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    • 1. 发明授权
    • Chemical reactor with knitted wire mesh fabric as a holding device for particles
    • 化学反应器用针织丝网织物作为颗粒保持装置
    • US09364810B2
    • 2016-06-14
    • US13988326
    • 2011-11-15
    • Michael MerkelKarl-Heinz WilkeThomas Knauf
    • Michael MerkelKarl-Heinz WilkeThomas Knauf
    • B01J8/02C07C209/00B01J8/44
    • B01J8/0292B01J8/025B01J8/44B01J2208/00884Y10T428/12424
    • In a chemical reactor for heterogeneously catalyzed reaction of a fluid, comprising a holding device for catalyst particles and/or inert particles (80, 100) through which the fluid flows, the side of the holding device lying upstream when viewed in the direction of flow of the fluid comprises knitted wire mesh fabric (50), and the average clear mesh width of the knitted wire fabric (50) is smaller than the average particle size x50.3 of the particles (80, 100). The invention furthermore relates to a process for reaction of a fluid, wherein the reaction is carried out in a reactor according to the invention in the presence of heterogeneous catalyst particles (80) and the catalyst particles (80) are arranged in the holding device for catalyst particles (80). The invention also provides the use of knitted wire mesh fabric (50) as a holding device for catalyst particles and/or inert particles (80, 100) in chemical reactors.
    • 在用于流体的非均相催化反应的化学反应器中,包括用于催化剂颗粒的保持装置和/或流体流过的惰性颗粒(80,100),当从流动方向观察时,保持装置的侧面位于上游 的流体包括针织丝网织物(50),并且针织线织物(50)的平均透明网格宽度小于颗粒(80,100)的平均粒径×50.3。 本发明还涉及一种流体反应的方法,其中反应在非均相催化剂颗粒(80)存在的情况下在根据本发明的反应器中进行,催化剂颗粒(80)被布置在用于 催化剂颗粒(80)。 本发明还提供了在化学反应器中使用针织丝网织物(50)作为催化剂颗粒和/或惰性颗粒(80,100)的保持装置。
    • 10. 发明申请
    • Method of manufacturing composite panels
    • 制造复合板的方法
    • US20060175730A1
    • 2006-08-10
    • US11054818
    • 2005-02-10
    • Michael Merkel
    • Michael Merkel
    • D21J3/00
    • B29C33/505B29C33/38B29C33/3821B29C44/16B29C70/44
    • A method of manufacturing solid composite panels utilizes an exothermic foam-forming resin to simultaneously consolidate and cure the heat activated resin of the composite panel without forming a foam-filled part. According to the method, composite fabric layers are laid up on the interior surface of a mold half that conforms to the surface configuration of the finished panel. Once the composite fabric layers are laid up, a flexible bladder is placed over the composite layup and the mold closed. The exothermic foam-forming resin is injected into the bladder within the mold cavity, which generates heat to cure the resin impregnated fabric layers above the cure temperature while simultaneously generating pressure within the cavity to consolidate the fabric layers into a substantially solid void-free composite panel.
    • 制造固体复合板的方法利用放热发泡树脂来同时固化和固化复合板的热活化树脂,而不形成泡沫填充部分。 根据该方法,将复合织物层铺设在符合成品面板的表面构造的半模的内表面上。 一旦复合织物层铺设起来,将柔性囊放置在复合叠层上,模具封闭。 将放热发泡树脂注入到模具腔内的气囊中,其产生热量以固化树脂浸渍的织物层高于固化温度,同时在腔内产生压力以将织物层固结成基本上无固体的无孔复合材料 面板。