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Application of fused deposition in controlled microstructure metal-ceramic composites

机译:熔融沉积在可控微结构金属陶瓷复合材料中的应用

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Purpose - Al-alumina interconnected phase composites were processed using the direct fused deposition process. These materials with tailored microstructures can find applications as structural materials with gradient properties. Design/methodology/approach - In this process, feedstock material with fused silica as a starting material was compounded at a high shear mixer and then extruded as a filament using a single screw extruder. Extruded filaments were used with a commercial fused deposition modeler, FDM1650, to process controlled porosity green ceramic structures. Porous green ceramic preforms were subjected to binder removal and sintering cycles in furnace air. Controlled porosity sintered ceramic structures were infiltrated with Al 5052 metal by pressureless reactive metal infiltration to form an in situ Al-alumina structured composite. Findings - The main advantage for this approach is to control distribution of both metal and ceramic phases in the composite. During metal infiltration good bonding was observed between the metal and the ceramic phases. Composites were tested under both quasi-static and dynamic shock loading to evaluate their mechanical properties. Compression strength of these composites was 689 ± 95 MPa. Originality/value - This paper describes application of the direct fused deposition process for fabrication of ceramic/metal composites where both macrostructure as well as microstructure can be controlled simultaneously. The paper also focuses on one of the potential application area for 5052-Al alloy.
机译:目的-使用直接熔融沉积工艺处理Al-氧化铝互连相复合材料。这些具有定制微结构的材料可以找到具有梯度特性的结构材料。设计/方法/方法-在此过程中,将以熔融二氧化硅为起始原料的原料在高剪切混合器中混合,然后使用单螺杆挤出机挤出成长丝。挤出的长丝与商业熔融沉积建模器FDM1650一起使用,以处理受控的孔隙率生坯陶瓷结构。在炉内空气中对多孔生坯陶瓷预型件进行脱粘合剂和烧结循环。通过无压力反应性金属的渗透,用Al 5052金属渗透控制孔隙度的烧结陶瓷结构,以形成原位的Al-氧化铝结构复合材料。发现-这种方法的主要优点是可以控制复合物中金属和陶瓷相的分布。在金属渗透期间,在金属和陶瓷相之间观察到良好的结合。复合材料在准静态和动态冲击载荷下均进行了测试,以评估其机械性能。这些复合材料的抗压强度为689±95 MPa。原创性/价值-本文介绍了直接熔融沉积工艺在陶瓷/金属复合材料制造中的应用,在这种工艺中,宏观结构和微观结构均可同时控制。本文还重点研究了5052-Al合金的潜在应用领域之一。

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