中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2014年
6期
1494-1503
,共10页
Al-9Ni-15Si复合材料%初生Al3Ni/Si%硬度%耐磨性%离心铸造%显微组织%性能
Al-9Ni-15Si複閤材料%初生Al3Ni/Si%硬度%耐磨性%離心鑄造%顯微組織%性能
Al-9Ni-15Si복합재료%초생Al3Ni/Si%경도%내마성%리심주조%현미조직%성능
Al-9Ni-15Si composite%primary Al3Ni/Si%hardness%wear resistance%centrifugal casting%microstructure%property
采用离心铸造方法在不同工艺条件下制备 Al-9Ni-15Si 复合材料筒状零件,研究不同工艺成形铸件沿径向方向和垂直于轴向方向的微观组织特征,测试不同工艺成形铸件的硬度及耐磨性能。结果表明:Al-9Ni-15Si复合材料铸件形成了外层聚集了大量自生初生Al3Ni/Si颗粒、内层含有较多的初生Si/Al3Ni颗粒以及中间层不含颗粒的3层组织。随着浇注温度和模具温度的升高,铸件外、内层颗粒的体积分数逐渐增加,其硬度值逐渐增大,而体积磨损量逐渐减少。在离心场中,Al3Ni的离心运动和Si的向心漂移是形成Al-9Ni-15Si复合材料3层组织的主要原因;而浇注温度和模具温度越高,合金的凝固时间越长,越有利于形成高体积分数的颗粒偏聚区,从而提高复合材料的力学性能。
採用離心鑄造方法在不同工藝條件下製備 Al-9Ni-15Si 複閤材料筒狀零件,研究不同工藝成形鑄件沿徑嚮方嚮和垂直于軸嚮方嚮的微觀組織特徵,測試不同工藝成形鑄件的硬度及耐磨性能。結果錶明:Al-9Ni-15Si複閤材料鑄件形成瞭外層聚集瞭大量自生初生Al3Ni/Si顆粒、內層含有較多的初生Si/Al3Ni顆粒以及中間層不含顆粒的3層組織。隨著澆註溫度和模具溫度的升高,鑄件外、內層顆粒的體積分數逐漸增加,其硬度值逐漸增大,而體積磨損量逐漸減少。在離心場中,Al3Ni的離心運動和Si的嚮心漂移是形成Al-9Ni-15Si複閤材料3層組織的主要原因;而澆註溫度和模具溫度越高,閤金的凝固時間越長,越有利于形成高體積分數的顆粒偏聚區,從而提高複閤材料的力學性能。
채용리심주조방법재불동공예조건하제비 Al-9Ni-15Si 복합재료통상령건,연구불동공예성형주건연경향방향화수직우축향방향적미관조직특정,측시불동공예성형주건적경도급내마성능。결과표명:Al-9Ni-15Si복합재료주건형성료외층취집료대량자생초생Al3Ni/Si과립、내층함유교다적초생Si/Al3Ni과립이급중간층불함과립적3층조직。수착요주온도화모구온도적승고,주건외、내층과립적체적분수축점증가,기경도치축점증대,이체적마손량축점감소。재리심장중,Al3Ni적리심운동화Si적향심표이시형성Al-9Ni-15Si복합재료3층조직적주요원인;이요주온도화모구온도월고,합금적응고시간월장,월유리우형성고체적분수적과립편취구,종이제고복합재료적역학성능。
The Al-9Ni-15Si composite tubes were prepared under different conditions by centrifugal casting. Along the radial direction and the direction perpendicular to the axial direction of the castings, the microstructure characteristics were investigated, and their hardness and wear resistance were measured. The results show that Al-9Ni-15Si composite castings form a three-layer microstructure including a large number of in-situ primary Al3Ni/Si particles in the outer layer, many primary Si/Al3Ni particles in the inner layer and few particles in the middle layer. As the pouring and mould temperatures increase, the particle volume fractions of the outer and inner layers gradually increase, the hardness values on those zones increase as well, while the volume frictions of them gradually reduce. In the centrifugal field, the centrifugal movement of Al3Ni and the centripetal drift of Si are the main reasons for the formation of the Al-9Ni-15Si composite with three layers. The higher the pouring and mold temperatures are, the longer the solidification time is, and the more beneficial to the formation of high volume fraction particle area is, thus improving the mechanical properties of the composite.