...
首页> 外文期刊>Materials transactions >Effect of Chromium Precipitation on Machinability of Sintered Brass Alloys Dispersed with Graphite Particles
【24h】

Effect of Chromium Precipitation on Machinability of Sintered Brass Alloys Dispersed with Graphite Particles

机译:铬沉淀对分散石墨颗粒的黄铜烧结合金切削性能的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The machinability of high strength lead-free brass was investigated in this study. Copper-40 mass%zinc (Cu-40Zn) brass powder with chromium was prepared by the water atomization. Chromium was used for strengthening of brass matrix. Graphite particles as machinable element were added to the as-atomized powders by conventional mixing process. Spark plasma sintering process was used to consolidate the above elemental mixed powder (X K SPSed material) at 873 K and 1053 K. The sintered materials at 1053 K were heat-treated for the precipitation of much Cr (HT material) at 1053 K for 12 h in Ar atmosphere. The machinability was evaluated by a drilling test using a drill tool under dry conditions. The matrix hardness of sintered material was higher than that of HT material. On the other hand, the machinability of sintering material was higher than that of HT material. The trade-off relationship between the matrix hardness and machinability of the brass alloys was not established. The solution of chromium content dissolved in the brass matrix of sintered material at 873 K, 1053 K and HT material was 0.55mass%, 0.42mass% and 0.19mass%, respectively in SEM-EDS observation. The chromium carbide increased with decreasing chromium solution in the brass matrix. The generation of hard chromium carbide and decrease in the relative graphite particle caused to inhibit the machinability of HT material.
机译:在这项研究中研究了高强度无铅黄铜的切削性能。通过水雾化制备含铬的铜质量分数为40%的锌(Cu-40Zn)黄铜粉。铬用于增强黄铜基体。通过常规混合工艺将石墨颗粒作为可机加工元素添加到雾化粉末中。使用火花等离子烧结工艺在873 K和1053 K下固结上述元素混合粉末(XK SPSed材料)。在1053 K下对烧结的材料进行热处理,以在1053 K下析出大量Cr(HT材料),持续12年。 h在Ar气氛中。通过在干燥条件下使用钻具的钻探测试来评估可加工性。烧结材料的基体硬度高于HT材料。另一方面,烧结材料的可切削性高于HT材料。黄铜合金的基体硬度和可切削性之间的折衷关系尚未建立。在SEM-EDS观察中,在873 K,1053 K和HT材料下,在烧结材料的黄铜基体中溶解的铬含量溶液分别为0.55质量%,0.42质量%和0.19质量%。碳化铬随着黄铜基质中铬溶液的减少而增加。硬质碳化铬的产生和相对石墨颗粒的减少导致抑制HT材料的机械加工性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号