IP Library › Granted Patent US 10,519,791
Granted Patent B2
US 10,519,791 · App. 15/034,319 · Granted Dec 31, 2019

Shaft sealing device, rotating machine, and method for manufacturing shaft sealing device

Inventors: Azumi Yoshida (Tokyo, JP); Hidekazu Uehara (Tokyo, JP); Kohei Ozaki (Tokyo, JP); Shin Nishimoto (Tokyo, JP)
Assignee: MITSUBISHI HEAVY INDUSTRIES, LTD.
F01D11/00F16J15/3292F05D2220/32F05D2240/57F05D2240/60
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Quick Facts
Patent No.
US 10,519,791
App. No.
15/034,319
Granted
Dec 31, 2019
Kind
B2
Abstract

A shaft sealing device includes a plurality of leaves that is arranged in a periphery of a rotating shaft and divides a space around the rotating shaft into two spaces in an axial direction of the rotating shaft, and a side seal plate that is arranged on one side of the plurality of leaves in the axial direction of the rotating shaft and has an opposite surface facing a side end on one side of the plurality of leaves. The side seal plate has a friction reducing portion for reducing a friction force between the opposite surface of the side seal plate and a surface of the side end on the one side of the plurality of leaves.

Claims (22)

1. A shaft sealing device comprising:

a plurality of leaves that is arranged in a circumferential direction of a rotating shaft and divides a space around the rotating shaft into two spaces in an axial direction of the rotating shaft; and

a side seal plate that is arranged on one side of the plurality of leaves in the axial direction of the rotating shaft and includes an opposite surface facing a side end on the one side of the plurality of leaves,

wherein the opposite surface of the side seal plate includes a friction reducing portion configured to reduce a friction force between the opposite surface of the side seal plate and a surface of the side end on the one side of the plurality of leaves;

wherein the friction reducing portion includes a textured surface having a microlevel concave-convex surface formed on the opposite surface of the side seal plate by a texturing treatment;

wherein the side end on the one side of the plurality of leaves has a curved convex surface expanding toward the side seal plate, a curved concave surface separated from the side seal plate, or a curved convex-concave surface;

wherein the curved convex surface, the curved concave surface, or the curved convex-concave surface is only on a high pressure side; and

wherein the curved convex surface, the curved concave surface, or the curved convex-concave surface extends from a top corner of the side end on the one side of the plurality of leaves to a bottom corner of the side end on the one side of the plurality of leaves.

2. A rotating machine comprising:

a rotating shaft; and

the shaft sealing device according to claim 1 , to be arranged in a periphery of the rotating shaft.

3. A method for manufacturing a shaft sealing device including a plurality of leaves and a side seal plate to be arranged facing a side end of the plurality of leaves,

the method comprising:

performing friction reducing treatment, on an opposite surface of the side seal plate facing the side end of the plurality of leaves, for reducing a friction force between the opposite surface of the side seal plate and a surface of the side end of the plurality of leaves;

arranging the plurality of leaves in a circumferential direction of a rotating shaft and dividing a space around the rotating shaft into two spaces in an axial direction of the rotating shaft; and

arranging the side seal plate, on one side of the plurality of leaves in the axial direction of the rotating shaft, such that the side end of the plurality of leaves is on the one side of the plurality of leaves and faces the opposite surface of the side seal plate,

wherein the performing friction reducing treatment includes forming, by a texturing treatment, a textured surface having a microlevel concave-convex surface on the opposite surface of the side seal plate;

wherein the side end on the one side of the plurality of leaves has a curved convex surface expanding toward the side seal plate, a curved concave surface separated from the side seal plate, or a curved convex-concave surface;

wherein the curved convex surface, the curved concave surface, or the curved convex-concave surface is only on a high pressure side; and

wherein the curved convex surface, the curved concave surface, or the curved convex-concave surface extends from a top corner of the side end on the one side of the plurality of leaves to a bottom corner of the side end on the one side of the plurality of leaves.

4. The method according to claim 3 , wherein the side end on the one side of the plurality of leaves has the curved convex surface expanding toward the side seal plate and the curved concave surface separated from the side seal plate.

5. The shaft sealing device according to claim 1 , wherein the side end on the one side of the plurality of leaves has the curved convex surface expanding toward the side seal plate and the curved concave surface separated from the side seal plate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2016
From: YOSHIDA, AZUMI; UEHARA, HIDEKAZU; OZAKI, KOHEI; NISHIMOTO, SHIN
To: MITSUBISHI HEAVY INDUSTRIES, LTD.
Reel/Frame 038457/0439 →
Priority Claims (1)
JP 2013-241956 · Nov 22, 2013 · national
Continuity (1)
Related Publication 20160281520A1 · Sep 29, 2016
Cited By (2)
US 12,247,490 US 12,291,970