2012925 · The Ti-rich side of this phase diagram below 1350 °C was reinvestigated by [] by means of diffusion couple experiments and DSC measurements on
contactTi (99.7mass%) prior to making the TiPd alloys. Alloys of xmol% TiPd (where x = 0.2 Pd, 0.5 Pd, or 1.0 Pd) were subsequently produced by arc-melting the pure Ti buttons with
contact2016428 · The relatively good mechanical properties of the as-cast α-Ti-type Ti94Ag3Pd3 alloy (tensile strength up to 850 MPa and elongation of ~10%) can be
contactPalladium (atomic symbol: Pd, atomic number: 46) is a Block D, Group 10, Period 5 element with an atomic weight of 106.42. The number of electrons in each of palladium's shells is
contact200591 · An SEM and EDS examination of Ti-6Al-4V alloys after electrochemical hydrogenation (1 H 3 PO 4 : 2 glycerine, 100 mA/cm 2 , 69 h) revealing hydrogen-induced cracking and pitting in (a) the fully ...
contact201831 · The phase relations covering the entire composition range of the Ti-Co-Pt ternary system at 973 K were studied by combining diffusion triple method with alloy
contactThrough the use of powder metallurgy, Ti-Mo-1.5Y alloys are created. Atmospheric pressure high-purity argon gas is used to sinter the metals. samples were immersed in SBF in closed containers and ...
contactTi–Pd alloy catalysts were developed for the cross β-arylmethylation between arylmethylalcohols and different primary alcohols via a hydrogen autotransfer mechanism. The alloy catalysts could be reused multiple times without the need for pre-activation. Analysis of the reaction solution by inductively couple
contact2018824 · Metallographic analysis of the SLM Ti-2La alloy quenched from 950 °C (L 1 + β field) down to RT (Methods), with a cooling rate of ~85 °C s −1 between 950–350 °C, is shown in Fig. 4d. Some ...
contact198541 · A scan- ning electron micrograph of the alloy 70% Pd-30%Ti at 500x is shown in Fig. 1 and reveals grains of the order of 20 ~tm with little resolution of structure. This is typical of the alloys investi- gated. Energy dispersive X-ray analysis re- vealed that the as-melted compositions were within 2% of nominal values. This is within the ...
contact2018313 · From SEM/EDS analysis, the as-deposited film contains 51.4 at% of Ti, 19.2 at% of Ni, and 29.4 at% of Pd. Figure 5 shows the transformation temperatures for Ti 51.4 Ni 19.2 Pd 29.4 thin films measured by DSC curves with both heating and cooling rates of 10 °C/min. There was no indication of any transformation peak in the case of the as ...
contactFig. 2. Microstructure of Ti, Ti-Pd alloys Fig. 3. SEM micrographs of Ti-15Pd alloy and the EDS results taken in the area αphase Fig. 4. SEM micrographs of Ti-15Pd alloy and the EDS results taken in the area βphase a) b) a) b) Ti Pd Totals 81.52 18.48 100.00
contactAlCoFeNiTiZn high entropy alloy was successfully produced in powder form by the mechanical alloying process. The ball-milled alloyed product was characterized by X-ray diffractometry, scanning electron microscopy, energy dispersive spectroscopy, and transmission electron microscopy techniques, which indicated that after 120 h of milling,
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contact2017420 · Cu60Zr30Ti10 metallic glass powder was prepared by mechanically alloying a mixture of pure Cu, Zr, and Ti powders after 5 h of milling. Cu60Zr30Ti10 bulk metallic glass (BMG) was synthesized by vacuum hot pressing the as-milled Cu60Zr30Ti10 metallic glass powder at 746 K in the pressure range of 0.72–1.20 GPa, and the structure
contact2022122 · The obvious peaks at 25.3, 37.8, 48.1, 53.9 and 55.1° were corresponding to (1 0 1), (0 0 4), (2 0 0), (1 0 5) and (2 1 1) facets of anatase phase TiO 2. The peak intensity in all doped samples obviously weakened in the existence of Cu dopant, which was the influence of impurity ions on the crystal structure.
contact2018313 · 4.1 Performance of the ANN Model. The Pearson’s r and adj. R 2 correlation values among all the experimental and predicted transformation temperatures for training data sets are close to one (~ 99%), as shown in Fig. 2.The comparison between the experimental and predicted transformation temperatures, namely M s, M f, A s, and A f
contact198541 · A scan- ning electron micrograph of the alloy 70% Pd-30%Ti at 500x is shown in Fig. 1 and reveals grains of the order of 20 ~tm with little resolution of structure. This is typical of the alloys investi- gated. Energy dispersive X-ray analysis re- vealed that the as-melted compositions were within 2% of nominal values. This is within the ...
contact2017420 · Cu60Zr30Ti10 metallic glass powder was prepared by mechanically alloying a mixture of pure Cu, Zr, and Ti powders after 5 h of milling. Cu60Zr30Ti10 bulk metallic glass (BMG) was synthesized by vacuum hot pressing the as-milled Cu60Zr30Ti10 metallic glass powder at 746 K in the pressure range of 0.72–1.20 GPa, and the structure
contactFig. 2. Microstructure of Ti, Ti-Pd alloys Fig. 3. SEM micrographs of Ti-15Pd alloy and the EDS results taken in the area αphase Fig. 4. SEM micrographs of Ti-15Pd alloy and the EDS results taken in the area βphase a) b) a) b) Ti Pd Totals 81.52 18.48 100.00
contact2017418 · Zr–Ti Laves phase Ti0.24Zr0.76(Ni0.55Mn0.3V0.065Fe0.085)2.1 has been found to reversibly accommodate nearly 1.5 wt% of hydrogen, with a battery rating of some 440 mAhg−1. Specific–alloys α–alloys Aluminium is the main alloying element apart from Zr and Sn. The combined effect is expressed as aluminium equivalent, wt% = Al+ 1 3 Sn+
contactAlCoFeNiTiZn high entropy alloy was successfully produced in powder form by the mechanical alloying process. The ball-milled alloyed product was characterized by X-ray diffractometry, scanning electron microscopy, energy dispersive spectroscopy, and transmission electron microscopy techniques, which indicated that after 120 h of milling,
contactIn as-cast alloys of Ti-(5 to 35)Ni-(5 to 10)Pd (mass%), [1994Koe] observed a metastable phase Ti3Ni which disappears after annealing at 800°C for 12 h. Thermal analysis of these alloys shows a ...
contactTi, Ti-Pd alloys were melted in arc furnace and the corrosion resistance of Ti-Pd alloys was evaluated by anodic polarization test. The surface microstructural changes and mechanical properties of Ti-Pd alloys were analysed by scanning electron microscope and Vickers micro-hardness tester. The vickers hardnees of pure Ti improved by addition of ...
contact2019328 · Ti−Pd alloys were investigated as heterogeneous catalysts for hydrogen autotransfer reactions. This is the first reported study of alloys as catalysts for hydrogen-borrowing reactions using alcohols. We improved the catalytic activities of alloys by increasing their specific surface areas via a hydrogenation−powdering process.
contact2002130 · Titanium alloys classified by metallurgical structure. Alloy. Example. Alpha Alloys. Commercially Pure – ASTM grades 1,2,3 and 4. Ti/Pd Alloys – ASTM grades 7 and 11. Alpha + Compound. Ti-2.5%Cu – IMI 230. Near Alpha Alloys.
contact2017420 · Cu60Zr30Ti10 metallic glass powder was prepared by mechanically alloying a mixture of pure Cu, Zr, and Ti powders after 5 h of milling. Cu60Zr30Ti10 bulk metallic glass (BMG) was synthesized by vacuum hot pressing the as-milled Cu60Zr30Ti10 metallic glass powder at 746 K in the pressure range of 0.72–1.20 GPa, and the structure
contactAlCoFeNiTiZn high entropy alloy was successfully produced in powder form by the mechanical alloying process. The ball-milled alloyed product was characterized by X-ray diffractometry, scanning electron microscopy, energy dispersive spectroscopy, and transmission electron microscopy techniques, which indicated that after 120 h of milling,
contact2017429 · STEELMAX Metal Story. Ti-Grade 11, CP Ti-0.15Pd 는, 화학 성분. 기계적 성질에서 Grade 1 과 같습니다. Ti-Grade 1 에, Palladium 0.12~0.25% 합금 금속입니다. Titanium에 Palladium 을 합금 하는 이유는.
contact2022319 · 2. CD226 NSCLC PD-L1 ,(CyTOF) NSCLC CD226、CD28、PD-1 TI-GIT ;,、、。
contact201965 · POE :. Detection:PSEPD,PD24.9kohmPD。. 2.7v~10v。. (TI 42). Classification: detection,PSE14.5v~20.5vPD,CLS ...
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