Suspension Assembly With Dimple Features For Engagement With Actuator Arm
20230368813 ยท 2023-11-16
Inventors
Cpc classification
International classification
Abstract
A suspension assembly includes a baseplate having an upper surface and a lower surface opposite the upper surface, a load beam mounted to the baseplate, a cylindrical hub extending from the upper surface, wherein the cylindrical hub comprises an inner surface that defines a swage hole extending through the baseplate, and a plurality of dimples protruding from the upper surface of the baseplate, wherein each of the dimples includes a rounded side protruding from the upper surface of the baseplate and terminating in an apex. The apexes of the dimples define a contact plane for engaging with the lower surface of the actuator arm swaged to the cylindrical hub.
Claims
1. A suspension assembly, comprising: a baseplate having an upper surface and a lower surface opposite the upper surface; a load beam mounted to the baseplate; a cylindrical hub extending from the upper surface, wherein the cylindrical hub comprises an inner surface that defines a swage hole extending through the baseplate; and a plurality of dimples protruding from the upper surface of the baseplate, wherein each of the dimples includes a rounded side protruding from the upper surface of the baseplate and terminating in an apex.
2. The suspension assembly of claim 1, wherein each of the dimples includes a rounded side recessed into the lower surface of the baseplate.
3. The suspension assembly of claim 1, wherein apexes of the dimples define a contact plane above the upper surface of the baseplate.
4. The suspension assembly of claim 1, further comprising: an actuator arm having an opening, wherein the cylindrical hub extends into the opening such that an outer surface of the cylindrical hub is engaged with an inner surface of the opening, and wherein the actuator arm includes a lower surface engaged with the apexes of the plurality of dimples.
5. The suspension assembly of claim 1, wherein the plurality of dimples including as least three of the dimples.
6. A suspension assembly, comprising: a baseplate having an upper surface and a lower surface opposite the upper surface; a load beam mounted to the baseplate and extending along the lower surface of the baseplate, wherein the load beam includes a ridge feature that extends above the upper surface of the baseplate; a cylindrical hub extending from the upper surface, wherein the cylindrical hub comprises an inner surface that defines a swage hole extending through the baseplate; and a dimple protruding from the upper surface of the baseplate and including a rounded side protruding from the upper surface of the baseplate and terminating in an apex; wherein the cylindrical hub is disposed between the dimple and the ridge feature.
7. The suspension assembly of claim 6, wherein the dimple includes a rounded side recessed into the lower surface of the baseplate.
8. The suspension assembly of claim 6, wherein apex of the dimple and the ridge feature define a contact plane above the upper surface of the baseplate.
9. The suspension assembly of claim 6, further comprising: an actuator arm having an opening, wherein the cylindrical hub extends into the opening such that an outer surface of the cylindrical hub is engaged with an inner surface of the opening, and wherein the actuator arm includes a lower surface engaged with the apex of the dimple and the ridge feature.
10. A suspension assembly, comprising: a baseplate having an upper surface and a lower surface opposite the upper surface; a load beam mounted to the baseplate and extending along the lower surface of the baseplate, wherein the load beam includes first and second U-shape features that wrap around an edge of the baseplate and include portions that extend along the upper surface of the baseplate; a cylindrical hub extending from the upper surface, wherein the cylindrical hub comprises an inner surface that defines a swage hole extending through the baseplate; and a dimple protruding from the upper surface of the baseplate and including a rounded side protruding from the upper surface of the baseplate and terminating in an apex; wherein the cylindrical hub is disposed between the dimple and the U-shape features.
11. The suspension assembly of claim 10, wherein the dimple includes a rounded side recessed into the lower surface of the baseplate.
12. The suspension assembly of claim 10, wherein apex of the dimple and the portions of the U-shape features extending along the upper surface of the baseplate define a contact plane above the upper surface of the baseplate.
13. The suspension assembly of claim 10, further comprising: an actuator arm having an opening, wherein the cylindrical hub extends into the opening such that an outer surface of the cylindrical hub is engaged with an inner surface of the opening, and wherein the actuator arm includes a lower surface engaged with the apex of the dimple and the portions of the U-shape features extending along the upper surface of the baseplate.
14. A suspension assembly, comprising: a baseplate having an upper surface and a lower surface opposite the upper surface; a load beam having an upper surface and lower surface opposite the upper surface of the load beam, wherein the upper surface of the load beam is mounted to the lower surface of the baseplate; a cylindrical hub extending from the upper surface, wherein the cylindrical hub comprises an inner surface that defines a swage hole extending through the baseplate; and a plurality of dimples protruding from the upper surface of the load beam, wherein each of the dimples includes a rounded side protruding from the upper surface of the load beam and terminating in an apex; wherein the dimples extend beyond the upper surface of the baseplate.
15. The suspension assembly of claim 14, wherein one of the dimples extends through an opening in the baseplate.
16. The suspension assembly of claim 14, wherein the plurality of dimples extend through a plurality of openings in the baseplate.
17. The suspension assembly of claim 14, wherein apexes of the dimples define a contact plane above the upper surface of the baseplate.
18. The suspension assembly of claim 14, further comprising: an actuator arm having an opening, wherein the cylindrical hub extends into the opening such that an outer surface of the cylindrical hub is engaged with an inner surface of the opening, and wherein the actuator arm includes a lower surface engaged with the apexes of the plurality of dimples.
19. A suspension assembly, comprising: a baseplate having an upper surface and a lower surface opposite the upper surface; a load beam mounted to the baseplate; a cylindrical hub extending from the upper surface, wherein the cylindrical hub comprises an inner surface that defines a swage hole extending through the baseplate; a plurality of dimples protruding from the upper surface of the baseplate, wherein each of the dimples includes a rounded side protruding from the upper surface of the baseplate and terminating in an apex; and an actuator arm having an opening and a plurality of through-holes, wherein the cylindrical hub extends into the opening such that an outer surface of the cylindrical hub is engaged with an inner surface of the opening, and wherein the apexes of the plurality of dimples are disposed in the through-holes.
20. The suspension assembly of claim 19, wherein each of the dimples includes a rounded side recessed into the lower surface of the baseplate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0026] The present disclosure is directed to examples of a baseplate of a suspension assembly for engagement with an actuator arm. As shown in
[0027] As best shown in
[0028] The apexes A of the rounded protruding sides 34a of the three dimples 34 provide three points that define a contact plane above the upper surface 22a of baseplate 22 for engaging with the actuator arm swaged to the baseplate 22. As best shown in
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[0034] It is to be understood that the present disclosure is not limited to the example(s) described above and illustrated herein, but encompasses any and all variations falling within the scope of any claims. For example, references to the present invention, embodiments or examples herein are not intended to limit the scope of any claim or claim term, but instead merely make reference to one or more features that may be covered by one or more of the claims.