Claims
- 1. An articulated piston assembly for heavy duty diesel engine applications comprising:a piston body including a one piece upper crown part and a one piece lower crown part; an articulated piston skirt provided as a separate structure from said piston body; said upper crown part having a lower connecting portion formed with an inner annular rib and an outer annular rib spaced from said inner rib, said inner and outer ribs of said upper crown part extending axially to free ends thereof each presenting a joining surface of said upper crown part ribs; said lower crown part having an upper connecting portion from which a pair of pin boss portions depend having a space between said pin bosses to receive a connecting rod, said upper connecting portion having an inner annular rib and an outer annular rib spaced from said inner rib of said lower crown member, said inner and outer ribs of said lower crown part extending axially to free ends thereof each presenting a joining surface of said lower crown part ribs; said lower crown part having an inner gallery floor arranged above said space of said pin bosses and surrounded by said inner annular rib of said lower crown part; said inner and outer ribs of said upper crown part are joined to said inner and outer ribs of said lower crown part, respectively, across their respective joining surfaces by friction weld joints to define an inner and an outer oil gallery within the joined crown parts separated by said inner ribs of said joined crown parts, said inner rib of said lower crown part being formed with at least one fluid transfer port spaced axially from said joining surface thereof and extending between said outer oil gallery and said inner oil gallery floor including an opening establishing fluid communication between said inner gallery and said space between said pin bosses; said fluid transfer port of said inner rib extending upwardly at an angle from said outer gallery to said inner gallery; said outer gallery having a floor extending between said inner rib and said outer rib that is spaced axially from said joining surfaces of said inner and outer ribs of said lower crown part; and said floor of said outer gallery being spaced below said floor of said inner gallery.
- 2. The assembly of claim 1 wherein said fluid transfer port of said inner rib extends upwardly at an angle from said outer gallery to said inner gallery.
- 3. The assembly of claim 1 wherein said outer gallery has a floor extending between said inner rib and said outer rib that is spaced axially from said joining surfaces of said inner and outer ribs of said lower crown part.
- 4. The assembly of claim 1, wherein said upper crown part and said lower part are made of steel.
- 5. The assembly of claim 1 wherein said inner ribs of said upper and lower crown parts extend substantially parallel to a central longitudinal axis of said upper and said lower crown parts adjacent said joining surfaces.
- 6. The assembly of claim 5 wherein said outer ribs of said upper and lower crown parts extend substantially parallel to said inner and outer wall surfaces of said inner ribs.
- 7. The assembly of claim 1 wherein said fluid transfer port extends from a location above said floor of said outer gallery to said floor of said inner gallery at said upward angle.
- 8. The assembly of claim 1 wherein said floor of said outer gallery is spaced below said opening in said floor of said inner gallery.
- 9. A monobloc piston assembly for heavy duty diesel engine applications comprising:a one piece upper crown part and a one piece lower crown part; said upper crown part having a lower connecting portion formed with an inner annular rib and an outer annular rib spaced from said inner rib, said inner and outer ribs of said upper crown part extending axially to free ends thereof each presenting a joining surface of said upper crown part ribs; said lower crown part having an upper connecting portion from which a pair of pin boss portions depend having a space between said pin bosses to receive a connecting rod, said lower crown part including an integrated piston skirt formed as one piece with said pin bosses, said upper connecting portion having an inner annular rib and an outer annular rib spaced from said inner rib of said lower crown member, said inner and outer ribs of said lower crown part extending axially to free ends thereof each presenting a joining surface of said lower crown part ribs; said lower crown part having an inner gallery floor arranged above said space of said pin bosses and surrounded by said inner annular rib of said lower crown part; said inner and outer ribs of said upper crown part are joined to said inner and outer ribs of said lower crown part, respectively, across their respective joining surfaces by friction weld joints to define an inner and an outer oil gallery within the joined crown parts separated by said inner ribs of said joined crown parts, said inner rib of said lower crown part being formed with at least one fluid transfer port spaced axially from said joining surface thereof and extending between said outer oil gallery and said inner oil gallery to establish fluid communication therebetween, and said inner gallery floor including an opening establishing fluid communication between said inner gallery and said space between said pin bosses; said fluid transfer port of said inner rib extending upwardly at an angle from said outer gallery to said inner gallery; said outer gallery having a floor extending between said inner rib and said outer rib that is spaced axial from said joining surfaces of said inner and outer ribs of said lower crown part; and said floor of said outer gallery being spaced below said floor of said inner gallery.
- 10. The assembly of claim 9 wherein said fluid transfer port extends from a location above said floor of said outer gallery to said floor of said inner gallery at said upward angle.
- 11. The assembly of claim 9 wherein said floor of said outer gallery is spaced below said opening in said floor of said inner gallery.
- 12. The assembly of claim 9 wherein said upper crown part and said lower crown part are made of steel.
- 13. The assembly of claim 9 wherein said inner ribs of said upper and lower crown parts extend substantially parallel to a central longitudinal axis of said upper and said lower crown parts adjacent said joining surfaces.
- 14. The assembly of claim 13 wherein said outer ribs of said upper and said lower crown parts extend substantially parallel to said inner ribs.
- 15. The assembly of claim 9 wherein said floor of said outer gallery extends into said skirt.
- 16. The assembly of claim 15 wherein said pin bosses have pin bores with an upper apex and said floor of said outer gallery extends below said apex.
- 17. The assembly of claim 9 wherein said outer rib of said lower crown part is formed as an extension of said skirt such that said upper joining surface of said skirt is coupled to said upper crown part across said weld joint of said outer ribs.
- 18. The assembly of claim 9 wherein said floor of said inner gallery is dome-shaped.
- 19. A monobloc piston assembly for heavy duty diesel engine applications comprising:a one piece upper crown part and a one piece lower crown part; said upper crown part having a lower connecting portion formed with an inner annular rib and an outer annular rib spaced from said inner rib, said inner and outer ribs of said upper crown part extending axially to free ends thereof each presenting a joining surface of said upper crown part ribs; said lower crown part having an upper connecting portion from which a pair of pin boss portions depend having a space between said pin bosses to receive a connecting rod, said lower crown part including an integrated piston skirt formed as one piece with said pin bosses, said upper connecting portion having an inner annular rib and an outer annular rib spaced from said inner rib of said lower crown member, said inner and outer ribs of said lower crown part extending axially to free ends thereof each presenting a joining surface of said lower crown part ribs; said lower crown part having an inner gallery floor arranged above said space of said pin bosses and surrounded by said inner annular rib of said lower crown part; said inner and outer ribs of said upper crown part are joined to said inner and outer ribs of said lower crown part, respectively, across their respective joining surfaces by friction weld joints to define an inner and an outer oil gallery within the joined crown parts separated by said inner ribs of said joined crown parts, said inner rib of said lower crown part being formed with at least one fluid transfer port spaced axially from said joining surface thereof and extending between said outer oil gallery and said inner oil gallery to establish fluid communication therebetween, and said inner gallery floor including an opening establishing fluid communication between said inner gallery and said space between said pin bosses; said fluid transfer port of said inner rib extending upwardly at an angle from said outer gallery to said inner gallery; said outer gallery having a floor extending between said inner rib and said outer rib that is spaced axial from said joining surfaces of said inner and outer ribs of said lower crown part; and wherein said floor of said outer gallery extends into said skirt.
- 20. The assembly of claim 19 wherein said pin bosses have pin bores with an upper apex and said floor of said outer gallery extends below said apex.
- 21. The assembly of claim 19 wherein said outer rib of said lower crown part is formed as an extension of said skirt such that said upper joining surface of said skirt is coupled to said upper crown part across said weld joint of said outer ribs.
- 22. The assembly of claim 19 wherein said floor of said inner gallery is dome-shaped.
- 23. A monobloc piston assembly for heavy duty diesel engine applications comprising:a one piece upper crown part and a one piece lower crown part; said upper crown part having a lower connecting portion formed with an inner annular rib and an outer annular rib spaced from said inner rib, said inner and outer ribs of said upper crown part extending axially to free ends thereof each presenting a planar joining surface of said upper crown part ribs; said lower crown part having an upper connecting portion from which a pair of pin boss portions depend having a space between said pin bosses to receive a connecting rod, said lower crown part including an integrated piston skirt formed as one piece with said pin bosses, said upper connecting portion having an inner annular rib and an outer annular rib spaced from said inner rib of said lower crown member, said inner and outer ribs of said lower crown part extending axially to free ends thereof each presenting a planar joining surface of said lower crown part ribs; said lower crown part having an inner gallery floor arranged above said space of said pin bosses and surrounded by said inner annular rib of said lower crown part; wherein said inner and outer ribs of said upper crown part are joined to said inner and outer ribs of said lower crown part, respectively, across their respective joining surfaces by friction weld joints to define an inner and an outer oil gallery within the joined crown parts separated by said inner ribs of said joined crown parts, said inner rib of said lower crown part being formed with at least one fluid transfer port spaced axially from said joining surface thereof and extending between said outer oil gallery and said inner oil gallery to establish fluid communication therebetween, and said inner gallery floor including an opening establishing fluid communication between said inner gallery and said space between said pin bosses; and wherein said outer rib of said lower crown part is formed as an extension of said skirt such that said upper joining surface of said skirt is coupled to said upper crown part across said weld joint of said outer ribs.
- 24. A monobloc piston assembly for heavy duty diesel engine applications comprising:a one piece upper crown part and a one piece lower crown part; said upper crown part having a lower connecting portion formed with an inner annular rib and an outer annular rib spaced from said inner rib, said inner and outer ribs of said upper crown part extending axially to free ends thereof each presenting a planar joining surface of said upper crown part ribs; said lower crown part having an upper connecting portion from which a pair of pin boss portions depend having a space between said pin bosses to receive a connecting rod, said lower crown part including an integrated piston skirt formed as one piece with said pin bosses, said upper connecting portion having an inner annular rib and an outer annular rib spaced from said inner rib of said lower crown member, said inner and outer ribs of said lower crown part extending axially to free ends thereof each presenting a planar joining surface of said lower crown part ribs; said lower crown part having an inner gallery floor arranged above said space of said pin bosses and surrounded by said inner annular rib of said lower crown part; wherein said inner and outer ribs of said upper crown part are joined to said inner and outer ribs of said lower crown part, respectively, across their respective joining surfaces by friction weld joints to define an inner and an outer oil gallery within the joined crown parts separated by said inner ribs of said joined crown parts, said inner rib of said lower crown part being formed with at least one fluid transfer port spaced axially from said joining surface thereof and extending between said outer oil gallery and said inner oil gallery to establish fluid communication therebetween, and said inner gallery floor including an opening establishing fluid communication between said inner gallery and said space between said pin bosses; and wherein said floor of said inner gallery is dome-shaped.
Parent Case Info
This application claims the benefit of U.S. Provisional Application No. 60/158,510, filed Oct. 8, 1999.
US Referenced Citations (30)
Provisional Applications (1)
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Number |
Date |
Country |
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60/158510 |
Oct 1999 |
US |