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    • 16. 发明专利
    • Hydrophilic metal foam body
    • HYDROPHILIC金属泡沫体
    • JP2011111643A
    • 2011-06-09
    • JP2009268260
    • 2009-11-26
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • KANDA EIKOWADA MASAHIRO
    • C23C18/12B22F3/11C22C1/08
    • PROBLEM TO BE SOLVED: To provide a hydrophilic metal foam body free from a degradation in hydrophilicity during long-term use.
      SOLUTION: In the hydrophilic metal foam body, the porosity of the entire void of the metal foam consisting of Ti, Cu, Ni, Al, Ag, stainless steel or the like is 55-99 vol.%, the opening ratio of the void open to at least one outermost surface of the metal foam is 5-80 area%, and the opening ratio of the void open to the outermost surface is smaller than the cross-section opening ratio of the void in an optional cross-section inside the metal foam parallel to the outermost surface. The skeleton surface of the metal foam is covered by a mixture of titanium oxide particles and silica, and an aggregate consisting of a mixture of titanium oxide particles and silica is inserted into the inside of pores of the metal foam and held thereby.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种亲水性金属泡沫体,在长时间使用时不会导致亲水性降低。 解决方案:在亲水金属泡沫体中,由Ti,Cu,Ni,Al,Ag,不锈钢等构成的金属泡沫的整个空隙的孔隙率为55-99体积%,开口率 对于金属泡沫的至少一个最外表面开放的空隙为5-80面积%,开口至最外表面的空隙的开口率小于任选横截面中空隙的横截面开口率, 金属泡沫内的平行于最外表面的部分。 金属泡沫的骨架表面被氧化钛颗粒和二氧化硅的混合物覆盖,并且由氧化钛颗粒和二氧化硅的混合物组成的聚集体插入到金属泡沫的孔的内部并由此保持。 版权所有(C)2011,JPO&INPIT
    • 17. 发明专利
    • Antibacterial member
    • 抗生素成员
    • JP2011079798A
    • 2011-04-21
    • JP2009235506
    • 2009-10-09
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • OKI YUZOWADA MASAHIROKANDA EIKOSHIBUYA TAKUMIHOSHINO KOJIORITO KENJI
    • A01N59/16A01N25/12A01P3/00C02F1/50
    • PROBLEM TO BE SOLVED: To provide an antibacterial member capable of stably supplying metal ions and sufficiently exhibiting stable antibacterial action for a long time. SOLUTION: The antibacterial member comprises a sintered compact comprising calcinating a powder which makes silver a principal component, wherein the sintered compact includes a compound 15 containing at least Ag, P, and O, and at least a part of the compound 15 is exposed on the surface of the sintered compact. Moreover, it is desirable that at least ten particulate compounds 15 are observed in 20 μm length and 24 μm breadth observation visual field in a secondary electron image observation of the surface of the sintered compact. Further, it is desirable that the compound 15 is arranged in a grain boundary part of the sintered compact. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够稳定地供给金属离子并且能够长时间充分发挥稳定的抗菌作用的抗菌构件。 解决方案:抗菌构件包括烧结体,其包括煅烧使银成为主要成分的粉末,其中所述烧结体包括至少含有Ag,P和O的化合物15,以及化合物15的至少一部分 暴露在烧结体的表面上。 此外,期望在烧结体的表面的二次电子图像观察中,在20μm长度和24μm宽度观察视野中观察至少十个颗粒化合物15。 此外,化合物15优选配置在烧结体的晶界部。 版权所有(C)2011,JPO&INPIT
    • 18. 发明专利
    • Method for manufacturing porous metal body
    • 制造多孔金属体的方法
    • JP2010095738A
    • 2010-04-30
    • JP2008265641
    • 2008-10-14
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • OKI YUZOKANDA EIKOWADA MASAHIROISOBE TAKESHI
    • C22C1/08B22F3/11H01M4/86H01M8/02H01M8/10
    • Y02P70/56
    • PROBLEM TO BE SOLVED: To provide a porous metal body having porosity distribution in a plane direction. SOLUTION: The manufacturing method includes: a molding step of molding a foaming slurry into a thin sheet shape; a foaming and drying step of foaming and drying the foaming slurry which has been molded into the thin sheet shape to form a greensheet; a sintering step of sintering the greensheet to form a sintered body; and a compressing step of compressing the sintered body in the thickness direction until the sintered body acquires a predetermined thickness. The manufacturing method also includes: forming a salient part and a recess part in the foaming slurry on a carrier sheet thereby to form a salient part and a recess part on the greensheet, in the molding step; sintering this greensheet thereby to form a salient part 10a and a recess part 10b on the sintered body, and compressing the sintered body so that at least the salient part 10a in the sintered body becomes thin in the compressing step to form a metal porous body 13 having porosities of the voids formed between skeletons different in the plane direction. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种在平面方向上具有孔隙率分布的多孔金属体。 解决方案:制造方法包括:将发泡浆料成型为薄片状的成型步骤; 发泡和干燥已经模制成薄片形状的发泡浆料以形成毛坯的发泡和干燥步骤; 烧结坯料以形成烧结体的烧结步骤; 以及压缩步骤,在烧结体获得预定厚度之前,在厚度方向压缩烧结体。 该制造方法还包括:在发泡浆料中形成载体片上的突出部分和凹部,从而在成形步骤中形成毛坯上的突出部分和凹部; 烧结该毛坯,从而在烧结体上形成突出部10a和凹部10b,并压缩烧结体,使得在压缩步骤中至少烧结体中的突出部10a变薄,形成金属多孔体13 具有在平面方向上不同的骨架之间形成的空隙的孔隙。 版权所有(C)2010,JPO&INPIT
    • 19. 发明专利
    • Method for producing metal porous body
    • 生产金属多孔体的方法
    • JP2010077491A
    • 2010-04-08
    • JP2008246975
    • 2008-09-25
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • OKI YUZOKANDA EIKOISOBE TAKESHIWADA MASAHIRO
    • B22F3/11H01M4/86H01M4/88H01M4/96H01M8/10
    • Y02E60/521
    • PROBLEM TO BE SOLVED: To provide a metal porous body with a rugged shape which does not damage an adjoining member. SOLUTION: The method comprises: a molding stage where foamable slurry S comprising metal powder and a foaming agent is placed on a carrier sheet 22 moving on a rotating roller 23, and the foamable slurry S is pulled out from the space between the tip face 24a of a blade 24 arranged at intervals with respect to the roller 23 across the carrier sheet 22 and the roller 23 together with the carrier sheet 22 so as to mold the foamable slurry S into a sheet shape; a foaming/drying stage where the molded foamable slurry S is foamed and dried so as to form a green sheet; and a sintering stage where the green sheet is sintered, wherein, in the molding stage, the foamable slurry S is pulled out while changing the intervals between the surface 23a of the roller 23 and the tip face 24a of the blade 24, the molding thickness of the foamable sheet S is changed, and an optional rugged shape is formed on at least either the surface or the back surface of the green sheet. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种金属多孔体,其具有不损坏邻接构件的粗糙形状。 解决方案:该方法包括:将包含金属粉末和发泡剂的可发泡浆料S放置在在旋转辊23上移动的载体片材22上的成型阶段,并且将可发泡浆料S从 叶片24的端面24a相对于辊23跨过承载片22和辊23与承载片22一起间隔布置,以将可发泡浆料S模制成片状; 发泡/干燥阶段,其中模制的可发泡浆料S被发泡和干燥以形成生片; 以及烧结阶段,其中烧结生片,其中在成形阶段,在改变辊23的表面23a与刀片24的末端面24a之间的间隔的同时拉出可发泡浆料S,成型厚度 发泡片材S的变化,并且在生片的表面或背面的至少任一面上形成任选的粗糙形状。 版权所有(C)2010,JPO&INPIT