Single tooth type gear global error measuring apparatus and method

A technology of overall error and measuring device, which is applied in the field of mechanical transmission, precision testing technology and instruments, can solve the problems of limited measurement range, poor measurement flexibility of measuring instruments, difficulty in guaranteeing accuracy and reliability, etc., so as to improve measurement efficiency and ensure measurement Precision, the effect of overcoming manufacturing difficulties

Active Publication Date: 2008-10-29
BEIJING UNIV OF TECH
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Problems solved by technology

[0005] 1. Measuring workpieces of different specifications must use measuring elements of different specifications, which makes the measurement flexibility of the measuring instrument poor and the cost is high
[0006] 2. It is difficult to manufacture high-precision measuring worms, especially the processing of large-module measuring worms is more difficult
[0007] 3. When measuring the helical gear, the normal meshing tooth profile is measured, which is not consistent with the international customary end face involute tooth profile, which affects its promotion and transmission accuracy
[0008] 4. It is difficult to measure large gears, mainly because it is difficult to drive large gears with a worm, thus limiting its measurement range
[0010] 1. When the measuring gear is made by mechanical processing and electric processing, it is difficult to process the shape due to the complexity, the processing cost is high, and it is not economical
[0011] 2. When chemical processing is used, it is simple and easy to operate, but acid-base solution is required in the production process, and the environment is ignored. Due to manual operation, once mistakes are made, it is difficult to replenish
[0012] 3. For the measured gears of different specifications, separate measuring gears must be made, which wastes a lot of manpower and material resources
This method is easy to manufacture and low in cost, but it is not suitable for the measurement of gears with small meshing backlash. The process of bonding metal sheets is manual, and the accuracy and reliability are difficult to guarantee.
In addition, for the measured gears of different specifications, separate measuring gears must be made, which wastes a lot of manpower and material resources. This situation makes this method very limited in practical applications

Method used

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  • Single tooth type gear global error measuring apparatus and method
  • Single tooth type gear global error measuring apparatus and method
  • Single tooth type gear global error measuring apparatus and method

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Embodiment Construction

[0038] Below in conjunction with accompanying drawing, the present invention will be further described:

[0039] In this embodiment, a single-tooth measuring gear with only one tooth is designed and manufactured, and the gear can be used to complete the measurement of the gear to be tested, realizing the flexible measurement of the overall error of the gear. This embodiment can realize the rolling point scanning measurement of all the teeth of the gear under test through the single-tooth measuring gear, and the angular displacement signal generated by the single-tooth measuring gear and the gear under test during the transmission process is converted into The electrical signal is input to the computer after the pre-processing circuit and data acquisition card, and the four overall error curves, individual geometric deviations, three-dimensional tooth surface topological deviations and contact area shape diagrams of the tested gear are obtained through analysis and calculation a...

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Abstract

The invention relates to a single-tooth type gear integrated error measuring device and a method thereof, and belongs to the precision measuring technology and the technology field of mechanical transmission. The method uses a single-tooth measuring gear as a measuring element to realize the rolling point scanning measurement of all gear teeth of gears of different specifications to be measured. Angular displacement signals generated in the transmission process of the sing-tooth measuring gear and the gears to be measured are converted into electrical signals through a sensor; the signals are input into a computer after passing through a pre-processing circuit and a data acquisition board; four types of integrated error curves, the geometrical deviation of each item, the three-dimensional tooth surface typological deviation and the contact zone aspect graph of the gears to be measured are obtained through analysis and data processing; and the error result and the error curve can be shown and printed. According to the method, one measuring gear completes the measurement of the gears of different specifications to be measured and realizes flexible measurement of the gear integrated error. The single-tooth measuring gear has the advantages of convenient manufacture, low cost, high precision, wide application range, ensured measurement precision and extended measuring range.

Description

technical field [0001] The invention relates to a single-tooth gear overall error measuring device and method, belonging to the technical fields of precision testing technology, instruments and mechanical transmission. Background technique [0002] The overall gear error measurement method was pioneered by my country in the early 1970s. It can extract individual errors and other useful information from comprehensive measurement. Its appearance has solved a difficult problem in the field of gear measurement, that is, on one instrument Quickly obtain all error information of gears. [0003] After more than 30 years of improvement and promotion, the overall gear error measurement method has developed into a motion geometry measurement method for transmission components in my country. The basic idea is to use the measured object as a rigid functional component or a transmission component to mesh with another standard component. Motion, by measuring the meshing motion error to rev...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01M13/02
Inventor 石照耀康焱
Owner BEIJING UNIV OF TECH
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