[1] 李少博,坚增运,许军锋,等.Al-Si合金的成分和其凝固收缩率与摩尔体积的关系[J].铸造,2015,64(7):609-614. LI S B, JIAN Z Y, XU J F, et al. The relationship of chemical compositions, solidification shrinkage and molar volume of Al-Si alloys[J]. Foundry, 2015, 64(7): 609-614 (in Chinese). [2] 陈举飞,崔学敏,彭小燕,等.铝硅高温相变储热材料显微组织与储热性能研究[J].湖南有色金属,2013,29(2):51-54. CHEN J F, CUI X M, PENG X Y, et al. Research on the microstructure and property of aluminum-silicon high-temperature phase transformation thermal storage materials[J]. Hunan Nonferrous Metals, 2013, 29(2): 51-54 (in Chinese). [3] 解立川,彭超群,王日初,等.高硅铝合金电子封装材料研究进展[J].中国有色金属学报,2012,22(9):2578-2587. XIE L C, PENG C Q, WANG R C, et al. Research progress of high aluminum-silicon alloys in electronic packaging[J]. The Chinese Journal of Nonferrous Metals, 2012, 22(9): 2578-2587 (in Chinese). [4] 张仁元,孙建强,柯秀芳,等.Al-Si合金的储热性能[J].材料研究学报,2006,20(2):156-160. ZHANG R Y, SUN J Q, KE X F, et al. Heat storage properties of Al-Si alloy[J]. Chinese Journal of Materials Research, 2006, 20(2): 156-160 (in Chinese). [5] WANG Z Y, WANG H, LI X B, et al. Aluminum and silicon based phase change materials for high capacity thermal energy storage[J]. Applied Thermal Engineering, 2015, 89: 204-208. [6] 孙玉成,郑洪亮,吴淑霞,等.铝硅合金潜热变化规律的DSC分析[J].山东大学学报(工学版),2011,41(5):132-137. SUN Y C, ZHENG H L, WU S X, et al. DSC analysis for latent heat of the aluminum-silicon alloy[J]. Journal of Shandong University (Engineering Science), 2011, 41(5): 132-137 (in Chinese). [7] 杜宇雷,原 光,欧园园,等.雾化气体压强对2A14铝合金粉末形貌和粒度分布的影响[J].徐州工程学院学报(自然科学版),2015,30(1):9-13. DU Y L, YUAN G, OU Y Y, et al. Effects of atomizing gas pressure on morphology and size distribution of 2A14 aluminum alloy powders[J]. Journal of Xuzhou Institute of Technology (Natural Sciences Edition), 2015, 30(1): 9-13 (in Chinese). [8] 华建社,王建宏,陈海波,等.粉煤灰制备高温复合相变蓄热材料的可行性研究[J].热加工工艺,2013,42(12):96-98+101. HUA J S, WANG J H, CHEN H B, et al. Availability of preparation process of high temperature fly ash based phase change composite[J]. Hot Working Technology, 2013, 42(12): 96-98+101 (in Chinese). [9] 朱桂花,吕 硕,韩金鹏,等.球形粉煤灰基高温定形复合相变蓄热材料的制备与性能[J].煤炭转化,2018,41(2):73-79. ZHU G H, LYU S, HAN J P, et al. Preparation and properties of spherical fly ash based form-stable composite phase change material for high temperature thermal storage[J]. Coal Conversion, 2018, 41(2): 73-79 (in Chinese). [10] 韩金鹏,朱桂花,吕 硕,等.相变介质粒径对粉煤灰基高温定形复合相变材料蓄热性能的影响[J].煤炭转化,2019,42(1):78-86. HAN J P, ZHU G H, LYU S, et al. Effects of particle size of phase change medium on thermal storage performance of fly ash-based high temperature formstable composite phase change material[J]. Coal Conversion, 2019, 42(1): 78-86 (in Chinese). [11] 关江哲,朱桂花,吕 硕,等.氧化钙对金属/粉煤灰基高温定形复合相变材料蓄热性能的影响[J].硅酸盐通报,2020,39(9):3008-3013+3022. GUAN J Z, ZHU G H, LYU S, et al. Effect of calcium oxide on thermal storage performance of metal/fly ash-based high temperature form-stable composite phase change material[J]. Bulletin of the Chinese Ceramic Society, 2020, 39(9): 3008-3013+3022 (in Chinese). [12] 王建宏.粉煤灰基高温复合相变蓄热材料的制备与性能研究[D].西安:西安建筑科技大学,2013:29-30. WANG J H. Study on preparation and properties of high temperature fly ash base phase change heat storage composite materials[D]. Xi’an: Xi’an University of Architecture and Technology, 2013: 29-30 (in Chinese). [13] 李 稳.粉煤灰陶瓷复合材料的制备工艺研究[D].郑州:郑州大学,2014:15. LI W. Study on the preparation of ceramics from fly ash[D]. Zhengzhou: Zhengzhou University, 2014: 15 (in Chinese). [14] 魏朋义,傅恒志.熔体温度对快凝Al-Si过共晶合金条带微观组织及性能的影响[J].金属学报,1996,32(8):817-822. WEI P Y, FU H Z. Effects of melt temperatures on microstructure and mechanical properties of rapidly solidified Al-(14%-18%)Si ribbons[J]. Acta Metallrugica Sinica, 1996, 32(8): 817-822 (in Chinese). [15] 张适阔.铝合金高温储热材料相变储热机理研究[D].武汉:武汉理工大学,2009:11. ZHANG S K. Study on the mechanism of latent heat storage in high-temperature phase change aluminum alloy[D]. Wuhan: Wuhan University of Technology, 2009: 11 (in Chinese). [16] 长崎诚三,平林真.二元合金状态图集[M].刘安生,译.北京:冶金工业出版社,2004:36. CHANG Q C S, PING L Z. Atlas of binary alloy state[M].LIU A S, translate. Beijing: Metallurgical Industry Press, 2004: 36 (in Chinese). [17] 胡加瑞,谢国胜,谢 亿,等.相变储能铝合金的组织及储热性能研究[J].矿冶工程,2013,33(3):110-112+116. HU J R, XIE G S, XIE Y, et al. Research on microstructure and thermal storage properties of phase change energy storage Al alloys[J]. Mining and Metallurgical Engineering, 2013, 33(3): 110-112+116 (in Chinese). [18] 邬小萍,聂俊辉.快速凝固高硅铝合金加热过程中的组织转变[J].金属热处理,2020,45(5):45-50. WU X P, NIE J H. Microstructure transformation of rapidly solidified high-silicon aluminum alloy during heating process[J]. Heat Treatment of Metals, 2020, 45(5): 45-50 (in Chinese). [19] 张 静,涂伟萍,夏正斌.聚乙烯醇改性研究进展[J].合成纤维工业,2005,28(1):57-60. ZHANG J, TU W P, XIA Z B. Research progress in polyvinyl alcohol modification[J]. China Synthetic Fiber Industry, 2005, 28(1): 57-60 (in Chinese). [20] 张 林,边秀房,马家骥.铝硅合金的液相结构转变[J].铸造,1995,44(10):7-12 ZHANG L, BIAN X F, MA J J. Microstructural transformation of Al-Si alloy in the liquid state[J]. Foundry, 1995, 44(10): 7-12 (in Chinese). |