The design of an instrumented charpy impact tester using the deconvolution method
This study aims to modify the conventional Charpy Impact Tester by making it instrumented or computerized, so as to expand its data gathering and handling capabilities. First, auxiliary devices like the centering jig, the centering tongs, and the calibration jig for the Charpy head will be designed...
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oai:animorepository.dlsu.edu.ph:etd_masteral-84032021-04-23T09:02:21Z The design of an instrumented charpy impact tester using the deconvolution method Chua, Alvin Y. This study aims to modify the conventional Charpy Impact Tester by making it instrumented or computerized, so as to expand its data gathering and handling capabilities. First, auxiliary devices like the centering jig, the centering tongs, and the calibration jig for the Charpy head will be designed and fabricated. Second, electronic data gathering equipments will be installed together with the corresponding software to gather the strain response coming from the strain group. Third, a software will be designed to display the different characteristic graphs. Finally, a laboratory operating procedure will be designed so as to standardize the operation of the Instrumented Charpy Impact tester. 1994-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/etd_masteral/1565 Master's Theses English Animo Repository Dynamic testing Machinery -- Design Convolutions (Mathematics) Fault location (Engineering) Strains and stresses Force and energy Materials -- Dynamic testing Mechanical Engineering |
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Dynamic testing Machinery -- Design Convolutions (Mathematics) Fault location (Engineering) Strains and stresses Force and energy Materials -- Dynamic testing Mechanical Engineering Chua, Alvin Y. The design of an instrumented charpy impact tester using the deconvolution method |
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This study aims to modify the conventional Charpy Impact Tester by making it instrumented or computerized, so as to expand its data gathering and handling capabilities. First, auxiliary devices like the centering jig, the centering tongs, and the calibration jig for the Charpy head will be designed and fabricated. Second, electronic data gathering equipments will be installed together with the corresponding software to gather the strain response coming from the strain group. Third, a software will be designed to display the different characteristic graphs. Finally, a laboratory operating procedure will be designed so as to standardize the operation of the Instrumented Charpy Impact tester. |
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text |
author |
Chua, Alvin Y. |
author_facet |
Chua, Alvin Y. |
author_sort |
Chua, Alvin Y. |
title |
The design of an instrumented charpy impact tester using the deconvolution method |
title_short |
The design of an instrumented charpy impact tester using the deconvolution method |
title_full |
The design of an instrumented charpy impact tester using the deconvolution method |
title_fullStr |
The design of an instrumented charpy impact tester using the deconvolution method |
title_full_unstemmed |
The design of an instrumented charpy impact tester using the deconvolution method |
title_sort |
design of an instrumented charpy impact tester using the deconvolution method |
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Animo Repository |
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1994 |
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https://animorepository.dlsu.edu.ph/etd_masteral/1565 |
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1712574950182748160 |