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    • 2. 发明授权
    • Automatic electric fence charging system
    • 自动电动充电系统
    • US3655995A
    • 1972-04-11
    • US3655995D
    • 1971-02-08
    • WIRE SALES CO
    • MALME ELMER K
    • H05C1/06H01H47/00
    • H05C1/06Y10T307/872
    • A fence charging system includes a sensing circuit connected to a fence to be charged. The sensing circuit applies a harmless low voltage which normally maintains a fence charger below operating level so long as the fence is ''''unloaded'''' (has a high resistance in the absence of at least one animal grounding the fence). When the fence becomes ''''loaded,'''' the current drawn by the fence sensing system changes potential distribution in the fence charging system and permits the charger to operate normally, the fence charging system under such conditions impressing high voltage pulses on the fence at predetermined intervals so long as the fence remains ''''loaded.
    • 栅栏充电系统包括连接到要充电的栅栏的感测电路。 传感电路应用无害的低电压,只要栅栏“卸载”(在没有至少一个动物接地栅栏的情况下具有高电阻),通常将栅栏充电器保持在操作水平以下。 当围栏变得“装载”时,由栅栏感应系统抽出的电流改变栅栏充电系统中的电位分布,并允许充电器正常工作,栅栏充电系统在这种条件下以预定间隔在栅栏上施加高电压脉冲,从而 只要栅栏保持“装载”。
    • 3. 发明授权
    • Electric fence charger
    • 电动充电器
    • US3655994A
    • 1972-04-11
    • US3655994D
    • 1971-02-08
    • WIRE SALES CO
    • MALME ELMER K
    • H05C1/04H01H47/00
    • H05C1/04Y10T307/872
    • A device for periodically applying a high potential on an electric fence has means for applying such potential for very short times at periodic intervals. The time between successive charging intervals depends upon whether the fence is ''''loaded'''' (where an animal grounds such fence) or is ''''unloaded''''. If the fence is ''''unloaded'''', the repetition rate of charging pulses is minimized and if the fence is ''''loaded'''', the pulse repetition rate is increased. The change in pulse repetition rate is determined by the fence ''''loading'''' reflected into the fence charger system and determines the discharge level of a timing capacitor.
    • 用于在电气围栏上周期性地施加高电位的装置具有用于以周期性间隔施加这种电势非常短的装置。 连续充电间隔之间的时间取决于围栏是否“装载”(动物如何围栏)或“卸载”。 如果栅栏“卸载”,则充电脉冲的重复率最小化,并且如果围栏“加载”,则脉冲重复率增加。 脉冲重复频率的变化由反射到栅栏充电器系统中的栅栏“负载”确定,并确定定时电容器的放电电平。
    • 4. 发明授权
    • Electrical testing device
    • 电气测试设备
    • US3657648A
    • 1972-04-18
    • US3657648D
    • 1971-02-08
    • WIRE SALES CO
    • MALME ELMER K
    • G01R19/145G01R13/36G01R19/14
    • G01R19/145
    • An electrical testing device has an electrically insulating housing with one projecting electrode and another insulated wire containing a second projecting electrode. A neon tube is included within the housing and gives a visual indication of voltage. The exposed electrodes are generally spade-shaped to permit introducing the same into the slots of a conventional receptacle to determine if the receptacle electrodes are live. In addition, the testing device also has an auxiliary electrode within a slotted portion of the housing.
    • 电测试装置具有电绝缘壳体,其具有一个突出电极和另一个包含第二突出电极的绝缘线。 霓虹灯管包含在外壳内,并提供电压的视觉指示。 暴露的电极通常为铲形,以允许将其引入常规插座的槽中,以确定插座电极是否活着。 此外,测试装置还在壳体的开槽部分内具有辅助电极。
    • 6. 发明授权
    • Synchronizing clutching arrangement for hydrostatic transmission
    • 同步传动的离合器装配同步
    • US3739578A
    • 1973-06-19
    • US3739578D
    • 1972-03-03
    • WIRE SALES CO
    • ROESKE E
    • F16H61/40F16H61/46F16H61/47F16H39/10
    • F16H61/47F16H61/40F16H61/46
    • A synchronized clutching arrangement for a transmission having an hydraulically interconnected pump and motor of the swash plate type with provision for short circuiting the hydraulic connection for effectively declutching the motor, including a servo device connected to the swash plate and a tachometer on the output shaft connected to the input of the servo device so that when the transmission is unclutched the servo device thereafter trackingly maintains the swash plate at an angle corresponding to the currently existing speed of the output shaft. A source of variable control voltage is provided for the servo calibrated in terms of output speed with means for simultaneously clutching the transmission and switching the input of the servo device from the tachometer to the source of variable control voltage for shockless clutching followed by automatic subsequent change of the speed of the output shaft to the speed for which the variable control voltage has been set. Means are provided for braking the load to a stop by reducing the control voltage to zero with the transmission in clutched condition or for allowing the load to coast to a stop by putting the transmission into its unclutched condition. The arrangement is fail-safe in that the controls may be operated in any desired sequence and regardless of the condition of the load without establishing an unwanted or dangerous condition.
    • 一种用于变速器的同步离合装置,具有液压互连泵和斜盘式马达,其设置用于短路液压连接以有效地释放马达,包括连接到斜盘的伺服装置和连接在输出轴上的转速计 伺服装置的输入,使得当传动装置未被切断时,伺服装置随后将斜盘维持在与输出轴当前存在的速度相对应的角度。 提供可变控制电压源,用于在输出速度方面进行校准的伺服装置,同时夹紧变速器并将伺服装置的输入从转速计切换到可变控制电压源,用于无震动闭合,随后自动后续更改 输出轴的转速达到设定可变控制电压的速度。 提供了用于通过在变速器处于离合状态时将控制电压降低到零而允许负载通过将变速器置于未切断状态而惯性停止的装置来将负载制动到停止。 该安排是故障安全的,因为控制可以以任何期望的顺序操作,并且不管负载的状况如何,而不建立不需要的或危险的状况。
    • 8. 发明专利
    • DE2112271B2
    • 1975-03-27
    • DE2112271
    • 1971-03-15
    • WIRE SALES CO., CHICAGO, ILL. (V.ST.A.)
    • SILBY, HARRY, MIAMI, FLA. (V.ST.A.)
    • C01D5/00C02F1/04C02F1/76C02F9/00C23G1/36C01G49/02
    • 1347292 Treatment of waste pickle liquor WIRE SALES CO 25 May 1971 [24 Nov 1970] 16902/71 Heading C1A Waste pickle liquor is cooled to precipitate the ferrous salts contained therein after which said salts are filtered off and dissolved in water and the solution is then treated with sodium hypochlorite to precipitate ferric hydroxide which on heating is converted to Fe 3 O 4 . In the example waste liquor is cooled to 0‹C. in vessel 2 and filtered using, e.g. active charcoal, the recovered acid being recycled and the solids being dissolved in water and after a further filtration passed to vessel 6. In reactor 6 the ferrous salt solution, e.g. FeSO 4 , is treated with NaOCl to precipitate the iron content as ferric hydroxide which is filtered off and passed to an oven, or evaporator, (not illustrated) where it is converted to Fe 3 O 4 . The liquor from reactor 6, after separation of precipitated solids is passed via line 10 to evaporator 11 for recovery of the sodium salt, e.g. Na 2 SO 4 , produced as byproduct. Chlorine evolved in reactor 6 is either stored, or is passed into NaOH in vessel 9 to form NaOCI which is then used in precipitation of ferric hydroxide.
    • 9. 发明专利
    • WASTE PICKLE LIQUOR
    • GB1347292A
    • 1974-02-27
    • GB1690271
    • 1971-05-25
    • WIRE SALES CO
    • C01D5/00C02F1/04C02F1/76C02F9/00C01G49/08C01D3/08
    • 1347292 Treatment of waste pickle liquor WIRE SALES CO 25 May 1971 [24 Nov 1970] 16902/71 Heading C1A Waste pickle liquor is cooled to precipitate the ferrous salts contained therein after which said salts are filtered off and dissolved in water and the solution is then treated with sodium hypochlorite to precipitate ferric hydroxide which on heating is converted to Fe 3 O 4 . In the example waste liquor is cooled to 0‹C. in vessel 2 and filtered using, e.g. active charcoal, the recovered acid being recycled and the solids being dissolved in water and after a further filtration passed to vessel 6. In reactor 6 the ferrous salt solution, e.g. FeSO 4 , is treated with NaOCl to precipitate the iron content as ferric hydroxide which is filtered off and passed to an oven, or evaporator, (not illustrated) where it is converted to Fe 3 O 4 . The liquor from reactor 6, after separation of precipitated solids is passed via line 10 to evaporator 11 for recovery of the sodium salt, e.g. Na 2 SO 4 , produced as byproduct. Chlorine evolved in reactor 6 is either stored, or is passed into NaOH in vessel 9 to form NaOCI which is then used in precipitation of ferric hydroxide.
    • 10. 发明专利
    • DE2112271A1
    • 1972-06-08
    • DE2112271
    • 1971-03-15
    • WIRE SALES CO
    • SILBY HARRY
    • C01D5/00C02F1/04C02F1/76C02F9/00C23G1/36
    • 1347292 Treatment of waste pickle liquor WIRE SALES CO 25 May 1971 [24 Nov 1970] 16902/71 Heading C1A Waste pickle liquor is cooled to precipitate the ferrous salts contained therein after which said salts are filtered off and dissolved in water and the solution is then treated with sodium hypochlorite to precipitate ferric hydroxide which on heating is converted to Fe 3 O 4 . In the example waste liquor is cooled to 0‹C. in vessel 2 and filtered using, e.g. active charcoal, the recovered acid being recycled and the solids being dissolved in water and after a further filtration passed to vessel 6. In reactor 6 the ferrous salt solution, e.g. FeSO 4 , is treated with NaOCl to precipitate the iron content as ferric hydroxide which is filtered off and passed to an oven, or evaporator, (not illustrated) where it is converted to Fe 3 O 4 . The liquor from reactor 6, after separation of precipitated solids is passed via line 10 to evaporator 11 for recovery of the sodium salt, e.g. Na 2 SO 4 , produced as byproduct. Chlorine evolved in reactor 6 is either stored, or is passed into NaOH in vessel 9 to form NaOCI which is then used in precipitation of ferric hydroxide.