Steering-wheel core and casting method therefor
US-2018361467-A1 · Dec 20, 2018 · US
US2016368043A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016368043-A1 |
| Application number | US-201615184052-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 16, 2016 |
| Priority date | Jun 16, 2015 |
| Publication date | Dec 22, 2016 |
| Grant date | — |
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The present invention provides an integrated mould for casting of wheels. The integrated mould has an upper mould, integrated side moulds and a lower mould, wherein the number of the integrated side moulds is four in the circumferential direction of the wheel mould. Thermal deformation circular arc compensation surfaces are formed by processing on an upper and lower one-fourth circular arc part of each integrated side mould, and compensation surfaces are formed by processing on key parts of 45-degree matching surfaces of the adjacent integrated side moulds. The integrated side moulds can effectively solve the problems such as imprecise matching of the matching surfaces, parting-line flashes of the matching surfaces and adhesion of aluminum caused by thermal deformation of the integrated side moulds.
Opening claim text (preview).
1 . An integrated mould for low-pressure casting of wheels, comprising: an upper mould, integrated air-cooled side moulds and a lower mould, and further comprising: thermal deformation circular arc compensation surfaces with endpoints of (B), (D), (G) and (I), which pass through points (K) and (L) respectively, are formed by processing on upper and lower one-fourth circular arc matching surfaces of the integrated side moulds, that is on the circular arc surfaces of the integrated side moulds, which are matched with side walls of the upper mould and the lower mould; the two points are located on the thermal deformation circular arc compensation surfaces, the distance from the point (K) to an original circular arc point (C) is from 0.2 mm to 0.5 mm, and the distance from the point (L) to an original circular arc point (H) is from 0.2 mm to 0.5 mm; the points (B) and (D) are located on an original circular arc, the points (G) and (I) are located on an original circular arc, and they are 60 to 80 mm apart from corresponding 45-degree matching surfaces respectively; compensation surfaces are formed by processing on the 45-degree matching surfaces of the adjacent integrated side moulds, such that when the 45-degree surfaces of the adjacent integrated side moulds are matched in a cold state, V-shaped gaps are formed on the 45-degree matching surfaces of the side moulds, and the clearance of the gaps on the circumference of the inner sides of the side moulds is 0.2 mm to 0.4 mm; and the 45-degree surfaces of the integrated side moulds are the matching surfaces of the four side moulds. 2 . The mould according to claim 1 , wherein the distance from the point (K) to the point (C) is 0.3 mm, and the distance from the point (L) to the point (H) is 0.2 mm. 3 . The mould according to claim 1 , wherein the clearance of the gaps on the circumference of the inner sides of the side moulds is 0.3 mm in the matching state of the 45-degree matching surfaces of the integrated side moulds. 4 . The mould according to claim 1 , wherein the range of the V-shaped gaps of the 45-degree matching surfaces of the integrated side moulds is set between points (M) and (N), the point (M) is a cusp of a 15-degree matching surface of the side moulds with the lower mould, and the point (N) is a point of tangency of a 9-degree slope of the inner rim of a hub with the circular arc. 5 . The application of the mould according to claim 1 , wherein the mould is used in the low-pressure casting of aluminum alloy wheels.
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