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Influence of ZrB_2 Particles on Dry Sliding Wear Behaviour of AA7075/ZrB_2 In-Situ Composites

机译:ZRB_2颗粒对AA7075 / ZRB_2原位复合材料干式滑动行为的影响

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AA7075/ZrB_2 Aluminium Matrix Composites (AMCs) were successfully fabricated using the in-situ fabrication method. The inorganic salts (K_2ZrF_6 and KBF_4) reacted with molten aluminium at 900°C and formed ZrB_2 inside the melt itself. AMC castings were obtained in different volume fractions (0, 3, 6 and 9%) of ZrB_2. The dry sliding wear behaviour of AA7075/ZrB_2 in-situ AMCs was evaluated using pin-on-disc wear apparatus. The wear experiments were executed as per Design of Experiments (DoE). The effect of wear parameters such as sliding velocity, sliding distance, content of ZrB_2 and normal load on wear rate was analyzed. It was evident that ZrB_2 particles influenced the wear resistance of fabricated AMCs. The worn surfaces revealed an increase in number of cracks when sliding velocity, sliding distance and normal load increased. The worn surface of AA7075/ZrB_2 AMCs was observed using Field Emission Scanning Electron Microscopy (FESEM). The wear rate was decreased and the corresponding wear resistance was increased when the volume fraction of ZrB_2 particles increased in the fabricated AMCs.
机译:AA7075 / ZRB_2铝基基复合材料(AMCS)使用原位制造方法成功制造。无机盐(K_2ZRF_6和KBF_4)在900℃下与熔融铝反应,并在熔体本身内形成ZrB_2。在不同体积级分(0,3,6和9%)的ZrB_2中获得了AMC铸件。使用针盘式磨损装置评估AA7075 / ZRB_2原位AMC的干滑动磨损行为。根据实验(DOE)的设计执行磨损实验。分析了诸如滑动速度,滑动距离,ZRB_2含量和磨损率正常负荷的磨损参数的效果。显然是ZrB_2颗粒影响了制造的AMCs的耐磨性。磨损的表面揭示了滑动速度,滑动距离和正常负荷增加时的裂缝数量增加。使用现场发射扫描电子显微镜(FESEM)观察AA7075 / ZRB_2AMCs的磨损表面。当ZrB_2颗粒的体积分数在制造的AMC中增加时,磨损率降低,相应的耐磨性增加。

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