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    • 67. 发明申请
    • MAGNETIC MATERIALS AND PRODUCTS MADE THEREFROM
    • 磁性材料及其制品
    • WO1990013605A1
    • 1990-11-15
    • PCT/GB1990000730
    • 1990-05-11
    • ALCAN INTERNATIONAL LIMITEDSHIEL, Leslie, EdwardDYER, AlanEVANS, Kenneth, ArthurKIRKLAND, Angus, IanEDWARDS, Peter, Philip
    • ALCAN INTERNATIONAL LIMITED
    • C09C03/06
    • C09C1/00C01P2002/02C01P2004/61C01P2004/62C01P2006/40C01P2006/42C09C1/28C09C1/40C09C1/405C09C1/42C09C3/06
    • This invention relates to inorganic materials which incorporate metallic material and which have desirable magnetic properties, to methods of making such filled materials, and to applications of the filled material, including their use as fillers in plastics and in ceramics. An inorganic material is provided having a microporous structure (as hereinbefore defined ) in which at least some of the micropores thereof are at least partially filled by at least one metal, metal alloy or metal compound or mixture thereof forming a structure within the micropores and which are present in an amount sufficient to modify the magnetic and optionally the electrically conductive properties of the unfilled material. Preferably the structure formed within the micropores is a dimensional structure (as hereinbefore defined ) which is influenced by the structure of the microporous material. A preferred material is a zeolite loaded with at least 1 % by weight of cobalt. Plastics filled with this inorganic material find a very wide range of applications, such as in magnetic latches for refrigerator doors, clamps, bearing sleeves and energy conversion devices, magnetic rotors, magnetic memory devices such as tapes and discs, magnetic indicators and beam-focussing devices for television receivers.
    • 本发明涉及结合金属材料并具有理想磁性的无机材料,制造这种填充材料的方法,以及填充材料的应用,包括它们作为塑料和陶瓷中的填料的用途。 提供了具有微孔结构(如上所述)的无机材料,其中至少一些微孔至少部分地被至少一种在微孔内形成结构的金属,金属合金或金属化合物或其混合物填充,并且其中 以足以改变未填充材料的磁性和任选的导电性能的量存在。 优选地,在微孔内形成的结构是受微孔材料结构影响的尺寸结构(如上所述)。 优选的材料是负载有至少1重量%钴的沸石。 填充这种无机材料的塑料可以用于非常广泛的应用,例如用于冰箱门,夹具,轴承套和能量转换装置的磁性闩锁,磁性转子,诸如磁带和磁盘的磁记录装置,磁指示器和光束聚焦 电视接收机设备
    • 69. 发明申请
    • FEEDER FOR PARTICULATE MATERIAL
    • 用于颗粒材料的饲料
    • WO1990008723A1
    • 1990-08-09
    • PCT/GB1990000105
    • 1990-01-25
    • ALCAN INTERNATIONAL LIMITEDDARBY, Neil, Andrew
    • ALCAN INTERNATIONAL LIMITED
    • B65G53/22
    • B65G53/48B65G53/22
    • A feeder for particulate material for connecting a mechanical feeding device (14) to a pneumatic conveying line comprises a funnel (7) formed of a gas pervious material which is mounted in a closed outer housing (1) formed of an impervious material wherein the walls of the funnel and the outer housing together defining a plenum chamber (10) which is provided with an inlet (11) for connection to supply of conveying gas under pressure. The funnel (7) is adapted to form a sealing engagement with the outlet of the mechanical feeding device (14) and the funnel (7) at or towards its narrow end communicates with the pneumatic conveying line. In use, conveying gas, under pressure, enters the plenum chamber (10) and then passes through the walls of the funnel (7). The particulate material delivered to the funnel (7) by the mechanical feeding device is flushed out of the funnel and into the conveying line by the conveying gas. The feeder enables a uniform flow of particulate material using one pressurized gas supply for conveying particulate material from bulk storage to discharge.
    • 用于将机械进给装置(14)连接到气动输送管线的用于颗粒材料的进料器包括由气体可透过材料形成的漏斗(7),所述漏斗(7)安装在由不透水材料形成的封闭外壳体(1)中, 所述漏斗和所述外壳一起限定一个增压室(10),所述增压室设置有用于在压力下供应输送气体的入口(11)。 漏斗(7)适于与机械进给装置(14)的出口形成密封接合,并且漏斗(7)位于或朝向其窄端与气动输送线连通。 在使用中,输送气体在压力下进入增压室(10),然后通过漏斗(7)的壁。 通过机械进料装置输送到漏斗(7)的颗粒物质被漏斗排出并通过输送气体进入输送管线。 进料器使用一种用于将颗粒材料从大容量储存器输送到排放物的一种加压气体供应器来均匀流动颗粒材料。
    • 70. 发明申请
    • PROCESS FOR PRODUCING ALUMINUM ALLOY CAN BODY STOCK
    • 生产铝合金罐体的方法
    • WO1998001593A1
    • 1998-01-15
    • PCT/CA1997000468
    • 1997-07-02
    • ALCAN INTERNATIONAL LIMITED
    • ALCAN INTERNATIONAL LIMITEDWYCLIFFE, PaulLUCE, EdLLYOD, David, J.FITZSIMON, JohnBURGER, Gene
    • C22F01/047
    • C22F1/047C22C21/00
    • A process of manufacturing aluminum can body stock involving the following steps. A molten aluminum alloy is prepared, the alloy containing Mg in the range 1.1 to 1.5 % by weight, Mn in the range 0.4 to 0.9 % by weight, Cu in the range 0.2 to 0.4 % by weight, Fe in the range 0.2 to 0.7 % by weight, Si in the range 0.07 to 0.3 % by weight, all other elements each less than 0.05 % by weight to a maximum of 0.2 % for all other elements. The alloy is cast in a continuous strip casting process to produce a slab having a thickness of at least 9 mm. The slab is rolled using at least 83 % reduction to produce a re-roll strip. The re-roll strip is coiled to form a coil and the coil to cool is allowed to cool naturally. The re-roll strip is then annealed and cold rolled to a final gauge of between 0.26 and 0.4 mm, using a reduction of between 75 and 85 %, with no interanneal. The resulting strip can be used as can body stock having a 45 degree earing of less than 3 % and a yield strength after stoving of at least 265 MPa (38.5 ksi).
    • 制造铝罐体的方法,涉及以下步骤。 制备熔融铝合金,含有1.1〜1.5重量%的Mg,0.4〜0.9重量%的Mn,0.2〜0.4重量%的Cu,0.2〜0.7的Fe的合金 重量%,Si在0.07〜0.3重量%的范围内,对于所有其他元素,所有其它元素均小于0.05重量%,最多0.2重量%。 将该合金铸造在连续条带铸造工艺中以生产厚度至少为9mm的板坯。 使用至少83%的压缩轧制板坯以产生再轧带材。 重卷条卷起形成线圈,使冷却线圈自然冷却。 然后将再轧带材退火并冷轧至最终规格在0.26至0.4mm之间,使用75%至85%之间的还原,无中间膜。 所得到的带材可以用作具有小于3%的45度的罐头坯料和在至少265MPa(38.5ksi)的烘烤后的屈服强度。