Effect of Annealing Process on the Performance of Pressure of the φ3.5mm×8.75mm Cylindrical Copper Cylinder

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Abstract:

By using different annealing processes to anneal the pressure-measuring cylindrical copper cylinder, playing some static experiments on different copper cylinders, the difference of pressure measuring performance of copper cylinder was analyzed. Results show that, by using current annealing processes all can achieve the purpose of full softening the material of the copper cylinder and the deformation of copper is not significantly affected by the different temperatures. Some copper cylinders which use short holding time have poor linear sensitivity, but their measurement deviation is better than those which use longer holding time. So, in the actual production of copper, we should use shorter annealing time to improve their measuring accuracy.

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183-188

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February 2017

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© 2017 Trans Tech Publications Ltd. All Rights Reserved

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[1] R. T. Eckenrode, H. A. Klrshner. Measurement of Pressure Transients. Rev. Sci. Inst. 25(1) (1954) 33-40.

Google Scholar

[2] D. R. Kong, C. G. Di, Q. S. Fan, Plastic Pressure-measuring Technology, Beijing: Arms Industry Publishment. 2006, pp.1-11.

Google Scholar

[3] L. X. Yang. Study on the Development of Plastic Pressure Measurement of Gun Barrel in China. No. 304 Institute of Aviation Industry Corporation of China. Transactions of 2013 Mechanical Metrology and Measurement Technology Conference. Nanping: Changcheng Institute of Metrology & Measurement, 2013, pp.1-4.

Google Scholar

[4] D. Warken, E. Meincekd. Copper Crushers: Dynamic Calibration in the Laboratory. 10th International Symposium on Ballistics. (1987).

Google Scholar

[5] J. J. Ritter. Characterizing 5. 56-mm Cartridge Performance with Novel Measurement Techniques. Int. J. Energ. Mater. Chem. Propul. 12(4) (2013) 361-370.

DOI: 10.1615/intjenergeticmaterialschemprop.2013005291

Google Scholar

[6] L. Yan. The effect of deformation and heat treatment on microstructure and properties of copper and copper alloy. Zhenjiang: Jiangsu University of Science and Technology, (2012).

Google Scholar

[7] Y. D. Zhang, et al. Influence of grain refinement on mechanical properties of AZ31 magnesium alloy. Light Alloy Fabricat. Tech. 40(7) (2012) 13-17.

Google Scholar

[8] S. J. Liu. Study on Coherence and Static-dynamic Discrepancy of Pressure-Measuring Cylinders. Nanjing: Nanjing University of Science and Technology, (2008).

Google Scholar