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1)  Microparticle of fruitbodies
子实体微粉末
2)  powder compact foaming process
粉末实体发泡法
3)  ultrafine powders
超微粉末
1.
In this paper,SrLa xFe 12-x O 19 ultrafine powders were synthesized by citrate method.
本文首次利用柠檬酸法合成了SrLaxFe12-xO19超微粉末。
2.
Zro_2+9mol%Y_2O_3 ultrafine powders, with Zr(OC_3H_7)_4 and Y(CH_3COO)_3 as percursors, were prepared by sol-gel method.
以自制Zr(OC_3H_7)_4和Y(CH_3COO)_3为原料,应用溶胶、凝胶法制备了组份为ZrO_2-9mol%Y_2O_3超微粉末。
3.
Tin(OH)3 and Tm_2O_3 ultrafine powders were prepared by precipitation method using alcohol as dispersive and protective reagent.
以乙醇为分散剂和保护剂,用沉淀法制备了Tm(OH)_3、Tin_2O_3超微粉末。
4)  ultrafine powder
超微粉末
1.
Pure metal and alloy ultrafine powders were prepared by evaporation condensation process,metal oxide ultrafine powders were prepared by metal alkoxide hydrolysis process and chemical solution precipitation process.
作者采用蒸发凝聚法制备了金属基超微粉末 ,采用化学反应法制备了氧化物超微粉末 ,深入研究了超微粉末的制备工艺。
2.
Ultrafine powder of ZnO was synthesized using ZnSO 4\57H 2O and Na 2CO 3,and the ture diffraction width of diffraction lines were measured by using the method of X ray powder diffraction, and it can be attained to determinate crystallite size and lattice distortion of the synthesized ultrafine powder,then their quantitative analysis results can be obtained.
以ZnSO4·7H2O和Na2CO3为原料,采用化学法合成了ZnO超微粉末。
3.
SrFe 12 O 19 ultrafine powder was synthesized by the citrate method.
利用柠檬酸法合成SrFe12O19超微粉末,用X射线衍射(XRD)、透射电子显微镜(TEM)、振动样品磁强计(VSM)和Mosbauer谱等技术对粉末的结构、粒径和形貌、性能等进行了观察和测试。
5)  Fine powder
微细粉末
1.
Mixed rare earth oxide fine powders were prepared by coprecipitation method in which aquevus NH_3 was used to adjust pH in the reacting system.
用氨水调pH共沉淀法制备混合稀土氧化物微细粉末。
2.
mixed rareearth oxide fine powders were prepared by coprecipitation method inwhich urea--aqua ammonia adhere tised to adjtlst the system PH in heatedsolution.
以稀土总量为95%的混合稀土氧化物为原料,用尿素-氧水在熟水溶液中调pH值共沉淀法制备了混合稀土氧化物微细粉末。
3.
The effects of the protrusion length of the melt delivery tube and the atomization gas pressure on the average particle size and fine powder yield were studied.
本文以紧耦合气体雾化技术对这一粉末进行研制,分别研究了导液管伸出量、雾化气压对粉末的平均粒度与微细粉末收得率的影响。
6)  little power
微量粉末
1.
In this paper the principle of Single chip Microcomputer controlling little power distributor and the anti-interfere technologies of system are introduced.
本文介绍了微量粉末分配机的单片机控制原理及系统的抗干扰技术,给出了单片机控制步进电机实现无级调速的硬件和软件设计方法。
补充资料:九月二十日微雪怀子由弟二首
【诗文】:
岐阳九月天微雪,已作萧条岁暮心。
短日送寒砧杵急,冷官无事屋庐深。
愁肠别后能消酒,白发秋来已上簪。
近买貂裘堪出塞,忽思乘传问西琛。
江上同舟诗满箧,郑西分马涕垂膺。
未成报国惭书剑,岂不怀归畏友朋。
官舍度秋惊岁晚,寺楼见雪与谁登。
遥知读《易》东窗下,车马敲门定不应。



【注释】:



【出处】:
苏轼诗集 卷一
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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