{"id":3605,"date":"2023-11-15T10:33:26","date_gmt":"2023-11-15T09:33:26","guid":{"rendered":"https:\/\/mnwell.com\/?p=3605"},"modified":"2023-11-15T10:35:18","modified_gmt":"2023-11-15T09:35:18","slug":"research-on-shrinkage-cavities-in-aluminum-die-castings","status":"publish","type":"post","link":"https:\/\/mnwell.com\/tr\/research-on-shrinkage-cavities-in-aluminum-die-castings\/","title":{"rendered":"Research on shrinkage cavities in aluminum die castings"},"content":{"rendered":"
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Research on shrinkage cavities in aluminum die castings and strategies to reduce the scrap rate from 5% to 0.2% was conducted. Shrinkage cavities, common internal defects in aluminum alloy die-casting parts, often occur in areas with large wall thickness or hot spots. While generally acceptable if they don’t impact product performance, certain critical parts, such as cooling water or lubricating oil passages in automobile engine cylinder blocks, must be free of shrinkage holes.<\/p>\n\n\n\n

Shrinkage cavities are common internal defects in aluminum alloy die-casting parts. They often appear in locations where the wall thickness of the product is relatively large or where hot spots are prone to form. Generally speaking, as long as shrinkage cavities do not affect the performance of the product, they will be judged as qualified. However, for some important parts, such as the cooling water passage holes or lubricating oil passage holes of the automobile engine cylinder block, the occurrence of shrinkage holes is not allowed to be judged as qualified.<\/p>\n\n\n\n

An aluminum alloy engine crankcase from a certain company is cast using a B\u00fchler 28 000 kN cold chamber die-casting machine and is made of ADC12 alloy. The mass of the casting blank is 6.3 kg. During the X-ray inspection in the post-process, it was found that shrinkage holes appeared in the oil passage of the second crankshaft bearing hole, which was about 8 mm away from the oil passage, and there was a large risk of oil leakage. According to statistics, the scrap rate of shrinkage cavities at this location in 2017 was 5%. After a series of explorations, the scrap rate was successfully reduced to 0.2%.<\/p>\n\n\n\n

Mechanism and morphology of shrinkage cavities in aluminum alloy die castings<\/h2>\n\n\n\n

Shrinkage cavity formation mechanism<\/h3>\n\n\n\n

There are many reasons for shrinkage cavities in aluminum alloy die castings<\/a>. Tracing back to its origin, it is mainly caused by insufficient feeding of the aluminum liquid during the transition from the liquid phase to the solid phase of the aluminum alloy. Common causes of shrinkage include:<\/p>\n\n\n\n