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High-temperature compressive creep of spark-plasma sintered additive-free polycrystalline p-SiC

机译:放电等离子烧结无添加剂多晶p-SiC的高温压缩蠕变

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The high temperature mechanical behaviour of additive-free nano-size power of p-SiC sintered by spark-plasma sintering (SPS) technique has been studied. Samples had a mean grain size of 0.58 ìm and 97.4% of relative density. They were deformed by means of constant load compression (creep) tests at temperatures between 1750 and 1850 °C and stresses between 200 and 500 MPa. The strain rates ranged from 1 × 10~(-7) s~(-1) to 1 × 10~(-6) s~(-1) depending on the test conditions. The activation energy Q and the stress exponent n parameters, which characterize the deformation mechanisms, were evaluated. The values obtained for the activation energy Q in the whole temperature range was 540 kJ mol~(-1), and the stress exponent n values were between 1.2 and 1.3 for T= 1750 °C and 2.6 for T= 1800 °C. The values of these parameters, together with the results of microscopy of the deformed samples, suggested that there are two mechanisms operating simultaneously: (i) grain boundary sliding (GBS) accommodated by diffusion of Si along the grain boundary and (ii) dislocation glide and climb (power law creep (PLC)). The contribution of the latter mechanism increases with temperature.
机译:研究了通过火花等离子体烧结(SPS)技术烧结的p-SiC纳米无添加剂粉末的高温力学行为。样品的平均晶粒度为0.58μm,相对密度为97.4%。它们在1750至1850°C的温度和200至500 MPa的应力下通过恒定载荷压缩(蠕变)测试而变形。取决于测试条件,应变速率从1×10〜(-7)s〜(-1)到1×10〜(-6)s〜(-1)。评估了表征变形机理的活化能Q和应力指数n参数。在整个温度范围内获得的活化能Q值为540 kJ mol〜(-1),应力指数n值在T = 1750°C时为1.2到1.3,而在T = 1800°C时为2.6。这些参数的值以及变形样品的显微镜检查结果表明,有两种机制同时起作用:(i)Si沿晶界扩散所提供的晶界滑动(GBS)和(ii)位错滑移然后爬升(幂律蠕变(PLC))。后一种机制的贡献随温度增加。

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