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A Breakthrough in Pressure Generation by a Kawai-Type Multi-Anvil Apparatus with Tungsten Carbide Anvils

机译:带有碳化钨砧的Kawai型多砧器械在压力产生方面的突破

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摘要

Expansion of the pressure range of Kawai-type multi-anvil presses (KMAPs) with tungsten carbide (WC)anvils is called for,especially in the field of Earth science.However,no significant progress in pressure generation has been made for 40 years.Our recent studies have expanded the pressure generation of a KMAP with WC anvils to 65 GPa,which is the world record for high-pressure generation in this device and is more than 2.5 times higher than conventional pressure generation.We have also successfully generated pressures of about 50 GPa at high temperatures.This work reviews our recently developed technology for high-pressure generation.High-pressure generation at room temperature and at high temperature was attained by integration of the following techniques:① a precisely aligned guideblock system,② a high degree of hardness of the second-stage anvils,③ tapering of the second-stage anvil faces,④ a high-pressure cell consisting of materials with a high bulk modulus,and ⑤ high thermal insulation of the furnace.Our high-pressure technology will facilitate investigation of the phase stability and physical properties of materials under the conditions of the upper part of the lower mantle,and will permit the synthesis and characterization of novel materials.
机译:特别是在地球科学领域,要求扩大具有碳化钨(WC)砧的Kawai型多砧压力机(KMAP)的压力范围。然而,在压力产生方面40年来一直没有取得重大进展。我们最近的研究已将带有WC砧的KMAP的压力生成扩展到65 GPa,这是该设备中高压生成的世界纪录,比传统压力生成高2.5倍以上。高温下约50 GPa。这项工作回顾了我们最近开发的高压产生技术。通过集成以下技术实现了在室温和高温下的高压产生:①精确对准的导向块系统,②二级砧的硬度;③二级砧面的锥度;④由具有高体积模量的材料组成的高压室,以及⑤高隔热性我们的高压技术将有助于研究下地幔上部条件下材料的相稳定性和物理性质,并将允许合成和表征新型材料。

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  • 来源
    《工程(英文)》 |2019年第003期|434-440|共7页
  • 作者单位

    Bayerisches Geoinstitut, University of Bayreuth, Bayreuth 95440, Germany;

    Bayerisches Geoinstitut, University of Bayreuth, Bayreuth 95440, Germany;

    State Key Laboratory of Superhard Materials, Jilin University, Changchun 130012, China;

    Bayerisches Geoinstitut, University of Bayreuth, Bayreuth 95440, Germany;

    Center for High Pressure Science and Technology Advanced Research, Beijing 100094, China;

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