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    • 1. 发明申请
    • ELECTROMAGNETIC PUMP
    • 电磁泵
    • US20110293449A1
    • 2011-12-01
    • US13147728
    • 2010-05-10
    • Tetsuya ShimizuKazuhiko KatoNoriomi FujiiKazunori Ishikawa
    • Tetsuya ShimizuKazuhiko KatoNoriomi FujiiKazunori Ishikawa
    • F04B35/04
    • F04B53/12F04B17/044F04B17/048
    • A piston is slidably provided in a cylinder and partitions a first pump chamber, and a second pump chamber connected to an object to be operated. A first on-off valve is provided between the first pump chamber and the outside. A second on-off valve is provided in a connecting flow passage that connects the first pump chamber and the second pump chamber to each other. When the piston is moved forward by an electromagnetic force of a solenoid portion, a capacity of the first pump chamber decreases, and a capacity of the second pump chamber increases. When the piston is moved backward by a biasing force of a spring, the capacity of the first pump chamber increases, and the capacity of the second pump chamber decreases. A pressure receiving area of the front face of the piston is larger than that of the back face thereof.
    • 活塞可滑动地设置在气缸中并且分隔第一泵室和连接到待操作对象的第二泵室。 第一开关阀设置在第一泵室和外部之间。 第二开关阀设置在将第一泵室和第二泵室彼此连接的连接流路中。 当活塞通过螺线管部分的电磁力向前移动时,第一泵室的容积减小,并且第二泵室的容量增加。 当活塞通过弹簧的偏置力向后移动时,第一泵室的容量增加,并且第二泵室的容积减小。 活塞前面的受压面积大于其背面的受压面积。
    • 2. 发明授权
    • Electromagnetic pump
    • 电磁泵
    • US09175679B2
    • 2015-11-03
    • US13147728
    • 2010-05-10
    • Tetsuya ShimizuKazuhiko KatoNoriomi FujiiKazunori Ishikawa
    • Tetsuya ShimizuKazuhiko KatoNoriomi FujiiKazunori Ishikawa
    • F04B17/04F04B53/12
    • F04B53/12F04B17/044F04B17/048
    • A piston is slidably provided in a cylinder and partitions a first pump chamber, and a second pump chamber connected to an object to be operated. A first on-off valve is provided between the first pump chamber and the outside. A second on-off valve is provided in a connecting flow passage that connects the first pump chamber and the second pump chamber to each other. When the piston is moved forward by an electromagnetic force of a solenoid portion, a capacity of the first pump chamber decreases, and a capacity of the second pump chamber increases. When the piston is moved backward by a biasing force of a spring, the capacity of the first pump chamber increases, and the capacity of the second pump chamber decreases. A pressure receiving area of the front face of the piston is larger than that of the back face thereof.
    • 活塞可滑动地设置在气缸中并且分隔第一泵室和连接到待操作对象的第二泵室。 第一开关阀设置在第一泵室和外部之间。 第二开关阀设置在将第一泵室和第二泵室彼此连接的连接流路中。 当活塞通过螺线管部分的电磁力向前移动时,第一泵室的容量减小,并且第二泵室的容量增加。 当活塞通过弹簧的偏置力向后移动时,第一泵室的容量增加,并且第二泵室的容积减小。 活塞前面的受压面积大于其背面的受压面积。
    • 10. 发明授权
    • Method for peeling shell from boiled eggs
    • 从煮鸡蛋上剥壳的方法
    • US4308290A
    • 1981-12-29
    • US148672
    • 1980-05-12
    • Noriomi Fujii
    • Noriomi Fujii
    • A47G19/28A47J43/14A23L1/32
    • A47J43/145A47G19/28
    • Peeling of the shells of boiled eggs is realized continuously, promptly and simply by introducing the boiled eggs into a cylinder through which water is flowing, the cylinder performing circular movememt about a substantially horizontal axis with the magnitude of the circular movement increasing gradually from an initial portion towards a terminal end portion. The boiled eggs are firstly made to collide with the inner surface of the cylinder by small circular movement of the cylinder, and rendered more elastic with the eggshells of fine fragments to the degree that the shell membrane remains unbroken. Next, the shell membrane is broken by applying a whirling water stream and a centrifugal force generated by large circular motion. The boiled egg contents are then separated from the eggshells so smoothly as to be slipped out of their shells.
    • 通过将煮沸的鸡蛋引入水流动的圆筒中,蒸煮鸡蛋的壳体被连续地实现,气缸在基本上水平的轴线上进行圆周移动,圆周运动的大小从初始值逐渐增加 部分朝向终端部分。 煮沸的鸡蛋首先通过圆筒的小圆周运动与圆筒的内表面碰撞,并且与细碎片的蛋壳相比具有更大的弹性,使得壳膜保持不间断的程度。 接下来,通过施加旋转水流和由大的圆周运动产生的离心力来破坏壳膜。 然后将煮沸的蛋内容物从蛋壳中分离出来,使其从壳中滑出。