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Forging Condition for Removing Porosities in the Hybrid Casting and Forging Process of 7075 Aluminum Alloy Casting

机译:7075铝合金铸造混合铸造的消除气孔的锻造条件。

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摘要

In this study, the ranges of compression ratio for the successful implementation of hybrid casting and forging process for 7075 aluminum alloy are investigated. Hybrid casting and forging process combines the advantages of casting and forging processes. In this process, a near net shape preform is first cast and the casting is subsequently forged. The casting defects such as shrinkage porosity can be eliminated by forging and the number of forging steps can also be reduced. Therefore, the production cost can be reduced. In this study, castings with stepwise cross section are die cast with 7075 aluminum alloy. The stepwise cross section has three different thicknesses, which are 15 mm, 10 mm and 5 mm. The aim of this study is to obtain how high compression ratio is required to eliminate the porosities inside the preform castings with various thicknesses, where porosity contents are different, and what are the maximum compression ratios that can be tolerated before these preform castings fail. These data are crucial to the design of the preform casting for the hybrid casting and forging process. The experimental results show that for 7075 aluminum alloy, it requires a compression ratio of 30 percent to eliminate all the porosities in the casting section of 5 mm in thickness and a maximum compression ratio of 44 percent can be tolerated. For the casting section of 10 mm in thickness, it requires 41 percent of compression ratio to eliminate all the porosities and a maximum compression ratio of 64 percent can be tolerated. For the casting section of 15 mm in thickness, it requires 52 percent of compression ratio to eliminate all the porosities and a maximum compression ratio of 64 percent can be tolerated.
机译:在这项研究中,研究了成功实施7075铝合金混合铸造和锻造工艺的压缩比范围。混合铸造和锻造工艺结合了铸造和锻造工艺的优势。在此过程中,首先浇铸接近最终形状的预成型坯,然后锻造铸件。通过锻造可以消除诸如收缩孔隙率的铸造缺陷,并且还可以减少锻造步骤的数量。因此,可以降低生产成本。在本研究中,具有7075铝合金的压铸件的横截面为阶梯形。阶梯形横截面具有三种不同的厚度,分别是15毫米,10毫米和5毫米。这项研究的目的是获得需要多高的压缩比才能消除具有不同厚度的预成型铸件内部的孔隙,孔隙率不同的情况以及在这些预成型铸件失效之前可以承受的最大压缩比。这些数据对于用于混合铸造和锻造工艺的预成型坯铸造的设计至关重要。实验结果表明,对于7075铝合金,需要30%的压缩比才能消除厚度为5 mm的铸件中的所有孔隙,并且最大容许压缩比为44%。对于厚度为10 mm的铸件,需要41%的压缩比才能消除所有孔隙,并且最大容许64%的压缩比。对于厚度为15 mm的铸件,需要52%的压缩比才能消除所有孔隙,并且最大容许64%的压缩比。

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