The invention relates generally to a torque converter and more specifically to a torque converter with a stamped stator.
Torque converters with stamped stators are known. One example is shown in commonly-assigned U.S. Pat. No. 8,162,612, hereby incorporated by reference. Also, torque converters with wedge one-way clutches are known. One example is shown in commonly-assigned United States Patent Application Publication No. 2009/0159390, hereby incorporated by reference.
Example aspects broadly comprise a stamped stator for a torque converter including a first blade plate, a second blade plate, an outer race, at least one wedge plate, and an inner race. The first blade plate includes a first blade portion, a first radial wall connected to the first blade portion, a first plurality of radially inwardly extending tabs, and a second radially inwardly extending surface. The second blade plate includes a second blade portion axially aligned with the first blade portion, and a second radial wall axially aligned with the first radial wall. The outer race is disposed axially between the first and second blade plates and includes a third radial wall radially and axially aligned with the first radial wall, a fourth radial wall radially and axially aligned with the second radial wall, and an inwardly facing circumferential notch. The at least one wedge plate is at least partially axially aligned with the first plurality of tabs and includes a radially outer portion at least partially disposed in the outer race notch and a radially inner portion with a ramped surface. The inner race includes a ramped outer surface that is complementary to and engageable with the wedge plate ramped surface, disposed radially inside of the first plurality of radially inwardly extending tabs, and at least partially axially aligned with the second radially inwardly extending surface.
In an example embodiment, the stamped stator includes a first plurality of rivets extending through respective holes in the first blade plate first radial wall, the second blade plate radial wall, and the outer race third and fourth radial walls. In an example embodiment, the stamped stator includes a first spacer ring axially aligned with and disposed between the first blade plate first radial tab and the at least one wedge plate. In some example embodiments, the first radially extending tabs and second radially extending surface are radially misaligned. In an example embodiment, the second radially extending surface is radially aligned with the first radial wall. In an example embodiment, the inner race includes a first circumferential surface radially inside of the ramped outer surface, and the first blade plate second radially extending surface includes a second circumferential surface axially and radially aligned with the first circumferential surface.
In some example embodiments, the second blade plate includes a third plurality of radially extending tabs and a fourth radially inwardly extending surface at least partially axially aligned with the inner race ramped outer surface. In an example embodiment, the stamped stator includes a second spacer ring axially aligned with and disposed between the second blade plate third radial tab and the at least one wedge plate. In an example embodiment, the third radially extending tabs and the fourth radially extending surface are radially misaligned. In some example embodiments, the inner race includes a third circumferential surface radially inside of the ramped outer surface and the second blade plate fourth radially extending surface includes a fourth circumferential surface axially and radially aligned with the third circumferential surface. In an example embodiment, the inner race includes a first circumferential surface radially inside of the ramped outer surface and the first blade plate second radially extending surface includes a second circumferential surface axially and radially aligned with the first circumferential surface. In an example embodiment, the inner race first and third circumferential surfaces are axially misaligned.
In an example embodiment, the second blade plate includes a low friction ring. In an example embodiment, the stamped stator includes a second plurality of rivets. The first and second blade plates include respective fifth and sixth axially aligned radial walls disposed radially outside of the first and second blade portions and fixed together by the second plurality of rivets. In an example embodiment, the first or second radial wall includes an axial protrusion with an inner circumferential surface radially and axially aligned with an outer circumferential surface of the outer race.
The nature and mode of operation of the present invention will now be more fully described in the following detailed description taken with the accompanying drawing figures, in which:
At the outset, it should be appreciated that like drawing numbers appearing in different drawing views identify identical, or functionally similar, structural elements. Furthermore, it is understood that this invention is not limited only to the particular embodiments, methodology, materials and modifications described herein, and as such may, of course, vary. It is also understood that the terminology used herein is for the purpose of describing particular aspects only, and is not intended to limit the scope of the present invention, which is limited only by the appended claims.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood to one of ordinary skill in the art to which this invention belongs. Although any methods, devices or materials similar or equivalent to those described herein can be used in the practice or testing of the invention, the following example methods, devices, and materials are now described.
The adverbs “axially,” “radially,” and “circumferentially” are with respect to an orientation parallel to axis 81, radius 82, or circumference 83, respectively. The adverbs “axially,” “radially,” and “circumferentially” also are regarding orientation parallel to respective planes.
The following description is made with reference to
Stamped stator 102 includes blade plate 138 with blade portion 140, radial wall 142 connected to the blade portion, radially inwardly extending tabs 144, and radially inwardly extending surface 146. Stamped stator 102 includes blade plate 148 with blade portion 150, axially aligned with blade portion 140, and radial wall 152 axially aligned with radial wall 142. Stator 102 includes outer race 154 disposed axially between blade plates 138 and 148. The outer race has radial wall 156 radially and axially aligned with radial wall 142, radial wall 158 radially and axially aligned with radial wall 152, and inwardly facing circumferential notch 160.
Stamped stator 102 includes wedge plates 162 and 164 at least partially axially aligned with tabs 142. Plates 162 and 164 include radially outer portion 166 at least partially disposed in the outer race notch and radially inner portion 168 including ramped surface 170. Stamped stator 102 includes inner race 172 with ramped outer surface 174. The outer surface is complementary to and engageable with the wedge plate ramped surface, disposed radially inside of tabs 142, and at least partially axially aligned with surface 146.
Stamped stator 102 includes rivet 176 extending through respective holes in blade plate radial wall 142, blade plate radial wall 152, and outer race radial walls 156 and 158. Stamped stator 102 includes spacer ring 178 axially aligned with and disposed between the radial tab 144 and wedge plate 162. Radially extending tab 144 and radially extending surface 146 are radially misaligned. Radially extending surface 146 is radially aligned with radial wall 156.
Blade plate 148 includes radially extending tabs 184 and radially extending surface 186 at least partially axially aligned with the inner race ramped outer surface. Stamped stator 102 includes spacer ring 188 axially aligned with and disposed between radial tab 184 and wedge plate 164. Tab 184 and surface 186 are radially misaligned. Blade plate 148 includes low friction ring 198 for limiting frictional contact with impeller 112.
The following description is made with reference to
The following description is made with reference to
Of course, changes and modifications to the above examples of the invention should be readily apparent to those having ordinary skill in the art, without departing from the spirit or scope of the invention as claimed. Although the invention is described by reference to specific preferred and/or example embodiments, it is clear that variations can be made without departing from the scope or spirit of the invention as claimed.
Number | Date | Country | |
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61860169 | Jul 2013 | US |