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激光熔覆制备WCp/Ni-Si-Ti复合涂层 总被引:1,自引:0,他引:1
在Ni基高温合金表面预置3种不同WC含量的Ni78Si13Ti9(at%)粉末,采用激光熔覆制备了WC和原位自生TiC复相陶瓷增强Ni3(Si,Ti)基复合涂层.利用扫描电镜、能谱分析仪和X射线衍射仪对熔覆层组织进行分析,并测量了其显微硬度.结果表明,熔覆层与基体呈冶金结合,熔覆层组织主要由Ni(Si)固溶体、Ni3(Si,Ti)金属间化合物和WC-TiC复相陶瓷组成.随WC添加量增加,涂层中复相陶瓷含量增多;孔隙率增大;碳化物形态演变历程为不规则状、花瓣状以及不规则状和花瓣状共存. 相似文献
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Ti3Al基金属间化合物变形行为研究进展 总被引:1,自引:0,他引:1
Ti3Al基金属间化合物由于其优异的高温性能而成为一种很重要的航空材料。 相似文献
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γ-TiAl金属间化合物合金激光表面合金化组织与摩擦学性能 总被引:1,自引:0,他引:1
分别利用预涂活性碳粉和 Ti C粉 2种方法对γ-Ti Al基合金 Ti-4 8Al-2 Cr-2 Nb进行激光表面合金化,制得了无裂纹、表面光滑、内部组织致密、厚度可达 1.6mm以上的、以硬质 Ti C树枝晶为增强相的快速凝固“原位”金属基耐磨复合材料表面改性层,分别采用 OM,SEM,EDS,XRD等方法分析了激光合金化耐磨表面改性层的显微组织,分别在销 -环滑动磨损、Si C纤维刷式高速滑动磨损及微动磨损条件下评价了激光表面改性层的摩擦学性能。结果表明 :采用上述 2种方法所获激光表面合金层组织均匀、与基体间结合为完全冶金结合,合金层硬度及在 3种磨损条件下的耐磨性均大幅度提高。激光表面合金化是提高γ-Ti Al合金摩擦性能的一种很有前途的表面改性方法 相似文献
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《中国航空学报》2021,34(6):100-109
This paper evaluates the performance of creep feed grinding γ-TiAl intermetallic (Ti-45Al-2Mn-2Nb) using electroplated diamond wheels. Firstly, a comparative analysis with the grinding results by using electroplated CBN wheels was conducted, mainly involving abrasive wheel wear behavior and maximum material removal rate below surface burn limit. It was found that the diamond wheel would produce much better grinding results including lower wheel wear rate and higher maximum material removal rate. Then the surface integrity obtained at different level of material removal rate was characterized with the utilization of the diamond wheel. The poor ductility of this γ-TiAl intermetallic material was found to have a marginal effect on the surface integrity, as no severe surface defects such as material pullout were generated during the stable wheel wear stage. For the involved operating parameters, a deformation layer was produced with ∼10 μm or more in thickness depending on the material removal rate used. Meanwhile, a work-hardened layer extending to more than 100 μm was produced with a maximum microhardness of above 520 HV0.05 (bulk value 360 HV0.05). The residual stress remained compressive, with a value of above −100 MPa and even up to −500 MPa for an elevated material removal rate. Shearing chip was the main chip type, indicating good wheel sharpness in the grinding process. 相似文献
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研究了Ti-44.9Al(at-%)合金和Ti-44.3Al-3Cr(at-%)合金的室温拉伸断裂过程。结果表明,Cr提高了合金的塑性。塑性的提高与含Cr合金含有更多的γ-TiAl相和形成由细晶γ和α_2+γ细晶组成的双重组织有关。Cr促使块状α_2和β2相的形成,对阻碍γ相上的长程滑移有明显的作用。进一步细化铸态晶粒或制备具有片状α_2+γ组织的单晶合金是发展铸造α_2+γ合金的目标。 相似文献
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NiAl基金属间化合物多晶和单晶合金的力学性能研究 总被引:2,自引:0,他引:2
研究了Ni50Al30Fe20金属间化合物合金多晶和单晶室温下拉伸,Ni50Al30Fe20和Ni50Al40Ti10金属间化合物合金多晶和单晶在室温和高温下的压缩性能,以及表面镀镍处理对Ni50Al40Ti10性能的影响。 相似文献