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Mechanically Alloyed and Spark Plasma Sintered Aluminium/Precious Metal Oxide Composite Materials

机译:机械合金化和火花等离子烧结铝/贵金属氧化物复合材料

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Air-atomised pure aluminium powder with additions of 10 at.% of AgO, PtO_2 or PdO was mechanically alloyed (MAed) by using a vibrational ball mill, and MAed powders were consolidated into bulk materials by a spark plasma sintering (SPS) process. Mechano-chemical reactions among pure Al, precious metal oxide and stearic acid, added as a process control agent, during the mechanical alloying (MA) process and subsequent heat treatments were investigated by X-ray diffraction. The mechanical properties of MAed powders obtained under various heat treatment conditions and those of the SPS materials were evaluated by hardness tests. Mechano-chemical reactions occurred in Al/precious metal oxide composite powders during 36 ks of the MA process to form AlAg_2, Pt and Al_3Pd_2 for the Al-AgO, Al-PtO_2 and Al-PdO systems, respectively. Further solid-state reactions in MAed powders have been observed after heating at 373 K to 873 K for 7.2 ks. The hardness of MAed powders initially increased significantly after heating at 373 K and then generally decreased with increasing heating temperatures. The full density was obtained for the SPS materials under the conditions of an applied pressure of 49 MPa at 873 K for 3.6 ks. All the SPS materials exhibited hardness values of over 200 HV in the as-fabricated state.
机译:通过使用振动球磨机对添加了10 at。%AgO,PtO_2或PdO的空气雾化纯铝粉进行机械合金化(MAed),并通过火花等离子体烧结(SPS)工艺将MAed粉末固结为块状材料。通过X射线衍射研究了机械合金化(MA)过程和后续热处理过程中作为工艺控制剂添加的纯Al,贵金属氧化物和硬脂酸之间的机械化学反应。通过硬度测试评估了在各种热处理条件下获得的MAed粉末的机械性能和SPS材料的机械性能。在MA工艺的36 ks期间,Al /贵金属氧化物复合粉末中发生了机械化学反应,分别形成了Al-AgO,Al-PtO_2和Al-PdO系统的AlAg_2,Pt和Al_3Pd_2。在373 K至873 K加热7.2 ks后,在MAed粉末中观察到了进一步的固态反应。 MAed粉末的硬度最初在373 K加热后显着增加,然后通常随着加热温度的升高而降低。在873 K下施加49 MPa压力3.6 ks的条件下,获得了SPS材料的全密度。在制造状态下,所有SPS材料均显示出超过200 HV的硬度值。

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