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Microstructure and Oxidation Behavior of ZrB_(2)-SiC Ceramics Fabricated by Tape Casting and Reactive Melt Infiltration
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作者 TAN Min CHEN Xiaowu +5 位作者 YANG Jinshan ZHANG Xiangyu KAN Yanmei ZHOU Haijun XUE Yudong DONG Shaoming 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第8期955-964,共10页
ZrB_(2)-based ceramics typically necessitate high temperature and pressure for sintering,whereas ZrB_(2)-SiC ceramics can be fabricated at 1500℃using the process of reactive melt infiltration with Si.In comparison to... ZrB_(2)-based ceramics typically necessitate high temperature and pressure for sintering,whereas ZrB_(2)-SiC ceramics can be fabricated at 1500℃using the process of reactive melt infiltration with Si.In comparison to the conventional preparation method,reactive synthesis allows for the more facile production of ultra-high temperature ceramics with fine particle size and homogeneous composition.In this work,ZrSi_(2),B4C,and C were used as raw materials to prepare ZrB_(2)-SiC via combination of tape casting and reactive melt infiltration herein referred to as ZBC ceramics.Control sample of ZrB_(2)-SiC was also prepared using ZrB_(2)and SiC as raw materials through an identical process designated as ZS ceramics.Microscopic analysis of both ceramic groups revealed smaller and more uniformly distributed particles of the ZrB_(2)phase in ZBC ceramics compared to the larger particles in ZS ceramics.Both sets of ceramics underwent cyclic oxidation testing in the air at 1600℃for a cumulative duration of 5 cycles,each cycle lasting 2 h.Analysis of the oxidation behavior showed that both ZBC ceramics and ZS ceramics developed a glassy SiO_(2)-ZrO_(2)oxide layer on their surfaces during the oxidation.This layer severed as a barrier against oxygen.In ZBC ceramics,ZrO_(2)is finely distributed in SiO_(2),whereas in ZS ceramics,larger ZrO_(2)particles coexist with glassy SiO_(2).The surface oxide layer of ZBC ceramics maintains a dense structure because the well-dispersed ZrO_(2)increases the viscosity of glassy SiO_(2),preventing its crystallization during the cooling.Conversely,some SiO_(2)in the oxide layer of ZS ceramics may crystallize and form a eutectic with ZrO_(2),leading to the formation of ZrSiO_(4).This leads to cracking of the oxide layer due to differences in thermal expansion coefficients,weakening its barrier effect.An analysis of the oxidation resistance shows that ZBC ceramics exhibit less increase in oxide layer thickness and mass compared to ZS ceramics,suggesting superior oxidation resistance of ZBC ceramics. 展开更多
关键词 ultra-high temperature ceramic ZrB_(2)-SiC oxidation behavior reactive melt infiltration
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PFL系列超高温聚合物降滤失剂在徐闻X3井的应用 被引量:3
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作者 田璐 李胜 +2 位作者 杨小华 王琳 王治法 《油田化学》 CAS CSCD 北大核心 2012年第2期138-141,共4页
PFL系列聚合物降滤失剂具有黏度低、耐温抗盐降滤失效果显著等特点。质量分数为1%的PFL-L、PFL-H水溶液的表观黏度分别为12 mPa.s和26 mPa.s。在240℃滚动老化16 h情况下,加有5%PFL-L的盐水泥浆(4%膨润土浆+36%NaCl)的滤失量由226 mL(... PFL系列聚合物降滤失剂具有黏度低、耐温抗盐降滤失效果显著等特点。质量分数为1%的PFL-L、PFL-H水溶液的表观黏度分别为12 mPa.s和26 mPa.s。在240℃滚动老化16 h情况下,加有5%PFL-L的盐水泥浆(4%膨润土浆+36%NaCl)的滤失量由226 mL(空白样)降至32 mL;加有4%PFL-H的盐水泥浆的滤失量由226mL(空白样)降至8.2 mL;加有1.5%PFL-H的淡水泥浆(4%膨润土浆)的滤失量为由100 mL(空白样)降为9.6 mL。以PFL系列超高温聚合物降滤失剂为主,结合磺化类降滤失剂、抑制剂、防塌剂、稀释剂,形成了抗200℃强抑制盐水及淡水钻井液体系。现场应用表明,PFL系列超高温聚合物降滤失剂抗高温能力强,降滤失效果显著,确保井深5974 m、电测温度为211℃的徐闻X3井顺利钻至井深6010 m。 展开更多
关键词 超高温油藏 降滤失剂 耐温抗盐 流变性
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