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1)  zinc–aluminum coating
锌-铝涂层
2)  Zn-Al coating
锌铝涂层
1.
The preparation of non-chromium Zn-Al coating(non-chromium dacromet coating)as well as its anti-corrosion mechanism,characteristics and current status are introduced.
介绍了无铬锌铝涂层(无铬达克罗涂层)制备工艺、耐蚀机理、性能特点及国内外发展现状,对比了无铬锌铝涂层和传统达克罗涂层的特点,指出随着环保要求的提高无铬锌铝涂层将最终取代达克罗涂层。
3)  aluminum zinc coating
铝锌涂层
1.
Arc spraying aluminum and aluminum zinc coatings on steel surface were investigated using dynamic corrosion experiment.
对钢铁基体表面电弧喷涂铝及铝锌涂层进行了动态腐蚀实验 ,以失质量法计算了腐蚀速度 ,并探讨了腐蚀机理。
4)  zinc-aluminum coating
锌铝涂层
1.
Influence of heat diffusion on the interface microstructure and properties of zinc-aluminum coating on magnesium alloy;
热扩散对镁合金锌铝涂层界面组织和性能的影响
2.
Application of silane in zinc-aluminum coatings;
硅烷在锌铝涂层中的应用
3.
A protecting layer of zinc-aluminum coating on the surface of AZ91D magnesium alloy was obtained by thermal spraying.
在AZ91D镁合金表面采用热喷涂工艺制备了锌铝涂层;为提高涂层与基体的结合强度,用热扩散处理以使涂层与基体间形成冶金结合,考察了热扩散温度和时间对涂层性能的影响。
5)  sintered zinc-aluminum coating
热烧结锌铝涂层
1.
The main factors having significant effects on the properties of sintered zinc-aluminum coatings were quantitatively investigated using uniform mixing design method.
采用混料均匀设计的方法对影响热烧结锌铝涂层性能的5个主要因素进行了研究,建立了回归方程描述涂层性能与各因素之间的关系,并借助UD5。
2.
In this paper the preparation process, the formation mechanism, the corrosion resistance mechanism of sintered zinc-aluminum coating and the study methods of coating failure process are introduced.
热烧结锌铝涂层技术主要应用于紧固件的防腐,自从问世以来就得到了迅速的发展。
6)  zinc/aluminium based corrosion resistance coating
锌铝基耐蚀涂层
1.
To solve the performance problems, low hardness and poor wear resistance and antifriction, of the zinc/aluminium based corrosion resistance coating at the special high speed and large friction service conditions, a trial adding diamond particles into the coating was made to enhance the coating properties.
为解决锌铝基耐蚀涂层在高速、强摩擦等特殊服役条件下硬度低、耐磨减摩性能差等问题,尝试通过添加金刚石粒子对其进行强化。
2.
To solve the used problem of the Zinc/Aluminium based corrosion resistance coating under the special high speed and large friction service conditions, a trial adding SiC nanoparticles into the coating was made to increase the coating hardness and strength.
为解决锌铝基耐蚀涂层在高速、强摩擦等特殊服役条件下的使用问题,探索性地添加SiC纳米粒子对锌铝基耐蚀涂层进行改性,以提高涂层的硬度和强度。
补充资料:氟碳涂层铝合金装饰板制成的铝合金幕墙建筑物


氟碳涂层铝合金装饰板制成的铝合金幕墙建筑物


J氟碳涂层铝合金装饰板制成的铝合金幕墙建筑物
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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