首页> 外文期刊>Journal of Materials Engineering and Performance >Combustion Synthesis of TiB2-TiC/42CrMo4 Composites with Gradient Joint Prepared in Different High-Gravity Fields
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Combustion Synthesis of TiB2-TiC/42CrMo4 Composites with Gradient Joint Prepared in Different High-Gravity Fields

机译:不同重力场制备梯度连接TiB2-TiC / 42CrMo4复合材料的燃烧合成

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摘要

The novel TiB2-TiC/42CrMo4-laminated composite materials were successfully fabricated by combustion synthesis in different high-gravity fields. This ceramic/metal composite material possesses continuously graded composition, and multilevel gradient microstructure, which is composed of TiB2-TiC ceramic substrate, ceramic-based intermediate layer, metal-based intermediate layer, and 42CrMo4 substrate. The ceramic-based intermediate layer is the main gradient transition region in the joint which shows that the TiB2 and TiC grains decrease gradually in size and volume fraction from the ceramic substrate to metal substrate. The experiment reveals that the increased high-gravity field not only leads to the higher combustion temperature and the remarkable thermal explosion mode, but also attributes to the enhanced interdiffusion and convection between the molten steel surface and liquid TiB2-based ceramic. So, the reliable fusion bonding of TiB2-TiC/42CrMo4 composite materials is achieved. Moreover, the phase separation and forced filling effect of high-gravity field is the key to improve the densification and bond performance of the joint. The ceramic/metal joint in the continuous gradient composition and microstructure represents not only the transitional change of Vickers hardness, but also the high shear bond strength of 420 +/- A 25 MPa.
机译:通过燃烧合成在不同的高重力场中成功制备了新型的TiB2-TiC / 42CrMo4-层压复合材料。该陶瓷/金属复合材料具有连续分级的成分,并具有多级梯度微观结构,由TiB2-TiC陶瓷基板,陶瓷基中间层,金属基中间层和42CrMo4基板组成。陶瓷基中间层是接头中的主要梯度过渡区域,这表明TiB2和TiC晶粒的尺寸和体积分数从陶瓷基板到金属基板逐渐减小。实验表明,增加的高重力场不仅导致更高的燃烧温度和显着的热爆炸模式,而且归因于钢水表面与液态TiB2基陶瓷之间增强的相互扩散和对流。因此,实现了TiB2-TiC / 42CrMo4复合材料的可靠熔接。此外,高重力场的相分离和强制填充效应是提高接头的致密化和粘结性能的关键。连续梯度成分和微观结构中的陶瓷/金属接头不仅代表维氏硬度的过渡变化,而且代表了420 +/- A 25 MPa的高剪切粘结强度。

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