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    • 92. 发明授权
    • Screw-type heat-exchanger system with variable-clocking screw conveyors
    • 螺杆式换热器系统,带可变式螺旋输送机
    • US08739963B2
    • 2014-06-03
    • US13372045
    • 2012-02-13
    • Robert NickersonJohn Whitney
    • Robert NickersonJohn Whitney
    • B65G15/14
    • B65G33/34B65G33/18
    • A system for treating a material includes first and second screw conveyors each having a rotary shaft and a helical flight extending radially outward therefrom, the flighting of the screw conveyors overlapping with each other, and first and second actuators operably coupled to the first and second screw conveyors in a one-to-one dedicated relationship to rotationally drive the screw conveyors independently of each other. In typical embodiments, also included is a system for varying the clocking position of the screw conveyors relative to each other, wherein the screw conveyor flights are axially adjusted with respect to each other between a normal position and an advanced and/or retarded position. Also disclosed are methods of varying the axial position of the screw conveyor flights with respect to each other between the normal and advanced and/or retarded positions.
    • 一种用于处理材料的系统包括第一和第二螺旋输送机,每个螺旋输送机具有旋转轴和从其径向向外延伸的螺旋形飞行器,螺旋输送机的飞行彼此重叠,并且第一和第二致动器可操作地联接到第一和第二螺杆 输送机以一对一的专门关系旋转地驱动螺旋输送机彼此独立。 在典型的实施例中,还包括一种用于改变螺旋输送机相对于彼此的定时位置的系统,其中螺旋输送机螺旋在正常位置和高级和/或延迟位置之间相对于彼此轴向调节。 还公开了在正常位置和/或延迟位置之间相对于彼此改变螺旋输送机的轴向位置的方法。
    • 95. 发明申请
    • Take-Up Machine
    • 收线机
    • US20110247917A1
    • 2011-10-13
    • US13078033
    • 2011-04-01
    • Koji Matsuda
    • Koji Matsuda
    • B65G15/14
    • B29C47/34B29C47/0016B29C47/0019B29C47/0033B29C47/084B29C47/0864B29C47/0867B29C47/30B29C47/90B29L2031/003B65G15/14B65G15/42
    • A take-up machine is provided. Each of upper and lower conveying devices has an endless rotating body and a plurality of take-up pads provided on the surface of the endless rotating body. The take-up machine is configured to pinch a top face and a bottom face of a resin-molded article with the take-up pads of the upper and lower conveying devices to take up the resin-molded article. The take-up machine is installed along an extrusion line of a resin extruder. In a lateral direction orthogonal to an extrusion line, a length of each of the take-up pads is multiple times a length of the resin-molded article to be taken up. Each of the take-up pads has a plurality of supporting potions which are arranged in the lateral direction and capable of supporting resin-molded articles with different shapes. The upper and lower conveying devices are movable in the lateral direction so as to make one of the supporting portions coincide with the extrusion line.
    • 提供收纸机。 上下输送装置中的每一个具有环形旋转体和设置在无端旋转体的表面上的多个卷取垫。 卷取机被构造为用上下输送装置的卷取垫将树脂成形品的顶面和底面夹紧,以卷取树脂成形品。 卷取机沿树脂挤出机的挤出线安装。 在与挤出线正交的横向方向上,每个卷取垫的长度是要被吸收的树脂成形品的长度的多倍。 每个卷取垫具有多个沿横向方向布置并能够支撑具有不同形状的树脂模塑制品的支撑部分。 上下输送装置可以在横向方向上移动,以使其中一个支撑部分与挤出线重合。
    • 96. 发明申请
    • CONVEYING SYSTEM FOR TRANSPORTING MATERIALS, IN PARTICULAR BULK MATERIAL
    • 用于运输材料,特别是大量材料的输送系统
    • US20100193332A1
    • 2010-08-05
    • US12694362
    • 2010-01-27
    • Jurgen BeyererKai-Uwe Vieth
    • Jurgen BeyererKai-Uwe Vieth
    • B65G15/14
    • B07C5/366B07C5/02
    • A conveying system for transporting materials, in particular bulk material, can comprise a first conveying element which is configured to receive the materials and to transport the same in a transport direction and can be moved in the same direction in the transport direction. A second conveying element which can be moved in the transport direction and is disposed at a spacing from the first conveying element. The second conveying element is provided with a plurality of transverse ribs which can be moved with the second conveying element in the transport direction, which transverse ribs are formed and disposed on the second conveying element such that they cover the first conveying element on the side thereof configured to receive the materials and, together with the latter side of the first conveying element, form compartments which are separated from each other in order to receive and transport the materials.
    • 用于输送材料,特别是散装材料的输送系统可以包括第一输送元件,其被配置为接收材料并且在输送方向上输送材料并且可以沿输送方向沿相同的方向移动。 第二输送元件,其能够在输送方向上移动并与第一输送元件间隔设置。 所述第二输送元件设置有多个横向肋,所述多个横向肋能够沿所述输送方向与所述第二输送元件一起移动,所述横向肋形成并布置在所述第二输送元件上,使得所述第二输送元件在其侧面上覆盖所述第一输送元件 被配置为接收所述材料,并且与所述第一输送元件的后侧一起形成彼此分离以便接收和输送所述材料的隔室。
    • 97. 发明授权
    • Device for driving load conveyors or transporters
    • 用于驱动负载输送机或运输机的装置
    • US07731017B2
    • 2010-06-08
    • US11918798
    • 2006-04-11
    • Zmaj Petrovic
    • Zmaj Petrovic
    • B65G15/14
    • B65G47/31B65G21/2054B65G21/209
    • A device for driving load conveyors or transporters in the form of a driving and guiding means (4), integrated in a line of conveyors or transporters (1 and 2) and extending along the longitudinal axis of said conveyors or transporters (1 and 2), perpendicularly to their plane and essentially formed by the combination of a driving belt (5), arranged along at least one longitudinal edge or in the extension of longitudinal edges of at least one conveyor or transporter (1 and 2) or two successive conveyors or transporters (1 and 2), and of a guide applying (6) the loads against the driving belt (5), arranged along the longitudinally opposite edges. Particular applicability is in the field of conveying by means of pallet conveyors or transporters, in particular with change of rate of transport and/or of level between conveyors.
    • 驱动装载输送机或转运器的装置,其形式为驱动和引导装置(4),其集成在输送机或转运器(1和2)的一行中并且沿着所述输送机或运输工具(1和2)的纵向轴线延伸, 垂直于它们的平面并且基本上由沿着至少一个纵向边缘或至少一个输送机或运输机(1和2)的纵向边缘的延伸部或两个连续的输送机布置的传动带(5)的组合形成,或者 以及沿纵向相对边缘布置的导向装置(6)抵靠传动带(5)的导向装置(1和2)。 特别适用于通过托盘输送机或运输机输送的领域,特别是随着运输速率的变化和/或输送机之间的水平的变化。
    • 98. 发明申请
    • Vial Supply Device
    • 小瓶供应装置
    • US20090101474A1
    • 2009-04-23
    • US12300452
    • 2007-04-26
    • Shoji Yuyama
    • Shoji Yuyama
    • B65G15/14B65B43/52
    • B65B3/003B65B43/52B65G47/57B65G2201/0235
    • A vial supply device 11 having a receiving section with a large capacity and capable of reliably discharging the vials includes: a receiving section 101 for receiving many empty vials 4; a conveyance unit 105 having a horizontal endless member 104 located at a bottom wall of the receiving section 101 and being configured to be driven in a horizontal direction, the conveyance unit being further configured to convey the vials 4 in a horizontal direction by using the horizontal endless member 104; and a discharge unit 111 having a vertical endless member 109 located at a wall of the receiving section 101 and being configured to be driven in a vertical direction, the discharge unit being further configured to lift the vials 4 upward and discharge the same while allowing the vials 4 to be horizontally supported at support members 110 located at the vertical endless member 109 at predetermined intervals.
    • 具有容量大且能够可靠地排出小瓶的容纳部的小瓶供给装置11包括:容纳部101,用于容纳多个空瓶4; 输送单元105,其具有位于容纳部101的底壁的水平环状构件104,并且构造成沿水平方向驱动,输送单元还构造成通过使用水平方向在水平方向上输送小瓶4 环形构件104; 以及排出单元111,其具有位于容纳部101的壁的垂直环形构件109,并且构造成沿垂直方向被驱动,排出单元还被构造成向上提起小瓶4并将其排出,同时允许 小瓶4以预定间隔被水平地支撑在位于垂直环形构件109的支撑构件110处。
    • 99. 发明申请
    • Conveyor Device for Containers Such as Preforms
    • 诸如预制容器的输送装置
    • US20080142339A1
    • 2008-06-19
    • US11885469
    • 2006-02-28
    • Alain Charpentier
    • Alain Charpentier
    • B65G15/14
    • B65G15/14B65G15/105B65G51/035
    • A linear, horizontal conveyor device for containers which are equipped with a collar at the base of the neck thereof. The invention includes two conveyors including endless links, which are each equipped with two parallel, mobile lines which face one another and which are driven in the same direction and at the same speed. The aforementioned lines are separated from one another by a distance that is greater than the diameter of the body of the containers and less than the diameter of the collars thereof. At least one conveyor includes a short segment that can be moved transversely outwards, such that the space between the two facing lines becomes greater than the diameter of the collar and the container falls.
    • 一种用于容器的线性,水平输送装置,其在其颈部的基部配备有套环。 本发明包括两个输送机,它们包括环形连杆,每个输送机配备有两个相互面对的并以相同方向和相同速度驱动的平行的移动线。 上述线路彼此分离的距离大于容器主体的直径并且小于其套环的直径。 至少一个输送机包括可以横向向外移动的短段,使得两个相对的线之间的空间变得大于轴环的直径并且容器下落。