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Pile Design and Construction Practice, Fifth edition

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(a)<br />

Settlement � (mm)<br />

0<br />

0<br />

4<br />

8<br />

Ground investigations, contracts <strong>and</strong> testing 531<br />

Settlement/load × 103 Settlement/load × 10<br />

(b)<br />

�/p<br />

4 8 12 16 20 0<br />

0<br />

1 2 3 4 5 6<br />

2.5<br />

2<br />

1.3<br />

2.2<br />

4.2<br />

3<br />

�/p<br />

12<br />

16<br />

Ultimate base resistance<br />

14.3<br />

5 5820<br />

kN<br />

0.0175<br />

14.3<br />

20<br />

(c)<br />

Settlement � (mm)<br />

Settlement � (mm)<br />

Ultimate shaft friction<br />

5<br />

5 51720<br />

kN<br />

0.0029<br />

Total pile resistance<br />

10<br />

5 52940<br />

kN<br />

0.0034<br />

0<br />

0<br />

10<br />

Settlement/load × 10<br />

2 4 6 8 10<br />

3<br />

�/p<br />

4<br />

8<br />

12<br />

16<br />

20<br />

Figure 11.14 Analysis of load/settlement curves from pile loading test (after Chin (11.26) ) (a) End-bearing<br />

pile (b) Friction <strong>and</strong> end-bearing pile (c) Broken pile.<br />

the test pile. The desirable maximum load for repeated application cannot be readily determined<br />

in advance of the load testing programme since the relationship between the ultimate<br />

load for a single application <strong>and</strong> that for repeated application is not known. Ideally a single<br />

pile should be subjected to a CRU test to obtain the ultimate load for a single application.<br />

Then two further piles should be tested; one cycled at an uplift load of, say, 50% of the<br />

single-application ultimate load, <strong>and</strong> the second at 75% of this value. At least 25 load<br />

repetitions should be applied. If the uplift continues to increase at an increasing rate after<br />

each repetition, the cycling should be continued without increasing the load until failure in<br />

uplift occurs. Alternatively, an incremental uplift test can be made with say 10 repetitions of<br />

the load at each increment.<br />

A typical load/time/uplift curve for an ML test is shown in Figure 11.15. The criteria for<br />

evaluating the failure load are similar to those described in Section 11.4.2.<br />

EC7, Clause 7.6.3.2, prescribes a method of deriving the design tensile capacity, R td, of a<br />

single pile from tension tests as described in Section 6.2.2.<br />

A loading rig for an uplift test is shown by Figure 11.16. This utilizes the same components<br />

as the compressive load testing rig shown in Figure 11.8. The methods used for<br />

measuring the jacking force <strong>and</strong> the movement of the pile head are the same as those used<br />

for compressive tests. It is particularly important to space the ground beams or bearers at an<br />

4<br />

6<br />

8<br />

5.0<br />

5.6

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