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    • 2. 发明授权
    • Device for measuring the temperatures of axles or bearings for locating hot-boxes or overheated brakes in rolling stock
    • 用于测量车辆或轴承温度的装置,用于定位车辆中的热箱或过热制动器
    • US06695472B1
    • 2004-02-24
    • US10110856
    • 2002-04-18
    • Wolfgang Nayer
    • Wolfgang Nayer
    • G01J508
    • B61K9/06
    • In a device for measuring the temperatures of axles and/or bearings to locate hot-boxes or overheated brakes in rolling stock, in which the infrared rays of the measuring points are directed onto an infrared receiver (8) via an oscillating mirror (9), whereby infrared rays emitted transversely to the longitudinal direction of the rails are detected in the scanning plane defined by the oscillation of the oscillating mirror (9), at least two deviation mirrors (1, 2) are arranged within the scanning plane at a distance (a) from one another transverse to the longitudinal direction of the rails. The deviated infrared rays of the deviation mirrors (1, 2) are detected in a chronological sequence in accordance with the oscillation of the oscillating mirror (9).
    • 在用于测量轴和/或轴承的温度的装置中,用于定位车辆中的热箱或过热制动器,其中测量点的红外线经由振荡镜(9)被引导到红外接收器(8)上, 在由摆动反射镜(9)的振荡所限定的扫描平面中检测出横向于轨道纵向发射的红外线,至少两个偏差镜(1,2)以一定距离设置在扫描平面内 (a)横向于导轨的纵向方向。 根据振荡镜(9)的振荡,以时间顺序检测偏差镜(1,2)的偏离的红外线。
    • 4. 发明授权
    • Process and system for measuring axle and bearing temperatures
    • 用于测量轴和轴承温度的过程和系统
    • US5201483A
    • 1993-04-13
    • US703260
    • 1991-05-20
    • Ivan SutnarWolfgang Nayer
    • Ivan SutnarWolfgang Nayer
    • B61K9/06
    • B61K9/06Y10S246/02
    • In a process for measuring axle bearing temperatures in order to locate hot wheels in moving railroad cars with infrared receivers and with an oscillating scanning beam that is oriented transversely to the longitudinal direction of the rail, the analog measured values from the infrared receiver are digitized and then coupled with the oscillation frequency orientation of the scanning beam so that at least two complete oscillations of the scanning beam are analyzed for each axle. A mean value is formed from the measured value corresponding to one sub-area of a first oscillation of the scanning beam and from the measured value that corresponds to subsequent oscillations of the scanning beam. When this is done, the calculation of the average or mean value is repeated for a specific predetermined maximum number of oscillations of the scanning beam and for as long as an activation signal initiated by the wheel signals from the same axle is within the measuring angle of the center. For each calculation, the highest mean value of the measured values of corresponding sub-areas is evaluated.
    • 在用于测量轴承温度的过程中,为了将热轮定位在具有红外接收器的移动铁路车厢中并且具有横向于轨道纵向方向的摆动扫描梁,来自红外线接收器的模拟测量值被数字化, 然后与扫描光束的振荡频率取向耦合,从而为每个轴分析扫描光束的至少两个完整振荡。 平均值由对应于扫描光束的第一振荡的一个子区域的测量值和对应于扫描光束的随后振荡的测量值形成。 当这样做时,针对扫描光束的特定预定最大振荡次数重复平均值或平均值的计算,并且只要由来自同一轴的车轮信号启动的激活信号在测量角度 中心。 对于每个计算,评估相应子区域的测量值的最高平均值。
    • 6. 发明授权
    • Method for monitoring the condition of rail switch points
    • 监控轨道交换点状况的方法
    • US5253830A
    • 1993-10-19
    • US880420
    • 1992-05-08
    • Wolfgang NayerGerald Durchschlag
    • Wolfgang NayerGerald Durchschlag
    • B61L5/10
    • B61L5/107
    • In a method for monitoring the condition of rail switch points and for detection of premature abrasive wear-and-tear in the region of the tongue switching rail (3) of the points, the signals from at least one proximity sensor (2) in the region of the tongue switching rail (3) of the points are evaluated when the tongue switching rail is travelled upon, and the smallest measured value of the separation distance (l) during the travel is stored in memory. The smallest measured value stored in memory and at least a first limiting value for the smallest separation distance are compared with one another and, when the smallest measured value in memory exceeds this first limiting value, a warning signal is generated.
    • 在用于监测轨道切换点的状况并检测在该点的舌状开关轨道(3)的区域中的过早的磨损磨损的方法中,来自至少一个接近传感器(2)的信号 当舌头开关导轨行进时评估点的舌头开关导轨(3)的区域,并且行进期间的间隔距离(l)的最小测量值存储在存储器中。 存储在存储器中的最小测量值和用于最小间隔距离的至少第一限制值彼此进行比较,并且当存储器中的最小测量值超过该第一限制值时,产生警告信号。