DEDICATED MATERIAL FOR MANUFACTURING SPECIAL SAFETY TIRE RUBBER FOR WHEELED COMBAT VEHICLES AND AIRCRAFT IN THE ARMY
    211.
    发明申请
    DEDICATED MATERIAL FOR MANUFACTURING SPECIAL SAFETY TIRE RUBBER FOR WHEELED COMBAT VEHICLES AND AIRCRAFT IN THE ARMY 审中-公开
    用于制造特种安全轮胎的专用材料,用于轮式车辆和飞机在军队

    公开(公告)号:US20150291781A1

    公开(公告)日:2015-10-15

    申请号:US14394959

    申请日:2013-02-07

    Abstract: A dedicated material for manufacturing a special safety tyre rubber for wheeled combat vehicles and aircraft in the army, fabricated from the following components in parts by weight: 28-40 parts of polyisoprene, 19-30 parts of silicone rubber, 15-25 parts of thermoplastic elastomer, 10-18 parts of magnetic powder, 10-15 parts of paraffin oil, 0.8-2 parts of flexibilizer, 5-10 parts of silicone oil, and 0.5-2 parts of antioxidant. The present invention may be used as a carcass material of a special safety tire marching in unfavorable environments such as rough terrain, a lot of sharp foreign matters, and high temperature and open fire. The dedicated material has properties of ordinary tire rubber at a normal temperature, and also has characteristics such as resistant against high temperature, against burning, against flame and against aging in an extremely hot environment. Furthermore, the material has properties such as resistance against bullets, against prick and against explosion. The material can withstand attack of shells of light-weighted explosives. The dedicated material is simple in preparation process and recyclable and pollution-free.

    Abstract translation: 制造军用轮式作战车辆和飞机专用安全轮胎橡胶的专用材料,由以下重量份数组成:28-40份聚异戊二烯,19-30份硅橡胶,15-25份 热塑性弹性体,10-18份磁性粉末,10-15份石蜡油,0.8-2份增塑剂,5-10份硅油和0.5-2份抗氧化剂。 本发明可以用作特殊安全轮胎的胎体材料,其在恶劣的地形,大量尖锐的异物以及高温和明火等不利环境中行进。 专用材料在常温下具有普通轮胎橡胶的特性,并且在极热环境中也具有耐高温,耐燃烧,防火焰和耐老化的特性。 此外,该材料具有抵抗子弹的特性,防止刺伤和爆炸。 该材料可以抵御轻型炸药炮弹的袭击。 专用材料制备工艺简单,可循环利用,无污染。

    Heating Layer for Film Removal
    213.
    发明申请
    Heating Layer for Film Removal 审中-公开
    加热层去除膜

    公开(公告)号:US20140363637A1

    公开(公告)日:2014-12-11

    申请号:US13911778

    申请日:2013-06-06

    Abstract: Embodiments of the presently disclosed system include a thin thermoplastic or thermosetting polymer film loaded with non-polymeric inclusions that are susceptible to heating under a time-varying magnetic field. Insertion of this additional heating layer into a structural or semi-structural heterogeneous laminate provides an “on-demand” de-bonding site for laminate deconstruction. For example, in some embodiments when the heating layer is inserted between a cured Carbon-Fiber Reinforced Plastic (CFRP) layer and a Polymeric/Metallic film stackup layer, the heating layer can be selectively heated above its softening point (e.g., by using energy absorbed from a locally-applied time-varying magnetic field) to allow for ease of applique separation from the CFRP layer.

    Abstract translation: 本公开的系统的实施例包括装载有在时变磁场下加热的非聚合物夹杂物的薄的热塑性或热固性聚合物膜。 将这种附加加热层插入到结构或半结构的异质层压板中提供了用于层压解构的“按需”去粘合位点。 例如,在一些实施例中,当加热层插入固化的碳纤维增强塑料(CFRP)层和聚合/金属膜叠层之间时,加热层可以选择性地加热到高于其软化点(例如,通过使用能量 从局部施加的时变磁场吸收),以便容易地从CFRP层分离。

    Hybrid Superparamagnetic Iron Oxide Nanoparticles and Polyethylenimine as a Magnetocomplex for Gene Transfection
    217.
    发明申请
    Hybrid Superparamagnetic Iron Oxide Nanoparticles and Polyethylenimine as a Magnetocomplex for Gene Transfection 有权
    混合超顺磁性氧化铁纳米颗粒和聚乙烯亚胺作为基因转染的磁复合物

    公开(公告)号:US20130210134A1

    公开(公告)日:2013-08-15

    申请号:US13848917

    申请日:2013-03-22

    Abstract: Disclosed are the nanoparticle and the method for the same, and the preparing method includes steps of mixing polyethylenimine (PEI) with the poly(acrylic acid)-bound iron oxide (PAAIO) to form a PEI-PAAIO polyelectrolyte complex (PEC) and mixing the PEI-PAAIO PEC with genetic material such as plasmid DNA to form the PEI-PAAIO/pDNA magnetic nanoparticle. The PEI-PAAIO/pDNA magnetoplex is highly water dispersible and suitable for long term storage, shows superparamagnetism, low cytotoxicity, high stability and nice transfection efficiency, and thus the PEI-PAAIO PEC can replace PEI as a non-viral gene vector.

    Abstract translation: 公开了纳米颗粒及其制备方法,其制备方法包括将聚乙烯亚胺(PEI)与聚(丙烯酸)键合的氧化铁(PAAIO)混合以形成PEI-PAAIO聚电解质络合物(PEC)和混合 PEI-PAAIO PEC与遗传物质如质粒DNA形成PEI-PAAIO / pDNA磁性纳米颗粒。 PEI-PAAIO / pDNA磁复合物具有高水分散性,适合长期保存,显示出超顺磁性,低细胞毒性,高稳定性和良好的转染效率,因此PEI-PAAIO PEC可代替PEI作为非病毒基因载体。

    ADHESIVE COMPOSITION AND ADHESIVE SHEET FOR SLIDE RAIL, AND METHOD FOR FIXING SLIDE RAIL
    219.
    发明申请
    ADHESIVE COMPOSITION AND ADHESIVE SHEET FOR SLIDE RAIL, AND METHOD FOR FIXING SLIDE RAIL 有权
    用于滑轨的胶粘组合物和粘合片,以及固定滑轨的方法

    公开(公告)号:US20120270043A1

    公开(公告)日:2012-10-25

    申请号:US13395783

    申请日:2010-09-03

    Abstract: An adhesive composition for slide rail exhibits excellent workability in attaching a slide rail to a vehicle body and has a strong adhesive force after heating, the magnetic force of which can be lowered, which sustains the strong adhesive force after heating and then returning to room temperature so as to allow the firm fixation of the slide rail to the vehicle body, and which can lower the volume of the noise caused by opening/closing of a door. Specifically disclosed is an adhesive composition for slide rail which includes a hot-melt adhesive and a ferromagnetic substance, wherein the composition shows a density at 20° C. of 1.4-4.5 g/cm3 and has such magnetic properties that the magnetic force of an adhesive sheet, that is obtained by molding the composition, at a position 1 cm apart from the surface of the adhesive sheet is 10 mT or more.

    Abstract translation: 用于滑轨的粘合剂组合物在将滑轨安装到车体上具有优异的加工性,并且在加热之后具有强的粘合力,其磁力可以降低,这在加热之后维持强的粘合力,然后恢复到室温 以便将滑轨牢固地固定在车体上,并且能够降低由门的打开/关闭引起的噪音的体积。 具体公开了一种用于滑轨的粘合剂组合物,其包括热熔粘合剂和铁磁性物质,其中该组合物在20℃下的密度为1.4-4.5g / cm 3,并且具有这样的磁性,使得 在通过模塑该组合物获得的粘合片在距离粘合片表面1cm的位置处为10mT以上。

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