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Impact of Filled Materials on the Heating Uniformity and Safety of Microwave Heating Solid Stack Materials

机译:填充材料对微波加热固体叠层材料的加热均匀性和安全性的影响

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摘要

Microwave heating of solid stack materials is common but bothered by problems of uneven heating and electric discharge phenomena. In this paper, a method introducing fluid materials with different relative permittivity is proposed to improve the heating uniformity and safety of solid stack materials. Simulations have been computed based on the finite element method (FEM) and validated by experiments. Simulation results show that the introducing of fluid materials with proper relative permittivity does improve the heating uniformity and safety. Fluid materials with the larger real part of relative permittivity could obviously lower the maximum modulus value of the electric field for about 23 times, and will lower the coefficient of variation (COV) in general, although in small ranges that it has fluctuated. Fluid materials with the larger imaginary part of relative permittivity, in a range from 0 to 0.3, can make a more efficient heating and it could lower the maximum modulus value of the electric field by 34 to 55% on the whole studied range. However, the larger imaginary part of relative permittivity will cause worse heating uniformity as the COV rises by 246.9% in the same process. The computed results are discussed and methods to reach uniform and safe heating through introducing fluid materials with proper relative permittivity are proposed.
机译:固体堆叠材料的微波加热是常见的,但因不均匀加热和放电现象问题而困扰。本文提出了一种具有不同相对介电常数的流体材料的方法,以改善固体叠层材料的加热均匀性和安全性。基于有限元方法(FEM)来计算仿真,并通过实验验证。仿真结果表明,具有适当相对介电常数的流体材料的引入确实提高了加热均匀性和安全性。具有较大部分相对介电常数的流体材料可以明显降低电场的最大模量约23次,并且将降低通常的变化系数(COV),尽管它在其波动的小范围内。流体材料具有较大的虚部相对介电常数,在0到0.3的范围内,可以更有效的加热,并且可以在整个研究范围内将电场的最大模量值降低34至55%。然而,相对介电常数的较大的虚部将导致更差的加热均匀性,因为COV在同一过程中升高246.9%。讨论了计算结果,提出了通过引入具有适当相对介电常数的流体材料来达到均匀和安全加热的方法。

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