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    • 1. 发明授权
    • Field configurable sonic grade control
    • 现场可配置声波级控制
    • US5201604A
    • 1993-04-13
    • US738060
    • 1991-07-30
    • Christopher FergusonJoseph E. Musil
    • Christopher FergusonJoseph E. Musil
    • E01C19/00
    • E01C19/008
    • A sonic grade control device for maintaining a leveling instrument of a paver at a constant distance from a datum. The device transmits and receives a sonic signal to provide first and second time periods corresponding to the round trip travel time of a sonic signal to the datum and a target, respectively. A distance indicating signal, corresponding to the distance between the control device and the datum, is provided in response to the first and second time periods and a stored target distance, such target distance corresponding to the distance between the control device and the target. The grade control device includes an operator actuable control for modifying the stored target distance to calibrate the control device. A reference signal is compared to the distance indicating signal to provide a control signal. The reference signal is adjustable by a predetermined increment and the control device includes an operator actuable control for modifying the predetermined increment. The position of the leveling instrument is changed in response to the control signal being greater than a predetermined, or deadband value. The control device includes a display for indicating such predetermined value and an operator actuable control for modifying such value.
    • 一种声级等级控制装置,用于将摊铺机的调平仪保持在距离基准一定距离处。 设备发送和接收声音信号,以分别提供与声音信号的往返行进时间相对应的第一和第二时间段到数据和目标。 响应于第一和第二时间段以及存储的目标距离,提供对应于控制装置与基准之间的距离的距离指示信号,该目标距离对应于控制装置与目标之间的距离。 等级控制装置包括用于修改所存储的目标距离以校准控制装置的操作者致动控制。 将参考信号与距离指示信号进行比较以提供控制信号。 参考信号可以通过预定的增量进行调节,并且控制装置包括用于修改预定增量的操作者致动控制。 调平仪器的位置响应于大于预定或死区值的控制信号而改变。 控制装置包括用于指示这种预定值的显示器和用于修改该值的操作者致动控制。
    • 2. 发明授权
    • Moisture content measuring apparatus and method
    • 水分测定装置及方法
    • US6115644A
    • 2000-09-05
    • US265548
    • 1994-06-24
    • J. Scott PettyChristopher FergusonJoseph R. AdamskiJoseph E. Musil
    • J. Scott PettyChristopher FergusonJoseph R. AdamskiJoseph E. Musil
    • G01N21/35G06F19/00
    • G01N21/3554
    • A moisture content measuring apparatus and method wherein a sensor station produces calibration data corresponding to measurements of light at two different wavelengths reflected from a material, and the calibration data is then transferred to a hand held computer. The moisture content of a sample of the material is measured and input to the hand held computer. The process is repeated after changing the wetness of the material, and the hand held computer creates a table correlating reflection data to moisture content. The table is transferred to the sensor station which then continuously generates signals representing moisture content in response to real time reflection data and the table. The cost effectiveness of the sensor stations readily facilitates the use of a dedicated sensor station at each of a plurality of conveyors carrying different materials to be combined into a composite of predetermined proportions by weight. Based on the real time moisture contents of each material, the respective flow rates are adjusted to compensate for moisture in order to produce the predetermined proportion.
    • 一种水分含量测量装置和方法,其中传感器站产生对应于从材料反射的两种不同波长的光的测量的校准数据,然后校准数据被传送到手持式计算机。 测量材料样品的含水量并将其输入到手持计算机中。 在改变材料的湿度之后重复该过程,并且手持计算机创建将反射数据与水分含量相关联的表格。 该表被传送到传感器站,该传感器站响应于实时反射数据和表,连续地产生表示湿度含量的信号。 传感器站的成本效益容易地使得在携带不同材料的多个输送机中的每一个处使用专用传感器站来组合成预定重量比的复合材料。 基于每种材料的实时水分含量,调节各流量以补偿水分以产生预定比例。
    • 3. 发明授权
    • Gyratory crusher with automatic control system
    • 回转式破碎机具有自动控制系统
    • US5927623A
    • 1999-07-27
    • US953777
    • 1997-10-17
    • Christopher FergusonJoseph E. Musil
    • Christopher FergusonJoseph E. Musil
    • B02C2/04B02C25/00
    • B02C2/045
    • A gyratory crusher includes a control system, an upper frame portion having a bowl liner, and a crushing head having a mantel such that a crushing chamber having a gap is formed between the bowl liner and the mantel. The control system includes detecting means for detecting a pre-defined bowl float condition of the crusher, adjusting means for automatically adjusting a width of the gap to thereby eliminate the bowl float condition, and monitoring means for determining magnitude and direction of changes in the width of the gap by monitoring rotation of the bowl liner relative to the upper frame portion. The control means is adapted to automatically adjust the width of the gap to operatively compensate for a wearing rate of the bowl liner and the mantel and to terminate operation of the crusher should rate of bowl float conditions exceed a pre-determined quantity.
    • 旋转式破碎机包括控制系统,具有碗形衬垫的上框架部分和具有壁架的破碎头,使得在碗形衬垫和壁架之间形成具有间隙的破碎室。 控制系统包括用于检测破碎机的预定碗漂浮状态的检测装置,用于自动调节间隙的宽度从而消除碗浮动状况的调节装置,以及用于确定宽度变化的大小和方向的监视装置 通过监测碗衬里相对于上框架部分的旋转。 控制装置适于自动调节间隙的宽度以可操作地补偿碗形衬垫和套管的磨损率,并且如果碗状浮动条件的速率超过预定量,则终止破碎机的操作。
    • 4. 发明授权
    • Moisture content measuring apparatus and method
    • 水分测定装置及方法
    • US5357441A
    • 1994-10-18
    • US29854
    • 1994-03-11
    • J. Scott PettyChristopher FergusonJoseph R. AdamskiJoseph E. Musil
    • J. Scott PettyChristopher FergusonJoseph R. AdamskiJoseph E. Musil
    • G01N21/55G05D22/02G08B19/02G08B21/00
    • G01N21/55G05D22/02G08B19/02
    • A moisture content measuring apparatus and method wherein a sensor station produces calibration data corresponding to measurements of light at two different wavelengths reflected from a material, and the calibration data is then transferred to a hand held computer. The moisture content of a sample of the material is measured and input to the hand held computer. The process is repeated after changing the wetness of the material, and the hand held computer creates a table correlating reflection data to moisture content. The table is transferred to the sensor station which then continuously generates signals representing moisture content in response to real time reflection data and the table. The cost effectiveness of the sensor stations readily facilitates the use of a dedicated sensor station at each of a plurality of conveyors carrying different materials to be combined into a composite of predetermined proportions by weight. Based on the real time moisture contents of each material, the respective flow rates are adjusted to compensate for moisture in order to produce the predetermined proportion.
    • 一种水分含量测量装置和方法,其中传感器站产生对应于从材料反射的两种不同波长的光的测量的校准数据,然后校准数据被传送到手持式计算机。 测量材料样品的含水量并将其输入到手持计算机中。 在改变材料的湿度之后重复该过程,并且手持计算机创建将反射数据与水分含量相关联的表格。 该表被传送到传感器站,该传感器站响应于实时反射数据和表,连续地产生表示湿度含量的信号。 传感器站的成本效益容易地使得在携带不同材料的多个输送机中的每一个处使用专用传感器站来组合成预定重量比的复合材料。 基于每种材料的实时水分含量,调节各流量以补偿水分以产生预定比例。
    • 9. 发明授权
    • Asphalt plant having centralized media burner and low fugitive emissions
    • 沥青设备具有集中的媒体燃烧器和低逸散排放
    • US6146007A
    • 2000-11-14
    • US45212
    • 1998-03-20
    • Martin L. StimsonJoseph E. Musil
    • Martin L. StimsonJoseph E. Musil
    • E01C19/10B28C5/46
    • E01C19/1036E01C19/1063E01C2019/109E01C2019/1095
    • An asphalt plant including a plurality of asphalt processing components, with a selected first set of the components producing volatile emissions and a selected second set requiring process heat energy. A central burner assembly is connected to the selected second set of components by an insulated duct system for providing heat energy to the second component set. A first duct system is adapted to capture a portion of the volatile emissions produced by the first component set and convey the captured emissions into the central burner for mitigation. The central burner is preferably a media burner incorporating flameless combustion technology as well as an adjustable internal fuel injection system, which results in safer and more controllable combustion. Even with captured fugitive emissions in the inlet air, the fuel injection system keeps the concentration of combustible materials well below the lower flammability limit.
    • 包括多个沥青处理部件的沥青设备,其中所选择的第一组部件产生挥发性排放物,以及需要处理热能的所选择的第二组件。 中央燃烧器组件通过用于向第二组件组提供热能的绝缘管道系统连接到所选择的第二组组件。 第一管道系统适于捕获由第一组件组产生的一部分挥发性排放物,并将捕获的排放物输送到中央燃烧器中用于缓解。 中央燃烧器优选是包含无焰燃烧技术的介质燃烧器以及可调节的内部燃料喷射系统,其导致更安全和更可控的燃烧。 即使在入口空气中捕获的逃逸排放物,燃油喷射系统也使可燃材料的浓度远低于较低的可燃性极限。