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低碳含碲硫易切削钢的研究与实践
引用本文:邹虎,王东兴,陈永峰,赵文渊.低碳含碲硫易切削钢的研究与实践[J].中国冶金,2020,30(12):77-81.
作者姓名:邹虎  王东兴  陈永峰  赵文渊
作者单位:芜湖新兴铸管有限责任公司研究院, 安徽 芜湖 214000
基金项目:安徽省重大科技专项资助项目(18030901086)
摘    要:通过合理的化学成分、钢水全氧含量、w(Mn)/w(S)、w(Te)/w(S)及加热温度的设计与控制,成功开发出一种环保型含碲硫1214Te易切削钢,并进行了工艺实践。通过金相显微镜、扫描电镜、能谱仪对1214Te盘圆及1215MS盘圆硫化物夹杂进行观察分析发现,1214Te轧材中硫化物夹杂多数呈纺锤形或椭球形, 1215MS轧材中硫化物夹杂多数呈长条状。在相同切削条件下,1214Te轧材的断屑效果优于1215MS轧材,且切削加工后的1214Te轧材表面粗糙度降低。

关 键 词:  易切削钢  氧含量  加热温度  夹杂物  切削性  

Research and practice of low carbon free-cutting steel containing tellurium and sulfur
ZOU Hu,WANG Dong-xing,CHEN Yong-feng,ZHAO Wen-yuan.Research and practice of low carbon free-cutting steel containing tellurium and sulfur[J].China Metallurgy,2020,30(12):77-81.
Authors:ZOU Hu  WANG Dong-xing  CHEN Yong-feng  ZHAO Wen-yuan
Affiliation:Research Institute,Wuhu Xinxing Ductile Iron Pipes Co., Ltd., Wuhu 241000, Anhui, China
Abstract:Through the design and control of reasonable chemical composition, total oxygen content of steel, w(Mn)/w(S)ratio, w(Te)/w(S)ratio and heating temperature, an environmentally friendly 1214Te free-cutting steel containing sulfur and tellurium was successfully developed, and the process was carried out. Metallographic microscope, scanning electron microscope and energy spectrometer were used to observe and analyze the sulfide inclusions in 1214Te disk and 1215MS disk, which showed that most of the sulfide inclusions in the 1214Te rolled product were spindle-shaped or ellipsoid, and most of the sulfide inclusions in the 1215MS rolled product were long strip. Under the same cutting condition, the chip breaking effect of 1214Te rolled product was better than that of 1215MS rolled product, and the surface roughness of 1214Te rolled product after cutting was reduced.
Keywords:tellurium                                                      free-cutting steel                                                      oxygen content                                                      heating temperature                                                      inclusion                                                      machinability                                      
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