Clutch mechanism for vehicle
US-9500238-B2 · Nov 22, 2016 · US
US9243673B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9243673-B2 |
| Application number | US-201314093181-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 29, 2013 |
| Priority date | Dec 6, 2012 |
| Publication date | Jan 26, 2016 |
| Grant date | Jan 26, 2016 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A driving force transmission control apparatus includes a multiple disc clutch including a plurality of outer clutch plates, and a plurality of inner clutch plates; a pressing mechanism that presses the multiple disc clutch; and a control portion that controls the pressing mechanism. The outer clutch plates and inner clutch plates are engaged with an intermediate shaft and an inner shaft respectively. The control portion makes a determination as to whether the multiple disc clutch is in a first operating condition in which the multiple disc clutch is pressed with a relative rotation speed between the intermediate and the inner shafts being equal to or higher than a predetermined value, or in a second operating condition in which the multiple disc clutch is pressed with the relative rotation speed being lower than the predetermined value, and the control portion controls the pressing mechanism based on a result of the determination.
Opening claim text (preview).
What is claimed is: 1. A driving force transmission control apparatus comprising: an outer rotary member having an inner peripheral surface in which a plurality of inner peripheral spline teeth is formed, the inner peripheral spline teeth extending in a direction of a rotation axis; an inner rotary member supported inside the outer rotary member so as to be coaxially rotatable relative to the outer rotary member, and having an outer peripheral surface in which a plurality of outer peripheral spline teeth is formed, the outer peripheral spline teeth extending in the direction of the rotation axis; a multiple disc clutch including a plurality of outer clutch plates engaged with the inner peripheral spline teeth so as to be axially movable, and a plurality of inner clutch plates engaged with the outer peripheral spline teeth so as to be axially movable, the outer clutch plates and the inner clutch plates being alternately arranged in the direction of the rotation axis; a pressing mechanism that presses the multiple disc clutch in the direction of the rotation axis; and a control portion that controls the pressing mechanism, wherein the control portion makes a determination as to whether the multiple disc clutch is in a first operating condition in which the multiple disc clutch is pressed with a relative rotation speed between the outer rotary member and the inner rotary member being equal to or higher than a predetermined value, or in a second operating condition in which the multiple disc clutch is pressed with the relative rotation speed being lower than the predetermined value, and the control portion controls the pressing mechanism based on a result of the determination. 2. The driving force transmission control apparatus according to claim 1 , wherein in a case where the result of the determination indicates the first operating condition, the control portion increases a pressing force for pressing the multiple disc clutch applied by the pressing mechanism, as compared to a case where the result of the determination indicates the second operating condition. 3. The driving force transmission control apparatus according to claim 1 , wherein the control portion controls the pressing mechanism by selectively referring to a first characteristic torque map and a second characteristic torque map according to whether the multiple disc clutch is in the first operating condition or the second operating condition, each of the first characteristic torque map and the second characteristic torque map defining a relationship between a command value of a driving force to be transmitted between the outer rotary member and the inner rotary member, and a control target value relating to a pressing force to be generated by the pressing mechanism, in the second characteristic torque map referred to by the control portion in a case where the multiple disc clutch is in the second operating condition, the control target value is set so that the pressing force is smaller than the pressing force in the first characteristic torque map referred to by the control portion in a case where the multiple disc clutch is in the first operating condition. 4. The driving force transmission control apparatus according to claim 2 , wherein the control portion controls the pressing mechanism by selectively referring to a first characteristic torque map and a second characteristic torque map according to whether the multiple disc clutch is in the first operating condition or the second operating condition, each of the first characteristic torque map and the second characteristic torque map defining a relationship between a command value of a driving force to be transmitted between the outer rotary member and the inner rotary member, and a control target value relating to a pressing force to be generated by the pressing mechanism, in the second characteristic torque map referred to by the control portion in a case where the multiple disc clutch is in the second operating condition, the control target value is set so that the pressing force is smaller than the pressing force in the first characteristic torque map referred to by the control portion in a case where the multiple disc clutch is in the first operating condition. 5. The driving force transmission control apparatus according to claim 3 , wherein the pressing mechanism includes an electric motor, and a conversion mechanism that converts a torque of the electric motor to a pressing force for pressing the multiple disc clutch. 6. The driving force transmission control apparatus according to claim 4 , wherein the pressing mechanism includes an electric motor, and a conversion mechanism that converts a torque of the electric motor to a pressing force for pressing the multiple disc clutch. 7. The driving force transmission control apparatus according to claim 5 , wherein in each of the first characteristic torque map and the second characteristic torque map, a torque to be generated by the electric motor is defined as the control target value. 8. The driving force transmission control apparatus according to claim 6 , wherein in each of the first characteristic torque map and the second characteristic torque map, a torque to be generated by the electric motor is defined as the control target value. 9. The driving force transmission control apparatus according to claim 5 , wherein in each of the first characteristic torque map and the second characteristic torque map, a rotation angle of the electric motor is defined as the control target value. 10. The driving force transmission control apparatus according to claim 6 , wherein in each of the first characteristic torque map and the second characteristic torque map, a rotation angle of the electric motor is defined as the control target value. 11. The driving force transmission control apparatus according to claim 3 , wherein the pressing mechanism includes a piston that presses the multiple disc clutch, and a hydraulic pump that supplies hydraulic oil into a hydraulic oil chamber for the piston. 12. The driving force transmission control apparatus according to claim 4 , wherein the pressing mechanism includes a piston that presses the multiple disc clutch, and a hydraulic pump that supplies hydraulic oil into a hydraulic oil chamber for the piston. 13. The driving force transmission control apparatus according to claim 11 , wherein in each of the first characteristic torque map and the second characteristic torque map, a hydraulic pressure to be generated by the hydraulic pump is defined as the control target value. 14. The driving force transmission control apparatus according to claim 12 , wherein in each of the first characteristic torque map and the second characteristic torque map, a hydraulic pressure to be generated by the hydraulic pump is defined as the control target value. 15. The driving force transmission control apparatus according to claim 11 , wherein the pressing mechanism further includes a pressure control valve that controls a pressure in the hydraulic oil chamber. 16. The driving force transmission control apparatus according to claim 12 , wherein the pressing mechanism further includes a pressure control valve that controls a pressure in the hydraulic oil chamber. 17. The driving force transmission control apparatus according to claim 15 , wherein in each of the first characteristic torque map and the second characteristic torque map, a control hydraulic pressure of the pressure control valve is defined as the control target value. 18. The driving force transmission control apparatus ac
Clutch slip, i.e. difference between input and output speeds · CPC title
Control by electric or electronic means, e.g. of fluid pressure · CPC title
using motors · CPC title
for adding torque to the rear wheels · CPC title
having a transfer gear · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.