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    • 2. 发明申请
    • Apparatus and method for manufacturing and inspecting blow-molded plastic containers
    • 用于制造和检查吹塑塑料容器的装置和方法
    • US20080197542A1
    • 2008-08-21
    • US12148657
    • 2008-04-21
    • Craig A. BirckbichlerSudha C. JebaduraiGeorg V. WolfeRonald A. PuvakWilliam E. Schmidt
    • Craig A. BirckbichlerSudha C. JebaduraiGeorg V. WolfeRonald A. PuvakWilliam E. Schmidt
    • G01B13/02
    • B29C49/78B29C49/06B29C49/80G01B11/06G01B11/08G01N21/9081
    • A method and apparatus for manufacturing and inspecting plastic containers. The apparatus may comprise a blow-molder comprising a plurality of molds and spindles for forming a plastic container from a preform. The apparatus may also comprise an inspection device, located in the blow-molder, for inspecting the plastic container after formation by the blow-molder. The inspection device may comprise (i) two or more light energy sources for directing light energy from an exterior of the plastic container toward the plastic container after formation of the plastic container by the blow-molder, and (ii) two or more light energy sensors, each light energy sensor operatively associated with one of the light energy sources, wherein each light energy sensor is for sensing a portion of the light energy that passes through of the plastic container and generating a signal from the sensed portion of the light energy that passes through the plastic container that is related to the light energy absorbed by the plastic container. The apparatus may also comprise a transfer arm in the blow molder for transporting the plastic container along the transport path through the inspection device. The apparatus may also comprise a microprocessor in communication with the inspection device for (i) determining a container attribute of the plastic container based on the signals related to the light energy absorbed by the plastic container; and (ii) determining the mold involved in formation of the plastic container based on at least one signal received by the microprocessor.
    • 一种用于制造和检查塑料容器的方法和装置。 该装置可以包括吹塑机,该吹塑机包括用于从预制件形成塑料容器的多个模具和主轴。 该设备还可以包括位于吹塑机中的检查装置,用于在吹塑机形成之后检查塑料容器。 检查装置可以包括(i)两个或更多个光能源,用于在通过吹塑机形成塑料容器之后将光能从塑料容器的外部引向塑料容器,以及(ii)两个或更多个光能 传感器,每个光能传感器可操作地与光能源之一相关联,其中每个光能传感器用于感测通过塑料容器的一部分光能,并从所感测到的光能部分产生信号, 通过与塑料容器吸收的光能相关的塑料容器。 该装置还可以包括在吹塑机中的传送臂,用于沿着传送路径通过检查装置传送塑料容器。 该装置还可以包括与检查装置通信的微处理器,用于(i)基于与由塑料容器吸收的光能相关的信号来确定塑料容器的容器属性; 和(ii)基于由微处理器接收的至少一个信号确定涉及形成塑料容器的模具。
    • 3. 发明授权
    • Method and apparatus for monitoring wall thickness of blow-molded plastic containers
    • 用于监测吹塑塑料容器壁厚的方法和装置
    • US06863860B1
    • 2005-03-08
    • US10106263
    • 2002-03-26
    • Craig A. BirckbichlerSudha C. JebaduraiGeorg V. WolfeRonald A. PuvakWilliam E. Schmidt
    • Craig A. BirckbichlerSudha C. JebaduraiGeorg V. WolfeRonald A. PuvakWilliam E. Schmidt
    • B29C49/80B29L22/00G01B11/06G01B11/08B29C49/78
    • B29C49/78B29C49/06B29C49/80G01B11/06G01B11/08G01N21/9081
    • A method of inspecting wall thickness of blow-molded plastic containers includes providing a blow-molder having a plurality of molds and a plurality of associated spindles. The containers are inspected by impinging infrared light thereon and detecting the portion of the infrared light that passes through the container and converting the same into corresponding electrical signals which are delivered to a microprocessor. The microprocessor compares the electrical signals with stored information regarding desired wall thickness of the container and emits output thickness information. The microprocessor receives signals from sensors associated with the blow-molder relating to the position of the molds, the identity of the molds and the identity of the spindles in order that the wall thickness information that is determined by inspection can be associated with specific molds and spindles. The wall thickness information may be averaged over a period of time or a number of containers. The information may be visually displayed so as to provide feedback regarding the inspection process. In a preferred embodiment wall thickness measurements are taken at several vertically spaced positions simultaneously. Corresponding apparatus is provided.
    • 吹塑成型塑料容器的壁厚检查方法包括提供具有多个模具和多个相关主轴的吹塑机。 通过在其上照射红外线来检查容器,并检测通过容器的部分红外光,并将其转换成相应的电信号,该信号被传送到微处理器。 微处理器将电信号与存储的关于容器壁厚的信息进行比较并发出输出厚度信息。 微处理器接收与吹塑机有关的传感器信号,涉及模具的位置,模具的身份和主轴的身份,以便通过检查确定的壁厚信息可以与具体的模具相关联, 心轴。 壁厚信息可以在一段时间内或多个容器中取平均值。 可以可视地显示信息,以便提供关于检查过程的反馈。 在优选实施例中,壁厚度测量在多个垂直间隔位置处同时进行。 提供相应的设备。
    • 4. 发明授权
    • Apparatus and method for manufacturing and inspecting blow-molded plastic containers
    • 用于制造和检查吹塑塑料容器的装置和方法
    • US07780898B2
    • 2010-08-24
    • US12148657
    • 2008-04-21
    • Craig Alan BirckbichlerSudha Christy JebaduraiGeorg V. WolfeRonald A. PuvakWilliam E. Schmidt
    • Craig Alan BirckbichlerSudha Christy JebaduraiGeorg V. WolfeRonald A. PuvakWilliam E. Schmidt
    • B29C49/78
    • B29C49/78B29C49/06B29C49/80G01B11/06G01B11/08G01N21/9081
    • A method and apparatus for manufacturing and inspecting plastic containers. The apparatus may comprise a blow-molder comprising a plurality of molds and spindles for forming a plastic container from a preform. The apparatus may also comprise an inspection device, located in the blow-molder, for inspecting the plastic container after formation by the blow-molder. The inspection device may comprise (i) two or more light energy sources for directing light energy from an exterior of the plastic container toward the plastic container after formation of the plastic container by the blow-molder, and (ii) two or more light energy sensors, each light energy sensor operatively associated with one of the light energy sources, wherein each light energy sensor is for sensing a portion of the light energy that passes through of the plastic container and generating a signal from the sensed portion of the light energy that passes through the plastic container that is related to the light energy absorbed by the plastic container. The apparatus may also comprise a transfer arm in the blow molder for transporting the plastic container along the transport path through the inspection device. The apparatus may also comprise a microprocessor in communication with the inspection device for (i) determining a container attribute of the plastic container based on the signals related to the light energy absorbed by the plastic container; and (ii) determining the mold involved in formation of the plastic container based on at least one signal received by the microprocessor.
    • 一种用于制造和检查塑料容器的方法和装置。 该装置可以包括吹塑机,该吹塑机包括用于从预制件形成塑料容器的多个模具和主轴。 该设备还可以包括位于吹塑机中的检查装置,用于在吹塑机形成之后检查塑料容器。 检查装置可以包括(i)两个或更多个光能源,用于在通过吹塑机形成塑料容器之后将光能从塑料容器的外部引向塑料容器,以及(ii)两个或更多个光能 传感器,每个光能传感器可操作地与光能源之一相关联,其中每个光能传感器用于感测通过塑料容器的一部分光能,并从所感测到的光能部分产生信号, 通过与塑料容器吸收的光能相关的塑料容器。 该装置还可以包括在吹塑机中的传送臂,用于沿着传送路径通过检查装置传送塑料容器。 该装置还可以包括与检查装置通信的微处理器,用于(i)基于与由塑料容器吸收的光能相关的信号来确定塑料容器的容器属性; 和(ii)基于由微处理器接收的至少一个信号确定涉及形成塑料容器的模具。
    • 5. 发明授权
    • Method and apparatus for monitoring wall thickness of blow-molded plastic containers
    • 用于监测吹塑塑料容器壁厚的方法和装置
    • US07378047B2
    • 2008-05-27
    • US11041565
    • 2005-01-24
    • Craig Alan BirckbichlerSudha Christy JebaduraiGeorg V. WolfeRonald A. PuvakWilliam E. Schmidt
    • Craig Alan BirckbichlerSudha Christy JebaduraiGeorg V. WolfeRonald A. PuvakWilliam E. Schmidt
    • B29C49/78
    • B29C49/78B29C49/06B29C49/80G01B11/06G01B11/08G01N21/9081
    • A method of inspecting wall thickness of blow-molded plastic containers includes providing a blow-molder having a plurality of molds and a plurality of associated spindles. The containers are inspected by impinging infrared light thereon and detecting the portion of the infrared light that passes through the container and converting the same into corresponding electrical signals which are delivered to a microprocessor. The microprocessor compares the electrical signals with stored information regarding desired wall thickness of the container and emits output thickness information. The microprocessor receives signals from sensors associated with the blow-molder relating to the position of the molds, the identity of the molds and the identity of the spindles in order that the wall thickness information that is determined by inspection can be associated with specific molds and spindles. The wall thickness information may be averaged over a period of time or a number of containers. The information may be visually displayed so as to provide feedback regarding the inspection process. In a preferred embodiment wall thickness measurements are taken at several vertically spaced positions simultaneously. Corresponding apparatus is provided.
    • 吹塑成型塑料容器的壁厚检查方法包括提供具有多个模具和多个相关主轴的吹塑机。 通过在其上照射红外线来检查容器,并检测通过容器的部分红外光,并将其转换成相应的电信号,该信号被传送到微处理器。 微处理器将电信号与存储的关于容器壁厚的信息进行比较并发出输出厚度信息。 微处理器接收与吹塑机有关的传感器信号,涉及模具的位置,模具的身份和主轴的身份,以便通过检查确定的壁厚信息可以与具体的模具相关联, 心轴。 壁厚信息可以在一段时间内或多个容器中取平均值。 可以可视地显示信息,以便提供关于检查过程的反馈。 在优选实施例中,壁厚度测量在多个垂直间隔位置处同时进行。 提供相应的设备。
    • 6. 发明授权
    • Method for manufacturing and inspecting blow-molded plastic containers
    • 吹塑塑料容器的制造和检验方法
    • US07374713B2
    • 2008-05-20
    • US11543438
    • 2006-10-05
    • Craig Alan BirckbichlerSudha Christy JebaduraiGeorg V. WolfeRonald A. PuvakWilliam E. Schmidt
    • Craig Alan BirckbichlerSudha Christy JebaduraiGeorg V. WolfeRonald A. PuvakWilliam E. Schmidt
    • B29C49/78
    • B29C49/78B29C49/06B29C49/80G01B11/06G01B11/08G01N21/9081
    • A method of manufacturing plastic containers. The method may comprise the steps of (1) forming a plastic container from a preform in a blow-molder, where the blow-molder comprises a plurality of molds and spindles; and (2) inspecting the plastic container after formation in the blow-molder. The containers are inspected by impinging infrared light thereon and detecting the portion of the infrared light that passes through the container and converting the same into corresponding electrical signals which are delivered to a microprocessor. The microprocessor receives signals from sensors associated with the blow-molder relating to the position of the molds, the identity of the molds and the identity of the spindles in order that the information that is determined by inspection can be associated with specific molds and spindles. The information may be visually displayed so as to provide feedback regarding the inspection process. In a preferred embodiment wall thickness measurements are taken at several vertically spaced positions simultaneously. Corresponding apparatus is provided.
    • 一种制造塑料容器的方法。 该方法可以包括以下步骤:(1)在吹塑机中从预成型件形成塑料容器,其中吹塑机包括多个模具和心轴; 和(2)在吹塑机中形成后检查塑料容器。 通过在其上照射红外线来检查容器,并检测通过容器的部分红外光,并将其转换成相应的电信号,该信号被传送到微处理器。 微处理器接收与吹塑机有关的传感器信号,涉及模具的位置,模具的身份和主轴的身份,以便通过检查确定的信息可以与特定的模具和主轴相关联。 可以可视地显示信息,以便提供关于检查过程的反馈。 在优选实施例中,壁厚度测量在多个垂直间隔位置处同时进行。 提供相应的设备。