摘要
对于金相显微镜下难以区分增强体和基体组织的铝基复合材料而言,国家标准方法GB/T 32496—2016难以准确测量铝基复合材料中的增强体体积含量。实验以HCl(1+1)、HF和H2O2为溶解液消解铝基体,再采用砂芯坩埚和滤纸两种方法收集SiC,采用溶解法测定铝基复合材料中SiC增强体体积含量。实验探讨了溶解液对SiC增强体的腐蚀行为。结果表明:依次加入10~20mL HCl(1+1)、3~5mL HF和3~6mL H2O2可将Al基体组织溶解完全。精密度试验表明,待测SiC体积含量的相对标准偏差(RSD)均不大于0.1%(n=9),能满足铝基复合材料中SiC体积含量的检测要求。相比砂芯坩埚抽滤法,滤纸法较经济且结果稳定。推荐采用滤纸法进行铝基复合材料中SiC体积含量测试。采用滤纸法分析铝基复合材料样品,测定值与理论值吻合良好。
For aluminum matrix composites that are difficult to distinguish between reinforcements and matrix structures by metallographic microscope,it is difficult to accurately measure the volume fraction of reinforcements in aluminum matrix composites by national standard method(GB/T 32496-2016).Dissolution method was applied to the determination of volume fraction of SiC reinforcement in aluminum matrix composites.The aluminum matrix was firstly digested with HCl(1+1),HF and H 2O 2.Then SiC reinforcement was collected by glass filter crucible and quantitative filter paper,respectively.The corrosion behavior of the dissolving solution on SiC reinforcement was investigated.The results showed that aluminum matrix could be completely dissolved by adding 10-20 mL HCl(1+1),3-5 mL HF and 3-6 mL H 2O 2 sequentially.The precision results showed that the relative standard deviation(RSD)were not more than 0.1%(n=9),which could satisfy the determination demand of SiC volume fraction in aluminum matrix composites.The result of filter paper method was more economical and stable than that of glass filter crucible suction method.The filter paper method was recommended to determine SiC volume fraction in aluminum matrix composites.The analytical values of the aluminum matrix composite sample analyzed by filter paper method were in agreement with the theoretical values.
作者
姚强
王琼
王燕
吴齐伟
路通
朱宇宏
YAO Qiang;WANG Qiong;WANG Yan;WU Qi-wei;LU Tong;ZHU Yu-hong(Jiangsu Provincial Supervising&Testing Research Institute for Products′Quality,Nanjing 210007,China)
出处
《冶金分析》
CAS
CSCD
北大核心
2018年第4期27-31,共5页
Metallurgical Analysis
基金
江苏省质量技术监督局科技项目(KJ133801)
关键词
溶解法
铝基复合材料
碳化硅
增强体
体积含量
dissolution method
aluminum matrix composites
silicon carbide
reinforcement
volume fraction