IP Library Granted Patent US 12,590,547
Granted Patent B2
US 12,590,547 · App. 19/060,099 · Granted Mar 31, 2026

Split case with coatable transistion feature

Inventors: Michael Davis Austin (Meriden, CT); Mason Adam Kessler (Rocky Hill, CT)
Assignee: RTX CORPORATION
F01D25/145F01D25/24F05D2220/32F05D2230/10F05D2240/14F05D2260/231
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Quick Facts
Patent No.
US 12,590,547
App. No.
19/060,099
Granted
Mar 31, 2026
Kind
B2
Abstract

A split case is provided. The split case includes a first section including an interior surface with a first linear portion, a second section including a hook, a third section interposed between the first and second sections and including an interior surface with a second linear portion intersecting and forming a first angle with the first linear portion and first and second thermal barrier coating (TBC) portions applied to at least the first and second linear portions, respectively. A magnitude of the first angle is established such that the first and second TBC portions form a second angle substantially equal to the first angle.

Claims (33)

1 . A split case formation method, comprising:

casting a split case comprising first, second and third sections, the first section comprising an interior surface with a first linear portion, the second section comprising a hook and the third section being interposed between the first and second sections; and

machining the third section to form an interior surface, the interior surface comprising:

a second linear portion such that the second linear portion intersects and forms an angle with the first linear portion at an intersection point of the first and second linear portions; and

a curved portion leading from an end of the second linear portion, which is opposite from the angle, to a linear interior surface of the hook,

wherein the machining comprises:

positioning a machining tool in position to machine the third section;

moving the machining tool in a linear pathway along the third section to form the second linear portion and the curved portion; and

maintaining an orientation of the machining tool during an entirety of the machining.

2 . The split case formation method according to claim 1 , wherein the angle is formed between proximal straight ends of the first and second linear portions and with an absence of a cusp formed at the intersection point.

3 . The split case formation method according to claim 1 , further comprising applying first and second thermal barrier coating (TBC) portions to at least the first and second linear portions, respectively, such that the first and second TBC portions form an angle equal to the angle formed by the first and second linear portions.

4 . A split case formation method, comprising:

casting a split case comprising first, second and third sections, the first section comprising an interior surface with a first linear portion, the second section comprising a hook and the third section being interposed between the first and second sections; and

machining the third section to form an interior surface, the interior surface comprising:

a second linear portion such that the second linear portion intersects and forms an angle with the first linear portion at an intersection point of the first and second linear portions; and

a curved portion leading from an end of the second linear portion, which is opposite from the angle, to a linear interior surface of the hook,

wherein the machining comprises:

positioning a machining tool in position to machine the third section;

moving the machining tool in a linear pathway along the third section to form the second linear portion and the curved portion; and

non-rotatably maintaining an orientation of the machining tool during an entirety of the machining.

5 . The split case formation method according to claim 4 , wherein the angle is formed between proximal straight ends of the first and second linear portions and with an absence of a cusp formed at the intersection point.

6 . The split case formation method according to claim 4 , further comprising applying first and second thermal barrier coating (TBC) portions to at least the first and second linear portions, respectively, such that the first and second TBC portions form an angle to the angle formed by the first and second linear portions.

7 . A split case formation method, comprising:

casting a split case comprising first, second and third sections, the first section comprising an interior surface with a first linear portion, the second section comprising a hook and the third section being interposed between the first and second sections; and

machining the third section to form an interior surface, the interior surface comprising:

a second linear portion such that a proximal straight end of the second linear portion intersects and forms a first angle with a proximal straight end of the first linear portion at an intersection point of the respective proximal straight ends of the first and second linear portions; and

a curved portion leading from an end of the second linear portion, which is opposite from the angle, to a linear interior surface of the hook,

wherein the machining comprises:

positioning a machining tool in position to machine the third section;

moving the machining tool in a linear pathway along the third section to form the second linear portion and the curved portion; and

non-rotatably maintaining an orientation of the machining tool during an entirety of the machining.

8 . The split case formation method according to claim 7 , wherein the first angle is formed between proximal straight ends of the first and second linear portions and with an absence of a cusp formed at the intersection point.

9 . The split case formation method according to claim 7 , further comprising applying first and second thermal barrier coating (TBC) portions to at least the first and second linear portions, respectively, such that the first and second TBC portions form a second angle equal to the first angle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2025
From: AUSTIN, MICHAEL DAVIS; KESSLER, MASON ADAM
To: RTX CORPORATION
Reel/Frame 070294/0680 →
Continuity (2)
Division 18540525 · Dec 14, 2023
Related Publication 20250198307A1 · Jun 19, 2025
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