Abstract in simplified Chinese:本发明提供一种可提升镁合金材料之熔接部的机械性质的熔填物、镁(Mg)合金材料与熔填物之接合结构、镁合金材料的借由熔融熔接所实行之接合方法、镁合金材料接合结构体、及镁合金材料接合结构体的制造方法。该熔填物是借由熔融熔接将复数个镁(Mg)合金材料实行接合时所使用之熔填物,该复数个镁(Mg)合金材料含有50质量%以上的镁,其中,该熔填物由含有50质量%以上的镁(Mg)且含有0.01质量%以上且6.3质量%以下的银(Ag)、及/或镓(Ga)之合金组成所构成。
Abstract in simplified Chinese:本发明的目的在于可简便且高效率地将含金属离子的溶液的金属进行浓缩,从而可以高的回收效率自上述含金属离子的溶液中回收金属。本发明的金属浓缩方法或者金属回收方法为包括以下步骤的方法:还原捕集步骤,使微生物与电子予体B作用于含金属离子的溶液W0,将金属离子还原而形成金属微粒子,并且使上述金属微粒子被捕集于上述微生物内,从而获得包含捕集有金属微粒子的微生物的溶液W1;浓缩步骤,利用过滤膜,将上述溶液W1浓缩而获得浓缩液W2;以及送回步骤,将上述浓缩液W2送回至上述步骤(1)而使其循环。另外,本发明的金属浓缩设备或者金属回收设备具有:存储部2,存储上述溶液W1;浓缩部3,利用过滤膜,将自存储部2移来的上述溶液W1浓缩;以及送回部4,将在浓缩部3中经浓缩的浓缩液W2送回至存储部2。
Abstract in simplified Chinese:本发明系以提供一种在室温及高温为具有充分高强度之镁合金。一种镁合金,其特征为含有铝(Al):14.0~23.0质量%、钙(Ca):11.0质量%以下(惟,不含0质量%)、锶(Sr):12.0质量%以下(惟,不含0质量%)及锌(Zn):0.2~1.0质量%。
Abstract:
The present invention provides a cell culture vessel or a sample cell for observation use that makes it possible to observe three-dimensionally-cultured cells from various angles. The cell culture vessel or the sample cell for observation use according to the present invention is characterized by being equipped with a culture gel in which a cell or cell tissue is embedded and a first vessel which encloses the culture gel, wherein a space in the first vessel is filled with the culture gel; and the first vessel has a light-permeable window made from a hydrogel.
Abstract:
An amorphous oxide-based positive electrode active material that is a production material of a positive electrode for an all-solid secondary battery, wherein the amorphous oxide-based positive electrode active material (i) comprises an alkali metal selected from Li and Na; a second metal selected from Co, Ni, Mn, Fe, Cr, V, Cu, Ti, Zn, Zr, Nb, Mo, Ru and Sn; an ionic species selected from phosphate ion, sulfate ion, borate ion, silicate ion, aluminate ion, germanate ion, nitrate ion, carbonate ion and halide ion; and an oxygen atom (except for the oxygen atom constituting the ionic species); (ii) contains at least an amorphous phase; and (iii) is a production material of a positive electrode with a thickness of 20 μm or more.
Abstract:
An additive containing an ion as a luminescence center is added to alkali halide powder as a base material. Mechanical energy for applying an impact force, a shearing force, a shear stress, or a friction force is applied so as to grind or mix the alkali halide powder and the additive. The ion as the luminescence center is doped into the alkali halide as the base material so as to obtain alkali halide-based scintillator powder. With this process, the alkali halide-based scintillator powder can be manufactured at a room temperature in the atmospheric air without any complicated condition control or any process at a high temperature under high vacuum and a large-sized scintillator sheet can be produced.
Abstract:
A wearable instrument is provided that measures biological information over an extended period of time by enabling an electrode to be readily pressed to an axilla of an animal. The wearable instrument includes: electrodes to be placed under the left and right axillae of a dog to produce an electrocardiogram; pull-up straps to be placed in direct contact with the axilla to press the electrodes onto the axilla; and a cinch strap placed across the anterior chest of the dog to draw the left and right sections of the pull-up strap together.