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    • 1. 发明授权
    • Weight measurement and measurement standardization sensor
    • 重量测量和测量标准化传感器
    • US6006602A
    • 1999-12-28
    • US70165
    • 1998-04-30
    • John PrestonLee ChaseHung-Tzaw HuJohn D. Goss
    • John PrestonLee ChaseHung-Tzaw HuJohn D. Goss
    • G01G17/02G01L5/04
    • G01G17/02
    • An apparatus and method for obtaining fiber weight measurements in the wet end of a sheetmaking system and for verifying fiber weight measurements taken in the wet end of a sheetmaking system which includes a water weight sensor positioned beneath the wire in the wet end of the sheetmaking system for obtaining water weight measurements and load cells residing beneath the water weight sensor for weighing the wet end sensor and the wire with wetstock (total weight) and without wetstock (tare weight). In one embodiment, the water weight measurement and the tare weight measurement are subtracted from the total weight to obtain the fiber weight in the wetstock. In another embodiment, the water weight measurement is used to obtain an predicted fiber weight measurement and the determined fiber weight is used to verify the predicted fiber weight measurement and the accuracy of the water weight measurement device.
    • 一种用于在片材制造系统的湿端中获得纤维重量测量值的装置和方法,并用于验证在片材制造系统的湿端中进行的纤维重量测量,该测量系统包括定位在片材制造系统的湿端中的线下方的水重量传感器 用于获得水重量测量值和位于水重量传感器下方的称重传感器,用于称重湿端传感器和具有湿盘(总重量)和无湿料(皮重)的电线。 在一个实施例中,从总重量中减去水重量测量和皮重测量,以获得湿料中的纤维重量。 在另一个实施例中,使用水重量测量来获得预测的纤维重量测量值,并且使用确定的纤维重量来验证预测的纤维重量测量值和水重量测量装置的精度。
    • 2. 发明授权
    • Underwire water weight turbulence sensor
    • 底线水重湍流传感器
    • US6149770A
    • 2000-11-21
    • US60167
    • 1998-04-14
    • Hung-Tzaw HuClaud Hagart-AlexanderLee ChaseJohn D. GossDavid Watson
    • Hung-Tzaw HuClaud Hagart-AlexanderLee ChaseJohn D. GossDavid Watson
    • D21F1/06D21G9/00D21F1/32
    • D21G9/0027Y10S162/11
    • A system and method of providing on-line turbulence measurements in a sheetmaking machine and using these measurements to perform on-line adjustments to turbulence-inducing and adjusting elements in the sheetmaking machine to optimize final sheet product quality. Turbulence measurements are obtained using water weight sensors in the wet-end of the sheetmaking machine and specifically under wire water weight measurements. Water weight readings are correlated to turbulence intensity levels by correlating ranges of water weights to intensity level intervals. A turbulence processing sensor sorts accumulated water weight measurement readings into intensity level intervals to obtain turbulence measurements or a turbulence profile. The turbulence measurements or profile is provided to a machine element controller which uses the measured turbulence information and target turbulence information to generate control signals. The water weight sensors can obtain independent machine direction (MD) and cross direction (CD) water weight measurements and consequently independent turbulence measurements can be determined so that turbulence can be controlled in both directions. Machine elements are controlled so that turbulence remains uniform across the CD and so that the MD turbulence profile is optimized to resemble a target profile.
    • 在制片机中提供在线湍流测量的系统和方法,并使用这些测量来对片材制造机器中的湍流诱导和调节元件进行在线调整,以优化最终的片材产品质量。 湍流测量是使用水平重量传感器在制片机的湿端,特别是在线水重量测量下获得的。 水重量读数与湍流强度水平相关,通过将水重量与强度水平间隔相关联。 湍流处理传感器将累积的水分重量测量读数分类为强度水平间隔以获得湍流测量或湍流分布。 将湍流测量或轮廓提供给使用测量的湍流信息和目标湍流信息来产生控制信号的机器元件控制器。 水重量传感器可以获得独立的机器方向(MD)和横向(CD)水重量测量值,因此可以确定独立的湍流测量,从而可以在两个方向上控制湍流。 控制机器元件使得湍流在CD上保持均匀,使得MD湍流分布被优化以类似于目标轮廓。
    • 4. 发明授权
    • System and method for sheet measurement and control in papermaking
machine
    • 造纸机纸张测量与控制系统及方法
    • US6126785A
    • 2000-10-03
    • US301340
    • 1999-04-29
    • Hung-Tzaw HuLee ChaseJohn GossJohn Preston
    • Hung-Tzaw HuLee ChaseJohn GossJohn Preston
    • D21F3/02D21F7/00D21G9/00D21F11/00
    • D21G9/0027D21F7/003Y10S162/10Y10S162/11
    • Significant improvements in papermaking control can be achieved by employing an array of sensors that are positioned underneath the wire of the machine to measure the conductivity of the aqueous wet stock. The conductivity of the wet stock is directly proportional to the total water weight within the wet stock; consequently, the sensor provides information which can be used to monitor and control the quality of the paper sheet produced. Because CD water weight profile is obtained practically instantaneously, the MD and CD variations are essentially decoupled. Quality improvements to the sheet fabricated will be achieved by providing fast control of the actuators on the machine and by tuning components on the machine to eliminate the sources of variations. Further, the dry stock weight of a sheet of wet stock that is resting on a water permeable moving wire of the papermaking machine can be made employing a water weight sensor element that is positioned adjacent to the wire and that generates signals indicative of the water weight of the sheet of wet stock on the wire. Moreover, the moisture level cross-direction (CD) profile of a sheet of material that is produced can also be measured.
    • 通过使用位于机器线材下方的传感器阵列来测量水性湿料的导电性,可以实现造纸控制的显着改进。 湿料的电导率与湿料中的总水重量成正比; 因此,传感器提供可用于监测和控制所生产的纸张的质量的信息。 因为CD水重量曲线实际上是瞬间获得的,所以MD和CD变化基本上是去耦的。 通过对机器上的致动器进行快速控制,并通过调节机器上的组件来消除变化的来源,可以实现对制造的片材的质量改进。 此外,搁置在造纸机的透水移动金属线上的湿料片材的干燥储存重量可以使用位于铅丝附近的水重量传感器元件来制造,并产生指示水重量的信号 的电线上的湿股票。 此外,还可以测量所生产的材料片的湿度水平横向(CD)轮廓。
    • 5. 发明授权
    • System and method for sheet measurement and control in papermaking machine
    • 造纸机纸张测量与控制系统及方法
    • US06168687A
    • 2001-01-02
    • US09066802
    • 1998-04-24
    • Hung-Tzaw HuLee ChaseJohn GossJohn Preston
    • Hung-Tzaw HuLee ChaseJohn GossJohn Preston
    • D21F1100
    • D21G9/0027D21F7/003Y10S162/10Y10S162/11
    • Significant improvements in papermaking control can be achieved by employing an array of sensors that are positioned underneath the wire of the machine to measure the conductivity of the aqueous wet stock. The conductivity of the wet stock is directly proportional to the total water weight within the wet stock; consequently, the sensor provides information which can be used to monitor and control the quality of the paper sheet produced. Because CD water weight profile is obtained practically instantaneously, the MD and CD variations are essentially decoupled. Quality improvements to the sheet fabricated will be achieved by providing fast control of the actuators on the machine and by tuning components on the machine to eliminate the sources of variations. Further, the dry stock weight of a sheet of wet stock that is resting on a water permeable moving wire of the papermaking machine can be made employing a water weight sensor element that is positioned adjacent to the wire and that generates signals indicative of the water weight of the sheet of wet stock on the wire. Moreover, the moisture level cross-direction (CD) profile of a sheet of material that is produced can also be measured.
    • 通过使用位于机器线材下方的传感器阵列来测量水性湿料的导电性,可以实现造纸控制的显着改进。 湿料的电导率与湿料中的总水重量成正比; 因此,传感器提供可用于监测和控制所生产的纸张的质量的信息。 因为CD水重量曲线实际上是瞬间获得的,所以MD和CD变化基本上是去耦的。 通过对机器上的致动器进行快速控制,并通过调节机器上的组件来消除变化的来源,可以实现对制造的片材的质量改进。 此外,搁置在造纸机的透水移动金属线上的湿料片材的干燥储存重量可以使用位于铅丝附近的水重量传感器元件来制造,并产生指示水重量的信号 的电线上的湿股票。 此外,还可以测量所生产的材料片的湿度水平横向(CD)轮廓。
    • 8. 发明授权
    • Wet end control for papermaking machine
    • 造纸机湿端控制
    • US6086716A
    • 2000-07-11
    • US75762
    • 1998-05-11
    • John David WatsonClaud Hagart-AlexanderJohn D. GossJohn G. PrestonHung-Tzaw HuLaslo Dudas
    • John David WatsonClaud Hagart-AlexanderJohn D. GossJohn G. PrestonHung-Tzaw HuLaslo Dudas
    • G01N27/02D21D1/00D21F1/08D21F1/66D21G9/00G01R27/26
    • D21G9/0027D21D1/002D21F1/08Y10S162/06
    • System and method for producing paper are provided. The system controls formation of wet stock comprising fibers on a moving water permeable wire of a de-watering machine that has means for supplying the amount of pulp from at least one source, means for adding an amount of non-fibrous additives to the wet stock, a refiner that is subject to a variable load and a headbox having at least one slice, wherein each slice has an aperture through which wet stock is discharged onto the wire. The system includes: (a) at least two water weight sensors that are positioned adjacent to the wire wherein the at least two sensors are positioned at different locations in the direction of movement of the wire and upstream from a dry line which develops during operation of the machine and the sensors generate signals indicative of a water weight profile made up of a multiplicity of water weight measurements; and (b) means for adjusting at least one of the motor load controller, the amount of non-fibrous additives added to the wet stock or amount of pulp supplied from the at least one source to cause the water weight profile to match a preselected or optimal water weight profile.
    • 提供纸的生产方法和制造方法。 该系统控制在脱水机的运动的水可渗透的丝线上形成含有纤维的湿料,其具有用于从至少一个来源供应量的装置的装置,用于将一定量的非纤维添加剂添加到湿料中 ,经受可变负载的磨浆机和具有至少一个切片的流浆箱,其中每个切片具有通过该孔将湿料排放到丝线上的孔。 所述系统包括:(a)至少两个水重量传感器,其位于与所述导线相邻的位置,其中所述至少两个传感器位于所述导线的移动方向上的不同位置, 机器和传感器产生指示由多个水重量测量组成的水重分布的信号; 和(b)用于调节马达负载控制器,添加到湿料中的非纤维添加剂的量或从至少一个来源供应的纸浆量中的至少一个的装置,以使水重量分布匹配预选的或 最佳水重分布。
    • 9. 发明授权
    • Paper stock shear and formation control
    • 纸张剪切和成形控制
    • US6092003A
    • 2000-07-18
    • US93529
    • 1998-06-08
    • Claud Hagart-AlexanderHung-Tzaw HuDavid WatsonJohn Preston
    • Claud Hagart-AlexanderHung-Tzaw HuDavid WatsonJohn Preston
    • D21F1/02D21F7/02D21G9/00G06F19/00G06F7/66
    • D21G9/0027
    • System and method for producing paper are provided. The system controls formation of wet stock comprising fibers on a moving water permeable wire of a de-watering machine that has a refiner that is subject to a variable load and a headbox having at least one slice, wherein each slice has an aperture through which wet stock is discharged at a stock jet speed onto the wire that is moving at a wire speed. A sheet of wet stock moving a speed develops on the wire. The system includes: a) at least two water weight sensors that are positioned adjacent to the wire wherein the at least two sensors are positioned at different locations in the direction of movement of the wire and upstream from a dry line which develops during operation of the machine and the sensors generate signals indicative of a water weight profile made up of a multiplicity of water weight measurements; and b) means for adjusting at least one of the stock jet speed, sheet speed, wire speed, or refiner load to cause the water weight profile to match a preselected or optimal water weight profile. Techniques for predicting the dry stock weight of wet stock on the wire can be employed to assess the effect of adjusting the operating parameters. In addition, employing two sensors placed in the machine direction, the sheet speed can be determined by measuring the water weigh profile of a segment of the sheet and the time required for the segment to travel from one sensor to the next.
    • 提供纸的生产方法和制造方法。 该系统控制在脱水机的移动透水导线上形成含有纤维的湿料,所述脱水机具有经受可变负载的精磨机和具有至少一个切片的流浆箱,其中每个切片具有通过该孔的孔 原料以库存喷射速度排出到以线速度移动的线上。 在电线上形成一片移动速度的湿料。 所述系统包括:a)至少两个水重量传感器,其邻近所述导线定位,其中所述至少两个传感器位于所述导线的运动方向上的不同位置,并且在所述导线的运行过程中产生的干线上游 机器和传感器产生指示由多个水重量测量组成的水重分布的信号; 以及b)用于调节储存喷射速度,纸张速度,线速度或精磨机负载中的至少一个的装置,以使水重量分布匹配预选或最佳水重分布。 可以使用用于预测线材上湿料干燥料重的技术来评估调整操作参数的效果。 另外,使用沿机器方向放置的两个传感器,可以通过测量片材的片段的水分分布和片段从一个传感器传播到下一个传感器所需的时间来确定片材速度。