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Pulsed Electric Current Sintering of TiC-Ultimet Powders and Effect of Binder Content on Microstructure and Mechanical Properties

机译:TiC-Ultimet粉末的脉冲电流烧结及粘结剂含量对组织和力学性能的影响

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TiC-Ultimet® powders were prepared with Ultimet® (54Co-26Cr-9Ni-5Mo-3Fe-2W)contents of 12, 25, and 40 wt%, by Spex ball milling under argon atmosphere. They were compacted with pulsed electric current sintering (1473-1548 K, 5-8 min, 50 MPa). Density of the samples (Ø20, Ø25, Ø40 mm) was studied by Archimedes method. Microstructures were analyzed using optical microscopy, SEM, and XRD. Mechanical properties were studied with instrumented indentation tests. Fracture toughness was evaluated by determining K_(IC) in HV30 tests. The critical crack initiation load (P_(cr)) was measured by instrumented Vickers indentation test. Density of the samples increased with processing temperature. During processing Ultimet® was partially melted and distributed evenly among the carbides. This composite structure has high hardness of 2100-2400 HV1 independent of the Ultimet® content. Although these composites are quite brittle their ductility is better than that of pure TiC.
机译:用Ultimet®(54Co-26Cr-9Ni-5Mo-3Fe-2W)制备TiC-Ultimet®粉末 通过在氩气气氛下进行Spex球磨得到的含量为12、25和40 wt%。通过脉冲电流烧结(1473-1548 K,5-8分钟,50 MPa)将其压实。用阿基米德法研究样品的密度(Ø20,Ø25,Ø40mm)。使用光学显微镜,SEM和XRD分析微观结构。用仪器压痕试验研究了机械性能。通过在HV30测试中确定K_(IC)来评估断裂韧性。临界裂纹萌生载荷(P_(cr))通过仪器的维氏压痕测试进行测量。样品的密度随加工温度的升高而增加。在加工过程中,Ultimet®被部分熔化并均匀分布在碳化物中。与Ultimet®含量无关,这种复合结构具有2100-2400 HV1的高硬度。尽管这些复合材料非常脆,但其延展性优于纯TiC。

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