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    • 1. 发明授权
    • Process of making a yarn
    • 制作纱线的工艺
    • US06582634B2
    • 2003-06-24
    • US09863548
    • 2001-05-22
    • Ian RobertsDavid McKenzie Hill
    • Ian RobertsDavid McKenzie Hill
    • A61C1504
    • A61C15/041D01D5/16D01F1/04D01F1/06D01F1/10D01F6/04D01F6/06D01F6/30D01F6/46D01F6/60D02J1/22Y10T428/298
    • A method of converting a plastics material into a yarn, in which the plastics material includes one or more polymers selected from the group consisting of nylon, polyesters, polyethylene, polyvinyl chloride, polyphenylene sulphide, polystyrene. The method includes heating the material to melt it, pumping the melted material through an extruder to form an extruded filament, and cooling the extruded filament. The cooled filament is passed through a first draw roller assembly while elevating the temperature of the filament. The filament is then heated in a heating zone as it exits the first draw roller assembly and, thereafter, the filament is passed through a second draw roller assembly operating at a different linear speed to the first draw roller assembly. The filament is spooled after exiting the second draw roller assembly.
    • 一种将塑料材料转化成纱线的方法,其中塑料材料包括一种或多种选自尼龙,聚酯,聚乙烯,聚氯乙烯,聚苯硫醚,聚苯乙烯的聚合物。 该方法包括加热材料以使其熔化,将熔融的材料泵送通过挤出机以形成挤出的长丝,并冷却挤出的长丝。 冷却的灯丝通过第一牵引辊组件,同时升高灯丝的温度。 然后当灯丝离开第一牵引辊组件时,加热区域中的灯丝被加热,然后使细丝穿过以不同线速度操作到第一牵引辊组件的第二牵引辊组件。 在离开第二牵引辊组件之后卷绕丝线。
    • 4. 发明授权
    • Process of making a yarn
    • 制作纱线的工艺
    • US06303063B1
    • 2001-10-16
    • US09330491
    • 1999-06-11
    • Ian RobertsDavid MacKenzie Hill
    • Ian RobertsDavid MacKenzie Hill
    • A61C1504
    • A61C15/041D01D5/16D01F6/04D01F6/06D01F6/30D01F6/46
    • A method of converting a plastics material into a yarn includes heating the material to melt it and pumping the melted material through an extrusion die (114) to form an extruded filament (116). The extruded filament is cooled and passed through a first draw roller assembly (122) while elevating the temperature of the filament. The filament (116) is heated in a heating zone (126) as it exits the first draw roller assembly. Thereafter the filament is passed through a second draw roller assembly (134) operating at a different linear speed to the first draw roller assembly (122). The filament (116) is spooled after exiting the second draw roller assembly (134).
    • 将塑料材料转化成纱线的方法包括加热材料以使其熔化并将熔化的材料泵送通过挤出模具(114)以形成挤出的丝线(116)。 挤出的长丝被冷却并且通过第一牵引辊组件(122),同时升高灯丝的温度。 当灯丝116离开第一牵引辊组件时,加热区126被加热。 此后,灯丝穿过以不同的线速度操作到第一牵引辊组件(122)的第二牵引辊组件(134)。 在离开第二牵引辊组件(134)之后卷绕丝(116)。
    • 6. 发明授权
    • Apparatus and method for producing barrel staves
    • 用于生产桶形条的装置和方法
    • US08720503B2
    • 2014-05-13
    • US12301236
    • 2007-05-17
    • Ian RobertsJohn WhitingBreck WatermanAlan ConigraveGraham Peacock
    • Ian RobertsJohn WhitingBreck WatermanAlan ConigraveGraham Peacock
    • B27H3/02
    • B27H3/02
    • The present invention therefore provides an improved apparatus and integrated method for producing barrel staves. The apparatus measures the profile of unfinished stave workpieces and based on the width and shape of the stave, as well as other parameters such as the type of barrel that is required, the edges of the stave are trimmed accordingly. This ensures fewer rejected staves, less waste in that the width of the unfinished stave is continuously measured across its entire length with minimum depth of cut required, and most importantly, barrel staves having extremely accurate jointed edges ensuring superior finished barrels have an internal surface that is free from undesirable spacing between the staves, utilizing less labor than hitherto known apparatus.
    • 因此,本发明提供了一种用于生产桶形条的改进的装置和集成方法。 该装置测量未完成的梯形工件的轮廓,并且基于台阶的宽度和形状以及其它参数,例如所需的筒的类型,相应地修剪木板的边缘。 这确保了更少的被排除的板条,更少的浪费,因为未完成的板条的宽度连续地测量其整个长度,并且需要最小的切割深度,最重要的是,具有非常精确的接合边缘的筒形条具有确保优良成品桶的内表面, 在这些板条之间没有不希望的间隔,比迄今为止已知的装置少得多的劳动。
    • 7. 发明申请
    • APPARATUS AND METHOD FOR PRODUCING BARREL STAVES
    • 制造棒球杆的装置和方法
    • US20120186701A1
    • 2012-07-26
    • US12301236
    • 2007-05-17
    • Ian RobertsJohn WhitingBreck WatermanAlan ConigraveGraham Peacock
    • Ian RobertsJohn WhitingBreck WatermanAlan ConigraveGraham Peacock
    • B27H3/02
    • B27H3/02
    • The present invention therefore provides an improved apparatus and integrated method for producing barrel staves. The apparatus measures the profile of unfinished stave workpieces and based on the width and shape of the stave, as well as other parameters such as the type of barrel that is required, the edges of the stave are trimmed accordingly. This ensures fewer rejected staves, less waste in that the width of the unfinished stave is continuously measured across its entire length with minimum depth of cut required, and most importantly, barrel staves having extremely accurate jointed edges ensuring superior finished barrels have an internal surface that is free from undesirable spacing between the staves, utilising less labour than hitherto known apparatus.
    • 因此,本发明提供了一种用于生产桶形条的改进的装置和集成方法。 该装置测量未完成的梯形工件的轮廓,并且基于台阶的宽度和形状以及其它参数,例如所需的筒的类型,相应地修剪木板的边缘。 这确保了更少的被排除的板条,更少的浪费,因为未完成的板条的宽度连续地测量其整个长度,并且需要最小的切割深度,最重要的是,具有非常精确的接合边缘的筒形条具有确保优良成品桶的内表面, 在这些板条之间没有不希望的间隔,比迄今为止已知的装置少得多的劳动。
    • 9. 发明申请
    • Method and apparatus for detecting surveillance devices
    • 检测监控装置的方法和装置
    • US20060144170A1
    • 2006-07-06
    • US10532154
    • 2003-10-09
    • Andrew StephenIan RobertsIan PowellSteven Holmes
    • Andrew StephenIan RobertsIan PowellSteven Holmes
    • G01N19/00
    • G01V3/12
    • An integrated sweep kit provides for the detection and location of covert electronic eavesdropping devices of both the radiating type (ie. transmitting electromagnetic energy) and the non-radiating type (ie. not transmitting electromagnetic energy). The kit includes at least one non-radiating device sensor for actively transmitting a detection signal, which detection signal is adapted to trigger a response from a normally non-radiating device; and at least one radiating device sensor for passively receiving a signal generated by a radiating device. A synchronization means is used for consecutively activating operation of the non-radiating device sensor and the radiating device sensor during sequential time slots so that the sensors do not interfere with one another.
    • 集成扫描套件提供了辐射型(即传输电磁能量)和非辐射型(即不传输电磁能)的隐蔽电子窃听设备的检测和定位。 该套件包括用于主动发送检测信号的至少一个非辐射装置传感器,该检测信号适于触发来自正常非辐射装置的响应; 以及用于被动地接收由辐射装置产生的信号的至少一个辐射装置传感器。 同步装置用于在连续时隙期间连续激活非辐射装置传感器和辐射装置传感器的操作,使得传感器彼此不会相互干扰。