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These pages provide an access point to data contained in CCFE published journal papers.  By selecting a paper, and then a specific figure or table, you can request the related underlying data if it is available for release.

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Publication Figures

Publication Date:
2019-03-13

First Author:
David Andres

Title:
Application Of The Small Punch Test In Combination With The Master Curve Approach For The Characterisation Of The Ductile To Brittle Transition Region

Paper Identifier:
CP/18/143

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Figure Reference Title Description Number of Figure Data Items Identifier Download Figure Details
Figure 1 Figure 1 SMALL PUNCH SPECIMENS MODIFIED WITH A NOTCH TO ESTIMATE FRACTURE TOUGHNESS [19]: A) CENTRAL NOTCH [16], B) BLIND LONGITUDINAL NOTCH [17], C) LATERAL NOTCH [9, 10], D) CIRCULAR NOTCH [18]. 0 CF/18/158 Download
Figure 2 Figure 2 ADJUSTABLE LOWER DIE [20]. 0 CF/18/159 Download
Table 1 Table 1 CHEMICAL COMPOSITION OF THE STEELS ANALYSED (% WEIGHT) [21-23]. 0 CF/18/160 Download
Figure 2 Table 2 MECHANICAL PROPERTIES OF THE ANALYSED MATERIALS [21-23] 0 CF/18/161 Download
Figure 3 Figure 3 IMAGE OF AN INTERRUPTED TEST AND CORRESPONDENT FINITE ELEMENT SIMULATION SHOWING THE DEFORMATION EXPERIENCED BY THE NOTCH DURING THE TEST [13]. 0 CF/18/162 Download
Figure 4 Figure 4 FORCE-DISPLACEMENT CURVE OF SMALL PUNCH TEST ON A NOTCHED SPECIMEN, ON WHICH THE CRACK INITIATION HAS BEEN IDENTIFIED: A) WHOLE CURVE, B) DETAIL OF THE ABRUPT CHANGE OF THE SLOPE. 0 CF/18/163 Download
Figure 5 Figure 5 ?SP-PUNCH TIP DISPLACEMENT CURVE OBTAINED FOR A 4.4 MM-LENGTH NOTCH BY MEANS OF FINITE ELEMENT SIMULATIONS. 0 CF/18/164 Download
Figure 6 Figure 6 FORCE-DISPLACEMENT CURVES OBTAINED FOR A533B PLATE. 1 CF/18/165 Download
Figure 7 Figure 7 FORCE-DISPLACEMENT CURVES OBTAINED FOR S275JR. 1 CF/18/167 Download
Figure 8 Figure 8 FORCE-DISPLACEMENT CURVES OBTAINED FOR S460M 1 CF/18/169 Download
Figure 9 Figure 9 FORCE-DISPLACEMENT CURVES OBTAINED FOR S690Q 1 CF/18/171 Download
Figure 10 Figure 10 DETAIL OF A RUPTURED SMALL PUNCH SPECIMEN OF S690Q. THE DEFORMATION OF THE NOTCH CAN BE SEEN, WHICH HAS LED TO THE INITIATION OF A CRACK. 0 CF/18/173 Download
Figure 11 Figure 11 A) DETAIL OF A RUPTURED SMALL PUNCH SPECIMEN THAT EXPERIENCED A SUDDEN LOAD DROP AT RUPTURE, B) DETAIL OF A RUPTURED SMALL PUNCH SPECIMEN THAT EXPERIENCED A DISCONUITY ON THE SLOPE AT MAXIMUM FORCE, C) DETAIL OF A RUPTURED SMALL PUNCH SPECIMEN AT ROOM TEMPERATURE. 0 CF/18/174 Download
Table 3 Table 3 RESULTS OBTAINED FROM THE SMALL PUNCH TESTS PERFORMED. 0 CF/18/175 Download
Figure 12 Figure 12 SMALL PUNCH MASTER CURVES OF A533B PLATE FOR 5, 50 AND 95% FAILURE PROBABILITIES. 0 CF/18/176 Download
Figure 13 Figure 13 SMALL PUNCH MASTER CURVES OF S275JR PLATE FOR 5, 50 AND 95% FAILURE PROBABILITIES 0 CF/18/177 Download
Figure 14 Figure 14 SMALL PUNCH MASTER CURVES OF S460M PLATE FOR 5, 50 AND 95% FAILURE PROBABILITIES. 0 CF/18/178 Download
Figure 15 Figure 15 SMALL PUNCH MASTER CURVES OF S690Q PLATE FOR 5, 50 AND 95% FAILURE PROBABILITIES. 0 CF/18/179 Download
Table 4 Table 4 SMALL PUNCH REFERENCE TEMPERATURE VALUES OBTAINED FOR EACH MATERIAL 0 CF/18/180 Download
Figure 16 Figure 16 RELATIONSHIP BETWEEN THE REFERENCE TERMPERATURE OBTAINED BY MEANS OF SMALL PUNCH TESTS AND BY MEANS OF FULL SCALE CONVENTIONAL TESTING TECHNIQUES. 0 CF/18/181 Download

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    Culham Centre for Fusion Energy, Culham Science Centre, Abingdon, Oxfordshire, OX14 3DB, UK. This work is funded by the UK Engineering and Physical Sciences Research Council (EPSRC) and EURATOM

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