Claims
- 1. A process of selecting a profile for a slider for flying adjacent a moving medium at differing skew orientations to a direction of fluid flow generated by the medium, the process comprising steps of:
a) modeling a slider profile; b) generating a numerical simulation of fluid flow on the modeled profile at each of a plurality of skew orientations within a range of skew orientations at which the slider is intended to fly relative to the fluid flow; c) adjusting the modeled slider profile based on the numerical simulations; and d) selecting a slider profile based on a modeled slider profile.
- 2. The process of claim 1, wherein step c) comprises steps of:
c1) calculating vibration movement of the modeled slider due to the simulated fluid flow, and c2) adjusting the modeled slider profile based on the numerical simulations if the calculated vibration movement exceeds a predetermined minimum, and step d) comprises selecting a modeled slider profile having a calculated vibration movement that does not exceed the predetermined minimum.
- 3. The process of claim 2, further including, after step c) and before step d):
e) repeating steps a) and b) for the adjusted modeled slider profile.
- 4. The process of claim 2, further including, after step c) before step d):
e) iteratively repeating steps a) and b) for the adjusted modeled slider profile.
- 5. The process of claim 4, wherein step c1) includes, for each iteration:
measuring a distance of movement of a slider having the modeled profile due to off-track forces on the slider, and step d) is performed when the distance of movement does not exceed a predetermined minimum.
- 6. The process of claim 1, wherein the numerical simulations generated at step b) are performed at a positive skew orientation and a negative skew orientation.
- 7. The process of claim 6, wherein step c) comprises steps of:
c1) calculating vibration movement of the modeled slider due to the simulated fluid flow, and c2) adjusting the modeled slider profile based on the numerical simulations if the calculated vibration movement exceeds a predetermined minimum, and step d) comprises selecting a modeled slider profile having a calculated vibration movement that does not exceed the predetermined minimum.
- 8. The process of claim 7, further including, after step c) and before step d):
e) repeating steps a) and b) for the adjusted modeled slider profile.
- 9. The process of claim 7, further including, after step c) before step d):
e) iteratively repeating steps a) and b) for the adjusted modeled slider profile.
- 10. The process of claim 9, wherein step c1) includes, for each iteration:
measuring a distance of movement of a slider having the modeled profile due to off-track forces on the slider, and step d) is performed when the distance of movement does not exceed a predetermined minimum.
- 11. A process according to claim 1 of fabricating a slider for attachment to a suspension, the process further including:
e) fabricating the slider based on the selected slider profile.
- 12. A slider fabricated by the process of claim 11.
- 13. A slider having a substantially rectilinear body defining an air bearing surface arranged to confront a moving medium that generates fluid flow to support the slider to fly adjacent a surface of the medium, a top surface opposite the air bearing surface, a leading surface arranged to confront fluid flow, a trailing surface opposite the leading surface, and first and second opposite side surfaces extending continuously between the air bearing and top surfaces and the leading and trailing surfaces, characterized in that
at least one side surface is continuously curved between the leading and trailing surfaces.
- 14. The slider of claim 13, wherein the trailing surface is continuously curved between the first and second side surfaces.
- 15. The slider of claim 13, wherein the leading surface is continuously curved between the first and second side surfaces.
- 16. A slider having a substantially rectilinear body defining an air bearing surface arranged to confront a moving medium that generates fluid flow to support the slider to fly adjacent a surface of the medium, a top surface opposite the air bearing surface, a leading surface arranged to confront fluid flow, a trailing surface opposite the leading surface, and first and second opposite side surfaces extending continuously between the air bearing and top surfaces and the leading and trailing surfaces, wherein the slider is arranged to fly adjacent the medium at differing skew orientations to a direction of fluid flow, characterized in that
at least one side surface is curved to substantially eliminate off-track forces on the at least one side surface at differing skew orientations.
- 17. The slider of claim 16, wherein the at least one side surface is continuously curved between the leading and trailing surfaces.
- 18. The slider of claim 16, wherein the trailing surface is curved between the first and second side surfaces.
- 19. The slider of claim 16, wherein the leading surface is curved between the first and second side surfaces.
- 20. The slider of claim 16, wherein the first and second side surfaces are curved to substantially eliminate off-track forces on the first and second side surface due to skew orientations changing between positive and negative.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority of U.S. Provisional Application No. 60/380,809 filed May 14, 2002 for “Aerodynamic Slider Profiling for Disc Drives”.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60380809 |
May 2002 |
US |