1) zn-Cr-C alloy
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Zn-Cr-C合金
2) Cu-Zn-Cr alloy
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Cu-Zn-Cr合金
1.
The effects of different heat-treatment process on Cu-Zn-Cr alloy s hardness are studied.
![点击朗读](/dictall/images/read.gif)
文章通过不同的热处理工艺来研究固溶时效对Cu-Zn-Cr合金硬度的影响。
2.
Cu-Zn-Cr alloy was prepared by Ingot Metallurgy.
![点击朗读](/dictall/images/read.gif)
发现,Cu-Zn-Cr合金的强化机制包括固溶强化、形变强化及析出强化。
3.
The results show that: The first,Cu-Zn-Cr alloy is .
![点击朗读](/dictall/images/read.gif)
Cu-Zn-Cr合金是典型的时效强化型合金。
3) Cr-C alloy
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Cr-C合金
1.
The role of organic additive in electroplating process of amorphous Cr-C alloy were studied.
对有机添加剂在电沉积非晶态Cr-C合金工艺中的作用进行了研究 。
4) Zn-Cr alloy coating
![点击朗读](/dictall/images/read.gif)
Zn-Cr合金镀层
5) Zn-Al-Cr alloy coating
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Zn-Al-Cr合金镀层
1.
In order to obtain chromium containing zinc alloy coating with excellent performance,mechanical plating technologies of Zn-Cr and Zn-Al-Cr alloy coatings were developed through varying the kind and amount of activator and promoter on the basis of mechanical plating technologies of Zn and Zn-Al coatings.
利用该工艺在钢基表面获得了Zn-Cr及Zn-Al-Cr合金镀层。
6) Cu-Cr-Sn-Zn alloy
![点击朗读](/dictall/images/read.gif)
Cu-Cr-Sn-Zn合金
1.
Ageing Behavior of Rapidly Solidified Cu-Cr-Sn-Zn Alloy;
![点击朗读](/dictall/images/read.gif)
快速凝固Cu-Cr-Sn-Zn合金的时效强化研究
2.
A model of the non-linear relationship between parameters of age processes and hardness and conductivity properties of Cu-Cr-Sn-Zn alloy is established by the artificial neural network(ANN).
利用神经网络对Cu-Cr-Sn-Zn合金时效温度和时间与硬度和导电率样本集进行学习,建立了时效强化工艺BP神经网络模型。
补充资料:ZG4Cr25Ni35WNb合金中的共晶组织
ZG4Cr25Ni35WNb合金中的共晶组织
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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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