By means of scanning electron microscopy(SEM), energy dispersive spectrum(EDS), X-ray diffractometry(XRD) and metallographic analysis, the effects of variation of magnesium content on phase constituents of Al-Mg-Si-Cu...By means of scanning electron microscopy(SEM), energy dispersive spectrum(EDS), X-ray diffractometry(XRD) and metallographic analysis, the effects of variation of magnesium content on phase constituents of Al-Mg-Si-Cu alloys were investigated. The results indicate that the constituents formed during casting alloys are main Al1.9CuMg4.1Si3.3,Al4(MnFe)3Si2 and Mg2Si, while pure Si is only present in the alloy containing lower magnesium content. Increasing Mg content leads to increasing the amount of Mg2Si, but decreasing the amount of Al1.9CuMg4.1Si3.3 and Al4(MnFe)3Si2. During the following homogenization process, Al1.9CuMg4.1Si3.3 is completely dissolved, Al4(MnFe)3Si2 and pure Si remain unchanged. After rolling and final heat treatment, the constituents in the alloys change no longer.展开更多
采用X射线衍射(X-ray Diffraction,XRD)、29Si核磁共振(29Si Nuclear Magnetic Resonance,29Si NMR)、27Al核磁共振(27Al Nuclear Magnetic Resonance,27Al NMR)和BET氮吸附等方法研究了标准养护条件下C3A掺量对C3S-C3A复合浆体微结构...采用X射线衍射(X-ray Diffraction,XRD)、29Si核磁共振(29Si Nuclear Magnetic Resonance,29Si NMR)、27Al核磁共振(27Al Nuclear Magnetic Resonance,27Al NMR)和BET氮吸附等方法研究了标准养护条件下C3A掺量对C3S-C3A复合浆体微结构的影响。结果表明:C3A的加入可以促进C3S-C3A复合浆体的水化,释放的Al^3+可以进入C-S-H凝胶硅氧链上的桥硅氧四面体位置,形成Al掺杂C-S-H凝胶;随C3A掺量增大,复合浆体中C-S-H凝胶的Al[4]/Si和MCL增大;随养护龄期增大,Al掺杂C-S-H凝胶硅氧链上的Al[4]逐渐脱出,进入浆体并转化为Al[6],导致相同C3A掺量下的复合浆体中Al[4]相对含量下降,Al[6]相对含量增长;C3A的加入在降低复合浆体平均孔径的同时,也提高了浆体的孔隙率。展开更多
基金Project(2002AA331050) supported by Hi-tech Research and Development Program of China project(0208) supported by Science and Technology Research of Ministry of Education of China
文摘By means of scanning electron microscopy(SEM), energy dispersive spectrum(EDS), X-ray diffractometry(XRD) and metallographic analysis, the effects of variation of magnesium content on phase constituents of Al-Mg-Si-Cu alloys were investigated. The results indicate that the constituents formed during casting alloys are main Al1.9CuMg4.1Si3.3,Al4(MnFe)3Si2 and Mg2Si, while pure Si is only present in the alloy containing lower magnesium content. Increasing Mg content leads to increasing the amount of Mg2Si, but decreasing the amount of Al1.9CuMg4.1Si3.3 and Al4(MnFe)3Si2. During the following homogenization process, Al1.9CuMg4.1Si3.3 is completely dissolved, Al4(MnFe)3Si2 and pure Si remain unchanged. After rolling and final heat treatment, the constituents in the alloys change no longer.
文摘采用X射线衍射(X-ray Diffraction,XRD)、29Si核磁共振(29Si Nuclear Magnetic Resonance,29Si NMR)、27Al核磁共振(27Al Nuclear Magnetic Resonance,27Al NMR)和BET氮吸附等方法研究了标准养护条件下C3A掺量对C3S-C3A复合浆体微结构的影响。结果表明:C3A的加入可以促进C3S-C3A复合浆体的水化,释放的Al^3+可以进入C-S-H凝胶硅氧链上的桥硅氧四面体位置,形成Al掺杂C-S-H凝胶;随C3A掺量增大,复合浆体中C-S-H凝胶的Al[4]/Si和MCL增大;随养护龄期增大,Al掺杂C-S-H凝胶硅氧链上的Al[4]逐渐脱出,进入浆体并转化为Al[6],导致相同C3A掺量下的复合浆体中Al[4]相对含量下降,Al[6]相对含量增长;C3A的加入在降低复合浆体平均孔径的同时,也提高了浆体的孔隙率。