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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Laser deposition-additive manufacturing of in situ TiB reinforced titanium matrix composites: TiB growth and part performance
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Laser deposition-additive manufacturing of in situ TiB reinforced titanium matrix composites: TiB growth and part performance

机译:激光沉积 - 添加剂制造原位TIB增强钛基质复合材料:TIB生长和部分性能

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摘要

Ceramic reinforced Ti matrix composites (TMCs) have been widely used under severe friction and heavy loading conditions due to their superior properties. Among different types of ceramic reinforcements, TiB is considered as one of the most suitable ceramic reinforcement materials for TMCs because of its high strength and stiffness, excellent interfacial bonding with Ti matrix, and low induced stress. As a laser additive manufacturing process, laser deposition-additive manufacturing (LD-AM) has been successfully utilized to fabricate Ti-based materials. However, investigations on LD-AM of in situ TiB reinforced TMCs are limited. This investigation, for the first time, reports the tomography analysis of TiB reinforcement within Ti matrix and the formation of novel flower-like microstructure. The influences of reaction energy on part performance have been explored. In addition, the effects of input fabrication variables (including laser power and Z-axis increment) on part performance (including density, microhardness, and compressive properties) have been investigated, providing guidance on selection of input fabrication variables for future research.
机译:由于其优异的特性,陶瓷增强Ti基质复合材料(TMCs)已被广泛应用于严重的摩擦和重载条件下。在不同类型的陶瓷增强件中,由于其高强度和刚度,与Ti基质的高强度,优异的界面键合,并且低诱导应力,Tib被认为是TMCs的最合适的陶瓷增强材料之一。作为激光添加剂制造工艺,已成功地利用激光沉积添加剂制造(LD-AM)来制造基于TI的材料。但是,对原位TIB增强TMC的LD-AM的调查有限。这是首次报告TI基质内TIB加固的断层扫描分析以及新颖的花样微观结构的地层分析。探讨了反应能量对部件性能的影响。另外,已经研究了输入制造变量(包括激光功率和Z轴增量)对部件性能(包括密度,微硬度和压缩性能)的影响,为未来研究选择输入制造变量的选择提供指导。

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