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1)  electrodeposited nickel coating
电沉积镍镀层
1.
Residual stresses in electrodeposited nickel coating were determined from the ph curves obtained by Nano IndenterⅡ mechanical properties microprobe.
用Nano IndenterⅡ纳米显微力学探针加载得到电沉积镍镀层的载荷-位移曲线,并对镍镀层中的残余应力进行了计算。
2.
To investigate the influence of tensile deformation on the nanoindentation size effect in electrodeposited nickel coating,experiments were conduct by nanoindenter and the results were predicted by two models.
为了研究拉伸变形对电沉积镍镀层硬度尺寸效应的影响,用纳米压痕仪对变形前后的镍镀层进行了测试,并通过两种模型对其进行了预测。
3.
The electrodeposited nickel coating was deformed with different elongations and hardness,elastic modulus and creep property of nickel coating were investigated by nanoindentation.
用纳米压痕法对受不同程度拉伸变形后的电沉积镍镀层试样的硬度、弹性模量和蠕变性能进行了研究。
2)  electrodeposited nickel coating
电沉积镍涂层
1.
Finite element method was used to simulate the stamping process for electrodeposited nickel coating by using a plane model.
采用有限元方法对电沉积镍涂层钢带的冲压成形过程进行了数值模拟,得到了电沉积镍涂层在界面上的应力场、应变场等冲压成形特性。
2.
The carbon steel specimens with electrodeposited nickel coating were impacted by flat and tapered projectiles in a 57 canon barrel, and then the i.
介绍了一种在低碳钢带基体上制备电沉积镍涂层的方法 ,并研究了这种涂层的抗冲击性能。
3.
A mechanical model is proposed to study the drawing process of the steel sheet with electrodeposited nickel coating used for the battery.
对高性能电池壳用电沉积镍涂层钢板的拉延成形过程进行了研究 。
3)  electrodeposition composite coating
电沉积复合镀层
4)  nickel electrodeposition
镍电沉积
5)  electrodeposited Ni
电沉积镍
1.
Effect of Saccharin on Electrochemical Activty and Structure of Electrodeposited Ni;
糖精对电沉积镍的结构与电化学活性的影响
6)  electrodeposited nickel coating sheet
电沉积镍涂层薄板
1.
The electrodeposited nickel coating sheet is far-ranging used as battery shells for its direct forming, no post-plating and easy to achieve continuous production.
电沉积镍涂层薄板作为高性能电池的外壳,因其具有直接成形,无需后续电镀,易于实现连续化生产的特点,得到了广泛应用。
补充资料:镍-镉扩散镀层
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性质:就是先在零件上镀一层镍(12-15微米),然后在镍层上再镀一层镉(3-5微米),最后在335℃下进行1小时的扩散处理。形成镍镉金属间化合物的扩散层,熔点高,在500℃下具有良好的热稳定性,并具有良好的抗氧化性、耐热和耐蚀性。对基底材料抗应力腐蚀性能有很大提高,它适用于中温高强度钢、低合金钢和不锈钢的防护。对工作温度低于500℃的零件能提供良好的防护性能。过去这些零件采用镀镉防护,但隔层的使用温度只能在230℃以下,否则就不能起防护作用,并会引起一些材料的镉脆。改用镍镉扩散镀层,能满足防护要求。镍镉扩散镀层已应用于航空工业。

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