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1)  electrolytic low titanium aluminium ingot
电解低钛铝锭
2)  electrolytic low-titanium aluminum
电解低钛铝
1.
The grain refining effect of Al-B master alloy on Al-Mg-Si wrought alloy made of electrolytic low-titanium aluminum was investigated.
研究了Al-B中间合金对用电解低钛铝合金制备的Al-Mg-Si变形合金的晶粒细化作用。
2.
The grain refining effects of Al-5%Ti,Al-5%Ti-1%B and Al-4%B master alloy in Al-9%Si alloys,which were prepared with pure aluminum and with electrolytic low-titanium aluminum respectively,were investigated.
分别以纯铝和电解低钛铝为母材制备Al-9%Si合金,对Al-5%Ti、Al-5%Ti-1%B和Al-4%B中间合金对纯铝制备合金的晶粒细化效果与Al-4%B对电解低钛铝制备合金的晶粒细化效果进行了对比试验研究。
3.
Three types of the Al-Si cast aluminum alloys containing different Ti content are prepared with pure aluminum,electrolytic low-titanium aluminum,Al-5% Ti master alloy and so on.
以工业纯铝、两种钛含量的电解低钛铝以及Al-5%Ti中间合金等为原料,制备了3种钛含量的Al-Si铸造铝合金。
3)  electrolytic low-titanium aluminum alloy
电解低钛铝合金
1.
Results showed that the mechanical properties of the electrolytic low-titanium aluminum alloy was superior to that of the fused alumi.
在电解低钛铝合金中,球形Mg2Si分布更为弥散、均匀。
2.
The 6063 alloys are made with electrolytic low-titanium aluminum alloys.
用电解低钛铝合金熔配6063合金,挤压成型材后,研究其微观组织与力学性能,并与国内6063型材的微观组织与力学性能做了对比。
3.
The grain refinement effect and fading behaviors of titanium added to commercial pure aluminum by electrolysis and by Al-Ti and Al-Ti-B master alloy, and added to electrolytic low-titanium aluminum alloys by Al-B master alloy were investigated through comparing experiment.
通过对比实验,研究了电解加钛与经Al Ti、Al Ti B中间合金向工业纯铝熔配加钛的晶粒细化效果及其衰退行为,以及Al B中间合金对电解低钛铝合金的晶粒细化效果及衰退行为的影响,还分析了硼对电解低钛铝合金的晶粒细化和抗衰退行为的影响。
4)  electrolytic low-titanium aluminium alloy
电解低钛铝合金
1.
The microstructure and mechanical properties of alloy ZL108 and ZL108Ti produced by the pure aluminium ingot and the electrolytic low-titanium aluminium alloy ingot respectively were studied.
研究了用纯铝锭和电解低钛铝合金锭来熔配生产ZL108Ti合金的组织及性能。
5)  Al-base alloy electrolysis liquid with low Ti content
电解低钛铝基合金液
6)  directly electrolytic producing low-titanium aluminum alloy
电解生产低钛铝合金
补充资料:钛锭

海绵钛经过进一步的熔铸得到钛锭即工业纯钛

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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