| Journal of Materials Research and Technology | |
| Effect of TiB2 content on microstructure and mechanical properties of (TiB2p+B4Cp)/Al composites fabricated by microwave sintering | |
| Y.W. Yan1  G.R. Li1  Y.T. Zhao2  J.Q. Liu2  H.M. Wang3  L.P. Gao3  F. Tang4  | |
| [1] Engineering, Jiangsu University, Zhenjiang, Jiangsu Province, 212013, PR China;;School of Materials Science &Corresponding author.;;School of Materials Science & | |
| 关键词: Metal matrix composites; Microstructure; Mechanical properties; | |
| DOI : | |
| 来源: DOAJ | |
【 摘 要 】
This study demonstrates a novel method to improve the density, interface bonding strength and mechanical properties of the B4Cp/Al composites by directly adding TiB2 to the material. Specifically, the (TiB2p+B4Cp)/Al composites with different TiB2 contents were successfully fabricated by ball milling (BM) and microwave sintering (MS). The results indicate that the developed (TiB2p+B4Cp)/Al possess a clean interface, with the absence of any reaction, thus, confirming microwave sintering as one of the preferred ways to prepare the (TiB2p+B4Cp)/Al composites. On adding TiB2, the densification in the microstructure is noted to initially increase, followed by a decrease. Overall, the TiB2 and B4C particles are noted to synergistically improve the densification as well as ameliorate the interfaces and microstructure. As a result, the optimized composites exhibit the compactness and Vickers hardness as high as 94.6% and 153.42HV0.3 respectively. The highest value of the compressive strength is determined to be 578.71 MPa at 50.0%. Further, no macroscopic fracture is noted to occur after 50% compression strain.
【 授权许可】
Unknown