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Number of results: 5
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Abstract

The paper concerns the analysis of the kinematics of the dislocation process that affects surface points within the area of underground exploitation. The problem discussed in the paper is the estimation of the changes concerning spatial configuration of a body, forced by underground influence, Observations of the real process show that the trajectories indicating the dislocations of the medium points are irregular. The deterministic description of the examined process, as a rule, generates smooth trajectories of point dislocation. Therefore, as is natural, the analytical representation of the process cannot be approximated to measurement results with arbitrary accuracy. The entropy has been assumed as the measure of the randomness of a given process. It has been shown then that the entropy is not constant. Hence the description of the post-mining dislocation process has been presented as a stochastic model. The quantitative results of the description have been put to a statistical estimation.
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Authors and Affiliations

Wiesław Piwowarski
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Abstract

This paper investigates left-dislocated free relatives in Old English. On the theoretical level, it contributes to the ongoing discussion on the syntax of free relatives. It confirms a sharp distinction between wh- free relatives and demonstrative free relatives. The former type favours the Comp analysis, whereas the latter class is amenable to both the Comp and Head analyses. On the empirical level, it provides evidence that the Comp analysis with wh- pronouns is selected mainly on the basis of pied piping/stranding facts, while case marking regulates the choice of an appropriate analysis with demonstrative free relatives with þe. This corpus-based study also offers some quantitative information on the frequent patterns and cases commonly found in them.
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Authors and Affiliations

Artur Bartnik
1

  1. John Paul II Catholic University of Lublin
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Abstract

In this paper, the macroscopic and microscopic deformation caused by sodium penetration in the carbon cathode has been studied during aluminum electrolysis. The distributions of sodium concentration in the carbon cathode has been measured by SEM-EDS. The microstructure change caused by the gradient of the sodium concentration in the carbon cathode has been studied using transmission electron microscopy (TEM). The results indicate that sodium penetration decreases with the increase of the penetration depth. The stresses caused by the gradient of the sodium concentration result in a remarkable change for the microstructure of the carbon cathode. The formation of dislocations resulting in dislocation arrays and the development of kink band networks bring about material damage growth and possibly subsequent weakening of the cathode. These results can provide useful information that is helpful in developing an improved comprehending of the microscopic deformation mechanism of the carbon cathode during aluminum electrolysis.
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Authors and Affiliations

Haitao Liu
1 2 3
ORCID: ORCID
Yunhong Huang
4
ORCID: ORCID
Wei Wang
1 2 3
ORCID: ORCID
Ziyang Zhang
1 2 3
ORCID: ORCID
Hengyao Dang
5
ORCID: ORCID

  1. Henan University of Science and Technology, College of Materials Science and Engineering, Luoyang 471023, China
  2. Collaborative Innovation Center of Nonferrous Metals Henan Province, Luoyang 471023, China
  3. Henan Key Laboratory of Non-ferrous Materials Science & Processing Technology, Luoyang 471023, China
  4. Henan University of Science and Technology, Engineering Training Center, Luoyang 471023, China
  5. Luoyang Ship Material Research Institute, Luoyang 471023, China
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Abstract

The state of the dislocation substructure of meteorite in which the history of phenomena accompanying the meteorite during its passage through the Earth’s atmosphere is recorded remains unused. The main goal of the presented work is a comprehensive analysis of the dislocation structure of the iron meteorite from the Morasko reserve (Poland, Wielkopolska Voivodeship) by TEM methods to determine the conditions and mechanism of its formation. The work is cognitive in the field of phenomena related to the destruction and deformation of the material in extreme conditions: space and terrestrial space. It can also be useful in the research on the creation of the material with specific mechanical properties, as well as a unique reference material for earth experiments with low-temperature deformation, high-speed deformation, recrystallization processes with short thermal pulses and structure relaxation in conditions of very long time periods.

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Authors and Affiliations

W. Osuch
R. Błoniarz
G. Michta
I. Suliga
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Abstract

In this study, an electrochemical method was used to permeate hydrogen through annealed DP590 steel under various pre-strain conditions (0-15%). Stress-strain and internal friction-temperature curves of the dual phase (DP) steel were obtained from slow strain-rate tensile tests and internal friction measurements, respectively. The diffusion of interstitial atoms, formation of Cottrell atmospheres, and embrittlement mechanism of DP steel were investigated under different prestress conditions before and after hydrogen permeation. The results show that the tensile strength of DP steel first decreases and then increases and the elongation sharply decreases with increasing pre-strain. The strength and ductility present similar trends with changes in pre-strain before and after hydrogen charging, however, after hydrogen charging, an obvious increase in tensile strength and decrease in elongation are observed. Furthermore, the γ peak amplitude decreases and the Snoek-Ke-Koster (SKK) peak amplitude increases with increasing internal pre-strain according to the friction-temperature curve. The γ peak and SKK peak exhibit the same trends with increasing pre-strain before and after hydrogen charging and both the γ peak and SKK peak decrease with hydrogen charging. The dislocation density in DP steel increases after hydrogen charging.
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Authors and Affiliations

Qihang Pang
1 2
ORCID: ORCID
Cong Geng
1 2
ORCID: ORCID
Jiaji Wang
2
ORCID: ORCID
Weijuan Li
1 2
ORCID: ORCID
Jing Guo
1 2
ORCID: ORCID
Xiaoming Yu
3
ORCID: ORCID

  1. University of Science and Technology LIAONING, School of Materials and Metallurgy, ANSHAN LIAONING, 114051, China
  2. State Key Laboratory of Metal Material for Marine Equipment and Application, Anshan Liaoning, 114009, China
  3. Shenyang Ligong University, School of Material Science and Engineering, Shenyang Liaoning, 110159, China

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