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THERMOELASTODYNAMIC INSTABILITY OF CONTACT PROBLEM SOLUTION FOR COATING CONSIDERING FRICTIONAL HEAT GENERATION
A one-dimensional thermoelastic contact problem on the vertical insertion of a rigid half-plane moving horizontally at a constant speed over the elastic coating (strip) while the bottom side of the latter rigidly resting on the non-deforming foundation is considered. On the foundation surface, the t...
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Published in: | Advanced engineering research (Rostov-na-Donu, Russia) Russia), 2014-12, Vol.14 (4), p.17-29 |
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container_title | Advanced engineering research (Rostov-na-Donu, Russia) |
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creator | V. B. Zelentsov B. I. Mitrin S. S. Volkov A. S. Vasilyev |
description | A one-dimensional thermoelastic contact problem on the vertical insertion of a rigid half-plane moving horizontally at a constant speed over the elastic coating (strip) while the bottom side of the latter rigidly resting on the non-deforming foundation is considered. On the foundation surface, the temperature is kept constant. A heat flow generated by the frictional contact is directed to the coating. The problem solution is obtained using the Laplace integral transform and is represented in the form of contour integrals. The location of the solution integrand poles is studied at various task options. Temperature, displacement, and stress distributions over the coating depth are derived in the form of the infinite series over eigenfunctions. It is shown that the thermoelastodynamic instability of the obtained solutions is present across the whole time interval and at any velocity of the half-plane sliding over the coating surface. |
doi_str_mv | 10.12737/6910 |
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Temperature, displacement, and stress distributions over the coating depth are derived in the form of the infinite series over eigenfunctions. It is shown that the thermoelastodynamic instability of the obtained solutions is present across the whole time interval and at any velocity of the half-plane sliding over the coating surface.</description><subject>coating</subject><subject>coupled thermoelasticity problem</subject><subject>frictional contact</subject><subject>thermoelastodynamic instability</subject><issn>2687-1653</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2014</creationdate><recordtype>article</recordtype><sourceid>DOA</sourceid><recordid>eNotjM1OwzAAgyMkJKaxd8gLFPLXpDtmXbpFShvUhsNOVZKmaNNgqOPC27MCB8vWZ8sArDB6wkRQ8czXGN2BBeGFyDDP6QNYXa8nhBARghNKF-DD7VVbW2Vk5-z20Mhal1A3nZMbbbQ7QFvB0jZOlg6-tHZjVA07a16dtg2sbHsrpdPNbh51eqvaOVetLueBNHCvpIM71ahWzuQR3I_-fE2rf18CVylX7jNjd7qUJouYU5SlNCIf6cCFiCx5FHDwOcNxTGRAjAx-zWMIUTDvi0B8kTNK0YBGNrBEY6JLoP9uh4s_9Z_T8d1P3_3FH_tfcJneej99HeM59QUhOWEF4twnFkMKJGc3BSYKFkYS6Q8hoFwA</recordid><startdate>20141230</startdate><enddate>20141230</enddate><creator>V. B. 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Mitrin</creatorcontrib><creatorcontrib>S. S. Volkov</creatorcontrib><creatorcontrib>A. S. Vasilyev</creatorcontrib><collection>Directory of Open Access Journals</collection><jtitle>Advanced engineering research (Rostov-na-Donu, Russia)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>V. B. Zelentsov</au><au>B. I. Mitrin</au><au>S. S. Volkov</au><au>A. S. 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The location of the solution integrand poles is studied at various task options. Temperature, displacement, and stress distributions over the coating depth are derived in the form of the infinite series over eigenfunctions. It is shown that the thermoelastodynamic instability of the obtained solutions is present across the whole time interval and at any velocity of the half-plane sliding over the coating surface.</abstract><pub>Don State Technical University</pub><doi>10.12737/6910</doi><tpages>13</tpages><oa>free_for_read</oa></addata></record> |
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source | Directory of Open Access Journals |
subjects | coating coupled thermoelasticity problem frictional contact thermoelastodynamic instability |
title | THERMOELASTODYNAMIC INSTABILITY OF CONTACT PROBLEM SOLUTION FOR COATING CONSIDERING FRICTIONAL HEAT GENERATION |
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