首页> 外文期刊>Journal of Materials Engineering and Performance >Flexural Strength and Toughness of Austenitic Stainless Steel Reinforced High-Cr White Cast Iron Composite
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Flexural Strength and Toughness of Austenitic Stainless Steel Reinforced High-Cr White Cast Iron Composite

机译:奥氏体不锈钢增强高铬白口铸铁复合材料的弯曲强度和韧性

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摘要

Flexural behavior of high-Cr white cast iron (WCI) reinforced with different shapes, i.e., I- and T-sections, and volume fractions of austenitic stainless steel (310 SS) were examined under three-point bending test. The dimensions of casted beams used for bending test were (50 × 100 × 500 mm~3). Carbon and alloying elements diffusion enhanced the metallurgical bond across the interface of casted beams. Carbon diffusion from high-Cr WCI into 310 SS resulted in the formation of Cr-carbides in 310 SS near the interface and Ni diffusion from 310 SS into high-Cr WCI led to the formation of austenite within a network of M_7C_3 eutectic carbides in high-Cr WCI near the interface. Inserting 310 SS plates into high-Cr WCI beams resulted in a significant improvement in their toughness. All specimens of this metal matrix composite failed in a ductile mode with higher plastic deformation prior to failure. The high-Cr WCI specimen reinforced with I-section of 310 SS revealed higher toughness compared to that with T-section at the same volume fraction. The presence of the upper flange increased the reinforcement efficiency for delaying the crack growth.
机译:在三点弯曲试验下检查了具有不同形状即I型和T型截面的高Cr白口铸铁(WCI)的弯曲行为以及奥氏体不锈钢(310 SS)的体积分数。用于弯曲试验的铸梁尺寸为(50×100×500 mm〜3)。碳和合金元素的扩散增强了铸钢梁界面上的冶金结合。碳从高Cr WCI扩散到310 SS中导致在界面附近的310 SS中形成Cr碳化物,Ni从310 SS扩散到高Cr WCI导致在M_7C_3共晶碳化物网络中形成奥氏体-Cr WCI在接口附近。将310 SS板插入高Cr WCI梁可以显着提高其韧性。该金属基复合材料的所有试样均以延性模式断裂,并在断裂前具有较高的塑性变形。在相同体积分数下,用I型截面310 SS增强的高Cr WCI试样比用T型截面增强了韧性。上凸缘的存在增加了延迟裂纹扩展的增强效率。

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