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MANUFACTURING PROCESS OF A POSITIONING CONTROL TOOL VIA 3D-PRINTING TECHNOLOGY

机译:通过3D打印技术制造定位控制工具的过程

摘要

A manufacturing process to form a positioning control tool, such as a gyroscope, by using a three-dimensional (3D) printer printing a polymer material mixed with powdered graphene (12a) components (410) on a piezoelectric substrate (205), the components (410) include: a resonator (411) transducer configured to create a first surface acoustic wave (215); a pair of reflectors (412a, 412b) configured to reflect the first surface acoustic wave (215); a structure (413) which, when subjected to a Coriolis force, creates a second surface acoustic wave (230); a first sensor transducer (414) configured to sense the second surface acoustic wave (230); and a second sensor transducer (415) configured to sense a residual surface acoustic wave from a second region of the surface (210) of the piezoelectric substrate free of the structures that respond to the Coriolis force.
机译:通过使用三维(3D)打印机打印与粉状石墨烯( 12 a )混合的聚合物材料来形成诸如陀螺仪之类的定位控制工具的制造过程)( 410 )在压电基板( 205 )上的组件( 410 )包括:谐振器( 411 )换能器,配置为产生第一表面声波( 215 );一对反射器( 412 a, 412 b ),用于反射第一声表面波( 215 );一种结构( 413 ),当受到科里奥利力时会产生第二声表面波( 230 );第一传感器换能器( 414 ),用于感测第二表面声波( 230 );第二传感器换能器( 415 )配置为从没有响应的结构的压电基板的第二区域( 210 )的第二区域感测残余表面声波到科里奥利部队。

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