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Microstructure, mechanical properties and thermal shock resistance of nano-TiN modified TiC-based cermets with different binders

机译:含不同粘合剂的纳米TiN改性TiC基金属陶瓷的组织,力学性能和抗热震性

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摘要

Microstructure, mechanical properties and thermal shock resistance of TiC-based cermets modified by nano-TiN were studied. The highest transverse rupture strength, fracture toughness and hardness were obtained for the cermets with the compositions 14Mo-20Ni (cermet A), 4Mo- 10Co-10Ni (cermet B) and 4Mo-20Co (cermet C), respectively. The quenching-strength method and indentation-quench method were used for studying the thermal shock resistance of nano-TiN modified TiC-based cermets. The results of quenching-strength test denote that the critical temperature differences for sharp decline of residual strength are about 410, 370 and 330 deg C for cermets A, B and C, respectively. The results of indentation-quench test show that the micro crack length increases and the micro cracks propagate fast with increasing thermal shock temperature and cycles. The propagation rate of the crack is controlled by the stress intensity of crack tip. Both tests show that cermets with high transverse rupture strength have excellent thermal shock resistance. Thermal shock resistance parameter R and R_(st) calculated are in good agreement with the experimental results.
机译:研究了纳米TiN改性的TiC基金属陶瓷的组织,力学性能和抗热震性。对于分别具有14Mo-20Ni(金属陶瓷A),4Mo-10Co-10Ni(金属陶瓷B)和4Mo-20Co(金属陶瓷C)的金属陶瓷,获得了最高的横向断裂强度,断裂韧性和硬度。采用淬火强度法和压痕淬火法研究了纳米TiN改性TiC基金属陶瓷的耐热冲击性能。淬火强度测试的结果表明,金属陶瓷A,B和C的残余强度急剧下降的临界温度差分别约为410、370和330℃。压痕-淬火试验结果表明,随着热冲击温度和循环次数的增加,微裂纹的长度增加,微裂纹快速扩展。裂纹的扩展速率受裂纹尖端的应力强度控制。两项测试均表明,具有高横向断裂强度的金属陶瓷具有出色的抗热震性。计算得出的抗热震参数R和R_(st)与实验结果吻合良好。

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