Tecnologías de microondas y dispositivos que separan la piel del cuero del conejo

Autores/as

  • Evgeny A. Shamin State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation
  • Galina V. Novikova State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation
  • Оlga V. Michailova State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation
  • Маriana V. Belova State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation
  • Irina G. Ershova Federal State Budgetary Scientific Institution "Federal Scientific Agroengineering Center VIM", Moscow, Russian Federation
  • Dmitrii V. Poruchikov Federal State Budgetary Scientific Institution "Federal Scientific Agroengineering Center VIM", Moscow, Russian Federation
  • Sergey P. Zaycev Federal State Budgetary Educational Institution of higher education, «Chuvash State Agricultural Academy», Russian Federation

Palabras clave:

Piel de conejo, la fuerza de sujeción de las fibras de piel en el cuero, tecnología de microondas, resonadores de volumen, parámetros electrodinámicos, dispositivo de frecuencia ultraalta., Pele de coelho, a força de aperto das fibras na pele de couro, tecnologia de microondas, de volume ressonadores parâmetros eletrodinâmicas, dispositivo de UHF.

Resumen

El propósito de este trabajo es el desarrollo de la tecnología de microondas y los dispositivos que separan la piel de los cueros de conejo en un modo continuo a costos operativos reducidos. Desarrollaron el método para la acción del campo electromagnético de frecuencia ultraalta (UFEF), que proporciona la reducción del poder de retención de la fibra de la piel en el tejido de carne de la piel de conejo con el peinado y la recolección simultáneos. Calcularon las dependencias matemáticas que describen la dinámica del calentamiento de materias primas de componentes múltiples con el cambio de los parámetros dieléctricos y fisicomecánicos en el proceso de la UFEF. Calcularon y visualizaron las distribuciones del campo electromagnético en los resonadores desarrollados, sobre la base de los cuales fundamentaron los parámetros efectivos del sistema electrodinámico: la propiedad máxima, la calidad de los resonadores y la intensidad del campo eléctrico. Ellos sustentaron el complejo de parámetros estructurales y tecnológicos de los dispositivos con un nuevo diseño estructural de las cámaras de trabajo mediante una evaluación de múltiples criterios del proceso tecnológico para la separación de la piel del cuero del conejo. 

Fabricaron y probaron el dispositivo de microondas en condiciones de producción para la separación de la piel de la piel de conejo, y ajustaron los modos de operación, lo que permite reducir los costos operativos. Evaluaron la eficiencia técnica y económica de la introducción de la tecnología de microondas para el procesamiento de pieles y los dispositivos para granjas de conejos; desarrollaron recomendaciones prácticas para el uncionamiento de las unidades de microondas para separar las pieles de los cueros de conejo.

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Biografía del autor/a

Evgeny A. Shamin, State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation

State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation

Galina V. Novikova, State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation

State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation

Оlga V. Michailova, State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation

State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation

Маriana V. Belova, State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation

State budgetary educational institution of higher education «Nizhny Novgorod state engineering-economic University», Russian Federation

Irina G. Ershova, Federal State Budgetary Scientific Institution "Federal Scientific Agroengineering Center VIM", Moscow, Russian Federation

Federal State Budgetary Scientific Institution "Federal Scientific Agroengineering Center VIM", Moscow, Russian Federation

Dmitrii V. Poruchikov, Federal State Budgetary Scientific Institution "Federal Scientific Agroengineering Center VIM", Moscow, Russian Federation

Federal State Budgetary Scientific Institution "Federal Scientific Agroengineering Center VIM", Moscow, Russian Federation

Sergey P. Zaycev, Federal State Budgetary Educational Institution of higher education, «Chuvash State Agricultural Academy», Russian Federation

Federal State Budgetary Educational Institution of higher education, «Chuvash State Agricultural Academy»,

Russian Federation

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Publicado

2018-12-27

Cómo citar

Shamin, E. A., Novikova, G. V., Michailova О. V., Belova М. V., Ershova, I. G., Poruchikov, D. V., & Zaycev, S. P. (2018). Tecnologías de microondas y dispositivos que separan la piel del cuero del conejo. Amazonia Investiga, 7(17), 630–640. Recuperado a partir de https://amazoniainvestiga.info/index.php/amazonia/article/view/778

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