NON-CONTACT SIGNAL PROPAGATION PROPERTY EVALUATION OF SYNTHETIC FIBER ROPE
    2.
    发明申请
    NON-CONTACT SIGNAL PROPAGATION PROPERTY EVALUATION OF SYNTHETIC FIBER ROPE 有权
    非接触信号传播合成纤维绳的性能评估

    公开(公告)号:US20150120215A1

    公开(公告)日:2015-04-30

    申请号:US14585507

    申请日:2014-12-30

    Abstract: A non-contact evaluation system for evaluating a synthetic rope. The system includes a first transducer, a second transducer, and a processor. The first transducer is located at a first position and configured to convert a first electrical signal into a wave directed toward the synthetic rope under test. The wave has characteristics such that at least of a portion of the wave passes around a perimeter of the synthetic rope. The second transducer is located at a second position opposite the first position and radially aligned with the first transducer. The second transducer is also configured to receive and convert the portion of the wave into a second electrical signal. The processor is configured to determine a structural health measure of the synthetic rope based on the second electrical signal.

    Abstract translation: 用于评估合成绳索的非接触评估系统。 该系统包括第一换能器,第二换能器和处理器。 第一传感器位于第一位置并且被配置为将第一电信号转换成指向被测合成绳索的波。 波具有这样的特征,使得至少一部分波穿过合成绳的周边。 第二换能器位于与第一位置相对的第二位置并且与第一换能器径向对准。 第二换能器还被配置为接收并将波形的一部分转换成第二电信号。 处理器被配置为基于第二电信号来确定合成绳索的结构健康度量。

    Tow Kit Having Thimble Slider
    3.
    发明申请

    公开(公告)号:US20180105001A1

    公开(公告)日:2018-04-19

    申请号:US15565311

    申请日:2015-12-22

    CPC classification number: B60D1/18

    Abstract: A tow kit is disclosed having a thimble slider engaged with a plurality of tethers. The thimble slider may have a generally C-shaped body with a back portion and opposing end portions. The thimble slider may also have a channel formed within outer surfaces of the back and opposing end portions, and an elongated separator connected to an inner surface of the back portion and extending in a direction generally orthogonal to the back portion to define two portions. A tether can engage the channel to equally distribute weight applied to the two ends of the tether. A sling can engage the inner surface of the back portion. At least one other tether can engage the sling.

    NON-CONTACT SIGNAL PROPAGATION PROPERTY EVALUATION OF SYNTHETIC FIBER ROPE
    4.
    发明申请
    NON-CONTACT SIGNAL PROPAGATION PROPERTY EVALUATION OF SYNTHETIC FIBER ROPE 有权
    非接触信号传播合成纤维绳的性能评估

    公开(公告)号:US20160169841A1

    公开(公告)日:2016-06-16

    申请号:US14978613

    申请日:2015-12-22

    Abstract: A non-contact evaluation system for evaluating a rope. The system including a transducer and a processor. The transducer is spaced apart from the rope. The transducer configured to output an ultrasonic wave in a transverse direction towards a longitudinal location of the rope, such that at least a portion of the ultrasonic wave passes around a perimeter of the rope, receive the portion of the ultrasonic wave, convert the portion of the ultrasonic wave to a signal, and output the signal. The processor configured to receive the signal, and evaluate the rope based on the signal.

    Abstract translation: 用于评估绳索的非接触评估系统。 该系统包括换能器和处理器。 传感器与绳子间隔开。 所述换能器被配置为在横向方向上朝向所述绳索的纵向位置输出超声波,使得所述超声波的至少一部分绕过所述绳索的周边,接收所述超声波的所述部分, 将超声波作为信号,并输出信号。 处理器被配置为接收信号,并且基于该信号评估绳索。

    Non-contact signal propagation property evaluation of synthetic fiber rope
    5.
    发明授权
    Non-contact signal propagation property evaluation of synthetic fiber rope 有权
    合成纤维绳非接触信号传播性能评价

    公开(公告)号:US09255911B2

    公开(公告)日:2016-02-09

    申请号:US14585507

    申请日:2014-12-30

    Abstract: A non-contact evaluation system for evaluating a synthetic rope. The system includes a first transducer, a second transducer, and a processor. The first transducer is located at a first position and configured to convert a first electrical signal into a wave directed toward the synthetic rope under test. The wave has characteristics such that at least of a portion of the wave passes around a perimeter of the synthetic rope. The second transducer is located at a second position opposite the first position and radially aligned with the first transducer. The second transducer is also configured to receive and convert the portion of the wave into a second electrical signal. The processor is configured to determine a structural health measure of the synthetic rope based on the second electrical signal.

    Abstract translation: 用于评估合成绳索的非接触评估系统。 该系统包括第一换能器,第二换能器和处理器。 第一传感器位于第一位置并且被配置为将第一电信号转换成指向被测合成绳索的波。 波具有这样的特征,使得至少一部分波穿过合成绳的周边。 第二换能器位于与第一位置相对的第二位置并且与第一换能器径向对准。 第二换能器还被配置为接收并将波形的一部分转换成第二电信号。 处理器被配置为基于第二电信号来确定合成绳索的结构健康度量。

    Tow kit having thimble slider
    8.
    发明授权

    公开(公告)号:US10308085B2

    公开(公告)日:2019-06-04

    申请号:US15565311

    申请日:2015-12-22

    Abstract: A tow kit is disclosed having a thimble slider engaged with a plurality of tethers. The thimble slider may have a generally C-shaped body with a back portion and opposing end portions. The thimble slider may also have a channel formed within outer surfaces of the back and opposing end portions, and an elongated separator connected to an inner surface of the back portion and extending in a direction generally orthogonal to the back portion to define two portions. A tether can engage the channel to equally distribute weight applied to the two ends of the tether. A sling can engage the inner surface of the back portion. At least one other tether can engage the sling.

    Non-contact signal propagation property evaluation of synthetic fiber rope
    9.
    发明授权
    Non-contact signal propagation property evaluation of synthetic fiber rope 有权
    合成纤维绳非接触信号传播性能评价

    公开(公告)号:US09568452B2

    公开(公告)日:2017-02-14

    申请号:US14978613

    申请日:2015-12-22

    Abstract: A non-contact evaluation system for evaluating a rope. The system including a transducer and a processor. The transducer is spaced apart from the rope. The transducer configured to output an ultrasonic wave in a transverse direction towards a longitudinal location of the rope, such that at least a portion of the ultrasonic wave passes around a perimeter of the rope, receive the portion of the ultrasonic wave, convert the portion of the ultrasonic wave to a signal, and output the signal. The processor configured to receive the signal, and evaluate the rope based on the signal.

    Abstract translation: 用于评估绳索的非接触评估系统。 该系统包括换能器和处理器。 传感器与绳子间隔开。 所述换能器被配置为在横向方向上朝向所述绳索的纵向位置输出超声波,使得所述超声波的至少一部分绕过所述绳索的周边,接收所述超声波的所述部分, 将超声波作为信号,并输出信号。 处理器被配置为接收信号,并且基于该信号评估绳索。

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