Measuring installation for testing adhesion strength and operating life of diamond coated cutter

A diamond coating and adhesion strength technology is applied to the device field in the field of mechanical cutting technology, which can solve the problems of the limitation of the shape of the substrate, inability to adapt, and inability to perform accurate quantitative dynamic detection, etc., and achieves convenient use, wide application range and significant economic benefits. Effect

Inactive Publication Date: 2006-02-01
SHANGHAI JIAO TONG UNIV
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AI Technical Summary

Problems solved by technology

[0004] The purpose of the present invention is to overcome the deficiencies in the prior art, to provide a measuring device for testing the adhesion strength and service life of diamond-coated tools, so that it can overcome the inability of the existing technology to carry out accurate quantitative dynamic detection, the limitation of the shape of the substrate and the inability to To adapt to various complex working conditions and many other deficiencies, the measuring device can not only accurately and quantitatively measure the adhesion strength of the diamond coating dynamically, but also the device can simulate different working conditions, flexibly change the frequency and size of the loading load, and adapt to different frequencies and impact load, so as to measure the actual service life of diamond-coated tools under different working conditions

Method used

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  • Measuring installation for testing adhesion strength and operating life of diamond coated cutter
  • Measuring installation for testing adhesion strength and operating life of diamond coated cutter

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Embodiment Construction

[0016] Such as figure 1 , figure 2 As shown, the present invention includes: a base body 1 , a He-Ne laser interferometry system 2 , a dynamic load loading system 3 , and a data acquisition and computer control system 4 . The dynamic load loading system 3 is connected to the base body 1, and applies dynamic pressure to the liquid in the base body 1 cavity, and the pressure is transmitted to the measured sample film at the speed of sound. The He-Ne laser interferometry system 2 Above, it is used to detect the height change of the sample film after being subjected to dynamic load. The data acquisition and computer control system 4 is connected with the base body 1 and the He-Ne laser interferometry system 2, and is used to collect the change value of the liquid pressure in the base body cavity and the height of the sample film, and obtain the measured film through computer analysis. dynamic binding strength.

[0017] The base body 1 includes: a measuring base 5 , an O-ring 6...

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Abstract

An unit for measuring adhesive intensity of diamond coating layer on tool and its service lifetime is prepared as connecting load system of dynamic charge with base , exerting dynamic pressure on liquid in base cavity and transmitting pressure onto sample film to be measured in sound speed , using He ¿C Ne laser interference measurement system above base to detect height variation of film , connecting said system to data collection device and computer as well as base for obtaining variation value of liquid pressure and film height then obtaining dynamic film adhesive intensity through computer analysis .

Description

technical field [0001] The invention relates to a device used in the technical field of mechanical cutting, in particular to a measuring device for dynamically and quantitatively testing the adhesion strength and service life of a diamond-coated tool. Background technique [0002] Diamond has become an ideal tool material due to its excellent properties such as high hardness, high thermal conductivity, low friction coefficient, low thermal expansion coefficient, and good chemical stability. It has been widely used in the field of diamond-coated cutting tools, but it has not yet Realize large-scale production. One of the main reasons is that there is no uniform standard for evaluating the intrinsic quality (mainly mechanical properties) of diamond coatings. Existing measuring devices include indentation testing, vertical stretching, scraping and peeling measurement, and laser shock quantitative determination devices. Indentation test, vertical tensile and scrape test device...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N19/04G01B11/06
Inventor 向道辉陈明孙方宏马玉平
Owner SHANGHAI JIAO TONG UNIV
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