The effects of major alloying elements on the Ac, temperature in P92 steel weld metal were evaluated by Thermo- Calc, and a formula relating Ac1 to the content of major alloying elements was developed using multiple r...The effects of major alloying elements on the Ac, temperature in P92 steel weld metal were evaluated by Thermo- Calc, and a formula relating Ac1 to the content of major alloying elements was developed using multiple regression method. Results show that both C and N reduce Ac, temperature in weld metal, the effect of N on Ac, is greater than that of C, but their influence on Act is not so significant when they individually vary in the specified chemical composition ranges. Si, Cr, Mo and W increase the Acl temperature, and the descending order of their effects is determined as Si, Mo, W, Cr. Mn and Ni decrease the AcI in weld metal, the decreasing effect is especially remarkable when the ( Mn + Ni) ≥ 1%. The effect of Co is moderate and is much smaller compared to Ni. The variations of Acl for the ranges of micro-alloying elements Nb and V are also evaluated, the effect of V is greater compared to Nb and the effect of Nb could be ignored in the specified chemical composition range. A prediction formula for Ac, temperature in P92 steel weld metal within the specified chemical composition ranges was developed based on the comprehensive consideration of the calculated Ac, temperatures and the experimentally measured results.展开更多
以2个转BtCry1Ac基因107杨株系及其未转基因对照为材料,研究转Bt基因107杨的根系分布特征。结果表明:1)垂直方向上,2个转基因株系与CK的总根系及各径级根长密度、表面积密度、体积密度以及生物量密度上均随土层深度的增加而显著降低,在0...以2个转BtCry1Ac基因107杨株系及其未转基因对照为材料,研究转Bt基因107杨的根系分布特征。结果表明:1)垂直方向上,2个转基因株系与CK的总根系及各径级根长密度、表面积密度、体积密度以及生物量密度上均随土层深度的增加而显著降低,在0~30 cm土层中,根长密度、根表面积密度、根体积密度及生物量密度均达到最大值,且显著高于其他土层;2)水平方向0~150 cm, 2个转基因株系与CK的总根表面积密度、总生物量密度随着距树干水平距离的增加呈现出先减小后增大的趋势;不同径级根系表面积密度、根长密度在距树干0~30 cm处达到最大值;3)2个转基因株系总根长密度、根表面积密度、根体积密度和生物量密度均小于对照,对照与转基因株系存在显著性差异,而2个转基因株系间无显著性差异;4)3个株系在根系分布中均以细根为主,且转基因株系细根径级的根长密度、根表面积密度表现为对照大于转基因株系且存在显著性差异,对照和转基因株系中根与粗根根长密度、根表面积密度无显著性差异。展开更多
基金This work was supported by National Natural Science Foundation of China( No. 51074113 ), the Fundamental Research Funds for the Central Universities ( No. 115005 ).
文摘The effects of major alloying elements on the Ac, temperature in P92 steel weld metal were evaluated by Thermo- Calc, and a formula relating Ac1 to the content of major alloying elements was developed using multiple regression method. Results show that both C and N reduce Ac, temperature in weld metal, the effect of N on Ac, is greater than that of C, but their influence on Act is not so significant when they individually vary in the specified chemical composition ranges. Si, Cr, Mo and W increase the Acl temperature, and the descending order of their effects is determined as Si, Mo, W, Cr. Mn and Ni decrease the AcI in weld metal, the decreasing effect is especially remarkable when the ( Mn + Ni) ≥ 1%. The effect of Co is moderate and is much smaller compared to Ni. The variations of Acl for the ranges of micro-alloying elements Nb and V are also evaluated, the effect of V is greater compared to Nb and the effect of Nb could be ignored in the specified chemical composition range. A prediction formula for Ac, temperature in P92 steel weld metal within the specified chemical composition ranges was developed based on the comprehensive consideration of the calculated Ac, temperatures and the experimentally measured results.
文摘以2个转BtCry1Ac基因107杨株系及其未转基因对照为材料,研究转Bt基因107杨的根系分布特征。结果表明:1)垂直方向上,2个转基因株系与CK的总根系及各径级根长密度、表面积密度、体积密度以及生物量密度上均随土层深度的增加而显著降低,在0~30 cm土层中,根长密度、根表面积密度、根体积密度及生物量密度均达到最大值,且显著高于其他土层;2)水平方向0~150 cm, 2个转基因株系与CK的总根表面积密度、总生物量密度随着距树干水平距离的增加呈现出先减小后增大的趋势;不同径级根系表面积密度、根长密度在距树干0~30 cm处达到最大值;3)2个转基因株系总根长密度、根表面积密度、根体积密度和生物量密度均小于对照,对照与转基因株系存在显著性差异,而2个转基因株系间无显著性差异;4)3个株系在根系分布中均以细根为主,且转基因株系细根径级的根长密度、根表面积密度表现为对照大于转基因株系且存在显著性差异,对照和转基因株系中根与粗根根长密度、根表面积密度无显著性差异。