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首页> 外文期刊>Journal of porous media >STUDIES ON PERMEABILITY PROPERTIES AND PARTICLE CAPTURE EFFICIENCIES OF POROUS SiC CERAMICS PROCESSED BY OXIDE BONDING TECHNIQUE
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STUDIES ON PERMEABILITY PROPERTIES AND PARTICLE CAPTURE EFFICIENCIES OF POROUS SiC CERAMICS PROCESSED BY OXIDE BONDING TECHNIQUE

机译:氧化物键合工艺制备的多孔SiC陶瓷的渗透性能和颗粒捕获效率的研究

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摘要

Porous SiC ceramics bonded with mullite [MBS of fractional porosity (epsilon) of 0.29-0.56, average pore size (d(pore)) of 5-11 mu m, flexural strength (sigma) of 9-34 MPa, and elastic modulus (E) of 7-28 GPa] and cordierite (CBS with epsilon of 0.33-0.72, d(pore) of 6-50 mu m, sigma of 5-54 MPa, and E of 6-42 GPa) were prepared by heating in air at 1350-1500 degrees C compacts of desired amounts of SiC, Al2O3, and MgO powders and petroleum coke dust as the pore former. Air permeation behavior of well-characterized samples was studied with fluid superficial velocity (v(s)) from 0.08 to 1.0 m s(-1) and at RT to 750 degrees C. The Darcian (k(1)) and non-Darcian (k(2)) permeability coefficients were evaluated by fitting the Forchheimer's equation to experimental pressure drop-superficial velocity data. Porosity dependence of permeability coefficients was explained in terms of structural characteristics. Changes in pressure drop experienced by the porous ceramics at high temperatures were explained by temperature dependence of permeability coefficients and variation of fluid properties. Collection efficiency (E-overall) of filter ceramics operating on removal of solid NaCl nanoaerosol particles (of 7-300 nm size) was determined from particle counts before and after filtration at v(s) = 0.05-0.10 m s(-1). Experimental results showed variation of E-overall from 96.7 to 99.9% for change of epsilon from 0.56 to 0.68. The size-selective fractional collection efficiency at different porosity levels was derived using the well-known single-collector efficiency model considering some boundary conditions and the model data were validated with experimental results. The test results were used to examine the applicability of the filter ceramics in nanoparticle aerosol filtration processes.
机译:莫来石粘结的多孔SiC陶瓷[分数孔隙率(ε)的MBS为0.29-0.56,平均孔径(d(孔))为5-11微米,抗弯强度(sigma)为9-34 MPa,弹性模量( E)为7-28 GPa]和堇青石(CBS,ε为0.33-0.72,d(孔)为6-50μm,σ为5-54 MPa,E为6-42 GPa)。在1350-1500摄氏度的空气中压制所需量的SiC,Al2O3和MgO粉以及作为成孔剂的石油焦粉。研究了表征良好的样品的空气渗透行为,其流体表观速度(v(s))为0.08至1.0 ms(-1),且在室温至750摄氏度。达西(k(1))和非达西(通过将Forchheimer方程拟合到实验压降-表观速度数据来评估k(2))渗透系数。根据结构特征解释了渗透系数的孔隙率依赖性。多孔陶瓷在高温下经历的压降变化通过渗透系数的温度依赖性和流体性质的变化来解释。从在v(s)= 0.05-0.10 m s(-1)过滤之前和之后的颗粒计数,确定去除固体NaCl纳米气溶胶颗粒(尺寸为7-300 nm)时所用的过滤陶瓷的收集效率(总​​体)。实验结果表明,E总体变化从96.7%到99.9%,ε的变化从0.56到0.68。考虑到一些边界条件,使用众所周知的单收集器效率模型导出了在不同孔隙度水平下的尺寸选择性分数收集效率,并用实验结果验证了模型数据。测试结果用于检查滤料在纳米颗粒气溶胶过滤工艺中的适用性。

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