Surface morphology, magnetic resonant and antistatic properties of 07S11-KVfabric coated with stainless steel
A study of the mixed 07С11-KВ fabric (produced by Mogotex) with a coating of steel 12X18H10T, obtained by the method of pulsed cathode arc deposition in a vacuum of 3.5×10–3 Pa, was conducted. It is shown that optical microscopy has a number of advantages in studying the surface morphology of such o...
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| Format: | Article |
| Language: | English |
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Belarusian National Technical University
2020-04-01
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| Series: | Литьë и металлургия |
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| Online Access: | https://lim.bntu.by/jour/article/view/3189 |
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| author | A. G. Anisovich I. P. Akula V. G. Zalesskiy M. I. Markevich V. F. Stelmakh N. M. Chekan |
| author_facet | A. G. Anisovich I. P. Akula V. G. Zalesskiy M. I. Markevich V. F. Stelmakh N. M. Chekan |
| author_sort | A. G. Anisovich |
| collection | DOAJ |
| description | A study of the mixed 07С11-KВ fabric (produced by Mogotex) with a coating of steel 12X18H10T, obtained by the method of pulsed cathode arc deposition in a vacuum of 3.5×10–3 Pa, was conducted. It is shown that optical microscopy has a number of advantages in studying the surface morphology of such objects as compared to scanning electron microscopy. The most contrast image is formed using dark-field illumination. When coating is applied, a droplet phase is formed, the droplet sizes vary from 2 to 10 microns. By the method of electron paramagnetic resonance, it has been established that the spectrum of coated fabric has an asymmetrical spectral line with a width of 101 mT, which indicates a high concentration of magnetic resonance centers and a significant resonant absorption of microwave energy. Resonant absorption at low magnetic fields is determined by clusters of iron, nickel, chromium, titanium, etc., with weak nonresonant absorption. The specific surface resistance of the fabric (side 1 / side 2) is 3.3×105 ohm and 5.6×105 ohm, respectively. |
| format | Article |
| id | doaj-art-5fc3b05e3fac433a82fe8abe2bc0f3c6 |
| institution | Kabale University |
| issn | 1683-6065 2414-0406 |
| language | English |
| publishDate | 2020-04-01 |
| publisher | Belarusian National Technical University |
| record_format | Article |
| series | Литьë и металлургия |
| spelling | doaj-art-5fc3b05e3fac433a82fe8abe2bc0f3c62025-08-20T03:59:49ZengBelarusian National Technical UniversityЛитьë и металлургия1683-60652414-04062020-04-0101879210.21122/1683-6065-2020-1-87-923096Surface morphology, magnetic resonant and antistatic properties of 07S11-KVfabric coated with stainless steelA. G. Anisovich0I. P. Akula1V. G. Zalesskiy2M. I. Markevich3V. F. Stelmakh4N. M. Chekan5Physical-Technical Institute of National Academy of Sciences of BelarusPhysical-Technical Institute of National Academy of Sciences of BelarusPhysical-Technical Institute of National Academy of Sciences of BelarusPhysical-Technical Institute of National Academy of Sciences of BelarusBelarusian State UniversityPhysical-Technical Institute of National Academy of Sciences of BelarusA study of the mixed 07С11-KВ fabric (produced by Mogotex) with a coating of steel 12X18H10T, obtained by the method of pulsed cathode arc deposition in a vacuum of 3.5×10–3 Pa, was conducted. It is shown that optical microscopy has a number of advantages in studying the surface morphology of such objects as compared to scanning electron microscopy. The most contrast image is formed using dark-field illumination. When coating is applied, a droplet phase is formed, the droplet sizes vary from 2 to 10 microns. By the method of electron paramagnetic resonance, it has been established that the spectrum of coated fabric has an asymmetrical spectral line with a width of 101 mT, which indicates a high concentration of magnetic resonance centers and a significant resonant absorption of microwave energy. Resonant absorption at low magnetic fields is determined by clusters of iron, nickel, chromium, titanium, etc., with weak nonresonant absorption. The specific surface resistance of the fabric (side 1 / side 2) is 3.3×105 ohm and 5.6×105 ohm, respectively.https://lim.bntu.by/jour/article/view/3189mixed fabricantistatic coatingmicroscopyresonant absorption of microwavesurface resistance |
| spellingShingle | A. G. Anisovich I. P. Akula V. G. Zalesskiy M. I. Markevich V. F. Stelmakh N. M. Chekan Surface morphology, magnetic resonant and antistatic properties of 07S11-KVfabric coated with stainless steel Литьë и металлургия mixed fabric antistatic coating microscopy resonant absorption of microwave surface resistance |
| title | Surface morphology, magnetic resonant and antistatic properties of 07S11-KVfabric coated with stainless steel |
| title_full | Surface morphology, magnetic resonant and antistatic properties of 07S11-KVfabric coated with stainless steel |
| title_fullStr | Surface morphology, magnetic resonant and antistatic properties of 07S11-KVfabric coated with stainless steel |
| title_full_unstemmed | Surface morphology, magnetic resonant and antistatic properties of 07S11-KVfabric coated with stainless steel |
| title_short | Surface morphology, magnetic resonant and antistatic properties of 07S11-KVfabric coated with stainless steel |
| title_sort | surface morphology magnetic resonant and antistatic properties of 07s11 kvfabric coated with stainless steel |
| topic | mixed fabric antistatic coating microscopy resonant absorption of microwave surface resistance |
| url | https://lim.bntu.by/jour/article/view/3189 |
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