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Al2O3/Cu-O composites fabricated by pressureless infiltration of paper-derived Al2O3 porous preforms

机译:Al2O3 / Cu-O复合材料由于纸衍生的Al2O3多孔预成型件的无气压渗透而制造

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摘要

Al2O3/Cu-O composites were fabricated from the paper-derived alumina matrix infiltrated with a Cu-3.2 wt% O alloy. Paper-derived alumina preforms with an open porosity ranging from similar to 14 to similar to 25 vol% were prepared by sintering of alumina-loaded preceramic papers at 1600 degrees C for 4 h. Pressureless infiltration at 1320 degrees C for 4 h of the preforms with Cu-O alloy resulted in the nearly dense materials with good mechanical and electrical properties, e.g. fracture toughness up to 6 MPa m(0.5), four-point-bending strength up to 342 MPa, Young's modulus up to 281 GPa and electrical conductivity up to 2 MS/m depending on the volume fraction of copper alloy in the composites. The technological capability of this approach was demonstrated using prototypes in various engineering fields fabricated by lamination, corrugating and Laminated Object Manufacturing (LOM) methods.
机译:使用Cu-3.2wt%O合金渗透的纸衍生的氧化铝基质制成Al 2 O 3 / Cu-O复合材料。 通过在1600℃下烧结4小时,通过烧结氧化铝装载的预染色纸来制备具有与25体积相似的开孔的纸衍生的氧化铝预制件。 用Cu-O合金的1320℃的无压渗透,用Cu-O合金导致具有良好机械和电气性能的几乎致密的材料,例如,具有良好的机械和电性能。 断裂韧性高达6MPa m(0.5),四点弯曲强度高达342MPa,杨氏模量高达281GPa,电导率高达2 ms / m,取决于复合材料中的铜合金的体积分数。 使用由层压,波纹和层压物体制造(LOM)方法制造的各种工程领域的原型来证明这种方法的技术能力。

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