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    • 3. 发明授权
    • Water pump pliers with single-hand control
    • 水泵钳具有单手控制
    • US06895840B2
    • 2005-05-24
    • US10279339
    • 2002-10-24
    • Gunther SchulzBodo Nilles
    • Gunther SchulzBodo Nilles
    • B25B7/10B25B7/18B25G1/10B25B7/04
    • B25G1/105B25B7/10B25B7/18
    • Water pump pliers consisting of two pincer parts crossing themselves in a connecting region, each consisting of a handle portion and a jaw wherein said pincer parts are movably connected in said connecting region in such a way that said first pincer can be displaced relative to the second pincer to adjust a jaw opening-width on the one hand, and that the pincer parts with jaws can reciprocally pivot on the other hand. A blocking means is provided in such a manner that further shifting of the first pincer part is blocked when the jaws stop against a workpiece to be gripped. A spring element is installed between the pincer parts in such a way that a releasing force from the spring, operating in the opening direction of the jaws, acts upon the pincer parts. The spring element is designed and connected with the handle portions of the two pincer parts in such a way that the spring element, in addition to generating the releasing force, also acts upon the first pincer part with a torque directed around a spring fastening point in such a way that the jaws automatically move into a fully opened opening width following a manual release.
    • 水泵钳子由两个钳子部分组成,两个钳子部分在连接区域中横穿自己,每个钳子部分由手柄部分和钳口组成,其中所述钳子部分在所述连接区域中可移动地连接,使得所述第一钳子可以相对于第二钳 钳子一方面调节钳口开口宽度,另一方面钳口部分与钳口可以往复枢转。 以这样的方式设置阻挡装置,即当夹爪停止在被夹紧的工件上时,第一钳部分的进一步移动被阻挡。 弹簧元件以这样的方式安装在夹钳部件之间,使得沿着钳口的打开方向操作的弹簧的释放力作用在钳部件上。 弹簧元件被设计并与两个钳部件的把手部分连接,使得除了产生释放力之外,弹簧元件还以围绕弹簧紧固点的扭矩作用在第一钳子部分上 这样一种方式,手动释放后,夹爪自动进入完全打开的开口宽度。
    • 6. 发明授权
    • Water pump pliers with single-hand control
    • 水泵钳具有单手控制
    • US06497165B1
    • 2002-12-24
    • US09564115
    • 2000-05-03
    • Gunther SchulzBodo Nilles
    • Gunther SchulzBodo Nilles
    • B25B704
    • B25G1/105B25B7/10B25B7/18
    • A pair of water pump pliers, comprising two pincer parts crossing themselves in a connecting region, each consisting of a handle portion and a jaw, wherein the pincer parts are movably connected in the connecting region in such a manner that the first pincer can be displaced relative to the second pincer to adjust the jaw opening width. The pincer parts reciprocally pivot on the other hand, wherein a blocking mechanism is provided in such a manner that further shifting of the first pincer part is blocked when the jaws stop against a workpiece. Also, a spring element is installed between the handle is such a manner that a releasing force from the spring, operating in the jaws' opening direction, acts upon the pincer parts.
    • 一对水泵钳子,包括两个在连接区域中穿过自己的钳子部件,每个钳子部件由手柄部分和钳口组成,其中钳形部件以连接区域可移动地连接,使得第一钳子可以移位 相对于第二钳子来调节钳口的开口宽度。 另一方面,夹钳部件往复枢转,其中设置有阻挡机构,使得当夹爪停止在工件上时,第一钳部件的进一步移动被阻挡。 此外,弹簧元件安装在手柄之间,使得来自弹簧的释放力以钳口打开方向操作,作用在钳子部分上。
    • 9. 发明申请
    • Method and Device for Atomizing Liquid Films
    • 雾化液膜的方法和装置
    • US20070215712A1
    • 2007-09-20
    • US11628162
    • 2005-06-16
    • Karl RimmerGunther Schulz
    • Karl RimmerGunther Schulz
    • B05B7/02
    • B05B7/0861B05B7/025
    • A method for atomizing liquid films to fine droplets (2), wherein the liquid (2) is discharged from an elongate slotted nozzle (3) in the shape of a straight film. The outlet opening of the slotted nozzle (3) is located inside a linear Venturi nozzle (5) in whose divergent section linear gas outlet openings (7) (Laval nozzles) are provided and impinged upon by gas (6). The negative pressure produced in the area of the Laval nozzles (7) draws in gas flows (4) from the gas chambers (1), located at both sides of the liquid film and delimited by the convergent section of the Venturi nozzle (5). Said gas flows stabilize the liquid film in such a manner that it is atomized to a tent-shaped cone of liquid droplets only after passage of the narrowest point of the Venturi nozzle (5).
    • 一种用于将液膜雾化成细小液滴(2)的方法,其中液体(2)从细长的带槽喷嘴(3)以直线形式排出。 开槽喷嘴(3)的出口开口位于线性文丘里喷嘴(5)的内部,其中发散部分线性气体出口(7)(拉伐喷嘴)设置并用气体(6)冲击。 在Laval喷嘴(7)区域产生的负压从位于液膜两侧的气室(1)吸入气流(4),并由文丘里喷嘴(5)的会聚部分限定, 。 所述气体流动使液膜稳定,使得仅在文丘里喷嘴(5)的最窄点通过之后,雾化到液滴的帐篷形锥体。
    • 10. 发明授权
    • Method and device for producing fine powder by atomizing molten material with gases
    • 用气体雾化熔融材料生产细粉的方法和装置
    • US06481638B1
    • 2002-11-19
    • US09581893
    • 2000-06-16
    • Gunther Schulz
    • Gunther Schulz
    • A62C502
    • B22F9/082
    • A method and nozzle for producing fine powder by atomizing molten material with gas are provided. Molten material, in the form of a film, flows out of a molten material nozzle that has an essentially rectangular discharge cross-sectional area. Thereafter, the molten material, together with an atomizing gas, flows through an initially converging and then diverging gas nozzle that is in the form of a linear Laval nozzle, has an essentially rectangular cross-sectional area, and through which flow is laminar. Laminar accelerated gas flow stabilizes and simultaneously stretches the film of molten material in the converging portion of the Laval nozzle until the film of molten material, after passing the narrowest cross-sectional area of the Laval nozzle, is uniformly atomized over its entire length.
    • 提供了通过用气体雾化熔融材料来生产细粉末的方法和喷嘴。 以薄膜形式的熔融材料从具有基本上矩形的放电横截面积的熔融材料喷嘴流出。 此后,熔融材料与雾化气体一起流过呈直线拉瓦尔喷嘴形式的初始会聚然后发散的气体喷嘴,具有基本上矩形的横截面积,并且流动是层流的。 层状加速气流稳定并同时拉伸拉瓦尔喷嘴的会聚部分中的熔融材料膜,直到经过拉伐尔喷嘴的最窄横截面积的熔融材料膜在其整个长度上均匀雾化。