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超声表面滚压处理对AZ31B镁合金组织和性能的影响 被引量:7
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作者 耿纪龙 闫志峰 +1 位作者 张红霞 董鹏 《表面技术》 EI CAS CSCD 北大核心 2022年第1期368-375,共8页
目的研究AZ31B镁合金在超声表面滚压处理后,表面微观结构、显微硬度和表面粗糙度的变化及其在拉伸试验过程中对AZ31B镁合金内部组织的影响。方法利用超声表面滚压处理在AZ31B镁合金表面制备梯度变形层。利用X射线衍射仪、EBSD、显微硬... 目的研究AZ31B镁合金在超声表面滚压处理后,表面微观结构、显微硬度和表面粗糙度的变化及其在拉伸试验过程中对AZ31B镁合金内部组织的影响。方法利用超声表面滚压处理在AZ31B镁合金表面制备梯度变形层。利用X射线衍射仪、EBSD、显微硬度仪和表面粗糙度仪,分析试样表面的微观结构、显微硬度和表面粗糙度。对超声表面滚压处理前后试样进行拉伸试验,分析其拉伸性能和微观组织变形。结果经过9道超声表面滚压处理后,样品表层形成了厚约600μm的变形层。变形层组织呈梯度分布,分别为超细晶粒层、细粒过渡层和母材组织。随着与试样表面距离的增加,试样表面的显微硬度值为84~52HV10g。USRP试样的表面粗糙度Ra达到0.140μm。在拉伸过程中,相对于母材,超声表面滚压处理试样微观组织的变化量较少。结论相对于未处理试样,超声表面滚压处理试样的屈服强度提高了28%,显微硬度提高了40%,表面粗糙度降低了96.4%。同时,超声表面滚压处理在镁合金试样表层形成的梯度结构,在拉伸过程中降低了中心微观组织的变形。 展开更多
关键词 AZ31B镁合金 超声表面滚压处理 梯度变形 微观组织变形
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Effect of thermo-mechanical treatment on microstructure and mechanical properties of wire-arc additively manufactured Al-Cu alloy
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作者 ZHANG Tao QIN Zhen-yang +2 位作者 GONG Hai WU Yun-xin CHEN Xin 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2181-2193,共13页
Wire-arc additive manufacture(WAAM)has great potential for manufacturing of Al-Cu components.However,inferior mechanical properties of WAAM deposited material restrict its industrial application.Inter-layer cold rolli... Wire-arc additive manufacture(WAAM)has great potential for manufacturing of Al-Cu components.However,inferior mechanical properties of WAAM deposited material restrict its industrial application.Inter-layer cold rolling and thermo-mechanical heat treatment(T8)with pre-stretching deformation between solution and aging treatment were adopted in this study.Their effects on hardness,mechanical properties and microstructure were analyzed and compared to the conventional heat treatment(T6).The results show that cold rolling increases the hardness and strengths,which further increase with T8 treatment.The ultimate tensile strength(UTS)of 513 MPa and yield stress(YS)of 413 MPa can be obtained in the inter-layer cold-rolled sample with T8 treatment,which is much higher than that in the as-deposited samples.The cold-rolled samples show higher elongation than that of as-deposited ones due to significant elimination of porosity in cold rolling;while both the T6 and T8 treatments decrease the elongation.The cold rolling and pre-stretching deformation both contribute to the formation of dense and dispersive precipitatedθ′phases,which inhibits the dislocation movement and enhances the strengths;as a result,T8 treatment shows better strengthening effect than the T6 treatment.The strengthening mechanism was analyzed and it was mainly related to work hardening and precipitation strengthening. 展开更多
关键词 wire-arc additive manufacture inter-layer cold rolling thermal-mechanical treatment microstructure mechanical properties strengthening mechanism
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Dislocation density model and microstructure of 7A85 aluminum alloy during thermal deformation 被引量:10
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作者 HU Jian-liang WU Xiu-jiang +3 位作者 BO Hong JIAO Zi-teng HUANG Shi-quan JIN Miao 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第10期2999-3007,共9页
The microstructure evolution of 7A85 aluminum alloy at the conditions of strain rate(0.001−1 s^(−1))and deformation temperature(250−450°C)was studied by optical microscopy(OM)and electron back scattering diffract... The microstructure evolution of 7A85 aluminum alloy at the conditions of strain rate(0.001−1 s^(−1))and deformation temperature(250−450°C)was studied by optical microscopy(OM)and electron back scattering diffraction(EBSD).Based on the K-M dislocation density model,a two-stage K-M dislocation density model of 7A85 aluminum alloy was established.The results reveal that dynamic recovery(DRV)and dynamic recrystallization(DRX)are the main mechanisms of microstructure evolution during thermal deformation of 7A85 aluminum alloy.350−400°C is the transformation zone from dynamic recovery to dynamic recrystallization.At low temperature(≤350°C),DRV is the main mechanism,while DRX mostly occurs at high temperature(≥400°C).At this point,the sensitivity of microstructure evolution to temperature is relatively high.As the temperature increased,the average misorientation angle(θˉ_(c))increased significantly,ranging from 0.93°to 7.13°.Meanwhile,the f_(LAGBs) decreased with the highest decrease of 24%. 展开更多
关键词 hot deformation microstructure evolution dynamic recrystallization dislocation density model
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