BALL SCREW, METHOD FOR MANUFACTURING BALL SCREW, POWER STEERING DEVICE, AND METHOD FOR MANUFACTURING POWER STEERING DEVICE
20220128135 · 2022-04-28
Assignee
Inventors
- Matahiro KOMURO (Tokyo, JP)
- Hisamitsu HATOU (Tokyo, JP)
- Kotaro SHIINO (Hitachinaka-shi, Ibaraki, JP)
- Koji NUMAKURA (Hitachinaka-shi, Ibaraki, JP)
- Shintaro TSUJIMI (Hitachinaka-shi, Ibaraki, JP)
Cpc classification
F16H25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2025/249
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62D5/04
PERFORMING OPERATIONS; TRANSPORTING
F16H25/2204
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C21D9/00
CHEMISTRY; METALLURGY
F16H2025/2081
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02P10/25
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F16H25/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An object of the present invention is to provide a ball screw having a structure in which a screw shaft and a nut satisfy required performance and having improved durability, a method for manufacturing the ball screw, a power steering device, and a method for manufacturing the power steering device.
A ball screw according to the present invention includes: a nut made of a steel substrate having an inner peripheral surface on which a female screw is formed; a screw shaft that is combined with the nut and is made of a steel substrate having an outer peripheral surface on which a male screw facing the female screw is formed; and a plurality of balls arranged between the female screw and the male screw. A surface of the nut in contact with the ball and a surface of the screw shaft in contact with the ball each have carburized layers. A carbon concentration in the carburized layer of the nut is higher than a carbon concentration in the carburized layer of the screw shaft.
Claims
1. A ball screw comprising: a nut made of a steel substrate having an inner peripheral surface on which a female screw is formed; a screw shaft that is combined with the nut and is made of a steel substrate having an outer peripheral surface on which a male screw facing the female screw is formed; and a plurality of balls arranged between the female screw and the male screw, wherein a surface of the nut in contact with the ball and a surface of the screw shaft in contact with the ball each have carburized layers, and a carbon concentration in the carburized layer of the nut is higher than a carbon concentration in the carburized layer of the screw shaft.
2. The ball screw according to claim 1, wherein the screw shaft includes: a cementite dispersion region in which carbide particles containing cementite are dispersed in a martensite structure on the surface in contact with the ball; a martensite structure formed inside the cementite dispersion region; and a sorbite structure formed inside the martensite structure, the carbide particle containing the cementite includes a first cementite layer formed on a surface of a particle having a martensite structure and a second cementite layer formed on a surface of the first cementite layer, and a carbide concentration of the second cementite layer is lower than a carbide concentration of the first cementite layer.
3. The ball screw according to claim 2, wherein a unit cell volume of the second cementite layer is smaller than a unit cell volume of the first cementite layer.
4. The ball screw according to claim 1, wherein a Vickers hardness of a surface of the nut is larger than a Vickers hardness of a surface of the screw shaft.
5. A power steering device comprising: a ball screw including a nut made of a steel substrate having an inner peripheral surface on which a female screw is formed; a screw shaft that is combined with the nut and is made of a steel substrate having an outer peripheral surface on which a male screw facing the female screw is formed; and a plurality of balls arranged between the female screw and the male screw; a steering gear case that accommodates the ball screw mechanism; an electric motor used to drive the ball screw mechanism; and a power transmission mechanism that transmits a rotational driving force of the electric motor to the nut, wherein the ball screw is the ball screw according to claim 1.
6. A method for manufacturing a ball screw, which includes: a nut made of a steel substrate having an inner peripheral surface on which a female screw is formed; a screw shaft that is combined with the nut and is made of a steel substrate having an outer peripheral surface on which a male screw facing the female screw is formed; and a plurality of balls arranged between the female screw and the male screw, the method comprising: performing a radio frequency carburization treatment of heating a surface of the screw shaft in contact with the ball in a carburizing gas atmosphere while applying a radio frequency to form a carburized layer; and performing an induction hardening treatment of heating the screw shaft subjected to the radio frequency carburization treatment while applying a radio frequency to the screw shaft to quench the screw shaft.
7. The method for manufacturing a ball screw according to claim 6, wherein a precipitate including a particle having an austenite structure, a first cementite layer formed on a surface of the particle having the austenite structure, and a second cementite layer formed on a surface of the first cementite layer is formed by the radio frequency carburization treatment, and the induction hardening treatment is performed to change the austenite structure to a martensite structure.
8. The method for manufacturing a ball screw according to claim 6, wherein the radio frequency carburization treatment includes a step of performing heating from 400° C. to 1100° C. for 20 seconds, keeping 1100° C. for 45 seconds while repeating introduction of a carburizing gas and stop of the introduction, and then, performing cooling with an Ar gas.
9. The method for manufacturing a ball screw according to claim 6, wherein the induction hardening treatment includes a step of performing heating from 4400° C. to 900° C. for 20 seconds, keeping 900° C. for 50 seconds, and then, performing quenching.
10. A method for manufacturing a power steering device, which includes: a ball screw including a nut made of a steel substrate having an inner peripheral surface on which a female screw is formed; a screw shaft that is combined with the nut and is made of a steel substrate having an outer peripheral surface on which a male screw facing the female screw is formed; and a plurality of balls arranged between the female screw and the male screw; a steering gear case that accommodates the ball screw mechanism; an electric motor used to drive the ball screw mechanism; and a power transmission mechanism that transmits a rotational driving force of the electric motor to the nut, the method comprising manufacturing the ball screw by the method for manufacturing a ball screw according to claim 6.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DESCRIPTION OF EMBODIMENTS
[0026] In the present invention, in order to satisfy the above-described required performance of each of a nut and a screw shaft, the nut is subjected to a normal carburization treatment, and the screw shaft is subjected to a carburization treatment at a radio frequency. With such processing, a rack can obtain a hardness equivalent to that of the nut in short-time processing.
[0027] Hereinafter, an embodiment of the present invention will be described with reference to the drawings. However, the present invention is not limited to the embodiment described herein, and can be appropriately combined and improved within a scope that does not change a gist of the invention.
[Ball Screw and Power Steering Device]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034] Through the analysis by EPMA, it has been confirmed that the concentration of carbon in the second cementite layer B was lower than the concentration of carbon in the first cementite layer A. Since the carbon concentration on the surface of the particle 41 having the martensite structure is high, the hardness of the screw shaft 2 can be made high.
[0035]
[0036] Further, the peak of the second cementite layer B is present on the higher angle side than the peak of the first cementite layer A. This is because the second cementite layer B has a lower carbon concentration and a smaller lattice constant.
[Methods for Manufacturing Ball Screw and Power Steering Device]
[0037] Next, methods for manufacturing a ball screw and a power steering device according to the present invention will be described.
[0038] Each of the radio frequency carburization treatment unit 210, the structure adjustment unit 206, and the induction hardening unit 207 includes a radio frequency power supply and a radio frequency coil 208, and the radio frequency coil 208 is wound around the screw shaft 2 to perform radio frequency (for example, 30 kHz) processing. Note that a carburized layer is formed on a part of the screw shaft 2, and thus,
[0039] The radio frequency carburization treatment unit 210 includes a front chamber 202, a carburization treatment chamber 203, and a rear chamber 204. The front chamber 202 and the rear chamber 204 are chambers evacuated to separate outside air of the radio frequency carburization treatment unit 210 from a carbon atmosphere of the carburization treatment chamber 203. A carburizing gas 209 is supplied to the radio frequency carburization treatment unit 210. As the carburizing gas 209, an acetylene gas (C.sub.2H.sub.2) is suitable.
[0040]
[0041] The first cementite layer A starts to disappear at 1100° C., but carbon of the carburizing gas is diffused and supplied, so that the carbon is collected around the first cementite layer A to form the second cementite layer B. As described above, the second cementite layer B is a carbide having a different carbon layer concentration from the first cementite layer A, and has a unit cell volume smaller by 0.1 to 1% than that of the first cementite layer A.
[0042] After the radio frequency carburization treatment (1), induction hardening is performed. Heating is performed from 400° C. to 900° C. for 20 seconds, and water quenching is performed after keeping 900° C. for 50 seconds. In this step, γ-Fe (austenite) becomes α′-Fe (martensite).
[0043] Although a conventional carburization treatment performs heating at 980° C. for about 3 hours in a carburizing gas, but it is only required to keep 1100° C. for 45 seconds in this radio frequency carburization treatment, and thus, the heating time can be significantly reduced. Further, sufficient strength can be obtained by providing the first cementite layer A and the second cementite layer B as described above.
[0044]
[0045] As described above, illustrated is that it is possible to provide the ball screw having the structure in which the screw shaft and the nut satisfy required performance and having improved durability, the method for manufacturing the ball screw, the power steering device, and the method for manufacturing the power steering device according to the present invention.
[0046] Note that the present invention is not limited to the above-described embodiment, but includes various modifications. For example, the above-described embodiment has been described in detail in order to describe the present invention in an easily understandable manner, and is not necessarily limited to one including the entire configuration that has been described above. Further, a part of the configuration of a certain embodiment can be replaced with the configuration of another embodiment, and the configuration of another embodiment can be added to the configuration of a certain embodiment. Further, addition, deletion or substitution of other configurations can be made with respect to some configurations of each embodiment.
REFERENCE SIGNS LIST
[0047] 1 nut [0048] 2 screw shaft [0049] 3 ball [0050] 4 steering gear case [0051] 5 electric motor [0052] 6 power transmission mechanism [0053] 40 precipitate of carbide [0054] 41, 41a particle having martensite structure [0055] 41b particle having austenite structure [0056] 42 first cementite layer A [0057] 43 second cementite layer B [0058] 11 radio frequency power supply [0059] 200 heat treatment device [0060] 201 conveyance line [0061] 202 front chamber [0062] 203 carburization treatment chamber [0063] 204 rear chamber [0064] 205 cooling unit [0065] 206 structure adjustment unit [0066] 207 induction hardening unit [0067] 208 radio frequency coil [0068] 209 carburizing gas [0069] 210 radio frequency carburization treatment unit