首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >The effects of TiC grain size and steel binder content on the reciprocating wear behaviour of TiC-316L stainless steel cermets
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The effects of TiC grain size and steel binder content on the reciprocating wear behaviour of TiC-316L stainless steel cermets

机译:TiC粒度和钢结合剂含量对TiC-316L不锈钢金属陶瓷往复磨损行为的影响

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摘要

TiC-based cermets are heavily utilised in applications demanding good resistance to both wear and corrosion. In the current work, TiC-stainless steel (grade 316L) cermets have been developed, with the TiC grain size varied through heat-treatment, for steel binder contents between 10 and 30 vol%. Micro structural analysis showed mean TiC grain sizes of 4 and 10 pm, respectively, for fine- and coarse grained cermets, with the grain size nominally consistent as a function of binder content. Sliding wear resistance was assessed in a reciprocating motion, using a WC-Co counter face sphere paired against the TiC cermets. Overall, the fine-grained cermets exhibit better wear resistance and hardness. The specific wear rate was seen to increase with applied load and/or binder content, for both fine- and coarse-grained materials. SEM and FIB microscopy were used to assess the microstructural changes occurring during wear. A two- to three-body abrasive wear transition was apparent, together with the formation of a surface tribolayer, which highlights a further evolution to an adhesive wear mechanism. The tribolayer showed incorporation of a high concentration of O, which increased with the applied load, together with a predominance of the binder constituents. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于TiC的金属陶瓷广泛用于要求良好的耐磨性和耐腐蚀性的应用中。在当前的工作中,已开发出TiC不锈钢(316L级)金属陶瓷,其TiC晶粒尺寸通过热处理而变化,钢粘合剂含量在10%至30%(体积)之间。微观结构分析表明,细晶粒和粗晶粒金属陶瓷的平均TiC晶粒尺寸分别为4和10 pm,名义上的晶粒尺寸与粘结剂含量有关。使用与TiC金属陶瓷配对的WC-Co配对球,以往复运动评估滑动耐磨性。总体而言,细粒金属陶瓷具有更好的耐磨性和硬度。对于细颗粒和粗颗粒材料,比磨损率随施加的载荷和/或粘合剂含量的增加而增加。 SEM和FIB显微镜用于评估磨损过程中发生的微观结构变化。两体到三体的磨料磨损过渡是显而易见的,同时表面摩擦层的形成也很明显,这突显了粘合剂磨损机理的进一步发展。摩擦层显示出掺入高浓度的O,其随所施加的载荷而增加,以及主要的粘合剂成分。 (C)2016 Elsevier B.V.保留所有权利。

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