Analytical and experimental determination of the specific penetration resistance. Description of the facial and rear weakening free-surface effect

In the present paper, the main force parameter is estimated under the static tests. This parameter is the specific penetration resistance and it is generally believed that the parameter is a constant in case of static penetration. However, a number of experimental and analytical data illustrate var...

Full description

Bibliographic Details
Main Authors: Valery N. Aptukov, Artur R. Khasanov, Andrey F. Merzlyakov
Format: Article
Language:English
Published: Samara State Technical University 2019-02-01
Series:Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
Subjects:
Online Access:http://mi.mathnet.ru/eng/vsgtu1646
id doaj-78a476b618bd4309b487e52e1b8e748a
record_format Article
spelling doaj-78a476b618bd4309b487e52e1b8e748a2020-11-25T00:53:55ZengSamara State Technical UniversityVestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki1991-86152310-70812019-02-01231496810.14498/vsgtu1646Analytical and experimental determination of the specific penetration resistance. Description of the facial and rear weakening free-surface effectValery N. Aptukov0Artur R. Khasanov1Andrey F. Merzlyakov2Perm State National Research University, Perm, 614000, Russian FederationPerm State National Research University, Perm, 614000, Russian FederationPerm State National Research University, Perm, 614000, Russian Federation In the present paper, the main force parameter is estimated under the static tests. This parameter is the specific penetration resistance and it is generally believed that the parameter is a constant in case of static penetration. However, a number of experimental and analytical data illustrate varying the specific penetration resistance according to the current depth of penetration. It is noted that the weakening free-surface effect decreases the specific penetration resistance near the facial or rear edge. Consequently, the relevance of the topic is emphasized by the influence of the facial and rear weakening free-surface effect on the penetration parameters detected in the experimental studies and engineering calculations. The refined approximation of the specific penetration resistance presented in this paper is taking account of the penetration of the sharp indenter into the plate of middle thickness within the framework of the viscous crater formation and the facial and rear weakening free-surface effect. Also this article contains data processing technique. For carrying out the tests a number of experimental samples were made. It is plates of different thicknesses, it must be emphasized that test sample materials are technical plasticine, plumbum and Wood's metal. It should also be noted that for the static tests three cone-nose indenters were made. Indenter sizes: the diameter of the cylindrical part is 7 mm in all cases and the lengths of the conical nose are 3.2 mm, 5.6 mm, and 8.4 mm. The test were carryed out on a testing machine Zwick/Roell Z-250. The key parameters derived from the experiment are the specific penetration resistance of the deep layers, the friction coefficient and the parameters of the weakening free-surface effect. The results obtained in the experiment lead to the approximation of the resistance force from more general parameters. These parameters are the specific penetration resistance of the deep layers and the friction coefficient of a sample, geometric parameters of indenter and plate. An approximation error does not exceed 25 % for the technical plasticine, 16 % for the Wood's metal, and 25 % for the plumbum. These errors are given for “sharp” (the length of the cone-nose is 8.4 mm) and “middle” (the length of the cone-nose is 5.6 mm) indenter because of a problem has been in depth considered in the investigation. This problem is that penetration of the “blunt” indenter is not follow to condition of viscous crater formation. Therefore, different versions should be used to describe the penetration process (for example, plugging mechanism). It is proposed in penetration models for the estimation of the penetration resistance force of sharp indenters into the plate of middle thickness. http://mi.mathnet.ru/eng/vsgtu1646 static penetration testtechnical plasticinewood's metalspecific penetration resistanceweakening free-surface effect
collection DOAJ
language English
format Article
sources DOAJ
author Valery N. Aptukov
Artur R. Khasanov
Andrey F. Merzlyakov
spellingShingle Valery N. Aptukov
Artur R. Khasanov
Andrey F. Merzlyakov
Analytical and experimental determination of the specific penetration resistance. Description of the facial and rear weakening free-surface effect
Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
static penetration test
technical plasticine
wood's metal
specific penetration resistance
weakening free-surface effect
author_facet Valery N. Aptukov
Artur R. Khasanov
Andrey F. Merzlyakov
author_sort Valery N. Aptukov
title Analytical and experimental determination of the specific penetration resistance. Description of the facial and rear weakening free-surface effect
title_short Analytical and experimental determination of the specific penetration resistance. Description of the facial and rear weakening free-surface effect
title_full Analytical and experimental determination of the specific penetration resistance. Description of the facial and rear weakening free-surface effect
title_fullStr Analytical and experimental determination of the specific penetration resistance. Description of the facial and rear weakening free-surface effect
title_full_unstemmed Analytical and experimental determination of the specific penetration resistance. Description of the facial and rear weakening free-surface effect
title_sort analytical and experimental determination of the specific penetration resistance. description of the facial and rear weakening free-surface effect
publisher Samara State Technical University
series Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
issn 1991-8615
2310-7081
publishDate 2019-02-01
description In the present paper, the main force parameter is estimated under the static tests. This parameter is the specific penetration resistance and it is generally believed that the parameter is a constant in case of static penetration. However, a number of experimental and analytical data illustrate varying the specific penetration resistance according to the current depth of penetration. It is noted that the weakening free-surface effect decreases the specific penetration resistance near the facial or rear edge. Consequently, the relevance of the topic is emphasized by the influence of the facial and rear weakening free-surface effect on the penetration parameters detected in the experimental studies and engineering calculations. The refined approximation of the specific penetration resistance presented in this paper is taking account of the penetration of the sharp indenter into the plate of middle thickness within the framework of the viscous crater formation and the facial and rear weakening free-surface effect. Also this article contains data processing technique. For carrying out the tests a number of experimental samples were made. It is plates of different thicknesses, it must be emphasized that test sample materials are technical plasticine, plumbum and Wood's metal. It should also be noted that for the static tests three cone-nose indenters were made. Indenter sizes: the diameter of the cylindrical part is 7 mm in all cases and the lengths of the conical nose are 3.2 mm, 5.6 mm, and 8.4 mm. The test were carryed out on a testing machine Zwick/Roell Z-250. The key parameters derived from the experiment are the specific penetration resistance of the deep layers, the friction coefficient and the parameters of the weakening free-surface effect. The results obtained in the experiment lead to the approximation of the resistance force from more general parameters. These parameters are the specific penetration resistance of the deep layers and the friction coefficient of a sample, geometric parameters of indenter and plate. An approximation error does not exceed 25 % for the technical plasticine, 16 % for the Wood's metal, and 25 % for the plumbum. These errors are given for “sharp” (the length of the cone-nose is 8.4 mm) and “middle” (the length of the cone-nose is 5.6 mm) indenter because of a problem has been in depth considered in the investigation. This problem is that penetration of the “blunt” indenter is not follow to condition of viscous crater formation. Therefore, different versions should be used to describe the penetration process (for example, plugging mechanism). It is proposed in penetration models for the estimation of the penetration resistance force of sharp indenters into the plate of middle thickness.
topic static penetration test
technical plasticine
wood's metal
specific penetration resistance
weakening free-surface effect
url http://mi.mathnet.ru/eng/vsgtu1646
work_keys_str_mv AT valerynaptukov analyticalandexperimentaldeterminationofthespecificpenetrationresistancedescriptionofthefacialandrearweakeningfreesurfaceeffect
AT arturrkhasanov analyticalandexperimentaldeterminationofthespecificpenetrationresistancedescriptionofthefacialandrearweakeningfreesurfaceeffect
AT andreyfmerzlyakov analyticalandexperimentaldeterminationofthespecificpenetrationresistancedescriptionofthefacialandrearweakeningfreesurfaceeffect
_version_ 1725235884306989056