Rare earth performance materials grow rapidly in recent years with technical progress in electronic information,autos and manufacturing industries.As the fastest devetoping functional materials,NdFeB magnets have beco...Rare earth performance materials grow rapidly in recent years with technical progress in electronic information,autos and manufacturing industries.As the fastest devetoping functional materials,NdFeB magnets have become the main force that pushes the development of whole rare earth industry.展开更多
采用熔融共混法制备了聚酰胺66/铷铁硼(PA66/Nd Fe B)复合材料,并对其熔体流变行为进行了系统研究。结果表明:PA66/Nd Fe B复合材料的表观黏度(ηa)随着剪切速率的增加而降低,为假塑性流体;ηa随着温度的升高而降低,随着Nd Fe B用量的...采用熔融共混法制备了聚酰胺66/铷铁硼(PA66/Nd Fe B)复合材料,并对其熔体流变行为进行了系统研究。结果表明:PA66/Nd Fe B复合材料的表观黏度(ηa)随着剪切速率的增加而降低,为假塑性流体;ηa随着温度的升高而降低,随着Nd Fe B用量的增加而提高;非牛顿指数(n)随着温度的升高而增大,随着Nd Fe B用量的增加而降低;熔体的黏流活化能(ΔEη)随着剪切速率的提高而增大,并逐渐趋于平缓;另外,ΔEη随着Nd Fe B用量的增加而减小,即复合材料的温敏性随着Nd Fe B用量的增加而下降。展开更多
文摘Rare earth performance materials grow rapidly in recent years with technical progress in electronic information,autos and manufacturing industries.As the fastest devetoping functional materials,NdFeB magnets have become the main force that pushes the development of whole rare earth industry.
文摘采用熔融共混法制备了聚酰胺66/铷铁硼(PA66/Nd Fe B)复合材料,并对其熔体流变行为进行了系统研究。结果表明:PA66/Nd Fe B复合材料的表观黏度(ηa)随着剪切速率的增加而降低,为假塑性流体;ηa随着温度的升高而降低,随着Nd Fe B用量的增加而提高;非牛顿指数(n)随着温度的升高而增大,随着Nd Fe B用量的增加而降低;熔体的黏流活化能(ΔEη)随着剪切速率的提高而增大,并逐渐趋于平缓;另外,ΔEη随着Nd Fe B用量的增加而减小,即复合材料的温敏性随着Nd Fe B用量的增加而下降。