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首页> 外文期刊>CERAMICS INTERNATIONAL >Microstructure and mechanical properties of fine-grained boron carbide ceramics fabricated by high-pressure hot pressing combined with high-energy ball milling
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Microstructure and mechanical properties of fine-grained boron carbide ceramics fabricated by high-pressure hot pressing combined with high-energy ball milling

机译:高压热压和高能量球磨的细粒硼碳化物陶瓷的微观结构和力学性能

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摘要

Dense and fine-grained boron carbide (B4C) ceramics were fabricated via high-pressure hot pressing (100 MPa) using powders, which are prepared by high-energy ball milling. These powders were sintered at a low temperature (1800 degrees C) without any sintering aid. The dense and fine-grained B4C ceramics demonstrate super high hardness, outstanding fracture toughness and modern flexure strength. The milled powders were characterised by disordered crystal structure and ultrafine particle size that ranges from a few nanometres to a few hundred nanometres. The combined contributions of high pressure and the characteristic of the milled powders guaranteed that the dense fine-grained microstructure was achieved at only 1800 degrees C. The grain size distribution of the ceramics was inhomogeneous and ranged from 70 nm to 1.6 mu m. However, the average grain size was fine at only 430 nm, which partially contributed to the super high hardness of the B4C ceramics. The locally concentrated areas of the small grains changed the fracture mode of the B4C ceramics from the complete transgranular fracture to a mixture of transgranular and intergranular fractures, thereby enhancing the toughness of the B4C ceramics. The relative density, Vickers hardness, flexure strength and fracture toughness of the obtained B4C ceramics reached up to 99.5%, 41.3 GPa, 564 MPa and 4.41 MPa m(1/2), respectively.
机译:使用高能球磨制备的粉末通过高压热压(100MPa)制造致密和细粒碳化硼(B4C)陶瓷,其通过高能球磨制备。将这些粉末在低温(1800℃)下烧结而没有任何烧结助剂。致密和细粒度的B4C陶瓷表现出超高硬度,出色的断裂韧性和现代弯曲强度。通过晶体结构无序的晶体结构和超细粒度的特征在于,从几纳米到几百纳米的晶粒粒度的表征。高压和碾磨粉末特征的组合贡献保证了仅在1800℃下达到致密的细粒细胞结构。陶瓷的晶粒尺寸分布不均匀,范围为70nm至1.6μm。然而,平均晶粒尺寸仅为430nm,其部分有助于B4C陶瓷的超高硬度。小颗粒的局部浓缩区域将B4C陶瓷的断裂模式从完全的响囊骨折到跨晶和骨间骨折的混合物中,从而提高了B4C陶瓷的韧性。所获得的B4C陶瓷的相对密度,维氏硬度,弯曲强度和断裂韧性分别达到99.5%,41.3GPa,564MPa和4.41MPa m(1/2)。

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