1)Ni-Ti alloyNi-Ti合金
1.Study on the vacuum hot-pressed technology of Ni-Ti alloys based on Ni and Ti foils;基于箔带材Ni-Ti合金的真空热压工艺研究
2.Preparation of Ni-Ti alloy by direct electrochemical deoxidation in low temperature molten salt低温熔盐电解制备Ni-Ti合金
3.The results show that Ti(C,N)-based cermets without Ni-Ti alloy present typical core-rim microstructure and nearly spherical shape of hard phase; the microstructure of cermets gets finer,and the shape of hard phase becomes multiangular with the increasing of Ni-Ti alloy,the interface between hard phase.采用粉末冶金方法真空烧结制备了添加Ni-Ti形状记忆合金的Ti(C,N)-Co系金属陶瓷,研究了Ni-Ti合金对Ti(C,N)基金属陶瓷显微组织和力学性能的影响。
英文短句/例句
1.Study on Microstructure and Performance of Cr-Ni-Ti Alloy Prepared by Arc Melting电弧熔炼Cr-Ni-Ti合金组织与性能研究
2.Effect of Ni-Ti Alloy on the Microstructure and Mechanical Properties of Ti(C,N)-based Cermets;Ni-Ti合金对Ti(C,N)基金属陶瓷组织和力学性能的影响
3.Semimetal Electromagnetic Characteristics of Ti-50.8%Ni AlloyTi-50.8%Ni合金的类金属电磁特性
4.Preparation for and Study of Microstructures of Mesocarbon Alloy Doped Ti/Cu or Ti/Ni;掺Ti/Cu、Ti/Ni碳合金的制备及结构表征的研究
5.The Study of Phase Transformation and Electronic Structure of Ni-Ti(Ta) Alloys;Ni-Ti(Ta)合金的相变和电子结构的研究
6.Hot Formability of Ti-Ni Alloy Sheet;Ti-Ni合金板材热成形性能研究
7.The 773k Isothermal Section of The Phase Diagram of Nd-Ni-Ti Ternary System;Nd-Ni-Ti三元系合金相图773K等温截面
8.Study on the Microstructure and Properties of As-Cast Ti-Ni-Sn Materials;铸态Ti-Ni-Sn合金组织和性能的研究
9.Studies on Phase Interface Reaction of Fe-Ni-Ti Ternary SystemFe-Ni-Ti三元合金体系相界面反应研究
10.Mechanical Properties of Ti-50.8%Ni Alloy at Different TemperatureTi-50.8%Ni合金不同温度下的力学行为
11.EFFECT OF Pd SUBSTITUTION ON THE STRUCTURES OF Ti-Zr-Ni QUASICRYSTALLINE ALLOYSPd替代对Ti-Zr-Ni准晶合金结构的影响
12.Hydrogen storage properties of Ti-Cr-Mn-M(M=V,Fe,Ni,Cu) alloysTi-Cr-Mn-M(M=V、Fe、Ni、Cu)合金的储氢性能
13.Superelasticity Measurement of Ti-Ni Alloy and Its Complex with CeramicsTi-Ni合金及其陶瓷复合体的超弹性研究
14.A Study on the Novel V-Ti-Ni-Zr Based Dual-phase Hydrogen Storage Electrode Alloys;新型V-Ti-Ni-Zr基双相贮氢电极合金研究
15.Synthesis and Properties of Ti-Zr-Ni-Cu-Be Bulk Amorphous Alloy;Ti-Zr-Ni-Cu-Be块体非晶合金的形成及性质研究
16.Research on the Mechanical Behavior of NiTi Sma Over a Wide Range of Strain Rates;高应变率下Ni-Ti形状记忆合金力学行为研究
17.The Influence of Rare Earth Element Lanthanum and Cerium on the Matensite Trnsformation of Titanium-Nickel Alloy;稀土元素镧、铈对Ti-Ni合金马氏体相变的影响
18.Evalluation of Biocompatibility on the Self-developed Alloy: Ni-Cr-Ti Alloy;自制Ni-Cr-Ti烤瓷合金体外生物相容性评价
相关短句/例句
Ti-Ni alloyTi-Ni合金
1.Preparation of diamond-like carbon films on Ti-Ni alloy by pulsed vacuum arc technique;Ti-Ni合金上镀制类金刚石薄膜研究
2.At the same time, the DSC curve gives the Ti-Ni alloy’s martensitic start temperature (Ms) and end temperature (Mf), the austenitic start temperature (As) and end temperatur.同时,给出了Ti-Ni合金的马氏体起始温度Ms,马氏体结束温度Mf,奥氏体起始温As和奥氏体结束温度Af,并对其相变过程进行了判断。
3.DSC curves in Ti-Ni alloys can be classified into 6 kinds.结果表明,Ti-Ni合金的DSC曲线分6种类型。
3)Ti-Zr-Ni alloyTi-Zr-Ni合金
1.The results show that the Pd addition in Ti-Zr-Ni alloys would promote closer atom packing,being beneficial to the formation of Laves phase because of the weak interaction between Fermi surface and Brillouin zone in Hume-Rothery phase like IQC.结果表明,添加中等尺寸的Pd原子有利于提高Ti-Zr-Ni合金的原子密堆性,使合金趋于生成高配位数的Laves相,这种相的Fermi面与Brillouin区的相互作用不显著,偏离了电子相的稳定机制。
4)Ti-Ni-Cu AlloyTi-Ni-Cu合金
1.Effect of long-term annealing on the martensitic transformation behavior of Ti-Ni-Cu alloy ribbons长时间热退火对Ti-Ni-Cu合金条带马氏体相变行为的影响
2.The results indicate that TME of Ti-Ni-Cu alloy only exists in the heating process,and TME occurs both in B19′→B2 and B19→B2 transformation during heating process.结果表明:温度记忆效应仅在Ti-Ni-Cu合金的逆转变加热过程出现,在单斜结构马氏体与母相逆相变(B19′→B2)及正交结构马氏体与母相逆相变(B19→B2)过程中均能发生温度记忆效应;在随后的完全循环过程中,温度记忆记忆效应不再出现,DSC相变曲线又“恢复”到其原始形态;而在马氏体相变冷却过程中未发现温度记忆效应。
5)Ni-Ti alloy filamentNi-Ti合金丝
6)Ti-Ni-Nb ternary alloyTi-Ni-Nb合金
延伸阅读
Ti-Ni based memory alloy分子式:CAS号:性质:具有形状记忆效应的TiNi金属间化合物。与其他金属间化合物不同,它具有很高的塑性。该合金具有较大的形状记忆应变(6%~10%)和较高的恢复应力(200~760MPa)。合金在马氏体状态屈服强度为100~200MPa,奥氏体状态屈服强度约在200~700MPa之间,断裂强度约700~1000MPa。在Af以上加载,卸载后显示超弹性行为,在适宜温度范围内热-机械处理后显示双程形状记忆效应。具有较高记忆寿命,预应变<0.5%,循环次数可在107以上。TiNi记忆合金还包括TiNi-Cu、TiNi-Co、TiNi-Fe和TiNi-Nb等具有较高实用价值记忆合金,其中Ti50Ni47Fe3合金是制造管接头等紧固件的良好材料。
