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    • 76. 发明授权
    • Rotary evaporator
    • 旋转蒸发器
    • US09005403B2
    • 2015-04-14
    • US12888259
    • 2010-09-22
    • George M. Adjabeng
    • George M. Adjabeng
    • B01D3/02B01D1/00B01D1/22B01D3/08B01D3/10B01D5/00
    • B01D1/0052B01D1/228B01D3/085B01D3/10B01D5/006Y10S203/02
    • A rotary evaporator comprising a motor, a rotary joint movably inserted to a motor rotor of the motor by a sleeve in an axial direction, a collection flask attached to the rotary joint at one end of the joint, with a condenser attached to the other end of the joint. The condenser is adapted to receive a cooling coil from an immersion cooler. The cooling coil is attached to the base unit of the immersion cooler via an insulated hose. The rotary evaporator is adapted to provide various ways to remove heat from the flask in the water bath, whether by mechanically lowering the water bath, dropping fluid from the bath into an underlying reservoir, or raising and lowering the rotary evaporator out of the bath. Where the rotary evaporator is raised and lowered, the immersion cooler can remain in place if the hose connecting the base unit to the cooling coil is sufficiently long, or the condenser includes a flexible portion that accommodates the upward and downward movement.
    • 一种旋转蒸发器,包括电动机,通过套筒沿轴向可移动地插入到电动机的电动机转子的旋转接头,在接头的一端附接到旋转接头的收集烧瓶,附接到另一端的冷凝器 的联合。 冷凝器适于从浸入式冷却器接收冷却盘管。 冷却盘管通过绝缘软管连接到浸入式冷却器的基座单元。 旋转蒸发器适用于提供各种方式来从水浴中的烧瓶中除去热量,无论是通过机械地降低水浴,将液体从浴槽中滴落到下面的储存器中,或者将旋转蒸发器升出和降低出浴。 在旋转蒸发器升高和降低的地方,如果将基座单元连接到冷却盘管的软管足够长,则冷凝器可以保持在适当的位置,或者冷凝器包括容纳向上和向下运动的柔性部分。
    • 77. 发明授权
    • Rotary evaporator
    • 旋转蒸发器
    • US08894822B2
    • 2014-11-25
    • US13122848
    • 2009-08-29
    • Hubert PinhackMartin Spath
    • Hubert PinhackMartin Spath
    • B01D3/08B01D3/42B01D5/00
    • B01D3/085B01D3/42B01D5/0006B01D5/0045B01D5/0051B01D5/006
    • A rotary evaporator (1) having a cooler (6), wherein temperature sensors (15, 17) are disposed in the inlet (14) and outlet (16) of the coolant into or out of the cooler (6), and a volume flow rate of the coolant through the cooler (6) is determined. The initiation or termination of condensation in the cooler (6) is derived from an increase or decrease in the difference of the temperatures (X) at the temperature sensors (15, 17). The volume of the condensed distillate (10) is determined from the difference in temperatures (X), and a distillation volume control is performed. By regulating the heating power of the heater (11) and/or the pressure in the system, the loading of the cooler (6) is controlled as a function of the difference in temperatures (X).
    • 一种具有冷却器(6)的旋转蒸发器(1),其中温度传感器(15,17)设置在冷却器(6)中的冷却剂入口(14)和出口(16)中, 确定冷却剂通过冷却器(6)的流量。 冷却器(6)中的冷凝的开始或终止来自于温度传感器(15,17)处的温度差(X)的增加或减少。 冷凝馏分(10)的体积由温度差(X)确定,进行蒸馏量控制。 通过调节加热器(11)的加热功率和/或系统中的压力,冷却器(6)的负载作为温度差(X)的函数被控制。
    • 80. 发明授权
    • Sealing device for sealing a cavity rotatable about a rotation axis
    • 用于密封围绕旋转轴线旋转的空腔的密封装置
    • US06666457B2
    • 2003-12-23
    • US09928075
    • 2001-08-10
    • Hans Georg Genser
    • Hans Georg Genser
    • F16J1534
    • B01L7/00B01D3/085F16L27/08
    • A sealing device for sealing a cavity (40) rotatable around a rotational axis (A) includes at least two sealing areas separated from each other by at least one intermediate zone (Z1 to Z3), two sealing faces (20, 21 to 24, 30, 31 to 33, 41, 71 to 74) continuously extending around the rotational axis and slidingly movable over each other upon rotation of the cavity (40), and at least one connection (A1 to A3, B1 to B3) for charging, discharging, or passing fluids into, out of, or through the at least one intermediate zone and which serves as a buffer zone for reducing or compensating the leakage.
    • 用于密封围绕旋转轴线(A)旋转的空腔(40)的密封装置包括通过至少一个中间区域(Z1至Z3)彼此分离的至少两个密封区域,两个密封面(20,21至24, 30,31至33,41,71至74),其连续地围绕所述旋转轴线延伸并且在所述空腔(40)旋转时可彼此滑动移动;以及用于充电的至少一个连接(A1至A3,B1至B3) 排出或使流体进入,离开或通过至少一个中间区,并且其用作用于减少或补偿泄漏的缓冲区。