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    • 5. 发明申请
    • Glass demand scheduling system
    • 玻璃需求调度系统
    • US20070112451A1
    • 2007-05-17
    • US11652747
    • 2007-01-12
    • Byron ClaytonPaul Dorsch
    • Byron ClaytonPaul Dorsch
    • G06F19/00
    • G05B19/41865C03B33/037G05B2219/32252G05B2219/45174G05B2219/49366Y02P40/57Y02P80/40Y02P90/04Y02P90/20
    • A method for optimizing material flow and equipment utilization in the fabrication of insulating glass units in a production operation. The method includes compiling a plurality of orders and converting the plurality of orders into production schedules for operating processes that fabricate the insulating glass units over a prescribed period of time. The method further includes releasing the production schedules to the plurality of processes used to fabricate insulating glass units. The method also includes monitoring production operations data produced as a result of the releasing the production schedules to the plurality of processes used to fabricate the insulating glass units and providing reports used by the monitoring production operations having image readable indicia that are imaged for providing real-time data for tracking material flow to, from, and through the processes used in the fabrication of insulating glass units.
    • 一种用于在生产操作中优化中空玻璃单元制造中的材料流动和设备利用的方法。 该方法包括编译多个订单并将多个订单转换成生产计划,用于在规定的时间段内制造绝缘玻璃单元的操作过程。 该方法还包括将生产计划释放到用于制造绝缘玻璃单元的多个工艺。 该方法还包括监视作为将生产计划释放到用于制造隔热玻璃单元的多个工艺的结果而产生的生产操作数据,并提供具有图像可读标记的监视生产操作所使用的报告, 用于跟踪材料的时间数据流向中间玻璃单元的制造中使用的工艺,以及通过用于制造绝缘玻璃单元的工艺。
    • 7. 发明公开
    • A method for creating an optimal cutting plan for a strip-like material
    • Verfahren zur Erstellung eines optimierten Schnittplansfüreinstreifenförmiges材料
    • EP1956456A1
    • 2008-08-13
    • EP08001148.9
    • 2008-01-23
    • ABB Oy
    • Säynevirta, SimoReinius, RobertMoisio, JuhaErkkilä, Ilkka
    • G05B19/418G05B13/02D21G9/00
    • D21G9/0009G05B19/41875G05B2219/31314G05B2219/32018G05B2219/49366G06Q10/043Y02P80/40Y02P90/20Y02P90/22Y10T29/49771
    • A method for creating a revised cutting plan for a strip-like material for maximizing a quality yield of the process is invented. A cutting plan for a strip-like material is made based on end-product data. The strip-like material is driven at a production speed in a manufacturing machine or in a finishing machine, and strip length data is recorded. A chart of the strip-like material characteristics is generated and stored in a memory. The strip length data is re-measured in a winding process. The recorded strip length data and the chart of the strip-like material characteristics are fixed with a position difference, where the position difference is the difference between the re-measured strip length and the recorded strip length. During a set change between cutting patterns in the winding process the cutting plan for the strip-like material is optimized for maximizing a quality yield of the process based on the end-product data and the fixed chart of the strip-like material characteristics. The revised cutting plan is created from the optimization result.
    • 发明了一种用于创建用于最大化工艺的质量产量的带状材料的修改的切割计划的方法。 根据最终产品数据制作带状材料的切割计划。 带状材料在制造机器或整理机中以生产速度被驱动,并且记录条带长度数据。 生成带状材料特性的图表并将其存储在存储器中。 条带长度数据在卷绕过程中重新测量。 所记录的条带长度数据和带状材料特性的图表被固定为位置差,其中位置差是重新测量的带长度和记录条带长度之间的差。 在卷绕过程中切割图案之间的设定变化期间,针对条状材料的切割计划进行优化,以根据最终产品数据和带状材料特性的固定图来最大化工艺的质量产量。 修改的切割计划是从优化结果创建的。
    • 10. 发明申请
    • System for cutting shapes preset in a continuous stream of sheet material
    • 用于在连续的片材料流中预设的切割形状的系统
    • US20030118229A1
    • 2003-06-26
    • US10315008
    • 2002-12-10
    • Randall G. AndrewsMary M. BourkeBrian D. SawatzkyAndrew Z. ReifBrad JohnstonCedar Mah
    • G06K009/00
    • G05B19/4205B23Q15/013B23Q35/128G05B2219/35162G05B2219/36412G05B2219/37554G05B2219/45044G05B2219/49366G05B2219/49372
    • Method and apparatus enable cutting out shapes (S) preset in moving sheet material (10) by locating coordinates of one or more fiducials (F,F2 . . . ) in the sheet material (10) with a vision system (12). The fiducials (F,F2 . . . ) correspond to a pattern (P) for the preset shape (S). A cutting system (11) superimposes the pattern (P) relative to the located one or more fiducials (F,F2 . . . ) for cutting out the preset shape (S) while the vision system (12) is concurrently locating subsequent one or more fiducials (F,F2 . . . ) in the moving sheet material (10). The concurrent processes of cutting and locating subsequent fiducials (F,F2 . . . ) are repeated substantially continuously. Preferably, using two or more fiducials (F,F2 . . . ), distortion is detected and the pattern (P) can be remapped before cutting for accurate superposition of the pattern (P) and distorted preset shape (S).
    • 方法和装置能够通过用视觉系统(12)将片材(10)中的一个或多个基准(F,F2 ...)的坐标定位在移动的片材(10)中预定的形状(S)。 基准(F,F2 ...)对应于预设形状(S)的图案(P)。 切割系统(11)相对于所定位的一个或多个基准(F,F2 ...)叠加图案(P),用于切割预设形状(S),同时视觉系统(12)同时定位其后的一个或 在移动片材(10)中有更多的基准(F,F2 ...)。 切割和定位后续基准(F,F2 ...)的并发过程基本连续地重复。 优选地,使用两个或更多个基准(F,F2 ...),检测到失真,并且可以在切割之前重新映射图案(P)以精确地叠加图案(P)和扭曲的预设形状(S)。