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    • 12. 发明授权
    • Temporary adhesive for metal-metal and metal-ceramic bonds
    • 金属 - 金属和金属 - 陶瓷键的临时粘合剂
    • US07223808B2
    • 2007-05-29
    • US10480917
    • 2002-06-14
    • Wolf-Dieter MüllerGeorg BergerEmil NagelKlaus-Peter Lange
    • Wolf-Dieter MüllerGeorg BergerEmil NagelKlaus-Peter Lange
    • C08K3/32A61K6/00A61F2/28C03C3/247
    • A61L27/46A61K6/0023A61K6/0273A61K6/033A61L24/0084A61L24/0089A61L24/06A61L27/446C08L33/12C08L33/00
    • The invention relates to a method for the production of an adhesive and an adhesive kit for joining similar or different metal surfaces or ceramics, especially in the field of biomedicine. The objective of the invention is to avoid polymerization-linked by-products and disadvantageous effects, in addition to enabling a temporary biocompatible bond between metal and metal or metal and ceramics. The inventive method consist in using a monomer-free polymethylmethacrylate which is mixed with a suitable, non-toxic solvent and a bioactive vitreous-crystalline material with a particle size ranging from 0.05–20μ, consisting of 15–45 wt. % CaO, 40–45 wt. % P2O5, 10–40 wt. % ZrO2 and 0.7–3.5 wt. % fluoride, having apatite and calcium zircon phosphate as main crystal phases and a glass phase as an auxiliary component until a flowable mixture is obtained. The invention also relates to an adhesive kit consisting of said components. Sufficient amounts of resistance are obtained for a temporary bond, enabling the bond to be neutralized when desired.
    • 本发明涉及生产用于连接类似或不同金属表面或陶瓷的粘合剂和粘合剂试剂盒的方法,特别是在生物医学领域。 本发明的目的是除了能够在金属和金属或金属和陶瓷之间实现临时的生物相容性结合之外,避免聚合相互作用的副产物和不利影响。 本发明的方法包括使用无单体的聚甲基丙烯酸甲酯,其与合适的无毒溶剂和粒度范围为0.05-20mu的生物活性玻璃结晶材料混合,其由15-45wt。 %CaO,40-45wt。 %P 2 O 5,10-40重量% %ZrO 2和0.7-3.5wt。 具有磷灰石和磷酸钙锆作为主要结晶相的氟化物,玻璃相作为辅助成分,直到得到可流动的混合物。 本发明还涉及由所述组分组成的粘合试剂盒。 获得足够量的电阻用于临时键,使得当需要时可以中和该键。
    • 15. 发明授权
    • Method and device for applying or embedding particles onto or into a layer applied by plasma coating
    • 将颗粒施加或嵌入到通过等离子体涂覆施加的层中的方法和装置
    • US09238862B2
    • 2016-01-19
    • US13127123
    • 2009-10-09
    • Uwe Beck
    • Uwe Beck
    • C23C14/00C23C14/34
    • C23C14/3407
    • A method for applying or embedding nanoparticles or microparticles of any substance in a defined manner onto or into a layer to be applied to a substrate surface by plasma coating before, during or after the plasma coating operation in a magnetron or plasmatron. The particles are introduced from the outside into the vacuum chamber of the magnetron or plasmatron via at least one pressure stage. The particles are spatially distributed in the plasma space between the target and the substrate. The particles in the plasma space are preferably exposed to an electric field generating a movement of the particles toward the substrate. It is advantageous for this purpose if the particles are electrically charged before being introduced into the plasma space.
    • 一种在磁控管或等离子体等离子体涂覆操作之前,期间或之后,通过等离子体涂覆,将任何物质的纳米颗粒或微粒以规定的方式涂覆或嵌入待施加到基底表面的层上的方法。 颗粒通过至少一个压力级从外部引入到磁控管或等离子体的真空室中。 颗粒在空间上分布在靶和基底之间的等离子体空间中。 等离子体空间中的颗粒优选暴露于产生颗粒朝向基底的移动的电场。 如果颗粒在被引入等离子体空间之前被带电,则有利于此目的。