首页> 外国专利> MODE OF CONTINUOUS CONTROL OF THE LAYERS OF THE FOUR-LAYERED METALFLUORAPLASTIC MATERIAL, POROSITY OF ITS METALLIC FRAME AND CONCENTRATION OF THE COMPONENTS IN THE FOURTH LAYER

MODE OF CONTINUOUS CONTROL OF THE LAYERS OF THE FOUR-LAYERED METALFLUORAPLASTIC MATERIAL, POROSITY OF ITS METALLIC FRAME AND CONCENTRATION OF THE COMPONENTS IN THE FOURTH LAYER

机译:四层金属氟塑料材料层的连续控制模式,金属框架的孔隙率和第四层中的组分浓度

摘要

FIELD: the invention refers to control-measuring technique and may be used for continuous control of the thickness of the layers, thermal physic properties of multi-layer belt materials directly at the place of their manufacturing.;SUBSTANCE: the essence is in influencing on the bimetallic foundation with alternate magnetic field of an inductor with a U-shaped magnetic wire. The voltage is measured on a screen measuring coil which is located under the inductor from the opposite side of the bimetallic foundation. The deviation of the thickness of the layers from the standard is defined according to the changes of voltage on the screen measuring coil and the secondary winding of the inductor relatively to the voltage correspondingly on the screen standard coil and the secondary winding of the standard inductor. The thickness of the third layer is defined as difference between the thickness of the three-layer metallic belt measured with the aid of an inductive micrometer and the thickness of the two-layer metallic foundation. For measuring the porosity of the metallic frame and the thickness of the fourth fluoraplastic layer of the moving metallic fluoraplastic belt material local thermal influence is executed with the source of thermal power focused on the surface of the belt material in the shape of a stripe. The temperature is measured in the center of this stripe and in the point of the surface of the belt material from the back side opposite to the stripe of the thermal influence. The porosity of the metallic frame and the thickness of the fourth layer is defined with usage of values of the power of the heating flow of the source of the thermal energy. The extra temperature of the heated surface is measured in the point located at a definite distance behind the point source of thermal energy along the line of its movement at various values of the power of the point source of thermal energy. The thermal conductivity of the fourth fluoraplastic layer and concentration of its components is defined.;EFFECT: increases productivity of control in technological process of manufacturing, expands functional possibilities and expands the field of application.;3 dwg
机译:技术领域:本发明涉及控制测量技术,并且可以用于直接在其制造位置处连续地控制层的厚度,多层带材料的热物理性质。带有U形磁线的感应器具有交变磁场的双金属基础。在双金属底座另一侧的电感器下方的屏蔽测量线圈上测量电压。层的厚度与标准的偏差是根据屏幕测量线圈和电感器的次级绕组上的电压相对于屏幕标准线圈和标准电感器的次级绕组上的电压的变化来定义的。第三层的厚度定义为借助于感应测微计测量的三层金属带的厚度与两层金属基础的厚度之间的差。为了测量金属框架的孔隙率和移动的金属氟塑料带材料的第四氟塑料层的厚度,执行局部热影响,其中热能源以带状聚焦在带材料的表面上。从该条带的中心和与热影响条带相反的背面的带材料表面的点测量温度。金属框架的孔隙率和第四层的厚度通过使用热能源的加热流的功率的值来定义。被加热表面的额外温度是在位于点热能源后面一定距离处的点处进行测量的,该点沿点热能运动的点以各种点热能功率的值移动。定义了第四氟塑料层的热导率及其成分的浓度。效果:提高了制造工艺过程中控制的生产率,扩展了功能可能性并扩展了应用领域。3dwg

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