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    • 1. 发明授权
    • Green tea beverages manufacturing process
    • 绿茶饮料制造工艺
    • US06387428B1
    • 2002-05-14
    • US09638020
    • 2000-08-14
    • Hitoshi KinugasaMasami SasameNobuo MatsumotoKenji ShimaokaYoko UenoHitoshi NiinoKazunori OkanoyaIzumi Kobayashi
    • Hitoshi KinugasaMasami SasameNobuo MatsumotoKenji ShimaokaYoko UenoHitoshi NiinoKazunori OkanoyaIzumi Kobayashi
    • A23F300
    • A23F3/18A23F3/163
    • In order to produce green tea beverages which have a good flavor and a good balance of the fragrant components and do not form unpleasant precipitates, such green tea beverage are produced by a method including an extracting step consisting of two extraction steps, a first step in which green tea leaves are extracted at an applied pressure to obtain a pressure extract (step 1) and a second step in which green tea leaves are extracted under atmospheric pressure, followed by microfiltration to obtain an atmospheric extract (step 2), and a mixing step in which the pressure extract and the atmospheric extract obtained in the respective step are mixed at a mixing ratio determined on the basis of the weight of the raw tea leaves (step 3). This method can provide the production of drinks which have a good flavor and a good balance of the fragrant components and in addition, do not result in formation of deposits, and are suitable for beverages, in particular, for packing into PET bottles by mixing, at a predetermined ratio, the pressure extract from step 1, which is rich in suitable fragrance but short in astringency and tastiness, and the atmospheric extract from step 2, which is intense in astringency and tastiness and provided with a good color tone.
    • 为了生产具有良好风味和良好的香味成分平衡的绿茶饮料,不会形成令人不愉快的沉淀物,这种绿茶饮料通过包括由两个提取步骤组成的提取步骤的方法制备,第一步是 在施加压力下提取绿茶叶以获得压力提取物(步骤1),在大气压下提取绿茶叶,然后微滤以获得大气提取物(步骤2),并进行混合 将以各生产茶叶的重量为基准的混合比混合各步骤中获得的压力提取物和大气提取物的步骤(步骤3)。 该方法可以提供具有良好的香味和良好的香味成分平衡的饮料的生产,并且不会导致沉积物的形成,并且适用于饮料,特别是通过混合包装到PET瓶中, 来自步骤1的压力提取物,其富含合适的香味,但是涩味和口味短,以及步骤2的大气提取物,其涩味和味道强烈并具有良好的色调。
    • 10. 发明授权
    • Ultrasonic flaw detector device
    • 超声波探伤仪
    • US4472346A
    • 1984-09-18
    • US287795
    • 1981-07-28
    • Hiroyuki TakedaKazuo YamadaIzumi KobayashiYousuke OjiriShigeru Kajiyama
    • Hiroyuki TakedaKazuo YamadaIzumi KobayashiYousuke OjiriShigeru Kajiyama
    • G21C17/032G21C17/00
    • G21C17/032
    • An ultrasonic flaw detector device including axial and circumferential fixed tracks located in a space defined between a pressure vessel of a nuclear reactor and a heat insulating wall surrounding the vessel and arranged axially and circumferentially respectively of the pressure vessel of the nuclear reactor. A rotary track is located at a junction of the axial fixed track and the circumferential fixed track and moved in rotary movement by a chain and has its angle of rotation restricted by a pair of stoppers. A carrier member supporting an ultrasonic probe is moved on the tracks to effect ultrasonic flaw detection to detect any flow that might be present in the pressure vessel. To transfer the carrier member from the axial fixed track to the circumferential fixed track, the carrier member is first transferred from the axial fixed track to the rotatable track, and after the rotary track is rotated, the carrier member is transferred from the rotatable track to the circumferential fixed track.
    • 一种超声波探伤装置,其包括位于核反应堆的压力容器之间的空间中的轴向和周向的固定轨道,以及围绕容器的绝热壁,并分别轴向和周向地布置在核反应堆的压力容器中。 旋转轨道位于轴向固定轨道和周向固定轨道的接合处,并通过链条旋转运动,并且其旋转角度受到一对挡块的限制。 支撑超声波探头的载体部件在轨道上移动以实现超声波探伤以检测可能存在于压力容器中的任何流动。 为了将载体构件从轴向固定轨道传递到周向固定轨道,承载构件首先从轴向固定轨道传递到可旋转轨道,并且在旋转轨道旋转之后,承载构件从可旋转轨道传递到 圆周固定轨道。