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Hole-drilling method using grating rosette and Moire interferometry 被引量:5

Hole-drilling method using grating rosette and Moire interferometry
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摘要 The hole-drilling method is one of the most wellknown methods for measuring residual stresses. To identify unknown plane stresses in a specimen, a circular hole is first drilled in the infinite plate under plane stress, then the strains resulting from the hole drilling is measured. The strains may be acquired from interpreting the Moire signature around the hole. In crossed grating Moire interferometry, the horizontal and vertical displacement fields (u and v) can be obtained to determinate two strain fields and one shearing strain field. In this paper, by means of Moire interferometry and three directions grating (grating rosette) developed by the authors, three displacement fields (u, v and s) are obtained to acquire three strain fields. As a practical application, the hole-drilling method is adopted to measure the relief strains for aluminum and fiber reinforced composite. It is a step by step method; in each step a single laminate or equivalent depth is drilled to find some relationships between the drilling depth and the residual strains relieved in the fiber reinforced composite materials. The hole-drilling method is one of the most wellknown methods for measuring residual stresses. To identify unknown plane stresses in a specimen, a circular hole is first drilled in the infinite plate under plane stress, then the strains resulting from the hole drilling is measured. The strains may be acquired from interpreting the Moire signature around the hole. In crossed grating Moire interferometry, the horizontal and vertical displacement fields (u and v) can be obtained to determinate two strain fields and one shearing strain field. In this paper, by means of Moire interferometry and three directions grating (grating rosette) developed by the authors, three displacement fields (u, v and s) are obtained to acquire three strain fields. As a practical application, the hole-drilling method is adopted to measure the relief strains for aluminum and fiber reinforced composite. It is a step by step method; in each step a single laminate or equivalent depth is drilled to find some relationships between the drilling depth and the residual strains relieved in the fiber reinforced composite materials.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2009年第3期389-394,共6页 力学学报(英文版)
基金 the National Natural Science Foundation of China (10772117, 10572089)
关键词 Grating rosette Hole-drilling Moire interferometry Residual strain Grating rosette Hole-drilling Moire interferometry Residual strain
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参考文献10

  • 1ASTM. ASTM E837-95: Standard test method for determining residual stresses by the Hole-Drilling Strain-Gage Method. Annual Book of Standards (1998).
  • 2Montay, G., Cherouat, A., Gamier, C., Lu, J.: Determining residual stress in spherical components: a new application of the hole-dril- ling method. J. Test. Eval. 32(1), 1-7 (2004).
  • 3Shankar, K., Xie, H.M., Wei, R.Y., Anand, A., Chai, G.B.: A study on residual stresses in polymer composites using moire interferometry. Adv. Compos. Mater. 13(3/4), 237-254 (2004).
  • 4Cardenas-Garcfa, J.E, Preidikman, S.: Solution of the Moire hole drilling method using a finite-element-method-based approach. Int. J. Solids Struct. (43), 6751-6766 (2006).
  • 5Ya, M., Miao, H., Zhang, X., et al.: Determination of residual stress by use of phase shifting Moir6 interferometry and hole-drilling method. Opt. Lasers Eng. (44), 68-79 (2006).
  • 6Pisarev, V.-S., Bondarenkol M.M., Chemov, A.V., et al.: General approach to residual stresses determination in thin-walled structures by combining the hole drilling method and reflection hologram interferometry. Int. J. Mech. Sci. (47), 1350-1376 (2005).
  • 7Viottia, M.R., Kaufmann, G.H.: Accuracy and sensitivity of a hole drilling and digital speckle pattern interferometry combined technique to measure residual stresses. Opt. Lasers Eng. (41), 297-305 (2004).
  • 8Zhu, W.U., Guillaume, M., Lu, J.: High sensitivity Moire interferometry and incremental hole-drilling method for residual stress measurement. C. R. Acad. Sci. Paris, t. 329, Serie Ⅱ b, 585-593 (2001).
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