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High pulse number thermal shock testing of tungsten alloys produced by powder injection molding

机译:粉末注射成型生产的钨合金的高脉冲数热冲击测试

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The investigation of plasma facing materials (PFM) subjected to a large number (≥10,000) of thermal shocks is of interest to determine long term morphological changes which might influence component lifetime in and plasma performance of a fusion reactor. The electron beam facility JUDITH 2 was used to simulate these conditions experimentally. In this study eight different tungsten grades produced by powder injection molding (PIM) were investigated: Two pure tungsten grades, one with 2?wt% Y2O3, three with 1, 2 and 3?wt% TiC, and two with 0.5 and 1?wt% TaC. Samples of 10?×?10?×?4?mm3 were brazed to a copper cooling structure and subjected to 105thermal shocks of 0.5?ms duration and an intensity of Labs?=?0.55?GW/m2 (FHF?=?12?MWs?/m2) at a base temperature of Tbase?=?700?°C.The PIM grades showed damages in general comparable with a sintered and forged pure tungsten reference grade (>99.97?wt% W) that complies with the ITER specifications. One exception was the 2?wt% TiC doped material which failed early during the experiment by delamination of a large part of the surface. The Y2O3doped material showed a comparatively good performance with respect to crack width (<15?μm) and roughening (Ra?=?0.75?μm), but showed melt droplets of ~3–4?μm diameter, while the 1?wt% TiC doped material showed wide cracks (up to 50?μm) and strong roughening (Ra?=?2.5?μm). The paper discusses the post-mortem analysis of all grades, comparing them with respect to roughness (from laser profilometry), crack network characteristics and local melt droplet formation or other special morphological features (from SEM images) as well as crack depth (from metallographic cross sections).
机译:研究受到大量(≥10,000)热冲击的等离子体材料(PFM)的研究,以确定长期的形态变化,这些变化可能会影响聚变反应堆的组件寿命和等离子体性能。电子束设备JUDITH 2被用来模拟这些条件。在这项研究中,研究了八种通过粉末注射成型(PIM)生产的钨等级:两种纯钨等级,一种具有2wt%的Y2O3,三种具有1、2和3wt%的TiC,以及两种具有0.5和1%的TiC。重量%TaC。将10×××10 10××4×mm 3的样品钎焊到铜冷却结构上,并经受0.5μms持续时间的105次热冲击,强度为Labs ==0.55μG/ m 2(FHF ==12μm。基本温度为Tbase?=?700?°C时的MWs?/ m2).PIM等级的损坏通常与符合ITER规范的烧结和锻造纯钨参考等级(> 99.97?wt%W)相当。 。一个例外是2wt%的TiC掺杂材料在实验早期因大部分表面分层而失效。掺Y2O3的材料在裂纹宽度(<15?μm)和粗糙化(Ra?=?0.75?μm)方面表现出相对较好的性能,但显示出的熔滴直径约为3-4?μm,而重量百分比为1?wt%。掺TiC的材料显示出较宽的裂纹(最大50?μm)和很强的粗糙性(Ra?=?2.5?μm)。本文讨论了所有等级的验尸分析,并将其与粗糙度(来自激光轮廓仪),裂纹网络特征和局部熔滴形成或其他特殊形态特征(来自SEM图像)以及裂纹深度(来自金相学)进行比较交叉区域)。

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