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    • 1. 发明申请
    • FLOW CONTROL, SPECIALLY FOR AN INSTANTANEOUS WATER HEATER
    • 阀,尤其是对于连续流动水
    • WO1996002795A1
    • 1996-02-01
    • PCT/EP1995002208
    • 1995-06-08
    • MERTIK MAXITROL GMBH & CO. KGSCHULZE, Klaus
    • MERTIK MAXITROL GMBH & CO. KG
    • F23N01/08
    • F23N1/087F23N2025/06F23N2035/16F23N2035/20Y10T137/2511
    • The present invention is to develop a flow control of the stated kind in which the furring of the rod projecting from the water containing housing (2) is reduced and the effect of such fur on the control behaviour is completely eliminated. This problem is solved in that the control movement of the diaphragm (24) in the water containing housing (2) is transmitted to a lever (3), the pivot of which is formed by a sealed shaft (4) firmly secured to said lever (3) and leading to the outside of the water containing housing (2). At the same time, the shaft (4) is also the pivot of a second lever (5) also firmly secured to it. The lifting movement of the first lever (3) is thus converted via the shaft (4) to the exterior as a rotary movement and then the rotary movement of the shaft (4) is reconverted by the second lever (5) into a lifting movement to control the gas flow. The flow control is used to control the gas flow depending on the water flow, especially for instantaneous water heaters.
    • 给定的本发明是基于显影提到的类型,在其降低钙沉积物在进出水控制壳体(2)突出的推杆和这种水垢沉积在控制行为的影响的形成被完全消除的嵌合的问题。 问题得以解决,在所述载水壳体(2)被传送时,所述隔膜(24)的(3)上,所述枢转点连接的杠杆控制运动的固定与该杠杆(3),密封轴承和所述载水壳体的外侧( 形成2)主导轴(4)。 同时轴(4)也同样固定地连接到其相关联的(5)杆用于第二枢转点。 因此,通过所述轴(4)的装置中的第一杠杆(3)的往复运动作为旋转运动到外部,然后该轴(4)由所述第二杆的装置的转动传送(5)再次转换成冲程运动,以控制气体流路。 该阀用于控制响应于在特定的水流为连续流热水器的气体通道。
    • 3. 发明申请
    • GASSTRÖMUNGSWÄCHTER
    • 气体流量开关
    • WO2012104029A1
    • 2012-08-09
    • PCT/EP2012/000317
    • 2012-01-25
    • MERTIK MAXITROL GMBH & CO. KGSCHULZE, Klaus
    • SCHULZE, Klaus
    • F16K17/30F16K17/34
    • F16K17/30F16K17/34
    • Es soll ein Gasströmungswächter geschaffen werden, bei dem der Schließdurchfluss unabhängig von der Einbaulage den gleichen Wert besitzt. Desweiteren soll er eine Dämpfungsfunktion aufweisen, um ein Schließen bei kurzzeitigen Strömungsspitzen zu vermeiden. Aufbau und Herstellung sollen möglichst einfach sein. Dazu weist der Gasströmungswächter einen Schließkörper (1) auf, welcher durch eine Feder (6) gegen die Gasströmung bis zu einem Grenzwert offen gehalten wird und der bei Überschreitung dieses Grenzwertes gegen einen Ventilsitz (13) gedrückt wird, wobei der Schließkörper (1) drehbar in Richtung auf den Ventilsitz (13) gelagert ist und sich der Schwerpunkt dieses drehbar gelagerten Schließkörpers (1) auf dieser Drehachse (3) befindet.
    • 它是制造在其中阻断流具有无论相同的值的设置位置的一个气体流量开关。 他也应该有,以防止关闭降噪的作用,由于瞬时流量峰值。 设计和生产应该尽可能简单。 为了这个目的,气流监测封闭体(1)上,其被保持通过弹簧打开(6)相对于气体流动到一个限值和上超过靠在阀座此限制值(13)被按压时,所述可旋转的关闭体(1) 被安装在朝向阀座(13)和该重心的方向可旋转地安装的锁定主体(1)在此轴上转动的(3)。
    • 4. 发明申请
    • PROCESS AND DEVICE FOR ENERGETIC UTILISATION OF FLOW ENERGY
    • 方法和设备流动能的能源使用
    • WO1998001671A1
    • 1998-01-15
    • PCT/DE1997001451
    • 1997-07-04
    • SCHATZ, JürgenSCHULZE, Klaus-JürgenHRADETZKY, Rainer
    • F03D01/04
    • F03D3/0409F05B2240/132F05B2240/40Y02E10/74
    • The invention relates to a process for energetic utilisation of flow energy in parallel flows, in particular using flow modules through which a parallel flow passes and in which whirls are generated, whirling flows are produced and are wound up to form inducing whirling coils and/or are transformed into inducing whirling discs, for example in parallel and/or spiral rotating flows. The invention describes the partial, substantially constant transfer of expanding whirls and steps used to transform a part of the parallel flow inside at least one cylindrical flow module into whirling flows, and a first partial vacuum area is produced on the side sheltered from the wind, behind the flow module. The transformed flow drives at least one turbine, and subsequently flows out via the parallel flow passing the flow module to rotate into the wind-sheltered, first partial vacuum area, and is sucked out at the same time. The invention also relates to a process and a device for pressure control of a flap system for flow modules.
    • 本发明涉及一种用于流动能量成平行流的能量利用率的方法,特别是通过平行流被流传输流的模块,其中,产生的涡流。制造涡流和伤口诱导涡流线圈的装置和/或可以形成为诱导脊椎盘,例如,在平行于和/或 螺旋旋转电流。 本发明描述了从扩展椎骨和步骤,通过其中至少一个圆柱形流模块内的并行流的一部分通过转换成湍流和顺风流模块后面产生第一负压区域,转换后的流驱动至少一个涡轮机,并随后部分大致均匀的过渡 流过平行流动旋转流模块中的背风的第一真空区域流动,并在同一时间和方法,以及用于控制流量的模块的压力阀系统的装置吸出。
    • 5. 发明申请
    • THERMAL SAFETY FITTING FOR AUTOMATICALLY SHUTTING DOWN FLUID LINES
    • 热保护用于自动切断线
    • WO1996000357A1
    • 1996-01-04
    • PCT/EP1995002175
    • 1995-06-07
    • MERTIK MAXITROL GMBH & CO. KGSCHULZE, Klaus
    • MERTIK MAXITROL GMBH & CO. KG
    • F16K17/38
    • F16K17/383Y10T137/1812Y10T137/1819Y10T137/7724
    • The invention concerns a thermal safety fitting in which the closure motion of the obturator is longitudinal with respect to the obturator seat. The aim is to avoid lateral excursions of the obturator, while keeping manufacturing costs and structural size as low as possible. The obturator (12) is held in the open position in the housing (1) on the longitudinal axis of the obturator seat (28) by means of an approximatively U-shaped element (30). The two arms (9) of the U-shaped element (30) are located in the vicinity of a reduced-diameter section (17) of the obturator (12). The part (13) of the U-shaped element (30) joining the two arms (9) rests against a thermosolder (14). If the thermosolder (14) melts, the arms (9) no longer remain in the reduced-diameter section (17) owing to the change in the position of the U-shaped element (30), and the obturator (12) thus moves into the closed position under the action of a closing spring (24).
    • 热安全装置,其中所述闭合的闭合运动发生轴向到座椅。 应避免封闭的横向偏转。 在这里,生产成本和总体规模应保持在尽可能低的水平。 的闭合体(12)在由在打开位置的大致U形弯曲状的部分(30)的轴向延伸的壳体(1),其位于座位(28)的壳体(1)保持。 成形部件(30)的两个腿(9)是在闭合主体(12)的收缩(17)的范围内。 两个支腿(9),连接所述成形部件(30)的一部分(13)上的Thermolot(14)还基于。 当融化的热焊料(14)的,所述支腿(9)不由于在收缩(17)成型品(30)的位置变化,以使封闭体(12)的关闭弹簧的作用下(24)处于其闭合位置 ,
    • 7. 发明申请
    • SAFETY DEVICE FOR CUTTING OFF GAS PIPELINES
    • 安全装置可锁定气LEADING线路系统
    • WO0004310A3
    • 2000-06-08
    • PCT/EP9904808
    • 1999-07-08
    • MERTIK MAXITROL GMBH & CO KGSCHULZE KLAUS
    • SCHULZE KLAUS
    • F16K17/38
    • F16K17/38F16K17/386Y10T137/1963Y10T137/2012Y10T137/7724Y10T137/7737Y10T137/88054
    • The invention relates to a thermal security device for cutting off gas pipelines, wherein gas transfer is prevented by said safety device when temperature increases in the section of the gas pipeline placed downstream from said security device, especially when connected gas apparatuses are in a closed position. The aim of the invention is to maintain production costs and dimensions at a level as low as possible. The inventive device comprises a check valve (2) which prevents back flow from the gas pipeline which is placed downstream from said device. The inventive device also comprises a pressure sensitive element (3) which is actuated by the pressure in the pipeline placed downstream from said safety device. Said pressure sensitive element (3) is coupled to a cut-off valve (1) in such a way that when pressure increases in the downstream pipeline said valve (1) prevents gas from flowing into the pipeline. The inventive safety device is used to cut off automatically gas pipelines when temperature increases in an unacceptable way in the section of the pipeline which is placed downstream from said safety device.
    • 它是制造热安全装置用于关闭气体管道系统,其中,所述气流被所述安全装置防止在输送管系统中的安全装置的气体的下游的区域中的温度上升,特别是在所连接的燃气器具的闭合位置。 此外,生产成本和总体规模应保持在尽可能低的水平。 该安全装置包括从所述安全装置的气体传导线系统的下游的单向阀(2)防止回流。 此外,在安全装置通过压力在(3)被布置在下游管道压力的压敏元件普遍采取行动。 该压敏元件(3)上设置有开闭阀(1)耦合,使得当通过所述开闭阀在下游管道压力增加(1)的气体流动被阻止在下游流水线。 安全设备在温度不允许的上升中的安全设备管理系统的下游的区域中的发生用于自动切断的气体管线。
    • 8. 发明申请
    • THERMAL SAFETY DEVICE FOR AUTOMATICALLY BLOCKING PIPES
    • 热保护用于自动切断线
    • WO1997033111A1
    • 1997-09-12
    • PCT/EP1997000880
    • 1997-02-24
    • MERTIK MAXITROL GMBH & CO. KGSCHULZE, Klaus
    • MERTIK MAXITROL GMBH & CO. KG
    • F16K17/38
    • F16K17/383Y10T137/1819Y10T137/1963
    • In the housing (1), in the axial extension of a seat (8) therein, is a guide pin (12) on which is fitted a closing spring (14) which, when tensioned, lies as far as possible in a blind hole (17) in the blocking member (16) having a waist acting as a control edge (20). Unter the action of a pushrod (21) belonging to a guide (23), with the thermal safety device open, the control edge bears on a catch (24) unter the effect of the closing spring. When the fuse melts, the control edge no longer bears on the catch owing to the concomitant change in the position of the pushrod and hence the blocking member is moved by the closing spring into its closed position.
    • 在座椅内它(8)的轴向延伸的外壳(1)是引导心轴(12)。 在该导向销,闭合弹簧(14)被布置,这在很大程度上是在作用张紧状态在一个作为具有封闭体(16)的盲孔缩颈(17)的控制边缘(20)。 下与推杆(21)相关联的传感器元件(23)的作用,控制边缘在热安全装置的抵靠止动边缘(24)的闭合弹簧的作用下打开位置。 当融化的热焊接的,然而,控制边缘是由于柱塞的位置相关联的变化已经不再在锁定边缘,使得闭合弹簧的作用下关闭处于其关闭位置。
    • 9. 发明申请
    • GAS FLOW MONITOR
    • 气体流量开关
    • WO2011012277A3
    • 2011-03-31
    • PCT/EP2010004562
    • 2010-07-26
    • MERTIK MAXITROL GMBH & CO KGSCHULZE KLAUS
    • SCHULZE KLAUS
    • F16K17/30
    • F16K17/30Y10T137/7922
    • The invention relates to a gas flow monitor wherein the closing flow has the same value in a plurality of installation positions. According to the invention, the gas flow monitor is further intended to be suitable for small pressure loss values. Design and production are intended to be as simple as possible. The gas flow monitor according to the invention, comprising a gas-tight housing (1) that has a valve seat (4) for an axially movable closing body (10) in the interior that is held against the direction of flow in the opening position by spring force, is characterized in that the play of said mounting is greater in the open position and continuously narrows upon beginning the closing movement.
    • 一个气体流量监测器将被建立,其中关闭流量在多个安装位置具有相同的值。 此外,气体流量监测器应该适用于低压力损失值。 施工和生产应尽可能简单。 与(1)具有用于轴向移动的关闭体(10)在所述内部(4)的阀座,其在打开位置通过逆着流动方向的弹簧力保持气密外壳,所述流量限制阀的特征在于,该轴承在游戏 在收盘时,开仓位置较大且持续收窄。
    • 10. 发明申请
    • GASSTRÖMUNGSWÄCHTER
    • 气体流量开关
    • WO2011012277A2
    • 2011-02-03
    • PCT/EP2010/004562
    • 2010-07-26
    • MERTIK MAXITROL GMBH & CO. KGSCHULZE, Klaus
    • SCHULZE, Klaus
    • F16K17/30Y10T137/7922
    • Es soll ein Gasströmungswächter geschaffen werden, bei dem der Schließdurchfluss in mehreren Einbaulagen den gleichen Wert besitzt. Desweiteren soll der Gasströmungswächter für geringe Druckverlustwerte geeignet sein. Aufbau und Herstellung sollen möglichst einfach sein. Der Gasströmungswächter mit einem gasdichten Gehäuse (1), das im Inneren einen Ventilsitz (4) für einen axial beweglichen Schließkörper (10) aufweist, der durch Federkraft gegen die Durchströmrichtung in Offenstellung gehalten ist, zeichnet sich dadurch aus, dass das Spiel dieser Lagerung in Offenstellung größer ist und sich bei Beginn der Schließbewegung kontinuierlich verengt.
    • 它是创建一个气体流量开关,其中在多个安装位置切断流具有相同的值。 此外,流量阀是为适合于低的压力损失值。 设计和生产应该尽可能简单。 与(1)具有用于轴向移动的关闭体(10)在所述内部(4)的阀座,其在打开位置通过逆着流动方向的弹簧力保持气密外壳,所述流量限制阀的特征在于,该轴承在游戏 打开位置较大,且在关闭运动的开始不断收窄。