IP Library › Granted Patent US 9,975,163
Granted Patent B2
US 9,975,163 · App. 15/233,385 · Granted May 22, 2018

Method of making shaft

Inventor: Yasuhiro Sato (Nagoya, JP)
Assignee: JTEKT CORPORATION
B21D22/28B21K1/066B62D1/185F16C3/02
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Quick Facts
Patent No.
US 9,975,163
App. No.
15/233,385
Granted
May 22, 2018
Kind
B2
Abstract

A method of making a shaft includes: forming a shaft portion by applying drawing to a first region, of a columnar material made of steel, extending from a predetermined position in an axial direction to an end on a first side in the axial direction, to form a shaft portion, and to form a tapered portion between the shaft portion and a second region, of the columnar material, extending from the predetermined position to an end of the columnar material on a second side in the axial direction, and having an outside diameter increased as the tapered portion extends from the shaft portion side toward the second region side; and forming a head portion by applying plastic forming to the second region and the tapered portion.

Claims (21)

1. A method of making a shaft, the method comprising:

applying drawing to a first region of a columnar material made of steel, the columnar material having an initial diameter prior to applying drawing to the first region and includes the first region and a second region with the first region extending from the second region to a first end on a first side of the columnar material in the axial direction and the second region extending from the first region to a second end of the columnar material on a second side of the columnar material in the axial direction, to form:

(1) a columnar shaft portion having a diameter smaller than the initial diameter and extending from the first side in an axial direction toward the second side in the axial direction, and

(2) a tapered portion extending between the columnar shaft portion and the second region, the tapered portion having an outside diameter that increases as the tapered portion extends from the columnar shaft portion toward the second region; and

applying plastic forming to the second region and the tapered portion to increase a diameter of the second region from the initial diameter to form a head portion so that the head portion forms a closed-end cylinder having an outside diameter larger than that of the initial diameter and so that an end of the columnar shaft portion on the second side in the axial direction is coupled to a bottom side of the head portion, the shaft being used to couple a first member that holds the columnar shaft portion and a second member that mates with the head portion; and

pressing the columnar shaft portion with a punch having a diameter that is smaller than the outside diameter of the columnar shaft portion to form a concave portion that is concave and extends from an end face on the second side in the axial direction toward the first side in the axial direction.

2. The method of making a shaft, according to claim 1 , wherein,

the applying plastic forming to the second region and the tapered portion comprises:

upsetting the second region and the tapered portion to form a columnar part having a diameter larger than that of the columnar shaft portion; and

extruding the columnar part to form the head portion.

3. The method of making a shaft, according to claim 1 , wherein,

the drawing is performed only one time.

4. The method of making a shaft, according to claim 1 , wherein, the shaft is a part of a steering shaft of a steering system.

5. A method of making a shaft, the method comprising:

applying drawing to a first region of a columnar material made of steel, the columnar material having an initial diameter prior to applying drawing to the first region and includes the first region and a second region with the first region extending from the second region to a first end on a first side of the columnar material in the axial direction and the second region extending from the first region to a second end of the columnar material on a second side of the columnar material in the axial direction, to form:

(1) a columnar shaft portion having a diameter smaller than the initial diameter and extending from the first side in an axial direction toward the second side in the axial direction, and

(2) a tapered portion extending between the columnar shaft portion and the second region, the tapered portion having an outside diameter that increases as the tapered portion extends from the columnar shaft portion toward the second region; and

applying plastic forming to the second region and the tapered portion to increase a diameter of the second region from the initial diameter to form a head portion so that the head portion forms a closed-end cylinder having an outside diameter larger than that of the initial diameter and so that an end of the columnar shaft portion on the second side in the axial direction is coupled to a bottom side of the head portion, the shaft being used to couple a first member that holds the columnar shaft portion and a second member that mates with the head portion, wherein

the applying plastic forming to the second region and the tapered portion comprises:

upsetting the second region and the tapered portion to form a columnar part having a diameter larger than that of the columnar shaft portion; and

extruding the columnar part to form the head portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2016
From: SATO, YASUHIRO
To: JTEKT CORPORATION
Reel/Frame 039396/0707 →
Priority Claims (1)
JP 2015-162437 · Aug 20, 2015 · national
Continuity (1)
Related Publication 20170050228A1 · Feb 23, 2017