Doddapaneni Srinivas, Sharma Sathyashankara, Chennegowda Gowrishankar Mandya, Shettar Manjunath, Hegde Ananda
Department of Mechanical and Industrial Engineering, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal 576104, India.
Materials (Basel). 2023 May 25;16(11):3965. doi: 10.3390/ma16113965.
The study aimed to compare and analyze the mechanical property and fracture behavior of LM4 composites reinforced with TiB (1-3 wt.%) and SiN (1-3 wt.%) ceramic powders. A two-stage stir casting process was employed for the effective preparation of monolithic composites. To further enhance the mechanical properties of composites, a precipitation hardening treatment (both single (SSHT) and multistage (MSHT), followed by artificial aging at 100 and 200 °C) was conducted. From mechanical property tests, it was understood that in both the monolithic composites, the properties improved with an increase in wt.% of reinforcements, and composite samples subjected to MSHT + 100 °C aging treatment bested other treatments in terms of hardness and UTS values. Compared to as-cast LM4, there was a 32 and 150% increase in hardness and a 42 and 68% increase in UTS for as-cast and peak-aged (MSHT + 100 °C aging) LM4 + 3 wt.% TiB composites, respectively. Similarly, there was a 28 and 124% increase in hardness and a 34 and 54% increase in UTS for as-cast and peak-aged (MSHT + 100 °C aging) LM4 + 3 wt.% SiN composites, respectively. Fracture analysis of the peak-aged composite samples confirmed the mixed mode of fracture in which brittle mode was dominating.
该研究旨在比较和分析用TiB(1-3重量%)和SiN(1-3重量%)陶瓷粉末增强的LM4复合材料的力学性能和断裂行为。采用两阶段搅拌铸造工艺有效地制备了整体复合材料。为了进一步提高复合材料的力学性能,进行了沉淀硬化处理(单级(SSHT)和多级(MSHT),随后在100和200°C下进行人工时效)。从力学性能测试可知,在两种整体复合材料中,性能均随着增强体重量%的增加而提高,并且经过MSHT + 100°C时效处理的复合材料样品在硬度和UTS值方面优于其他处理。与铸态LM4相比,铸态和峰值时效(MSHT + 100°C时效)的LM4 + 3重量% TiB复合材料的硬度分别提高了32%和150%,UTS分别提高了42%和68%。同样,铸态和峰值时效(MSHT + 100°C时效)的LM4 + 3重量% SiN复合材料的硬度分别提高了28%和124%,UTS分别提高了34%和54%。峰值时效复合材料样品的断裂分析证实了断裂的混合模式,其中脆性模式占主导。