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    • 1. 发明授权
    • Automated home beer brewing machine and method
    • 自动家用啤酒酿造机及方法
    • US6032571A
    • 2000-03-07
    • US174703
    • 1998-10-19
    • Brad BrousCurt N. TorgersonTerry DubsonCraig A. Wright
    • Brad BrousCurt N. TorgersonTerry DubsonCraig A. Wright
    • C12C13/10
    • C12C13/10
    • An automated home beer brewing machine and method makes beer in a single vessel under automatic control. The machine and method allows making of wort for beer without requiring apparatus to be sanitized, without boiling the wort, without the use of a traditional water-filled fermentation lock, and without using a wort chiller or ice-packing of a brewing pot. The inventive single-vessel automated brewing operation allows the user to load ingredients, conduct a grain-steeping if desired, and then automatically carries out the rest of the brewing process in a single vessel, until summoning the user days later to sugar-prime and bottle the beer. Thus, the user is required to provide much less time and labor than conventional home beer brewing, and the invention also frees the home-hobby brewer of much of the current art traditionally attached to home brewing.
    • 一种自动化的家用啤酒酿造机和方法使啤酒在一个容器内自动控制。 该机器和方法允许制造啤酒的麦芽汁,而不需要使用传统的充水发酵锁即可,而不需要使用麦芽汁冷却器或煮泡锅的冰包装,而不需要煮沸麦芽汁即可消毒。 本发明的单容器自动酿造操作允许使用者加载成分,如果需要,进行谷物浸泡,然后在单个容器中自动进行其余的酿造过程,直到召唤使用者几天后进行糖浆和 瓶啤酒。 因此,用户被要求比传统的家用啤酒酿造提供的时间和劳动力少得多,并且本发明还释放了传统上附着于家庭酿造的大部分当前艺术的家庭兴趣啤酒。
    • 2. 发明授权
    • Apparatus for dispensing dry particles
    • 用于分配干颗粒的装置
    • US5341963A
    • 1994-08-30
    • US9887
    • 1993-01-27
    • Steven C. MottCraig A. Wright
    • Steven C. MottCraig A. Wright
    • B65G65/44G01N1/00G01N1/04G01N1/10G01N1/20G01N15/02G01N15/14G01N33/00B67D5/64
    • B65G65/44G01N1/04G01N15/0205G01N1/20G01N2001/1006G01N2001/2021G01N2033/0091
    • A particle analyzer includes a vibratory driver for particulate samples which are received in a sample cup to be drizzled under controller vibration to an analysis cell of the analyzer along with a conveying air stream. The driver is arranged to impose orbital oscillatory motion in a vertical plane on the sample cup to roll the sample while assisting in sifting of the sample through conventional sieve screen sample cups. Avoidance of vibratory classification of the sample by particle size while the test is in progress, as well as avoidance of sample compaction is achieved with the described driver. Additionally, an improved predictability of sample feed rate control results from the use of the orbital driver also with a novel sample cup not utilizing a sieve screen, but employing the inherent characteristic of particulate materials to form an repose angle when piled up. The novel sample cup provides a ledge surface upon which particulates are piled in their inherent angle of repose preparatory to being vibrationally dislodged and drizzled over an edge of the ledge. The repose angle of the particulates is continuously refilled from a bulk sample of the particulates as particles are drizzled to the analyzer. Structure is provided for adapting the sample cup to a variety of particulates, regardless of whether they be free-flowing or somewhat cohesive.
    • 颗粒分析仪包括用于颗粒样品的振动驱动器,其被接收在样品杯中,以在控制器振动下被毛刺到分析器的分析单元以及输送空气流。 驱动器被设置为在样品杯上的垂直平面上施加轨道振荡运动,以在辅助筛选样品通过常规筛网样品杯的同时滚动样品。 使用所述的驱动器可以实现在测试过程中通过粒度避免样品的振动分类,以及避免样品压实。 另外,通过使用轨道驾驶员,也可以使用不使用筛网的新型样品杯,但采用颗粒材料的固有特性在堆积时形成休止角,从而提高了样品进料速率控制的可预测性。 新颖的样品杯提供了一个凸缘表面,颗粒在其固有的静止角度被堆积在其上,其预先被振动地移动并在凸缘的边缘上下雨。 当颗粒被毛毛细入分析器时,颗粒的静止角度从颗粒的大量样品中连续重新填充。 提供了用于使样品杯适应各种颗粒的结构,而不管它们是自由流动还是有一些内聚力。