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首页> 外文期刊>Steel Research International >Strength and Failure Behaviour of Spark Plasma Sintered Steel-Zirconia Composites Under Compressive Loading
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Strength and Failure Behaviour of Spark Plasma Sintered Steel-Zirconia Composites Under Compressive Loading

机译:压缩载荷下火花等离子烧结钢-氧化锆复合材料的强度和破坏行为

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摘要

Several composites, consisting of a metastable austenitic steel matrix and varying amounts of MgO partially stabilized zirconia particles (Mg-PSZ), were produced through spark plasma sintering (SPS). Compression tests were carried out at room temperature in a wide range of strain rate (4 × 10~(-4)s~(-1), 2 × 10~(-3) s~(-1),10~(-1) s~(-1),1 s~(-1),10~2 s~(-1)). In conjunction with subsequent microstructural investigations, the mechanical material behaviour was clarified. All composites showed a good ductility and a high strength. The strength increased with an increase of the ceramic content and with higher strain rates. Both, the martensitic transformation of the steel matrix and of the ceramic particles, could be proved at all strain rates. In this study no significant influence of the strain rate on the amount of transformed ceramic could be detected while the steel matrix showed less alpha'-martensite after compression at rising strain rates. Local material failure occurred around 0.3 true compressive strain depending on the applied strain rate and the amount of the Mg-PSZ powder. The main reason for the damage is the relatively weak ceramic-ceramic interface within the ceramic clusters.
机译:通过火花等离子体烧结(SPS)生产了几种复合材料,包括亚稳态奥氏体钢基体和不同数量的MgO部分稳定的氧化锆颗粒(Mg-PSZ)。在室温下以较大的应变率范围(4×10〜(-4)s〜(-1),2×10〜(-3)s〜(-1),10〜(- 1)s〜(-1),1 s〜(-1),10〜2 s〜(-1))。结合随后的微观结构研究,阐明了机械材料的性能。所有复合材料均显示出良好的延展性和高强度。强度随着陶瓷含量的增加和较高的应变速率而增加。可以在所有应变速率下证明钢基体和陶瓷颗粒的马氏体转变。在这项研究中,没有发现应变速率对相变陶瓷量的显着影响,而在以较高应变速率压缩后,钢基质显示出较少的α'马氏体。取决于施加的应变速率和Mg-PSZ粉末的量,局部材料破坏发生在0.3真实压缩应变附近。损坏的主要原因是陶瓷团簇内的陶瓷-陶瓷界面相对较弱。

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