Lug bar, track shoe, and method for producing lug bar
US-2018127036-A1 · May 10, 2018 · US
US10759481B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10759481-B2 |
| Application number | US-201415500644-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 18, 2014 |
| Priority date | Nov 18, 2014 |
| Publication date | Sep 1, 2020 |
| Grant date | Sep 1, 2020 |
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A sprocket wheel has an annular shape. The sprocket wheel has a plurality of projections formed on an outer peripheral surface for transmitting a driving force to a track. The sprocket wheel includes a base made of a first metal, and an overlay including a second metal that covers the base so as to constitute at least a part of the outer peripheral surface. The overlay is formed with a metallic structure that is continuous in the circumferential direction so as to connect between adjacent ones of the projections.
Opening claim text (preview).
The invention claimed is: 1. A sprocket wheel having an annular shape and having a plurality of projections formed on an outer peripheral surface of the sprocket wheel for transmitting a driving force to a track, the sprocket wheel comprising: a base made of a first metal; and an overlay covering the base so as to constitute at least a part of the outer peripheral surface, the overlay being formed with a metallic structure continuous in a circumferential direction so as to connect between adjacent projections of the plurality of projections, and the overlay having a bottom surface contacting the base, the bottom surface forming protrusions extending into the base, the overlay including: a matrix made of a second metal; and a plurality of hard particles dispersed in the matrix, only one of the plurality of hard particles being only partly located within each of a corresponding one of the protrusions formed in the bottom surface, the plurality of hard particles having a hardness greater than a hardness of the second metal of the matrix. 2. The sprocket wheel according to claim 1 , wherein the overlay is formed with the metallic structure that is also continuous in a direction intersecting the circumferential direction. 3. The sprocket wheel according to claim 1 , wherein the plurality of hard particles located in an overlay surface region are arranged side by side while being embedded in the overlay, the overlay surface region being a region within an average particle diameter of the plurality of hard particles from a surface of the overlay. 4. The sprocket wheel according to claim 3 , wherein the plurality of hard particles located in the overlay surface region are arranged in contact with the surface of the overlay. 5. The sprocket wheel according to claim 3 , wherein among the plurality of hard particles located in the overlay surface region, any hard particle of the plurality of hard particles having a region exposed from the surface of the overlay has an acute central angle corresponding to the region exposed from the surface of the overlay. 6. The sprocket wheel according to claim 1 , wherein in a region including an interface between the overlay and the base, the overlay includes the protrusions that protrude toward the base. 7. The sprocket wheel according to claim 6 , wherein the protrusions each have at least a part of one of the plurality of hard particles received therein. 8. A method for producing a sprocket wheel having an annular shape and having a plurality of projections formed on an outer peripheral surface of the sprocket wheel for transmitting a driving force to a track, the method comprising steps of: preparing a base member made of a first metal; forming an overlay including a second metal in contact with a surface of the base member to cover at least a part of the surface, the overlay having a bottom surface contacting the base member; and hot forging the base member after forming the overlay, such that the overlay constitutes the outer peripheral surface of the sprocket wheel and the plurality of projections are formed on the outer peripheral surface of the sprocket wheel to project radially outward, and the bottom surface of the overlay forms protrusions extending into the base member, the overlay including a plurality of hard particles dispersed in a matrix, only one of the plurality of hard particles being only partly located within each of a corresponding one of the protrusions formed in the bottom surface. 9. The sprocket wheel producing method according to claim 8 , wherein the overlay includes a matrix made of the second metal and the plurality of hard particles dispersed in the matrix, the plurality of hard particles having a hardness greater than a hardness of the matrix. 10. The sprocket wheel according to claim 1 , wherein a geometric center of each respective hard particle of the plurality of hard particles is located outside of the respective protrusion and a layer of the matrix is located within each of the projections and located between the hard particle and the base. 11. The sprocket wheel producing method according to claim 8 , wherein a geometric center of each respective hard particle of the plurality of hard particles is located outside of the respective protrusion and a layer of the matrix is located within each of the projections and located between the hard particle and the base.
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