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- Laves相儲氫合金laves phase hydrogen storage alloys
- La(NiMnM)_(5+x)、Ti-Mo和Ti(Zr)/Mn_2基Laves相系列儲氫合金的結構與性能研究Structure and Properties Study on La(NiMMn)_(5+x),Ti-Mo,Ti(Zr)/Mn_2 Base Laves Phase Hydrogen Storage Alloys
- 高容量的Ti-V基BCC相儲氫合金Ti-V-based BCC Phase Hydrogen Storage Alloys with a High Capacity
- Laves相Laves phase
- Laves相NbCr2Laves phase NbCr2
- TiCr_(1.8-X)(VFe)_X四元合金的研究表明:隨VFe含量的增加,合金的相組成逐漸由Laves相轉變?yōu)锽CC相,BCC相對應的晶胞參數同時(shí)增大,在合金的最大儲氫量增加的同時(shí),合金的放氫動(dòng)力學(xué)性能降低。The Laves phase of TiCr_1.8 alloy gradually transformed into BCC phase in TiCr_1.8 x(VFe)_x with the substitution of more VFe alloy for Cr. The maximum and reversible hydrogen storage capacity alloy with VFe content of TiCr_1.8-x(VFe)_x alloy followed Gauss equation. The increased VFe content inhibited hydrogen desorption from the quaternary alloys.
- 儲savings
- 氫hydrogen
- 河流相儲層fluvial reservoir
- Terfenol-D(Tb0.3Dy0.7Fe1.9)的基體相RFe2屬立方Laves相MgCu2結構,因而具有較大的室溫脆性。RFe 2 phase in Terfenol D (Tb 0.3 Dy 0.7 Fe 1.9 ) matrix, with the cubic Laves phase MgCu 2 structure, performs high brittleness at room terperature.
- 儲氫合金hydrogen storage alloy
- 立方Laves相cubic Laves phase
- 河流點(diǎn)壩相儲層模式概論An Introduction to Reservoir Models of Point bar Facies
- 貯氫合金hydrogen storage alloy
- TiNi貯氫合金TiNi hydrogen storage alloy
- 川東北地區長(cháng)興組-飛仙關(guān)組礁灘相儲層預測Prediction of reef and shoal facies reservoirs in Changxing- Feixianuan Formations in northeastern Sichuan basin
- 結果表明,所有合金都由兩相組成,主相為具有bcc結構的釩基固溶體相,第二相則隨著(zhù)鎳含量的增加從C14型Laves相轉變成為bcc結構的TiNi基相。It was found that these alloys consisted of a main solid solution phase with bcc structure and a secondary phase which transferred from C14 type Laves phase into TiNi-based phase with increasing Ni content.
- 復合貯氫合金composite hydrogen storage alloy
- 儲量精細計算方法探討--以河流相儲集層為例Discussion on fine computing method of reserves--taking fluvial facies reservoirs as example
- 儲氫hydrogen storage