Modeling of indentation and slip of wedge punch
To determine the load-carrying capacity of the drillpipe slip, it is necessary to calculate the drag force on the surface between the pipe and the slip. To improve such capacity, the grip surface is provided with teeth that can indent into the pipe body. As a result, the friction force on the contac...
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Peter the Great St. Petersburg Polytechnic University
2017-10-01
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doaj-32f16dd7734c470babee3c6a81b8ae962021-03-02T11:18:13ZengPeter the Great St. Petersburg Polytechnic UniversityИнженерно-строительный журнал2071-03052017-10-017467810110.18720/MCE.74.8Modeling of indentation and slip of wedge punch Artem Semenov0Sergey Semenov1Boris Melnikov2https://orcid.org/0000-0002-7889-1996Vadim Tikhonov3Dresden University of TechnologyPeter the Great St. Petersburg Polytechnic UniversityPeter the Great St. Petersburg Polytechnic UniversityWeatherfordTo determine the load-carrying capacity of the drillpipe slip, it is necessary to calculate the drag force on the surface between the pipe and the slip. To improve such capacity, the grip surface is provided with teeth that can indent into the pipe body. As a result, the friction force on the contact surface is supplemented with the drag force generated by plastic shear strain of the pipe body. The paper presents an analytic dependence of the indentation force of an ideal (untruncated) and non-ideal (truncated) wedge punch that models tooth operation on the indentation depth and friction factor on the punch lateral face both for shallow (with prevailing elastic strain of the gripped body) and deep indentation (with prevailing plastic strain). Multiple computational experiments were performed to identify parameters of the proposed formula. Such computations were complemented with determination of the punch drag force dependence on the indentation depth during punch shearing. The developed model was verified by experimental studies of punch indentation and slip as well as indentation and drag force measurements. The obtained results proved the high level of accuracy of the analytical indentation force model. The outcome of drag force determination experiments was further used to calculate the slip loadcarrying capacity.https://engstroy.spbstu.ru/en/article/2017.74.8/modelingexperimentelasticityplasticityslipdrillpipeindentationpunchcontactfinite element method |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Artem Semenov Sergey Semenov Boris Melnikov Vadim Tikhonov |
spellingShingle |
Artem Semenov Sergey Semenov Boris Melnikov Vadim Tikhonov Modeling of indentation and slip of wedge punch Инженерно-строительный журнал modeling experiment elasticity plasticity slip drillpipe indentation punch contact finite element method |
author_facet |
Artem Semenov Sergey Semenov Boris Melnikov Vadim Tikhonov |
author_sort |
Artem Semenov |
title |
Modeling of indentation and slip of wedge punch |
title_short |
Modeling of indentation and slip of wedge punch |
title_full |
Modeling of indentation and slip of wedge punch |
title_fullStr |
Modeling of indentation and slip of wedge punch |
title_full_unstemmed |
Modeling of indentation and slip of wedge punch |
title_sort |
modeling of indentation and slip of wedge punch |
publisher |
Peter the Great St. Petersburg Polytechnic University |
series |
Инженерно-строительный журнал |
issn |
2071-0305 |
publishDate |
2017-10-01 |
description |
To determine the load-carrying capacity of the drillpipe slip, it is necessary to calculate the drag force on the surface between the pipe and the slip. To improve such capacity, the grip surface is provided with teeth that can indent into the pipe body. As a result, the friction force on the contact surface is supplemented with the drag force generated by plastic shear strain of the pipe body. The paper presents an analytic dependence of the indentation force of an ideal (untruncated) and non-ideal (truncated) wedge punch that models tooth operation on the indentation depth and friction factor on the punch lateral face both for shallow (with prevailing elastic strain of the gripped body) and deep indentation (with prevailing plastic strain). Multiple computational experiments were performed to identify parameters of the proposed formula. Such computations were complemented with determination of the punch drag force dependence on the indentation depth during punch shearing. The developed model was verified by experimental studies of punch indentation and slip as well as indentation and drag force measurements. The obtained results proved the high level of accuracy of the analytical indentation force model. The outcome of drag force determination experiments was further used to calculate the slip loadcarrying capacity. |
topic |
modeling experiment elasticity plasticity slip drillpipe indentation punch contact finite element method |
url |
https://engstroy.spbstu.ru/en/article/2017.74.8/ |
work_keys_str_mv |
AT artemsemenov modelingofindentationandslipofwedgepunch AT sergeysemenov modelingofindentationandslipofwedgepunch AT borismelnikov modelingofindentationandslipofwedgepunch AT vadimtikhonov modelingofindentationandslipofwedgepunch |
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