Acta Metallurgica Sinica (English Letters) ›› 2018, Vol. 31 ›› Issue (3): 245-253.DOI: 10.1007/s40195-017-0640-1
Special Issue: 2018年复合材料专辑; 2018年铝合金专辑
• Orginal Article • Previous Articles Next Articles
					
													Reza Gostariani1,2, Ramin Ebrahimi1(
), Mohsen Asadi Asadabad2, Mohammad Hossein Paydar1
												  
						
						
						
					
				
Received:2017-03-28
															
							
																	Revised:2017-05-08
															
							
															
							
																	Online:2018-03-15
															
							
																	Published:2018-03-19
															
						Reza Gostariani, Ramin Ebrahimi, Mohsen Asadi Asadabad, Mohammad Hossein Paydar. Mechanical Properties of Al/BN Nanocomposites Fabricated by Planetary Ball Milling and Conventional Hot Extrusion[J]. Acta Metallurgica Sinica (English Letters), 2018, 31(3): 245-253.
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																													Fig. 7 XRD patterns of Al/15 wt% BN nanocomposite under different conditions: a unmilling composite powders; b 300-min milling; c cold compaction and sintering
| Material | UTS (MPa) | Elongation (%) | QI (MPa) | 
|---|---|---|---|
| Unmilled pure Al | 104 | 26.0 | 316 | 
| Milled pure Al | 212 | 15.0 | 388 | 
| Al/1 wt% BN nanocomposite | 297 | 7.7 | 430 | 
| Al/2 wt% BN nanocomposite | 330 | 5.8 | 444 | 
| Al/4 wt% BN nanocomposite | 333 | 1.4 | 355 | 
Table 1 Quality index (QI) information from the tensile test of extruded samples
| Material | UTS (MPa) | Elongation (%) | QI (MPa) | 
|---|---|---|---|
| Unmilled pure Al | 104 | 26.0 | 316 | 
| Milled pure Al | 212 | 15.0 | 388 | 
| Al/1 wt% BN nanocomposite | 297 | 7.7 | 430 | 
| Al/2 wt% BN nanocomposite | 330 | 5.8 | 444 | 
| Al/4 wt% BN nanocomposite | 333 | 1.4 | 355 | 
| References | Composition | Powder preparation | Fabrication technique | Tensile strength (MPa) | Compared to matrix (%) | 
|---|---|---|---|---|---|
| [ |  Al/20 vol% BN | High-energy ball milling (20 h) | Hot press (600 °C) and hot extrusion (550 °C) | 230 | 70 | 
| [ |  Al2124/5 wt% BN | Wet mixing | Cold compaction and hot extrusion (500 °C) | 377 | -9 | 
| Al2124/10 wt% BN | 311 | -25 | |||
| Al2124/15 wt% BN | 213 | -48 | |||
| [ |  Al/Mg/5 vol% BN | - | Pressure less infiltration method | 390 | 15 | 
| Al/Mg/7.5 vol% BN | 416 | 23 | |||
| [ |  Al/4.5 wt% BN nanoparticles | Wet mixing by ultrasonic | Spark plasma sintering | 150 | 50 | 
| [ |  Al/5 wt% BN microparticles | High-energy ball milling (2 h) | Spark plasma sintering | 385 | 130 | 
| This study | Al/1 wt% BN nanoparticles | High-energy ball milling (300 min) | Cold compaction and hot extrusion (550 °C) | 297 | 40 | 
Table 2 Comparing tensile strengths of Al/BN composites in the literature with those of the present study
| References | Composition | Powder preparation | Fabrication technique | Tensile strength (MPa) | Compared to matrix (%) | 
|---|---|---|---|---|---|
| [ |  Al/20 vol% BN | High-energy ball milling (20 h) | Hot press (600 °C) and hot extrusion (550 °C) | 230 | 70 | 
| [ |  Al2124/5 wt% BN | Wet mixing | Cold compaction and hot extrusion (500 °C) | 377 | -9 | 
| Al2124/10 wt% BN | 311 | -25 | |||
| Al2124/15 wt% BN | 213 | -48 | |||
| [ |  Al/Mg/5 vol% BN | - | Pressure less infiltration method | 390 | 15 | 
| Al/Mg/7.5 vol% BN | 416 | 23 | |||
| [ |  Al/4.5 wt% BN nanoparticles | Wet mixing by ultrasonic | Spark plasma sintering | 150 | 50 | 
| [ |  Al/5 wt% BN microparticles | High-energy ball milling (2 h) | Spark plasma sintering | 385 | 130 | 
| This study | Al/1 wt% BN nanoparticles | High-energy ball milling (300 min) | Cold compaction and hot extrusion (550 °C) | 297 | 40 | 
 
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