This application claims priority to Chinese Patent Application No. 201711235657.6, filed on Nov. 30, 2017, which is hereby incorporated by reference in its entirety.
The present application relates to a low-pressure casting mold for an aluminum wheel, specifically to a water-cooled side mold and a water-cooled bottom mold for improving the shrinkage porosity at spoke roots.
In the production process of low-pressure casting of aluminum wheels, spoke roots are very obvious hot spots where the shrinkage porosity and shrinkage cavity defect easily occurs. Therefore, whether the mold design and the artificially added cooling are reasonable will greatly affect the shrinkage porosity at the spoke roots, especially the shrinkage porosity of the spoke roots produced fast is a non-negligible defect. However, the present common design cannot thoroughly and effectively solve the shrinkage porosity at the spoke roots, which brings great difficulty to speeding up the production.
Accordingly, the purpose of the present application is to provide a water-cooled mold for casting an aluminum alloy wheel, thereby overcoming the above problems.
In one aspect, the present application provides a water-cooled mold for casting an aluminum alloy wheel. The water-cooled mold assembly is composed of a top mold, a side mold and a bottom mold, and wherein a side mold insert is arranged between the side mold and the bottom mold, the inner surface of the side mold insert faces a cavity, and the upper surface and the lower surface of the side mold insert are matched with the side mold and the bottom mold respectively; the side mold insert is made of copper; the matching surface between the side mold insert and the side mold has a contact matching surface having a length of 10-15 mm at the edges of the inner ring and the outer ring of the matching surface respectively. And the side mold insert and the side mold form a gap which is 0.05-0.20 mm, and it is formed also between the contact matching surfaces.
In a preferred aspect of the present application, the matching surface between the side mold insert and the side mold is a contact matching surface having a length of 12 mm at the edges of the inner ring and the outer ring of wheel respectively, and a gap of 0.10 mm is formed between the side mold insert and the side mold.
In a preferred aspect of the present application, in the water-cooled mold, a cooling water channel of the bottom mold is located on the outer side of the bottom mold.
The advantage of the technical solution in the present application is that by the above measures, the cooling on spoke roots is effectively improved and the influence of the cooling water channel on spokes is limited.
The embodiments of the present invention will be described in detail below in combination with the accompanying drawings, in which:
In figures: 1—side mold insert, 2—bottom mold cooling water channel, A—upper surface of the side mold insert, B—lower surface of the side mold insert.
A water-cooled mold for casting an aluminum alloy wheel is composed of a top mold, a side mold and a bottom mold, and a side mold insert is arranged between the side mold and the bottom mold, the inner surface of the side mold insert faces a cavity, the side mold insert upper surface A is matched with the lower surface of the side mold, and the side mold insert lower surface B is matched with the upper surface of the bottom mold; the side mold insert is made of copper; the matching surface between the side mold insert and the side mold has a contact matching surface having a length L1 at the edges of the inner ring and the outer ring of the matching surface respectively. And a gap L2 is formed between the side mold insert and the side mold. The gap is formed also between the contact matching surfaces.
In this embodiment, the following implementation scheme is adopted for test, and the test settings are recorded in Table 1:
The above five groups of water-cooled molds are used to produce five groups of hubs in the internal research and development workshop of CITIC Dicastal Co., Ltd., 1200 hubs constituting each group. In addition, the test results of the five test groups are measured by hub disqualification caused by the shrinkage porosity defect at spoke roots. The results show that the test group 2 has the best hub production quality, and the unqualified hubs caused by the shrinkage porosity defect at the spoke roots include 12 cases in test group 2, 37 cases in test group 1, 42 cases in test group 3, 81 cases in control group 1 and 54 cases in control group 2.
Hence, the mold of test group 2 reduces the ratio of the unqualified hubs caused by the shrinkage porosity defect at the spoke roots.
The foregoing descriptions of specific exemplary embodiments of the present application have been presented for purposes of illustration and description. They are not intended to be exhaustive or to limit the invention to the precise forms disclosed, and obviously many modifications and variations are possible in light of the above teachings. The exemplary embodiments were chosen and described in order to explain certain principles of the invention and their practical application, to thereby enable others skilled in the art to make and utilize various exemplary embodiments of the present invention, as well as various alternatives and modifications thereof. It is intended that the scope of the invention be defined by the Claims appended hereto and their equivalents.
Number | Date | Country | Kind |
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2017112356576 | Nov 2017 | CN | national |