IP Library Granted Patent US 11,167,786
Granted Patent B2
US 11,167,786 · App. 16/774,583 · Granted Nov 9, 2021

Steering shaft and method of manufacturing steering shaft

Inventor: Tomoya Ishikawa (Kiryu, JP)
Assignee: YAMADA MANUFACTURING CO., LTD.
B62D1/185B62D1/20F16J15/0881F16J15/3232
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 11,167,786
App. No.
16/774,583
Granted
Nov 9, 2021
Kind
B2
Abstract

A steering shaft according to an aspect of the present invention includes an upper shaft, a lower shaft, and a seal cap. The seal cap includes a seal which comes into close contact with an inner peripheral surface of the upper shaft and a closure which bulges upward with respect to the seal. The closure is plastically deformed downward, and thus, the seal cap is held in an upper end opening portion in a state where the seal is pressed against the inner peripheral surface of the upper shaft.

Claims (33)

1. A steering shaft comprising:

a tubular outer shaft;

an inner shaft configured to be inserted into the outer shaft, to be movable in an axial direction relative to the outer shaft through an opening portion of the outer shaft on a first side in the axial direction, and to be rotatable integrally with the outer shaft; and

a seal cap configured to close an opening portion of the outer shaft on a second side in the axial direction,

wherein the seal cap includes

a seal configured to come into close contact with an inner peripheral surface of the outer shaft, and

a closure configured to be continuous with an inner peripheral side of the seal and bulge to the second side in the axial direction with respect to the seal,

wherein the closure is plastically deformed to the first side in the axial direction, and thus, the seal cap is held in the opening portion on the second side in a state where the seal is pressed against the inner peripheral surface of the outer shaft, and

wherein a first restriction configured to abut against the seal cap in the axial direction in a state where the closure is plastically deformed and restrict a movement of the seal cap with respect to the outer shaft toward the second side in the axial direction is formed in a portion of the outer shaft located on the second side in the axial direction from the seal.

2. The steering shaft according to claim 1 ,

wherein a second restriction configured to abut against the seal cap in the axial direction and restrict a movement of the seal cap with respect to the outer shaft toward the first side in the axial direction is formed in a portion of the outer shaft located on the first side in the axial direction from the seal.

3. The steering shaft according to claim 1 ,

wherein each of the outer shaft and the seal cap is formed in a circular shape when viewed in the axial direction.

4. A method of manufacturing a steering shaft,

wherein the steering shaft includes:

a tubular outer shaft;

an inner shaft configured to be inserted into the outer shaft, to be movable in an axial direction relative to the outer shaft through an opening portion of the outer shaft on a first side in the axial direction, and to be rotatable integrally with the outer shaft; and

a seal cap configured to close an opening portion of the outer shaft on a second side in the axial direction,

wherein the seal cap includes

a seal configured to come into close contact with an inner peripheral surface of the outer shaft, and

a closure configured to be continuous with an inner peripheral side of the seal and bulge to the second side in the axial direction with respect to the seal,

wherein the closure is plastically deformed to the first side in the axial direction, and thus, the seal cap is held in the opening portion on the second side in a state where the seal is pressed against the inner peripheral surface of the outer shaft,

wherein the method comprises a pushing step of pushing the closure to the first side in the axial direction with respect to the seal in a state where the seal cap is inserted into the opening portion on the second side of the outer shaft, and

wherein in the pushing step, the closure is plastically deformed toward the first side in the axial direction, and thus, the seal comes into close contact with the inner peripheral surface of the outer shaft.

5. A steering shaft comprising:

a tubular outer shaft;

an inner shaft configured to be inserted into the outer shaft, to be movable in an axial direction relative to the outer shaft through an opening portion of the outer shaft on a first side in the axial direction, and to be rotatable integrally with the outer shaft; and

a seal cap configured to close an opening portion of the outer shaft on a second side in the axial direction,

wherein the seal cap includes

a seal configured to come into close contact with an inner peripheral surface of the outer shaft, and

a closure configured to be continuous with an inner peripheral side of the seal and bulge to the second side in the axial direction with respect to the seal,

wherein the seal cap is held in the opening portion on the second side in a state where the seal is pressed against the inner peripheral surface of the outer shaft, and

wherein a first restriction configured to abut against the seal cap in the axial direction and restrict a movement of the seal cap with respect to the outer shaft toward the second side in the axial direction is formed in a portion of the outer shaft located on the second side in the axial direction from the seal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2020
From: ISHIKAWA, TOMOYA
To: YAMADA MANUFACTURING CO., LTD.
Reel/Frame 051652/0387 →
Priority Claims (1)
JP JP2019-058415 · Mar 26, 2019 · national
Continuity (1)
Related Publication 20200307671A1 · Oct 1, 2020
Cited By (1)
US 12,649,510