Maintaining EGR flow in a uniflow-scavenged, two-stroke cycle, opposed-piston engine
US-9926867-B1 · Mar 27, 2018 · US
US11629751B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11629751-B2 |
| Application number | US-201916438949-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 12, 2019 |
| Priority date | Jun 12, 2019 |
| Publication date | Apr 18, 2023 |
| Grant date | Apr 18, 2023 |
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A connecting rod assembly has a connecting rod with a large end and a small end, a piston wrist pin, and fasteners to connect the connecting rod to the piston wrist pin and optionally one or more shims in between the connecting rod and piston wrist pin. A notch on the wrist pin allows for the seating of a flat surface on the small end of the connecting rod in the connecting rod assembly. Side walls on both the notch and the small end of the connecting rod limit twist. The connecting rod assembly allows for the adjustment of piston location in a cylinder while limiting connecting rod twist.
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What is claimed is: 1. A connecting rod assembly comprising: a connecting rod with a large end and a small end with a planar top; a piston wrist pin with an oil reservoir; an oil channel in the connecting rod to conduct a flow of oil from the large end to the piston wrist pin; and, fasteners to connect the connecting rod to the piston wrist pin; wherein, the piston wrist pin comprises a notch and the small end planar top comprises a flat seating surface dimensioned to fit into the notch; wherein the piston wrist pin comprises an oil opening in the notch that aligns with the oil channel and allows oil to pass into the oil reservoir ; wherein the piston wrist pin comprises openings in the notch that receive the fasteners; and, wherein the small end planar top comprises a dowel pin and the notch comprises an orientation opening to receive the dowel pin. 2. The connecting rod assembly of claim 1 , wherein the fit between the notch and the small end is a transition fit. 3. The connecting rod assembly of claim 1 , wherein the fit between the notch and the small end limits twist in the assembly to 0.2° or less. 4. The connecting rod assembly of claim 1 , wherein the notch comprises a first pair of flat side surfaces and the small end comprises a second pair of flat side surfaces, the first pair of flat side surfaces dimensioned to fit with the second pair of flat side surfaces to limit twist in the connecting rod assembly when the small end is seated in the notch. 5. The connecting rod assembly of claim 4 , wherein the fit between the notch and the small end is a transition fit and further wherein a deviation in the first pair of flat side surfaces from perfectly perpendicular with respect to a flat floor of the notch ranges from 0° to 0.10°. 6. The connecting rod assembly of claim 5 , wherein the fit between the notch and the small end limits twist in the assembly to 0.2° or less. 7. The connecting rod assembly of claim 1 , further comprising at least one shim between the notch and the flat seating surface of the small end. 8. The connecting rod assembly of claim 7 , wherein the shim has a thickness of 0.5 mm. 9. An opposed-piston engine comprising at least one cylinder with longitudinally-separated exhaust and intake ports, a pair of pistons disposed in opposition to one another in a bore of the cylinder, and two crankshafts disposed in a generally parallel relationship and positioned outside of respective intake and exhaust ends of the at least one cylinder, each piston connected to one of the two crankshafts by a connecting rod assembly, the connecting rod assembly comprising: a connecting rod with a large end and a small end with a planar top; a piston wrist pin with an oil reservoir; an oil channel in the connecting rod to conduct a flow of oil from the large end to the piston wrist pin; and, fasteners to connect the connecting rod to the piston wrist pin, wherein the piston wrist pin comprises a notch and the small end planar top comprises a flat seating surface dimensioned to fit into the wrist pin notch; wherein the piston wrist pin comprises an oil opening in the notch that aligns with the oil channel and allows oil to pass into the oil reservoir; wherein the piston wrist pin comprises openings in the notch that receive the fasteners; and, wherein the small end planar top comprises a dowel pin and the notch comprises an orientation opening to receive the dowel pin. 10. The opposed-piston engine of claim 9 , wherein the fit between the notch and the small end in the connecting rod assembly is a transition fit. 11. The opposed-piston engine of claim 9 , wherein the fit between the notch and the small end limits twist in the connecting rod assembly to 0.2° or less. 12. The opposed-piston engine of claim 9 , wherein the notch comprises a first pair of flat side surfaces and the small end comprises a second pair of flat side surfaces, the first pair of flat side surfaces dimensioned to fit with the second pair of flat side surfaces to limit twist in the connecting rod assembly when the small end is seated in the notch in the connecting rod assembly . 13. The opposed-piston engine of claim 12 , wherein the fit between the notch and the small end in the connecting rod assembly is a transition fit and further wherein a deviation in the first pair of flat side surfaces from perfectly perpendicular with respect to a flat floor of the notch ranges from 0° to 0.10°. 14. The opposed-piston engine of claim 13 , wherein the fit between the notch and the small end limits twist in the connecting rod assembly to 0.2° or less. 15. The opposed-piston engine of claim 10 , further comprising at least one shim between the notch and the flat seating surface of the small end. 16. The opposed-piston engine of claim 15 , wherein the shim in the connecting rod assembly has a thickness of 0.5 mm. 17. A connecting rod assembly, comprising: a connecting rod with a large end and a small end; a wrist pin with an oil reservoir; an oil channel in the connecting rod to conduct a flow of oil from the large end to the wrist pin; threaded fasteners connecting the wrist pin to the small end; and a transition fit acting between the wrist pin and the small end to resist twist of the connecting rod along its length; wherein the wrist pin comprises an oil opening that aligns with the oil channel and allows oil to pass into the oil reservoir; wherein the piston wrist pin comprises openings within the transition fit that receive the threaded fasteners; and, wherein the small end comprises a dowel pin and the wrist pin comprises an orientation opening within the transition fit to receive the dowel pin. 18. The connecting rod assembly of claim 17 , wherein the wrist pin comprises a notch comprising a first flat seating surface, flat sides, and securing openings that receive the threaded fasteners; and the small end of the connecting rod comprises a second seating surface and flat side surfaces; further wherein the transition fit is limited by dimensions of the wrist pin notch and the small end of the connecting rod. 19. The connecting rod assembly of claim 18 , wherein the fit between the wrist pin notch and the small end limits twist in the connecting rod assembly to 0.2° or less. 20. The connecting rod assembly of claim 19 , wherein the transition fit limits twist in the connecting rod assembly to about 0.1° or less. 21. The connecting rod assembly of claim 17 , further comprising at least one shim between a wristpin notch and a flat seating surface of the small end of the connecting rod.
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with gudgeon-pin; Gudgeon-pins · CPC title
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the pistons having equal strokes · CPC title
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