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    • 2. 发明公开
    • PRESSURE DISTRIBUTION SCANNING DEVICE
    • EP4194829A1
    • 2023-06-14
    • EP22466002.7
    • 2022-11-28
    • Ceská zemedelská univerzita v Praze
    • Volf, JaromírNovák, ViktorPapezová, StanislavaKoder, PetrSyrový, Tomás
    • G01L1/18B25J13/08G01L5/22G06F3/041
    • The pressure distribution scanning device is characterized by consisting of tactile sensors arranged in the shape of a regular rectangular matrix. Each tactile sensor comprises an elastic non-conductive supporting foil (1) on which resistive ink (5) is applied only in places of contact with the circular electrodes (3) and (4). The resistive ink (5) may be applied directly on the concentric circular electrodes (3) and (4), which are designed as follows: The motives of the inner circular electrodes (4) of the sensor are applied on the bottom elastic supporting foil (1); a dielectric layer (2) with orifices (7) at the sites of the inner circular electrodes (3) is applied on the elastic non-conductive supporting foil (1). The motives of the outer circular electrodes (4) in the shape of concentric annuli are printed on this dielectric layer (2). The resulting structure of circular electrodes (3) and (4) in the shape of concentric annuli is then in contact with the resistive ink (5), which is applied only at the site of the circular electrodes (3) and (4). The entire structure then has circular orifices (7) cut through the interstitial space of the motives of the circular electrodes (3) and (4). On the other side of the elastic non-conductive foil (6) there is the shear layer (8) covered by an elastic protective non-conductive covering upper layer (9). This shear layer (8) has a different elasticity module in the transverse direction than the elasticity module in the longitudinal direction. The tactile sensor set designed in this way is covered on the side of the circular electrodes (3) and (4) by an elastic protective non-conductive covering bottom layer (10). Under this layer (10), a solid layer (11) may be placed to reinforce the structure, and under this a covering layer (12) may be added. Instead of the solid layer (11), a reinforced box frame (13), in which the scanner electronics can be placed, may be used.
    • 4. 发明公开
    • Dual-module vermicomposter
    • Doppelmodul Wurmkompostierungsreaktor
    • EP2604589A1
    • 2013-06-19
    • EP12466022.6
    • 2012-12-07
    • Ceská Zemedelská Univerzita V Praze
    • Pliva, PetrCejka, ZdenekHanc, Ales
    • C05F17/00C05F17/02B65D21/02A01K67/033
    • C05F17/0009A01K67/0332C05F17/0211Y02P20/145Y02W30/43
    • Dual-module vermireactor featuring two identical modules "Module 1" (2) and " Module 2" (3) arranged in two functional settings, either tightly connected or disconnected.
      Each module is equipped with four rolling wheels (19), at the bottom of each module (2) and (3). Part of the bottom set is provided with a perforated metal sheet (9), with an underneath pull-out reservoir (10) fitted with a release valve (11). Each module is equipped with a main lid (12) and two side lids (13), a module panel (14) with technological opening (15). A main panel (16) is provided with a control unit and other elements for monitoring and management and is connected through data cables (17) and hoses (18) with the individual modules directly. The modules (2) and (3) are furhter equipped with a removable full wall (4), a perforated wall (5), fast-release clasps (6), alignment spikes (7) and rolling suspension (8).
    • 具有两个相同模块“模块1”(2)和“模块2”(3)的双模块虚拟机配置在两个功能设置中,紧密连接或断开连接。 每个模块配备有四个滚动轮(19),每个模块(2)和(3)的底部。 底部组件的一部分设置有穿孔金属板(9),其具有装配有释放阀(11)的下部拉出储存器(10)。 每个模块配备有主盖(12)和两个侧盖(13),具有技术开口(15)的模块板(14)。 主面板(16)设置有控制单元和其他用于监控和管理的元件,并通过数据电缆(17)和软管(18)与各个模块直接连接。 模块(2)和(3)设置有可移除的全壁(4),多孔壁(5),快速释放扣(6),对准钉(7)和滚动悬架(8)。