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    • 2. 发明授权
    • Fluidic fuel injection system having pulse extender
    • 具有脉冲扩展器的流体燃料喷射系统
    • US3756211A
    • 1973-09-04
    • US3756211D
    • 1972-03-30
    • BENDIX CORP
    • TAPLIN L
    • F15C1/00F02N7/00F02D31/00
    • F15C1/002Y10S123/10Y10S261/69Y10T137/2071
    • A fluidic fuel injection system is illustrated and described having fluidic means to modulate the duration of the normally generated injection pulse. The pulse extender receives the normally generated injection pulse and applied that pulse through gating means to the fuel injection controlling device. The pulse extender also receives a signal indicative of an engine operating parameter such as for instance, an engine temperature, and stores a signal which is a function of the duration of the normally generated injection controlling pulse and the engine variable. Following termination of the normally provided injection controlling pulse, the stored signal is then communicated to the fuel injection controlling devices to provide for prolongation, in a predetermined controlled manner, of delivery of fuel.
    • 示出并描述了流体燃料喷射系统,其具有用于调制正常产生的喷射脉冲的持续时间的流体装置。 脉冲延长器接收正常产生的喷射脉冲,并通过门控装置将该脉冲施加到燃料喷射控制装置。 脉冲延长器还接收指示诸如发动机温度的发动机操作参数的信号,并且存储作为正常产生的喷射控制脉冲和发动机变量的持续时间的函数的信号。 在通常提供的喷射控制脉冲终止之后,所存储的信号然后被传送到燃料喷射控制装置,以便以预定的受控方式延长燃料的输送。
    • 4. 发明授权
    • Fluidic fuel injection system having transient engine condition responsive means to controllably effect the quantity of fuel injected
    • 具有瞬态发动机条件的液体燃油喷射系统响应控制手段对燃油喷射量的影响
    • US3771505A
    • 1973-11-13
    • US3771505D
    • 1972-03-30
    • BENDIX CORP
    • TAPLIN L
    • F15C1/00G06D1/08F02D11/08F02M7/06
    • F15C1/002G06D1/08Y10S123/10Y10S261/69
    • A fluidic fuel injection system to provide intermittent injection of fuel to an internal combustion engine is disclosed herein. The system receives fluid signals from various sensors and circuits to indicate engine operating parameters and processes these signals through a pulse generator and a pulse computer to provide an output fluid pulse to be applied to various injector valve means to control those injector valve means to deliver metered quantities of fuel to the associated engine. The pulse generator means is adapted to receive both pulse (digital) and variable level (analog) signals having varying responsiveness to the associated engine parameter in order to compensate for rapidly changing and slowly changing operating conditions of the engine and to generate a pulse (digital) output signal. The fluidic circuits to which the pulse generator is responsive include speed pulse signal generating means, speed compensation means, starting and warm-up enrichment means as well as timing phase adjustment means. The pulse generator means is primarily responsive to the speed pulse signal and a signal indicative of the engine manifold pressure to generate a basic pulse whose duration may be modified by one or more of the previously mentioned circuits. The pulse computer operates to extend the duration of the pulse produced by the pulse generator to provide additional time for resetting of the pulse generator prior to the generation of the next following pulse. Additionally, means are illustrated for controllably varying the output of the pulse computer in response to an engine operating parameter to provide further control flexibility.
    • 本文公开了一种向内燃机间歇喷射燃料的流体燃料喷射系统。 该系统接收来自各种传感器和电路的流体信号,以指示发动机工作参数,并通过脉冲发生器和脉冲计算机处理这些信号,以提供输出流体脉冲,以施加到各种喷射器阀装置,以控制这些喷射阀装置输出计量 相关发动机的燃料量。 脉冲发生器装置适于接收对相关联的发动机参数具有不同响应性的脉冲(数字)和可变电平(模拟)信号,以便补偿发动机的快速变化和缓慢变化的运行状态并产生脉冲(数字 )输出信号。 脉冲发生器响应的流体回路包括速度脉冲信号发生装置,速度补偿装置,启动和预热浓缩装置以及定时相位调节装置。 脉冲发生器装置主要响应于速度脉冲信号和指示发动机歧管压力的信号以产生其持续时间可以由前述电路中的一个或多个来修改的基本脉冲。 脉冲计算机操作以延长由脉冲发生器产生的脉冲的持续时间,以在生成下一个跟随脉冲之前为脉冲发生器复位提供额外的时间。 此外,示出了用于响应于发动机操作参数可控地改变脉冲计算机的输出以提供进一步的控制灵活性的装置。
    • 6. 发明专利
    • SE328427B
    • 1970-09-14
    • SE217265
    • 1965-02-19
    • BENDIX CORP
    • TAPLIN L
    • F15C1/00F15C1/08G01N9/00G01N9/32G01N11/16G01N29/032G01N29/34G01N33/00
    • 1,091,899. Fluid amplifiers. BENDIX CORPORATION. Feb. 1, 1965 [Feb. 20, 1964], No. 4243/65. Heading G3H. [Also in Division G1] In a method of determining the specific volume, enthalpy and temperature of a gas, a gas stream oscillator is used comprising a supply port 21 and two outlet ports 22, 23 joined by passages 30, 31 respectively, and delay lines 28, 29 between each outlet and an intermediate point 37 of said passages 31, 30. Static pressure meters 44, 45 are placed in delay lines 28, 29 or one pressure meter may be placed in port 21. A frequency meter 6 is connected to outlet ports 22, 23 to detect the frequency of oscillation of the gas stream. The passages 24a, 25a, 30, 31, 32 and 33 are defined by grooves in base 20 which are covered by a plastic cover 20a and delay lines 28, 29 are covered grooves in the opposite side of the base. When vapour is supplied to inlet port 21, the vapour gas stream enters either passage 30 or 31. If the gas enters passage 31 it produces a pressure wave in the delay line 29 and passage 25a to cause a face to be applied to the gas stream at junction 37 moving the stream from passage 31 to passage 30. The same will then be repeated to transfer it back to 31. The frequency of the movement depends on the length of the delay lines 28, 29 and the characteristics of the stream.