Hydrodynamic test measurement bridge with high control precision

A hydrodynamic and high-precision technology, which is used in fluid dynamics tests, measuring devices, and testing of machine/structural components. It can reduce the possibility of damage and false triggering, improve safety and reliability, and have a long service life.

Active Publication Date: 2015-04-01
CHINA SPECIAL TYPE FLIER RES INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] 2. Low lifting precision and low repeatability
[0006] Since the existing measuring bridge adopts the lifting form of the trapezoidal screw and the trapezoidal nut, considering the processing error and the gap between the trapezoidal screw and the trapezoidal nut, the lifting accuracy and repeatability of the lifting system are low
[0007] 3. The limit switch is installed externally, which is easy to be damaged and mistriggered
[0008] The limit switch of the existing measurement bridge is installed on the bridge connector. During the installation process of the test piece, the tester is easy to touch the limit switch, resulting in damage to the limit switch.
[0009] 4. Difficulty in post-maintenance
[0010] Due to the large number of lifting system components in the existing measuring bridge design, the workload in the disassembly and installation process in the later stage is very large, and the difficulty of later maintenance is increased due to the high requirements for installation accuracy

Method used

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  • Hydrodynamic test measurement bridge with high control precision
  • Hydrodynamic test measurement bridge with high control precision

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Embodiment Construction

[0026] Such as figure 1 , 2 As shown, the present invention consists of an AC servo motor 1, a planetary reducer 2, a servo electric cylinder 3, an electric cylinder fixing seat 4, a lifting seat 5, a beam connecting plate 6, a linear slider 7, a linear slide rail 8, and a bridge connector 9 , connecting seat 10, central bridge 11, instrument fixed track 12 and length compensation inclined block 13. The beam connecting plate 6 is connected with the beam of the test trailer through bolts and nuts to become the fixing part of the whole set of test and measurement bridge. AC servo motor 1, The planetary reducer 2 and the servo electric cylinder 3 are fixed on the crossbeam connecting plate 6 through the electric cylinder fixing seat 4, the power output shaft of the AC servo motor 1 is connected to the servo electric cylinder 3 through the planetary reducer 2, and the crossbeam connecting plate 6 The fixed linear slider 7 is slidingly connected to the fixed linear slide rail 8 on...

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Abstract

A hydrodynamic test measurement bridge with high control precision comprises an alternating-current servo motor (1), a planet reducer (2), a servo electric cylinder (3), an electric cylinder holder (4), a lift seat (5), a beam connecting plate (6), a linear slider (7), a linear slide (8), a bridge connector (9), a connecting block (10), a central bridge (11), an instrument holding rail (12) and a length compensation wedge (13). The hydrodynamic test measurement bridge with high control precision has the advantages that a lifting system is small in size and simple to mount and demount, operation is flexible, control precision is high, repeated accuracy is high, a limit switch is integrated with the servo electric cylinder, reliability is increased, and the hydrodynamic test measurement bridge with high control precision is long in service life and simple to operate and maintain.

Description

technical field [0001] The invention relates to the field of hydrodynamic tests of ships, seaplanes, etc., in particular to a high-precision control hydrodynamic test measuring bridge. Background technique [0002] At present, in order to further improve the installation, use efficiency and automation of hydrodynamic tests, domestic hydrodynamic laboratories have successively adopted automatic lifting test measuring bridges to replace the original fixed measuring bridges. The method is to use four motors (two AC servo motors on each side of the central bridge) to drive the reducer to decelerate, drive the trapezoidal screw to rotate, and achieve the movement of the central bridge fixedly connected with the trapezoidal nut. Through use and later maintenance, it is found that there are the following deficiencies , mainly manifested in: [0003] 1. High installation accuracy requirements [0004] The lifting method of the existing measuring bridge is driven by two motors at t...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01M10/00
Inventor 何超吴彬周奇刘晓峰张科
Owner CHINA SPECIAL TYPE FLIER RES INST
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