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Tungsten tetraboride an inexpensive superhard material

机译:四硼化钨一种廉价的超硬材料

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摘要

Tungsten tetraboride (WB4) is an interesting candidate as a less expensive member of the growing group of superhard transition metal borides. WB4 was successfully synthesized by arc melting from the elements. Characterization using powder X-ray diffraction (XRD) and energy-dispersive X-ray spectroscopy (EDX) indicates that the as-synthesized material is phase pure. The zero-pressure bulk modulus, as measured by high-pressure X-ray diffraction for WB4, is 339 GPa. Mechanical testing using microindentation gives a Vickers hardness of 43.3 ± 2.9 GPa under an applied load of 0.49 N. Various ratios of rhenium were added to WB4 in an attempt to increase hardness. With the addition of 1 at.% Re, the Vickers hardness increased to approximately 50 GPa at 0.49 N. Powders of tungsten tetraboride with and without 1 at.% Re addition are thermally stable up to approximately 400 °C in air as measured by thermal gravimetric analysis.
机译:四硼化钨(WB4)作为一种越来越便宜的超硬过渡金属硼化物中的成员,是一个有趣的候选人。 WB4是通过电弧熔化从元素成功合成的。使用粉末X射线衍射(XRD)和能量色散X射线光谱(EDX)进行的表征表明,合成后的材料是相纯的。通过WB4的高压X射线衍射测得的零压力体积模量为339 GPa。使用微压痕的机械测试在0.49 N的施加载荷下给出了43.3±2.9 GPa的维氏硬度。向WB4中添加了各种比例的in以试图提高硬度。添加1at。%Re时,维氏硬度在0.49N时增加到大约50GPa。通过热法测量,添加和不添加1at。%Re的四硼化钨粉末在空气中的热稳定性高达约400°C重量分析。

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