Li Kaidong, Ren Bo, Liu Zhongxia, Zhang Guopeng, Cai Bin, Shi Yunjia, Huang Hai
Key Laboratory of Material Physics of Ministry of Education, School of Physics, Zhengzhou University, Zhengzhou 450052, China.
Faculty of Engineering, Huanghe Science and Technology College, No. 666 Zijingshan South Road, Zhengzhou 450061, China.
Materials (Basel). 2024 May 22;17(11):2494. doi: 10.3390/ma17112494.
Negative thermal expansion (NTE) ceramics SmZnMnO (SZMO) and ZrMgMoO (ZMMO) were selected to prepare SmZnMnO-ZrMgMoO/Al-20Si (SZMO-ZMMO/Al-20Si) composites using ball milling and vacuum heating-press sintering processes in this study. The synergistic effect of the SZMO and ZMMO NTE ceramic reinforcements on the microstructure, mechanical properties, and coefficient of thermal expansion (CTE) of the composites was investigated. The results show that the processes of ball milling and sintering did not induce the decomposition of SZMO or ZMMO NTE ceramic reinforcements, nor did they promote a reaction between the Al-20Si matrix and SZMO or ZMMO NTE ceramic reinforcements. However, the excessive addition of SZMO and ZMMO NTE ceramics led to their aggregation within the composite. Adding a small amount of SZMO in combination with ZMMO effectively increased hardness and yield strength while reducing CTE in the Al-20Si alloy. The improvement in strength was primarily provided by SZMO, while the inhibition effect on CTE was primarily provided by ZMMO. An evaluation parameter denoted as α was proposed to evaluate the synergy effects of SZMO and ZMMO NTE ceramic reinforcements on the mechanical properties and CTE of the composites. Based on this parameter, among all composites fabricated, adding 2.5 vol% SZMO NTE ceramic and 10 vol% ZMMO NTE ceramic resulted in an optimal balance between CTE and strength for these composites with a compressive yield strength of 349.72 MPa and a CTE of 12.55 × 10/K, representing a significant increase in yield strength by 79.20% compared to that of Al-20Si alloy along with a notable reduction in CTE by 26.44%.
本研究选用负热膨胀(NTE)陶瓷SmZnMnO(SZMO)和ZrMgMoO(ZMMO),通过球磨和真空热压烧结工艺制备SmZnMnO-ZrMgMoO/Al-20Si(SZMO-ZMMO/Al-20Si)复合材料。研究了SZMO和ZMMO NTE陶瓷增强体对复合材料微观结构、力学性能和热膨胀系数(CTE)的协同作用。结果表明,球磨和烧结过程未引起SZMO或ZMMO NTE陶瓷增强体的分解,也未促进Al-20Si基体与SZMO或ZMMO NTE陶瓷增强体之间的反应。然而,过量添加SZMO和ZMMO NTE陶瓷导致它们在复合材料中聚集。将少量SZMO与ZMMO结合添加有效地提高了Al-20Si合金的硬度和屈服强度,同时降低了CTE。强度的提高主要由SZMO提供,而对CTE的抑制作用主要由ZMMO提供。提出了一个评估参数α来评估SZMO和ZMMO NTE陶瓷增强体对复合材料力学性能和CTE的协同作用。基于该参数,在所有制备 的复合材料中,添加2.5 vol%的SZMO NTE陶瓷和10 vol%的ZMMO NTE陶瓷可使这些复合材料的CTE和强度达到最佳平衡,其压缩屈服强度为349.72 MPa,CTE为12.55×10/K,与Al-20Si合金相比,屈服强度显著提高了79.20%,同时CTE显著降低了26.44%。