二硼化钛增强铝复合材料作为一种坚固的汽车应用材料

S. Venkatachalam, S. Baskaran, R. Karrthik, D. T. G. Raj, T. Kumar
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引用次数: 6

摘要

铝复合材料由于其轻量化和无腐蚀的特点,在汽车工业中得到了广泛的应用。本研究采用原位盐金属反应技术在铝(Al)金属基体中增强二硼化钛(TiB2)颗粒。在Al 6061合金基体中分别添加重量为4%和8%的TiB2颗粒制备复合材料,并对复合材料的显微组织、抗拉强度、硬度和耐磨性进行了表征。铝6061合金的抗拉强度为114 N/mm2,硬度为30(洛氏数),磨损损失为159µm。结果表明,当TiB2添加量为8%时,TiB2增强Al 6061合金的力学性能,特别是抗拉强度和硬度分别提高到172 N/mm2和54 N/mm2。此外,通过销盘法,增强率最高的试样具有显著的耐磨性。因此,tib2 -铝复合材料与高性能汽车盘式制动器材料的竞争日益激烈。铝复合材料由于其轻量化和无腐蚀的特点,在汽车工业中得到了广泛的应用。本研究采用原位盐金属反应技术在铝(Al)金属基体中增强二硼化钛(TiB2)颗粒。在Al 6061合金基体中分别添加重量为4%和8%的TiB2颗粒制备复合材料,并对复合材料的显微组织、抗拉强度、硬度和耐磨性进行了表征。铝6061合金的抗拉强度为114 N/mm2,硬度为30(洛氏数),磨损损失为159µm。结果表明,当TiB2添加量为8%时,TiB2增强Al 6061合金的力学性能,特别是抗拉强度和硬度分别提高到172 N/mm2和54 N/mm2。此外,通过销盘法,增强率最高的试样具有显著的耐磨性。因此,tib2 -铝复合材料与h…
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Titanium diboride reinforced aluminum composite as a robust material for automobile applications
Aluminum composites are largely used in automobile industries in light of their lightweight and corrosion free characteristics. In this work, Titanium diboride (TiB2) particles were reinforced in Aluminum (Al) metal matrix via in-situ salt metal reaction technique. The composite samples were prepared by reinforcing TiB2 particles of 4% and 8% (by wt.) in Al 6061 alloy matrix and subsequently the composites were characterized for their microstructure, tensile strength, hardness and wear resistance. The Aluminum 6061 alloy is found to have tensile strength 114 N/mm2, hardness 30 (Rockwell number) and wear loss of 159 µm. It was observed that the mechanical properties of TiB2 reinforced Al 6061 alloys, especially tensile strength and hardness have been improved to 172 N/mm2 and 54, respectively, up on addition of 8% TiB2. Moreover, the samples having highest weight percentage of reinforcement show remarkable wear resistance by pin-on-disc method. Thus TiB2-Aluminum composites are in foster competition with high performance materials used as disc brake in automobiles.Aluminum composites are largely used in automobile industries in light of their lightweight and corrosion free characteristics. In this work, Titanium diboride (TiB2) particles were reinforced in Aluminum (Al) metal matrix via in-situ salt metal reaction technique. The composite samples were prepared by reinforcing TiB2 particles of 4% and 8% (by wt.) in Al 6061 alloy matrix and subsequently the composites were characterized for their microstructure, tensile strength, hardness and wear resistance. The Aluminum 6061 alloy is found to have tensile strength 114 N/mm2, hardness 30 (Rockwell number) and wear loss of 159 µm. It was observed that the mechanical properties of TiB2 reinforced Al 6061 alloys, especially tensile strength and hardness have been improved to 172 N/mm2 and 54, respectively, up on addition of 8% TiB2. Moreover, the samples having highest weight percentage of reinforcement show remarkable wear resistance by pin-on-disc method. Thus TiB2-Aluminum composites are in foster competition with h...
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