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WCp增强球铁基复合材料模具的制备及其磨损性能
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作者 李秀兵 刘琛 方亮 《铸造技术》 EI CAS 北大核心 2005年第12期1093-1095,共3页
针对耐火砖模具的工矿特点,将复合材料设计原理和铸造技术相结合,采用复合剂技术,在普通砂型条件下制备了WCp增强球墨铸铁基表层复合材料模具,并对其三体磨粒磨损性能进行了研究.结果表明,合适的球墨铸铁基体材料的主要成分w为3.7%C、2.... 针对耐火砖模具的工矿特点,将复合材料设计原理和铸造技术相结合,采用复合剂技术,在普通砂型条件下制备了WCp增强球墨铸铁基表层复合材料模具,并对其三体磨粒磨损性能进行了研究.结果表明,合适的球墨铸铁基体材料的主要成分w为3.7%C、2.1%Si、1.0%Cu和0.3%Mn;铸件表面平整,复合层厚度均匀,可达7~9 mm,复合组织的硬度达到HRC 62以上;复合材料相对于基体材料的耐磨性提高到8以上. 展开更多
关键词 复合剂技术 合材料 磨损 球铁
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Recent key developments in isotactic polypropylene in-reactor alloy and in-reactor nanocomposite technology 被引量:1
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作者 Jinyong Dong Yawei Qin 《Science China Chemistry》 SCIE EI CAS CSCD 2016年第10期1231-1239,共9页
Alloying and nanocompositing are two most effective techniques by which isotactic polypropylene(iPP), one of the most promising polymers of the 21 st century, can be endowed with high performance for ever-demanding hi... Alloying and nanocompositing are two most effective techniques by which isotactic polypropylene(iPP), one of the most promising polymers of the 21 st century, can be endowed with high performance for ever-demanding high-end applications. Thanks to the continuous advancement of catalyst technology, the technological trend for iPP alloy and nanocomposite fabrication has been projected to be in-reactor synthesis, the performance and economic advantages of which are beyond doubt. In this paper, we review two recent key developments in the iPP in-reactor alloy and in-reactor nanocomposite technology in our laboratory that will have profound influence on the continuing development of the prestigious iPP modification art. The first is the simultaneous EPR(ethylene-propylene random copolymer) cross-linking chemistry for controlling its physical growth pattern during in-reactor alloying, which helps to remove the compositional cap on EPR that so far greatly limits the iPP in-reactor alloying technique. The second is the nanofiller support fabrication strategy for simultaneously controlling both the phase morphology of the nanofiller dispersion and the polymer particle granule morphology of synthesized nanocomposites, which resolves the critical scale-up issue surrounding the iPP in-reactor nanocompositing technique. Based on these new developments, new advancements of iPP materials are envisaged. 展开更多
关键词 isotactic polypropylene in-reactor alloy in-reactor nanocomposite key development
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