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热压金刚石地质钻头用石墨模具 被引量:3
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作者 缪树良 《超硬材料工程》 CAS 2009年第5期18-22,共5页
近四十年来,我国热压金刚石地质钻头用石墨模具有了长足的进步,但是,与欧美日等发达国家的水平相比,尚有较大的差距。文章通过对国内外石墨模具样品的试验分析,并对碳素材料的氧化机理及其影响因素进行深入地研究,提出要提高热压金刚石... 近四十年来,我国热压金刚石地质钻头用石墨模具有了长足的进步,但是,与欧美日等发达国家的水平相比,尚有较大的差距。文章通过对国内外石墨模具样品的试验分析,并对碳素材料的氧化机理及其影响因素进行深入地研究,提出要提高热压金刚石地质钻头用石墨模具的尺寸精度、表面光洁度,减少胎体或镶块中金属结合剂的流失量,减缓石墨模具的氧化烧损速度,宜采用超细碳素原料颗粒来制作高电阻率、高石墨化程度、高强度、低灰分、微气孔率的石墨模具。这是赶超世界先进水平的发展方向,也是制取高精度,高使用寿命的热压金刚石地质钻头用石墨模具的有效途径。 展开更多
关键词 金刚石地质钻头 石墨模具 热压烧结 氧化烧损 超细颗粒结构 气流粉碎分级法
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Preparation of Ultra-fine Salbutamol Sulfate Particles by Reactive Precipitation and Characterization of Dry Powder Inhalant
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作者 续京 刘晓林 陈建峰 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2008年第5期791-795,共5页
The preparation of ultra-fine particles of salbutamol sulphate (SS) was accomplished with a reactive precipitation pathway, in which salbutamol and sulphuric acid were Used as reactants with the solvents of ethanol.... The preparation of ultra-fine particles of salbutamol sulphate (SS) was accomplished with a reactive precipitation pathway, in which salbutamol and sulphuric acid were Used as reactants with the solvents of ethanol.The effects of sulphuric acid concentration, reaction temperature, stirring rate, and reaction time onthesize of the particle were investigated. A binary mixture composed of lactose and SS was prepared to evaluate SS. The results showed that ultra-fine SS particles with controlled diameters ranging between 3 μm and 0.8 μm and with a narrow distribution could be achieved. The morphology consisting of clubbed particles wassuccess.fully obtained. The purity of the particles reached above 98% with-UV detection. The dose- of dry powder inhalation was obtained by blending the particles with recrystallized lactose, which acted as a carrier. The deposition quantity of the drug in breathing tract was estimated using a twin imPinger apparatus. Compared with the Shapuer powder (purchased in the market), the results showed that SS_particles had more quantifies.subsided in simulative lung.. _ 展开更多
关键词 salbutamol sulphate ultra-fine particle reactive precipitation PREPARATION dry powder inhalant DEPOSITION
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