Axially driving actuator
An actuator for externally manipulating a clutch within a machine rotatable about an axis is provided with a driving unit including a plurality of magnetic coils arranged around the axis, each of the coils being arranged to generate a magnetic flux in a direction parallel to the axis; an armature disposed coaxially with the axis and opposed axially to the driving unit, the armature being movable axially; and a plunger coupled with the armature to transmit axial motion to the clutch.
1. An actuator for externally manipulating a clutch within a differential rotatable about an axis, comprising:
a driving unit including a plurality of magnetic coils arranged around the axis, each of the coils being arranged to generate a magnetic flux in a direction parallel to the axis;
an armature disposed coaxially with the axis and opposed axially to the driving unit, the armature being movable axially and attracted toward the driving unit;
a leg axially projecting from the clutch and passing through a through-hole of a casing of the differential with the leg exposed through the through-hole to an exterior of the casing; and
a plunger coupled with the armature and the leg to transmit axial motion to the clutch, wherein the clutch includes a clutch member that has dog teeth and the leg is formed as part of a unitary body with the clutch member.
2. The actuator of claim 1 , wherein the plunger includes a cylindrical portion symmetrical about the axis and the cylindrical portion slidably fits in the differential.
3. The actuator of claim 1 , wherein a cable is led out of at least one of the magnetic coils independently of the rest of the magnetic coils.
4. The actuator of claim 1 , further comprising:
a spring biasing the armature away from the driving unit.
5. The actuator of claim 1 , wherein the driving unit is prevented from rotating about the axis.
6. The actuator of claim 1 , wherein the plunger is rotatably coupled with the armature to rotate along with the clutch about the axis.
7. The actuator of claim 1 , further comprising:
a sensor configured to detect whether the armature is apart or close, the sensor being disposed between any two of the magnetic coils or in place of any one of the magnetic coils.
8. An actuator for externally manipulating a clutch within a differential rotatable about an axis, comprising:
a driving unit including a plurality of magnetic coils arranged around the axis, each of the coils being arranged to generate a magnetic flux in a direction parallel to the axis;
an armature disposed coaxially with the axis and opposed axially to the driving unit, the armature being movable axially;
a leg axially projecting from the clutch and passing through a through-hole of a casing of the differential with the leg exposed through the through-hole to an exterior of the casing; and
a plunger coupled with the armature and the leg to transmit axial motion to the clutch, wherein the clutch includes a clutch member that has dog teeth and the leg is formed as part of a unitary body with the clutch member, wherein the plunger includes a cylindrical portion symmetrical about the axis and the cylindrical portion slidably fits in the differential.
9. An actuator for externally manipulating a clutch within a differential rotatable about an axis, comprising:
a driving unit including a plurality of magnetic coils arranged around the axis, each of the coils being arranged to generate a magnetic flux in a direction parallel to the axis;
an armature disposed coaxially with the axis and opposed axially to the driving unit, the armature being movable axially;
a leg axially projecting from the clutch and passing through a through-hole of a casing of the differential with the leg exposed through the through-hole to an exterior of the casing;
a plunger coupled with the armature and the leg to transmit axial motion to the clutch, wherein the clutch includes a clutch member that has dog teeth and the leg is formed as part of a unitary body with the clutch member; and
a spring biasing the armature away from the driving unit.