解子章, 吴成义, 扬让. 液态激冷Mn-Mo-Co马氏体时效钢组织结构和性能的研究[J]. 工程科学学报, 1986, 8(1): 45-53. DOI: 10.13374/j.issn1001-053x.1986.01.020
引用本文: 解子章, 吴成义, 扬让. 液态激冷Mn-Mo-Co马氏体时效钢组织结构和性能的研究[J]. 工程科学学报, 1986, 8(1): 45-53. DOI: 10.13374/j.issn1001-053x.1986.01.020
Jie Zizhang, Wu Chengyi, Yang Rang. An Investigation of Structures and Properties of a Mn-Mo-Co Maraging Steel by Rapid Solidification[J]. Chinese Journal of Engineering, 1986, 8(1): 45-53. DOI: 10.13374/j.issn1001-053x.1986.01.020
Citation: Jie Zizhang, Wu Chengyi, Yang Rang. An Investigation of Structures and Properties of a Mn-Mo-Co Maraging Steel by Rapid Solidification[J]. Chinese Journal of Engineering, 1986, 8(1): 45-53. DOI: 10.13374/j.issn1001-053x.1986.01.020

液态激冷Mn-Mo-Co马氏体时效钢组织结构和性能的研究

An Investigation of Structures and Properties of a Mn-Mo-Co Maraging Steel by Rapid Solidification

  • 摘要: Mn-Mo-Co马氏体时效钢是为节镍节钻而设计的一种新的马氏体时效钢,虽然强度可以达到甚至超过马氏体时效钢的水平,而韧性却低的多。其主要原因是时效前已有大量析出相沿晶界分布。为改善其性能,本文研究了液态激冷Mn、Mo、Co马氏体时效钢的组织结构,时效温度与部分机械性能的关系。
    实验结果表明:激冷带具有极细的晶粒和较大的固溶度。由于激冷带保留了液态的大量空位和位错,因此,形成了明显的胞状组织,激冷带的横断面分为上,下两层,在接近辊面的激冷层内,为直径小于1μm的细等轴晶,其上部为细柱状晶的组织。并发现激冷层为韧性断口,柱晶层为解理断口。经时效处理后,其硬度普遍高于相同成份的淬火钢的时效硬度。关于液态激冷钢铁微晶材料的机械性能有待进一步研究。

     

    Abstract: A new maraging steel,Mn-Mo-co steel,has been made with the aim ofsaving the alloy elements,Co and Ni.Although the strength of the steel can reaoh to or even overtake the strength level of commercial 18Ni maraging steel,the toughness of this steel is quite low.It is probably that the second phases vere precipitated along the grain boundaries before the ageing pro-cess to be carried out. In order to improve the properties of the steel,a rapid solidification technique has been used and the relationships between structures and mechanical properties have been studied as well.
    The experimental results shown that the rapid cooling thin metal belt has a very fine grain size and high solid solubility of alloy elements.In thls microstructure,the vacancies and dislocation are so high that an homogeneous cell structure are formed.The transverse section of the rapid cooling belt consists of two layers,upper and lower layers.The microstructure of lower layer which is direct contact with the roller surface consists of equiaxed fine crystals with a diameter less than lμm,and the upper layer make up of fine columnar crystals.It has been also found that the rapid cooling layer always has a tough fracture,but columnar crystal layer,i.e.upper layer, usually has a cleavage fracture. In the ageing condition, the hardness of the rapid cooling belt is always higher than that of quenched steel having the same chemical composition. However,other mechanical properties of the mi-crocrystal steel formed by rapid solidification are still remained for further investigation.

     

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