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    • 1. 发明授权
    • Filament spool or doff handling system
    • 灯丝卷轴或多孔处理系统
    • US06250059B1
    • 2001-06-26
    • US09284318
    • 1999-04-26
    • Udo Teich
    • Udo Teich
    • D01H1326
    • D01H9/18B65H67/064B65H2701/31
    • A handling system 1 for filament bobbins 4 or doffs 5 in a spinning mill, which has a spinning area 2 and a storage area 12. The handling system 1 has a transport device 16, a separating device 17 and a transfer station 11. The transport device 6 and the transfer station 11 have multi-column supports 7 for a plurality of doffs 5. The transfer station 11 is arranged between the transport device 6 and the separating device 17 and is located at the edge of or outside the spinning area 2. The separating device 17 is arranged in or at the storage area 12. As a result, the separation of the filament bobbins 4 is performed outside the spinning area 2.
    • 具有纺纱区域2和存放区域12的纺纱厂中的丝线筒4或多孔5的处理系统1。处理系统1具有输送装置16,分离装置17和转运站11.输送装置 装置6和传送站11具有用于多个落纱5的多列支撑7.传送站11布置在传送装置6和分离装置17之间并且位于纺纱区域2的外侧或外侧。 分离装置17布置在存储区域12中或其上。结果,丝线筒管4的分离在纺纱区域2的外部进行。
    • 2. 发明授权
    • Fluid-jet twist-inserting method
    • 流体喷射扭曲插入法
    • US06345491B1
    • 2002-02-12
    • US09549747
    • 2000-04-14
    • Kevin E. MoranKurt Willy NiedererRobert Edward TaylorRalph Samuel JenkinsJeffrey Todd Rhyne
    • Kevin E. MoranKurt Willy NiedererRobert Edward TaylorRalph Samuel JenkinsJeffrey Todd Rhyne
    • D01H1326
    • D02G3/286Y10S57/908
    • An apparatus for inserting twist into a moving strand, including a first body including an orifice extending therethrough for permitting passage of a moving yarn. An air channel extends therethrough and communicates with the orifice. The air channel communicates with the orifice at a tangentially-offset angle to the path of the yarn through the orifice to create a cyclonic air circulation pattern in the orifice to insert a predetermined direction of twist into the yarn as the yarn passes through the orifice. The first body is adapted for being inverted relative to, and placed in overlying registration with, a second like body whereby the air channel of the first body inserts one predetermined direction of twist into the yarn and the air channel of the second body inserts another predetermined direction of twist into the yarn.
    • 一种用于将扭转插入到移动的线中的装置,包括包括延伸穿过其中的孔的第一主体,以允许移动的纱线通过。 空气通道延伸穿过并与孔连通。 空气通道以与纱线通过孔口的路径成切线偏移的角度与孔口连通,以在孔口中产生旋风空气循环图案,以在纱线通过孔口时将预定的扭转方向插入纱线。 第一主体适于相对于第二主体相对并相对于第二主体重叠配合,由此第一主体的空气通道将一个预定的扭转方向插入到纱线中,并且第二主体的空气通道插入另一个预定的 捻入纱线的方向。
    • 3. 发明授权
    • Fiber optic cable marking process and a sensor device use therewith
    • 光纤电缆标记过程和与其一起使用的传感器装置
    • US06293081B1
    • 2001-09-25
    • US09220121
    • 1998-12-23
    • Matthew J. GrulickWarren W. McAlpine
    • Matthew J. GrulickWarren W. McAlpine
    • D01H1326
    • G02B6/449G02B6/4482
    • A mark sensor and methods for detecting a core mark disposed on a fiber optic cable core having a core receiving area for receiving the fiber optic cable core. The mark sensor includes emitter/receiver sensor devices that can be disposed about the core receiving area for observing a portion of the core for detecting the core mark. The mark sensor can include a sensor positioning system for moving the sensors relative to the core receiving area. The sensor positioning system is operative to move the sensors upon insertion of the cable core in the core receiving area. The sensor positioning system can include a linkage to another mark sensor for transmitting sensor motion to the other mark sensor. Alternatively, the mark sensor can include stationary sensors that sweep the core with radiation, for example, a bar code reader. Methods for using the foregoing sensors can result in the direct or offset marking of reverse oscillation of lay areas in a fiber optic cable.
    • 一种标记传感器和用于检测设置在具有用于接收光纤电缆芯的核心接收区域的光纤电缆芯上的芯标记的方法。 标记传感器包括发射器/接收器传感器装置,其可以围绕芯部接收区域设置,用于观察芯部的一部分以检测芯标记。 标记传感器可以包括用于相对于核心接收区域移动传感器的传感器定位系统。 传感器定位系统可操作以在电缆芯插入磁芯接收区域时移动传感器。 传感器定位系统可以包括与另一标记传感器的连接,用于将传感器运动传递到另一个标记传感器。 或者,标记传感器可以包括用辐射扫描核的固定传感器,例如条形码阅读器。 使用上述传感器的方法可导致在光纤电缆中的放置区域的反向振荡的直接或偏移标记。
    • 4. 发明授权
    • Yarn texturing device, yarn texturing method and winding package employing quality indicating function
    • 纱线变形装置,纱线纹理方法和采用质量指示功能的卷绕包装
    • US06725639B2
    • 2004-04-27
    • US10003267
    • 2001-12-06
    • Kazuki IshiiKoichiro Oshiumi
    • Kazuki IshiiKoichiro Oshiumi
    • D01H1326
    • D02G1/02B65H54/346B65H55/00B65H63/006B65H67/063B65H2701/31
    • The object of the present invention is to allow the reliable identification of the quality level of the winding package based on the yarn quality such as the yarn winding tension or the twisting density when manufacturing a winding package. According to the draw texturing machine for winding while traversing the false-twist textured yarn Y unwound from the supply yarn package and forming a winding package 7 of taper end form, a tension sensor 20 for detecting the tension of the yarn Y to be processed into a winding package 7, and a quality level judging means 30 for judging the quality level of the winding package 7 based on the detected tension information, are provided. Moreover, a winding controller 28 is provided with a winding terminating position setting means 28b for coordinating the quality level judging means 32 and the traverse device T so that the straight winding position (b1)˜(b3) at the finishing of the winding process of the winding package 7 is to be determined in the differing axis direction based on the judged result of the quality level judging means 32.
    • 本发明的目的是在制造卷绕包装件时,可以基于纱线质量如纱线卷绕张力或捻合密度来可靠地识别卷绕包装的质量水平。 根据用于在从供给纱线卷装退绕并形成锥形端部卷绕卷装7的假捻变形纱线Y的横过卷绕机构的拉伸变形机,用于检测待加工纱线Y的张力的张力传感器20 绕组包装7以及用于基于检测到的张力信息来判断卷绕包装件7的质量水平的质量等级判定装置30。 此外,绕组控制器28设置有用于协调质量等级判定装置32和横动装置T的卷绕终止位置设定装置28b,使得在卷绕处理完成时的直线卷绕位置(b1)〜(b3) 基于质量等级判断装置32的判断结果,在不同的轴线方向上确定卷绕包装件7。
    • 5. 发明授权
    • Yarn end retrieving device and operating cart mounting the same
    • 纱线结束检索装置和操作车安装相同
    • US06272831B1
    • 2001-08-14
    • US09295420
    • 1999-04-21
    • Akira Okamoto
    • Akira Okamoto
    • D01H1326
    • B65H54/26B65H67/085B65H2701/31
    • Airflows A1, A2 of compressed air are generated along a predetermined guiding surface 9, and directed against the yarn layer surface F of a package, causing the yarn end to be retrieved. A high-speed airflow A1 from the compressed air, and an accompanying airflow A2 which is pulled along with the high-speed airflow A1 lift the yarn end E from the yarn layer surface F. The yarn end E can be guided and retrieved with airflow A1, making use of the Coanda effect along the guiding surface 9. Accordingly, a yarn end can be easily and reliably retrieved using a low-capacity compressor.
    • 压缩空气的气流A1,A2沿着预定的引导面9产生,并且被引导到包装的纱线层表面F,导致纱线端部被取出。 来自压缩空气的高速气流A1和与高速气流A1一起拉动的伴随气流A2将纱线端部E从纱线层表面F提起。纱线端部E可以被气流引导和回收 A1,利用沿着引导面9的柯恩达效应。因此,可以使用低容量压缩机容易且可靠地回收纱线端。
    • 7. 发明授权
    • Spinning machine
    • 纺纱机
    • US06679043B2
    • 2004-01-20
    • US10008611
    • 2001-11-08
    • Christian GriesshammerPeter Anderegg
    • Christian GriesshammerPeter Anderegg
    • D01H1326
    • D01H5/005D01H5/38
    • A spinning machine includes a plurality of spinning stations or places. Each spinning place includes a yarn formation mechanism that is supplied with staple fiber material in the form of a longitudinal object. Each spinning place includes a refining mechanism by way of which the longitudinal object is refined prior to the fiber material being supplied to a yarn formation mechanism. Each refining mechanism is independently drivable and controllable with respect to the other refining mechanisms. At least one sensor is disposed at each of the spinning places to detect at least one measurable property correlated with fiber mass per unit of length. A controlling monitoring unit is configured to receive and process data measured by the sensor. A control monitoring unit is configured with the refining mechanism at the associated spinning place for control of the refining mechanism as a function of the property detected and measured by the sensor independent of the refining mechanisms at other spinning places.
    • 纺纱机包括多个纺纱站或场所。 每个旋转的地方包括一个纱线形成机构,其供应有纵向物体形式的短纤维材料。 每个旋转的地方包括一个精炼机构,通过该机构,在将纤维材料供应到纱线形成机构之前,纵向物体被精炼。 每个精炼机构相对于其他精炼机构独立地可驱动和可控制。 至少一个传感器设置在每个纺丝位置以检测与每单位长度的纤维质量相关的至少一个可测量的性质。 控制监视单元被配置为接收和处理由传感器测量的数据。 控制监控单元配置有在关联的旋转位置处的精炼机构,用于根据由传感器检测和测量的属性的函数来控制精炼机构,而不依赖于其它纺纱处的精炼机构。
    • 9. 发明授权
    • Textile yarn piecing device with an evaluation arrangement for determining parameters of an automatic yarn piecing process
    • 纺织纱线接头装置,具有用于确定自动接头过程参数的评估装置
    • US06339921B1
    • 2002-01-22
    • US09716798
    • 2000-11-20
    • Manfred LassmannHeribert Mertens
    • Manfred LassmannHeribert Mertens
    • D01H1326
    • D01H13/32D01H4/50
    • A piecing device with an evaluation arrangement for determining parameters of an automatic piecing process at a spinning station (1) of an open-end spinning frame, wherein a control device is provided which, initially in a test phase, controls the creation of at least one test piecing without a supplementary delivery of additional fiber and the subsequent removal of the created test piecing. The evaluation device is designed for determining the length of a thinner extent of the test piecing downstream of the test piecing as viewed in the direction of yarn travel, and for the determination from the detected length of the thinner extent an amount of supplementary delivery of additional fiber required for compensating the thinner extent. A reduction of the draft which is effective during the test phase assures an interference-free checking of the test piecing. The optimization phase for piecings is shortened and leads to a more accurate result when determining the supplementary delivery of additional fiber.
    • 一种具有评估装置的接头装置,其用于确定开放式纺纱机的纺纱站(1)处的自动接头处理的参数,其中提供控制装置,其最初在测试阶段中至少控制至少 一个测试接头,没有补充交付额外的纤维,随后删除创建的测试拼接。 评估装置被设计用于确定在纱线行进方向上观察到的在接头测试下游的测试接头的较小程度的长度,并且为了从检测到的长度确定较小程度的附加传送量 补偿较薄程度所需的纤维。 减少在试验阶段有效的吃水条件确保对试验接头进行无干扰检查。 当确定附加光纤的补充传送时,接头的优化阶段会缩短,并导致更准确的结果。