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新型Fe-17Mn-5Cr-1.5Al/聚氨酯高阻尼复合材料制备及性能研究 被引量:3
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作者 吴松岭 高云霞 +4 位作者 王辉 李刚 王先平 蒋卫斌 方前锋 《有色金属工程》 CAS 北大核心 2021年第10期20-25,共6页
采用胶结法制备了Fe-17Mn-5Cr-1.5Al/聚氨酯高阻尼复合材料,成功实现了材料内部聚氨酯阻尼层的均匀可控分布以及与Fe-17Mn-5Cr-1.5Al合金层的紧密结合。采用多功能内耗仪测试了Fe-17Mn-5Cr-1.5Al/聚氨酯复合材料的内耗特性,发现其内耗... 采用胶结法制备了Fe-17Mn-5Cr-1.5Al/聚氨酯高阻尼复合材料,成功实现了材料内部聚氨酯阻尼层的均匀可控分布以及与Fe-17Mn-5Cr-1.5Al合金层的紧密结合。采用多功能内耗仪测试了Fe-17Mn-5Cr-1.5Al/聚氨酯复合材料的内耗特性,发现其内耗峰随着测试频率的增加向高温方向移动,表现出典型的弛豫特性。研究了内耗峰高与阻尼层厚度、阻尼层层数之间的变化关系,发现当阻尼层厚度增加至2.0 mm时,或者阻尼层数增加至2层时,内耗峰高达到最大。相较而言,抗弯性能则随着阻尼层厚度和层数的增加而单调增加。Fe-17Mn-5Cr-1.5Al/聚氨酯复合材料的阻尼性能主要来源于聚氨酯阻尼层的贡献,而抗弯性能则主要来源于Fe-17Mn-5Cr-1.5Al合金层的贡献。 展开更多
关键词 铁锰基合金 聚氨酯 高阻尼复合材料 弛豫型内耗峰 抗弯性能
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Damping capacity of BaTiO_3/Al composites fabricated by hot extrusion 被引量:1
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作者 范根莲 李志强 张荻 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第10期2512-2516,共5页
To develop new type of high damping metal matrix composites, large grain size barium titanate (BaTiO3) ceramic was sintered and added into Al powder to fabricate BaTiO3/Al composites through the powder metallurgy me... To develop new type of high damping metal matrix composites, large grain size barium titanate (BaTiO3) ceramic was sintered and added into Al powder to fabricate BaTiO3/Al composites through the powder metallurgy method and hot extrusion. The damping properties of BaTiO3 ceramic, Al matrix and BaTiO3/Al composites were examined by dynamic mechanical analysis in the temperature range from 273 K to 573 K. The results show that although BaTiO3 exhibits high damping (tan δ=0.12) below 400 K, the damping capacity of 10%BaTiO3/Al (mass fraction) composites below 400 K is not increased as compared to the Al matrix. On the other hand, the damping capacity above 450 K is greatly enhanced due to the motion of dislocations at the interfaces between ceramic particles and Al matrix. The failure of exerting the intrinsic damping of BaTiO3 particles in the composites is attributed to the poor interface bonding between the particles and the matrix. The tensile strength of the composite is 42% higher than that of the Al matrix, which indicates the possibility of obtaining high strength and high damping composites via interface improvement and the addition of high volume fraction of large grain BaTiO3 particles. 展开更多
关键词 high damping materials metal matrix composites barium titanate mechanical properties INTERFACE
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