1) melt spinning
单辊甩带法
1.
Copper-indium alloys were prepared by induction melting and were attempted to fabricate continuous uniform copper-indium alloy ribbon by means of melt spinning.
使用感应熔炼法制备Cu-In合金,并尝试使用单辊甩带法制备连续均匀的Cu-In合金薄带,利用XRD,SEM和EDS对制得的Cu-In合金进行表征。
2.
Cu-Zn-Sn alloys were prepared by induction smelting and continuous uniform Cu-Zn-Sn alloy thin tape has been fabricated by using melt spinning.
结果表明:使用单辊甩带法可以制备出成分均匀的脆性合金薄带,薄带厚度为6~10μm。
2) combining melt spinning
急冷甩带法
1.
3 thermoelectric materials were prepared by combining melt spinning technique with spark plasma sintering.
采用急冷甩带法和放电等离子体烧结(SPS)制备得到了块体Bi2Te2。
3) melt-spun
甩带
1.
The result shows two phases: Sm3 (Fe, Ti)29 and α-Fe exist in both Sm10Fe84Ti6Nx and Sm10Fe84Ti5Cu1Nx melt-spun alloys with different content of α-Fe.
通过对Sm10Fe84Ti6和Sm10Fe84Ti5Cu1两种合金采用甩带快淬、晶化、氮化等工艺处理,成功制备了Sm3(Fe,Ti)29Nx/α-Fe双相纳米耦合永磁复合材料。
4) melt-spun method
单辊法
1.
Amorphous ribbons of Fe_(74)Al_4Sn_2M_2P_(10)Si_4B_4 (M=Nb, Mo, V), Fe_(74)Al_4Sn_2Mo_2P_8Si_4B_4C_2 and Fe_(75)Al_4Sn_2Mo_2Nd_1P_8Si_4B_4 alloys have been prepared by melt-spun method.
利用单辊法制备了 Fe74 Al4Sn2M2P10 Si4B4 ( M 为 Nb、Mo、V)、Fe74 Al4Sn2Mo2P8Si4B4C2 和 Fe75Al4Sn2Mo2Nd1P8Si4B4 非晶合金薄带,并测试了该非晶合金系的差示扫描量热曲线和动、静态软磁性能。
5) single roller casting technique
单辊旋铸法
6) melt-spin method
单辊旋淬法
1.
Nano-crystalline beryllium-Coppery alloy prepared by melt-spin method and its structural analysis
单辊旋淬法制纳米晶铜铍合金及结构分析
补充资料:辊辊
1.犹混混。形容苟且混世。
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