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    • 3. 发明授权
    • Pipe part for conveying a solid particulate material
    • 用于输送固体颗粒材料的管件
    • US08801340B2
    • 2014-08-12
    • US11793082
    • 2005-12-14
    • Wouter Detlof Berggren
    • Wouter Detlof Berggren
    • B65G53/52B65G53/58
    • B65G53/52B65G53/521B65G53/58B65G2812/1658Y10T137/0318Y10T137/86292
    • A pipe part (100) for conveying a solid particulate material, comprising an outer tubular element (1) stretching along a longitudinal axis (A) and having first (9) and second (12) sections axially displaced from each other. An inner tubular element (20) is disposable inside the outer tubular element (1) and adapted for longitudinally conveying the solid particulate material from one end to another end. The inner tubular element (20) comprises an aeration-fluid-permeable wall part (23), and is sealingly connected with—and flexibly supported by—the first and second sections (9,12) to form an aeration fluid distribution chamber (40) between the first and second sections (9,12) and the inner (20) and outer (1) tubular elements. The aeration fluid distribution chamber (40) is provided with an aeration fluid inlet (15) to define an aeration fluid flow path (19) between the aeration fluid inlet (15) through the aeration-fluid-permeable wall part (23) via the aeration fluid distribution chamber (40).
    • 一种用于输送固体颗粒材料的管道部分(100),包括沿着纵向轴线(A)延伸并具有彼此轴向位移的第一(9)和第二(12)部分的外部管状元件(1)。 内部管状元件(20)在外部管状元件(1)内是一次性的,并且适于将固体颗粒材料从一端纵向输送到另一端。 内部管状元件(20)包括通气流体可渗透的壁部分(23),并且由第一和第二部分(9,12)密封地连接并且被柔性地支撑以形成曝气流体分配室(40) )在第一和第二部分(9,12)和内部(20)和外部(1)管状元件之间。 曝气流体分配室(40)设置有曝气流体入口(15),以在曝气流体入口(15)之间通过曝气流体可渗透壁部分(23)经由 曝气流体分配室(40)。
    • 5. 发明申请
    • Pipe Part For Conveying A Solid Particulate Material
    • 用于输送固体颗粒材料的管道部分
    • US20080031697A1
    • 2008-02-07
    • US11793082
    • 2005-12-14
    • Wouter Berggren
    • Wouter Berggren
    • B65G53/18B65G51/18F17D1/00F17D1/12
    • B65G53/52B65G53/521B65G53/58B65G2812/1658Y10T137/0318Y10T137/86292
    • A pipe part (100) for conveying a solid particulate material, comprising an outer tubular element (1) stretching along a longitudinal axis (A) and having first (9) and second (12) sections axially displaced from each other. An inner tubular element (20) is disposable inside the outer tubular element (1) and adapted for longitudinally conveying the solid particulate material from one end to another end. The inner tubular element (20) comprises an aeration-fluid-permeable wall part (23), and is sealingly connected with—and flexibly supported by—the first and second sections (9,12) to form an aeration fluid distribution chamber (40) between the first and second sections (9,12) and the inner (20) and outer (1) tubular elements. The aeration fluid distribution chamber (40) is provided with an aeration fluid inlet (15) to define an aeration fluid flow path (19) between the aeration fluid inlet (15) through the aeration-fluid-permeable wall part (23) via the aeration fluid distribution chamber (40).
    • 一种用于输送固体颗粒材料的管道部分(100),包括沿着纵向轴线(A)延伸并具有彼此轴向位移的第一(9)和第二(12)部分的外部管状元件(1)。 内部管状元件(20)在外部管状元件(1)内是一次性的,并且适于将固体颗粒材料从一端纵向输送到另一端。 内部管状元件(20)包括通气流体可渗透的壁部分(23),并且由第一和第二部分(9,12)密封地连接并且被柔性地支撑以形成曝气流体分配室(40) )在第一和第二部分(9,12)和内部(20)和外部(1)管状元件之间。 曝气流体分配室(40)设置有曝气流体入口(15),以在曝气流体入口(15)之间通过曝气流体可渗透壁部分(23)经由 曝气流体分配室(40)。
    • 6. 发明申请
    • Self-cleaning product transfer device
    • 自清洁产品转移装置
    • US20050087259A1
    • 2005-04-28
    • US10693548
    • 2003-10-24
    • Lee Krywitsky
    • Lee Krywitsky
    • B65G53/52F16L27/12B67C3/26
    • B65G53/52B65G53/521F16L27/12
    • A product transfer device is provided that includes telescoping tubular arm sections that collectively define a fluid passageway and are arranged so that a terminal arm section has the smallest diameter, while the diameters of the succeeding arm sections are increasingly larger. Piston seals in adjacent arm sections cooperate to define a chamber. A product transfer valve and isolation valve control the flow of product through the product transfer device. Pressurization of the passageway extends the arm sections and an actuator device opens the product transfer valve when the transfer arm contacts a container bottom. Pressurization of the chamber causes retraction of the arm sections so that the exterior of each arm section is wiped clean by the piston seal of the arm section into which that arm section is retracted. Retraction of the arm sections also operates a securing device that automatically shuts the product transfer valve.
    • 提供了一种产品传送装置,其包括共同限定流体通道的伸缩管状臂部分,并且布置成使得端子臂部分具有最小的直径,而后端部分的直径越来越大。 相邻臂部分中的活塞密封件合作以限定腔室。 产品转换阀和隔离阀通过产品转移装置控制产品的流动。 通道的加压延伸臂部分,并且当传送臂接触容器底部时,致动器装置打开产品转移阀。 室的加压引起臂部的收缩,使得每个臂部的外部被臂部缩回到其中的臂部的活塞密封件擦拭干净。 臂部分的缩回还可以自动关闭产品转移阀的固定装置。
    • 7. 发明授权
    • Process for conveyance of powder materials in hyperdense phase applicable to bypassing obstacles
    • 用于输送超重相位粉末材料的方法适用于绕过障碍物
    • US06402437B1
    • 2002-06-11
    • US09674493
    • 2001-01-29
    • Gerard GasquetChristian CloueStephane Torsiello
    • Gerard GasquetChristian CloueStephane Torsiello
    • B65G5100
    • B65G53/20B65G53/16B65G53/52
    • Process for conveyance of a powder material in a hyperdense bed to bypass an obstacle, in which an obstacle bypass device including at least upstream, intermediate and downstream caissons is inserted between two horizontal conveyors, an upstream conveyor, and the downstream conveyor. At a device entry, at the upstream caisson lower duct is supplied with gas at pressure P1, the upstream caisson further including an upper duct which is a column. The intermediate caisson is between the upstream caisson and the downstream caisson at a level that bypasses the obstacle, a lower duct of which is fed with gas at pressure P3 and an upper duct of which is connected to the upper duct of the upstream caisson and to an upper duct of the downstream caisson. At a device outlet, at the downstream caisson, a lower duct is supplied with gas at pressure P2. The three caissons remain full of powder material kept in a potential fluidization state at all times, with a pressure difference P1−P2 being kept strictly positive.
    • 用于输送超强床中的粉末材料以绕过障碍物的方法,其中包括至少上游,中间和下游沉箱的障碍物旁通装置插入在两个水平输送机,上游输送机和下游输送机之间。 在设备入口处,在上游沉箱下部管道处以P1压力供应气体,上游沉箱还包括一列是上管道。 中间沉箱位于上游沉箱和下游沉箱之间,处于绕过障碍物的水平,其下部管道在压力P3处供给气体,其上部管道连接到上游沉箱的上部管道,并且 下游沉箱的上部管道。 在设备出口处,在下游沉箱处,在压力P2处向下管道供应气体。 三个沉箱始终保持处于潜在流化状态的粉末材料,压力差P1-P2保持严格的正。
    • 9. 发明授权
    • Molded hopper tee
    • 成型料斗三通
    • US4889318A
    • 1989-12-26
    • US279718
    • 1988-12-05
    • David E. Sisk
    • David E. Sisk
    • B65G53/52F16L57/06
    • B65G53/52B65D88/26B65D88/54F16L41/021F16L57/06
    • A molded hopper tee for a hopper truck, tank trailer or the like is disclosed as having a first generally vertically directed hollow pipe section including a laterally outwardly directed flange at an upper end thereof for attachment to the bottom of a hopper and a second hollow pipe section extending generally transversely to the first hollow pipe section and extending beyond the first hollow pipe section on opposite sides thereof and terminating in opposite free ends for attachment to pipeline tubing at a discharge location. Bulk granular material particles can be pneumatically unloaded from the hopper and routed first through the vertically and horizontally directed hollow pipe sections, and then into the pipeline tubing. Opposite free ends of the second hollow pipe section include at least one circumferentially extending metal reinforcing element molded in-situ within and adjacent each free end. The laterally outwardly directed flange at the upper end of the first hollow pipe section also includes at least one metal reinforcing element molded in-situ so as to extend in the same direction as the laterally outwardly directed flange.
    • 公开了一种用于料斗卡车,油罐拖车等的模制料斗三通,其具有第一大致垂直定向的中空管段,该中空管段在其上端包括横向向外的凸缘,用于附接到料斗的底部,而第二中空管 大致横向于第一中空管段延伸并且在其相对侧上延伸超出第一中空管段并且终止于相对的自由端,用于附接到排放位置处的管道管道。 散装颗粒材料颗粒可以从料斗中气动卸载,首先通过垂直和水平定向的中空管段,然后进入管道管道。 第二中空管部分的相对的自由端包括至少一个周向延伸的金属增强元件,其原位在每个自由端内和相邻的每个自由端中。 在第一中空管部分的上端处的横向向外的凸缘还包括至少一个金属加强元件,其原位模制成沿与横向向外的凸缘相同的方向延伸。
    • 10. 发明授权
    • Conveyor system for loading ships
    • 输送系统装船
    • US4477210A
    • 1984-10-16
    • US425082
    • 1982-09-23
    • Leslie J. Yare
    • Leslie J. Yare
    • B65G53/52B67D9/02B65G53/54
    • B67D9/02B65G53/52Y10T137/8807
    • A pneumatic conveyor system for transporting bulk materials from a shore-based hopper (2) to a ship includes a pipeline comprising an inlet section (4), an intermediate telescopic tubing (36) and an outlet section (45). One end of the telescopic tubing (36) is interconnected to the inlet section (4) by means of a universal joint (8,10), a length of flexible tubing (12) interconnecting the hopper (2) with said one end of the telescopic tubing, while the outlet section (45) is mounted on the other end of the telescopic tubing (36) by a further universal joint (48, 50), a further length of flexible tubing (52) interconnecting said other end of the telescopic tubing (36) with an outlet from the outlet section (45).
    • PCT No.PCT / GB82 / 00026 Sec。 371日期1982年9月23日 102(e)1982年9月23日PCT PCT 1982年1月29日PCT公布。 出版物WO82 / 02702 日本1982年8月19日。用于将散装材料从岸基料斗(2)运输到船舶的气动输送机系统包括管道,其包括入口部分(4),中间伸缩管(36)和出口部分 45)。 伸缩管(36)的一端通过万向接头(8,10)与入口部分(4)相互连接,一定数量的柔性管道(12)将料斗(2)与所述料斗(2)的所述一端 伸缩管,而出口部分(45)通过另一通用接头(48,50)安装在伸缩管(36)的另一端上,另一长度的柔性管(52)将可伸缩管的另一端 管道(36)具有出口部分(45)的出口。