A platform for research: civil engineering, architecture and urbanism
Ceramic atomizing core structure and preparation method thereof
The invention discloses a ceramic atomization core structure and a preparation method thereof, and relates to the technical field of electronic atomizer atomization structures, and the ceramic atomization core structure comprises conductive heating ceramic, oil guide ceramic and an electrode conductor; the oil guide ceramic and the conductive heating ceramic are integrally formed; one side of the conductive heating ceramic is connected with the oil guide ceramic, the other side of the conductive heating ceramic is communicated with the atomization channel, and the electrode conductors cover the head and tail ends of the conductive heating ceramic. According to the ceramic atomizing core structure and the preparation method thereof, the oil guide ceramic and the conductive heating ceramic have good corrosion resistance. The atomized liquid of the oil guide ceramic can be uniformly diffused into the conductive heating ceramic, and the conductive heating ceramic is large in heating area, stable in heating performance, capable of uniformly heating the atomized liquid in contact with the conductive heating ceramic, not prone to coking and gelatinization, large in atomization amount and high in reduction degree. The electrode conductor can accurately control the temperature of the conductive heating ceramic, the oxidation resistance is higher, and the service life is prolonged. Atomized oil mist flows along the atomization channel, the atomization flow is more uniform, and the atomization effect is better.
本发明公开了陶瓷雾化芯结构及其制备方法,涉及电子雾化器雾化结构技术领域,包括导电发热陶瓷、导油陶瓷和电极导体;导油陶瓷和导电发热陶瓷一体成型;导电发热陶瓷的一侧与导油陶瓷连接,另一侧与雾化通道连通,电极导体覆盖于导电发热陶瓷的首尾两端。根据本发明的陶瓷雾化芯结构及其制备方法,导油陶瓷和导电发热陶瓷具有良好的耐腐蚀性。导油陶瓷的雾化液能够均匀扩散到导电发热陶瓷中,导电发热陶瓷的发热面积大,发热性能稳定,能够均匀加热所接触的雾化液,不容易焦化糊化,并且雾化量大,还原度高。电极导体能够准确控制导电发热陶瓷的温度,抗氧化能力更强,提升使用寿命。雾化的油雾沿雾化通道流动,雾化流量更均匀,雾化效果更好。
Ceramic atomizing core structure and preparation method thereof
The invention discloses a ceramic atomization core structure and a preparation method thereof, and relates to the technical field of electronic atomizer atomization structures, and the ceramic atomization core structure comprises conductive heating ceramic, oil guide ceramic and an electrode conductor; the oil guide ceramic and the conductive heating ceramic are integrally formed; one side of the conductive heating ceramic is connected with the oil guide ceramic, the other side of the conductive heating ceramic is communicated with the atomization channel, and the electrode conductors cover the head and tail ends of the conductive heating ceramic. According to the ceramic atomizing core structure and the preparation method thereof, the oil guide ceramic and the conductive heating ceramic have good corrosion resistance. The atomized liquid of the oil guide ceramic can be uniformly diffused into the conductive heating ceramic, and the conductive heating ceramic is large in heating area, stable in heating performance, capable of uniformly heating the atomized liquid in contact with the conductive heating ceramic, not prone to coking and gelatinization, large in atomization amount and high in reduction degree. The electrode conductor can accurately control the temperature of the conductive heating ceramic, the oxidation resistance is higher, and the service life is prolonged. Atomized oil mist flows along the atomization channel, the atomization flow is more uniform, and the atomization effect is better.
本发明公开了陶瓷雾化芯结构及其制备方法,涉及电子雾化器雾化结构技术领域,包括导电发热陶瓷、导油陶瓷和电极导体;导油陶瓷和导电发热陶瓷一体成型;导电发热陶瓷的一侧与导油陶瓷连接,另一侧与雾化通道连通,电极导体覆盖于导电发热陶瓷的首尾两端。根据本发明的陶瓷雾化芯结构及其制备方法,导油陶瓷和导电发热陶瓷具有良好的耐腐蚀性。导油陶瓷的雾化液能够均匀扩散到导电发热陶瓷中,导电发热陶瓷的发热面积大,发热性能稳定,能够均匀加热所接触的雾化液,不容易焦化糊化,并且雾化量大,还原度高。电极导体能够准确控制导电发热陶瓷的温度,抗氧化能力更强,提升使用寿命。雾化的油雾沿雾化通道流动,雾化流量更均匀,雾化效果更好。
Ceramic atomizing core structure and preparation method thereof
陶瓷雾化芯结构及其制备方法
YUAN SHUQING (author)
2022-07-12
Patent
Electronic Resource
Chinese
Preparation method of ceramic atomizing core and ceramic atomizing core
European Patent Office | 2024
|European Patent Office | 2022
|Porous ceramic, preparation method thereof, atomizing core and electronic atomizing device
European Patent Office | 2023
|European Patent Office | 2024
|