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    • 2. 发明申请
    • SAFETY THERMOSTAT
    • 安全温控器
    • WO1991003633A1
    • 1991-03-21
    • PCT/FR1990000596
    • 1990-09-07
    • BOURGIN, Alain
    • F01P11/16
    • F16K17/383F01P11/16F01P2031/16G05D23/1366Y10S236/02
    • Immersed, fusible, safety valve(s) device substituting for the defective thermostat element in an engine or the like. The device is comprised of a predetermined temperature eutectic alloy fusible element (20), a valve closing antagonist spring (80), a safety holding spring (90), an extensible staple (70), a body (30), a function valve (40), a holding staple (60), a thermosensitive element (50), a pusher rod (51). To remedy the shearing efforts, the eutectic alloy is used for the weldings. In order to remedy the inconveniency of a temporary or permanent break-down, the extensible staple (70) reverses the closing device into an opening device, releases the stress and prestress elements, neutralizes the function of the thermosensitive element. The same applies when the safety device has been made by eutectic welding of the annular valve (40) to the thermosensitive element (50). This device, in these two embodiments, gives during normal and safety operation conditions a maximum flow indefinitely.
    • 浸入式,易熔的,安全阀装置代替发动机等中的有缺陷的恒温元件。 该装置由预定的温度共晶合金可熔元件(20),闭阀阻力弹簧(80),安全保持弹簧(90),可伸缩钉(70),主体(30),功能阀 40),保持订书钉(60),热敏元件(50),推杆(51)。 为了补偿剪切力,共熔合金用于焊接。 为了补救临时或永久性分解的不便之处,可扩展订书钉(70)将关闭装置反向打开装置,释放应力和预应力元件,中和热敏元件的功能。 当安全装置是通过环形阀(40)与热敏元件(50)的共熔焊接制成时,这同样适用。 在这两个实施例中,该装置在正常和安全操作条件下给出无限期的最大流量。
    • 3. 发明申请
    • FAIL-SAFE THERMOSTAT
    • WO1995010697A1
    • 1995-04-20
    • PCT/US1994011396
    • 1994-10-07
    • STANDARD-THOMSON CORPORATION
    • STANDARD-THOMSON CORPORATIONDUPREZ, Wayne, R.
    • F01P07/16
    • G05D23/1366F01P7/16F01P11/16F01P2031/32Y10S236/02
    • A fail-safe thermostat (10, 70) includes a stationary valve member (24) configured to be positioned between conduit components (12, 20) of the engine cooling system, a movable valve member (38) for engaging a valve seat (28) to block fluid flow into a conduit (22) through an opening formed by valve seat (28), an operating spring (48) for biasing the movable valve member (38) to a closed position against the valve seat (28) of the stationary valve member (24), and a thermally responsive actuator (32) for moving the movable valve member (38) to an open position away from a valve seat (28) when the ambient temperature exceeds a first predetermined temperature to permit fluid flow into the conduit (22). The apparatus further includes a bimetallic frame member (46) coupled to the stationary valve member (24). The frame member (46) is configured to compress and hold the operating spring (48) in engagement with the movable valve member (38). The frame member (46) is configured to disengage itself from the stationary valve member (24) when the ambient temperature exceeds a second predetermined temperature and upon failure of the movable valve member (38) to move to its open position.
    • 故障安全恒温器(10,70)包括构造成定位在发动机冷却系统的管道部件(12,20)之间的固定阀构件(24),用于接合阀座(28)的可移动阀构件(38) )阻止流体通过由阀座(28)形成的开口流入导管(22),用于将可动阀构件(38)偏置到关闭位置的操作弹簧(48)抵靠阀座(28)的阀座(28) 固定阀构件(24)和热响应致动器(32),用于当环境温度超过第一预定温度时将可动阀构件(38)移动到远离阀座(28)的打开位置,以允许流体流入 导管(22)。 该装置还包括耦合到固定阀构件(24)的双金属框架构件(46)。 框架构件(46)构造成压缩并保持与可动阀构件(38)接合的操作弹簧(48)。 框架构件(46)构造成当环境温度超过第二预定温度并且当可移动阀构件(38)移动到其打开位置时失效,使其自身与固定阀构件(24)脱离。
    • 8. 发明授权
    • Temperature control system
    • 温控系统
    • US3952796A
    • 1976-04-27
    • US565613
    • 1975-04-07
    • Richard C. Larson
    • Richard C. Larson
    • F24F11/06G05D23/13G05D23/275F25B29/00
    • F24F11/06G05D23/1366G05D23/275
    • An automatic temperature responsive control valve is disclosed for use in combination heating and cooling systems including two concentric valve sleeves each rotating individually in the valve body under the control of respective bimetallic transducers one of which directs work fluid to either a heating heat exchanger or a cooling heat exchanger in accordance with the temperature of work fluid supplied to the valve by either a chiller or a boiler through a solenoid valve controlled by the outside temperature and the other of which provides modulated flow through the heating or cooling means under the control of the spent fluid temperature. The control valve is usable for controlling the temperature of one or more rooms or for similar control of a process vessel so as to provide unique versatility of use.
    • 公开了一种用于组合加热和冷却系统的自动温度响应控制阀,其包括两个同心阀套筒,每个同心阀套管在各自的双金属换能器的控制下在阀体中单独旋转,其中一个将工作流体引导到加热热交换器或冷却 热交换器根据由冷却器或锅炉通过由外部温度控制的电磁阀供应到阀的工作流体的温度,另一个在被耗尽的控制下通过加热或冷却装置提供调制流 流体温度。 控制阀可用于控制一个或多个房间的温度或类似的处理容器的控制,从而提供独特的使用性。
    • 9. 发明专利
    • Thermostat for use in cooling water
    • 热水器用于冷却水
    • JPS61101617A
    • 1986-05-20
    • JP22122984
    • 1984-10-23
    • Nippon Thermostat Kk
    • ASADA ISAMU
    • F01P7/16G05D23/13
    • G05D23/1366
    • PURPOSE:To obtain a stable and highly sensitive operation of the titled thermostat by setting the piston projection starting temperatures of two temperature sensing elements and the piston projection quantities according to the temperature change to specific conditions, and rapidly increasing the change of a valve lift quantity die to the temperature rise from the intermediate of valve opening. CONSTITUTION:A first temperature sensing element 14 is mounted on a valve 15, and a piston 17 is protruded by the temperature rise of a temperature sensing part 16. The valve 15 is separated from a valve seat 20 while compressing a return spring 19 by the reaction force of the piston, and is opened. Further, a second temperature sensing element 21 is fitted into a thermostat housing 22 in abutment with the tip end of the piston 17 of the first temperature sensing element 14. The piston 17 is pushed while compressing a return spring 26 by the projection of a piston 24 due to the temperature rise, and the first temperature sensing element 14 and the valve 15 are moved and opened. Upon this occasion, the second temperature element 21 starts the projection of the piston at a temperature which is greater than that of the first temperature sensing element 14, and further the piston projection quantity per change in the temperature.
    • 目的:通过将两个温度检测元件的活塞投影开始温度和活塞投影量根据特定条件的温度变化设置,来获得标称恒温器的稳定和高灵敏度的操作,并快速增加气门升程量的变化 从阀门开口的中间部分升温。 构成:第一温度感测元件14安装在阀15上,并且活塞17由温度检测部分16的温度升高而突出。阀15与阀座20分离,同时将复位弹簧19压缩 活塞的反作用力,并被打开。 此外,第二温度感测元件21装配到与第一温度感测元件14的活塞17的顶端邻接的恒温器壳体22中。在通过活塞的突起压缩复位弹簧26的同时推动活塞17 由于温度上升,第一温度检测元件14和阀15被移动和打开。 在这种情况下,第二温度元件21开始活塞在比第一温度感测元件14大的温度下的突出,并且还进一步地,每个温度变化的活塞突出量。