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    • 2. 发明授权
    • Method and apparatus for detecting skipped stitches for a chainstitch
sewing machine
    • 链式缝纫机跳针检测方法及装置
    • US5233936A
    • 1993-08-10
    • US759410
    • 1991-09-13
    • Stephen L. Bellio
    • Stephen L. Bellio
    • D05B51/00D05B59/02
    • D05B59/02D05B51/00D05D2305/32D05D2305/34
    • Apparatus and method for detecting skipped stitches for chainstitch sewing machines having a looper assembly using a needle thread movement sensor and/or a looper thread movement sensor in combination with a shaft rotation sensor. Needle thread movement is correlated with needle shaft rotation per stitch cycle to detect instances when there is no needle thread movement during a stitch cycle. Similarly, looper thread movement may be correlated with needle shaft rotation per stitch cycle to detect instances when there is no looper thread movement during a stitch cycle. The invention includes methods for detecting needle loop and triangle skips by detecting instances of substantially no needle thread or looper thread movement during certain respective portions of the stitch cycle.
    • 用于检测具有使用针线移动传感器和/或弯针线移动传感器的弯针组件的链式缝纫机的跳过针迹的装置和方法,其结合轴旋转传感器。 针线运动与每针圈循环的针轴旋转相关,以检测在针脚循环期间没有针线运动的情况。 类似地,弯针线移动可以与每针圈循环的针轴旋转相关联,以便在针脚循环期间没有弯针线移动时检测实例。 本发明包括通过检测针迹周期的某些相应部分期间基本上没有针线或弯针线移动的情况来检测针环和三角形跳线的方法。
    • 5. 发明授权
    • Automatic edge sewing system and method
    • 自动边缘缝制系统及方法
    • US5367966A
    • 1994-11-29
    • US255406
    • 1994-06-08
    • Stephen L. BellioJames F. Mueller
    • Stephen L. BellioJames F. Mueller
    • D05B21/00
    • D05B21/00
    • An automatic edge sewing system and method for sewing together the edge of a plurality of parts in which the parts to be sewn are clamped together in a sewing machine having a reciprocating needle; the parts are mounted for rotation about a first rotational axis through the pans and for linear translation along a linear axis between the first rotational axis and the axis of the needle. The pans are steered about a second rotational axis parallel to the needle axis for adjusting the angular position of the linear axis about the needle axis. The parts are fed through the needle axis and the position of the edge of the parts proximate the needle axis is sensed; the steering and the feeding of the parts through the needle axis is controlled in response to the sensing of the edge position while the pans passively float about the first rotational axis and along the linear axis to enable the parts to be sewn accurately, automatically proximate the edges.
    • 一种自动边缘缝制系统和方法,用于将具有往复针的缝纫机将要缝制的多个部件的边缘缝合在一起, 这些部件被安装成围绕第一旋转轴线旋转通过平底板并且沿着第一旋转轴线和针轴线之间的线性轴线进行线性平移。 围绕平行于针轴线的第二旋转轴转向平底锅,用于调节线轴线围绕针轴线的角位置。 部件通过针轴进给,并且检测靠近针轴的部件的边缘的位置; 响应于边缘位置的感测来控制部件通过针轴的转向和进给,而平板盘被动地围绕第一旋转轴线沿着线性轴线浮动,以使得零件能够精确地缝合,自动地靠近 边缘。
    • 6. 发明申请
    • APPARATUS AND METHODS FOR ALIQUOTTING FROZEN SAMPLES
    • 用于冷冻冷冻样品的装置和方法
    • US20140335554A1
    • 2014-11-13
    • US13991103
    • 2011-11-17
    • Dale N. LarsonStephen L. BellioJohn Slusarz
    • Dale N. LarsonStephen L. BellioJohn Slusarz
    • G01N1/08G01N33/487
    • G01N1/08G01N1/286G01N1/42G01N33/487
    • A method of obtaining an aliquot of a frozen sample contained in a container includes moving a coring device into the sample and then withdrawing it to obtain a frozen sample core. The location from which the core is taken is selected to be at a radial position where the concentration of at least one substance of interest in the frozen sample core is representative of the overall concentration of that substance in the sample notwithstanding any concentration gradients that may exist in the frozen sample. Another method includes taking two different frozen sample cores from the same sample from radial positions selected such that the concentration of one or more substances of interest in the combined sample cores is representative of the overall concentration of said at least one substance in the sample notwithstanding any radial concentration gradients. A robotic system is programmed or hardwired to implement the methods.
    • 获得包含在容器中的冷冻样品的等分试样的方法包括将取芯装置移动到样品中,然后取出,以获得冷冻样品芯。 选择芯的位置选择在径向位置,其中冷冻样品核心中至少一种目标物质的浓度代表该样品中该物质的总浓度,尽管可能存在任何浓度梯度 在冷冻样品中。 另一种方法包括从所选择的径向位置取两个来自相同样品的不同冷冻样品核心,使得组合样品核心中一种或多种感兴趣的物质的浓度代表样品中所述至少一种物质的总浓度,尽管任何 径向浓度梯度。 机器人系统被编程或硬连线以实现这些方法。
    • 8. 发明授权
    • Active edge position measuring device
    • 主动边缘位置测量装置
    • US5369284A
    • 1994-11-29
    • US40367
    • 1993-03-30
    • Stephen L. Bellio
    • Stephen L. Bellio
    • G08B13/184G01B11/14
    • G08B13/184
    • A reflex proximity sensor includes a light emitting source which directs a beam by way of a beamsplitter toward a retroreflective surface, which reflects incident light back towards the source. A non-uniform (eccentric) convex lens is positioned in the beam path to produce a beam of light which is dispersed along a sensing axis, so that an eccentric cross-section beam is directed toward the retroreflective surface. The portion of the beam which reflects off the retroreflective surface passes back through the non-uniform convex lens and reflects off of the beamsplitter, and is directed to a photodetector. As an object traverses the beam in the direction of the sensing axis, the leading (or trailing) edge establishes a change in intensity level of the beam portion that reaches the detector. The output of the detector provides a signal representative of the edge position of the object.
    • 反射接近传感器包括发光源,该发光源通过分束器将光束引向朝向回射面的反射面,其将入射光反射回源。 不均匀(偏心)凸透镜位于光束路径中,以产生沿感测轴分散的光束,使得偏心横截面光束朝向后向反射表面。 反射回逆反射表面的光束的部分返回穿过不均匀的凸透镜并从分束器反射,并且被引导到光电检测器。 当物体沿感测轴线的方向穿过光束时,前导(或后退)边缘建立到达检测器的光束部分的强度水平的变化。 检测器的输出提供表示物体的边缘位置的信号。