Xie Longjian
Bayerisches Geoinstitut, University of Bayreuth, Bayreuth 95440, Germany.
Rev Sci Instrum. 2021 Feb 1;92(2):023901. doi: 10.1063/5.0036771.
Being refractory and X-ray transparent, a boron-doped diamond (BDD) heater is considered an ideal heating element in a multi-anvil apparatus under diamond-stable pressures. However, the extremely high hardness of diamond makes it difficult to manufacture a BDD tube, which, in turn, hinders the wide application of BDD heaters in multi-anvil apparatuses. Here, I sintered a machinable BDD (MBDD) from a mixture of BDD powder and pitch (CH) by its annealing in Ar at 1273 K for 5 h. The BDD powder was bound by a small amount of graphite (<10 wt. %) during the sintering process. Tubes (such as 1.2/0.7/4.0 mm in outer/inner diameter/length) can be manufactured from the MBDD block using a lathe or a computer numerical control machine. Due to the low content of graphite in MBDD, the graphite-diamond conversion has a small effect on heating performance. The MBDD heater shows a comparable performance in ultrahigh temperature generation with a high-pressure synthesized BDD heater by generating a temperature higher than 3300 K and melted AlO under a pressure of 15 GPa. With good heating performance and excellent machinability, MBDD is a practical heating element in multi-anvil apparatuses. The achievement of stable temperature generation over 3300 K by the MBDD heater enables various measurements on the physicochemical properties of melts under the Earth's mantle conditions.
硼掺杂金刚石(BDD)加热器具有耐高温和X射线透明的特性,被认为是在金刚石稳定压力下的多砧装置中理想的加热元件。然而,金刚石极高的硬度使得制造BDD管变得困难,这反过来又阻碍了BDD加热器在多砧装置中的广泛应用。在此,我通过将BDD粉末和沥青(CH)的混合物在1273 K的氩气中退火5小时,烧结出了一种可加工的BDD(MBDD)。在烧结过程中,BDD粉末被少量石墨(<10 wt.%)粘结。可以使用车床或计算机数控机床从MBDD块制造出管子(如外径/内径/长度为1.2/0.7/4.0 mm)。由于MBDD中石墨含量低,石墨 - 金刚石转化对加热性能影响较小。MBDD加热器在超高温产生方面表现出与高压合成BDD加热器相当的性能,在15 GPa的压力下能产生高于3300 K的温度并熔化AlO。具有良好的加热性能和出色的可加工性,MBDD是多砧装置中一种实用的加热元件。MBDD加热器实现3300 K以上的稳定温度产生,使得能够在地幔条件下对熔体的物理化学性质进行各种测量。