Phosphating or anodizing for improved bonding of thermal spray coating on engine cylinder bores
US-2016376690-A1 · Dec 29, 2016 · US
US10260454B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10260454-B2 |
| Application number | US-201715443317-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 27, 2017 |
| Priority date | Mar 30, 2016 |
| Publication date | Apr 16, 2019 |
| Grant date | Apr 16, 2019 |
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A first angle portion where part of a bearing cap side wall portion is cut out and a second angle portion where part of a bearing cap bottom surface portion is cut out are formed in a region (an angle region of a bearing cap) including a part where respective extension portions of the bearing cap side wall portion and the bearing cap bottom surface portion intersect each other, and a gap is provided between the crankcase side wall portion of a journal wall and the first angle portion and between a crankcase bottom surface portion and the second angle portion.
Opening claim text (preview).
The invention claimed is: 1. A crankshaft support structure comprising a bearing cap press fitted and fastened to a crankcase, with a crankshaft rotatably supported between the crankcase and the bearing cap, wherein the bearing cap includes a bearing cap side wall portion such that a press-fit load is exerted between the crankcase and the bearing cap side wall portion when the bearing cap is press fitted to the crankcase, and a bearing cap bottom surface portion making contact with the crankcase when the bearing cap is press fitted to the crankcase, a first angle portion where part of the bearing cap side wall portion is cut out and a second angle portion where part of the bearing cap bottom surface portion is cut out are formed in a region including a part where respective extension portions of the bearing cap side wall portion and the bearing cap bottom surface portion intersect each other, the crankcase includes a crankcase side wall portion making contact with the bearing cap side wall portion, and a crankcase bottom surface portion making contact with the bearing cap bottom surface portion, with a gap provided between the crankcase side wall portion and the first angle portion and between the crankcase bottom surface portion and the second angle portion, the crankcase is formed with a cutout portion having an arcuate portion cut out in an arcuate shape to secure the gap from the first angle portion to the second angle portion, the cutout portion formed in a part where respective extension portions of the crankcase side wall portion and the crankcase bottom surface portion intersect each other, a portion of the cutout portion which interconnects the crankcase side wall portion and one end of the arcuate portion is a first rectilinear portion which is interconnected to a position that is spaced from the first angle portion and which extends linearly to a side separated from the first angle portion in a first fixed inclination angle, a portion of the cutout portion which interconnects the crankcase bottom surface portion and another end of the arcuate portion is a second rectilinear portion which is interconnected to a position that is spaced from the second angle portion and which extends linearly to a side separated from the second angle portion in a second fixed inclination angle, and the one end of the arcuate portion and the crankcase side wall portion are separated by the first angle portion and the another end of the arcuate portion and the crankcase bottom surface portion are separated by the second angle portion. 2. The crankshaft support structure according to claim 1 , wherein the first rectilinear portion is connected to the crankcase side wall portion at a position spaced from the first angle portion more than a circular arc obtained by extending the arcuate portion. 3. The crankshaft support structure according to claim 1 , wherein the second rectilinear portion is connected to the crankcase bottom surface portion at a position spaced from the second angle portion more than a circular arc obtained by extending the arcuate portion. 4. The crankshaft support structure according to claim 1 , wherein the bearing cap has a bolt hole an axial direction of which is along a direction in which the bearing cap is press fitted to the crankcase. 5. The crankshaft support structure according to claim 4 , wherein the bolt hole is coaxial with a through-hole portion through which a fastening bolt for fastening the bearing cap and the crankcase to each other is passed, and the bolt hole is greater in diameter than the fastening bolt. 6. The crankshaft support structure according to claim 1 , wherein the rectilinear portion is connected to the crankcase side wall portion at a position spaced from the first angle portion more than a circular arc obtained by extending the arcuate portion. 7. The crankshaft support structure according to claim 2 , wherein the bearing cap has a bolt hole an axial direction of which is along a direction in which the bearing cap is press fitted to the crankcase. 8. The crankshaft support structure according to claim 3 , wherein the bearing cap has a bolt hole an axial direction of which is along a direction in which the bearing cap is press fitted to the crankcase. 9. The crankshaft support structure according to claim 6 , wherein the bearing cap has a bolt hole an axial direction of which is along a direction in which the bearing cap is press fitted to the crankcase. 10. The crankshaft support structure according to claim 7 , wherein the bolt hole is coaxial with a through-hole portion through which a fastening bolt for fastening the bearing cap and the crankcase to each other is passed, and the bolt hole is greater in diameter than the fastening bolt. 11. The crankshaft support structure according to claim 8 , wherein the bolt hole is coaxial with a through-hole portion through which a fastening bolt for fastening the bearing cap and the crankcase to each other is passed, and the bolt hole is greater in diameter than the fastening bolt. 12. The crankshaft support structure according to claim 9 , wherein the bolt hole is coaxial with a through-hole portion through which a fastening bolt for fastening the bearing cap and the crankcase to each other is passed, and the bolt hole is greater in diameter than the fastening bolt.
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