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首页> 外文期刊>Trends in Ecology & Evolution >Ultrafine Grain Tungsten Heavy Alloys with Excellent Performance Prepared by Spark Plasma Sintering
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Ultrafine Grain Tungsten Heavy Alloys with Excellent Performance Prepared by Spark Plasma Sintering

机译:超细籽粒钨重合金,具有优异的火花等离子体烧结制备的优异性能

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摘要

Ultrafine grain tungsten heavy alloys (WHAs) were successfully produced from the nanocrystalline powders using spark plasma sintering. The present study mainly discussed the effects of sintering temperature on the density, microstructure and mechanical properties of the alloys. The relative density of 98.12% was obtained at 1 050 degrees C, and the tungsten grain size is about 871 nm. At 1 000 degrees C-1 200 degrees C, the mechanical properties of the alloys tend to first rise and then goes down. After SPS, the alloy exhibits improved hardness (84.3 HRA at 1 050 degrees C) and bending strength (987.16 MPa at 1 100 degrees C), due to the ultrafine-grained microstructure. The fracture mode after bending tests is mainly characterized as intergranular or intragranular fracture of W grains, interfacial debonding of W grains-binding phase and ductile tearing of binding phase. The EDS analysis reveals a certain proportion of solid solution between W and Ni-Fe binding phase. The good mechanical properties of the alloys can be attributed to grain refinement and solid solution strengthening.
机译:使用火花等离子体烧结,从纳米晶体粉末成功生产超细籽粒钨重金属(WHAs)。本研究主要讨论了烧结温度对合金密度,微观结构和机械性能的影响。在1 050℃下获得98.12%的相对密度,钨粒径为约871nm。在1 000摄氏度C-1 200摄氏度下,合金的机械性能倾向于首先上升,然后下降。在SPS之后,由于超细颗粒的微观结构,合金具有改善的硬度(84.3HRA,在1 050℃下的1 050℃下C)和弯曲强度(在1 100℃下为987.16MPa)。弯曲试验后的断裂模式主要表征为W谷物的晶间或颈椎骨骨折,W谷物结合相的界面剥离和结合相的韧性撕裂。 EDS分析显示W和Ni-Fe结合相之间的一定比例的固溶体。合金的良好机械性能可归因于晶粒细化和固体溶液强化。

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