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    • 2. 发明授权
    • Shielding device with a shielding element and at least one temperature and oscillation-decoupled fastening device
    • 具有屏蔽元件和至少一个温度和振荡解耦紧固装置的屏蔽装置
    • US09133869B2
    • 2015-09-15
    • US13554686
    • 2012-07-20
    • Thomas FriedowBob Bell
    • Thomas FriedowBob Bell
    • F01N1/00F16B5/02
    • F16B43/00F16B5/0241Y10T403/17
    • The invention relates to a shielding device with a shielding element and at least one fastening eyelet for fastening the shielding device to a counterpart fastening piece and for receiving a fastening element. The fastening eyelet is movably supported in a fastening opening of the shielding device. The fastening eyelet is supported by a resiliently embodied coupling device so that the fastening eyelet is resiliently supported relative to the shielding element in an axial direction and is movable in the fastening opening relative to the shielding element in at least one radial direction when acted on with friction force. To produce friction force, radially outer regions of the coupling device cooperate in a resiliently prestressed fashion with sliding zones of opposing outsides of the shielding element.
    • 本发明涉及一种具有屏蔽元件和至少一个紧固孔眼的屏蔽装置,用于将屏蔽装置紧固到配对紧固件并用于接收紧固元件。 紧固孔眼可移动地支撑在屏蔽装置的紧固开口中。 紧固孔眼由弹性实施的联接装置支撑,使得紧固孔眼在轴向方向上相对于屏蔽元件弹性地支撑,并且在紧固开口中相对于屏蔽元件在至少一个径向方向上可移动, 摩擦力。 为了产生摩擦力,联接装置的径向外部区域以弹性预应力方式与屏蔽元件的相对外侧的滑动区域配合。
    • 3. 发明授权
    • Concrete exclusion structure
    • 混凝土排除结构
    • US08839594B2
    • 2014-09-23
    • US13135279
    • 2011-06-29
    • Lawrence J. Smith
    • Lawrence J. Smith
    • E04C3/00H02G3/08
    • H02G3/088H02G3/083Y10T403/17
    • A concrete exclusion structure is formed by a housing having a shell, end walls, and one or more score lines of reduced wall thickness. The housing defines an interior void that is dimensioned to enclose a coupler assembly. Knockouts in the end walls or knockout cones allow passage of tubes associated with the coupler assembly. The exclusion structure prevents uncured concrete from contacting the coupler assembly. The structure can fracture after the concrete has cured thereby allowing portions of the coupler assembly to move relative to each other. Such fracture is typically about one of the score lines.
    • 混凝土排除结构由具有壳体,端壁和一个或多个减小壁厚的刻痕线的壳体形成。 壳体限定内部空隙,其尺寸被设计成包围联接器组件。 在端壁或脱模锥体中的敲击允许与联接器组件相关联的管通过。 排除结构防止未固化的混凝土接触联接器组件。 在混凝土固化之后,结构可以断裂,从而允许联接器组件的部分相对于彼此移动。 这种断裂通常是评分线之一。
    • 4. 发明申请
    • Concrete exclusion structure
    • 混凝土排除结构
    • US20130004232A1
    • 2013-01-03
    • US13135279
    • 2011-06-29
    • Lawrence J. Smith
    • Lawrence J. Smith
    • F16D3/84
    • H02G3/088H02G3/083Y10T403/17
    • A concrete exclusion structure is formed by a housing having a shell, end walls, and one or more score lines of reduced wall thickness. The housing defines an interior void that is dimensioned to enclose a coupler assembly. Knockouts in the end walls or knockout cones allow passage of tubes associated with the coupler assembly. The exclusion structure prevents uncured concrete from contacting the coupler assembly. The structure can fracture after the concrete has cured thereby allowing portions of the coupler assembly to move relative to each other. Such fracture is typically about one of the score lines.
    • 混凝土排除结构由具有壳体,端壁和一个或多个减小壁厚的刻痕线的壳体形成。 壳体限定内部空隙,其尺寸被设计成包围联接器组件。 在端壁或脱模锥体中的敲击允许与联接器组件相关联的管通过。 排除结构防止未固化的混凝土接触联接器组件。 在混凝土固化之后,结构可以断裂,从而允许联接器组件的部分相对于彼此移动。 这种断裂通常是评分线之一。
    • 5. 发明授权
    • Joint structure between the wall elements of a magnetically shielded room
    • 磁屏蔽室的壁元件之间的接头结构
    • US08253036B2
    • 2012-08-28
    • US11659808
    • 2005-09-08
    • Juha SimolaPetteri LaineHeikki Rakkolainen
    • Juha SimolaPetteri LaineHeikki Rakkolainen
    • H05K9/00
    • H05K9/0003E04B2001/925Y10T403/17Y10T403/46
    • The present invention discloses a joint structure between the wall elements of a light-weight magnetically shielded room. In the joint structure, the end of the aluminum plate of the element is stepped and its surface roughened. In addition to this, the aluminum plate is coated, for example, with tin to improve the electrical contact. The joint includes μ metal plates which are used to make a magnetic contact between the μ metal plates of the elements. The compression force achieved by means of bolts is transmitted to the joint by means of an aluminum moulding. The non-continuous compression force is balanced over the entire joint area by using presser rubbers. The joint structure is protected by means of supporting profiles which are used to electrically couple the thinner aluminum plate of the sandwich type wall element to the thinner aluminum plate of an adjacent element. The thinner aluminum plate and the supporting profile can also be coated, for example, with tin to improve the contact.
    • 本发明公开了一种轻型磁屏蔽室的壁元件之间的接合结构。 在接头结构中,元件的铝板的端部是阶梯状的并且其表面变粗糙。 此外,铝板例如用锡涂覆以改善电接触。 接头包括用于在元件的μ金属板之间形成磁接触的μ金属板。 通过螺栓实现的压缩力通过铝成型体传递到接头。 通过使用压紧橡胶,非连续压缩力在整个接合区域平衡。 接头结构通过支撑轮廓来保护,所述支撑轮廓用于将夹层型壁元件的较薄铝板电连接到相邻元件的较薄铝板。 更薄的铝板和支撑轮廓也可以涂覆,例如用锡来改善接触。
    • 10. 发明授权
    • Flange bolt for turbines
    • 涡轮法兰螺栓
    • US07037065B2
    • 2006-05-02
    • US10291394
    • 2002-11-12
    • Martin Reigl
    • Martin Reigl
    • F01D25/10F01D25/12
    • F01D25/243F16B2200/50F16B2200/506F16B2200/509Y10T403/17Y10T403/25Y10T403/255
    • An arrangement for cooling or heating of a flange bolt for turbines comprises one or more boreholes, that extend through the bolt, and inlet and outlet pipes that are connected to each end of the borehole. A cooling or heating medium such as air, steam or any other fluid flows through an inlet pipe into and through the borehole thereby cooling or heating the bolt, and exits from the borehole via an outlet pipe. The cooling or heating arrangement enables direct cooling or heating of the bolt itself and ensures stable bolting forces throughout the operation of the turbine. The flange bolts with this arrangement may be applied to gas turbines or steam turbines operated at elevated steam temperatures and pressures.
    • 用于涡轮机的法兰螺栓的冷却或加热的装置包括延伸穿过螺栓的一个或多个钻孔,以及连接到钻孔的每个端部的入口管和出口管。 诸如空气,蒸汽或任何其它流体的冷却或加热介质通过入口管流入和穿过钻孔,从而冷却或加热螺栓,并通过出口管从钻孔离开。 冷却或加热装置可以直接冷却或加热螺栓本身,并确保在整个涡轮运行过程中稳定的螺栓力。 具有这种布置的法兰螺栓可以应用于在升高的蒸汽温度和压力下操作的燃气轮机或蒸汽轮机。