Metal belt for continuously variable transmission
US-2016053852-A1 · Feb 25, 2016 · US
US11072016B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11072016-B2 |
| Application number | US-201815964641-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 27, 2018 |
| Priority date | Apr 28, 2017 |
| Publication date | Jul 27, 2021 |
| Grant date | Jul 27, 2021 |
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A method for manufacturing a metal element includes performing press processing and punching processing on a band plate-shaped metal element material having a constant cross section by a mold with a main punch in contact with a rear surface of the metal element and a counter punch in contact with the front surface thereof. The main punch or the counter punch has protrusion portions which are in contact with at least a part of the ear portion or the body portion to form a recessed portion, and a bulging portion bulging in the longitudinal direction from the radial direction inner edge of ear portions of the metal element or the radial direction outer edge of a body portion thereof, which is formed by the material extruded from the recessed portion by the protrusion portion.
Opening claim text (preview).
The invention claimed is: 1. A method for manufacturing metal elements each engageable with a pair of metal rings of a continuously variable transmission apparatus, each of the metal elements comprising: a pair of ear portions; a body portion; a pair of ring slots formed between the pair of ear portions and the body portion at a left and right sides of the metal element, respectively, such that the pair of metal rings are engaged with the pair of ring slots and supported by a saddle surface of the body portion in a radial direction of the pair of metal rings; a neck portion extending between the pair of ring slots to connect the pair of ear portions and the body portion, the pair of ear portions being located at a radial direction outer side of the neck portion, the body portion having the saddle surface supporting an inner peripheral surface of the metal ring at a radial direction inner side of the neck portion; a rocking edge extending in a left-right direction along a front edge of the saddle surface; and an inclined surface extending in a radial direction inner side and rearwardly from the rocking edge, the method comprising: providing a band plate-shaped metal element material having a constant cross section; placing the band plate-shaped metal element material in a metal mold comprising a main punch to be in contact with a rear surface of the band plate-shaped metal element material and a counter punch to be in contact with a front surface of the band plate-shaped metal element material, wherein the main punch or the counter punch has a protrusion portion to be in contact with at least a part of the body portion to form a recessed portion thereon; and by using the metal mold, performing press processing and punching processing on the band plate-shaped metal element material, thereby forming the metal element having the pair of ear portions, the body portion, the pair of ring slots formed between the pair of ear portions and the recessed portion on the body portion in a manner that forms a bulging portion bulging backward in a front-rear direction from a radial direction outer edge of the body portion so as to increase a thickness of the body portion by the bulging portion, the bulging portion being formed of the metal element material extruded from the recessed portion formed by the protrusion portion, the counter punch being in contact with a front surface of the metal element, thereby forming the rocking edge on the front surface of the metal element, wherein each of the metal elements is formed such that when the metal elements can be aligned in the front-rear direction, the rocking edge of the metal element placed on a rear side is in contact with the bulging portion of the adjacent metal element placed on a front side. 2. The method according to claim 1 , wherein when the formation of the metal element in the metal mold is completed, a gap is left between the main punch or the counter punch and the metal element. 3. The method according to claim 1 , wherein a volume of the protrusion portion is substantially equal to a volume of the bulging portion. 4. The method according to claim 1 , wherein in the press processing and punching processing of the metal element, the protrusion portion is in contact with a central portion and both end portions of the ear portions in the left-right direction. 5. The method according to claim 1 , wherein the band plate-shaped metal element material has a groove portion at a position corresponding to the bulging portion. 6. A method for manufacturing a metal element engageable with a pair of metal rings of a continuously variable transmission apparatus, the metal element comprising: a pair of ear portions; a body portion; a pair of ring slots formed between the pair of ear portions and the body portion at a left and right sides of the metal element, respectively, such that the pair of metal rings are engaged with the pair of ring slots and supported by a saddle surface of the body portion in a radial direction of the pair of metal rings; a neck portion extending between the pair of ring slots to connect the pair of ear portions and the body portion, the pair of ear portions being located at a radial direction outer side of the neck portion, the body portion having the saddle surface supporting an inner peripheral surface of the metal ring at a radial direction inner side of the neck portion; a rocking edge extending in a left-right direction along a front edge of the saddle surface; and an inclined surface extending in a radial direction inner side and rearwardly from the rocking edge, the method comprising: providing a band plate-shaped metal element material having a constant cross section; placing the band plate-shaped metal element material in a metal mold comprising a main punch to be in contact with a rear surface of the band plate-shaped metal element material and a counter punch to be in contact with a front surface of the band plate-shaped metal element material, wherein the main punch or the counter punch has a protrusion portion to be in contact with at least a part of the ear portions or the body portion to form a recessed portion thereon; and by using the metal mold, performing press processing and punching processing on the band plate-shaped metal element material, thereby forming the metal element having the pair of ear portions, the body portion, the pair of ring slots formed between the pair of ear portions and the recessed portion on the body portion in a manner that forms a bulging portion bulging in a front-rear direction from a radial direction inner edge of the ear portions or a radial direction outer edge of the body portion, the bulging portion being formed of the metal element material extruded from the recessed portion formed by the protrusion portion, wherein the band plate-shaped metal element material has a groove portion at a position corresponding to the bulging portion. 7. The method according to claim 6 , wherein when the formation of the metal element in the metal mold is completed, a gap is left between the main punch or the counter punch and the metal element. 8. The method according to claim 6 , wherein a volume of the protrusion portion is substantially equal to a volume of the bulging portion. 9. The method according to claim 6 , wherein in the press processing and punching processing of the metal element, the protrusion portion is in contact with a central portion and both end portions of the ear portions in the left-right direction.
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