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工业牌号超高强铝合金LC9经过两种不同方式的预处理后,在一定的温度和应变速率范围内呈现出良好的超塑性。材料经过形变热处理(TMT)后,在最佳超塑性条件下拉伸(T_(TMT)=515℃,ε_(TMT)=1.66×10~(-3)s~(-1)),获得很高的延伸率δ_(TMT)=1300%,低的流变应力σ_(TMT)=1.7MPa和高的应变速率敏感性指数m_(TMT)=0.66。经过简单锻造预处理后,在最佳超塑条件下(T_f=405℃、ε_f=1.66×10~(-3)s~(-1)),材料仍能获得δ_(f)=380%、σ_(f)=16MPa、m_(f)=0.3。TMT预处理中,η相粒子分布状态对获取微细组织起着决定性作用,η相的回溶降低了材料的空洞敏感性,抑制试样早期断裂。经过两种方式预处理的试样超塑性断裂形式分别为空洞型失稳断裂和颈缩型稳定断裂。 相似文献
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《中国航空学报》2021,34(6):125-140
Ultrasonic vibration-assisted ELID (UVA-ELID) grinding is utilized as a novel and highly efficient processing method for hard and brittle materials such as ceramics. In this study, the UVA-ELID grinding ZTA ceramics is employed to investigate the influence of thermomechanical loading on the characteristics of oxide film. Based on the fracture mechanics of material, the model of internal stress for oxide film damage is proposed. The thermomechanical loading is composed of mechanical force and the thermal stress generating from grinding temperature. The theoretical model is established for the mechanical force, thermal stress and internal stress respectively. Then the finite element analysis method is used to simulate the theoretical model. The mechanical force and grinding temperature is measured during the actual grinding test. During the grinding process, the effect of grinding wheel speed and grinding depth on the thermomechanical force and the characteristics of oxide film is analyzed. Compared with the conventional ELID (C-ELID) grinding, the mechanical force decreased by 25.6% and 22.4% with the increase of grinding wheel speed and grinding depth respectively, and the grinding temperature declined by 10.7% and 12.8% during the UVA-ELID grinding. The thermal stress in the latter decreased by 16.3% and 20.8% respectively, and internal stress reduced by 12.3% and 15.6%. It was experimentally found that the topographies of oxide layer on the surface of the wheel and the machined surface in the latter was better than that in the former. The results indicate that the action of ultrasonic vibration establish a significant effect on the processing. Subsequently, it should be well considered for future reference when processing the ZTA ceramics. 相似文献
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