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Device for controlling the synchronization of speed conditions in complex zones of deformation (drawing) of fibrous materials

机译:用于控制纤维材料变形(拉伸)复杂区域中的速度条件同步的装置

摘要

The utility model relates to the field of liquid and thermomechanical processing of fibrous materials in multi-zone electrical complexes, where it undergoes various types of deformations, which requires a control system to ensure accuracy, speed and synchronization of speed modes of nodes and mechanisms. The task is to develop an optimal energy-saving device for controlling synchronization of speed modes in complex zones of deformation (drawing) of fibrous materials of technological textile equipment The technical result is the optimal control of the deformation properties of the processed fibrous material in the liquid and thermomechanical zones of controlled electrotechnical complexes of technological equipment. The technical result is achieved by the fact that the device for controlling the synchronization of speed conditions in complex zones of deformation (drawing) of fibrous materials contains an electric drive of the first drawing zone; electric drive of squeezing shafts; electric drive of drying drums and a second pulling drum ala; electric drive of the third pulling shaft; electric drive of the winding device. The developed device plays a significant role in ensuring the efficiency of electrical systems of technological equipment having complex zones of deformation of fibrous materials. Providing synchronization of speed conditions in the deformation zones allows you to control the tension and drawing of fibrous material, affecting the quality produced products. To comply with all technological requirements, it is necessary to reasonably select the optimal technological parameters that determine the speed conditions of the transporting and winding mechanisms of technological equipment. The task of managing the deformation zones using high-precision energy-saving DC and AC electric drives with microprocessor control is posed and solved. The use of an adjustable electric drive will allow the processing of fibrous material with a given tension, which ensures um decrease hoods, reduce shrinkage, and after the liquid processing reduces deformation. By controlling the tension, unwanted permanent deformation of the fibrous material can be completely eliminated. 2 ill., 1 tab.
机译:本实用新型涉及多区域电复合物中纤维材料的液体和热机械加工领域,在其中它经历各种类型的变形,这需要控制系统来确保节点和机构的速度模式的准确性,速度和同步性。任务是开发一种最佳的节能设备,以控制工业纺织设备纤维材料变形(拉伸)复杂区域中速度模式的同步。技术成果是对加工后的纤维材料的变形特性进行最佳控制。技术设备的受控电工复合体的液体和热机械区。该技术结果通过以下事实来实现,即,用于控制纤维材料的变形(拉伸)的复杂区域中的速度条件的同步的装置包括第一拉伸区域的电驱动器;挤压轴的电动驱动;干燥鼓和第二个拉鼓ala的电驱动;第三牵引轴的电驱动;绕组装置的电驱动。所开发的设备在确保具有复杂纤维变形区域的技术设备的电气系统的效率方面起着重要作用。在变形区域中提供速度条件的同步,可以控制纤维材料的张力和拉伸,从而影响生产的产品的质量。为了满足所有技术要求,有必要合理选择确定工艺设备输送和卷绕机构的速度条件的最佳工艺参数。提出并解决了使用带有微处理器控制的高精度节能直流和交流电驱动器管理变形区的任务。使用可调节的电驱动器将允许以给定的张力处理纤维材料,这可确保减少烟罩,减少收缩,以及在液体处理后减少变形。通过控制张力,可以完全消除纤维材料的不希望的永久变形。 2病。1个标签。

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