Al/Al-B4C Dairesel Hibrit Kompozitlerin Mekanik Özelliklerinin İncelenmesi

Abdullah Göçer, Fehmi Nai̇r
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Abstract

Hybrid composites are material types obtained by combining two different composite structures. In this study, the mechanical properties of the circular hybrid composite materials which was produced in the form of rod with aluminum sheath and metal matrix composite core (Al-Ceramic mixture) were investigated under compression and bending loads. Although some mechanical properties of metal matrix composites (MMC) are improved with ceramic reinforcement, some of their properties as deformation ability is reduced. It was aimed to increase them by forming aluminum sheath on the outside of these materials. Al7075 aluminum alloy was used as sheath material while Al2124 alloy and B4C were used as core material. Extrusion process was used to produce the composite rods. The extrusion billets were produced with PIT (powder in tube) method. In this method, Al2124-B4C powder mixture was compressed in Al7075 tubes. Al2124-B4C powder mixture was prepared volumetrically at three different ratios (% 5, % 10 and % 15). The extrusion operation was realized at constant temperature (500 °C) and constant extrusion rate (R=14) and the composite rods produced in 8 mm diameter. The composite bars produced with and without sheaths were subjected to compression and three-point bending tests. According to the test results, with increasing of the B4C ratio in MMC bars, the deformation rate decreased rapidly. In the composites produced as hybrid, it was seen that the deformation ability increased and this showed that the aluminum sheath provided the desired improvement.
杂化复合材料是由两种不同的复合材料结构组合而成的材料类型。本文研究了以铝鞘和金属基复合材料(Al-Ceramic混合物)为芯的棒状圆形杂化复合材料在压缩和弯曲载荷下的力学性能。陶瓷增强虽然提高了金属基复合材料的某些力学性能,但却降低了其变形能力等性能。它的目的是通过在这些材料的外部形成铝护套来增加它们。采用Al7075铝合金作为护套材料,Al2124合金和B4C作为芯材。采用挤压法生产复合材料棒。采用管内粉末法生产挤压坯料。在该方法中,Al2124-B4C粉末混合物在Al7075管中压缩。采用体积比(% 5、% 10、% 15)制备了Al2124-B4C粉末混合物。在恒定温度(500℃)和恒定挤压速率(R=14)条件下实现挤压操作,生产出直径为8mm的复合棒。对带和不带护套的复合棒进行了压缩和三点弯曲试验。试验结果表明,随着MMC棒体中B4C比的增大,变形速率迅速降低。在复合材料中,复合材料的变形能力有所提高,这表明铝护套提供了预期的改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
0.70
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