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    • 2. 发明申请
    • METHOD AND APPARATUS FOR MONITORING AN UNDERGROUND OBJECT
    • 监测地下物体的方法和装置
    • US20160313271A1
    • 2016-10-27
    • US15029998
    • 2014-11-13
    • RHEINISCH-WESTFÄLISCHETECHNISCHE HOCHSCHULE AACHEN
    • Michael RAUPACHKenji REICHLINGChristian HELM
    • G01N27/04G01N33/38G01N33/20G01N33/24
    • G01N27/048G01N33/20G01N33/24G01N33/383G01V3/02G01V3/04G01V3/06G01V3/08G01V3/20G01V3/22
    • The invention relates to a system for monitoring a substratum (1) with regard to damage and/or for protecting a substratum (1) from damage. The system comprises: an electrolytically active layer (4), which has a moisture-dependent electrical resistance; at least one electrode pair, the spaced-apart electrodes (3a, 3b) of which are connected to each other by means of the electrolytically active layer (4); and a measuring device, by means of which a property, in particular an electrical quantity of the electrolytically active layer (4) or of the electrodes (3a, 3b), can be measured by using electrodes (3a, 3b) of at least one electrode pair, in particular of each electrode pair, and/or a control device, by means of which a voltage can be applied to the electrodes (3a, 3b) of at least one electrode pair, in particular of each electrode pair. At least one of the electrodes (3a, 3b) of the at least one electrode pair is designed as a planar electrode in the electrolytically active layer (4), in particular the plane of said at least one electrode is oriented parallel to the surface of the substratum (1). The invention further relates to a method for producing a system for monitoring and/or for protecting a substratum, to a method for monitoring a substratum with regard to damage, and to a method for protecting a substratum from damage, in particular moisture damage and/or damage as a result of the penetration of harmful substances.
    • 本发明涉及一种用于监测关于损伤的基底(1)和/或用于保护底物(1)免受损伤的系统。 该系统包括:具有水分依赖性电阻的电解活性层(4); 至少一个电极对,其隔开的电极(3a,3b)通过电解活性层(4)彼此连接; 并且可以通过使用至少一个电极(3a,3b)测量特性,特别是电解活性层(4)或电极(3a,3b)的电量的测量装置 电极对,特别是每个电极对,和/或控制装置,借助于该电极对,可以对至少一个电极对(特别是每个电极对)的电极(3a,3b)施加电压。 至少一个电极对的电极(3a,3b)中的至少一个被设计为电解有源层(4)中的平面电极,特别是所述至少一个电极的平面平行于 底层(1)。 本发明还涉及一种用于生产用于监测和/或保护底物的系统的方法,用于监测关于损伤的底物的方法,以及用于保护底物不受损害,特别是水分损害和/ 或由于有害物质的渗透造成的损害。
    • 3. 发明申请
    • CHIP DETECTOR
    • 芯片检测器
    • US20140347032A1
    • 2014-11-27
    • US14457555
    • 2014-08-12
    • Caterpillar Inc.
    • Daniel J. ReedTimothy F. Nusz
    • G01V3/08
    • G01V3/08G01N27/04G01N33/2858G01V3/04
    • A chip detector includes a plug configured to be coupled to a housing. The plug includes a first magnetic member and a second magnetic member spaced apart from each other so as to define a gap therebetween. Each of the first magnetic member and the second magnetic member is a rare earth magnet. A first electric contact is electrically coupled with the first magnetic member and a second electric contact is electrically coupled with the second magnetic member. A resistor is electrically coupled between the first electric contact and the second electric contact. An energy storage device is configured to provide a voltage difference between the first electric contact and the second electric contact. An indicating member is configured to provide an indication of a flow of current between the first and second electric contacts due to collection of chips in the gap between the first and second magnetic members.
    • 芯片检测器包括被配置为联接到壳体的插头。 插头包括彼此间隔开的第一磁性构件和第二磁性构件,以便在它们之间限定间隙。 第一磁性构件和第二磁性构件中的每一个是稀土磁体。 第一电触点与第一磁性元件电耦合,第二电触点与第二磁性元件电耦合。 电阻器电耦合在第一电触头和第二电触点之间。 能量存储装置被配置为提供第一电接触和第二电接触之间的电压差。 指示构件被配置为提供由于在第一和第二磁性构件之间的间隙中收集芯片而在第一和第二电触头之间的电流流动的指示。
    • 5. 发明授权
    • Electrical geophysical apparatus for determining the density of porous materials and establishing geo-electric constants of porous material
    • 用于确定多孔材料密度和建立多孔材料的地电常数的电子地球物理仪器
    • US06380745B1
    • 2002-04-30
    • US09528791
    • 2000-03-16
    • Dennis M. AndersonWilliam J. Ehni
    • Dennis M. AndersonWilliam J. Ehni
    • G01V300
    • G01V3/04E02D1/04
    • The invention includes an apparatus for determining geo-electric data and the density of a porous material. A resistivity-measuring device applies an electrical current through an electrode array to that is part of a non-electrical conductive test cell that is used to measure the resistivity of the porous material that is the test cell. The test cell is a made of a rigid non-electrically conductive material and is a standard shape and dimension. The material that is the test specimen is compacted into the test cell using a standard technique so that the physical properties of the test specimen my calculated. In addition to making a set of standard physical measurement (material unit density and unit moisture content) the test cell is used to measure electrical properties of the test specimen so that a set of electrical constants can be determined for the material under test. The above data is applied with a general geophysical in-situ density equation to establish geo-electrical constants that are unique to the density characteristics of the porous material.
    • 本发明包括用于确定地电数据和多孔材料的密度的装置。 电阻率测量装置通过电极阵列施加电流,作为用于测量作为测试电池的多孔材料的电阻率的非导电测试电池的一部分。 测试电池由刚性非导电材料制成,是标准的形状和尺寸。 使用标准技术将试样的材料压实成试验电池,使我的试样的物理性能得到计算。 除了进行一套标准物理测量(材料单位密度和单位含水量)之外,测试单元还用于测量试样的电性能,以便可以确定被测材料的一组电常数。 将上述数据应用于通用的地球物理原位密度方程,以建立多孔材料的密度特性所独有的地电常数。