2010
DOI: 10.2109/jcersj2.118.102
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Suppression of free Si formation during liquid phase sintering of polysiloxane-derived, porous silicon carbide ceramics

Abstract: Porous silicon carbide ceramics were prepared from a polysiloxane, carbon black, SiC filler, sacrificial templates (co-polymer microbeads) and Al2O3-Y2O3 additives by a carbothermal reduction and subsequent sintering process. The effect of the sintering temperature on the microstructural development and structural characteristics of the porous ceramics was examined by scanning electron microscopy (SEM), X-ray diffractometry (XRD), and Raman spectroscopy. The polysiloxane-derived silicon carbide (PDSC) specimen… Show more

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Cited by 6 publications
(4 citation statements)
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“…Polymer precursors and artificial templates have also been used for producing porous SiC ceramics via sacrificial template method. Kim and his colleagues [45,[119][120][121][122][123][125][126][127][128] developed a new processing method for fabricating macroporous SiC ceramics from carbon-filled polysiloxane by carbothermal reduction and subsequent sintering process. The strategy adopted for making porous SiC ceramics involves the following: (i) fabricating a formed body from a mixture of polysiloxane, carbon source such as phenol resin or carbon black, SiC powder as an optional inert filler, sacrificial templates, and sintering additives; (ii) pyrolysis of polymeric materials; (iii) synthesizing SiC by carbothermal reduction; and (iv) sintering the materials.…”
Section: Sacrificial Template Methodsmentioning
confidence: 99%
“…Polymer precursors and artificial templates have also been used for producing porous SiC ceramics via sacrificial template method. Kim and his colleagues [45,[119][120][121][122][123][125][126][127][128] developed a new processing method for fabricating macroporous SiC ceramics from carbon-filled polysiloxane by carbothermal reduction and subsequent sintering process. The strategy adopted for making porous SiC ceramics involves the following: (i) fabricating a formed body from a mixture of polysiloxane, carbon source such as phenol resin or carbon black, SiC powder as an optional inert filler, sacrificial templates, and sintering additives; (ii) pyrolysis of polymeric materials; (iii) synthesizing SiC by carbothermal reduction; and (iv) sintering the materials.…”
Section: Sacrificial Template Methodsmentioning
confidence: 99%
“…The high-temperature strength reduction caused by the formation of free Si in the high-temperature reaction between SiC and sintering additives (Al 2 O 3 ) could be effectively suppressed by the addition of excess carbon [103]. In another work, the expandable microspheres were in situ foamed during extrusion at 130…”
Section: Reaction Technique For Matrixmentioning
confidence: 99%
“…The carbothermal reduction and subsequent sintering of SiOC foams, templated from hollow microspheres or polymer microbeads, resulted in open-cell SiC ceramics possessing a compressive strength of 240-290 MPa and a flexural strength of 60-100 MPa at 40% porosity [103,105]. The proper composition of starting mixture of SiC powder and polysiloxane-derived SiC resulted in a flexural strength of 57 MPa at 50% porosity [18].…”
Section: Mechanical Propertiesmentioning
confidence: 99%
“…15 As one of the simplest and most cost-effective approaches, in situ carbothermal reduction has been an effective technique for SiC nanomaterials synthesis. 16 On the basis of the low-cost silicon oxide (SiO 2 , SiO, or SiOC), various forms of porous carbon template (graphene foam (GF) 17,18 and carbonized dough 13 ) were used to create porous SiC via carbonization. 12 The resultant structures strongly depend on the initial C/SiO 2 matrix and interaction between reagents.…”
Section: Introductionmentioning
confidence: 99%