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Drilling device for measuring residual stress through blind hole method

A technology of residual stress and drilling device, which is applied in the direction of boring/drilling, drilling/drilling equipment, parts of boring machine/drilling machine, etc., which can solve drilling difficulties, drilling deviation, and difficulty in controlling the size of pressure and other problems, to achieve the effect of improving the drilling accuracy, intuitively aligning the drilling position, and saving labor and more convenient operation

Active Publication Date: 2016-03-16
CENT SOUTH UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

When the hardness of the material is high, as the drilling depth increases, the resistance to the rotation of the drill bit gradually increases, making drilling more difficult
Usually the counterweight is only suitable for drilling vertically downwards. It is often difficult to control the pressure when directly applying pressure to the drilling rig. The drilling speed is often too slow when the pressure is too small. Human error, labor and time consuming

Method used

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  • Drilling device for measuring residual stress through blind hole method
  • Drilling device for measuring residual stress through blind hole method
  • Drilling device for measuring residual stress through blind hole method

Examples

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Embodiment Construction

[0028] Such as Figure 1-5 As shown, the present invention provides a blind hole method for measuring residual stress drilling device, including an I-shaped bracket, the bracket includes an upper beam 4, a lower beam 5 and a vertical rod 14, the upper beam 4 and the lower beam 5 through steering bolts 13 is connected to both ends of the vertical rod 14, the lower end of the vertical rod 14 is provided with a support seat 1; one end of the lower cross beam 5 is fixedly connected with a guide sleeve 3, when the drilling position needs to be located, the guide sleeve 3 is provided with an alignment device When drilling is required, a drill is provided in the guide sleeve 3, and the drill includes a drill sleeve 7 arranged on the guide sleeve 3. The bottom end of the drill sleeve 7 is provided with a drill bit 8, which penetrates In the guide sleeve 3, a continuous force applying device is provided between the top end of the drill barrel sleeve 7 and the upper cross beam 4. The con...

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PUM

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Abstract

The invention provides a drilling device for measuring residual stress through a blind hole method. The drilling device comprises an I-shaped support. The support comprises an upper cross beam, a lower cross beam and a vertical rod. The upper cross beam and the lower cross beam are connected to the two ends of the vertical rod through reversing bolts. A supporting base is arranged at the lower end of the vertical rod. A guide sleeve is fixedly connected to one end of the lower cross beam. An alignment device or a driller is arranged in the guide sleeve. The driller comprises a drilling cylinder sleeve which is arranged on the guide sleeve. A drill bit is arranged at the bottom end of the drilling cylinder sleeve and penetrates through the guide sleeve. A continuous force application device is arranged between the top end of the drilling cylinder sleeve and the upper cross beam and comprises an electromagnetic pressure block arranged at the top end of the drilling cylinder sleeve and an electromagnetic counter-force block which is arranged at one end of the upper cross beam and matched with the electromagnetic pressure block. The drilling device is simple in structure, convenient to operate and capable of saving time and labor and achieving the effects of improving the drilling precision and increasing the drilling speed, and the problems that it is difficult to guarantee the precision during drilling, and force application is difficult are solved.

Description

Technical field [0001] The invention relates to the technical field of drilling tools, in particular to a drilling device for measuring residual stress by a blind hole method. Background technique [0002] In the mechanical process of welding, cutting, installation, etc., it is easy to cause plastic deformation of the material and cause residual stress in the workpiece. During the service process of the workpiece, the residual stress and the working stress generated by the external load are superimposed on each other, so that the workpiece will undergo stress redistribution and secondary deformation. The residual stress may not only reduce the rigidity and stability of the workpiece, but also seriously affect the fatigue life of the structure And the ability to resist stress corrosion, thereby affecting the normal use performance of the workpiece. Therefore, the residual stress test and impact assessment are particularly important. [0003] Residual stress testing technology star...

Claims

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Application Information

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IPC IPC(8): B23B39/00B23B47/00B23B49/02
CPCB23B39/00B23B47/00B23B49/02
Inventor 卫军汪东明刘晓春董荣珍吴志强陈涛
Owner CENT SOUTH UNIV
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