标题: | 氧化对碳化矽/氧化锆/莫来石复合材料之机械性质的影响 Effect of Oxidation on Mechanical Properties of SIC/ZrO2/Mullite Composites |
作者: | 刘易家 林健正 材料科学与工程学系 |
关键字: | 氧化;抗折强度;破坏韧性;碳化矽/氧化锆/莫来石;oxidation;bending strength;fracture toughness;sic / zro2 / mullite |
公开日期: | 2003 |
摘要: | 氧化对碳化矽/氧化锆/莫来石复合材料 之机械性质的影响 研究生:刘易家 指导教授:林健正博士 国立交通大学 材料科学与工程学系 中文摘要 本研究以热压法制备碳化矽/氧化锆/莫来石之复合材料,在1000 ℃及1200℃进行25小时的氧化处理,分别测量试片氧化后之抗折强 度及破裂韧性值与未氧化试片作一比较。实验的主要目的是要探讨试片在不同的氧化条件及氧化锆含量中对复合材料机械性质的影响。研究结果显示,SiC/ZrO2/mullite复合材料经由1000℃之氧化后并不会有任何结晶相或zircon相生成。而在1200℃氧化后,MZY20及MZY30开始有结晶相cristobalite 产生以及微量的zircon相生成;同时MZY50及MZY80不仅产生cristobalite结晶相而且会有较多之zircon相生成。除此之外,未经氧化的试片中会有较多之t-ZrO2及较少量之m-ZrO2;一旦经由氧化之后,试片开始产生较多之m-ZrO2,相对的使 t-ZrO2逐渐减少。在未经氧化材料的抗折强度值,与材料本身的致 密性有一定程度的关系,即材料之致密性愈佳则抗折强度值会上 升。经1000℃氧化后,0vol%∼50vol%ZrO2试片之强度改变率会 增加,而1200℃时,除了0vol%∼10vol%ZrO2片之强度改变率 有增加外,其余皆为下降之情形。未氧化材料破裂韧性值随氧化锆 含量之增加而增加。在0vol%∼50vol%ZrO2试片中经1000℃ 及1200℃氧化后其破裂韧性改变率皆有增加,且随ZrO2vol%之增 加有依次递减之趋势。除了80vol%∼100vol%ZrO2试片外,其余 试片经氧化后会使破裂韧值增加之主要原因为氧化锆正方晶相至单斜晶相(t→m)的相变化能力增强所致。 Effect of Oxidation on Mechanical Properties of SIC/ZrO2/Mullite Composites Student:Yi-Jia-Liu Advisor:Chien-Cheng Lin National Chiao Tung UniversityInstitute of Materials Science and Engineering Abstract Sic / zirconia / mullite composites with various zirconia contents, fabricated by hot pressing , were exposed in air isothermally for 25 hours at 1000 and 1200℃, respectively. Then the bending Strenath and fracture toughness of the oxidation samples as well as as-hot pressed samples were measured. This study aimed at the effect of oxidation and various zirconia contents on mechanical properties of Sic / zirconia / mullite composites. The result showed that the crystallization product or zircon(ZrSio4)phase from the composite after exposed. at 1000℃ would not occur. It was found the oxidation product cristobalite and some zircon phase from the composits with 20vol%&30vol%ZrO2 after exposed at1200℃ Meanwhile, the crystallization product of cristobalite and more zircon phase were presented in the case of the composites containing 50vol%&80vol%ZrO2.In addition, more t-ZrO2 and less m-ZrO2 were obtained in Samples before oxidation , while more m-ZrO2 and less t-ZrO2 were acquired in samples after oxidation. The bending strength of unoxidized samples was on the increase along with growth of consolidation. The strength change(%) from the composites with 0vol%&50vol%ZrO2 after exposed at 1000℃ ould increase and the composites with 20vol%~100volZrO2 at 1200℃ would decrease. The higher zirconia content the higher fracture toughness of unoxidized samples.The fracture toughness change(%) from the composites containing 0vol%~5vol%ZrO2 after oxidation was increased and the fracture toughness change(%)was on the decrease in pace with the increase of zirconia content. After Sic/ zirconia / mullite composites with 0vol%~50vol%ZrO2 was oxidized, the improvement of fracture toughness was mainly attributed to the enhancement of (t)→(m) phase transformation. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT008718514 http://hdl.handle.net/11536/46112 |
显示于类别: | Thesis |