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激光原位合成TiN/Ti_3Al基复合涂层 被引量:40
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作者 张晓伟 刘洪喜 +1 位作者 蒋业华 王传琦 《金属学报》 SCIE EI CAS CSCD 北大核心 2011年第8期1086-1093,共8页
利用Ti与AlN之间的高温化学反应,在TC4钛合金表面激光原位合成了TiN/Ti3Al基金属间化合物复合涂层.借助XRD和SEM分析了涂层的物相组成和显微组织.结果表明,涂层主要由TiN和Ti3Al组成.当Ti与AlN摩尔比为4:2时,涂层中TiN含量随激光功率密... 利用Ti与AlN之间的高温化学反应,在TC4钛合金表面激光原位合成了TiN/Ti3Al基金属间化合物复合涂层.借助XRD和SEM分析了涂层的物相组成和显微组织.结果表明,涂层主要由TiN和Ti3Al组成.当Ti与AlN摩尔比为4:2时,涂层中TiN含量随激光功率密度的增大而减小;Ti与AIN摩尔比为4:1时,TiN含量随激光功率密度的增大而增大.TiN增强相点阵常数的精确计算显示,涂层中TiN相出现晶格畸变现象,结合EDS分析表明,TiN固溶的Al含量随功率密度的增加而减小.SEM分析表明,TiN增强体的生长形态随着激光功率密度的增大由棒状逐渐向颗粒状转变.当Ti与AlN的摩尔比为4:1,激光功率密度为15.28 kW·s·cm^(-2)时,涂层表面的宏观形貌较好,微观组织无气孔和裂纹,试样截面显微硬度自基体至涂层表面变化平缓,涂层平均显微硬度达到844 HV_(0.2),约为基体合金的3.4倍. 展开更多
关键词 激光熔覆 TiN/Ti3al基复合涂层 显微组织 原位合成
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高速电弧喷涂FeCrAl/WC复合涂层研究 被引量:5
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作者 胡军志 马世宁 +1 位作者 陈学荣 徐滨士 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2001年第12期1447-1450,共4页
将自行研制的FeCrAl/WC粉芯丝材利用高速电弧喷涂技术成功地制备出FeCrAl/WC复合涂层 .用EDS ,XRD和成分分析系统得到FeCrAl/WC涂层的组成为FeCr的质量分数约为 84% ;WC ,W2 C及少量的 (FeCr) 2 O3的Al2 O3 的质量分数约为 16 % .涂层... 将自行研制的FeCrAl/WC粉芯丝材利用高速电弧喷涂技术成功地制备出FeCrAl/WC复合涂层 .用EDS ,XRD和成分分析系统得到FeCrAl/WC涂层的组成为FeCr的质量分数约为 84% ;WC ,W2 C及少量的 (FeCr) 2 O3的Al2 O3 的质量分数约为 16 % .涂层的工艺性能和力学性能表明FeCrAl/WC复合涂层具有高结合强度、高致密度和较多氧化物的特点 .涂层的高温冲蚀性能结果表明 ,在 6 5 0℃高温环境下 ,FeCrAl/WC复合涂层的抗冲蚀磨损性能高于 2 0号钢 ,并表现出良好的全攻角冲蚀磨损抗力 ,能够解决燃煤锅炉管道的高温燃气 -飞灰高温冲蚀磨损问题 . 展开更多
关键词 高速电弧喷涂 FeCral基复合涂层 冲蚀磨损 粉芯丝材 al基复合涂层
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Improved wettability and mechanical properties of metal coated carbon fiber-reinforced aluminum matrix composites by squeeze melt infiltration technique 被引量:11
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作者 Jian-jun SHA Zhao-zhao LÜ +6 位作者 Ru-yi SHA Yu-fei ZU Ji-xiang DAI Yu-qiang XIAN Wei ZHANG Ding CUI Cong-lin YAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第2期317-330,共14页
In order to improve the wettability and bonding performance of the interface between carbon fiber and aluminum matrix,nickel-and copper-coated carbon fiber-reinforced aluminum matrix composites were fabricated by the ... In order to improve the wettability and bonding performance of the interface between carbon fiber and aluminum matrix,nickel-and copper-coated carbon fiber-reinforced aluminum matrix composites were fabricated by the squeeze melt infiltration technique.The interface wettability,microstructure and mechanical properties of the composites were compared and investigated.Compared with the uncoated fiber-reinforced aluminum matrix composite,the microstructure analysis indicated that the coatings significantly improved the wettability and effectively inhibited the interface reaction between carbon fiber and aluminum matrix during the process.Under the same processing condition,aluminum melt was easy to infiltrate into the copper-coated fiber bundles.Furthermore,the inhibited interface reaction was more conducive to maintain the original strength of fiber and improve the fiber−matrix interface bonding performance.The mechanical properties were evaluated by uniaxial tensile test.The yield strength,ultimate tensile strength and elastic modulus of the copper-coated carbon fiber-reinforced aluminum matrix composite were about 124 MPa,140 MPa and 82 GPa,respectively.In the case of nickel-coated carbon fiber-reinforced aluminum matrix composite,the yield strength,ultimate tensile strength and elastic modulus were about 60 MPa,70 MPa and 79 GPa,respectively.The excellent mechanical properties for copper-coated fiber-reinforced composites are attributed to better compactness of the matrix and better fiber−matrix interface bonding,which favor the load transfer ability from aluminam matrix to carbon fiber under the loading state,giving full play to the bearing role of carbon fiber. 展开更多
关键词 carbon fiber metal matrix composite Cf/al composite COATING WETTABILITY mechanical properties
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