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    • 2. 发明申请
    • WIRELESS SENSOR WITH KINETIC ENERGY POWER ARRANGEMENT
    • 无线传感器,具有动力能量安排
    • WO2010096620A1
    • 2010-08-26
    • PCT/US2010/024673
    • 2010-02-19
    • CATERPILLAR TRIMBLE CONTROL TECHNOLOGIES LLCWOLF, Edward
    • WOLF, Edward
    • E01C19/28
    • E01C19/288
    • A system and method for sensing surface compaction effected by a compactor machine of the type having a vibrating compacting roller, and providing a sensor signal indicating sensed surface compaction to a control mounted on the compactor machine, includes a sensor for sensing compaction and providing a signal indicating sensed surface compaction. The sensor is mounted on the compacting roller support of the compactor machine. The system includes a vibration-to-electric energy converter, mounted with the sensor on the compacting roller support and subjected to vibration. The converter converts the vibration energy to electric energy which may be supplied to the sensor and to a transmitter. The transmitter is powered by the electric energy from said vibration-to-electric energy converter and transmits the sensor signal to a receiver on the machine. The receiver provides the sensor signal to a control for the machine.
    • 一种用于感测由具有振动压实辊的类型的压实机实现的表面压实的系统和方法,并且向安装在压实机上的控制器提供表示感测到的表面压实的传感器信号,包括用于感测压实并提供信号的传感器 表明感测表面压实。 传感器安装在压实机的压实辊支架上。 该系统包括一个振动 - 电能转换器,将传感器安装在压实辊支架上并受到振动。 该转换器将振动能量转换成可以提供给传感器和发射器的电能。 发射机由来自所述振动 - 电能转换器的电能供电,并将传感器信号传输到机器上的接收器。 接收器将传感器信号提供给机器的控制。
    • 3. 发明申请
    • SYSTEM FÜR DIE KOORDINIERTE BODENBEARBEITUNG
    • 系统协调一致耕作
    • WO2006099772A1
    • 2006-09-28
    • PCT/CH2006/000172
    • 2006-03-23
    • AMMANN SCHWEIZ AGANDEREGG, RolandKAUFMANN, KunoMARTI, Nicole
    • ANDEREGG, RolandKAUFMANN, KunoMARTI, Nicole
    • E01C19/28E02D3/074
    • E01C19/288E01C19/38E02D3/074
    • Das System für die koordinierte Bodenbearbeitung umfasst eine Mehrzahl von Verdichtungsvorrichtungen (W1, W2) zur Bodenverdichtung, wobei die Verdichtungsvorrichtungen (W1, W2) zum Ermitteln von ortsbezogenen relativen Verdichtungswerten (V(W1;TB1, xi, yi;i =1 ...n)) ausgebildet sind und eine Eichvorrichtung (EV) zum Ermitteln von ortsbezogenen absoluten Verdichtungswerten. Eine Recheneinheit (R), welche mit den Verdichtungsvorrichtungen (W1, W2) und der Eichvorrichtung (EV) nachrichtentechnisch verbunden ist, korreliert die erhaltenen relativen und absoluten ortsbezogenen Verdichtungswerte. Eine Systemsteuerung (CPU1, ..., CPU4) ist derart ausgebildet, dass die ortsbezogenen relativen Verdichtungswerte der Verdichtungsvorrichtungen (W1, W2) sowie die ortsbezogenen absoluten Verdichtungswerte laufend an die Recheneinheit (R) übermittelt, dort abgespeichert und beim Vorhandensein von ortsgleichen Verdichtungswerten Verdichtungskorrelationswerte berechnet und an die Verdichtungsvorrichtungen übermittelt, wo sie als Korrekturwert abgespeichert werden.
    • 为协调耕作该系统包括多个用于压实土壤压实装置(W1,W2)的,其中所述压缩装置(W1,W2),用于确定位置相关的相对压实值(V(W1; TB1,XI,苡仁,I = 1 ... n))的形成,并且用于确定位置相关的绝对压实值的校准装置(EV)。 计算单元(R),其被连接到所述压缩装置(W1,W2)和校准设备(EV)通信,相关所获得的相对和绝对的基于位置的压缩的值。 系统控制器(CPU1,...,CPU4)被形成为使得压实设备的位置相关的相对压实值(W1,W2),以及连续地传送到所述计算单元(R)的位置相关的绝对压实值,存储在那里,并在并置的压实值压实相关值的存在 计算并传送到冷凝装置,在那里它们被存储为校正值。
    • 4. 发明申请
    • SYSTEM FOR MEASURING MATERIAL PROPERTIES FROM A MOVING CONSTRUCTION VEHICLE
    • 用于测量移动建筑车辆的材料特性的系统
    • WO2003095984A2
    • 2003-11-20
    • PCT/US2002/029882
    • 2002-09-19
    • INGERSOLL-RAND COMPANYSTRIDIRON, LauraSCOTESE, Michael, J.
    • STRIDIRON, LauraSCOTESE, Michael, J.
    • G01N13/00
    • E01C19/288E01C19/48G01N9/00G01N9/24G01N33/42G01N2203/0085
    • A system is for sensing a property of a material mat from a construction vehicle. The system includes a sensor for sensing the material property and a positioning mechanism connected with the vehicle and with the sensor. The mechanism displaces the sensor between first and second positions with respect to the vehicle as the vehicle displaces with respect to the material mat. The first sensor position is spaced a substantial distance above the mat upper surface. The second sensor position is located proximal to or on the mat surface such that the sensor is able to sense the material property in the second position. A controller operates the mechanism to sequentially displace the sensor from the first to second positions, permit the sensor to remain disposed at the second position for a period of time, and displace the sensor from the second to first positions after the period of time.
    • 系统用于感测来自建筑车辆的材料垫的性质。 该系统包括用于感测材料特性的传感器和与车辆和传感器连接的定位机构。 当车辆相对于材料垫移动时,该机构相对于车辆在第一和第二位置之间移位传感器。 第一传感器位置在垫上表面之上隔开相当长的距离。 第二传感器位置位于垫表面附近或垫子表面上,使得传感器能够感测第二位置的材料特性。 控制器操作机构以将传感器从第一位置顺序地移位到第二位置,允许传感器在第二位置保持一段时间,并且在一段时间之后将传感器从第二位置移位到第一位置。
    • 5. 发明申请
    • OSCILLATION DETECTING DEVICE FOR COMPACTING SOIL
    • 振动检测压实机
    • WO01081680A1
    • 2001-11-01
    • PCT/EP2001/004243
    • 2001-04-12
    • E01C19/28E01C19/38
    • E01C19/38E01C19/288
    • A device for compacting the soil, comprising a soil contact element (5) which is impinged upon by an oscillation exciter enabling the soil to be compacted. The soil contact element (5) is elastically (4) coupled to an upper mass (1) . The upper mass (1) is used as a detection mass, whereby the acceleration thereof is detected by an acceleration sensor (6). A measuring signal (7) emitted by the acceleration sensor (6) is evaluated in a control device (8) which controls the oscillation exciter (2) according to a deviation from a set value.
    • 甲土壤压实设备包括一个从一个振动激励器(2)采取行动地面接触元件(5)上用于压实土壤。 与地面接触的部件(5)设置有上部质量(1)弹性地(4)连接。 上质量(1)用作一个检测质量,加速度由加速度传感器(6)检测。 一个发射的测量信号中的加速度传感器(6)(7)在驱动振动激励器(2),对应于与目标值的偏差的控制装置(8)进行评价。
    • 6. 发明申请
    • COMPACTION INDEX
    • 压缩指标
    • WO1994025680A1
    • 1994-11-10
    • PCT/SE1994000388
    • 1994-04-29
    • GEODYNAMIK H. THURNER ABSANDSTRÖM, Åke
    • GEODYNAMIK H. THURNER AB
    • E01C19/28
    • E01C19/26E01C19/28E01C19/288
    • In compacting an asphalt layer which is continuously deposited by a paver machine a compacting machine reciprocates behind the paver. With the aid of signals from sensors (3) for temperature, sensors (5) for movement velocity of the compacting machine, sensors (7) for change of path and sensors (9) for static/vibratory compacting operation a processor (1) determines the position of the compacting machine all the time, in particular the position of the compacting machine in relation to the paver, and other variables for each area segment passed by the compacting machine. The position of the compacting machine is displayed symbolically on a monitor (19) and the variables measured and determined for each passed area segment are stored in a memory (17). For each passed area segment also a total index number can be determined for this area segment, which on the monitor (19) is displayed as a field having a colour or light intensity which is proportional to this total index number. The index number indicates the total amount of compacting work which the compacting machine has made on this area segment. The position of a field representing such an area segment is displayed on the monitor (19) in a proportional scale.
    • 在压实由摊铺机连续沉积的沥青层时,压实机在摊铺机后面往复运动。 借助于用于温度的传感器(3)的信号,用于压实机的移动速度的传感器(5),用于改变路径的传感器(7)和用于静态/振动压实操作的传感器(9),处理器(1)确定 压实机的位置,特别是压实机相对于摊铺机的位置,以及由压实机通过的每个区段的其他变量。 压实机的位置在监视器(19)上以符号方式显示,并且对于每个经过的区域段测量和确定的变量存储在存储器(17)中。 对于每个通过的区域段,也可以为该区域段确定总索引号,该区域在显示器(19)上显示为具有与该总索引号成比例的颜色或光强度的场。 索引号表示压实机在该区域段上进行的压实作业的总量。 表示这种区域段的场的位置以比例尺显示在监视器(19)上。
    • 7. 发明申请
    • AN IMPACT COMPACTOR, COMPACTION SYSTEM AND A METHOD OF OBTAINING SOIL STRENGTH
    • 冲击压实机,压实系统和获得土壤强度的方法
    • WO2016116885A2
    • 2016-07-28
    • PCT/IB2016/050292
    • 2016-01-21
    • STROMSOE, Roger Arnold
    • STROMSOE, Roger Arnold
    • E01C19/26
    • E02D1/022E01C19/266E01C19/288E01C21/00E02D3/026E02D2200/1678E02D2600/10G01N3/34G01N2203/0019G01N2203/0033G01N2203/0037G01N2203/0078
    • The invention relates to an impact compactor (10) and to a method and system of obtaining an indication of the soil strength of soil (100) by using an impact compactor (10). The impact compactor (10) includes a chassis 5 structure (12), at least one wheel (14) supportively mounted on the chassis structure (12), and at least one impact drum (16) which is displaceable relative to the chassis structure (12). The method includes travelling with the impact compactor (10) over a soil surface (100) while the drum (16) is in a raised position in which it is spaced from the soil surface (100) and 10 measuring, by using a measuring arrangement (20) which is connected to or forms part of the impact compactor (10), a rut depth (54) of a rut in the soil surface (100) which is formed by the wheel (14) as the impact compactor (10) travels over the soil surface (100).
    • 本发明涉及冲击压实机(10)以及通过使用冲击压实机(10)获得土壤(100)的土壤强度指示的方法和系统。 冲击压实机(10)包括底盘5结构(12),至少一个支撑地安装在底盘结构(12)上的轮子(14),以及至少一个冲击鼓(16),其可相对于底盘结构 12)。 该方法包括在鼓(16)处于升高位置时与冲击压实机(10)一起在土壤表面(100)上行进,在升高位置,其与土壤表面(100)间隔开并且通过使用测量装置 (10)连接或形成冲击压实机(10)的一部分的车轮(20),由作为冲击压实机(10)的车轮(14)形成的土壤表面(100)中的车辙的车辙深度(54) 穿过土壤表面(100)。
    • 8. 发明申请
    • MODIFYING COMPACTION EFFORT BASED ON MATERIAL COMPACTABILITY
    • 基于材料紧凑性修改压实效应
    • WO2014209648A1
    • 2014-12-31
    • PCT/US2014/042477
    • 2014-06-16
    • CATERPILLAR PAVING PRODUCTS INC.
    • OETKEN, Nicholas A.
    • E01C19/23E01C19/28
    • E01C19/288
    • A vibratory compactor having a first compacting element having a variable vibratory mechanism that sets a modifiable compaction effort, a second compacting element, a first sensor configured to measure a first surface compactability associated with the first compacting element, a second sensor configured to measure a second surface compactability associated with the second compacting element and a control system. The control system is configured to receive the first surface compactability, receive the second surface compactability, determine a target compaction effort for the first compacting element based on the first surface compactability and the second surface compactability, and modify the variable vibratory mechanism to set the compaction effort at the target compaction effort.
    • 一种振动压实机,其具有第一压实元件,该第一压实元件具有可变振动机构,其设置可修正的压实力,第二压实元件,构造成测量与第一压实元件相关联的第一表面可压缩性的第一传感器;第二传感器, 与第二压实元件和控制系统相关的表面紧实性。 所述控制系统被配置为接收第一表面可压缩性,接收第二表面可压缩性,基于第一表面可压缩性和第二表面可压缩性来确定第一压实元件的目标压实力,并且修改可变振动机构以设定压实 目标压实努力的努力。