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烧结温度对不含氮原料制备的脱β层梯度硬质合金的影响
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作者 史留勇 黄继华 +3 位作者 林彬 王娟 罗洪峰 陈致水 《稀有金属与硬质合金》 CAS CSCD 北大核心 2015年第3期50-53,62,共5页
采用不含氮硬质合金原料,通过在梯度烧结工艺之前添加一步微压氮化烧结工艺制备脱β层梯度硬质合金;采用SEM观察合金表层的组织结构,图像分析工具测量脱β层的厚度。结果表明:在添加微压(氮气分压为0.5kPa)氮化烧结工艺的情况下,编号Co-... 采用不含氮硬质合金原料,通过在梯度烧结工艺之前添加一步微压氮化烧结工艺制备脱β层梯度硬质合金;采用SEM观察合金表层的组织结构,图像分析工具测量脱β层的厚度。结果表明:在添加微压(氮气分压为0.5kPa)氮化烧结工艺的情况下,编号Co-8梯度硬质合金在1 420、1 450、1 480℃,1h的烧结工艺下形成脱β层的厚度分别为8、13、24μm;而编号Co-6梯度硬质合金在1 420℃时所形成的脱β层的厚度接近于零,在其他两种烧结温度下,所形成的脱β层的厚度也明显低于编号Co-8梯度硬质合金。与添加Ti(C,N)的原料相比,在相同的烧结工艺下,本文所采用的不含氮原料制备梯度硬质合金的脱β层厚度也明显降低。 展开更多
关键词 梯度硬质合金 脱β层 微压氮化 烧结温度 不含氮原料 影响
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Microstructures and mechanical properties of SiBCNAl ceramics produced by mechanical alloying and subsequent hot pressing 被引量:4
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作者 Dan YE De-chang JIA +2 位作者 Zhi-hua YANG Zhen-lin SUN Peng-fei ZHANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2010年第10期761-765,共5页
Amorphous SiBCNAl powders were prepared via a mechanical alloying (MA) technique using crystalline silicon (Si), hexagonal boron nitride (h-BN), graphite (C), and aluminum (Al) as starting materials. SiBCNAl powders w... Amorphous SiBCNAl powders were prepared via a mechanical alloying (MA) technique using crystalline silicon (Si), hexagonal boron nitride (h-BN), graphite (C), and aluminum (Al) as starting materials. SiBCNAl powders were consolidated by a hot pressing (HP) technique at 1800 °C under a pressure of 30 MPa in argon and nitrogen. The sintering atmosphere had a great influence on the microstructures and mechanical properties of the ceramics. The two ceramics had different phase compositions and fracture surface morphologies. For the ceramics sintered in argon, flexural strength, fracture toughness, elastic modulus and Vickers hardness were 421.90 MPa, 3.40 MPa·m1/2, 174.10 GPa, and 12.74 GPa, respectively. For the ceramics sintered in nitrogen, the mechanical properties increased, except for the Vickers hardness, and the values of the above properties were 526.80 MPa, 5.25 MPa·m1/2, 222.10 GPa, and 11.63 GPa, respectively. 展开更多
关键词 SiBCNAl ceramics Hot pressing (HP) Mechanical properties Microstructure Mechanical alloying (MA)
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