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首页> 外文期刊>Materials Characterization >X-ray tomography studies on porosity and particle size distribution in cast in-situ Al-Cu-TiB2 semi-solid forged composites
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X-ray tomography studies on porosity and particle size distribution in cast in-situ Al-Cu-TiB2 semi-solid forged composites

机译:X射线断层扫描研究原位铸造Al-Cu-TiB2半固态锻造复合材料的孔隙率和粒度分布

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X-ray computed tomography (XCT) was used to characterise the internal microstructure and clustering behaviour of TiB2 particles in in-situ processed Al-Cu metal matrix composites prepared by casting method. Forging was used in semi-solid state to reduce the porosity and to uniformly disperse TiB2 particles in the composite. Quantification of porosity and clustering of TiB2 particles was evaluated for different forging reductions (30% and 50% reductions) and compared with an as-cast sample using XCT. Results show that the porosity content was decreased by about 40% due to semi-solid forging as compared to the as-cast condition. Further, XCT results show that the 30% forging reduction resulted in greater uniformity in distribution of TiB2 particles within the composite compared to as-cast and the 50% forge reduction in semi-solid state. These results show that the application of forging in semi-solid state enhances particle distribution and reduces porosity formation in cast in situ Al-Cu-TiB2 metal matrix composites. (C) 2016 Elsevier Inc. All rights reserved.
机译:X射线计算机断层扫描(XCT)被用来表征TiB2颗粒在通过铸造方法原位处理的Al-Cu金属基复合材料中的内部微观结构和聚集行为。半固态使用锻造以降低孔隙率并使TiB2颗粒均匀地分散在复合材料中。对于不同的锻件压下率(30%和50%的压下率),评估了TiB2颗粒的孔隙率和聚集度,并使用XCT与铸态样品进行了比较。结果表明,与铸态相比,由于半固态锻造,孔隙率降低了约40%。此外,XCT结果表明,与铸态相比,锻造量减少30%可使复合材料中TiB2颗粒的分布更加均匀,半固态锻造量减少50%。这些结果表明,半固态锻造的应用增强了原位铸造Al-Cu-TiB2金属基复合材料的颗粒分布并减少了孔隙形成。 (C)2016 Elsevier Inc.保留所有权利。

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