1) high speed jet electrodeposition
高速电喷镀
1.
Microstructure and properties of high speed jet electrodeposition nanocomposite coatings;
高速电喷镀纳米复合镀层组织与性能研究
2.
Nano PTFE in Ni composite coatings by high speed jet electrodeposition
纳米PTFE粒子细化高速电喷镀镍基复合镀层的组织
3.
Research status on high speed jet electrodeposition nano PTFE composite coatings was reviewed with focuses on the principle and characteristics of the technique,the effects of jet speed and current density on deposition speed were studied.
综述了高速电喷镀制备纳米PTFE复合镀层的研究情况,着重阐述了该技术的基本原理和特点,重点探讨了喷射速度、电流密度等工艺参数对沉积速度的影响,并介绍了纳米PTFE的合成工艺以及表面改性的可行性,展望了高速电喷镀纳米PTFE复合镀层的应用前景。
2) high speed electroplating
高速电镀
1.
To search for a high speed electroplating Sn and Sn alloy technology with low cost, low corrosive and low pollution, the Sn and Sn\|Cu alloy coatings were deposited on copper wire of 0.
为了寻找低成本、低腐蚀、低污染高速电镀锡、锡铜合金工艺 ,在含光亮剂、柔软剂DL0 1、0 2、0 3的硫酸槽中在不同的电流密度、不同的搅拌速度下 ,在Φ0 。
3) high-speed tin plating
高速电镀锡
4) high-speed galvanization
高速电镀锌
1.
Influence of technology of high-speed galvanization on roughness and micromorphology of coating;
高速电镀锌工艺对镀层粗糙度及微观形貌的影响
5) high speed continuous plating
连续高速电镀
1.
In order to improve the speed and quality of high speed continuous plating on thin metal strip,reduce the energy cost,it is very important to control the current density of metal electrodeposition and the geometric of the anode.
为了提高金属带材连续高速电镀的速度、质量和降低能耗,控制金属电沉积的电流密度和阳极形状是关键。
6) jet electroforming
喷射电镀
1.
Generally considering about the thermophysical performance parameters of the material and the heat reservoir of the laser,a rational numbered model of the laser remelted jet electroforming was build up by using finite element analysis software of ANSYS.
利用ANSYS有限元软件,综合考虑材料的热物理性能参数、激光的热源模型,建立了激光重熔喷射电镀层的数值模型。
2.
In this paper, the nanocrystalline nickel coating whose electrical source inevitably are direct and pulse current was made by jet electroforming, then remelted the coating in order to eliminate the limitations.
本文在分析纳米晶材料的优异性能的基础上,采用直流和脉冲喷射电镀方法制备了纳米晶镍镀层,再针对喷射镀层的不足,对镀层进行激光重熔,通过选择优化的重熔工艺参数,细化镀层晶粒,提高镀层的致密性,增强镀层与金属基体的结合强度。
补充资料:喷镀
分子式:
CAS号:
性质:又称热喷涂。用熔融状态的喷涂材料,以一动力装置喷涂到金属、合金、塑料、陶瓷等工件表面,形成一完整的覆盖层的技术。喷涂材料可为金属或非金属,利用热源将其熔化或软化,靠热源自身动力或外加压缩气流,将熔滴雾化或推动熔粒成喷射的粒束,以一定速度喷射到基体表面形成涂层。使用的热源有气体燃烧火争、气体放电热热、电热和激光。工件经过喷涂处理,可以提高其防腐性、耐热性和耐磨性,增加其厚度或修复尺寸等。
CAS号:
性质:又称热喷涂。用熔融状态的喷涂材料,以一动力装置喷涂到金属、合金、塑料、陶瓷等工件表面,形成一完整的覆盖层的技术。喷涂材料可为金属或非金属,利用热源将其熔化或软化,靠热源自身动力或外加压缩气流,将熔滴雾化或推动熔粒成喷射的粒束,以一定速度喷射到基体表面形成涂层。使用的热源有气体燃烧火争、气体放电热热、电热和激光。工件经过喷涂处理,可以提高其防腐性、耐热性和耐磨性,增加其厚度或修复尺寸等。
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