BALL NUT ASSEMBLY AND END COMPONENT THEREOF
20240125376 ยท 2024-04-18
Inventors
Cpc classification
F16H25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/2214
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/2418
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H25/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A ball nut assembly and an end component thereof are provided. The ball nut assembly includes a nut body and an end component. The nut body includes an outer ring wall, a ball groove, an assembling groove, and a fixing hole. The assembling groove is arranged on an end portion, and the assembling groove has a first side surface, a second side surface, and a bottom surface. The end component is accommodated in the assembling groove of the nut body, and includes a first contact surface, a second contact surface, a radial surface, a fixing portion, and a reflow bend. The fixing portion is arranged on the radial surface. The first and second contact surfaces contact the first and second side surfaces of the assembling groove in a force-fit manner, respectively, and two ends of the reflow bend respectively correspond to the ball groove and the reflow channel.
Claims
1. A ball nut assembly, comprising: a nut body comprising an outer ring wall, an inner ring wall, a ball groove, an assembling groove, and a fixing hole, wherein the ball groove is annularly arranged on the inner ring wall; the reflow channel is axially defined through the nut body between the outer ring wall and the inner ring wall; the assembling groove is arranged on an end portion, and the assembling groove has a first side surface, a second side surface, a bottom surface, and an assembling groove wall; the first side surface and the second side surface are opposite to each other; the bottom surface is connected to the first side surface and the second side surface, and the fixing hole is on the bottom surface; the assembling groove wall is adjacent to the first side surface, the second side surface, and the bottom surface, and a surface of the assembling groove wall is flushed with a surface of the outer ring wall; and an end component accommodated in the assembling groove of the nut body, wherein the end component comprises a first contact surface, a second contact surface, a radial surface, a fixing portion, and a reflow bend; the first contact surface is opposite to the second contact surface; the radial surface extends radially and is connected to the first contact surface and the second contact surface; the fixing portion is arranged on the radial surface; the reflow bend is arranged on the second contact surface; the first contact surface contacts the first side surface of the assembling groove in a force-fit manner; the second contact surface contacts the second side surface of the assembling groove in the force-fit manner, two ends of the reflow bend respectively correspond to the ball groove and the reflow channel, and the fixing portion is fixed in the fixing hole; wherein the end component further comprises an axial surface extending axially and connected to the first contact surface and the second contact surface, the first contact surface has a first fillet portion, and a second fillet portion is between the second contact surface and the axial surface; wherein the nut body has an axial center, a line connecting the second fillet portion and the axial center forms a reference axis, and an angle between a virtual extension line of the second contact surface and the reference axis is between 40 and 50 degrees.
2. The ball nut assembly according to claim 1, wherein the nut body further comprises a flange radially extending from one end of the nut body.
3. The ball nut assembly according to claim 1, further comprising a dustproof sheet, wherein the dustproof sheet has a convex portion, the nut body has a hollow portion, the dustproof sheet is assembled in the hollow portion, and the convex portion correspondingly covers the assembling groove.
4. The ball nut assembly according to claim 1, wherein a thickness between the assembling groove wall and the outer ring wall is at least 2 mm.
5. The ball nut assembly according to claim 1, further comprising a shaft inserted into the nut body.
6. The ball nut assembly according to claim 5, further comprising a plurality of balls rolling in a ball circulation channel formed by the ball groove, an outer wall of the shaft, the reflow bend, and the reflow channel.
7. The ball nut assembly according to claim 6, wherein the reflow bend has a first end and a second end, and a rollable distance from the first end to the second end is 2 to 3 times a diameter of one of the balls.
8. (canceled)
9. The ball nut assembly according to claim 6, wherein a radius of the first fillet portion is 0.8 to 1.8 times a diameter of one of the balls.
10. (canceled)
11. An end component, adapted to be assembled on a nut so as to allow a plurality of balls rolling thereon, wherein the end component comprises: a first contact surface; a second contact surface opposite to the first contact surface; a radial surface radially extending and connected to the first contact surface and the second contact surface; a fixing portion arranged on the radial surface; and a reflow bend arranged on the second contact surface; wherein the end component further comprises an axial surface extending axially and connected to the first contact surface and the second contact surface, the first contact surface has a first fillet portion, and a second fillet portion is between the second contact surface and the axial surface; wherein the end component further having an arc surface, the arc surface is opposite to the axial surface and connected to the first contact surface and the second contact surface; a line connecting to the second fillet portion and a center of circle of the arc surface forms a reference axis, and an angle between a virtual extension line of the second contact surface and the reference axis is between 40 and 50 degrees.
12. The end component according to claim 11, wherein the reflow bend has a first end and a second end, and a rollable distance from the first end to the second end is 2 to 3 times a diameter of one of the balls.
13. (canceled)
14. The end component according to claim 11, wherein a radius of the first fillet portion is 0.8 to 1.8 times a diameter of one of the balls.
15. (canceled)
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The disclosure will become more fully understood from the detailed description given herein below for illustration only, and thus not limitative of the disclosure, wherein:
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION
[0025] Please refer to
[0026] A ball nut assembly 100 is adapted to allow a plurality of balls rolling thereon. The ball nut assembly 100 includes a nut body (nut) 10 and two end components 20. In this embodiment, the ball nut assembly 100 further includes a shaft 30 inserted into the nut body 10. As shown in
[0027] The nut body 10 includes an outer ring wall 11, an inner ring wall 12, a ball groove 13, a reflow channel 14, two assembling grooves 15, a fixing hole 16, a first end portion 17, and a second end portion 18, where the first end portion 17 and the second end portion 18 axially correspond to each other. The ball groove 13 is annularly arranged on the inner ring wall 12. The reflow channel 14 is axially defined through the nut body 10 between the outer ring wall 11 and the inner ring wall 12. The two assembling grooves 15 are arranged on the first end portion 17 and the second end portion 18 of nut body 10, respectively. In this embodiment, since each of the first end portion 17 and the second end portion 18 of the nut body 10 is provided with an assembling groove 15, two end components 20 are provided to be assembled in the two assembling grooves 15, respectively. In other embodiments, only one assembling groove 15 may be arranged on the first end portion 17 or the second end portion 18 of the nut body 10, and one end component 20 may be assembled to the assembling groove 15. In addition, the first end portion 17 and the second end portion 18 may have different implementations, and different structures of the first end portion 17 and the second end portion 18 will be described in detail later.
[0028] As shown in
[0029] Please refer to
[0030] When the end component 20 is assembled in the assembling groove 15 in the way shown in
[0031] Next, please refer to
[0032] Specifically, according to one or some embodiments, the assembling groove 15 has the assembling groove wall 154, and because the assembling groove wall 154 has a certain thickness, rather than being exposed outward (formed as an open groove). In this way, the integrity, strength, and service life of the nut body 10 can be further improved. At the same time, such configuration also prevents the internal components of the ball nut assembly 100 from being exposed, thus reducing the impact of noise on the internal components of the ball nut assembly 100.
[0033] In this embodiment, the first end portion 17 and the second end portion 18 may have different implementations. As shown in
[0034] In this embodiment, the ball nut assembly 100 further includes two dustproof sheets 19. Each of the dustproof sheets 19 has a convex portion 191, the nut body 10 has hollow portions 10A, 10B, the dustproof sheets 190 are assembled in the hollow portions 10A, 10B, respectively, and the convex portion 191 correspondingly covers the assembling groove 15. Please refer to
[0035] Please refer to
[0036] Please refer to