
{"id":6330,"date":"2024-08-26T14:35:27","date_gmt":"2024-08-26T18:35:27","guid":{"rendered":"https:\/\/spraysensors.tecnar.com\/investigation-on-in-flight-heating-process-of-cerium-oxide-powders-in-radio-frequency-thermal-plasma-considering-thermal-resistance-effect\/"},"modified":"2024-11-11T14:46:08","modified_gmt":"2024-11-11T19:46:08","slug":"investigation-on-in-flight-heating-process-of-cerium-oxide-powders-in-radio-frequency-thermal-plasma-considering-thermal-resistance-effect","status":"publish","type":"post","link":"https:\/\/spraysensors.tecnar.com\/fr\/investigation-on-in-flight-heating-process-of-cerium-oxide-powders-in-radio-frequency-thermal-plasma-considering-thermal-resistance-effect\/","title":{"rendered":"Investigation on In-Flight Heating Process of Cerium Oxide Powders in Radio Frequency Thermal Plasma Considering Thermal Resistance Effect"},"content":{"rendered":"<p>In-flight heating process of powder particles in radio frequency (RF) thermal plasma have great importance for plasma spraying and spheroidization. The present work investigated this heating process through cerium dioxide (CeO2) powders experimentally and numerically. In experiment, a commercial CeO2 powders (30 \u03bcm avg.) injected RF argon plasma and measured temperatures with a DPV-2000 monitor. A model integrating electromagnetic, thermal flow, and heat transfer predictions powder in-flight heating in argon plasma. The melting process of the CeO2 powders with different diameters, the melting time of the powders under thermal resistance effect was analyzed respectively. It was found that the heating process of powder particles have three main stages, among which the heating stage is relevant with a dimensionless parameter, Biot number. When Biot\u22650.1, thermal resistance is significant, especially for larger powders. The predicted temperature of the particles at the outlet (1800-2880K) is in good agreement with the experimental measurement results.<\/p>\n<p><a class=\"btn-tec black\" href=\"https:\/\/download.ssrn.com\/phyla\/cb9958c8-b93f-47de-8a3e-cf6570feda4d-meca.pdf?response-content-disposition=inline&#038;X-Amz-Security-Token=IQoJb3JpZ2luX2VjECMaCXVzLWVhc3QtMSJIMEYCIQDGTU7aM43yOU0lKt3KMvGVXFM95ErRmkWaTEg4ksKSmwIhAO63UVxuZpAosu3n6mHIKHydsjDgFvXjGvY8Nd6AjWZ4KsYFCKz%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FwEQBBoMMzA4NDc1MzAxMjU3Igx6oaq6vBE7bCV0yo4qmgWqHcRvl%2BTZ%2FLZbxeu61CUXQiy6FQT6kslnH3pbm6IDTPuIi%2B805KpFOfyAsrjlodztRKOn1mHKK1pqCw8QNhzhP1OmoQTvUQHP5t4IgpHOkbYavJWTtQHdysKJLKu%2BR7bUxlOFETiAPGBXwg4Q0Mid1v%2BHjKZ5I%2FAoURu5iZq74Q4SdWHEmTdyXq%2Fo%2B%2FU8pUhCL7gMMVYvuLkzdnwJj3rPAzIfmt5vZtej70SsxwH%2F%2BlgKSqcLW2PdJVtntmW4sgmRLOqxEJ98uKGiJVmphwUTrMgeepJB8iQlk5p1ZDyzu8kW5BNl%2BFCHv4xnmZG6EQMhaN0ToziFeJmqSneyFbjY%2BNO7%2Fx1YjBZa1YNfhWgsfttYQttrKIjfEo%2FlAGnE7KSL5uMvfaJ8cFx1%2F2rHStrxtI2uMW7tMHzPMNCDMCbAAQ7LwvOoUbB20XncBdrg2quTicHc%2FwLJvo0UiYPCnscWJcBZSwp3alxzhoOx%2FKaU6xbExGx1ivvjuZUFjotDpGiNjIMshU9UqzqibcFJHDxG3TBMgQafS77j%2FlHfsQ6xDGqKvLiDmQ7bkuBwwFVrmU9XHoSjmwh5D0E2R%2FgrsnIeB9YcXg7jJbb%2BnGzhBA11typw102MX7twg8%2FgaleAF9wgeRc7zSQ18t6uK6EqceK5bKaKFBMxIBAnDrmQtS1Xx2cEMQz6zol6lTZWmtT0foXtitl8ZOfmBcbxvxePy9rvmLpCLgsHcvISrRRJtDFqSWf5nX6C8xx8n6V%2B7DaxZXy0G6o%2FPSMHPwZbUYcsrR3Gj2zL72YeZO8Cd69SfK7T6t%2FLdLauH1WEoTzGBOwm%2F8onjYbfsuRetHHBy0JbcoUNU1kssGPciG%2BpNgbOg68zVT9Fw585nFgKkWEwwJ7JuQY6sAEjBycAMdu2RdYzHLwlxhv15BhM2KDgfh39ZPciwN8h4xaaVCDvco5uO3NIjgtpjrlGdMndhHYbcrOnD943AvvDToi1J00OW6YBpPYlM%2Ff8wgCLD6sNb41yDnFAv4QPCVlmSxKcSq8lPWZn4eF3ZS%2B6rpD27QuCy5m%2BUKMP%2BlNr0cATcWc%2BfqNNuW4GJxK2vHj2q4R15kyhXiQ5QX%2Ff%2FO%2FptgTZZEg08bhVPnyOkG%2FrfA%3D%3D&#038;X-Amz-Algorithm=AWS4-HMAC-SHA256&#038;X-Amz-Date=20241111T193816Z&#038;X-Amz-SignedHeaders=host&#038;X-Amz-Expires=300&#038;X-Amz-Credential=ASIAUPUUPRWEXGHPZL4A%2F20241111%2Fus-east-1%2Fs3%2Faws4_request&#038;X-Amz-Signature=7f555352abae752cfae7e0577dd8ed76cd3331f39e2624d6bdf65652c2dac83b&#038;abstractId=4937428\" target=\"_blank\" rel=\"noopener\">Link to publication<\/a><\/p>\n<p>Key words: RF thermal plasma, Thermal resistance effect, Heating process, Biot number<\/p>\n<p><em><small>Originally published as a SSRN paper (Posted: 26 Aug 2024)<br \/>\nBy Yi Su, Ruizhe Liu, Hilal Ahmad, Peng Zhao, Xingyue Jin, Hailong Zhu<\/small><\/em><\/p>\n","protected":false},"excerpt":{"rendered":"<p>In-flight heating process of powder particles in radio frequency (RF) thermal plasma have great importance for plasma spraying and spheroidization. [&#8230;]<\/p>\n<p><a class=\"btn btn-secondary understrap-read-more-link\" href=\"https:\/\/spraysensors.tecnar.com\/fr\/investigation-on-in-flight-heating-process-of-cerium-oxide-powders-in-radio-frequency-thermal-plasma-considering-thermal-resistance-effect\/\">Read More&#8230;<\/a><\/p>\n","protected":false},"author":22,"featured_media":6327,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[55],"tags":[],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v24.2 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Investigation on In-Flight Heating Process of Cerium Oxide Powders in Radio Frequency Thermal Plasma Considering Thermal Resistance Effect - Tecnar Thermal Spray<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/spraysensors.tecnar.com\/fr\/investigation-on-in-flight-heating-process-of-cerium-oxide-powders-in-radio-frequency-thermal-plasma-considering-thermal-resistance-effect\/\" \/>\n<meta property=\"og:locale\" content=\"fr_FR\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Investigation on In-Flight Heating Process of Cerium Oxide Powders in Radio Frequency Thermal Plasma Considering Thermal Resistance Effect - Tecnar Thermal Spray\" \/>\n<meta property=\"og:description\" content=\"In-flight heating process of powder particles in radio frequency (RF) thermal plasma have great importance for plasma spraying and spheroidization. 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