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    • 2. 发明申请
    • APPARATUS FOR PROCESSING HORTICULTURAL PRODUCTS
    • 加工园艺产品的设备
    • WO2017130125A1
    • 2017-08-03
    • PCT/IB2017/050405
    • 2017-01-26
    • UNITEC S.P.A.
    • AMADORI, ManuelFANTONI, Maria ElenaFURIERI, LucaMARIAN, MarcoPAPADHIMITRI, XhoanZUCCHELLI, Andrea
    • B65G51/01
    • B65G51/01B65G47/908B65G2201/0211
    • An apparatus for processing horticultural products, pushed along a tank (B) of a respective processing line by a fluid current, on which the horticultural products can float freely; the apparatus comprises at least one floating alignment matrix (2), provided with a base platform (3), which in turn can be submerged at a predefined section of the tank (B), and with a plurality of mutually parallel partitions (4), which are extended at right angles from the upper face of the platform (3) and, when the platform (3) is submerged in the predefined section, at least rise above the free surface of the predefined section; each pair of adjacent partitions (4), which can be arranged along the movement direction of the fluid current, thus defines a respective channel (5) for automatic forced alignment for the horticultural products, pushed toward the predefined section by the fluid current.
    • 一种用于处理园艺产品的设备,所述设备用于通过流体流沿相应处理线的箱(B)推动,园艺产品可以自由漂浮在所述设备上; 该设备包括至少一个浮动对准矩阵(2),该浮动对准矩阵(2)设置有基座平台(3),基座平台(3)又能够浸没在水箱(B)的预定部分处,并且具有多个相互平行的隔板(4) ,其从所述平台(3)的上表面以直角延伸,并且当所述平台(3)浸没在所述预定部分中时,至少在所述预定部分的自由表面上方升高; 因此可以沿着流体流动的运动方向布置的每对相邻分隔件(4)因此限定用于园艺产品的自动强制对准的相应通道(5),该通道(5)被流体流推向预定部分。 / p>
    • 3. 发明申请
    • IMPROVED APPARATUS FOR EMPTYING CONTAINERS OF HORTICULTURAL PRODUCTS
    • 改良装置用于生产民用产品的容器
    • WO2014057378A1
    • 2014-04-17
    • PCT/IB2013/058778
    • 2013-09-23
    • UNITEC S.P.A.
    • BENEDETTI, Luca
    • B65G51/01A23N12/02B65B69/00B65B25/04
    • B03B5/28A23N12/023B03B7/00B03B11/00B03B13/00B65B25/045B65B69/00B65G51/01B65G65/23B65G2201/0211
    • Apparatus for emptying containers (100,101) filled with horticultural products (50) and comprising a basin with an open top side (1) and filled with water, operating means (2A,2B,4) of the containers, and arranged at a level higher than the top liquid level (L) in the basin, in order to move the containers over a defined area and to rotate them to offload its content, collecting means (5,6) placed in the lower part of the basin and partially outside of it, and that collect the horticultural products from the bottom of the basin and lift them up to an emersion level, and that uses means apt to deviate the leaves (51) from the central surface of the liquid towards a surface area adjacent to a definite wall (15) of the basin, and to remove them from that area. Said means comprise a horizontal spillway opening (16), prolonged, arranged along said wall and to a height slightly lower than the liquid level, and pumps which spurt small water spouts almost horizontally, which form on the liquid surface a surface flow directed towards said prolonged opening, and filters of the drained water through said opening; said filters comprise a flexible belt conveyor (17), which is prolonged, extended for a closed path and in a continuous motion and which operates as a sieve, placed outside the basin and below said spillway opening that intercepts and filters the water and the leaves falling from said spillway opening.
    • 用于排空装有园艺产品(50)的容器(100,101)的装置,并且包括具有开放顶侧(1)并且充满水的盆,容器的操作装置(2A,2B,4),并且布置在更高的水平 比在盆中的顶部液面(L),为了将容器移动到限定区域并使其旋转以卸载其内容物,收集装置(5,6)放置在盆的下部并且部分地位于 并且从盆底收集园艺产品并将其提升到浸入水平,并且使用将叶片(51)从液体的中心表面偏离到与确定的相邻的表面区域的方式 墙壁(15),并将其从该区域移除。 所述装置包括沿着所述壁延伸并且稍微低于液面的高度的水平溢流道开口(16),以及几乎水平地喷射小水口的泵,其在液体表面上形成指向所述 延长开口,并通过所述开口过滤掉排出的水; 所述过滤器包括柔性带式输送机(17),其被延长,延伸以用于封闭路径并且连续运动,并且其作为筛子运行,放置在盆的外部并且在所述溢流道开口下方拦截和过滤水和叶 从溢洪道开口落下。
    • 5. 发明申请
    • METHOD FOR MIXING LUMP MATERIALS IN A LIQUID AND DEVICE FOR REALISING THE SAME
    • 用于混合液体中的液体材料和实现其的装置的方法
    • WO9962317A3
    • 2000-02-03
    • PCT/RU9900177
    • 1999-05-28
    • A A BOCHVARS ALL RUSSIAN SCIENMORKOVNIKOV VYACHESLAV EVGENIERAGINSKY LEONID SOLOMONOVICHMOROZOV NIKOLAI VIKTOROVICHELISEEV SERGEI PETROVICH
    • MORKOVNIKOV VYACHESLAV EVGENIERAGINSKY LEONID SOLOMONOVICHMOROZOV NIKOLAI VIKTOROVICHELISEEV SERGEI PETROVICH
    • B01F3/12B01F13/02B01J8/40B65G35/00B65G49/02B65G49/04B65G51/01B01D11/02B01D15/02
    • B65G51/01B65G35/00B65G49/0413
    • The present invention pertains to the field of counter-current mass-exchange processes that provide a continuous interaction between a solid phase and a liquid phase, for example during washing, lixiviation and dissolution processes. This invention can be used in the radio-chemical industry, in the chemical industry, in hydro-metallurgy as well as in other industrial fields. The purpose of this invention is to increase the efficiency of counter-current mass-exchange processes in solid-liquid systems, wherein said invention essentially relates to a new method as well as to a device for mixing a solid-phase lump material. The device of the present invention comprises a tubular body (1) which is inclined at an angle of between 5 and 60 DEG relative to a horizontal surface and which comprises a packing (4) in the form of nozzles (6) defined by flat vanes (5). The vanes are inclined at an acute angle of between 5 and 45 DEG relative to the axis of the tubular body (1), and are separated by protection grids (7) for preventing any downfall of solid-phase materials under the packing. The packing is arranged in the body along the axis thereof, divides said body into an upper chamber (2) and a lower chamber (3), and opens onto transverse partitions (11) that define cavities under the packing. The cavities communicate through ducts (13) provided in the lower area. Each cavity includes a separate pulse chamber (14), wherein the number of said chambers is an even number.
    • 本发明涉及提供固相和液相之间的连续相互作用的逆流质量交换方法领域,例如在洗涤,浸出和溶解过程中。 本发明可用于放射化学工业,化学工业,水电冶金以及其他工业领域。 本发明的目的是提高固液系统中逆流质量交换过程的效率,其中所述发明基本上涉及一种新方法以及用于混合固相团块材料的装置。 本发明的装置包括相对于水平表面倾斜5°至60°之间的角度的管状体(1),其包括由平面叶片限定的喷嘴(6)形式的填料(4) (5)。 叶片相对于管状体(1)的轴线倾斜5至45度之间的锐角,并由保护网格(7)分开,以防止填料下固相物质的垮台。 包装沿其轴线布置在主体中,将所述主体分成上部腔室(2)和下部腔室(3),并且通向在包装下限定空腔的横向隔板(11)上。 空腔通过设置在下部区域中的管道(13)连通。 每个空腔包括单独的脉冲室(14),其中所述室的数量是偶数。