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Research on Hydrogen Induced Cracking of 08Cr2AlMo Steel Based on the Empirical Electron Theory

机译:基于经验电子理论的08Cr2AlMo钢氢致裂纹研究

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Hydrogen induced cracking (HIC) is one of main type of damage to metallic materials in H2S solution. 08Cr2AlMo steel is a type of material developed especially for heat exchanger pipe bundle used under H2S condition in recent years. Calculation models of the construction units in 08Cr2AlMo steel with or without hydrogen were established based on the empirical electronic theory in solid (EET) and valence electron structure of the construction units in this steel was calculated. The results show that hydrogen bond is formed between the hydrogen solved in the steel and other atoms in the steel. The cleavage energy of crystal plane with hydrogen bond is increased and that without hydrogen bond is decreased. Hydrogen results in the remarkable difference of the cleavage energy of different crystal planes and changes the bond distribution in the structure units. The mechanical property of the units has directional properties. In these units, the microcracks propagate along the cleavage plane with small binding energy and so the brittle fracture of the crystal occurs. The elements of Cr, Al, Mo are able to strengthen the basal body without carbon, and have little effect on the plastic nature. In the structure unit with carbon, carbon increases the anisotropy of mechanical property and alloying agents decrease the plastics of the steel further. The alloying agents of Cr and Mo decrease plastic nature loss of the steel due to decrement of the anisotropy of mechanical property in the unit with hydrogen. The alloying agent of Al has little effect on the loss of plastic nature.
机译:氢致开裂(HIC)是H2S溶液中金属材料损坏的主要类型之一。近年来,08Cr2AlMo钢是专门为在H2S条件下使用的热交换器管束而开发的一种材料。根据实证电子理论,建立了含氢或不含氢的08Cr2AlMo钢结构单元的计算模型,并计算了该钢结构单元的价电子结构。结果表明,在钢中溶解的氢与钢中的其他原子之间形成了氢键。具有氢键的晶面的裂解能增加,而没有氢键的晶面的裂解能降低。氢导致不同晶面的裂解能明显不同,并改变了结构单元中的键分布。单元的机械性能具有方向性。在这些单元中,微裂纹以较小的结合能沿分裂平面传播,因此发生晶体的脆性断裂。 Cr,Al,Mo的元素能够在没有碳的情况下增强基体,并且对塑性的影响很小。在具有碳的结构单元中,碳增加了机械性能的各向异性,合金化剂进一步降低了钢的塑料。 Cr和Mo的合金化剂可降低由于氢引起的单元中机械性能各向异性的降低,从而降低钢的塑性。 Al的合金化剂对塑性损失的影响很小。

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