β相,β Phase
1)β Phaseβ相
1.The β phase of casting ZK60 alloy states were continuing,and the mechanical properties and deformability were poor.对铸态及固溶处理后的ZK 60镁合金的组织、拉伸和锻造性能进行了研究,铸态ZK 60镁合金中β相成连续网状分布,力学性能和变形极限较低,经390℃×16h固溶处理后,β相部分或全部溶入基体中,呈不连续点状分布,抗拉强度和屈服强度较铸态提高14%和28%,伸长率(13%)较铸态提高70%。
2.The electron structures of the interface between GP zone with L_(10) structure(the same in later) and the matrix and the interface between β phase and the matrix in Al-Mg-Si alloy were calculated using the Empirical Electronic Theory in solid and molecules(EET).运用EET理论对A l-M g-S i合金GP区(L10型,下同)、β相(M g2S i)与基体的界面电子结构进行计算,着重从界面电子角度反映时效过程中GP区、β相与基体的界面结合性质、界面原子状态变化及界面对合金有关力学性能的影响,并分析原子状态变化的原因。
3.The variations in mechanical properties of W-Ni-Fe heavy alloy with high Ni/Fe ratio(9/1) and the precipitation behavior of β phase in its binding phase during strain-aging were studied.研究预应变时效高NiFe比(91)钨合金的性能及粘结相中β相的沉淀行为。
英文短句/例句

1.Interdiffusion behavior of Ti-Mo binary system in β phaseTi-Mo二元合金在β相区的互扩散行为
2.Effect of water on the α-β transformation kinetics in San Carlos olivine水对圣卡洛斯橄榄石α-β相变动力学的影响
3.Studies on (α,β)-Geometries and Related Problems in Coding Theory;(α,β)-几何及相关编码问题的研究
4.The Relationship between β-defensin2 and Crohn s Disease;β-防御素2与克罗恩病的相关性研究
5.Research on blocky alpha in beta processed TC21 titanium alloyTC21钛合金β锻造大块α相研究
6.Interaction of the "Host-Guest" Inclusion of β-Cyclodextrin Analyzed by ~1H-NMR Module of the Software ChemofficeChemoffice模型判断β-环糊精包结物相互作用
7.Synthesis and Properties of Multiphase α/β-Sialon from Slag炉渣复相α/β-Sialon材料的合成及性能
8.β-CD Supported Organocatalyst:Efficient and Recyclable β-CD Anchored L-Proline for Aldol Reaction in Water水相中β-CD固载脯氨酸催化Aldol反应
9.Application of β-cyclodextrin in Liquid-Phase Organic Synthesisβ-环糊精在液相合成反应中的应用
10.A Comparative Study of Differential Thermal Analysis Method and Metallographic Observation Method for the α+β/β Transformation Temperature of Titanium Alloys钛合金α+β/β转变温度测定的金相法与差热分析法对比研究
11.Fluorescence Study on the Interaction between Methyl Blue and Human Serum Albumin in the Presence of β-CD/HP-β-CD荧光法研究β-CD/HP-β-CD存在时甲基蓝与人血清白蛋白的相互作用
12.Research of β-ditone copper complex gas chromatography stationary phasesβ-二酮铜络合物气相色谱固定相的研究
13.(4) The spatial network indexes of β and γ indicate that the relativity of tourist flows spatial network is feebleness.(4)β、γ指数揭示旅游流空间网络相关性较差。
14.Direct Separation of Enantiomers of Monocylic β-Lactams by HPLC高效液相色谱法直接分离单环β-内酰胺对映体
15.A Study on Synthesis and Inhibition Mechanism of β-Amino Alcohols as Volatile Corrosion Inhibitors;β-胺基醇气相缓蚀剂的合成及其缓蚀机理研究
16.Research on the Dependablity of Chronic Pancreatitis and Pancreatic β-cell K_(ATP) Channel;慢性胰腺炎与胰岛β细胞K_(ATP)通道相关性研究
17.Research on Phase Transfer Catalytic Epoxidation of Enone;相转移催化α,β-不饱和酮环氧化反应研究
18.A Study of Crystallography of β(bcc)/α(hcp) Phase Transformation in a Ti-7.26 wt% Cr Alloy;Ti-7.26 wt% Cr合金中β(bcc)/α(hcp)相变晶体学的研究
相关短句/例句

βphaseβ相
1.The volume fraction, shape, distribution, and size ofβphase have significant effects on the strengthening and toughening of magnesium alloys.Mg-Al系镁合金中的第二相主要是共晶βMg17Al12相,共晶β相的相对含量、形状、分布和大小对合金的强度和韧性有很大的影响。
2.The technology on the controlling the amount and pattern of divorced eutecticβphase in the Mg-Al alloys has been studied in this article.为了提高Mg-Al合金的高温抗蠕变性及其塑韧性,为Mg-Al合金的强韧化研究提供参考依据,必须深化对于Mg-Al合金的凝固组织,特别是硬脆离异共晶β-Mg_(17)Al_(12)相(以下简称β相)的认识。
3.The low SCC resistance and intergranular corrosion resistance of the as-quenched alloy annealing at 150℃for 1 huor is relate to more and largerβphase precipitate after 150℃1 hour aging than the same Mg content alloy as-quenched or after 350℃1 hour aging.在同样Mg含量的情况下,固溶淬火态高镁铝合金在经过150℃时效后析出了大量粗大的,无规则分布的β相,经过350℃时效后β相基本溶解,但样品在时效后的空冷过程中生成了少量的细小的β相
3)β″ phaseβ″相
1.Influence of hot-roll annealing temperature on precipitation kinetics of β″ phase in 6××× alloy;热轧板退火温度对6×××系铝合金β″相析出动力学的影响
4)β precipitate phaseβ沉淀相
5)ductile β phase延性β相
6)β-phase (Mg5Al8)β相(Mg_5Al_8)
延伸阅读

1-[β,β,β-三(对氯苯基)丙酰]-4-甲基哌嗪分子式:C26H25CL3N2O分子量:487.85CAS号:2390-22-9性质:该品溶点213-215℃。作兽用驱虫药时常用基盐,又称Dieroden。盐酸盐的熔点为267-269℃,易溶于热水和醇。制备方法:以三(对氯苯基)甲醇(Ⅰ)为原料,与氰乙酸加成得β,β,β-三(对氯苯基)丙腈(Ⅱ),经浓硫酸水解得β,β,β-三(对氯苯基)丙酸(Ⅲ),再用五氯化磷酰氯化,得到β,β,β-三(对氯苯基)丙酰氯(Ⅳ),最后与N-甲基哌嗪缩合制得海涛林。用途:该品为治疗牛、羊矛形腔吸虫病的高效药物,具有作用强、驱虫率高(96%以上)、毒性低、适口性好等优点,国外畜牧业应用十分广泛。