首页> 外文会议>International Symposium on Advanced Composites for Aerospace, Marine, and Land Applications >Comparing Strengthening Mechanisms of Vapor Grown Carbon Fiber vs. Titanium Carbide Reinforced Powder Metallurgy Titanium Metal Matrix Composites
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Comparing Strengthening Mechanisms of Vapor Grown Carbon Fiber vs. Titanium Carbide Reinforced Powder Metallurgy Titanium Metal Matrix Composites

机译:蒸汽种植碳纤维与碳化钛碳纤维冶金钛金属基复合材料的加固机制

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In this experiment, TILOP-45 commercially pure titanium powder was mixed with vapor grown carbon fibers (VGCF) to form a 200 g 0.5 wt. % VGCF solution. After adding 0.15 grams of cle-safe oil, a rocking mill shook the sample at 60.0 Hz for 2 hours, resulting in satisfactory dispersion of VGCF on the titanium powder surface. The powder solution was compacted by spark plasma sintering (SPS) and hot extruded. The SPS temperature was set to either 800°C or 1,000°C and the pressure to 35 kN. Using an extrusion ratio of 13:1 and ram speed of 3 mm/s, the titanium billet, preheated to either 800°C or 1,000°C, was deformed to a 10 mm diameter rod. All four permutations of SPS and extrusion temperatures were tested. Microstructure, grain size, hardness, and oxygen/nitrogen/carbon content were observed. Also, a UTS experiment was done followed by SEM observations of the fractured surfaces.
机译:在该实验中,将Tilop-45商业纯钛粉末与蒸气生长的碳纤维(VGCF)混合,形成200g 0.5wt。 %VGCF解决方案。加入0.15克的Cle-Safe油后,摇摆轧机以60.0Hz摇晃样品2小时,导致VGCF在钛粉末表面上令人满意的分散。通过火花等离子体烧结(SPS)和热挤出来压实粉末溶液。 SPS温度设定为800℃或1,000℃,压力为35kN。使用挤出比为13:1和3mm / s的RAM速度,预热至800℃或1,000℃的钛坯料变形至10mm直径的杆。测试了SPS和挤出温度的所有四种排列。观察到微观结构,粒度,硬度和氧气/氮/碳含量。此外,完成了UTS实验,然后进行了裂缝表面的SEM观察。

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