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The analysis shows the growth kinetic (represented by the retardation time, and the stretch exponent) that depends not only on the norbornene (NB) content but also on the NB microblock structure.
The results show that besides MnS and AlN, Nb(C,N) also exists in Nb-containing steelsn steels, and with the increase of Nb content, the precipitation temperature and maximum mole fraction of Nb(C,N) increases significantly.
The soluble Nb content increases with the decrease of C content and/or the increase of Nb content in steels.
The degree of ISRO is thermodynamically evaluated to show that ISRO increases with increasing Nb content.
The tensile test revealed that the room temperature ductility decreases with increasing Nb content.
High Nb content and Ni/Ti ratio lead to a high permeability.
With increasing Nb content, the micro-hardness of the alloys decreases.
With increasing the Nb content of the superalloys the liquation length was increased.
With the increase of the Nb content, the precipitation temperature and precipitation amount of MC carbide both increase, when the Nb content is 1.03 wt.%, they are 1072 °C and 0.97 wt.%, respectively.
The higher the Nb content in the coatings, the lower is their oxidation resistance.
Highest activities were obtained with an optimum Nb content of 5 wt.%.
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