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    • 2. 发明授权
    • Vacuum lifter and method
    • 真空升降机及方法
    • US5470117A
    • 1995-11-28
    • US102288
    • 1993-08-05
    • Adolf Schmidt
    • Adolf Schmidt
    • B25J15/06B66C1/02B66F9/18
    • B25J15/0616B66C1/0218B66C1/025B66F9/181Y10S294/907
    • A vacuum lifter for a moving load having an adhesion surface comprising at least one suction head having several annular seals projecting from its suction side and forming vacuum spaces enclosed by the seals. The vacuum spaces communicate with a vacuum source. The vacuum source communicates through valves with the outer vacuum space. The valves are controlled by sensors detecting the magnitude of the adhesion surface of the load. In order to prevent impulsive detachment and especially unwanted renewed lifting of the load after it has been deposited, a compressed-air system associated with at least one of the vacuum spaces and a control system turns ON and OFF the compressed-air system in order to initially raise the pressure to atmospheric and to thereafter generate a positive pressure air cushion separating the lifter from the load.
    • 一种用于具有粘合表面的移动载荷的真空提升器,包括至少一个具有从其吸入侧突出的多个环形密封件的吸头,并形成由密封件包围的真空空间。 真空空间与真空源连通。 真空源通过阀与外部真空空间连通。 这些阀由检测负载的粘合表面的大小的传感器控制。 为了防止冲击分离,并且特别是不必要地在其沉积之后不必要地重新提升载荷,与至少一个真空空间和控制系统相关联的压缩空气系统将压缩空气系统打开和关闭,以便 最初将压力升高到大气压,然后产生将升降器与负载分开的正压气垫。
    • 3. 发明授权
    • Vacuum lifter
    • 真空升降机
    • US5310232A
    • 1994-05-10
    • US89596
    • 1993-07-12
    • Adolf Schmidt
    • Adolf Schmidt
    • B25J15/06B25J19/00B65H5/14B66C1/02B66F9/18
    • B66C1/025B25J15/0616B25J19/005B66C1/0218B66F9/181Y10S294/907
    • The invention concerns a vacuum lifter to transport loads with an adhesion surface and comprises at least one suction head with at least one projecting annular seal on its suction side, where the vacuum chamber(s) enclosed by the annular seal(s) is (are) hooked up to a main vacuum source and where additionally a battery-fed emergency vacuum source is provided which can be started by an emergency switch. In order to avert as much as possible crashes when using such a vacuum lifter, a pressure pickup (67) is associated with the or at least one of the vacuum chambers (13) and is coupled in such a way with a malfunction alarm (69) that when a preset limit pressure is exceeded during vacuum operation, the malfunction alarm (69) shall be turned ON.
    • 本发明涉及一种用粘合表面输送负载的真空提升器,并且包括至少一个在其吸力侧具有至少一个突出的环形密封件的抽吸头,其中由环形密封件包围的真空室是 )连接到主真空源,并且另外提供可由紧急开关启动的电池供电的紧急真空源。 为了在使用这样的真空提升器时尽可能地避免碰撞,压力拾取器(67)与真空室(13)中的至少一个或至少一个真空室(13)相关联,并且以这样的方式与故障报警器(69 )当在真空操作期间超过预设极限压力时,故障报警器(69)应打开。
    • 7. 发明授权
    • Process for the production of aqueous polymer dispersions, the
dispersions obtainable by this process and their use for the production
of coatings
    • 用于生产聚合物水分散体的方法,可通过该方法获得的分散体及其用于生产涂料的方法
    • US4918129A
    • 1990-04-17
    • US309815
    • 1989-02-13
    • Joachim ProbstJosef PedainBruno BomerAdolf SchmidtWolfhart Wieczorrek
    • Joachim ProbstJosef PedainBruno BomerAdolf SchmidtWolfhart Wieczorrek
    • C08J7/04B01F17/52C08F2/20C08F2/24C08F2/30C08F283/00
    • C08F2/30C08F283/00
    • Aqueous polymer dispersions useful for coating substrates are prepared by polymerization of olefinically unsaturated monomers in aqueous medium in the presence of radical formers and hydrophilically modified, urethane-group-containing emulsifiers having an average molecular weight below 30,000, wherein the urethane-group-containing emulsifiers are oligourethanes having a branched molecular structure which(i) are produced from organic polyisocyanates and organic compounds containing isocyanate-reactive groups with the reactants containing hydrophilic groups or groups convertible into hydrophilic groups and which are monofunctional or difunctional to isocyanate addition reaction, with the molar ratio of monofunctional hydrophilic components to the corresponding difunctional components being at least 2:1, and which(ii) have a content of chemically incorporated hydrophilic groups sufficient to impart the oligourethane solubility or dispersibility in water, with the proviso that, on a statistical average, at least 2.2 terminally incorporated hydrophilic groups are present per molecule.
    • 可用于涂布基材的水性聚合物分散体是通过烯丙基不饱和单体在水性介质中在自由基形成剂和平均分子量低于30,000的亲水改性的含氨基甲酸酯基的乳化剂存在下聚合制备的,其中含氨基甲酸酯基的乳化剂 是具有支链分子结构的寡聚氨酯,其(i)由有机多异氰酸酯和含有异氰酸酯反应性基团的有机化合物产生,反应物含有可转化为亲水基团的亲水基团或基团,其与异氰酸酯加成反应是单官能的或双官能的, 单官能亲水性组分与相应的双官能组分的比例为至少2:1,并且(ii)具有化学引入的亲水基团的含量足以赋予低聚氨酯在水中的溶解度或分散性,条件是在sta 每个分子存在至少2.2个末端引入的亲水基团。