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An Investigation of a Nitrogen Enhanced Steel Processed by Explosive Powder Compaction

机译:通过爆炸性粉末压实加工氮素增强钢的研究

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A structural steel, 35CrMoV steel, has been attempted firstly by explosive powder compaction followed by sintering (EPC-sintering). The nitrogen content of the steel was 0.15wt percent, which was accordant with the definition of high nitrogen steel (HNS). The final density of the EPC-sintering steel was only about 6.9g/cm~3, which indicated that the processing parameters must be modulated further. In the sample of this steel, some radial cracks were found around the center of the cross-section of the steel, resulting in no mechanical tests carrying out. Observing the majority of the rim region of the sample of this steel, the microstructures were very tight, suggesting that it was possible and successful to manufacture HNS through EPC-sintering. The characteristics of the EPC-sintering high nitrogen 35CrMoV steel were that the cementites in the pearlites were found to be extremely fine. There were many (Cr,Mo)_(23)(C,N)_6 carbonitrides precipitates in the matrix. Some precipitates were round and others were needle-like. Some were distributing orderly in matrix and crossing over the dislocations. The dislocation density in the EPC-sintering steel remained high.
机译:通过爆炸性粉末压实,烧结(EPC烧结)首先尝试了一种结构钢35crmov钢。钢的氮含量为0.15wt%,含有高氮钢(HNS)的定义。 EPC烧结钢的最终密度仅为6.9g / cm〜3,表明必须进一步调节处理参数。在该钢的样品中,在钢的横截面的中心周围发现了一些径向裂缝,导致没有机械测试。观察该钢样品的主要区域的大部分,微观结构非常紧张,表明它是可以通过EPC烧结制造HNS的。 EPC烧结高氮35crmov钢的特点是珠粒中的渗碳物被发现非常精细。存在许多(Cr,Mo)_(23)(C,N)_6碳氮化物在基质中沉淀。一些沉淀物是圆形的,其他沉淀物是针状的。有些人在矩阵中有序分发并在脱位上穿过。 EPC烧结钢中的位错密度保持高。

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