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基于感应热处理技术的铝合金功能梯度涂层性能分析
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作者 陈红艳 《山西冶金》 2025年第9期33-35,共3页
为提高铝合金的使用寿命,减少其摩擦损伤,提出了基于感应热处理技术的铝合金功能梯度涂层。该研究以H13钢为基体材料,首先采用电镀技术在其表面沉积Ni层,然后将铝粉与聚乙烯醇溶液混合并涂覆于试样表面进行渗Al处理,构建多层结构,最后... 为提高铝合金的使用寿命,减少其摩擦损伤,提出了基于感应热处理技术的铝合金功能梯度涂层。该研究以H13钢为基体材料,首先采用电镀技术在其表面沉积Ni层,然后将铝粉与聚乙烯醇溶液混合并涂覆于试样表面进行渗Al处理,构建多层结构,最后通过感应热处理优化涂层的微观结构和性能。实验结果显示,在硬度方面,该涂层经过7 min热处理后,硬度分布呈现先下降后上升的趋势,其中NixAly层硬度(HV0.01)最高,超过640;耐磨性方面,功能梯度涂层的磨损量显著低于未涂层基体和单一Ni涂层,三者分别为0.000 5 g、0.001 g和0.004 g;摩擦系数方面,功能梯度涂层的摩擦系数约为0.45,显示出较好的减摩性能。上述结果表明,感应热处理技术是一种有效的方法,能够在铝合金表面形成具有优异耐磨和耐蚀性能的功能梯度涂层。 展开更多
关键词 感应热处理 铝合金 功能梯度涂层 摩擦损伤
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In Vivo Testing of Canine Prosthetic Femoral Components with HA-Ti Ladder-type Coating on Vacuum Plasma-sprayed Ti Substrate
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作者 曾宪林 李景峰 +2 位作者 杨述华 郑启新 邹枕玮 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2013年第4期543-550,共8页
Summary: The purpose of the present study was to observe the structure and functional change of the bone-coating-prosthesis interface in vivo and to evaluate the histocompatibility of self-made prosthetic femoral com... Summary: The purpose of the present study was to observe the structure and functional change of the bone-coating-prosthesis interface in vivo and to evaluate the histocompatibility of self-made prosthetic femoral components in the body and the degree of their bonding with the surrounding bone tissues as well as their stability. Six mature beagle dogs underwent bilateral hip replacement with prosthetic femur components. Three groups were established in terms of different coating of prothesis (four joints in each group): atmosphere (A) plasma-sprayed pure titanium (Ti) prosthetic joint with hydroxyapatite (HA) coating (HA+Ti+A group); vacuum (V) plasma-sprayed pure Ti prosthetic joint with HA coating (HA+Ti+V group); vacuum plasma-sprayed pure Ti prosthetic joint with Ti-HA stepped coating (Ti+HAG+Ti+V group). The hip joints were functionally evaluated, and subjected to X-ray examination, biomechanics inspection, and histological examination. As a result, X-ray imaging revealed all prosthetic joints were in a good location and no dislocation of joint was found. Shear strength of interface was significantly higher in Ti+HAG+Ti+V group than in HA+Ti+V group (P〈0.05) and HA+Ti+A group (P〈0.05) at 28th week. Histological examination showed the amount of newborn bone in Ti+HAG+Ti+V group was more than in HA+Ti+V group and HA+Ti+A group after 28 weeks. It was suggested that vacuum plasma-sprayed pure Ti prosthetic joint with TI-HA stepped coating could improve the bonding capacity of bone-prosthesis, enhance the stability of prosthesis, and increase the fixion of prosthetic femoral components because of better bone growth. This new type of biological material in prosthetic femoral components holds promises for application in clinical practice. 展开更多
关键词 hydroxyapatite titanium ladder-type coatingi laip prosthesis bone-interface
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