首页> 外文期刊>Archives of Foundry Engineering >Method and Apparatus for Assessing the Properties of Slags
【24h】

Method and Apparatus for Assessing the Properties of Slags

机译:矿渣性能评估方法及装置

获取原文
           

摘要

A special Slag-Prop Cu database has been developed to archive data from laboratory and industrial tests related to post-reduction slags. In order to enrich the data areas, it was decided to design a system for measuring the temperature of the liquid slag and its viscosity. Objectives of research work are to gather information on the properties of post-slags such as the temperature of liquid slag and its viscosity. The discussed issues are especially important in the foundry practice. Designed research stand and using of database applications can greatly facilitate the work of metallurgists, foundrymen, technologists and scientists. The viscosity measurement was developed and presented earlier. The author’s analytical methodology was supplemented by a thyristor measuring system (described in the article). The system temperature measurement can be performed simultaneously in 3 ways to reduce the measurement error. Measurement of the voltage mV - using the Seebeck effect can be measured throughout the entire range of thermocouple resistance, up to 1300 °C. Direct temperature measurement °C - measurement only below 1000 °C. Additional measurement - the measurement can also be read from the pyrometer set above the bath. The temperature and the reading frequency depend on the device itself. The principle of measurement is that in a molten metal / slag crucible, we put a N-type thermocouple. The thermocouples are hung by means of a tripod above the crucible and placed in a crucible. The thermocouple is connected to a compensating line dedicated to this type of thermocouple. The cable is in turn connected to a special multimeter that has the ability to connect to a computer and upload results. Temperature measurement can be performed simultaneously in 3 ways to reduce the measurement error. The Sn-Pb alloy has been subjected to testing for proper operation of the device. In this foot should be observed the supercooling of the liquid, which initiates the crystallization process and in which latent heat begins to exude raising the temperature until the coagulation temperature is reached.
机译:已经开发了一个特殊的炉渣铜合金数据库,用于存储来自实验室和工业测试的与还原后炉渣相关的数据。为了丰富数据区域,决定设计一个用于测量液态炉渣温度及其粘度的系统。研究工作的目的是收集有关后渣性质的信息,例如液渣温度及其粘度。讨论的问题在铸造实践中尤其重要。设计好的研究台和数据库应用程序的使用可以极大地促进冶金学家,铸造厂,技术人员和科学家的工作。粘度测量值已开发出来并在较早前提出。作者的分析方法得到了晶闸管测量系统的补充(在本文中进行了介绍)。可以通过3种方式同时执行系统温度测量,以减少测量误差。电压mV的测量-使用塞贝克效应,可以在高达1300°C的整个热电偶电阻范围内进行测量。直接温度测量°C-仅在1000°C以下测量。附加测量-也可以从浴池上方的高温计读取测量值。温度和读取频率取决于设备本身。测量原理是,在熔融金属/炉渣坩埚中,我们放置了N型热电偶。热电偶通过三角架悬挂在坩埚上方,并放置在坩埚中。热电偶连接到专用于该类型热电偶的补偿线。电缆依次连接到特殊的万用表,该万用表可以连接到计算机并上传结果。可以通过3种方式同时进行温度测量,以减少测量误差。 Sn-Pb合金已经过测试,以确保该设备正常运行。在这只脚上应观察到液体的过冷状态,该过冷状态启动了结晶过程,在此过程中潜热开始散发出来,使温度升高,直至达到凝固温度。

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