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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Strength and ductility of powder consolidated ultrafine-grain tantalum
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Strength and ductility of powder consolidated ultrafine-grain tantalum

机译:粉末固结超细籽粒钽的强度和延展性

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摘要

Bulk ultra-fine grain tantalum was successfully fabricated from pure tantalum powder particles with an average particle size of SO pm by equal channel angular extrusion at 900 degrees C and 1200 degrees C using three different processing routes. The effects of extrusion route and temperature on the consolidation performance are evaluated through microstructural analysis and room temperature mechanical testing. The consolidated tantalum has a "wood grain" like structure with strong interparticle bonds and a grain size <100 nm. The lamellar structure is helpful in resisting crack formation and fracture. The bulk tantalum consolidates are much stronger than annealed wrought tantalum and have significant ductility. Tensile tests for consolidated tantalum at room temperature show a yield strength of 340-376 MPa, an ultimate strength of up to 618 MPa, and strains to failure of similar to 19-25%. These properties are comparable to wrought Ta. The present study demonstrates that equal channel angular extrusion is a feasible method for fabricating bulk nanostructured refractory alloys from precursor powder, with a combination of high strength and good ductility.
机译:散装超细粒钽钽由纯钽粉末颗粒成功制造,使用三个不同的加工路线在900℃和1200摄氏度时平均粒度的平均粒度。通过微观结构分析和室温机械测试,评估挤出途径和温度对固结性能的影响。综合的钽具有诸如结构的“木纹”,具有强颗粒间键和晶粒尺寸<100nm。层状结构有助于抵抗裂缝形成和骨折。散装钽巩固比退火的锻造钽更强大,具有显着的延展性。在室温下固结钽的拉伸试验显示出340-376MPa的屈服强度,最终强度高达618MPa,并且菌株与19-25%相似。这些性质与锻造TA相当。本研究表明,相等的通道角挤出是制造来自前体粉末的块状纳米结构耐火合金的可行方法,具有高强度和良好的延展性的组合。

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