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    • 2. 发明授权
    • Control of a coating process
    • 控制涂层工艺
    • US07972658B2
    • 2011-07-05
    • US12878249
    • 2010-09-09
    • Matti S KukkurainenJohn F. Shakespeare
    • Matti S KukkurainenJohn F. Shakespeare
    • B05C11/10
    • D21H23/78B05B12/084
    • Devices, systems and methods for controlling the coating of a sample are disclosed. The exemplary system may have a manufacturing device for providing a sample with one or more sample characteristics associated with one or more coating characteristics. The exemplary system may have a sample sensor for determining the one or more sample characteristics and a manufacturing controller for controlling the manufacturing device and controlling the one or more characteristics of the sample provided by the manufacturing device based on the determined one or more sample characteristics. The exemplary system may also have a coating device for providing coating to the sample with the one or more coating characteristics; a coating sensor for determining the one or more coating characteristics; and a coating controller for controlling the coating device and controlling the one or more characteristics of the coating provided by the coating device based on the determined one or more coating characteristics.
    • 公开了用于控制样品涂层的装置,系统和方法。 示例性系统可以具有用于向样品提供与一个或多个涂层特性相关联的一个或多个样品特性的制造装置。 示例性系统可以具有用于确定一个或多个样本特征的样本传感器和用于控制制造装置并基于所确定的一个或多个样本特性来控制由制造装置提供的样本的一个或多个特性的制造控制器。 该示例性系统还可以具有用于向所述样品提供具有一种或多种涂层特性的涂层的涂覆装置; 用于确定一个或多个涂层特性的涂层传感器; 以及涂层控制器,用于基于所确定的一种或多种涂层特性来控制涂布装置并控制由涂布装置提供的涂层的一个或多个特性。
    • 3. 发明申请
    • APPARATUS AND METHOD FOR MEASURING PROPERTIES OF UNSTABILIZED MOVING SHEETS
    • 测量不稳定运动特性的装置和方法
    • US20100228518A1
    • 2010-09-09
    • US12400661
    • 2009-03-09
    • John F. ShakespeareTarja T. ShakespeareMarkku Kellomaki
    • John F. ShakespeareTarja T. ShakespeareMarkku Kellomaki
    • G06F15/00
    • D21G9/0009G01B11/026G01B11/06G01B11/0691G01N21/86G01N21/89G06F17/18
    • A method includes receiving multiple biased measurements associated with a property of a sheet of material, where the biased measurements correspond to multiple known sheet geometries. The method also includes determining an unbiased measurement associated with the property of the sheet using the biased measurements, where the unbiased measurement corresponds to a nominal sheet geometry. The method further includes storing and/or outputting the unbiased measurement. Determining the unbiased measurement could include performing regression using the biased measurements and their corresponding sheet geometries to identify an estimated value of the property of the sheet at the nominal sheet geometry. The biased measurements can be generated using one or more sensors, and the sheet may not be stabilized during the biased measurement generation. Additional sheet geometries can also be created, such as by varying a tilt angle, a curvature, and/or a position of the sheet.
    • 一种方法包括接收与一张材料的属性相关联的多个偏置测量,其中偏置的测量对应于多个已知的片材几何形状。 该方法还包括使用偏置测量来确定与片材的属性相关联的无偏差测量,其中无偏置测量对应于标称片材几何形状。 该方法还包括存储和/或输出无偏置测量。 确定无偏差的测量可以包括使用偏置测量及其对应的片材几何来进行回归,以在标称片材几何形状上识别片材的性质的估计值。 可以使用一个或多个传感器产生偏置测量,并且在偏置的测量生成期间,薄片可能不稳定。 也可以通过改变片材的倾斜角度,曲率和/或位置来创建附加的片材几何形状。
    • 4. 发明申请
    • APPARATUS AND METHOD FOR MEASURING HAZE OF SHEET MATERIALS OR OTHER MATERIALS
    • 用于测量材料或其他材料的HAZE的装置和方法
    • US20100226524A1
    • 2010-09-09
    • US12400641
    • 2009-03-09
    • Tarja T. ShakespeareJohn F. Shakespeare
    • Tarja T. ShakespeareJohn F. Shakespeare
    • G06K9/00
    • G01N21/47G01N21/59G01N21/896G01N21/958G01N2021/8928
    • A method includes illuminating a material with first light and capturing an image of second light transmitted through the material. The method also includes analyzing multiple regions of the image and determining one or more haze measurements associated with the material based on the analyzing. The method further includes storing and/or outputting the one or more haze measurements. Analyzing the multiple regions of the image may include summing pixel values in each region to produce a total pixel value for that region. The multiple regions of the image may include (i) a first region forming a first disc, (ii) a second region forming either a first annular region around the first region or a second disc larger than and including the first disc, and (iii) a third region forming either a second annular region around the second region or a third disc larger than and including the first and second discs.
    • 一种方法包括用第一光照射材料并捕获通过材料透射的第二光的图像。 该方法还包括基于分析来分析图像的多个区域并确定与材料相关联的一个或多个雾度测量。 该方法还包括存储和/或输出一个或多个雾度测量。 分析图像的多个区域可以包括对每个区域中的像素值求和以产生该区域的总像素值。 图像的多个区域可以包括(i)形成第一盘的第一区域,(ii)形成围绕第一区域的第一环形区域或大于并包括第一盘的第二盘的第二区域,以及(iii) )形成围绕第二区域的第二环形区域或大于并包括第一和第二盘的第三盘的第三区域。
    • 5. 发明申请
    • APPARATUS AND METHOD FOR CAMERA-BASED COLOR MEASUREMENTS
    • 用于基于摄像机的颜色测量的装置和方法
    • US20090185185A1
    • 2009-07-23
    • US12017469
    • 2008-01-22
    • Tarja T. ShakespeareJohn F. Shakespeare
    • Tarja T. ShakespeareJohn F. Shakespeare
    • G01N21/25
    • G01J3/36G01J2003/1213G01N21/3563
    • A method includes receiving light from a material at a digital imaging device. The method also includes filtering the light into at least three spectral bands using a filter, where different regions of the filter pass different spectral bands. The method further includes measuring the light in each of the spectral bands and determining at least one color associated with the material using the measured light in the spectral bands. The different regions of the filter could include multiple masks (where each mask passes one of the spectral bands), different areas of a linear variable filter, and/or individual filters (where each individual filter passes one of the spectral bands). The digital imaging device could include a digital camera. The filter could be formed on a detector in the digital camera, and/or a component of the digital camera could be replaced with the filter.
    • 一种方法包括从数字成像装置的材料接收光。 该方法还包括使用滤波器将光过滤成至少三个光谱带,其中滤光器的不同区域通过不同的光谱带。 该方法还包括测量每个光谱带中的光并使用光谱带中的测量光来确定与材料相关联的至少一种颜色。 滤波器的不同区域可以包括多个掩模(其中每个掩模通过光谱带之一),线性可变滤波器的不同区域和/或单个滤波器(其中每个单独的滤波器通过光谱带之一)。 数字成像装置可以包括数字照相机。 过滤器可以形成在数字照相机中的检测器上,和/或数字照相机的部件可以用过滤器代替。
    • 6. 发明申请
    • APPARATUS AND METHOD FOR MEASURING AND/OR CONTROLLING PAPER PULP PROPERTIES
    • 用于测量和/或控制纸浆性质的装置和方法
    • US20090185162A1
    • 2009-07-23
    • US12017092
    • 2008-01-21
    • Tarja T. ShakespeareJohn F. Shakespeare
    • Tarja T. ShakespeareJohn F. Shakespeare
    • G01J3/00
    • G01J3/36G01J3/10G01N21/33G01N33/343
    • A method includes illuminating a material using first light. The first light is associated with one or more ultraviolet wavelengths/wavelength bands, and the material includes pulp fibers. The method also includes measuring second light from the material, where the second light is based on the first light. The method further includes determining an amount of lignin in the material using the measured second light. The ultraviolet wavelengths/wavelength bands could include at least one wavelength between 260 nanometers and 300 nanometers, inclusive (such as 280 nm). The one or more ultraviolet wavelengths/wavelength bands could additionally include 205 nanometers, 250 nanometers, 300 nanometers, and/or 360 nanometers. The method could also include illuminating the material using third light and measuring fourth light from the material, where the fourth light is based on the third light. The third light is associated with at least one wavelength/wavelength band that falls within a non-absorption wavelength band of lignin.
    • 一种方法包括使用第一光照射材料。 第一个光与一个或多个紫外线波长/波长带相关联,并且该材料包括纸浆纤维。 该方法还包括测量来自材料的第二光,其中第二光基于第一光。 该方法还包括使用所测量的第二光来确定材料中的木质素的量。 紫外线波长/波段可以包括260纳米至300纳米(包括280纳米)之间的至少一个波长。 一个或多个紫外线波长/波段可另外包括205纳米,250纳米,300纳米和/或360纳米。 该方法还可以包括使用第三光照射材料并测量来自材料的第四光,其中第四光基于第三光。 第三个光与落入木质素的非吸收波长带内的至少一个波长/波长带有关。
    • 7. 发明申请
    • APPARATUS AND METHOD FOR MEASURING AND/OR CONTROLLING ULTRAVIOLET-ACTIVATED MATERIALS IN A PAPER-MAKING PROCESS
    • 在造纸过程中测量和/或控制超紫外线活性材料的装置和方法
    • US20090184257A1
    • 2009-07-23
    • US12017497
    • 2008-01-22
    • Tarja T. ShakespeareJohn F. Shakespeare
    • Tarja T. ShakespeareJohn F. Shakespeare
    • G01J1/58
    • G01J3/36G01J2003/1213G01N21/6456G01N21/86G01N2021/6439G01N2021/6471
    • A method includes illuminating a mixture of materials in a wet-end of a paper process, where the mixture includes an ultraviolet-activated material. The method also includes measuring light from the mixture and determining a property of the ultraviolet-activated material based on the measured light. The method may further include adjusting an operation in the wet-end of the paper process based on the determined property of the ultraviolet-activated material. The determined property could include a quantity of fluorescent material in recycled material used to form stock for a paper machine and/or a quantity of fluorescent material in stock provided to a headbox in the paper process. Adjusting the operation in the wet-end could include adjusting an amount of one or more materials used to form stock provided to the headbox, such as a fluorescent whitening agent, fixative, fluorescent fiber, fluorescent pigment, fluorescent particle, fluorescent highlight, fluorescent planchette, or fluorescent quencher.
    • 一种方法包括在纸张工艺的湿端中照射材料的混合物,其中混合物包括紫外线活化材料。 该方法还包括测量来自混合物的光并基于测量的光确定紫外线活化材料的性质。 该方法还可以包括基于所确定的紫外线活化材料的性质来调整纸张处理的湿端中的操作。 确定的性质可以包括用于在造纸机中形成纸张的再循环材料中的一定量的荧光材料和/或在纸张处理中提供给流浆箱的一定数量的荧光材料。 调整湿端的操作可能包括调整一种或多种用于形成提供给流浆箱的原料的材料的量,例如荧光增白剂,固定剂,荧光纤维,荧光颜料,荧光颗粒,荧光高亮度,荧光平面图 ,或荧光猝灭剂。
    • 9. 发明授权
    • System and method for adjusting an on-line appearance sensor system
    • 用于调整在线外观传感器系统的系统和方法
    • US08401809B2
    • 2013-03-19
    • US12834667
    • 2010-07-12
    • Tarja T. ShakespeareJohn F. Shakespeare
    • Tarja T. ShakespeareJohn F. Shakespeare
    • G01D18/00G06F19/00
    • G01N33/346D21G9/0009G01N21/86
    • A system, apparatus and method are provided for adjusting an on-line appearance sensor system (OnLASS) for color and other appearance characteristic(s) of a web product produced during a production run of a web production system. The OnLASS is calibrated and its setting(s) are sent to a color error minimizer (CEM). The OnLASS measures a first appearance characteristic of the web product during the production run and the on-line measurement is sent to the CEM. After the production run, a second appearance characteristic of the web product is measured with an off-line appearance sensor system (OffLASS) and the off-line measurement is sent to the CEM. The CEM compares the on-line and off-line appearance measurements and adjusts at least one setting based on the comparison. The adjusted setting(s) are sent to the OnLASS.
    • 提供了一种用于调整在线外观传感器系统(OnLASS)的系统,装置和方法,用于在卷筒纸生产系统的生产运行期间产生的卷筒纸产品的颜色和其它外观特征。 OnLASS被校准,其设置被发送到颜色误差最小化器(CEM)。 OnLASS在生产运行期间测量Web产品的第一个外观特征,并将在线测量发送到CEM。 在生产运行后,用离线外观传感器系统(OffLASS)测量网状产品的第二外观特性,并将离线测量发送到CEM。 CEM比较在线和离线外观测量,并根据比较调整至少一个设置。 已调整的设置将发送到OnLASS。
    • 10. 发明申请
    • SYSTEM AND METHOD FOR ADJUSTING AN ON-LINE APPEARANCE SENSOR SYSTEM
    • 用于调整在线外观传感器系统的系统和方法
    • US20120010841A1
    • 2012-01-12
    • US12834667
    • 2010-07-12
    • Tarja T. ShakespeareJohn F. Shakespeare
    • Tarja T. ShakespeareJohn F. Shakespeare
    • G06F19/00
    • G01N33/346D21G9/0009G01N21/86
    • A system, apparatus and method are provided for adjusting an on-line appearance sensor system (OnLASS) for color and other appearance characteristic(s) of a web product produced during a production run of a web production system. The OnLASS is calibrated and its setting(s) are sent to a color error minimizer (CEM). The OnLASS measures a first appearance characteristic of the web product during the production run and the on-line measurement is sent to the CEM. After the production run, a second appearance characteristic of the web product is measured with an off-line appearance sensor system (OffLASS) and the off-line measurement is sent to the CEM. The CEM compares the on-line and off-line appearance measurements and adjusts at least one setting based on the comparison. The adjusted setting(s) are sent to the OnLASS.
    • 提供了一种用于调整在线外观传感器系统(OnLASS)的系统,装置和方法,用于在卷筒纸生产系统的生产运行期间产生的卷筒纸产品的颜色和其它外观特征。 OnLASS被校准,其设置被发送到颜色误差最小化器(CEM)。 OnLASS在生产运行期间测量Web产品的第一个外观特征,并将在线测量发送到CEM。 在生产运行后,用离线外观传感器系统(OffLASS)测量网状产品的第二外观特性,并将离线测量发送到CEM。 CEM比较在线和离线外观测量,并根据比较调整至少一个设置。 已调整的设置将发送到OnLASS。