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国家自然科学基金(50401006)

作品数:3 被引量:20H指数:2
相关作者:班春燕滕莹雪崔建忠更多>>
相关机构:东北大学更多>>
发文基金:国家自然科学基金更多>>
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磁场处理对聚甲醛结晶形貌的影响被引量:2
2009年
以聚甲醛(POM)为研究对象,采用加入0.1-0.3 T的直流磁场,在聚合物熔融重结晶过程中实现对其结晶形态的改变。应用金相显微镜、差示扫描量热法(DSC)、X-射线衍射法(XRD)和红外光谱法(FT-IR)对磁场改性前后的聚甲醛样品的结构和性质进行表征。实验表明:聚甲醛(POM)在直流磁场作用下,分子链受到磁场的作用而增加了C-O-C的弯曲振动,片晶间距及片晶厚度增大,结晶度和熔点升高。
滕莹雪班春燕崔建忠
关键词:聚甲醛磁场构象红外
Laser cladding of high-entropy alloy on H13 steel被引量:16
2014年
High-entropy alloy layer up to 150 lm in thickness was formed on H13 substrate with a metallurgical bonding at the coating/substrate interface. Simple solid solution phases were formed in the coating layer with a typical microstructure composed of both dendrite and interdendrite. The microstructure at the top of the cladding zone consists of equiaxed grains while that at the bottom consists of columnar grains. The coating layer exhibits great enhancement in microhardness and wear resistance compared with the H13 substrate.
Xiao-Tao LiuWen-Bin LeiJie LiYu MaWei-Ming WangBao-Hua ZhangChang-Sheng LiuJian-Zhong Cui
关键词:MICROHARDNESS
Laser Surface Alloying of Low Carbon Steel Using High-entropy Alloy Precursors被引量:2
2016年
The Al0. 5CoCrCuFeNi high-entropy alloy powders with simple face-centered-cubic (FCC) solid solution structure were introduced into the surface layer of a low carbon steel during laser surface alloying. A high performance surface layer with extremely fine martensite as the dominant phase was obtained, resulting in a great improvement in microhardness, wear resistance, and corrosion resistance. The great enhancement of microhardness and wear resistance of the laser alloyed layer is mainly due to the formation of extremely fine martensite hard phase, the solid solution strengthening of the alloying e!.ements in supersaturated a-Fe solid solution, and the existence of size effect and strain effect under rapid solidification. The enhancement of corrosion resistance is due to the alloying of Al, Co, Ni, Cr and Cu in the laser alloyed layer.
Xiao-tao LIUWen-bin LEIQun-jiao WANGWei-ping TONGChang-sheng LIUJian-zhong CUI
关键词:HARDNESSWEARCORROSION
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