首页> 外文期刊>Journal of Cleaner Production >Circular economy practice: From industrial metal waste to production of high wear resistant coatings
【24h】

Circular economy practice: From industrial metal waste to production of high wear resistant coatings

机译:循环经济实践:从工业金属废料到生产高耐磨涂料

获取原文
获取原文并翻译 | 示例
           

摘要

Recently, recycling has become an essential issue in the industrial sector due to the soared consumption of materials and energy. One of the few possible ways to recycle metal waste is re-melting and converting the waste to new products. However, it requires a lot of energy, causes environmental contamination and is not applicable worldwide. Landfilling is no longer an option. This research paper focuses on finding an alternative way to recycle industrial waste by using the Submerged Arc Welding method (SAW) and metal waste, what is collected by manufacturing companies, in order to produce wear resistant hard-facings. When selecting metal waste, the greatest attention was given to waste of alloys with carbide forming elements. Turnings, shavings, and chips, as well as debris of high speed tool steel (HS6-5-2), ledeburitic high chromium cold work steel (X210Cr12), cast iron chips, waste of boron carbide B4C, worn grinding wheels (SiC), sintered hardmetal (H123, HG30) all were chosen as the remedy for reinforcement. Five possible compositions of above mentioned waste were discussed and tested on wear. SAW technique with properly chosen parameters: current 180-200 A, voltage 22-24 V, travel speed - 14.4 m/h was adapted for the production of hard-facings. Two methods to introduce waste metal powder to the weld zone were utilized: spreading of powder over the surface of substrate, and mixing with standard flux. Hard-facings obtained from waste materials were tested on abrasive emery wear. Volume-wear loss in most cases was compared to commercial steel grades. Wear results confirmed expectations as wear resistance of waste based hardfacings similar to 2 times exceeded the wear resistance of commercial alloys. (C) 2019 Elsevier Ltd. All rights reserved.
机译:最近,由于材料和能量的消耗飙升,回收已成为工业部门的重要问题。回收金属废物的几种可能方法之一是重新融化并将废物转化为新产品。然而,它需要大量的能量,导致环境污染,并不适用于全球。填埋不再是一个选择。本研究论文专注于通过使用浸没的电弧焊接方法(SAW)和金属废物来找到替代方法来回收工业废物,由制造公司收集,以生产耐磨性的硬面。选择金属废物时,最大的关注浪费碳化物成形元素的合金。车削,刨花和芯片,以及高速工具钢的碎片(HS6-5-2),Ledeburitic高铬冷工钢(X210Cr12),铸铁芯片,硼碳化硼B4C,磨损的轮子(SIC) ,烧结硬质合金(H123,HG30)均被选择作为加固的补救措施。讨论并在磨损上进行了上述废物的五种可能的组成。 SAW技术采用适当的参数:电流180-200A,电压22-24 V,行驶速度 - 14.4 M / H适用于生产硬面。利用了将废金属粉末引入焊接区的两种方法:在基材表面上散布粉末,并与标准通量混合。从废料获得的硬面测试磨料砂砾磨损。大多数情况下的体积磨损与商业钢等级进行比较。磨损结果证实预期随着废物的硬焊料的耐磨性,类似于2倍超过了商业合金的耐磨性。 (c)2019 Elsevier Ltd.保留所有权利。

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