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Noncontact bearing ring outside diameter measurement device

A technology for bearing rings and measuring devices, which is applied to measuring devices, optical devices, instruments, etc., can solve problems such as the influence of thin-walled bearing parts, large errors in instrument indication, and scratches on the surface of parts, and achieve convenient and reliable adjustment. The effect of improving measurement accuracy and ensuring surface integrity

Inactive Publication Date: 2017-05-24
HENAN UNIV OF SCI & TECH
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  • Abstract
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Problems solved by technology

[0003] (1) The cemented carbide probe used in bearing special instruments is easy to scratch the surface of the bearing parts during the measurement process. Ordinary bearings are acceptable, but any tiny flaws in high-precision bearings will affect product quality, which is absolutely unacceptable. Allowed
[0004] (2) For some thin-walled bearings, manual measurement on a special instrument, the external force of the hand has a great impact on the measurement results, which is far from meeting the measurement requirements of the bearing accuracy
[0005] (3) The indication error of special instruments is relatively large, which cannot meet the measurement requirements of some precision bearings
[0006] (4) There are many deficiencies in the use of other high-precision measuring instruments: ① contact measurement is mostly a two-point measurement method for determining the diameter, and only one diameter can be measured at a time, which cannot meet the requirements of the bearing inspection standard for parameters such as average diameter and diameter variation , and the time is long and the efficiency is low
②Contact measurement has force measurement, which also affects thin-walled bearing parts
③Contact measurement will cause different degrees of scratches on the surface of the part
④The measurement accuracy of non-contact measurement is low, limited by the measurement principle, the measurement cannot be completed for individual requirements
[0007] In the Chinese invention patent whose authorized announcement number is CN101733680B, a non-contact online measurement method of a large bearing raceway is disclosed. The laser displacement sensor installed on the CNC machine tool is used to realize the non-contact measurement of the bearing raceway, but The measurement device used in this measurement method is only equipped with a single laser displacement sensor, which can neither measure the radius of the inner and outer diameter of the bearing ring, nor can it achieve the diameter measurement of the inner and outer diameter of the bearing ring, and still cannot solve the problem of high precision. The problem of accurate measurement of the inner and outer diameters of bearing rings

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  • Noncontact bearing ring outside diameter measurement device
  • Noncontact bearing ring outside diameter measurement device
  • Noncontact bearing ring outside diameter measurement device

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Embodiment Construction

[0025] Embodiments of the present invention will be further described below in conjunction with the accompanying drawings.

[0026] A specific embodiment of the non-contact bearing ring outer diameter measuring device provided by the present invention, such as Figure 1 to Figure 3 As shown, the measuring device in this embodiment includes a base 20, on which a sensor mounting frame 8 is installed through a sliding table adjustment mechanism, and the sensor mounting frame 8 is provided with two laser displacement sensors distributed radially along the bearing ring. In this embodiment, the spacing distribution direction of the two laser displacement sensors is defined as the left-right direction. The two laser displacement sensors include a first sensor 5 and a second sensor 7. Each laser displacement sensor has a sensor for facing the outer surface of the bearing ring. Measuring heads, the measuring heads of the two laser displacement sensors are arranged facing each other.

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Abstract

The invention relates to a noncontact bearing ring outside diameter measurement device, comprising a sensor mounting rack, wherein two laser displacement sensors distributed at interval in the radial direction of a bearing ring are arranged on the sensor mounting rack, each laser displacement sensor is provided with a measuring head facing the outer surface of the bearing ring, the measuring heads of the two laser displacement sensors are arranged oppositely, and the measurement device further comprises a rotation driving mechanism for realizing relative rotation between the bearing ring to be measured and the two laser displacement sensors. By adopting the noncontact laser displacement sensors for measuring, parts to be measured can be effectively prevented from being scratched, and the surface integrity of the parts is ensured. Relative rotation between the bearing ring and the two laser displacement sensors is realized by using the rotation driving mechanism, and the outside diameter and outside diameter changes of the bearing ring at different angles can be measured, so that the measurement precision is effectively improved.

Description

technical field [0001] The invention relates to a non-contact bearing ring outer diameter measuring device. Background technique [0002] Bearing is a kind of high-precision mechanical parts. Its size and geometry are the main factors of bearing accuracy level. Measurement is a necessary means to judge size and geometry. At present, in the bearing processing process and its finished product measurement, most of the bearing special instruments are used to realize the measurement. Bearing-specific instruments have the advantages of simple operation, easy learning, low price, durability, and high measurement efficiency, but they also have certain limitations: [0003] (1) The cemented carbide probe used in bearing special instruments is easy to scratch the surface of the bearing parts during the measurement process. Ordinary bearings are acceptable, but any tiny flaws in high-precision bearings will affect product quality, which is absolutely unacceptable. Allowed. [0004] ...

Claims

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Application Information

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IPC IPC(8): G01B11/08
CPCG01B11/08
Inventor 薛玉君马伟马喜强余永健张正李济顺司东宏李伦隋新杨芳刘春阳韩红彪
Owner HENAN UNIV OF SCI & TECH
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