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铝基TiC–TiB2自蔓延高温合成复合涂层的组织性能研究 被引量:2
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作者 尤力 杨芳 +3 位作者 石韬 秦乾 隋延力 郭志猛 《粉末冶金技术》 CAS CSCD 北大核心 2019年第6期428-433,443,共7页
以Ti粉、石墨粉、B4C粉、聚四氟乙烯粉(polytetrafluoroethylene,PTFE)为原料,采用反应熔覆技术,结合自蔓延高温合成与真空消失模鋳造法,在ZL205A铝合金表面制备出TiC-TiB2复合涂层,研究了固溶温度对基体和TiC-TiB2涂层显微组织、硬度... 以Ti粉、石墨粉、B4C粉、聚四氟乙烯粉(polytetrafluoroethylene,PTFE)为原料,采用反应熔覆技术,结合自蔓延高温合成与真空消失模鋳造法,在ZL205A铝合金表面制备出TiC-TiB2复合涂层,研究了固溶温度对基体和TiC-TiB2涂层显微组织、硬度和热稳定性的影响,为制备高耐磨性铝合金提供新的研究方向。结果表明:Ti-C-B4C-PTFE体系的绝热温度的远大于1800 K,自蔓延高温合成反应可自发进行;通过真空消失模铸造ZL205A铝合金,引发自蔓延高温合成反应,在基体表面可形成TiC-TiB2复合涂层。固溶热处理后TiC-TiB2复合涂层表现出良好的热稳定性,硬度为HB 285,20 N载荷作用下的质量损失量为49.7 mg,相对减少了90%,大大提高了ZL205A铝合金表面的耐磨性。 展开更多
关键词 自蔓延高温合成 复合涂层 铝基 真空消失模铸造
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Microstructure and mechanical properties of friction stir welded powder metallurgy AA2024 alloy 被引量:2
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作者 HAN Wei-hao LI Pei +6 位作者 LIU Nan CHEN Cun-guang DONG Shi-peng GUO Zhi-meng YANG Fang sui yan-li VOLINSKYAlex A 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第3期871-882,共12页
The extruded plate of powder metallurgy AA2024 aluminum alloy was successfully solid-state joined by friction stir welding(FSW) to demonstrate potential applications in the aerospace and automotive industries. For det... The extruded plate of powder metallurgy AA2024 aluminum alloy was successfully solid-state joined by friction stir welding(FSW) to demonstrate potential applications in the aerospace and automotive industries. For determining the optimal processing parameters of FSW, the microstructure, mechanical properties, and fracture behavior of FSW joints were evaluated. When the processing parameters were optimized with 2000 r/min rotation speed and100 mm/min traverse speed, high quality welds were achieved. The ultimate tensile strength yield strength and elongation of the joint can reach 415 MPa(85% of the base metal strength), 282 MPa, and 9.5%, respectively. The hardness of the joint gradually decreased from the alloy matrix to the heat-affected zone. The lowest strength and hardness appeared near the heat-affected zone because of the over-aging caused by heat flow from repeated stirring during FSW. The average grain size of the stir zone(2.15 μm) was smaller than that of the base metal(4.43 μm) and the heat-affected zone(5.03 μm), whose grains had <110> preferred orientation. 展开更多
关键词 high-strength aluminum alloy powder metallurgy AA2024 alloy friction stir welding mechanical properties
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