为了研究玻璃纤维增强氯氧镁水泥材料的长期强度,正确评价玻璃纤维增强氯氧镁水泥材料的耐久性能,采用SIC(Strand In Cement)试验方法,对玻璃纤维增强氯氧镁水泥材料进行了加速老化试验。利用反应动力学中的Arrhenius方程,预测出玻璃纤...为了研究玻璃纤维增强氯氧镁水泥材料的长期强度,正确评价玻璃纤维增强氯氧镁水泥材料的耐久性能,采用SIC(Strand In Cement)试验方法,对玻璃纤维增强氯氧镁水泥材料进行了加速老化试验。利用反应动力学中的Arrhenius方程,预测出玻璃纤维增强氯氧镁水泥材料在不同气候条件下的服役寿命。展开更多
Short carbon fiber reinforced AZ91D alloy (Csf/AZ91D) was fabricated by the infiltration-extrusion method. The short carbon fiber preform was infiltrated with melted AZ91D alloy under the assistant of gas pressure. Th...Short carbon fiber reinforced AZ91D alloy (Csf/AZ91D) was fabricated by the infiltration-extrusion method. The short carbon fiber preform was infiltrated with melted AZ91D alloy under the assistant of gas pressure. The extrusion processing was applied following the infiltration processing directly. The tensile property and microstructure of the Csf/AZ91D and that of the die-casting and extruded AZ91D alloy was compared. The results show that the short carbon fiber reinforced AZ91D alloy present excellent tensile property. The tensile strength and modulus of elasticity of Csf/AZ91D is about 50% and 18% higher than that of cast AZ91D alloy, respectively. The elongation to fracture of Csf/AZ91D is about 50% lower than that of AZ91D alloy.展开更多
The mechanical properties of the SiC fiber-reinforced Mg-Al metal matrix composite materials have been studied on internal microstructure by (scanning electron microscopy) SEM in-situ tensile test. The emergence and p...The mechanical properties of the SiC fiber-reinforced Mg-Al metal matrix composite materials have been studied on internal microstructure by (scanning electron microscopy) SEM in-situ tensile test. The emergence and propagation of the crack, and the fracture behavior in materials have been observed and studied. It is found that in the case of the tensile test, the crack emerged in SiC fiber initially. In the case of the strong cohesion of the fiber-metal interface, the crack propagated in the fiber, meanwhile the fibers in the neighborhood of the cracked fiber began to crack and the Mg-Al metal deformed plastically, and at last the material fractured. Otherwise the toughness of the materials grows in the case of the lower cohesion of the fiber-metal matrix interface.展开更多
文摘为了研究玻璃纤维增强氯氧镁水泥材料的长期强度,正确评价玻璃纤维增强氯氧镁水泥材料的耐久性能,采用SIC(Strand In Cement)试验方法,对玻璃纤维增强氯氧镁水泥材料进行了加速老化试验。利用反应动力学中的Arrhenius方程,预测出玻璃纤维增强氯氧镁水泥材料在不同气候条件下的服役寿命。
基金Supported by the National Natural Science Foundation of China (50575185)the Foundation of Aeronautic Science of China (05G53048)the Natural Science Foundation of Shaanxi Province (2005E23)
文摘Short carbon fiber reinforced AZ91D alloy (Csf/AZ91D) was fabricated by the infiltration-extrusion method. The short carbon fiber preform was infiltrated with melted AZ91D alloy under the assistant of gas pressure. The extrusion processing was applied following the infiltration processing directly. The tensile property and microstructure of the Csf/AZ91D and that of the die-casting and extruded AZ91D alloy was compared. The results show that the short carbon fiber reinforced AZ91D alloy present excellent tensile property. The tensile strength and modulus of elasticity of Csf/AZ91D is about 50% and 18% higher than that of cast AZ91D alloy, respectively. The elongation to fracture of Csf/AZ91D is about 50% lower than that of AZ91D alloy.
文摘The mechanical properties of the SiC fiber-reinforced Mg-Al metal matrix composite materials have been studied on internal microstructure by (scanning electron microscopy) SEM in-situ tensile test. The emergence and propagation of the crack, and the fracture behavior in materials have been observed and studied. It is found that in the case of the tensile test, the crack emerged in SiC fiber initially. In the case of the strong cohesion of the fiber-metal interface, the crack propagated in the fiber, meanwhile the fibers in the neighborhood of the cracked fiber began to crack and the Mg-Al metal deformed plastically, and at last the material fractured. Otherwise the toughness of the materials grows in the case of the lower cohesion of the fiber-metal matrix interface.