淬火-配分(Quenching and Partitioning,Q&P)钢由于具有优异的综合性能而备受关注。本文设计了一步等温和二步等温处理工艺,通过改变淬火温度和等温温度获得了不同含量一次马氏体(PM)、残余奥氏体(RA)、二次马氏体(FM)及贝氏体(BF)...淬火-配分(Quenching and Partitioning,Q&P)钢由于具有优异的综合性能而备受关注。本文设计了一步等温和二步等温处理工艺,通过改变淬火温度和等温温度获得了不同含量一次马氏体(PM)、残余奥氏体(RA)、二次马氏体(FM)及贝氏体(BF)的多相微观结构。采用XRD、EBSD综合分析了淬火配分处理对马氏体/贝氏体形态、位错密度、体积含量、变体选择行为以及冲击韧性的影响。示波冲击试验结果表明:330℃是一步淬火配分和二步淬火配分处理的最佳淬火温度,该温度能够获得最佳的冲击韧性。与一步淬火配分处理比较,二步淬火配分处理可以提高复相组织中的RA含量,并降低FM含量。最优的淬火温度和配分温度有利于降低马氏体/贝氏体(M/B)中的位错密度、增加RA和大角度晶界(HAGB)体积含量,从而显著改善Q&P钢的冲击韧性。展开更多
Based on the partition function in statistical thermodynamics, atomic partit ion parameter fi =lg[(ni-1)0.5·Ar,i] is introduced in this paper. The fi has demonstrated good unitarity for all the ground state ato ...Based on the partition function in statistical thermodynamics, atomic partit ion parameter fi =lg[(ni-1)0.5·Ar,i] is introduced in this paper. The fi has demonstrated good unitarity for all the ground state ato ms, and excellent correlativity with the standard entropies (,J·mol-1·K -1) of 70 cations in solid compounds: = -10.247+27.508 fi , r=0.996. A satisfactory curve equation is developed as follows: =6.229+13.257 fi1.5, r= 0.999. On the basis of adjacency matrices and fi , a novel partition connectivit y index is developed for the study on the standard entropies of 64 S block compo unds. The linear regression equation is set up by the least square method: =-3 9.416+33.9610H, r=0.985. The binary linear equation among and 0H, nM (princip al quantum number of the ground state atoms for S block) is drawn up: =-21.591 +32.0720H-31.013nM-1, R=0.990. The calculated values of basically tally w ith the experiment values. fi and 0H demonstrate that the method possesses the a dvantage of easy computation and clear physical significance.展开更多
文摘淬火-配分(Quenching and Partitioning,Q&P)钢由于具有优异的综合性能而备受关注。本文设计了一步等温和二步等温处理工艺,通过改变淬火温度和等温温度获得了不同含量一次马氏体(PM)、残余奥氏体(RA)、二次马氏体(FM)及贝氏体(BF)的多相微观结构。采用XRD、EBSD综合分析了淬火配分处理对马氏体/贝氏体形态、位错密度、体积含量、变体选择行为以及冲击韧性的影响。示波冲击试验结果表明:330℃是一步淬火配分和二步淬火配分处理的最佳淬火温度,该温度能够获得最佳的冲击韧性。与一步淬火配分处理比较,二步淬火配分处理可以提高复相组织中的RA含量,并降低FM含量。最优的淬火温度和配分温度有利于降低马氏体/贝氏体(M/B)中的位错密度、增加RA和大角度晶界(HAGB)体积含量,从而显著改善Q&P钢的冲击韧性。
文摘Based on the partition function in statistical thermodynamics, atomic partit ion parameter fi =lg[(ni-1)0.5·Ar,i] is introduced in this paper. The fi has demonstrated good unitarity for all the ground state ato ms, and excellent correlativity with the standard entropies (,J·mol-1·K -1) of 70 cations in solid compounds: = -10.247+27.508 fi , r=0.996. A satisfactory curve equation is developed as follows: =6.229+13.257 fi1.5, r= 0.999. On the basis of adjacency matrices and fi , a novel partition connectivit y index is developed for the study on the standard entropies of 64 S block compo unds. The linear regression equation is set up by the least square method: =-3 9.416+33.9610H, r=0.985. The binary linear equation among and 0H, nM (princip al quantum number of the ground state atoms for S block) is drawn up: =-21.591 +32.0720H-31.013nM-1, R=0.990. The calculated values of basically tally w ith the experiment values. fi and 0H demonstrate that the method possesses the a dvantage of easy computation and clear physical significance.
基金support from the National Science Foundation of China (No.51971249)the Natural Science Foundation of Shandong Province,China (No.ZR2020KE012)the Science and Technology Planning Project of Longkou City,China (No.2021KJJH025).