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Tempering Process to Improve Hardness Uniformity of Plastic Mould Steel 被引量:9

Tempering Process to Improve Hardness Uniformity of Plastic Mould Steel
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摘要 A new design of copper-bearing non-quenched plastic mold steel is presented and explained. Two kinds of microstrueture can be obtained from this new type copper-bearing steel via cooling with different cooling rates, bain- ite and a mixed microstructure consisting of ferrite and bainite. It is found that, after proper tempering process, the hardness will be increased. Moreover, the hardness difference between different microstructures will be reduced. For further investigation, the samples tempered at different temperatures were examined by XRD and 3PAP (three di- mensional atom probe) analysis. Results show that the improvement is contributed mainly by the precipitation of Cu phase and transformation of residual austenite. A new design of copper-bearing non-quenched plastic mold steel is presented and explained. Two kinds of microstrueture can be obtained from this new type copper-bearing steel via cooling with different cooling rates, bain- ite and a mixed microstructure consisting of ferrite and bainite. It is found that, after proper tempering process, the hardness will be increased. Moreover, the hardness difference between different microstructures will be reduced. For further investigation, the samples tempered at different temperatures were examined by XRD and 3PAP (three di- mensional atom probe) analysis. Results show that the improvement is contributed mainly by the precipitation of Cu phase and transformation of residual austenite.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2012年第12期53-58,共6页 钢铁研究学报(英文版)
基金 Sponsored by National Key Technology Research and Development Program in 11th Five-Year Plan of China(2007BAE51B04)
关键词 plastic mould steel tempering process Cu precipitation residual austenite plastic mould steel tempering process Cu precipitation residual austenite
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