PUMP ACTUATOR WITH INCREASED BODY STRENGTH
20210396197 ยท 2021-12-23
Assignee
Inventors
Cpc classification
F02M59/102
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M59/027
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M59/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M59/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A pump actuator for use between a cam and a pump is disclosed. The pump actuator comprises a pump actuator body having a structural enhancing feature. The pump actuator body comprises a pad defined between a plunger facing surface and an opposite roller facing surface. The plunger facing surface is recessed into the pump actuator body and offset from a radial end. The pump actuator body further includes a cylindrical wall defined between the radial end and the plunger facing surface. The structural enhancing feature is formed on the pad on the plunger facing surface. The structural enhancing feature increases load carrying capacity of the pump actuator body.
Claims
1. A pump actuator for use between a cam and a pump, the pump actuator comprising: a pump actuator body having a pad defined between a plunger facing surface and an opposite roller facing surface, the plunger facing surface being recessed into the pump actuator body and offset from a radial end, the pump actuator body further including a cylindrical wall defined between the radial end and the plunger facing surface; and a structural enhancing feature formed on the pad on the plunger facing surface, the structural enhancing feature increasing load carrying capacity of the pump actuator body.
2. The pump actuator of claim 1 wherein the structural enhancing feature comprises a rib.
3. The pump actuator of claim 2 wherein the pump actuator body is unitary.
4. The pump actuator of claim 3 wherein the rib extends the entire distance across the plunger facing surface and terminates at opposing areas of the cylindrical wall.
5. The pump actuator of claim 4 wherein a thickness of the pad at the rib is about a third thicker than a thickness of the pad absent the rib.
6. The pump actuator of claim 4 wherein a thickness of the rib increases a thickness of the pad by one third.
7. The pump actuator of claim 6 wherein the rib thickness is about 0.7 mm and wherein the thickness of the pad and rib collectively is about 3 mm.
8. The pump actuator of claim 2 wherein the structural enhancing feature further comprises a dimple.
9. The pump actuator of claim 8 wherein the dimple is formed into the rib.
10. The pump actuator of claim 9 wherein the dimple is centrally formed relative to the cylindrical wall.
11. The pump actuator of claim 10 wherein a thickness of the pad at the rib is about a third thicker than a thickness of the pad at the dimple.
12. The pump actuator of claim 1 wherein the structural enhancing feature comprises a dimple.
13. The pump actuator of claim 12 wherein a thickness of the pad is about a third thicker than a thickness of the pad at the dimple.
14. A pump actuator for use between a cam and a pump, the pump actuator comprising: a pump actuator body having a pad defined between a plunger facing surface and an opposite roller facing surface, the plunger facing surface being recessed into the pump actuator body and offset from a radial end, the pump actuator body further including a cylindrical wall defined between the radial end and the plunger facing surface; an axle supported in axle openings defined in the pump actuator body, the axle extending along a longitudinal direction; and a rib formed on the pad on the plunger facing surface, the rib extending in a parallel direction relative to the longitudinal direction, the rib increasing load carrying capacity of the pump actuator body.
15. The pump actuator of claim 14 wherein the pump actuator body is unitary.
16. The pump actuator of claim 15 wherein the rib extends the entire distance across the plunger facing surface and terminates at opposing areas of the cylindrical wall.
17. The pump actuator of claim 16 wherein a thickness of the pad at the rib is about a third thicker than a thickness of the pad absent the rib.
18. The pump actuator of claim 16 wherein a thickness of the rib increases a thickness of the pad by one third.
19. The pump actuator of claim 18 wherein the rib thickness is about 0.7 mm and wherein the thickness of the pad and rib collectively is about 3 mm.
20. A pump actuator for use between a cam and a pump, the pump actuator comprising: a unitary pump actuator body having a pad defined between a plunger facing surface and an opposite roller facing surface, the plunger facing surface being recessed into the pump actuator body and offset from a radial end, the pump actuator body further including a cylindrical wall defined between the radial end and the plunger facing surface; an axle supported in axle openings defined in the pump actuator body, the axle extending along a longitudinal direction; a rib formed on the pad on the plunger facing surface, the rib extending in a parallel direction relative to the longitudinal direction, the rib increasing load carrying capacity of the pump actuator body; and a dimple formed on the pad at the rib.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The present disclosure will become more fully understood from the detailed description and the accompanying drawings, wherein:
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DETAILED DESCRIPTION
[0028] A GDI Pump is used to supply pressurized fuel either in an intake manifold or in a common rail of fuel injectors of an engine. A GDI pump can be operated using a cam shaft lobe. For a GDI pump, roller tappets can be used to reduce friction between the plunger and the cam shaft lobe. Roller tappets need to sustain high pressure forces of the pump. With increasing pressure requirements, pressure forces increase and it is necessary that the roller tapped sustain these forces. The present teachings incorporate the addition of ribs on the plunger side of the tappet to increase strength in a cost effective manner.
[0029] With initial reference to
[0030] An exploded view of the exemplary pump actuator 10 shown in
[0031] The prior art pump actuator 10 is shown in
[0032] As will become appreciated from the following discussion, the instant application provides pump actuators that have increased load carrying capacity (from 20 MPa to of 35 MPa). The examples according to the present disclosure each comprise a pad that incorporates a structural enhancing feature thereon. As will be explained herein, the structural enhancing feature can include a rib 50A (
[0033] A pump actuator 10A constructed in accordance to one example of the present disclosure is shown in
[0034] A pump actuator 10B constructed in accordance to one example of the present disclosure is shown in
[0035] A pump actuator 10C constructed in accordance to one example of the present disclosure is shown in
[0036] The foregoing description of the examples has been provided for purposes of illustration and description. It is not intended to be exhaustive or to limit the disclosure. Individual elements or features of a particular example are generally not limited to that particular example, but, where applicable, are interchangeable and can be used in a selected example, even if not specifically shown or described. The same may also be varied in many ways. Such variations are not to be regarded as a departure from the disclosure, and all such modifications are intended to be included within the scope of the disclosure.