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An in-situ tension and compression experimental device for x-ray stress test calibration

A technology of stress testing and experimental equipment, applied in measuring equipment, force/torque/power measuring instrument calibration/testing, instruments, etc., can solve problems such as single implementation, small load range, complex structure, etc., to avoid dead angle problems, The effect of small friction and easy loading

Active Publication Date: 2019-09-17
DALIAN UNIV OF TECH +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the prior art, the X-ray diffraction residual stress test accuracy evaluation device is a single compression device or a single tension device, and its disadvantages are: it can only realize a single function, and the load range is small, and the structure is relatively complicated

Method used

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  • An in-situ tension and compression experimental device for x-ray stress test calibration

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Embodiment Construction

[0018] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0019] An in-situ tension and compression experimental device for X-ray stress test calibration, comprising a sample clamping mechanism 1, a load testing mechanism 2, a displacement loading mechanism 3, a slide rail and a bottom plate mechanism 4, the slide rail and bottom plate mechanism 4 includes a bottom plate 42 and a slide The block guide rail mechanism, the slider guide rail mechanism includes a guide rail and two sliders mounted on the guide rail, the guide rail is fixed on the bottom plate, the clamping mechanism 1 includes a left clamp 11 and a right clamp 12, the left clamp 11 and the right clamp 12 are square Block, the top surface of the square block is provided with test sample 13 fixing screws, the left clamp 11 is fixedly installed on the left end of the bottom plate 42, the right clamp 12 is installed on a slider of th...

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Abstract

The invention relates to an in-situ tension and compression test device for X-ray stress test calibration. The in-situ tension and compression test device includes a sample clamping mechanism, a load test mechanism, a displacement transmission mechanism and a slide rail and bottom plate mechanism; the left fixture of the clamping mechanism is fixed on a bottom plate; the right fixture of the clamping mechanism is installed on one sliding block of the slide rail and bottom plate mechanism; the slide rail and bottom plate mechanism is fixed between the left fixture of the bottom plate and a supporting frame; the supporting frame of the displacement transmission mechanism is installed on the bottom plate; a displacement transmission component is installed on the other sliding block of a sliding block guide rail; the left end of a displacement loading threaded rod is installed in the circular groove of the displacement transmission component; the right end of the displacement loading threaded rod is supported on the supporting frame; the load test mechanism is a load sensor; and the center symmetric line of the load sensor is coaxial with the center symmetric line of the displacement loading threaded rod and the center symmetric line of a test sample. The load transfer coaxiality of the in-situ tension and compression test device is good; and an obtained stress value of the sample is accurate, and the sample is in a unidirectional stress state. The in-situ tension and compression test device of the invention has the advantages of simple structure, convenient manufacture, small size, convenient manual control, high numerical value reliability and high load measurement range.

Description

technical field [0001] The invention belongs to the technical field of in-situ tension-compression test devices, in particular to an in-situ tension-compression test device for X-ray stress test calibration. Background technique [0002] X-ray diffraction (XRD) has many advantages such as non-destructive, fast, and accurate. It can selectively, quantitatively, and locally measure the residual stress of materials. It is not only suitable for deformed samples, but also can directly measure mechanical parts. Therefore, this method has been widely used in the detection of the mechanical state (residual stress) of crystalline materials. However, in the test of the residual stress of some specific materials, such as titanium alloy, austenitic stainless steel, aluminum alloy, etc., the diffraction peaks of polycrystalline surfaces often appear, and some diffraction peaks are superimposed on each other. According to the traditional method, for the diffraction peak of any crystal pl...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01L25/00
Inventor 付雪松刘崇远周文龙陈国清邵杰张杰邓瑛
Owner DALIAN UNIV OF TECH
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