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Sb对锌液与X80钢表面润湿性影响的研究 被引量:3
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作者 崔德荣 雷云 +3 位作者 李智伟 苏旭平 刘亚 彭浩平 《表面技术》 EI CAS CSCD 北大核心 2020年第3期269-274,318,共7页
目的通过添加不同量的Sb元素降低锌液表面张力,提升X80管线钢热浸镀锌可镀性及镀层质量。方法采用改良座滴法在450℃下进行润湿实验,利用轴对称液滴分析软件(ADSA),计算不同Zn-Sb合金熔体在X80钢基板上的接触角,得到450℃时Zn-Sb合金熔... 目的通过添加不同量的Sb元素降低锌液表面张力,提升X80管线钢热浸镀锌可镀性及镀层质量。方法采用改良座滴法在450℃下进行润湿实验,利用轴对称液滴分析软件(ADSA),计算不同Zn-Sb合金熔体在X80钢基板上的接触角,得到450℃时Zn-Sb合金熔体表面张力。通过能谱仪和扫描电子显微镜对镀层表面及截面的微观形貌和组织结构进行分析。结果当Sb添加量为1.0%时,450℃下Zn-Sb合金表面张力约为0.63 N/m,随Sb含量的增加,表面张力逐渐减小,当Sb含量增加到4.0%时,表面张力达到0.46 N/m,远低于纯锌液的0.79N/m。同时,Zn-Sb合金熔体与X80钢的接触角也从最初的57°逐渐减小到43°。锌合金熔体与X80钢界面处形成铁锌化合物组成的连续反应层,且在反应三相线外存在前驱膜,前驱膜的形成使随后的合金液在其上铺展,促进了润湿。结论Sb的添加能有效降低锌液表面张力,减小Zn-Sb合金熔体与X80钢间的接触角。Sb的表面张力较小,倾向于在锌合金表面富集,其作为表面活性元素降低锌液表面张力,从而提高润湿性。 展开更多
关键词 X80钢 热浸镀锌 表面张力 润湿 前驱膜
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Effect of complex modification of Al-5Ti and Al-3P on hypereutectic Al-18Si alloys 被引量:1
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作者 WANG Jian-hua YANG Wei +3 位作者 TU Hao LIU Ya PENG Hao-ping su xu-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第10期2651-2660,共10页
The solidification microstructure,fracture morphologies,and mechanical properties of an Al-18Si alloy and alloys modified with Al-5Ti and Al-3P master alloys were investigated using an optical microscope,scanning elec... The solidification microstructure,fracture morphologies,and mechanical properties of an Al-18Si alloy and alloys modified with Al-5Ti and Al-3P master alloys were investigated using an optical microscope,scanning electron microscope,and an electronic universal testing machine.The results show that additions of Al-5Ti and Al-3P have significant effects on the size and area fraction of the primary Si and the mechanical properties of the Al-18Si alloy.Compared to the Al-18Si alloy modified with 0.6 wt%Al-5Ti at 850°C,when the Al-18Si alloy was modified with 0.3 wt%Al-5Ti and 0.5 wt%Al-3P at the same temperature,the average size of the primary Si decreased from 39 to 14μm and the area fraction increased from 9.5%to 11.6%.The biggest influencing factor on the tensile strength and elongation of the Al-18Si alloy is the addition of Al-3P,followed by the modification temperature and the addition of Al-5Ti.At a modification temperature of 850°C,the tensile strength and elongation of the Al-18Si alloy modified with 0.3 wt%Al-5Ti+0.5 wt%Al-3P increased by 19.6%and 88.6%,respectively compared to that of the Al-18Si alloy modified with 0.6 wt%Al-5Ti. 展开更多
关键词 hypereutectic Al-Si alloy MODIFICATION solidification structure mechanical properties
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Influence of Si content on interface reaction of iron-based hot-dip aluminizing on Fe sheet
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作者 PENG Hao-ping MA Ming +4 位作者 XI Shi-heng LIU Ya LEI Yun su Wei su xu-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第11期3581-3591,共11页
Based on the diffusion channel,the influence of Si content on the microstructure evolution of iron-based hot-dip Al-χSi coating was analyzed(χ=0,1.5 wt%,3.0 wt% and 7.0 wt%).The results show that the introduction of... Based on the diffusion channel,the influence of Si content on the microstructure evolution of iron-based hot-dip Al-χSi coating was analyzed(χ=0,1.5 wt%,3.0 wt% and 7.0 wt%).The results show that the introduction of Si makes the reaction interface change from the lingual-tooth interface of hot-dip Al to the flat interface of hot-dip Al-Si.It also reduces the thickness of the alloy layer in the coating,especially the Fe_(2)Al_(5) layer.When the Si content is 1.5 wt%or 3.0 wt%,the diffusion channel crosses the conjugate line of the two-phase region(FeAl_(3)+liquid phase)into the FeAl_(3) single-phase region,and then moves to the region with higher Si content.Next,the diffusion channel cuts off the conjugate line of FeAl_(3)phase,τ_(1)/τ_(9) phase,and Fe_(2)Al_(5)phase,which promotes the form ofτ_(1)/τ_(9) phase.The formedτ_(1)/τ_(9) phase inhibits the diffusion between Fe and Al atoms.When the Si content is 7.0 wt%,the diffusion channel passes through the two-phase region(liquid phase+τ_(5))and enters theτ_(5) single-phase region.The form ofτ_(5) single-phase region has a strong inhibitory effect on the interatomic diffusion of Fe and Al,thereby reducing the thickness of the coating,especially the Fe_(2)Al_(5)layer. 展开更多
关键词 hot-dip Al-Si diffusion channel interface reaction microstructure evolution COATING
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