircraft engine mount system of claim 9 , wherein each of the struts is oriented along a respective line between one or more positions on the support structure and a focal point located along the axis of rotation of the aircraft engine.

12. The aircraft engine mount system of claim 9 , comprising a cradle capable of being connected to the aft portion of the aircraft engine, wherein the two or more aft coupling elements are pivotably coupled to the cradle.

13. A method for coupling an aft portion of an aircraft engine to a support structure coupled to an aircraft, the method comprising:

pivotably coupling two or more coupling elements of the aircraft engine mount system between the aft portion of the aircraft engine and the support structure, the two or more coupling elements extending radially inward towards a focal point along an axis of rotation of the aircraft engine;

wherein the two or more coupling elements react forces generated in a vertical direction and in a lateral direction transverse to the aircraft engine; and

wherein the two or more coupling elements allow substantially unrestricted rotation of the aircraft engine with respect to the support structure about the axis of rotation of the aircraft engine and decouple a roll-moment reaction from the vertical load and the lateral load reaction of the support structure at an aft mounting plane.

14. The method of claim 13 , wherein each of the two or more coupling elements is a strut, and wherein coupling the two or more coupling elements between the aft portion of the aircraft engine and the support structure comprises pivotably coupling two or more struts to the support structure and to the aft portion of the aircraft engine, wherein each of the two or more struts pivots in response to rotation of the aircraft engine about the axis of rotation.

15. The method of claim 14 , wherein pivotably coupling two or more struts to the support structure and to the aft portion of the aircraft engine comprises accommodating a change of a length of each of the two or more struts when the aircraft engine is moved relative to the support structure.

16. The method of claim 14 , wherein pivotably coupling two or more struts to the support structure and to the aft portion of the aircraft engine comprises orienting each of the two or more struts along a respective line between one or more positions on the support structure and the focal point located along the axis of rotation of the aircraft engine.

17. The method of claim 14 , wherein pivotably coupling two or more struts to the aft portion of the aircraft engine comprises:

connecting a cradle to the aft portion of the aircraft engine; and

pivotably coupling the two or more coupling elements to the cradle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 13, 2018
From: ZAMEROSKI, DANIEL; WHITEFORD, GERALD
To: LORD CORPORATION
Reel/Frame 045188/0952 →
Continuity (2)
Provisional Application 62214481 · Sep 4, 2015
Related Publication 20190009918A1 · Jan 10, 2019
Cited By (1)
US 12,415,610