High-temperature thermal expansion properties of Al2O3,Al3Zr particulate reinforced Al-12%Si in situ matrix composites
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摘要: 以Al-12%Si和Zr(CO3)2作為反應組元,通過原位反應法制備出Al2O3,Al3Zr顆粒增強鋁硅基復合材料,通過快速凝固成型得到鑄態試樣.用熱膨脹儀測試了材料在50~500℃范圍內的膨脹位移與溫度的關系,進而得出平均線膨脹系數.結果表明:在同一溫度條件下,隨顆粒理論體積分數增加,復合材料的平均線膨脹系數減小.溫度是影響平均線膨脹系數的重要因素.當試樣溫度在50~300℃時,隨溫度增加,平均線膨脹系數逐漸增加;當試樣溫度在300~500℃時,隨溫度增加,平均線膨脹系數逐漸減小;300℃時平均線膨脹系數最大.用Rom、Turner和Kerner模型計算了理論熱膨脹系數.比較發現,實測值更接近Turner模型理論預測值.最后通過界面殘余熱應力分析指出具有高溫低膨脹性的(Al2O3+Al3Zr)p/Al-12%Si顆粒增強鋁基復合材料能有效防止材料高溫時的塑性變形.Abstract: Al-12% Si and Zr(CO3)2 were selected as reactive components to synthesize Al2O3, Al3Zr particulate reinforced Al12% Si matrix composites. The as-cast samples were got via a rapid solidifying method. The relationship between thermal expansion displacement and temperature in the range of 50 to 500℃ was tested using a thermal expansion instrument and the average linear coefficient of thermal expansion (ALCTE) was also calculated. The results show that the ALCTE decreases with the increase in theoretical volume fraction of particulates (TVFP) at the same temperature. Meanwhile temperature is an important factor to influence the ALCTE. At 50 to 300℃ the ALCTE increases gradually with the increase in temperature, while at 300 to 500℃ it decreases gradually with the increase in temperature, and the value arrives maximum at 300℃. Furthermore the theoretical ALCTE values were calculated with the Rom, Turner and Kerner models individually. The test results of ALCTE are similar to the values from the Turner model. At last it is concluded by analyzing the residual thermal stress at interfaces that the (Al2O3 + Al3Zr)p/Al-12% Si composite can prevent the materials from plastic deforming at high temperature because of its low thermal expansion.
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