Stamped pump actuator and method of assembling same
A pump actuator for use between a cam and a pump includes an outer body, an inner body, an axle and a bearing. The outer body has an outer body inner surface. The inner body is received by the outer body. The inner body has an inner body outer surface. The axle is supported by the inner body. The bearing is supported on the axle. The inner body includes at least one stamped feature protruding outwardly from the inner body outer surface. The at least one stamped feature is configured to form an interference fit with the outer body inner surface.
1 . A pump actuator for use between a cam and a pump, the pump actuator comprising:
an outer body having an outer body inner surface;
an inner body received by the outer body, the inner body having an inner body outer surface;
an axle supported by the inner body; and
a bearing supported on the axle;
wherein the inner body of the pump actuator includes a plurality of stamped features configured to simultaneously (1) form an interference fit between outer and inner bodies of the pump actuator and (2) align the outer and inner bodies of the pump actuator with respect to each other, wherein the plurality of stamped features protrudes outwardly from the inner body outer surface.
2 . The pump actuator of claim 1 wherein at least one stamped feature comprises at least one wedge-shaped geometry having a ramp surface thereon.
3 . The pump actuator of claim 1 wherein at least one stamped feature comprises at least one trapezoidal-shaped geometry having a ramp surface thereon.
4 . The pump actuator of claim 1 wherein at least one stamped feature comprises at least one dimple-shaped geometry having a ramp surface thereon.
5 . The pump actuator of claim 1 wherein the plurality of stamped features are formed around the inner body.
6 . The pump actuator of claim 5 wherein the plurality of stamped features and the outer body inner surface undergo localized elastic deformation.
7 . The pump actuator of claim 1 wherein the inner body and the outer body are press-fit together.
8 . The pump actuator of claim 1 wherein the inner body further includes an angled support web.
9 . The pump actuator of claim 1 wherein the plurality of stamped features comprises:
a first pair of stamped features having first and second opposing stamped features; and
a second pair of stamped features having third and fourth opposing stamped features.
10 . A pump actuator for use between a cam and a pump, the pump actuator comprising:
an outer body having an outer body inner surface;
an inner body received by the outer body, the inner body having an inner body outer surface;
an axle supported by the inner body; and
a bearing supported on the axle;
wherein the inner body of the pump actuator includes a plurality of opposing stamped features configured to simultaneously (1) form an interference fit between outer and inner bodies of the pump actuator and (2) align the outer and inner bodies of the pump actuator with respect to each other, wherein the plurality of opposing stamped features protrudes outwardly from the inner body outer surface.
11 . The pump actuator of claim 10 wherein the plurality of opposing stamped features comprises:
a first pair of stamped features having first and second opposing stamped features; and
a second pair of stamped features having third and fourth opposing stamped features.
12 . The pump actuator of claim 11 wherein each of the plurality of opposing stamped features comprises a wedge-shaped geometry having a ramp surface thereon.
13 . The pump actuator of claim 11 wherein each of the plurality of opposing stamped features comprises a trapezoidal-shaped geometry having a ramp surface thereon.
14 . The pump actuator of claim 11 wherein each of the plurality of opposing stamped features comprises a dimple-shaped geometry having a ramp surface thereon.
15 . The pump actuator of claim 10 wherein the inner body and the outer body are press-fit together.
16 . A method of assembling a pump actuator for use between a cam and a pump, the method comprising:
providing an outer body having an outer body inner surface;
providing an inner body having an inner body outer surface;
deflecting portions of the inner body outwardly creating a plurality of stamped features, the plurality of stamped features configured to simultaneously (1) form an interference fit between outer and inner bodies of the pump actuator and (2) align the outer and inner bodies of the pump actuator with respect to each other, wherein the plurality of stamped features protrudes outwardly from the inner body outer surface; and
slidably advancing one of the outer body and inner body relative to other of the outer body and inner body such that the plurality of stamped features slidably negotiate along the outer body inner surface creating the interference fit between the outer body and the inner body.
17 . The method of claim 16 wherein deflecting portions of the inner body further comprises:
creating one of wedge-shaped, trapezoidal-shaped, and dimple-shaped geometries having ramp surfaces thereon, wherein the ramp surfaces slidably advance along the outer body inner surface during the slidably advancing.
18 . The method of claim 17 wherein the slidably advancing further comprises simultaneously aligning the outer and inner bodies relative to each other.
19 . The method of claim 17 wherein the slidably advancing further comprises:
locating the outer body around an upper surface of the inner body; and
advancing the outer body downwardly such that a bottom surface of the outer body rides over the ramp surfaces.
20 . The method of claim 17 wherein the slidably advancing further comprises:
locating the outer body around an upper surface of the inner body; and
advancing the inner body upwardly such that a bottom surface of the outer body rides over the ramp surfaces.