Compound low carbon and high sulfur free-cutting steel with Sn and Sb
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摘要: 對復合添加少量Sn和Sb或Sn和Bi的低碳高硫易切削鋼做了切削和高溫熱塑性實驗.結果表明:試樣在長時間的高速切削條件下刀具后刀面磨損很小,其易切削性能明顯優于SAE1215鋼.含Sn和Sb的鋼樣在750~950℃溫度范圍內塑性較差,在1050~1300℃范圍內具有良好的塑性.掃描電鏡及能譜分析表明:鋼中Sn和Sb元素在晶界、MnS夾雜物內及MnS邊界處均存在;大部分的Bi元素附著在MnS夾雜物上,一部分彌散分布在鋼的基體中;鋼中MnS夾雜主要呈球狀和紡錘狀.Abstract: Cutting tests and high-temperature thermo-ductility experiment were carried out on low-carbon and high-sulfur free-cutting steel with low contents of tin and antimony or bismuth. The results show that the wear at the tool flank face for machining of experimental steel is very small after long-time and high-speed machining tests. The machinability of the new steel is significantly better than that of SAE1215. The thermo-ductility of the steel with Sn and Sb is poor within the range from 750 to 950℃ but good from 1050 to 1300℃. It is also showed by SEM and EDS that tin and antimony exist at grain boundaries in the steel, and in or around MnS inclusions. Most of bismuth element are attached to MnS inclusions, some are scattered in the steel matrix. The shapes of MnS inclusions are mainly spherical and spindle.
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Key words:
- free cutting steel /
- machinability /
- high-temperature tensile properties /
- microstructure
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